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Author SHA1 Message Date
Bryan Petty
8e30ac7429 This commit was manufactured by cvs2svn to create tag 'ALPHA_3_8'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/tags/ALPHA_3_8@10995 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
2001-07-13 13:31:24 +00:00
Bryan Petty
9c0d89b17b This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@10993 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
2001-07-13 13:31:24 +00:00
Bryan Petty
9505c96c85 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@10361 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
2001-05-28 04:45:42 +00:00
Ryan Norton
b52f47092c Import regex from tcl 8.4.5
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@5380 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
2000-01-14 00:20:46 +00:00
Bryan Petty
269149e603 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@5378 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
2000-01-14 00:20:45 +00:00
Ryan Norton
9e0b898ade Import regex from tcl 8.4.5
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@4096 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-10-21 02:16:20 +00:00
Bryan Petty
bcdf529fe2 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@4095 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-10-21 02:16:20 +00:00
Ryan Norton
a6c3a78d25 Import regex from tcl 8.4.5
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@3951 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-10-13 02:22:18 +00:00
Bryan Petty
9bd536df18 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@3950 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-10-13 02:22:18 +00:00
Ryan Norton
2e792cdea3 Import regex from tcl 8.4.5
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@3276 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-08-05 01:16:56 +00:00
Bryan Petty
376c9a9ab8 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@3275 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-08-05 01:16:56 +00:00
Ryan Norton
671adc5087 Import regex from tcl 8.4.5
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@2634 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-06-02 01:53:30 +00:00
Bryan Petty
d8709b9458 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@2633 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-06-02 01:53:30 +00:00
Bryan Petty
9181b01d13 This commit was manufactured by cvs2svn to create branch 'RXSPENCER'.
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/branches/RXSPENCER@2630 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
1999-06-02 01:53:29 +00:00
447 changed files with 5867 additions and 357426 deletions

20
src/regex/COPYRIGHT Normal file
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Copyright 1992, 1993, 1994, 1997 Henry Spencer. All rights reserved.
This software is not subject to any license of the American Telephone
and Telegraph Company or of the Regents of the University of California.
Permission is granted to anyone to use this software for any purpose on
any computer system, and to alter it and redistribute it, subject
to the following restrictions:
1. The author is not responsible for the consequences of use of this
software, no matter how awful, even if they arise from flaws in it.
2. The origin of this software must not be misrepresented, either by
explicit claim or by omission. Since few users ever read sources,
credits must appear in the documentation.
3. Altered versions must be plainly marked as such, and must not be
misrepresented as being the original software. Since few users
ever read sources, credits must appear in the documentation.
4. This notice may not be removed or altered.

130
src/regex/Makefile Normal file
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# You probably want to take -DREDEBUG out of CFLAGS, and put something like
# -O in, *after* testing (-DREDEBUG strengthens testing by enabling a lot of
# internal assertion checking and some debugging facilities).
# Put -Dconst= in for a pre-ANSI compiler.
# Do not take -DPOSIX_MISTAKE out.
# REGCFLAGS isn't important to you (it's for my use in some special contexts).
CFLAGS=-I. -DPOSIX_MISTAKE -DREDEBUG $(REGCFLAGS)
# If you have a pre-ANSI compiler, put -o into MKHFLAGS. If you want
# the Berkeley __P macro, put -b in.
MKHFLAGS=
# Flags for linking but not compiling, if any.
LDFLAGS=
# Extra libraries for linking, if any.
LIBS=
# Internal stuff, should not need changing.
OBJPRODN=regcomp.o regexec.o regerror.o regfree.o
OBJS=$(OBJPRODN) split.o debug.o main.o
H=cclass.h cname.h regex2.h utils.h
REGSRC=regcomp.c regerror.c regexec.c regfree.c
ALLSRC=$(REGSRC) engine.c debug.c main.c split.c
# Stuff that matters only if you're trying to lint the package.
LINTFLAGS=-I. -Dstatic= -Dconst= -DREDEBUG
LINTC=regcomp.c regexec.c regerror.c regfree.c debug.c main.c
JUNKLINT=possible pointer alignment|null effect
# arrangements to build forward-reference header files
.SUFFIXES: .ih .h
.c.ih:
sh ./mkh $(MKHFLAGS) -p $< >$@
default: r
lib: purge $(OBJPRODN)
rm -f libregex.a
ar crv libregex.a $(OBJPRODN)
purge:
rm -f *.o
# stuff to build regex.h
REGEXH=regex.h
REGEXHSRC=regex2.h $(REGSRC)
$(REGEXH): $(REGEXHSRC) mkh
sh ./mkh $(MKHFLAGS) -i _REGEX_H_ $(REGEXHSRC) >regex.tmp
cmp -s regex.tmp regex.h 2>/dev/null || cp regex.tmp regex.h
rm -f regex.tmp
# dependencies
$(OBJPRODN) debug.o: utils.h regex.h regex2.h
regcomp.o: cclass.h cname.h regcomp.ih
regexec.o: engine.c engine.ih
regerror.o: regerror.ih
debug.o: debug.ih
main.o: main.ih
# tester
re: $(OBJS)
$(CC) $(CFLAGS) $(LDFLAGS) $(OBJS) $(LIBS) -o $@
# regression test
r: re tests
./re <tests
./re -el <tests
./re -er <tests
# 57 variants, and other stuff, for development use -- not useful to you
ra: ./re tests
-./re <tests
-./re -el <tests
-./re -er <tests
rx: ./re tests
./re -x <tests
./re -x -el <tests
./re -x -er <tests
t: ./re tests
-time ./re <tests
-time ./re -cs <tests
-time ./re -el <tests
-time ./re -cs -el <tests
l: $(LINTC)
lint $(LINTFLAGS) -h $(LINTC) 2>&1 | egrep -v '$(JUNKLINT)' | tee lint
fullprint:
ti README WHATSNEW notes todo | list
ti *.h | list
list *.c
list regex.3 regex.7
print:
ti README WHATSNEW notes todo | list
ti *.h | list
list reg*.c engine.c
mf.tmp: Makefile
sed '/^REGEXH=/s/=.*/=regex.h/' Makefile | sed '/#DEL$$/d' >$@
DTRH=cclass.h cname.h regex2.h utils.h
PRE=COPYRIGHT README WHATSNEW
POST=mkh regex.3 regex.7 tests $(DTRH) $(ALLSRC) fake/*.[ch]
FILES=$(PRE) Makefile $(POST)
DTR=$(PRE) Makefile=mf.tmp $(POST)
dtr: $(FILES) mf.tmp
makedtr $(DTR) >$@
rm mf.tmp
cio: $(FILES)
cio $(FILES)
rdf: $(FILES)
rcsdiff -c $(FILES) 2>&1 | p
# various forms of cleanup
tidy:
rm -f junk* core core.* *.core dtr *.tmp lint
clean: tidy
rm -f *.o *.s *.ih re libregex.a
# don't do this one unless you know what you're doing
spotless: clean
rm -f mkh regex.h

32
src/regex/README Normal file
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alpha3.8 release.
Tue Aug 10 15:51:48 EDT 1999
henry@spsystems.net (formerly henry@zoo.toronto.edu)
See WHATSNEW for change listing.
installation notes:
--------
Read the comments at the beginning of Makefile before running.
Utils.h contains some things that just might have to be modified on
some systems, as well as a nested include (ugh) of <assert.h>.
The "fake" directory contains quick-and-dirty fakes for some header
files and routines that old systems may not have. Note also that
-DUSEBCOPY will make utils.h substitute bcopy() for memmove().
After that, "make r" will build regcomp.o, regexec.o, regfree.o,
and regerror.o (the actual routines), bundle them together into a test
program, and run regression tests on them. No output is good output.
"make lib" builds just the .o files for the actual routines (when
you're happy with testing and have adjusted CFLAGS for production),
and puts them together into libregex.a. You can pick up either the
library or *.o ("make lib" makes sure there are no other .o files left
around to confuse things).
Main.c, debug.c, split.c are used for regression testing but are not part
of the RE routines themselves.
Regex.h goes in /usr/include. All other .h files are internal only.
--------

108
src/regex/WHATSNEW Normal file
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New in alpha3.8: Bug fix for signed/unsigned mixup, found and fixed
by the FreeBSD folks.
New in alpha3.7: A bit of cleanup aimed at maximizing portability,
possibly at slight cost in efficiency. "ul" suffixes and "unsigned long"
no longer appear, in particular.
New in alpha3.6: A couple more portability glitches fixed.
New in alpha3.5: Active development of this code has been stopped --
I'm working on a complete reimplementation -- but folks have found some
minor portability glitches and the like, hence this release to fix them.
One penalty: slightly reduced compatibility with old compilers, because
the ANSI C `unsigned long' type and `ul' constant suffix are used in a
few places (I could avoid this but it would be considerably more work).
New in alpha3.4: The complex bug alluded to below has been fixed (in a
slightly kludgey temporary way that may hurt efficiency a bit; this is
another "get it out the door for 4.4" release). The tests at the end of
the tests file have accordingly been uncommented. The primary sign of
the bug was that something like a?b matching ab matched b rather than ab.
(The bug was essentially specific to this exact situation, else it would
have shown up earlier.)
New in alpha3.3: The definition of word boundaries has been altered
slightly, to more closely match the usual programming notion that "_"
is an alphabetic. Stuff used for pre-ANSI systems is now in a subdir,
and the makefile no longer alludes to it in mysterious ways. The
makefile has generally been cleaned up some. Fixes have been made
(again!) so that the regression test will run without -DREDEBUG, at
the cost of weaker checking. A workaround for a bug in some folks'
<assert.h> has been added. And some more things have been added to
tests, including a couple right at the end which are commented out
because the code currently flunks them (complex bug; fix coming).
Plus the usual minor cleanup.
New in alpha3.2: Assorted bits of cleanup and portability improvement
(the development base is now a BSDI system using GCC instead of an ancient
Sun system, and the newer compiler exposed some glitches). Fix for a
serious bug that affected REs using many [] (including REG_ICASE REs
because of the way they are implemented), *sometimes*, depending on
memory-allocation patterns. The header-file prototypes no longer name
the parameters, avoiding possible name conflicts. The possibility that
some clot has defined CHAR_MIN as (say) `-128' instead of `(-128)' is
now handled gracefully. "uchar" is no longer used as an internal type
name (too many people have the same idea). Still the same old lousy
performance, alas.
New in alpha3.1: Basically nothing, this release is just a bookkeeping
convenience. Stay tuned.
New in alpha3.0: Performance is no better, alas, but some fixes have been
made and some functionality has been added. (This is basically the "get
it out the door in time for 4.4" release.) One bug fix: regfree() didn't
free the main internal structure (how embarrassing). It is now possible
to put NULs in either the RE or the target string, using (resp.) a new
REG_PEND flag and the old REG_STARTEND flag. The REG_NOSPEC flag to
regcomp() makes all characters ordinary, so you can match a literal
string easily (this will become more useful when performance improves!).
There are now primitives to match beginnings and ends of words, although
the syntax is disgusting and so is the implementation. The REG_ATOI
debugging interface has changed a bit. And there has been considerable
internal cleanup of various kinds.
New in alpha2.3: Split change list out of README, and moved flags notes
into Makefile. Macro-ized the name of regex(7) in regex(3), since it has
to change for 4.4BSD. Cleanup work in engine.c, and some new regression
tests to catch tricky cases thereof.
New in alpha2.2: Out-of-date manpages updated. Regerror() acquires two
small extensions -- REG_ITOA and REG_ATOI -- which avoid debugging kludges
in my own test program and might be useful to others for similar purposes.
The regression test will now compile (and run) without REDEBUG. The
BRE \$ bug is fixed. Most uses of "uchar" are gone; it's all chars now.
Char/uchar parameters are now written int/unsigned, to avoid possible
portability problems with unpromoted parameters. Some unsigned casts have
been introduced to minimize portability problems with shifting into sign
bits.
New in alpha2.1: Lots of little stuff, cleanup and fixes. The one big
thing is that regex.h is now generated, using mkh, rather than being
supplied in the distribution; due to circularities in dependencies,
you have to build regex.h explicitly by "make h". The two known bugs
have been fixed (and the regression test now checks for them), as has a
problem with assertions not being suppressed in the absence of REDEBUG.
No performance work yet.
New in alpha2: Backslash-anything is an ordinary character, not an
error (except, of course, for the handful of backslashed metacharacters
in BREs), which should reduce script breakage. The regression test
checks *where* null strings are supposed to match, and has generally
been tightened up somewhat. Small bug fixes in parameter passing (not
harmful, but technically errors) and some other areas. Debugging
invoked by defining REDEBUG rather than not defining NDEBUG.
New in alpha+3: full prototyping for internal routines, using a little
helper program, mkh, which extracts prototypes given in stylized comments.
More minor cleanup. Buglet fix: it's CHAR_BIT, not CHAR_BITS. Simple
pre-screening of input when a literal string is known to be part of the
RE; this does wonders for performance.
New in alpha+2: minor bits of cleanup. Notably, the number "32" for the
word width isn't hardwired into regexec.c any more, the public header
file prototypes the functions if __STDC__ is defined, and some small typos
in the manpages have been fixed.
New in alpha+1: improvements to the manual pages, and an important
extension, the REG_STARTEND option to regexec().

31
src/regex/cclass.h Normal file
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/* character-class table */
static struct cclass {
char *name;
char *chars;
char *multis;
} cclasses[] = {
"alnum", "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz\
0123456789", "",
"alpha", "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz",
"",
"blank", " \t", "",
"cntrl", "\007\b\t\n\v\f\r\1\2\3\4\5\6\16\17\20\21\22\23\24\
\25\26\27\30\31\32\33\34\35\36\37\177", "",
"digit", "0123456789", "",
"graph", "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz\
0123456789!\"#$%&'()*+,-./:;<=>?@[\\]^_`{|}~",
"",
"lower", "abcdefghijklmnopqrstuvwxyz",
"",
"print", "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz\
0123456789!\"#$%&'()*+,-./:;<=>?@[\\]^_`{|}~ ",
"",
"punct", "!\"#$%&'()*+,-./:;<=>?@[\\]^_`{|}~",
"",
"space", "\t\n\v\f\r ", "",
"upper", "ABCDEFGHIJKLMNOPQRSTUVWXYZ",
"",
"xdigit", "0123456789ABCDEFabcdef",
"",
NULL, 0, ""
};

102
src/regex/cname.h Normal file
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/* character-name table */
static struct cname {
char *name;
char code;
} cnames[] = {
"NUL", '\0',
"SOH", '\001',
"STX", '\002',
"ETX", '\003',
"EOT", '\004',
"ENQ", '\005',
"ACK", '\006',
"BEL", '\007',
"alert", '\007',
"BS", '\010',
"backspace", '\b',
"HT", '\011',
"tab", '\t',
"LF", '\012',
"newline", '\n',
"VT", '\013',
"vertical-tab", '\v',
"FF", '\014',
"form-feed", '\f',
"CR", '\015',
"carriage-return", '\r',
"SO", '\016',
"SI", '\017',
"DLE", '\020',
"DC1", '\021',
"DC2", '\022',
"DC3", '\023',
"DC4", '\024',
"NAK", '\025',
"SYN", '\026',
"ETB", '\027',
"CAN", '\030',
"EM", '\031',
"SUB", '\032',
"ESC", '\033',
"IS4", '\034',
"FS", '\034',
"IS3", '\035',
"GS", '\035',
"IS2", '\036',
"RS", '\036',
"IS1", '\037',
"US", '\037',
"space", ' ',
"exclamation-mark", '!',
"quotation-mark", '"',
"number-sign", '#',
"dollar-sign", '$',
"percent-sign", '%',
"ampersand", '&',
"apostrophe", '\'',
"left-parenthesis", '(',
"right-parenthesis", ')',
"asterisk", '*',
"plus-sign", '+',
"comma", ',',
"hyphen", '-',
"hyphen-minus", '-',
"period", '.',
"full-stop", '.',
"slash", '/',
"solidus", '/',
"zero", '0',
"one", '1',
"two", '2',
"three", '3',
"four", '4',
"five", '5',
"six", '6',
"seven", '7',
"eight", '8',
"nine", '9',
"colon", ':',
"semicolon", ';',
"less-than-sign", '<',
"equals-sign", '=',
"greater-than-sign", '>',
"question-mark", '?',
"commercial-at", '@',
"left-square-bracket", '[',
"backslash", '\\',
"reverse-solidus", '\\',
"right-square-bracket", ']',
"circumflex", '^',
"circumflex-accent", '^',
"underscore", '_',
"low-line", '_',
"grave-accent", '`',
"left-brace", '{',
"left-curly-bracket", '{',
"vertical-line", '|',
"right-brace", '}',
"right-curly-bracket", '}',
"tilde", '~',
"DEL", '\177',
NULL, 0,
};

242
src/regex/debug.c Normal file
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#include <stdio.h>
#include <string.h>
#include <ctype.h>
#include <limits.h>
#include <stdlib.h>
#include <sys/types.h>
#include <regex.h>
#include "utils.h"
#include "regex2.h"
#include "debug.ih"
/*
- regprint - print a regexp for debugging
== void regprint(regex_t *r, FILE *d);
*/
void
regprint(r, d)
regex_t *r;
FILE *d;
{
register struct re_guts *g = r->re_g;
register int i;
register int c;
register int last;
int nincat[NC];
fprintf(d, "%ld states, %d categories", (long)g->nstates,
g->ncategories);
fprintf(d, ", first %ld last %ld", (long)g->firststate,
(long)g->laststate);
if (g->iflags&USEBOL)
fprintf(d, ", USEBOL");
if (g->iflags&USEEOL)
fprintf(d, ", USEEOL");
if (g->iflags&BAD)
fprintf(d, ", BAD");
if (g->nsub > 0)
fprintf(d, ", nsub=%ld", (long)g->nsub);
if (g->must != NULL)
fprintf(d, ", must(%ld) `%*s'", (long)g->mlen, (int)g->mlen,
g->must);
if (g->backrefs)
fprintf(d, ", backrefs");
if (g->nplus > 0)
fprintf(d, ", nplus %ld", (long)g->nplus);
fprintf(d, "\n");
s_print(g, d);
for (i = 0; i < g->ncategories; i++) {
nincat[i] = 0;
for (c = CHAR_MIN; c <= CHAR_MAX; c++)
if (g->categories[c] == i)
nincat[i]++;
}
fprintf(d, "cc0#%d", nincat[0]);
for (i = 1; i < g->ncategories; i++)
if (nincat[i] == 1) {
for (c = CHAR_MIN; c <= CHAR_MAX; c++)
if (g->categories[c] == i)
break;
fprintf(d, ", %d=%s", i, regchar(c));
}
fprintf(d, "\n");
for (i = 1; i < g->ncategories; i++)
if (nincat[i] != 1) {
fprintf(d, "cc%d\t", i);
last = -1;
for (c = CHAR_MIN; c <= CHAR_MAX+1; c++) /* +1 does flush */
if (c <= CHAR_MAX && g->categories[c] == i) {
if (last < 0) {
fprintf(d, "%s", regchar(c));
last = c;
}
} else {
if (last >= 0) {
if (last != c-1)
fprintf(d, "-%s",
regchar(c-1));
last = -1;
}
}
fprintf(d, "\n");
}
}
/*
- s_print - print the strip for debugging
== static void s_print(register struct re_guts *g, FILE *d);
*/
static void
s_print(g, d)
register struct re_guts *g;
FILE *d;
{
register sop *s;
register cset *cs;
register int i;
register int done = 0;
register sop opnd;
register int col = 0;
register int last;
register sopno offset = 2;
# define GAP() { if (offset % 5 == 0) { \
if (col > 40) { \
fprintf(d, "\n\t"); \
col = 0; \
} else { \
fprintf(d, " "); \
col++; \
} \
} else \
col++; \
offset++; \
}
if (OP(g->strip[0]) != OEND)
fprintf(d, "missing initial OEND!\n");
for (s = &g->strip[1]; !done; s++) {
opnd = OPND(*s);
switch (OP(*s)) {
case OEND:
fprintf(d, "\n");
done = 1;
break;
case OCHAR:
if (strchr("\\|()^$.[+*?{}!<> ", (char)opnd) != NULL)
fprintf(d, "\\%c", (char)opnd);
else
fprintf(d, "%s", regchar((char)opnd));
break;
case OBOL:
fprintf(d, "^");
break;
case OEOL:
fprintf(d, "$");
break;
case OBOW:
fprintf(d, "\\{");
break;
case OEOW:
fprintf(d, "\\}");
break;
case OANY:
fprintf(d, ".");
break;
case OANYOF:
fprintf(d, "[(%ld)", (long)opnd);
cs = &g->sets[opnd];
last = -1;
for (i = 0; i < g->csetsize+1; i++) /* +1 flushes */
if (CHIN(cs, i) && i < g->csetsize) {
if (last < 0) {
fprintf(d, "%s", regchar(i));
last = i;
}
} else {
if (last >= 0) {
if (last != i-1)
fprintf(d, "-%s",
regchar(i-1));
last = -1;
}
}
fprintf(d, "]");
break;
case OBACK_:
fprintf(d, "(\\<%ld>", (long)opnd);
break;
case O_BACK:
fprintf(d, "<%ld>\\)", (long)opnd);
break;
case OPLUS_:
fprintf(d, "(+");
if (OP(*(s+opnd)) != O_PLUS)
fprintf(d, "<%ld>", (long)opnd);
break;
case O_PLUS:
if (OP(*(s-opnd)) != OPLUS_)
fprintf(d, "<%ld>", (long)opnd);
fprintf(d, "+)");
break;
case OQUEST_:
fprintf(d, "(?");
if (OP(*(s+opnd)) != O_QUEST)
fprintf(d, "<%ld>", (long)opnd);
break;
case O_QUEST:
if (OP(*(s-opnd)) != OQUEST_)
fprintf(d, "<%ld>", (long)opnd);
fprintf(d, "?)");
break;
case OLPAREN:
fprintf(d, "((<%ld>", (long)opnd);
break;
case ORPAREN:
fprintf(d, "<%ld>))", (long)opnd);
break;
case OCH_:
fprintf(d, "<");
if (OP(*(s+opnd)) != OOR2)
fprintf(d, "<%ld>", (long)opnd);
break;
case OOR1:
if (OP(*(s-opnd)) != OOR1 && OP(*(s-opnd)) != OCH_)
fprintf(d, "<%ld>", (long)opnd);
fprintf(d, "|");
break;
case OOR2:
fprintf(d, "|");
if (OP(*(s+opnd)) != OOR2 && OP(*(s+opnd)) != O_CH)
fprintf(d, "<%ld>", (long)opnd);
break;
case O_CH:
if (OP(*(s-opnd)) != OOR1)
fprintf(d, "<%ld>", (long)opnd);
fprintf(d, ">");
break;
default:
fprintf(d, "!%d(%d)!", OP(*s), opnd);
break;
}
if (!done)
GAP();
}
}
/*
- regchar - make a character printable
== static char *regchar(int ch);
*/
static char * /* -> representation */
regchar(ch)
int ch;
{
static char buf[10];
if (isprint(ch) || ch == ' ')
sprintf(buf, "%c", ch);
else
sprintf(buf, "\\%o", ch);
return(buf);
}

1019
src/regex/engine.c Normal file

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510
src/regex/main.c Normal file
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@@ -0,0 +1,510 @@
#include <stdio.h>
#include <string.h>
#include <sys/types.h>
#include <regex.h>
#include <assert.h>
#include "main.ih"
char *progname;
int debug = 0;
int line = 0;
int status = 0;
int copts = REG_EXTENDED;
int eopts = 0;
regoff_t startoff = 0;
regoff_t endoff = 0;
extern int split();
extern void regprint();
/*
- main - do the simple case, hand off to regress() for regression
*/
main(argc, argv)
int argc;
char *argv[];
{
regex_t re;
# define NS 10
regmatch_t subs[NS];
char erbuf[100];
int err;
size_t len;
int c;
int errflg = 0;
register int i;
extern int optind;
extern char *optarg;
progname = argv[0];
while ((c = getopt(argc, argv, "c:e:S:E:x")) != EOF)
switch (c) {
case 'c': /* compile options */
copts = options('c', optarg);
break;
case 'e': /* execute options */
eopts = options('e', optarg);
break;
case 'S': /* start offset */
startoff = (regoff_t)atoi(optarg);
break;
case 'E': /* end offset */
endoff = (regoff_t)atoi(optarg);
break;
case 'x': /* Debugging. */
debug++;
break;
case '?':
default:
errflg++;
break;
}
if (errflg) {
fprintf(stderr, "usage: %s ", progname);
fprintf(stderr, "[-c copt][-C][-d] [re]\n");
exit(2);
}
if (optind >= argc) {
regress(stdin);
exit(status);
}
err = regcomp(&re, argv[optind++], copts);
if (err) {
len = regerror(err, &re, erbuf, sizeof(erbuf));
fprintf(stderr, "error %s, %d/%d `%s'\n",
eprint(err), len, sizeof(erbuf), erbuf);
exit(status);
}
regprint(&re, stdout);
if (optind >= argc) {
regfree(&re);
exit(status);
}
if (eopts&REG_STARTEND) {
subs[0].rm_so = startoff;
subs[0].rm_eo = strlen(argv[optind]) - endoff;
}
err = regexec(&re, argv[optind], (size_t)NS, subs, eopts);
if (err) {
len = regerror(err, &re, erbuf, sizeof(erbuf));
fprintf(stderr, "error %s, %d/%d `%s'\n",
eprint(err), len, sizeof(erbuf), erbuf);
exit(status);
}
if (!(copts&REG_NOSUB)) {
len = (int)(subs[0].rm_eo - subs[0].rm_so);
if (subs[0].rm_so != -1) {
if (len != 0)
printf("match `%.*s'\n", len,
argv[optind] + subs[0].rm_so);
else
printf("match `'@%.1s\n",
argv[optind] + subs[0].rm_so);
}
for (i = 1; i < NS; i++)
if (subs[i].rm_so != -1)
printf("(%d) `%.*s'\n", i,
(int)(subs[i].rm_eo - subs[i].rm_so),
argv[optind] + subs[i].rm_so);
}
exit(status);
}
/*
- regress - main loop of regression test
== void regress(FILE *in);
*/
void
regress(in)
FILE *in;
{
char inbuf[1000];
# define MAXF 10
char *f[MAXF];
int nf;
int i;
char erbuf[100];
size_t ne;
char *badpat = "invalid regular expression";
# define SHORT 10
char *bpname = "REG_BADPAT";
regex_t re;
while (fgets(inbuf, sizeof(inbuf), in) != NULL) {
line++;
if (inbuf[0] == '#' || inbuf[0] == '\n')
continue; /* NOTE CONTINUE */
inbuf[strlen(inbuf)-1] = '\0'; /* get rid of stupid \n */
if (debug)
fprintf(stdout, "%d:\n", line);
nf = split(inbuf, f, MAXF, "\t\t");
if (nf < 3) {
fprintf(stderr, "bad input, line %d\n", line);
exit(1);
}
for (i = 0; i < nf; i++)
if (strcmp(f[i], "\"\"") == 0)
f[i] = "";
if (nf <= 3)
f[3] = NULL;
if (nf <= 4)
f[4] = NULL;
try(f[0], f[1], f[2], f[3], f[4], options('c', f[1]));
if (opt('&', f[1])) /* try with either type of RE */
try(f[0], f[1], f[2], f[3], f[4],
options('c', f[1]) &~ REG_EXTENDED);
}
ne = regerror(REG_BADPAT, (regex_t *)NULL, erbuf, sizeof(erbuf));
if (strcmp(erbuf, badpat) != 0 || ne != strlen(badpat)+1) {
fprintf(stderr, "end: regerror() test gave `%s' not `%s'\n",
erbuf, badpat);
status = 1;
}
ne = regerror(REG_BADPAT, (regex_t *)NULL, erbuf, (size_t)SHORT);
if (strncmp(erbuf, badpat, SHORT-1) != 0 || erbuf[SHORT-1] != '\0' ||
ne != strlen(badpat)+1) {
fprintf(stderr, "end: regerror() short test gave `%s' not `%.*s'\n",
erbuf, SHORT-1, badpat);
status = 1;
}
ne = regerror(REG_ITOA|REG_BADPAT, (regex_t *)NULL, erbuf, sizeof(erbuf));
if (strcmp(erbuf, bpname) != 0 || ne != strlen(bpname)+1) {
fprintf(stderr, "end: regerror() ITOA test gave `%s' not `%s'\n",
erbuf, bpname);
status = 1;
}
re.re_endp = bpname;
ne = regerror(REG_ATOI, &re, erbuf, sizeof(erbuf));
if (atoi(erbuf) != (int)REG_BADPAT) {
fprintf(stderr, "end: regerror() ATOI test gave `%s' not `%ld'\n",
erbuf, (long)REG_BADPAT);
status = 1;
} else if (ne != strlen(erbuf)+1) {
fprintf(stderr, "end: regerror() ATOI test len(`%s') = %ld\n",
erbuf, (long)REG_BADPAT);
status = 1;
}
}
/*
- try - try it, and report on problems
== void try(char *f0, char *f1, char *f2, char *f3, char *f4, int opts);
*/
void
try(f0, f1, f2, f3, f4, opts)
char *f0;
char *f1;
char *f2;
char *f3;
char *f4;
int opts; /* may not match f1 */
{
regex_t re;
# define NSUBS 10
regmatch_t subs[NSUBS];
# define NSHOULD 15
char *should[NSHOULD];
int nshould;
char erbuf[100];
int err;
int len;
char *type = (opts & REG_EXTENDED) ? "ERE" : "BRE";
register int i;
char *grump;
char f0copy[1000];
char f2copy[1000];
strcpy(f0copy, f0);
re.re_endp = (opts&REG_PEND) ? f0copy + strlen(f0copy) : NULL;
fixstr(f0copy);
err = regcomp(&re, f0copy, opts);
if (err != 0 && (!opt('C', f1) || err != efind(f2))) {
/* unexpected error or wrong error */
len = regerror(err, &re, erbuf, sizeof(erbuf));
fprintf(stderr, "%d: %s error %s, %d/%d `%s'\n",
line, type, eprint(err), len,
sizeof(erbuf), erbuf);
status = 1;
} else if (err == 0 && opt('C', f1)) {
/* unexpected success */
fprintf(stderr, "%d: %s should have given REG_%s\n",
line, type, f2);
status = 1;
err = 1; /* so we won't try regexec */
}
if (err != 0) {
regfree(&re);
return;
}
strcpy(f2copy, f2);
fixstr(f2copy);
if (options('e', f1)&REG_STARTEND) {
if (strchr(f2, '(') == NULL || strchr(f2, ')') == NULL)
fprintf(stderr, "%d: bad STARTEND syntax\n", line);
subs[0].rm_so = strchr(f2, '(') - f2 + 1;
subs[0].rm_eo = strchr(f2, ')') - f2;
}
err = regexec(&re, f2copy, NSUBS, subs, options('e', f1));
if (err != 0 && (f3 != NULL || err != REG_NOMATCH)) {
/* unexpected error or wrong error */
len = regerror(err, &re, erbuf, sizeof(erbuf));
fprintf(stderr, "%d: %s exec error %s, %d/%d `%s'\n",
line, type, eprint(err), len,
sizeof(erbuf), erbuf);
status = 1;
} else if (err != 0) {
/* nothing more to check */
} else if (f3 == NULL) {
/* unexpected success */
fprintf(stderr, "%d: %s exec should have failed\n",
line, type);
status = 1;
err = 1; /* just on principle */
} else if (opts&REG_NOSUB) {
/* nothing more to check */
} else if ((grump = check(f2, subs[0], f3)) != NULL) {
fprintf(stderr, "%d: %s %s\n", line, type, grump);
status = 1;
err = 1;
}
if (err != 0 || f4 == NULL) {
regfree(&re);
return;
}
for (i = 1; i < NSHOULD; i++)
should[i] = NULL;
nshould = split(f4, should+1, NSHOULD-1, ",");
if (nshould == 0) {
nshould = 1;
should[1] = "";
}
for (i = 1; i < NSUBS; i++) {
grump = check(f2, subs[i], should[i]);
if (grump != NULL) {
fprintf(stderr, "%d: %s $%d %s\n", line,
type, i, grump);
status = 1;
err = 1;
}
}
regfree(&re);
}
/*
- options - pick options out of a regression-test string
== int options(int type, char *s);
*/
int
options(type, s)
int type; /* 'c' compile, 'e' exec */
char *s;
{
register char *p;
register int o = (type == 'c') ? copts : eopts;
register char *legal = (type == 'c') ? "bisnmp" : "^$#tl";
for (p = s; *p != '\0'; p++)
if (strchr(legal, *p) != NULL)
switch (*p) {
case 'b':
o &= ~REG_EXTENDED;
break;
case 'i':
o |= REG_ICASE;
break;
case 's':
o |= REG_NOSUB;
break;
case 'n':
o |= REG_NEWLINE;
break;
case 'm':
o &= ~REG_EXTENDED;
o |= REG_NOSPEC;
break;
case 'p':
o |= REG_PEND;
break;
case '^':
o |= REG_NOTBOL;
break;
case '$':
o |= REG_NOTEOL;
break;
case '#':
o |= REG_STARTEND;
break;
case 't': /* trace */
o |= REG_TRACE;
break;
case 'l': /* force long representation */
o |= REG_LARGE;
break;
case 'r': /* force backref use */
o |= REG_BACKR;
break;
}
return(o);
}
/*
- opt - is a particular option in a regression string?
== int opt(int c, char *s);
*/
int /* predicate */
opt(c, s)
int c;
char *s;
{
return(strchr(s, c) != NULL);
}
/*
- fixstr - transform magic characters in strings
== void fixstr(register char *p);
*/
void
fixstr(p)
register char *p;
{
if (p == NULL)
return;
for (; *p != '\0'; p++)
if (*p == 'N')
*p = '\n';
else if (*p == 'T')
*p = '\t';
else if (*p == 'S')
*p = ' ';
else if (*p == 'Z')
*p = '\0';
}
/*
- check - check a substring match
== char *check(char *str, regmatch_t sub, char *should);
*/
char * /* NULL or complaint */
check(str, sub, should)
char *str;
regmatch_t sub;
char *should;
{
register int len;
register int shlen;
register char *p;
static char grump[500];
register char *at = NULL;
if (should != NULL && strcmp(should, "-") == 0)
should = NULL;
if (should != NULL && should[0] == '@') {
at = should + 1;
should = "";
}
/* check rm_so and rm_eo for consistency */
if (sub.rm_so > sub.rm_eo || (sub.rm_so == -1 && sub.rm_eo != -1) ||
(sub.rm_so != -1 && sub.rm_eo == -1) ||
(sub.rm_so != -1 && sub.rm_so < 0) ||
(sub.rm_eo != -1 && sub.rm_eo < 0) ) {
sprintf(grump, "start %ld end %ld", (long)sub.rm_so,
(long)sub.rm_eo);
return(grump);
}
/* check for no match */
if (sub.rm_so == -1 && should == NULL)
return(NULL);
if (sub.rm_so == -1)
return("did not match");
/* check for in range */
if (sub.rm_eo > strlen(str)) {
sprintf(grump, "start %ld end %ld, past end of string",
(long)sub.rm_so, (long)sub.rm_eo);
return(grump);
}
len = (int)(sub.rm_eo - sub.rm_so);
shlen = (int)strlen(should);
p = str + sub.rm_so;
/* check for not supposed to match */
if (should == NULL) {
sprintf(grump, "matched `%.*s'", len, p);
return(grump);
}
/* check for wrong match */
if (len != shlen || strncmp(p, should, (size_t)shlen) != 0) {
sprintf(grump, "matched `%.*s' instead", len, p);
return(grump);
}
if (shlen > 0)
return(NULL);
/* check null match in right place */
if (at == NULL)
return(NULL);
shlen = strlen(at);
if (shlen == 0)
shlen = 1; /* force check for end-of-string */
if (strncmp(p, at, shlen) != 0) {
sprintf(grump, "matched null at `%.20s'", p);
return(grump);
}
return(NULL);
}
/*
- eprint - convert error number to name
== static char *eprint(int err);
*/
static char *
eprint(err)
int err;
{
static char epbuf[100];
size_t len;
len = regerror(REG_ITOA|err, (regex_t *)NULL, epbuf, sizeof(epbuf));
assert(len <= sizeof(epbuf));
return(epbuf);
}
/*
- efind - convert error name to number
== static int efind(char *name);
*/
static int
efind(name)
char *name;
{
static char efbuf[100];
size_t n;
regex_t re;
sprintf(efbuf, "REG_%s", name);
assert(strlen(efbuf) < sizeof(efbuf));
re.re_endp = efbuf;
(void) regerror(REG_ATOI, &re, efbuf, sizeof(efbuf));
return(atoi(efbuf));
}

76
src/regex/mkh Normal file
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@@ -0,0 +1,76 @@
#! /bin/sh
# mkh - pull headers out of C source
PATH=/bin:/usr/bin ; export PATH
# egrep pattern to pick out marked lines
egrep='^ =([ ]|$)'
# Sed program to process marked lines into lines for the header file.
# The markers have already been removed. Two things are done here: removal
# of backslashed newlines, and some fudging of comments. The first is done
# because -o needs to have prototypes on one line to strip them down.
# Getting comments into the output is tricky; we turn C++-style // comments
# into /* */ comments, after altering any existing */'s to avoid trouble.
peel=' /\\$/N
/\\\n[ ]*/s///g
/\/\//s;\*/;* /;g
/\/\//s;//\(.*\);/*\1 */;'
for a
do
case "$a" in
-o) # old (pre-function-prototype) compiler
# add code to comment out argument lists
peel="$peel
"'/^\([^#\/][^\/]*[a-zA-Z0-9_)]\)(\(.*\))/s;;\1(/*\2*/);'
shift
;;
-b) # funny Berkeley __P macro
peel="$peel
"'/^\([^#\/][^\/]*[a-zA-Z0-9_)]\)(\(.*\))/s;;\1 __P((\2));'
shift
;;
-s) # compiler doesn't like `static foo();'
# add code to get rid of the `static'
peel="$peel
"'/^static[ ][^\/]*[a-zA-Z0-9_)](.*)/s;static.;;'
shift
;;
-p) # private declarations
egrep='^ ==([ ]|$)'
shift
;;
-i) # wrap in #ifndef, argument is name
ifndef="$2"
shift ; shift
;;
*) break
;;
esac
done
if test " $ifndef" != " "
then
echo "#ifndef $ifndef"
echo "#define $ifndef /* never again */"
fi
echo "/* ========= begin header generated by $0 ========= */"
echo '#ifdef __cplusplus'
echo 'extern "C" {'
echo '#endif'
for f
do
echo
echo "/* === $f === */"
egrep "$egrep" $f | sed 's/^ ==*[ ]//;s/^ ==*$//' | sed "$peel"
echo
done
echo '#ifdef __cplusplus'
echo '}'
echo '#endif'
echo "/* ========= end header generated by $0 ========= */"
if test " $ifndef" != " "
then
echo "#endif"
fi
exit 0

1603
src/regex/regcomp.c Normal file

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126
src/regex/regerror.c Normal file
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#include <sys/types.h>
#include <stdio.h>
#include <string.h>
#include <ctype.h>
#include <limits.h>
#include <stdlib.h>
#include <regex.h>
#include "utils.h"
#include "regerror.ih"
/*
= #define REG_OKAY 0
= #define REG_NOMATCH 1
= #define REG_BADPAT 2
= #define REG_ECOLLATE 3
= #define REG_ECTYPE 4
= #define REG_EESCAPE 5
= #define REG_ESUBREG 6
= #define REG_EBRACK 7
= #define REG_EPAREN 8
= #define REG_EBRACE 9
= #define REG_BADBR 10
= #define REG_ERANGE 11
= #define REG_ESPACE 12
= #define REG_BADRPT 13
= #define REG_EMPTY 14
= #define REG_ASSERT 15
= #define REG_INVARG 16
= #define REG_ATOI 255 // convert name to number (!)
= #define REG_ITOA 0400 // convert number to name (!)
*/
static struct rerr {
int code;
char *name;
char *explain;
} rerrs[] = {
REG_OKAY, "REG_OKAY", "no errors detected",
REG_NOMATCH, "REG_NOMATCH", "regexec() failed to match",
REG_BADPAT, "REG_BADPAT", "invalid regular expression",
REG_ECOLLATE, "REG_ECOLLATE", "invalid collating element",
REG_ECTYPE, "REG_ECTYPE", "invalid character class",
REG_EESCAPE, "REG_EESCAPE", "trailing backslash (\\)",
REG_ESUBREG, "REG_ESUBREG", "invalid backreference number",
REG_EBRACK, "REG_EBRACK", "brackets ([ ]) not balanced",
REG_EPAREN, "REG_EPAREN", "parentheses not balanced",
REG_EBRACE, "REG_EBRACE", "braces not balanced",
REG_BADBR, "REG_BADBR", "invalid repetition count(s)",
REG_ERANGE, "REG_ERANGE", "invalid character range",
REG_ESPACE, "REG_ESPACE", "out of memory",
REG_BADRPT, "REG_BADRPT", "repetition-operator operand invalid",
REG_EMPTY, "REG_EMPTY", "empty (sub)expression",
REG_ASSERT, "REG_ASSERT", "\"can't happen\" -- you found a bug",
REG_INVARG, "REG_INVARG", "invalid argument to regex routine",
-1, "", "*** unknown regexp error code ***",
};
/*
- regerror - the interface to error numbers
= extern size_t regerror(int, const regex_t *, char *, size_t);
*/
/* ARGSUSED */
size_t
regerror(errcode, preg, errbuf, errbuf_size)
int errcode;
const regex_t *preg;
char *errbuf;
size_t errbuf_size;
{
register struct rerr *r;
register size_t len;
register int target = errcode &~ REG_ITOA;
register char *s;
char convbuf[50];
if (errcode == REG_ATOI)
s = regatoi(preg, convbuf);
else {
for (r = rerrs; r->code >= 0; r++)
if (r->code == target)
break;
if (errcode&REG_ITOA) {
if (r->code >= 0)
(void) strcpy(convbuf, r->name);
else
sprintf(convbuf, "REG_0x%x", target);
assert(strlen(convbuf) < sizeof(convbuf));
s = convbuf;
} else
s = r->explain;
}
len = strlen(s) + 1;
if (errbuf_size > 0) {
if (errbuf_size > len)
(void) strcpy(errbuf, s);
else {
(void) strncpy(errbuf, s, errbuf_size-1);
errbuf[errbuf_size-1] = '\0';
}
}
return(len);
}
/*
- regatoi - internal routine to implement REG_ATOI
== static char *regatoi(const regex_t *preg, char *localbuf);
*/
static char *
regatoi(preg, localbuf)
const regex_t *preg;
char *localbuf;
{
register struct rerr *r;
for (r = rerrs; r->code >= 0; r++)
if (strcmp(r->name, preg->re_endp) == 0)
break;
if (r->code < 0)
return("0");
sprintf(localbuf, "%d", r->code);
return(localbuf);
}

509
src/regex/regex.3 Normal file
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@@ -0,0 +1,509 @@
.TH REGEX 3 "25 Sept 1997"
.BY "Henry Spencer"
.de ZR
.\" one other place knows this name: the SEE ALSO section
.IR regex (7) \\$1
..
.SH NAME
regcomp, regexec, regerror, regfree \- regular-expression library
.SH SYNOPSIS
.ft B
.\".na
#include <sys/types.h>
.br
#include <regex.h>
.HP 10
int regcomp(regex_t\ *preg, const\ char\ *pattern, int\ cflags);
.HP
int\ regexec(const\ regex_t\ *preg, const\ char\ *string,
size_t\ nmatch, regmatch_t\ pmatch[], int\ eflags);
.HP
size_t\ regerror(int\ errcode, const\ regex_t\ *preg,
char\ *errbuf, size_t\ errbuf_size);
.HP
void\ regfree(regex_t\ *preg);
.\".ad
.ft
.SH DESCRIPTION
These routines implement POSIX 1003.2 regular expressions (``RE''s);
see
.ZR .
.I Regcomp
compiles an RE written as a string into an internal form,
.I regexec
matches that internal form against a string and reports results,
.I regerror
transforms error codes from either into human-readable messages,
and
.I regfree
frees any dynamically-allocated storage used by the internal form
of an RE.
.PP
The header
.I <regex.h>
declares two structure types,
.I regex_t
and
.IR regmatch_t ,
the former for compiled internal forms and the latter for match reporting.
It also declares the four functions,
a type
.IR regoff_t ,
and a number of constants with names starting with ``REG_''.
.PP
.I Regcomp
compiles the regular expression contained in the
.I pattern
string,
subject to the flags in
.IR cflags ,
and places the results in the
.I regex_t
structure pointed to by
.IR preg .
.I Cflags
is the bitwise OR of zero or more of the following flags:
.IP REG_EXTENDED \w'REG_EXTENDED'u+2n
Compile modern (``extended'') REs,
rather than the obsolete (``basic'') REs that
are the default.
.IP REG_BASIC
This is a synonym for 0,
provided as a counterpart to REG_EXTENDED to improve readability.
This is an extension,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
.IP REG_NOSPEC
Compile with recognition of all special characters turned off.
All characters are thus considered ordinary,
so the ``RE'' is a literal string.
This is an extension,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
REG_EXTENDED and REG_NOSPEC may not be used
in the same call to
.IR regcomp .
.IP REG_ICASE
Compile for matching that ignores upper/lower case distinctions.
See
.ZR .
.IP REG_NOSUB
Compile for matching that need only report success or failure,
not what was matched.
.IP REG_NEWLINE
Compile for newline-sensitive matching.
By default, newline is a completely ordinary character with no special
meaning in either REs or strings.
With this flag,
`[^' bracket expressions and `.' never match newline,
a `^' anchor matches the null string after any newline in the string
in addition to its normal function,
and the `$' anchor matches the null string before any newline in the
string in addition to its normal function.
.IP REG_PEND
The regular expression ends,
not at the first NUL,
but just before the character pointed to by the
.I re_endp
member of the structure pointed to by
.IR preg .
The
.I re_endp
member is of type
.IR const\ char\ * .
This flag permits inclusion of NULs in the RE;
they are considered ordinary characters.
This is an extension,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
.PP
When successful,
.I regcomp
returns 0 and fills in the structure pointed to by
.IR preg .
One member of that structure
(other than
.IR re_endp )
is publicized:
.IR re_nsub ,
of type
.IR size_t ,
contains the number of parenthesized subexpressions within the RE
(except that the value of this member is undefined if the
REG_NOSUB flag was used).
If
.I regcomp
fails, it returns a non-zero error code;
see DIAGNOSTICS.
.PP
.I Regexec
matches the compiled RE pointed to by
.I preg
against the
.IR string ,
subject to the flags in
.IR eflags ,
and reports results using
.IR nmatch ,
.IR pmatch ,
and the returned value.
The RE must have been compiled by a previous invocation of
.IR regcomp .
The compiled form is not altered during execution of
.IR regexec ,
so a single compiled RE can be used simultaneously by multiple threads.
.PP
By default,
the NUL-terminated string pointed to by
.I string
is considered to be the text of an entire line,
with the NUL indicating the end of the line.
(That is,
any other end-of-line marker is considered to have been removed
and replaced by the NUL.)
The
.I eflags
argument is the bitwise OR of zero or more of the following flags:
.IP REG_NOTBOL \w'REG_STARTEND'u+2n
The first character of
the string
is not the beginning of a line, so the `^' anchor should not match before it.
This does not affect the behavior of newlines under REG_NEWLINE.
.IP REG_NOTEOL
The NUL terminating
the string
does not end a line, so the `$' anchor should not match before it.
This does not affect the behavior of newlines under REG_NEWLINE.
.IP REG_STARTEND
The string is considered to start at
\fIstring\fR\ + \fIpmatch\fR[0].\fIrm_so\fR
and to have a terminating NUL located at
\fIstring\fR\ + \fIpmatch\fR[0].\fIrm_eo\fR
(there need not actually be a NUL at that location),
regardless of the value of
.IR nmatch .
See below for the definition of
.IR pmatch
and
.IR nmatch .
This is an extension,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
Note that a non-zero \fIrm_so\fR does not imply REG_NOTBOL;
REG_STARTEND affects only the location of the string,
not how it is matched.
.PP
See
.ZR
for a discussion of what is matched in situations where an RE or a
portion thereof could match any of several substrings of
.IR string .
.PP
Normally,
.I regexec
returns 0 for success and the non-zero code REG_NOMATCH for failure.
Other non-zero error codes may be returned in exceptional situations;
see DIAGNOSTICS.
.PP
If REG_NOSUB was specified in the compilation of the RE,
or if
.I nmatch
is 0,
.I regexec
ignores the
.I pmatch
argument (but see below for the case where REG_STARTEND is specified).
Otherwise,
.I pmatch
points to an array of
.I nmatch
structures of type
.IR regmatch_t .
Such a structure has at least the members
.I rm_so
and
.IR rm_eo ,
both of type
.I regoff_t
(a signed arithmetic type at least as large as an
.I off_t
and a
.IR ssize_t ),
containing respectively the offset of the first character of a substring
and the offset of the first character after the end of the substring.
Offsets are measured from the beginning of the
.I string
argument given to
.IR regexec .
An empty substring is denoted by equal offsets,
both indicating the character following the empty substring.
.PP
The 0th member of the
.I pmatch
array is filled in to indicate what substring of
.I string
was matched by the entire RE.
Remaining members report what substring was matched by parenthesized
subexpressions within the RE;
member
.I i
reports subexpression
.IR i ,
with subexpressions counted (starting at 1) by the order of their opening
parentheses in the RE, left to right.
Unused entries in the array\(emcorresponding either to subexpressions that
did not participate in the match at all, or to subexpressions that do not
exist in the RE (that is, \fIi\fR\ > \fIpreg\fR\->\fIre_nsub\fR)\(emhave both
.I rm_so
and
.I rm_eo
set to \-1.
If a subexpression participated in the match several times,
the reported substring is the last one it matched.
(Note, as an example in particular, that when the RE `(b*)+' matches `bbb',
the parenthesized subexpression matches the three `b's and then
an infinite number of empty strings following the last `b',
so the reported substring is one of the empties.)
.PP
If REG_STARTEND is specified,
.I pmatch
must point to at least one
.I regmatch_t
(even if
.I nmatch
is 0 or REG_NOSUB was specified),
to hold the input offsets for REG_STARTEND.
Use for output is still entirely controlled by
.IR nmatch ;
if
.I nmatch
is 0 or REG_NOSUB was specified,
the value of
.IR pmatch [0]
will not be changed by a successful
.IR regexec .
.PP
.I Regerror
maps a non-zero
.I errcode
from either
.I regcomp
or
.I regexec
to a human-readable, printable message.
If
.I preg
is non-NULL,
the error code should have arisen from use of
the
.I regex_t
pointed to by
.IR preg ,
and if the error code came from
.IR regcomp ,
it should have been the result from the most recent
.I regcomp
using that
.IR regex_t .
.RI ( Regerror
may be able to supply a more detailed message using information
from the
.IR regex_t .)
.I Regerror
places the NUL-terminated message into the buffer pointed to by
.IR errbuf ,
limiting the length (including the NUL) to at most
.I errbuf_size
bytes.
If the whole message won't fit,
as much of it as will fit before the terminating NUL is supplied.
In any case,
the returned value is the size of buffer needed to hold the whole
message (including terminating NUL).
If
.I errbuf_size
is 0,
.I errbuf
is ignored but the return value is still correct.
.PP
If the
.I errcode
given to
.I regerror
is first ORed with REG_ITOA,
the ``message'' that results is the printable name of the error code,
e.g. ``REG_NOMATCH'',
rather than an explanation thereof.
If
.I errcode
is REG_ATOI,
then
.I preg
shall be non-NULL and the
.I re_endp
member of the structure it points to
must point to the printable name of an error code;
in this case, the result in
.I errbuf
is the decimal digits of
the numeric value of the error code
(0 if the name is not recognized).
REG_ITOA and REG_ATOI are intended primarily as debugging facilities;
they are extensions,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
Be warned also that they are considered experimental and changes are possible.
.PP
.I Regfree
frees any dynamically-allocated storage associated with the compiled RE
pointed to by
.IR preg .
The remaining
.I regex_t
is no longer a valid compiled RE
and the effect of supplying it to
.I regexec
or
.I regerror
is undefined.
.PP
None of these functions references global variables except for tables
of constants;
all are safe for use from multiple threads if the arguments are safe.
.SH IMPLEMENTATION CHOICES
There are a number of decisions that 1003.2 leaves up to the implementor,
either by explicitly saying ``undefined'' or by virtue of them being
forbidden by the RE grammar.
This implementation treats them as follows.
.PP
See
.ZR
for a discussion of the definition of case-independent matching.
.PP
There is no particular limit on the length of REs,
except insofar as memory is limited.
Memory usage is approximately linear in RE size, and largely insensitive
to RE complexity, except for bounded repetitions.
See BUGS for one short RE using them
that will run almost any system out of memory.
.PP
A backslashed character other than one specifically given a magic meaning
by 1003.2 (such magic meanings occur only in obsolete [``basic''] REs)
is taken as an ordinary character.
.PP
Any unmatched [ is a REG_EBRACK error.
.PP
Equivalence classes cannot begin or end bracket-expression ranges.
The endpoint of one range cannot begin another.
.PP
RE_DUP_MAX, the limit on repetition counts in bounded repetitions, is 255.
.PP
A repetition operator (?, *, +, or bounds) cannot follow another
repetition operator.
A repetition operator cannot begin an expression or subexpression
or follow `^' or `|'.
.PP
`|' cannot appear first or last in a (sub)expression or after another `|',
i.e. an operand of `|' cannot be an empty subexpression.
An empty parenthesized subexpression, `()', is legal and matches an
empty (sub)string.
An empty string is not a legal RE.
.PP
A `{' followed by a digit is considered the beginning of bounds for a
bounded repetition, which must then follow the syntax for bounds.
A `{' \fInot\fR followed by a digit is considered an ordinary character.
.PP
`^' and `$' beginning and ending subexpressions in obsolete (``basic'')
REs are anchors, not ordinary characters.
.SH SEE ALSO
grep(1), regex(7)
.PP
POSIX 1003.2, sections 2.8 (Regular Expression Notation)
and
B.5 (C Binding for Regular Expression Matching).
.SH DIAGNOSTICS
Non-zero error codes from
.I regcomp
and
.I regexec
include the following:
.PP
.nf
.ta \w'REG_ECOLLATE'u+3n
REG_NOMATCH regexec() failed to match
REG_BADPAT invalid regular expression
REG_ECOLLATE invalid collating element
REG_ECTYPE invalid character class
REG_EESCAPE \e applied to unescapable character
REG_ESUBREG invalid backreference number
REG_EBRACK brackets [ ] not balanced
REG_EPAREN parentheses ( ) not balanced
REG_EBRACE braces { } not balanced
REG_BADBR invalid repetition count(s) in { }
REG_ERANGE invalid character range in [ ]
REG_ESPACE ran out of memory
REG_BADRPT ?, *, or + operand invalid
REG_EMPTY empty (sub)expression
REG_ASSERT ``can't happen''\(emyou found a bug
REG_INVARG invalid argument, e.g. negative-length string
.fi
.SH HISTORY
Written by Henry Spencer,
henry@zoo.toronto.edu.
.SH BUGS
This is an alpha release with known defects.
Please report problems.
.PP
There is one known functionality bug.
The implementation of internationalization is incomplete:
the locale is always assumed to be the default one of 1003.2,
and only the collating elements etc. of that locale are available.
.PP
The back-reference code is subtle and doubts linger about its correctness
in complex cases.
.PP
.I Regexec
performance is poor.
This will improve with later releases.
.I Nmatch
exceeding 0 is expensive;
.I nmatch
exceeding 1 is worse.
.I Regexec
is largely insensitive to RE complexity \fIexcept\fR that back
references are massively expensive.
RE length does matter; in particular, there is a strong speed bonus
for keeping RE length under about 30 characters,
with most special characters counting roughly double.
.PP
.I Regcomp
implements bounded repetitions by macro expansion,
which is costly in time and space if counts are large
or bounded repetitions are nested.
An RE like, say,
`((((a{1,100}){1,100}){1,100}){1,100}){1,100}'
will (eventually) run almost any existing machine out of swap space.
.PP
There are suspected problems with response to obscure error conditions.
Notably,
certain kinds of internal overflow,
produced only by truly enormous REs or by multiply nested bounded repetitions,
are probably not handled well.
.PP
Due to a mistake in 1003.2, things like `a)b' are legal REs because `)' is
a special character only in the presence of a previous unmatched `('.
This can't be fixed until the spec is fixed.
.PP
The standard's definition of back references is vague.
For example, does
`a\e(\e(b\e)*\e2\e)*d' match `abbbd'?
Until the standard is clarified,
behavior in such cases should not be relied on.
.PP
The implementation of word-boundary matching is a bit of a kludge,
and bugs may lurk in combinations of word-boundary matching and anchoring.

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.TH REGEX 7 "25 Oct 1995"
.BY "Henry Spencer"
.SH NAME
regex \- POSIX 1003.2 regular expressions
.SH DESCRIPTION
Regular expressions (``RE''s),
as defined in POSIX 1003.2, come in two forms:
modern REs (roughly those of
.IR egrep ;
1003.2 calls these ``extended'' REs)
and obsolete REs (roughly those of
.IR ed ;
1003.2 ``basic'' REs).
Obsolete REs mostly exist for backward compatibility in some old programs;
they will be discussed at the end.
1003.2 leaves some aspects of RE syntax and semantics open;
`\(dg' marks decisions on these aspects that
may not be fully portable to other 1003.2 implementations.
.PP
A (modern) RE is one\(dg or more non-empty\(dg \fIbranches\fR,
separated by `|'.
It matches anything that matches one of the branches.
.PP
A branch is one\(dg or more \fIpieces\fR, concatenated.
It matches a match for the first, followed by a match for the second, etc.
.PP
A piece is an \fIatom\fR possibly followed
by a single\(dg `*', `+', `?', or \fIbound\fR.
An atom followed by `*' matches a sequence of 0 or more matches of the atom.
An atom followed by `+' matches a sequence of 1 or more matches of the atom.
An atom followed by `?' matches a sequence of 0 or 1 matches of the atom.
.PP
A \fIbound\fR is `{' followed by an unsigned decimal integer,
possibly followed by `,'
possibly followed by another unsigned decimal integer,
always followed by `}'.
The integers must lie between 0 and RE_DUP_MAX (255\(dg) inclusive,
and if there are two of them, the first may not exceed the second.
An atom followed by a bound containing one integer \fIi\fR
and no comma matches
a sequence of exactly \fIi\fR matches of the atom.
An atom followed by a bound
containing one integer \fIi\fR and a comma matches
a sequence of \fIi\fR or more matches of the atom.
An atom followed by a bound
containing two integers \fIi\fR and \fIj\fR matches
a sequence of \fIi\fR through \fIj\fR (inclusive) matches of the atom.
.PP
An atom is a regular expression enclosed in `()' (matching a match for the
regular expression),
an empty set of `()' (matching the null string)\(dg,
a \fIbracket expression\fR (see below), `.'
(matching any single character), `^' (matching the null string at the
beginning of a line), `$' (matching the null string at the
end of a line), a `\e' followed by one of the characters
`^.[$()|*+?{\e'
(matching that character taken as an ordinary character),
a `\e' followed by any other character\(dg
(matching that character taken as an ordinary character,
as if the `\e' had not been present\(dg),
or a single character with no other significance (matching that character).
A `{' followed by a character other than a digit is an ordinary
character, not the beginning of a bound\(dg.
It is illegal to end an RE with `\e'.
.PP
A \fIbracket expression\fR is a list of characters enclosed in `[]'.
It normally matches any single character from the list (but see below).
If the list begins with `^',
it matches any single character
(but see below) \fInot\fR from the rest of the list.
If two characters in the list are separated by `\-', this is shorthand
for the full \fIrange\fR of characters between those two (inclusive) in the
collating sequence,
e.g. `[0\-9]' in ASCII matches any decimal digit.
It is illegal\(dg for two ranges to share an
endpoint, e.g. `a\-c\-e'.
Ranges are very collating-sequence-dependent,
and portable programs should avoid relying on them.
.PP
To include a literal `]' in the list, make it the first character
(following a possible `^').
To include a literal `\-', make it the first or last character,
or the second endpoint of a range.
To use a literal `\-' as the first endpoint of a range,
enclose it in `[.' and `.]' to make it a collating element (see below).
With the exception of these and some combinations using `[' (see next
paragraphs), all other special characters, including `\e', lose their
special significance within a bracket expression.
.PP
Within a bracket expression, a collating element (a character,
a multi-character sequence that collates as if it were a single character,
or a collating-sequence name for either)
enclosed in `[.' and `.]' stands for the
sequence of characters of that collating element.
The sequence is a single element of the bracket expression's list.
A bracket expression containing a multi-character collating element
can thus match more than one character,
e.g. if the collating sequence includes a `ch' collating element,
then the RE `[[.ch.]]*c' matches the first five characters
of `chchcc'.
.PP
Within a bracket expression, a collating element enclosed in `[=' and
`=]' is an equivalence class, standing for the sequences of characters
of all collating elements equivalent to that one, including itself.
(If there are no other equivalent collating elements,
the treatment is as if the enclosing delimiters were `[.' and `.]'.)
For example, if o and \o'o^' are the members of an equivalence class,
then `[[=o=]]', `[[=\o'o^'=]]', and `[o\o'o^']' are all synonymous.
An equivalence class may not\(dg be an endpoint
of a range.
.PP
Within a bracket expression, the name of a \fIcharacter class\fR enclosed
in `[:' and `:]' stands for the list of all characters belonging to that
class.
Standard character class names are:
.PP
.RS
.nf
.ta 3c 6c 9c
alnum digit punct
alpha graph space
blank lower upper
cntrl print xdigit
.fi
.RE
.PP
These stand for the character classes defined in
.IR ctype (3).
A locale may provide others.
A character class may not be used as an endpoint of a range.
.PP
There are two special cases\(dg of bracket expressions:
the bracket expressions `[[:<:]]' and `[[:>:]]' match the null string at
the beginning and end of a word respectively.
A word is defined as a sequence of
word characters
which is neither preceded nor followed by
word characters.
A word character is an
.I alnum
character (as defined by
.IR ctype (3))
or an underscore.
This is an extension,
compatible with but not specified by POSIX 1003.2,
and should be used with
caution in software intended to be portable to other systems.
.PP
In the event that an RE could match more than one substring of a given
string,
the RE matches the one starting earliest in the string.
If the RE could match more than one substring starting at that point,
it matches the longest.
Subexpressions also match the longest possible substrings, subject to
the constraint that the whole match be as long as possible,
with subexpressions starting earlier in the RE taking priority over
ones starting later.
Note that higher-level subexpressions thus take priority over
their lower-level component subexpressions.
.PP
Match lengths are measured in characters, not collating elements.
A null string is considered longer than no match at all.
For example,
`bb*' matches the three middle characters of `abbbc',
`(wee|week)(knights|nights)' matches all ten characters of `weeknights',
when `(.*).*' is matched against `abc' the parenthesized subexpression
matches all three characters, and
when `(a*)*' is matched against `bc' both the whole RE and the parenthesized
subexpression match the null string.
.PP
If case-independent matching is specified,
the effect is much as if all case distinctions had vanished from the
alphabet.
When an alphabetic that exists in multiple cases appears as an
ordinary character outside a bracket expression, it is effectively
transformed into a bracket expression containing both cases,
e.g. `x' becomes `[xX]'.
When it appears inside a bracket expression, all case counterparts
of it are added to the bracket expression, so that (e.g.) `[x]'
becomes `[xX]' and `[^x]' becomes `[^xX]'.
.PP
No particular limit is imposed on the length of REs\(dg.
Programs intended to be portable should not employ REs longer
than 256 bytes,
as an implementation can refuse to accept such REs and remain
POSIX-compliant.
.PP
Obsolete (``basic'') regular expressions differ in several respects.
`|', `+', and `?' are ordinary characters and there is no equivalent
for their functionality.
The delimiters for bounds are `\e{' and `\e}',
with `{' and `}' by themselves ordinary characters.
The parentheses for nested subexpressions are `\e(' and `\e)',
with `(' and `)' by themselves ordinary characters.
`^' is an ordinary character except at the beginning of the
RE or\(dg the beginning of a parenthesized subexpression,
`$' is an ordinary character except at the end of the
RE or\(dg the end of a parenthesized subexpression,
and `*' is an ordinary character if it appears at the beginning of the
RE or the beginning of a parenthesized subexpression
(after a possible leading `^').
Finally, there is one new type of atom, a \fIback reference\fR:
`\e' followed by a non-zero decimal digit \fId\fR
matches the same sequence of characters
matched by the \fId\fRth parenthesized subexpression
(numbering subexpressions by the positions of their opening parentheses,
left to right),
so that (e.g.) `\e([bc]\e)\e1' matches `bb' or `cc' but not `bc'.
.SH SEE ALSO
regex(3)
.PP
POSIX 1003.2, section 2.8 (Regular Expression Notation).
.SH HISTORY
Written by Henry Spencer, based on the 1003.2 spec.
.SH BUGS
Having two kinds of REs is a botch.
.PP
The current 1003.2 spec says that `)' is an ordinary character in
the absence of an unmatched `(';
this was an unintentional result of a wording error,
and change is likely.
Avoid relying on it.
.PP
Back references are a dreadful botch,
posing major problems for efficient implementations.
They are also somewhat vaguely defined
(does
`a\e(\e(b\e)*\e2\e)*d' match `abbbd'?).
Avoid using them.
.PP
1003.2's specification of case-independent matching is vague.
The ``one case implies all cases'' definition given above
is current consensus among implementors as to the right interpretation.
.PP
The syntax for word boundaries is incredibly ugly.

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/*
* First, the stuff that ends up in the outside-world include file
= typedef off_t regoff_t;
= typedef struct {
= int re_magic;
= size_t re_nsub; // number of parenthesized subexpressions
= const char *re_endp; // end pointer for REG_PEND
= struct re_guts *re_g; // none of your business :-)
= } regex_t;
= typedef struct {
= regoff_t rm_so; // start of match
= regoff_t rm_eo; // end of match
= } regmatch_t;
*/
/*
* internals of regex_t
*/
#define MAGIC1 ((('r'^0200)<<8) | 'e')
/*
* The internal representation is a *strip*, a sequence of
* operators ending with an endmarker. (Some terminology etc. is a
* historical relic of earlier versions which used multiple strips.)
* Certain oddities in the representation are there to permit running
* the machinery backwards; in particular, any deviation from sequential
* flow must be marked at both its source and its destination. Some
* fine points:
*
* - OPLUS_ and O_PLUS are *inside* the loop they create.
* - OQUEST_ and O_QUEST are *outside* the bypass they create.
* - OCH_ and O_CH are *outside* the multi-way branch they create, while
* OOR1 and OOR2 are respectively the end and the beginning of one of
* the branches. Note that there is an implicit OOR2 following OCH_
* and an implicit OOR1 preceding O_CH.
*
* In state representations, an operator's bit is on to signify a state
* immediately *preceding* "execution" of that operator.
*/
typedef long sop; /* strip operator */
typedef long sopno;
#define OPRMASK 0x7c000000
#define OPDMASK 0x03ffffff
#define OPSHIFT (26)
#define OP(n) ((n)&OPRMASK)
#define OPND(n) ((n)&OPDMASK)
#define SOP(op, opnd) ((op)|(opnd))
/* operators meaning operand */
/* (back, fwd are offsets) */
#define OEND (1<<OPSHIFT) /* endmarker - */
#define OCHAR (2<<OPSHIFT) /* character unsigned char */
#define OBOL (3<<OPSHIFT) /* left anchor - */
#define OEOL (4<<OPSHIFT) /* right anchor - */
#define OANY (5<<OPSHIFT) /* . - */
#define OANYOF (6<<OPSHIFT) /* [...] set number */
#define OBACK_ (7<<OPSHIFT) /* begin \d paren number */
#define O_BACK (8<<OPSHIFT) /* end \d paren number */
#define OPLUS_ (9<<OPSHIFT) /* + prefix fwd to suffix */
#define O_PLUS (10<<OPSHIFT) /* + suffix back to prefix */
#define OQUEST_ (11<<OPSHIFT) /* ? prefix fwd to suffix */
#define O_QUEST (12<<OPSHIFT) /* ? suffix back to prefix */
#define OLPAREN (13<<OPSHIFT) /* ( fwd to ) */
#define ORPAREN (14<<OPSHIFT) /* ) back to ( */
#define OCH_ (15<<OPSHIFT) /* begin choice fwd to OOR2 */
#define OOR1 (16<<OPSHIFT) /* | pt. 1 back to OOR1 or OCH_ */
#define OOR2 (17<<OPSHIFT) /* | pt. 2 fwd to OOR2 or O_CH */
#define O_CH (18<<OPSHIFT) /* end choice back to OOR1 */
#define OBOW (19<<OPSHIFT) /* begin word - */
#define OEOW (20<<OPSHIFT) /* end word - */
/*
* Structure for [] character-set representation. Character sets are
* done as bit vectors, grouped 8 to a byte vector for compactness.
* The individual set therefore has both a pointer to the byte vector
* and a mask to pick out the relevant bit of each byte. A hash code
* simplifies testing whether two sets could be identical.
*
* This will get trickier for multicharacter collating elements. As
* preliminary hooks for dealing with such things, we also carry along
* a string of multi-character elements, and decide the size of the
* vectors at run time.
*/
typedef struct {
uch *ptr; /* -> uch [csetsize] */
uch mask; /* bit within array */
uch hash; /* hash code */
size_t smultis;
char *multis; /* -> char[smulti] ab\0cd\0ef\0\0 */
} cset;
/* note that CHadd and CHsub are unsafe, and CHIN doesn't yield 0/1 */
#define CHadd(cs, c) ((cs)->ptr[(uch)(c)] |= (cs)->mask, (cs)->hash += (c))
#define CHsub(cs, c) ((cs)->ptr[(uch)(c)] &= ~(cs)->mask, (cs)->hash -= (c))
#define CHIN(cs, c) ((cs)->ptr[(uch)(c)] & (cs)->mask)
#define MCadd(p, cs, cp) mcadd(p, cs, cp) /* regcomp() internal fns */
#define MCsub(p, cs, cp) mcsub(p, cs, cp)
#define MCin(p, cs, cp) mcin(p, cs, cp)
/* stuff for character categories */
typedef unsigned char cat_t;
/*
* main compiled-expression structure
*/
struct re_guts {
int magic;
# define MAGIC2 ((('R'^0200)<<8)|'E')
sop *strip; /* malloced area for strip */
int csetsize; /* number of bits in a cset vector */
int ncsets; /* number of csets in use */
cset *sets; /* -> cset [ncsets] */
uch *setbits; /* -> uch[csetsize][ncsets/CHAR_BIT] */
int cflags; /* copy of regcomp() cflags argument */
sopno nstates; /* = number of sops */
sopno firststate; /* the initial OEND (normally 0) */
sopno laststate; /* the final OEND */
int iflags; /* internal flags */
# define USEBOL 01 /* used ^ */
# define USEEOL 02 /* used $ */
# define BAD 04 /* something wrong */
int nbol; /* number of ^ used */
int neol; /* number of $ used */
int ncategories; /* how many character categories */
cat_t *categories; /* ->catspace[-CHAR_MIN] */
char *must; /* match must contain this string */
int mlen; /* length of must */
size_t nsub; /* copy of re_nsub */
int backrefs; /* does it use back references? */
sopno nplus; /* how deep does it nest +s? */
/* catspace must be last */
cat_t catspace[1]; /* actually [NC] */
};
/* misc utilities */
#define OUT (CHAR_MAX+1) /* a non-character value */
#define ISWORD(c) (isalnum(c) || (c) == '_')

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/*
* the outer shell of regexec()
*
* This file includes engine.c *twice*, after muchos fiddling with the
* macros that code uses. This lets the same code operate on two different
* representations for state sets.
*/
#include <sys/types.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <limits.h>
#include <ctype.h>
#include <regex.h>
#include "utils.h"
#include "regex2.h"
static int nope = 0; /* for use in asserts; shuts lint up */
/* macros for manipulating states, small version */
#define states unsigned
#define states1 unsigned /* for later use in regexec() decision */
#define CLEAR(v) ((v) = 0)
#define SET0(v, n) ((v) &= ~((unsigned)1 << (n)))
#define SET1(v, n) ((v) |= (unsigned)1 << (n))
#define ISSET(v, n) ((v) & ((unsigned)1 << (n)))
#define ASSIGN(d, s) ((d) = (s))
#define EQ(a, b) ((a) == (b))
#define STATEVARS int dummy /* dummy version */
#define STATESETUP(m, n) /* nothing */
#define STATETEARDOWN(m) /* nothing */
#define SETUP(v) ((v) = 0)
#define onestate unsigned
#define INIT(o, n) ((o) = (unsigned)1 << (n))
#define INC(o) ((o) <<= 1)
#define ISSTATEIN(v, o) ((v) & (o))
/* some abbreviations; note that some of these know variable names! */
/* do "if I'm here, I can also be there" etc without branches */
#define FWD(dst, src, n) ((dst) |= ((unsigned)(src)&(here)) << (n))
#define BACK(dst, src, n) ((dst) |= ((unsigned)(src)&(here)) >> (n))
#define ISSETBACK(v, n) ((v) & ((unsigned)here >> (n)))
/* function names */
#define SNAMES /* engine.c looks after details */
#include "engine.c"
/* now undo things */
#undef states
#undef CLEAR
#undef SET0
#undef SET1
#undef ISSET
#undef ASSIGN
#undef EQ
#undef STATEVARS
#undef STATESETUP
#undef STATETEARDOWN
#undef SETUP
#undef onestate
#undef INIT
#undef INC
#undef ISSTATEIN
#undef FWD
#undef BACK
#undef ISSETBACK
#undef SNAMES
/* macros for manipulating states, large version */
#define states char *
#define CLEAR(v) memset(v, 0, m->g->nstates)
#define SET0(v, n) ((v)[n] = 0)
#define SET1(v, n) ((v)[n] = 1)
#define ISSET(v, n) ((v)[n])
#define ASSIGN(d, s) memcpy(d, s, m->g->nstates)
#define EQ(a, b) (memcmp(a, b, m->g->nstates) == 0)
#define STATEVARS int vn; char *space
#define STATESETUP(m, nv) { (m)->space = malloc((nv)*(m)->g->nstates); \
if ((m)->space == NULL) return(REG_ESPACE); \
(m)->vn = 0; }
#define STATETEARDOWN(m) { free((m)->space); }
#define SETUP(v) ((v) = &m->space[m->vn++ * m->g->nstates])
#define onestate int
#define INIT(o, n) ((o) = (n))
#define INC(o) ((o)++)
#define ISSTATEIN(v, o) ((v)[o])
/* some abbreviations; note that some of these know variable names! */
/* do "if I'm here, I can also be there" etc without branches */
#define FWD(dst, src, n) ((dst)[here+(n)] |= (src)[here])
#define BACK(dst, src, n) ((dst)[here-(n)] |= (src)[here])
#define ISSETBACK(v, n) ((v)[here - (n)])
/* function names */
#define LNAMES /* flag */
#include "engine.c"
/*
- regexec - interface for matching
= extern int regexec(const regex_t *, const char *, size_t, \
= regmatch_t [], int);
= #define REG_NOTBOL 00001
= #define REG_NOTEOL 00002
= #define REG_STARTEND 00004
= #define REG_TRACE 00400 // tracing of execution
= #define REG_LARGE 01000 // force large representation
= #define REG_BACKR 02000 // force use of backref code
*
* We put this here so we can exploit knowledge of the state representation
* when choosing which matcher to call. Also, by this point the matchers
* have been prototyped.
*/
int /* 0 success, REG_NOMATCH failure */
regexec(preg, string, nmatch, pmatch, eflags)
const regex_t *preg;
const char *string;
size_t nmatch;
regmatch_t pmatch[];
int eflags;
{
register struct re_guts *g = preg->re_g;
#ifdef REDEBUG
# define GOODFLAGS(f) (f)
#else
# define GOODFLAGS(f) ((f)&(REG_NOTBOL|REG_NOTEOL|REG_STARTEND))
#endif
if (preg->re_magic != MAGIC1 || g->magic != MAGIC2)
return(REG_BADPAT);
assert(!(g->iflags&BAD));
if (g->iflags&BAD) /* backstop for no-debug case */
return(REG_BADPAT);
eflags = GOODFLAGS(eflags);
if (g->nstates <= CHAR_BIT*sizeof(states1) && !(eflags&REG_LARGE))
return(smatcher(g, (char *)string, nmatch, pmatch, eflags));
else
return(lmatcher(g, (char *)string, nmatch, pmatch, eflags));
}

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#include <sys/types.h>
#include <stdio.h>
#include <stdlib.h>
#include <regex.h>
#include "utils.h"
#include "regex2.h"
/*
- regfree - free everything
= extern void regfree(regex_t *);
*/
void
regfree(preg)
regex_t *preg;
{
register struct re_guts *g;
if (preg->re_magic != MAGIC1) /* oops */
return; /* nice to complain, but hard */
g = preg->re_g;
if (g == NULL || g->magic != MAGIC2) /* oops again */
return;
preg->re_magic = 0; /* mark it invalid */
g->magic = 0; /* mark it invalid */
if (g->strip != NULL)
free((char *)g->strip);
if (g->sets != NULL)
free((char *)g->sets);
if (g->setbits != NULL)
free((char *)g->setbits);
if (g->must != NULL)
free(g->must);
free((char *)g);
}

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#include <stdio.h>
#include <string.h>
/*
- split - divide a string into fields, like awk split()
= int split(char *string, char *fields[], int nfields, char *sep);
*/
int /* number of fields, including overflow */
split(string, fields, nfields, sep)
char *string;
char *fields[]; /* list is not NULL-terminated */
int nfields; /* number of entries available in fields[] */
char *sep; /* "" white, "c" single char, "ab" [ab]+ */
{
register char *p = string;
register char c; /* latest character */
register char sepc = sep[0];
register char sepc2;
register int fn;
register char **fp = fields;
register char *sepp;
register int trimtrail;
/* white space */
if (sepc == '\0') {
while ((c = *p++) == ' ' || c == '\t')
continue;
p--;
trimtrail = 1;
sep = " \t"; /* note, code below knows this is 2 long */
sepc = ' ';
} else
trimtrail = 0;
sepc2 = sep[1]; /* now we can safely pick this up */
/* catch empties */
if (*p == '\0')
return(0);
/* single separator */
if (sepc2 == '\0') {
fn = nfields;
for (;;) {
*fp++ = p;
fn--;
if (fn == 0)
break;
while ((c = *p++) != sepc)
if (c == '\0')
return(nfields - fn);
*(p-1) = '\0';
}
/* we have overflowed the fields vector -- just count them */
fn = nfields;
for (;;) {
while ((c = *p++) != sepc)
if (c == '\0')
return(fn);
fn++;
}
/* not reached */
}
/* two separators */
if (sep[2] == '\0') {
fn = nfields;
for (;;) {
*fp++ = p;
fn--;
while ((c = *p++) != sepc && c != sepc2)
if (c == '\0') {
if (trimtrail && **(fp-1) == '\0')
fn++;
return(nfields - fn);
}
if (fn == 0)
break;
*(p-1) = '\0';
while ((c = *p++) == sepc || c == sepc2)
continue;
p--;
}
/* we have overflowed the fields vector -- just count them */
fn = nfields;
while (c != '\0') {
while ((c = *p++) == sepc || c == sepc2)
continue;
p--;
fn++;
while ((c = *p++) != '\0' && c != sepc && c != sepc2)
continue;
}
/* might have to trim trailing white space */
if (trimtrail) {
p--;
while ((c = *--p) == sepc || c == sepc2)
continue;
p++;
if (*p != '\0') {
if (fn == nfields+1)
*p = '\0';
fn--;
}
}
return(fn);
}
/* n separators */
fn = 0;
for (;;) {
if (fn < nfields)
*fp++ = p;
fn++;
for (;;) {
c = *p++;
if (c == '\0')
return(fn);
sepp = sep;
while ((sepc = *sepp++) != '\0' && sepc != c)
continue;
if (sepc != '\0') /* it was a separator */
break;
}
if (fn < nfields)
*(p-1) = '\0';
for (;;) {
c = *p++;
sepp = sep;
while ((sepc = *sepp++) != '\0' && sepc != c)
continue;
if (sepc == '\0') /* it wasn't a separator */
break;
}
p--;
}
/* not reached */
}
#ifdef TEST_SPLIT
/*
* test program
* pgm runs regression
* pgm sep splits stdin lines by sep
* pgm str sep splits str by sep
* pgm str sep n splits str by sep n times
*/
int
main(argc, argv)
int argc;
char *argv[];
{
char buf[512];
register int n;
# define MNF 10
char *fields[MNF];
if (argc > 4)
for (n = atoi(argv[3]); n > 0; n--) {
(void) strcpy(buf, argv[1]);
}
else if (argc > 3)
for (n = atoi(argv[3]); n > 0; n--) {
(void) strcpy(buf, argv[1]);
(void) split(buf, fields, MNF, argv[2]);
}
else if (argc > 2)
dosplit(argv[1], argv[2]);
else if (argc > 1)
while (fgets(buf, sizeof(buf), stdin) != NULL) {
buf[strlen(buf)-1] = '\0'; /* stomp newline */
dosplit(buf, argv[1]);
}
else
regress();
exit(0);
}
dosplit(string, seps)
char *string;
char *seps;
{
# define NF 5
char *fields[NF];
register int nf;
nf = split(string, fields, NF, seps);
print(nf, NF, fields);
}
print(nf, nfp, fields)
int nf;
int nfp;
char *fields[];
{
register int fn;
register int bound;
bound = (nf > nfp) ? nfp : nf;
printf("%d:\t", nf);
for (fn = 0; fn < bound; fn++)
printf("\"%s\"%s", fields[fn], (fn+1 < nf) ? ", " : "\n");
}
#define RNF 5 /* some table entries know this */
struct {
char *str;
char *seps;
int nf;
char *fi[RNF];
} tests[] = {
"", " ", 0, { "" },
" ", " ", 2, { "", "" },
"x", " ", 1, { "x" },
"xy", " ", 1, { "xy" },
"x y", " ", 2, { "x", "y" },
"abc def g ", " ", 5, { "abc", "def", "", "g", "" },
" a bcd", " ", 4, { "", "", "a", "bcd" },
"a b c d e f", " ", 6, { "a", "b", "c", "d", "e f" },
" a b c d ", " ", 6, { "", "a", "b", "c", "d " },
"", " _", 0, { "" },
" ", " _", 2, { "", "" },
"x", " _", 1, { "x" },
"x y", " _", 2, { "x", "y" },
"ab _ cd", " _", 2, { "ab", "cd" },
" a_b c ", " _", 5, { "", "a", "b", "c", "" },
"a b c_d e f", " _", 6, { "a", "b", "c", "d", "e f" },
" a b c d ", " _", 6, { "", "a", "b", "c", "d " },
"", " _~", 0, { "" },
" ", " _~", 2, { "", "" },
"x", " _~", 1, { "x" },
"x y", " _~", 2, { "x", "y" },
"ab _~ cd", " _~", 2, { "ab", "cd" },
" a_b c~", " _~", 5, { "", "a", "b", "c", "" },
"a b_c d~e f", " _~", 6, { "a", "b", "c", "d", "e f" },
"~a b c d ", " _~", 6, { "", "a", "b", "c", "d " },
"", " _~-", 0, { "" },
" ", " _~-", 2, { "", "" },
"x", " _~-", 1, { "x" },
"x y", " _~-", 2, { "x", "y" },
"ab _~- cd", " _~-", 2, { "ab", "cd" },
" a_b c~", " _~-", 5, { "", "a", "b", "c", "" },
"a b_c-d~e f", " _~-", 6, { "a", "b", "c", "d", "e f" },
"~a-b c d ", " _~-", 6, { "", "a", "b", "c", "d " },
"", " ", 0, { "" },
" ", " ", 2, { "", "" },
"x", " ", 1, { "x" },
"xy", " ", 1, { "xy" },
"x y", " ", 2, { "x", "y" },
"abc def g ", " ", 4, { "abc", "def", "g", "" },
" a bcd", " ", 3, { "", "a", "bcd" },
"a b c d e f", " ", 6, { "a", "b", "c", "d", "e f" },
" a b c d ", " ", 6, { "", "a", "b", "c", "d " },
"", "", 0, { "" },
" ", "", 0, { "" },
"x", "", 1, { "x" },
"xy", "", 1, { "xy" },
"x y", "", 2, { "x", "y" },
"abc def g ", "", 3, { "abc", "def", "g" },
"\t a bcd", "", 2, { "a", "bcd" },
" a \tb\t c ", "", 3, { "a", "b", "c" },
"a b c d e ", "", 5, { "a", "b", "c", "d", "e" },
"a b\tc d e f", "", 6, { "a", "b", "c", "d", "e f" },
" a b c d e f ", "", 6, { "a", "b", "c", "d", "e f " },
NULL, NULL, 0, { NULL },
};
regress()
{
char buf[512];
register int n;
char *fields[RNF+1];
register int nf;
register int i;
register int printit;
register char *f;
for (n = 0; tests[n].str != NULL; n++) {
(void) strcpy(buf, tests[n].str);
fields[RNF] = NULL;
nf = split(buf, fields, RNF, tests[n].seps);
printit = 0;
if (nf != tests[n].nf) {
printf("split `%s' by `%s' gave %d fields, not %d\n",
tests[n].str, tests[n].seps, nf, tests[n].nf);
printit = 1;
} else if (fields[RNF] != NULL) {
printf("split() went beyond array end\n");
printit = 1;
} else {
for (i = 0; i < nf && i < RNF; i++) {
f = fields[i];
if (f == NULL)
f = "(NULL)";
if (strcmp(f, tests[n].fi[i]) != 0) {
printf("split `%s' by `%s', field %d is `%s', not `%s'\n",
tests[n].str, tests[n].seps,
i, fields[i], tests[n].fi[i]);
printit = 1;
}
}
}
if (printit)
print(nf, RNF, fields);
}
}
#endif

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# regular expression test set
# Lines are at least three fields, separated by one or more tabs. "" stands
# for an empty field. First field is an RE. Second field is flags. If
# C flag given, regcomp() is expected to fail, and the third field is the
# error name (minus the leading REG_).
#
# Otherwise it is expected to succeed, and the third field is the string to
# try matching it against. If there is no fourth field, the match is
# expected to fail. If there is a fourth field, it is the substring that
# the RE is expected to match. If there is a fifth field, it is a comma-
# separated list of what the subexpressions should match, with - indicating
# no match for that one. In both the fourth and fifth fields, a (sub)field
# starting with @ indicates that the (sub)expression is expected to match
# a null string followed by the stuff after the @; this provides a way to
# test where null strings match. The character `N' in REs and strings
# is newline, `S' is space, `T' is tab, `Z' is NUL.
#
# The full list of flags:
# - placeholder, does nothing
# b RE is a BRE, not an ERE
# & try it as both an ERE and a BRE
# C regcomp() error expected, third field is error name
# i REG_ICASE
# m ("mundane") REG_NOSPEC
# s REG_NOSUB (not really testable)
# n REG_NEWLINE
# ^ REG_NOTBOL
# $ REG_NOTEOL
# # REG_STARTEND (see below)
# p REG_PEND
#
# For REG_STARTEND, the start/end offsets are those of the substring
# enclosed in ().
# basics
a & a a
abc & abc abc
abc|de - abc abc
a|b|c - abc a
# parentheses and perversions thereof
a(b)c - abc abc
a\(b\)c b abc abc
a( C EPAREN
a( b a( a(
a\( - a( a(
a\( bC EPAREN
a\(b bC EPAREN
a(b C EPAREN
a(b b a(b a(b
# gag me with a right parenthesis -- 1003.2 goofed here (my fault, partly)
a) - a) a)
) - ) )
# end gagging (in a just world, those *should* give EPAREN)
a) b a) a)
a\) bC EPAREN
\) bC EPAREN
a()b - ab ab
a\(\)b b ab ab
# anchoring and REG_NEWLINE
^abc$ & abc abc
a^b - a^b
a^b b a^b a^b
a$b - a$b
a$b b a$b a$b
^ & abc @abc
$ & abc @
^$ & "" @
$^ - "" @
\($\)\(^\) b "" @
# stop retching, those are legitimate (although disgusting)
^^ - "" @
$$ - "" @
b$ & abNc
b$ &n abNc b
^b$ & aNbNc
^b$ &n aNbNc b
^$ &n aNNb @Nb
^$ n abc
^$ n abcN @
$^ n aNNb @Nb
\($\)\(^\) bn aNNb @Nb
^^ n^ aNNb @Nb
$$ n aNNb @NN
^a ^ a
a$ $ a
^a ^n aNb
^b ^n aNb b
a$ $n bNa
b$ $n bNa b
a*(^b$)c* - b b
a*\(^b$\)c* b b b
# certain syntax errors and non-errors
| C EMPTY
| b | |
* C BADRPT
* b * *
+ C BADRPT
? C BADRPT
"" &C EMPTY
() - abc @abc
\(\) b abc @abc
a||b C EMPTY
|ab C EMPTY
ab| C EMPTY
(|a)b C EMPTY
(a|)b C EMPTY
(*a) C BADRPT
(+a) C BADRPT
(?a) C BADRPT
({1}a) C BADRPT
\(\{1\}a\) bC BADRPT
(a|*b) C BADRPT
(a|+b) C BADRPT
(a|?b) C BADRPT
(a|{1}b) C BADRPT
^* C BADRPT
^* b * *
^+ C BADRPT
^? C BADRPT
^{1} C BADRPT
^\{1\} bC BADRPT
# metacharacters, backslashes
a.c & abc abc
a[bc]d & abd abd
a\*c & a*c a*c
a\\b & a\b a\b
a\\\*b & a\*b a\*b
a\bc & abc abc
a\ &C EESCAPE
a\\bc & a\bc a\bc
\{ bC BADRPT
a\[b & a[b a[b
a[b &C EBRACK
# trailing $ is a peculiar special case for the BRE code
a$ & a a
a$ & a$
a\$ & a
a\$ & a$ a$
a\\$ & a
a\\$ & a$
a\\$ & a\$
a\\$ & a\ a\
# back references, ugh
a\(b\)\2c bC ESUBREG
a\(b\1\)c bC ESUBREG
a\(b*\)c\1d b abbcbbd abbcbbd bb
a\(b*\)c\1d b abbcbd
a\(b*\)c\1d b abbcbbbd
^\(.\)\1 b abc
a\([bc]\)\1d b abcdabbd abbd b
a\(\([bc]\)\2\)*d b abbccd abbccd
a\(\([bc]\)\2\)*d b abbcbd
# actually, this next one probably ought to fail, but the spec is unclear
a\(\(b\)*\2\)*d b abbbd abbbd
# here is a case that no NFA implementation does right
\(ab*\)[ab]*\1 b ababaaa ababaaa a
# check out normal matching in the presence of back refs
\(a\)\1bcd b aabcd aabcd
\(a\)\1bc*d b aabcd aabcd
\(a\)\1bc*d b aabd aabd
\(a\)\1bc*d b aabcccd aabcccd
\(a\)\1bc*[ce]d b aabcccd aabcccd
^\(a\)\1b\(c\)*cd$ b aabcccd aabcccd
# ordinary repetitions
ab*c & abc abc
ab+c - abc abc
ab?c - abc abc
a\(*\)b b a*b a*b
a\(**\)b b ab ab
a\(***\)b bC BADRPT
*a b *a *a
**a b a a
***a bC BADRPT
# the dreaded bounded repetitions
{ & { {
{abc & {abc {abc
{1 C BADRPT
{1} C BADRPT
a{b & a{b a{b
a{1}b - ab ab
a\{1\}b b ab ab
a{1,}b - ab ab
a\{1,\}b b ab ab
a{1,2}b - aab aab
a\{1,2\}b b aab aab
a{1 C EBRACE
a\{1 bC EBRACE
a{1a C EBRACE
a\{1a bC EBRACE
a{1a} C BADBR
a\{1a\} bC BADBR
a{,2} - a{,2} a{,2}
a\{,2\} bC BADBR
a{,} - a{,} a{,}
a\{,\} bC BADBR
a{1,x} C BADBR
a\{1,x\} bC BADBR
a{1,x C EBRACE
a\{1,x bC EBRACE
a{300} C BADBR
a\{300\} bC BADBR
a{1,0} C BADBR
a\{1,0\} bC BADBR
ab{0,0}c - abcac ac
ab\{0,0\}c b abcac ac
ab{0,1}c - abcac abc
ab\{0,1\}c b abcac abc
ab{0,3}c - abbcac abbc
ab\{0,3\}c b abbcac abbc
ab{1,1}c - acabc abc
ab\{1,1\}c b acabc abc
ab{1,3}c - acabc abc
ab\{1,3\}c b acabc abc
ab{2,2}c - abcabbc abbc
ab\{2,2\}c b abcabbc abbc
ab{2,4}c - abcabbc abbc
ab\{2,4\}c b abcabbc abbc
((a{1,10}){1,10}){1,10} - a a a,a
# multiple repetitions
a** &C BADRPT
a++ C BADRPT
a?? C BADRPT
a*+ C BADRPT
a*? C BADRPT
a+* C BADRPT
a+? C BADRPT
a?* C BADRPT
a?+ C BADRPT
a{1}{1} C BADRPT
a*{1} C BADRPT
a+{1} C BADRPT
a?{1} C BADRPT
a{1}* C BADRPT
a{1}+ C BADRPT
a{1}? C BADRPT
a*{b} - a{b} a{b}
a\{1\}\{1\} bC BADRPT
a*\{1\} bC BADRPT
a\{1\}* bC BADRPT
# brackets, and numerous perversions thereof
a[b]c & abc abc
a[ab]c & abc abc
a[^ab]c & adc adc
a[]b]c & a]c a]c
a[[b]c & a[c a[c
a[-b]c & a-c a-c
a[^]b]c & adc adc
a[^-b]c & adc adc
a[b-]c & a-c a-c
a[b &C EBRACK
a[] &C EBRACK
a[1-3]c & a2c a2c
a[3-1]c &C ERANGE
a[1-3-5]c &C ERANGE
a[[.-.]--]c & a-c a-c
a[1- &C ERANGE
a[[. &C EBRACK
a[[.x &C EBRACK
a[[.x. &C EBRACK
a[[.x.] &C EBRACK
a[[.x.]] & ax ax
a[[.x,.]] &C ECOLLATE
a[[.one.]]b & a1b a1b
a[[.notdef.]]b &C ECOLLATE
a[[.].]]b & a]b a]b
a[[:alpha:]]c & abc abc
a[[:notdef:]]c &C ECTYPE
a[[: &C EBRACK
a[[:alpha &C EBRACK
a[[:alpha:] &C EBRACK
a[[:alpha,:] &C ECTYPE
a[[:]:]]b &C ECTYPE
a[[:-:]]b &C ECTYPE
a[[:alph:]] &C ECTYPE
a[[:alphabet:]] &C ECTYPE
[[:alnum:]]+ - -%@a0X- a0X
[[:alpha:]]+ - -%@aX0- aX
[[:blank:]]+ - aSSTb SST
[[:cntrl:]]+ - aNTb NT
[[:digit:]]+ - a019b 019
[[:graph:]]+ - Sa%bS a%b
[[:lower:]]+ - AabC ab
[[:print:]]+ - NaSbN aSb
[[:punct:]]+ - S%-&T %-&
[[:space:]]+ - aSNTb SNT
[[:upper:]]+ - aBCd BC
[[:xdigit:]]+ - p0f3Cq 0f3C
a[[=b=]]c & abc abc
a[[= &C EBRACK
a[[=b &C EBRACK
a[[=b= &C EBRACK
a[[=b=] &C EBRACK
a[[=b,=]] &C ECOLLATE
a[[=one=]]b & a1b a1b
# complexities
a(((b)))c - abc abc
a(b|(c))d - abd abd
a(b*|c)d - abbd abbd
# just gotta have one DFA-buster, of course
a[ab]{20} - aaaaabaaaabaaaabaaaab aaaaabaaaabaaaabaaaab
# and an inline expansion in case somebody gets tricky
a[ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab] - aaaaabaaaabaaaabaaaab aaaaabaaaabaaaabaaaab
# and in case somebody just slips in an NFA...
a[ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab][ab](wee|week)(knights|night) - aaaaabaaaabaaaabaaaabweeknights aaaaabaaaabaaaabaaaabweeknights
# fish for anomalies as the number of states passes 32
12345678901234567890123456789 - a12345678901234567890123456789b 12345678901234567890123456789
123456789012345678901234567890 - a123456789012345678901234567890b 123456789012345678901234567890
1234567890123456789012345678901 - a1234567890123456789012345678901b 1234567890123456789012345678901
12345678901234567890123456789012 - a12345678901234567890123456789012b 12345678901234567890123456789012
123456789012345678901234567890123 - a123456789012345678901234567890123b 123456789012345678901234567890123
# and one really big one, beyond any plausible word width
1234567890123456789012345678901234567890123456789012345678901234567890 - a1234567890123456789012345678901234567890123456789012345678901234567890b 1234567890123456789012345678901234567890123456789012345678901234567890
# fish for problems as brackets go past 8
[ab][cd][ef][gh][ij][kl][mn] - xacegikmoq acegikm
[ab][cd][ef][gh][ij][kl][mn][op] - xacegikmoq acegikmo
[ab][cd][ef][gh][ij][kl][mn][op][qr] - xacegikmoqy acegikmoq
[ab][cd][ef][gh][ij][kl][mn][op][q] - xacegikmoqy acegikmoq
# subtleties of matching
abc & xabcy abc
a\(b\)?c\1d b acd
aBc i Abc Abc
a[Bc]*d i abBCcd abBCcd
0[[:upper:]]1 &i 0a1 0a1
0[[:lower:]]1 &i 0A1 0A1
a[^b]c &i abc
a[^b]c &i aBc
a[^b]c &i adc adc
[a]b[c] - abc abc
[a]b[a] - aba aba
[abc]b[abc] - abc abc
[abc]b[abd] - abd abd
a(b?c)+d - accd accd
(wee|week)(knights|night) - weeknights weeknights
(we|wee|week|frob)(knights|night|day) - weeknights weeknights
a[bc]d - xyzaaabcaababdacd abd
a[ab]c - aaabc abc
abc s abc abc
a* & b @b
# Let's have some fun -- try to match a C comment.
# first the obvious, which looks okay at first glance...
/\*.*\*/ - /*x*/ /*x*/
# but...
/\*.*\*/ - /*x*/y/*z*/ /*x*/y/*z*/
# okay, we must not match */ inside; try to do that...
/\*([^*]|\*[^/])*\*/ - /*x*/ /*x*/
/\*([^*]|\*[^/])*\*/ - /*x*/y/*z*/ /*x*/
# but...
/\*([^*]|\*[^/])*\*/ - /*x**/y/*z*/ /*x**/y/*z*/
# and a still fancier version, which does it right (I think)...
/\*([^*]|\*+[^*/])*\*+/ - /*x*/ /*x*/
/\*([^*]|\*+[^*/])*\*+/ - /*x*/y/*z*/ /*x*/
/\*([^*]|\*+[^*/])*\*+/ - /*x**/y/*z*/ /*x**/
/\*([^*]|\*+[^*/])*\*+/ - /*x****/y/*z*/ /*x****/
/\*([^*]|\*+[^*/])*\*+/ - /*x**x*/y/*z*/ /*x**x*/
/\*([^*]|\*+[^*/])*\*+/ - /*x***x/y/*z*/ /*x***x/y/*z*/
# subexpressions
.* - abc abc -
a(b)(c)d - abcd abcd b,c
a(((b)))c - abc abc b,b,b
a(b|(c))d - abd abd b,-
a(b*|c|e)d - abbd abbd bb
a(b*|c|e)d - acd acd c
a(b*|c|e)d - ad ad @d
a(b?)c - abc abc b
a(b?)c - ac ac @c
a(b+)c - abc abc b
a(b+)c - abbbc abbbc bbb
a(b*)c - ac ac @c
(a|ab)(bc([de]+)f|cde) - abcdef abcdef a,bcdef,de
# the regression tester only asks for 9 subexpressions
a(b)(c)(d)(e)(f)(g)(h)(i)(j)k - abcdefghijk abcdefghijk b,c,d,e,f,g,h,i,j
a(b)(c)(d)(e)(f)(g)(h)(i)(j)(k)l - abcdefghijkl abcdefghijkl b,c,d,e,f,g,h,i,j,k
a([bc]?)c - abc abc b
a([bc]?)c - ac ac @c
a([bc]+)c - abc abc b
a([bc]+)c - abcc abcc bc
a([bc]+)bc - abcbc abcbc bc
a(bb+|b)b - abb abb b
a(bbb+|bb+|b)b - abb abb b
a(bbb+|bb+|b)b - abbb abbb bb
a(bbb+|bb+|b)bb - abbb abbb b
(.*).* - abcdef abcdef abcdef
(a*)* - bc @b @b
# do we get the right subexpression when it is used more than once?
a(b|c)*d - ad ad -
a(b|c)*d - abcd abcd c
a(b|c)+d - abd abd b
a(b|c)+d - abcd abcd c
a(b|c?)+d - ad ad @d
a(b|c?)+d - abcd abcd @d
a(b|c){0,0}d - ad ad -
a(b|c){0,1}d - ad ad -
a(b|c){0,1}d - abd abd b
a(b|c){0,2}d - ad ad -
a(b|c){0,2}d - abcd abcd c
a(b|c){0,}d - ad ad -
a(b|c){0,}d - abcd abcd c
a(b|c){1,1}d - abd abd b
a(b|c){1,1}d - acd acd c
a(b|c){1,2}d - abd abd b
a(b|c){1,2}d - abcd abcd c
a(b|c){1,}d - abd abd b
a(b|c){1,}d - abcd abcd c
a(b|c){2,2}d - acbd acbd b
a(b|c){2,2}d - abcd abcd c
a(b|c){2,4}d - abcd abcd c
a(b|c){2,4}d - abcbd abcbd b
a(b|c){2,4}d - abcbcd abcbcd c
a(b|c){2,}d - abcd abcd c
a(b|c){2,}d - abcbd abcbd b
a(b+|((c)*))+d - abd abd @d,@d,-
a(b+|((c)*))+d - abcd abcd @d,@d,-
# check out the STARTEND option
[abc] &# a(b)c b
[abc] &# a(d)c
[abc] &# a(bc)d b
[abc] &# a(dc)d c
. &# a()c
b.*c &# b(bc)c bc
b.* &# b(bc)c bc
.*c &# b(bc)c bc
# plain strings, with the NOSPEC flag
abc m abc abc
abc m xabcy abc
abc m xyz
a*b m aba*b a*b
a*b m ab
"" mC EMPTY
# cases involving NULs
aZb & a a
aZb &p a
aZb &p# (aZb) aZb
aZ*b &p# (ab) ab
a.b &# (aZb) aZb
a.* &# (aZb)c aZb
# word boundaries (ick)
[[:<:]]a & a a
[[:<:]]a & ba
[[:<:]]a & -a a
a[[:>:]] & a a
a[[:>:]] & ab
a[[:>:]] & a- a
[[:<:]]a.c[[:>:]] & axcd-dayc-dazce-abc abc
[[:<:]]a.c[[:>:]] & axcd-dayc-dazce-abc-q abc
[[:<:]]a.c[[:>:]] & axc-dayc-dazce-abc axc
[[:<:]]b.c[[:>:]] & a_bxc-byc_d-bzc-q bzc
[[:<:]].x..[[:>:]] & y_xa_-_xb_y-_xc_-axdc _xc_
[[:<:]]a_b[[:>:]] & x_a_b
# past problems, and suspected problems
(A[1])|(A[2])|(A[3])|(A[4])|(A[5])|(A[6])|(A[7])|(A[8])|(A[9])|(A[A]) - A1 A1
abcdefghijklmnop i abcdefghijklmnop abcdefghijklmnop
abcdefghijklmnopqrstuv i abcdefghijklmnopqrstuv abcdefghijklmnopqrstuv
(ALAK)|(ALT[AB])|(CC[123]1)|(CM[123]1)|(GAMC)|(LC[23][EO ])|(SEM[1234])|(SL[ES][12])|(SLWW)|(SLF )|(SLDT)|(VWH[12])|(WH[34][EW])|(WP1[ESN]) - CC11 CC11
CC[13]1|a{21}[23][EO][123][Es][12]a{15}aa[34][EW]aaaaaaa[X]a - CC11 CC11
Char \([a-z0-9_]*\)\[.* b Char xyz[k Char xyz[k xyz
a?b - ab ab
-\{0,1\}[0-9]*$ b -5 -5
a*a*a*a*a*a*a* & aaaaaa aaaaaa

22
src/regex/utils.h Normal file
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@@ -0,0 +1,22 @@
/* utility definitions */
#ifdef _POSIX2_RE_DUP_MAX
#define DUPMAX _POSIX2_RE_DUP_MAX
#else
#define DUPMAX 255
#endif
#define INFINITY (DUPMAX + 1)
#define NC (CHAR_MAX - CHAR_MIN + 1)
typedef unsigned char uch;
/* switch off assertions (if not already off) if no REDEBUG */
#ifndef REDEBUG
#ifndef NDEBUG
#define NDEBUG /* no assertions please */
#endif
#endif
#include <assert.h>
/* for old systems with bcopy() but no memmove() */
#ifdef USEBCOPY
#define memmove(d, s, c) bcopy(s, d, c)
#endif

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@@ -1,3 +0,0 @@
.emacs.desktop
build.local
update.log

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@@ -1,168 +0,0 @@
Build Instructions
------------------
I used SWIG (http://www.swig.org) to create the source code for the
extension module. This enabled me to only have to deal with a small
amount of code and only have to bother with the exceptional issues.
SWIG takes care of the rest and generates all the repetative code for
me. You don't need SWIG to build the extension module as all the
generated C++ code is included under the src directory.
I added a few minor features to SWIG to control some of the code
generation. If you want to play around with this you will need to get
a recent version of SWIG from their CVS or from a daily build. See
http://www.swig.org/ for details.
wxPython is organized as a Python package. This means that the
directory containing the results of the build process should be a
subdirectory of a directory on the PYTHONPATH. (And preferably should
be named wxPython.) You can control where the build process will dump
wxPython by setting the TARGETDIR variable for the build utility, (see
below.)
1. Build and install wxWindows as described in its BuildCVS.txt or
INSTALL.txt file.
1a. Building wxWindows on Unix/Linux/Etc.
For *nix systems I run configure with these flags:
--with-gtk
--with-libjpeg
--with-opengl
--without-odbc
--enable-unicode=no
--enable-threads=yes
--enable-socket=yes
--enable-static=no
--enable-shared=yes
--disable-std_iostreams
--enable-newgrid
You can use whatever flags you want, but these work for me. If you
want debug libraries, then you should add the "--enable-debug
--enable-mem_tracing" flags. I reccommend creating an empty build
directory, and then running make and configure from there. This
makes it easy to experiment with different configure options
without losing old builds.
Be sure to run "make install" to install the wxWindows headers and
shared library. You can check where the wxPython build will expect
to find them by running "wx-config --cflags" and "wx-config --libs"
1b. Building wxWindows on Win32.
For Win32 systems I use Visual C++ 6.0, but 5.0 should work. The
wxPython build utility currently does not support any other win32
compilers. Be sure to copy include/wx/msw/setup0.h to
include/wx/msw/setup.h and edit it for the options you want. At a
minimum you should set the following:
wxUSE_NEW_GRID 1
wxUSE_GLOBAL_MEMORY_OPERATORS 0
wxUSE_LIBTIFF 1
wxUSE_GLCANVAS 1
I also change these:
wxUSE_DIALUP_MANAGER 0
wxUSE_DYNLIB_CLASS 0
wxUSE_DOC_VIEW_ARCHITECTURE 0
wxUSE_MDI_ARCHITECTURE 0
wxUSE_PLOT 0
wxUSE_POSTSCRIPT_ARCHITECTURE_IN_MSW 0
There are probably other flags that can be disabled to remove
things not being used in wxPython, but I havn't investigated all
the potential configurations yet.
I find it easiest to build wxWindows using the makefiles, that way
I don't have to worry about what the IDE might be doing behind the
scenes that might screw things up. Simply go to the src/msw
directory and run:
nmake -f makefile.vc CRTFLAG=/MD EXTRAFLAGS=-D__NO_VC_CRTDBG__ dll pch
If you want to make a release build, add FINAL=1 to the nmake
command, as well as to build.local for wxPython, (see below.)
2. For the win32 platform you should be sure to set an environment
variable named WXWIN to be the path to the top of the wxWindows
source tree.
3. If you are working from a copy of the code retrieved from CVS, then
you will find wxPython in $WXWIN/wxPython. If you are working from
the tar.gz or .zip files then you will probably want to unpack
wxPython in the $WXWIN directory and rename the new directory to
wxPython (or use a symlink.) If you want to keep it in a separate
directory then you can change where the build.py tool expects to
find it by creating a file named build.local (see step 7 for more
examples about build.local,) containing something like this:
WXPSRCDIR = "~/MyStuff/wxPython-2.1.15/src"
If your wxPython sources are not under $WXWIN then you'll need to
adjust the remainder of these instructions accordingly.
4. At this point you may want to make an alias, symlink, script,
batch file, or whatever on the PATH that invokes
$WXWIN/wxPython/distrib/build.py to help simplify matters somewhat.
For example, on my win32 system I have a file named build.bat in a
directory on the PATH that contains:
python %WXWIN%/wxPython/distrib/build.py %1 %2 %3 %4 %5 %6
5. Change into the $(WXWIN)/wxPython/src directory.
6. If you don't use SWIG, or don't have a new enough version
installed, you may have to update the timestamps of the files it
generates so the make utility won't think they are out of date and
try to run SWIG to update them. The standard touch utility can do
this for you:
touch gtk/*.cpp gtk/*.py
or
touch msw\*.cpp msw\*.py
7. Type "build -b" to build wxPython and "build -i" to install it.
The build.py script actually generates a Makefile based on what it
finds on your system and information found in the build.cfg file.
If you have troubles building or you want it built or installed in
a different way, take a look at the doc-string in build.py. You may
be able to override configuration options in a file named
build.local. For example, you can set a new TARGETDIR (the
installation directory) just by creating a file named build.local
in your wxPython source directory and assign a value to it, like
this:
TARGETDIR = "/usr/local/lib/python1.5/site-packages/wxPython"
The build.local file is executed as Python code so you can do very
creative things there if you need to.
8. To build and install the add-on modules, change to the appropriate
directory under $WXWIN/wxPython/contrib and run the build utility
again.
9. Change to the $WXWIN/wxPython/demo directory.
10. Try executing the demo program. For example:
python demo.py
To run it without requiring a console on win32, you can use the
pythonw.exe version of Python either from the command line or from
a shortcut.

View File

@@ -1,675 +0,0 @@
CHANGES.txt for wxPython
----------------------------------------------------------------------
New in 2.2.1
------------
Various tweaks, fixes, missing methods, etc.
Added use of wxTaskBarIcon to the demo.
New in 2.2.0
------------
Added wxLog and friends.
Added wxFrame.ShowFullScreen for MSW.
Added PyShellWindow to the wxPython.lib package.
New in 2.1.16
-------------
Added an attribute named labelDelta to the generic buttons that
specifies how far to offset the label when the button is in the
depressed state.
Added wxTipProvider and friends. See the demo for an example.
wxGrid can now change the cell highlight colour.
Added wxDragImage.
Fixed printing on wxGTK.
Added wxDateTime, wxTimeSpan, and wxDateSpan to wxPython.utils.
Added wxCalendarCtrl.
WARNING: A while back I asked what should be done about the Magic
Method Names. (Methods that are automatically turned into event
handlers by virtue of their name.) The consensus was that it is more
confusing to have them than to try and expand them to have greater
coverage. I am finally getting around to removing the code that
generates the event binding. This means that if you are using any of
the following method names without a EVT_* call that you need to
modify your code to add the EVT_* to hook the event to the method.
OnChar
OnSize
OnEraseBackground
OnSysColourChanged
OnInitDialog
OnPaint
OnIdle
OnActivate
OnMenuHighlight
OnCloseWindow
OnScroll
Added wxSpinCtrl.
New in 2.1.15
-------------
Fixed wxTreeCtrl.HitTest to return both the tree item as well as the
flags that clairify where the click was in relation to the item.
Fixed thread state problem in wxTreeCtrl.GetBoundingBox and
GetSelections.
Fixed some problems in OGL. Also wxShape.SetClientData and
.GetClientData can now deal with Python objects.
Added wxListCtrl.SortItems and changed the demo to show how to use it.
Plugged a memory leak.
Wrapped the new wxGrid and friends. The old wxGrid class is no longer
available. There are some incompatibilities, and unfortunately the
new classes are not documented yet, (however the methods are more
consistent with each other now so you may be able to guess pretty
good...)
Updated filebrowsebutton.py and calendar.py with changes from their
authors. There is now a FileBrowseButtonWithHistory class (what a
mouthful!) and wxCalendar has printing support.
Added ActiveXWrapper to the library, and some good demos of it too.
It works great for embedding a COM (a.k.a OCX, a.k.a ActiveX) control
in a window and calling its methods. It actually creates a new class
on the fly that derives from wxWindow, the COM CoClass and others
needed to make it all work. The resulting class can be instantiated
just like wxWindow, used in sizers, etc. It also responds to all COM
method calls, properties, etc., and if the class or a mix-in has
matching method names, then the COM events will be propogated back to
them.
Created a typemap that allows a string to be used for parameters
expecting a wxColour type. The string is either a colour name as
defined in the wxColourDatabase, or a colour spec of the form
"#RRGGBB". See the wxStyledTextCtrl demo for an example.
I almost forgot to mention the wxStyledTextCtrl! Yes, the
wxStyledTextCtrl is finally in wxPython!! (And the crowd goes
wild...) There's no documentaTion yet (the crowd boos and hisses...)
but I've included a very readable source file in the
wxPython/demo/data directory, a couple fairly good examples, and you
can also refer to the Scintilla documentaion at
http://www.scintilla.org/ScintillaDoc.html to help fill in the gaps
until the docs are done. (The croud murmers contentedly as the tool
provider smiles convincingly and removes his flame-proof suit.)
What's new in 2.1.13
--------------------
Skipped a version number to match what has been released for wxGTK.
Updated wxMVCTree and added a demo for it, also fixed layout on GTK
and some flicker problems.
Added a wrapper class for the Visualization ToolKit (or VTK) in the
wxPython.lib.vtk module. (http://www.kitware.com/)
Fixed wxTreeCtrl.SetItemImage and GetItemImage to recognise the new
"which" parameter.
Added wxPython.lib.spashscreen from Mike Fletcher.
Added wxPython.lib.filebrowsebutton also from Mike Fletcher.
Renamed wxTreeCtrl.GetParent to GetItemParent to avoid a name clash
with wxWindow.GetParent.
Added wxIntersectRect to compute the intersection of two wxRect's.
It is used like this:
intersect = wxIntersectRect(rect1, rect2)
If r1 and r2 don't intersect then None is returned, otherwise the
rectangle representing the intersection is returned.
Some bug fixes for Clipboard and Drag-n-Drop.
Rotated text!!! WooHoo! (See wxDC.DrawRotatedText())
Added a set of Generic Buttons to the library. These are simple
window classes that look and act like native buttons, but you can have
a bit more control over them. The bezel width can be set in addition
to colours, fonts, etc. There is a ToggleButton as well as Bitmap
versions too. They should also serve as a good example of how to
create your own classes derived from wxControl.
The C++ wxToolBar classes have been redone, and so have the wxPython
wrappers. There have been slight modifications to some of the methods
but shouldn't impact anybody too much. I took the opportunity to add
support for setting user data on each toolbar tool. The new AddTool
methods look like this:
def AddTool(ID,
bitmap,
pushedBitmap = wxNullBitmap,
toggle = FALSE,
clientData = NULL,
shortHelpString = "",
longHelpString = "")
def AddSimpleTool(ID,
bitmap,
shortHelpString = "",
longHelpString = "",
toggle=FALSE)
There are also coresponding InsertTool and InsertSimpleTool methods
that additionally take an integer position as the first parameter.
Added a wrapper for the new PCX and TIFF ImageHandlers.
wxRect now simulates attributes named left, right, top and bottom.
Removed all non wx stuff from the glcanvas module since DA's PyOpenGL
is better and compatible with the wxGLCanvas. You can get it at
http://starship.python.net:9673/crew/da/Code/PyOpenGL.
Added some missing EVT_ functions.
Added Dirk Holtwic's editor classes to the wxPython.lib.editor
package.
Changed all the "LIST" parameter names to "choices" to match the docs.
More fixes for the wxFloatBar, and it now works on wxGTK even better
than wxMSW! (The feat is accomplished by using the wxTB_DOCKABLE
style flag instead of trying to float it ourselves.)
What's new in 2.1.11
--------------------
Skipped a few version numbers so wxMSW, wxGTK and wxPython are all
syncronized.
wxImage.SetData now makes a copy of the image data before giving it to
wxImage. I mistakenly thought that wxImage would copy the data
itself.
Fixed wxMSW's notebook so the pages get their size set as they are
being added. This should remove the need for our
wxNotebook.ResizeChildren hack.
wxPanels now support AutoLayout, and wxNotebooks and wxSplitterWindows
no longer tell their children to Layout() themselves. This will
probably only effect you if you have a wxWindow with AutoLayout inside
a notebook or splitter. If so, either change it to a wxPanel or add
an EVT_SIZE handler that calls Layout().
Fixed deadlock problem that happened when using threads.
Added new HTML printing classes.
Added wxWindow.GetHandle
Apparently wxMouseEvent.Position has been depreciated in wxWindows as
it is no longer available by default. You can use GetPositionTuple
(returning a tuple with x,y) instead, or GetPosition (returning a
wxPoint.)
Added wxPostEvent function that allows events to be posted and then
processed later. This is a thread-safe way to interact with the GUI
thread from other threads.
Added Clipboard and Drag-and-Drop classes.
Added wxFontEnumerator.
Many updates to wxMenu, wxMenuBar.
wxPyEvent and wxPyCommandEvent derived classes now give you the actual
Python object in the event handler instead of a new shadow.
Added a Calendar widget from Lorne White to the library.
Made some fixes to the wxFloatbar. It still has some troubles on
wxGTK...
Added an MVC tree control from Bryn Keller to the library.
What's new in 2.1.5
-------------------
This is a quick bug-fix release to take care of a few nasties that
crept in at the last minute before 2.1.4 was called done. No new
major features.
What's new in 2.1.4
--------------------
This release is NOT syncronized with a snapshot release of wxGTK or
wxMSW. For MSW this isn't much of a problem since you can get the
binaries from the web site. For other platforms you'll have to build
wxGTK from CVS. (See http://web.ukonline.co.uk/julian.smart/wxwin/cvs.htm)
To get the same set of sources from CVS that I used, checkout using
the wxPy-2-1-4 tag.
Now back to what's new...
Much more support for event-less callbacks and add-on modules.
Created add-on module with wxOGL classes.
Added wxWindow.GetChildren(). Be careful of this. It returns a *copy*
of the list of the window's children. While you are using the list if
anything changes in the real list (a child is deleted, etc.) then the
list you are holding will suddenly have window references to garbage
memory and your app will likely crash. But if you are careful it works
great!
Added a bunch of new and missing methods to wxTreeCrtl. The
SortChildren method is now supported, but currently only for the
default sort order.
Added typemaps for wxSize, wxPoint, wxRealPoint, and wxRect that allow
either the actual objects or Python sequence values to be used. For
example, the following are equivallent:
win = wxWindow(parent, size = wxSize(100, 100))
win = wxWindow(parent, size = (100, 100))
Super-charged the wxHtml module. You can now create your own tag
handlers and also have access to the parser and cell classes. There
is a tag handler in the library at wxPython.lib.wxpTag that
understands the WXP tag and is able to place wxPython windows on HTML
pages. See the demo for an example.
A bunch of the methods of wxMenuBar were previously ifdef'd out for
wxGTK. Added them back in since the methods exist now.
Wrapped the wxHtmlHelpController and related classes.
Wrapped the C++ versions of wxSizer and friends. The Python-only
versions are still in the library, but depreciated. (You will get a
warning message if you try to use them, but the warning can be
disabled.) The usage of the C++ versions is slightly different, and
the functionality of wxBorderSizer is now part of wxBoxSizer. I have
added a few methods to wxSizer to try and make the transition as
smooth as possible, I combined all Add methods into a single method
that handles all cases, added an AddMany method, etc. One step I did
not take was to make the default value of flag in the Add method be
wxGROW. This would have made it more backward compatible, but less
portable to and from wxWin C++ code. Please see the docs and demo for
further details.
Added wxPyEvent and wxPyCommandEvent classes, derived from wxEvent and
wxCommandEvent. Each of them has SetPyData and GetPyData methods that
accept or return a single Python object. You can use these classes
directly or derive from them to create your own types of event objects
that can pass through the wxWindows event system without loosing their
Python parts (as long as they are stored with SetPyData.) Stay tuned
for more info and examples in future releases.
Added wxPython.lib.grids as an example of how to derive a new sizer
from the C++ sizers. In this module you will find wxGridSizer and
wxFlexGridSizer. wxGridSizer arrainges its items in a grid in which
all the widths and heights are the same. wxFlexgridSizer allows
different widths and heights, and you can also specify rows and/or
columns that are growable. See the demo for a couple examples for how
to use them.
Added the wxValidator class, and created a class named wxPyValidator
that should be used for the base class of any Python validators. See
the demo for an example. Please note that you MUST implement a Clone
method in your validator classes because of the way some things work
in the underlying C++ library. I did not add wxTextValidator because
of some issues of how it transfers data to and from a wxString, which
in wxPython is automatically translated to and from Python strings, so
there would never be a concrete wxString that would hang around long
enough for the validator to do its job. On the other hand, it should
be real easy to duplicate the functionality of wxTextValidator in a
pure Python class derived from wxPyValidator.
I've finally added a feature that has been on my list for close to two
years! Ever wondered what that zero is for when you create your app
object? Well now you can leave it out or explicitly set it to a true
value. This value now controls what is to be done with sys.stdout and
sys.stderr. A false value leaves them alone, and a true value sets
them to an instance of wxPyOnDemandOutputWindow. (On windows the
default is true, on unix platforms the default is false.) This class
creates a frame containing a wxTextCtrl as soon as anything is written
to sys.stdout or sys.stderr. If you close the window it will come
back again the next time something is written. (You can call
app.RestoreStdio to turn this off.) If you would rather that the stdio be
redirected to a file, you can provide a second parameter to your app
object's constructor that is a filename. If you want to use your own
class instead of wxPyOnDemandOutputWindow you can either implement
RedirectStdio() in you app class or change the value of
wxApp.outputWindowClass like this:
class MyApp(wxApp):
outputWindowClass = MyClass
def OnInit(self):
frame = MyFrame()
self.SetTopWindow(frame)
return true
Please see the implementation of wxPyOnDemandOutputWindow and wxApp in
wx.py for more details. A few words of caution: if you are running
your app in a debugger, changing sys.stdout and sys.stderr is likely
to really screw things up.
Added wxCaret. Unfortunately it's author has still not documented it
in the wxWindows docs...
Some new 3rd party contributions in wxPython.lib. PyShell, in
shell.py is an interesting implementaion of an interactive Python
shell in wxWindows. floatbar.py has a class derived from wxToolBar
that can sense mouse drags and then reparent itself into another
frame. Moving the new frame close to where it came from puts the tool
bar back into the original parent. (Unfortunately there is currently
a bug in wxGTK's wxFrame.SetToolBar so the FloatBar has some
problems...)
What's new in 2.1b3
--------------------
This release is syncronized with release 2.1 snapshot 9 of wxWindows.
Switched to using SWIG from CVS (see http://swig.cs.uchicago.edu/cvs.html)
for some of the new features and such. Also they have encorporated my
patches so there is really no reason to stick with the current (very
old) release... This version of SWIG gives the following new
features:
1. Keyword arguments. You no longer have to specify all the
parameters with defaults to a method just to specify a
non-default value on the end. You can now do this instead:
win = wxWindow(parent, -1, style = mystyle)
2. There is now an an equivalence between Python's None and C++'s
NULL. This means that any methods that might return NULL will
now return None and you can use none where wxWindows might be
expecting NULL. This makes things much more snake-ish.
There is a new build system based on a new Python program instead of
raw makefiles. Now wxPython builds are virtually the same on MSW or
Unix systems. See the end of this file for new build instructions and
see distrib/build.py for more details.
wxDC.Bilt now includes the useMask parameter, and has been split into
two different versions. wxDC.BlitXY is like what was there before and
takes raw coordinants and sizes, and the new wxDC.Blit is for the new
interface using wxPoints and a wxSize.
What's new in 2.1b2
--------------------
Added the missing wxWindow.GetUpdateRegion() method.
Made a new change in SWIG (update your patches everybody) that
provides a fix for global shadow objects that get an exception in
their __del__ when their extension module has already been deleted.
It was only a 1 line change in .../SWIG/Modules/pycpp.cxx at about
line 496 if you want to do it by hand.
It is now possible to run through MainLoop more than once in any one
process. The cleanup that used to happen as MainLoop completed (and
prevented it from running again) has been delayed until the wxc module
is being unloaded by Python.
I fixed a bunch of stuff in the C++ version of wxGrid so it wouldn't
make wxPython look bad.
wxWindow.PopupMenu() now takes a wxPoint instead of x,y. Added
wxWindow.PopupMenuXY to be consistent with some other methods.
Added wxGrid.SetEditInPlace and wxGrid.GetEditInPlace.
You can now provide your own app.MainLoop method. See
wxPython/demo/demoMainLoop.py for an example and some explaination.
Got the in-place-edit for the wxTreeCtrl fixed and added some demo
code to show how to use it.
Put the wxIcon constructor back in for GTK as it now has one that
matches MSW's.
Added wxGrid.GetCells
Added wxSystemSettings static methods as functions with names like
wxSystemSettings_GetSystemColour.
Removed wxPyMenu since using menu callbacks have been depreciated in
wxWindows. Use wxMenu and events instead.
Added alternate wxBitmap constructor (for MSW only) as
wxBitmapFromData(data, type, width, height, depth = 1)
Added a helper function named wxPyTypeCast that can convert shadow
objects of one type into shadow objects of another type. (Like doing
a down-cast.) See the implementation in wx.py for some docs.
Fixed wxImage GetData and SetData to properly use String objects for
data transfer.
Added access methods to wxGridEvent.
New Makefile/Setup files supporting multiple dynamic extension modules
for unix systems.
Fixes for the wxGLCanvas demo to work around a strange bug in gtk.
SWIG support routines now compiled separately instead of being bundled
in wx.cpp.
What's new in 2.1b1
--------------------
Fixed wxComboBox.SetSelection so that it actually sets the selected
item. (Actually just removed it from wxPython and let it default to
wxChoice.SetSelection which was already doing the right thing.)
Added the Printing Framework.
Switched back to using the wxWindows DLL for the pre-built Win32
version. The problem was needing to reinitialize static class info
data after loading each extension module.
Lots of little tweaks and additions to reflect changes to various
wxWindows classes.
Fixed a bug with attaching objects to tree items. Actually was a
symptom of a larger problem with not obtaining the interpreter lock
when doing any Py_DECREFs.
wxSizer and friends. Sizers are layout tools that manage a colection
of windows and sizers. Different types of sizers apply different
types of layout algorithms. You saw it here first! These classes are
not even in the wxWindows C++ library yet!
What's new in 2.0b9
-------------------
Bug fix for ListCtrl in test4.py (Was a missing file... DSM!)
Bug fix for occassional GPF on Win32 systems upon termination of a
wxPython application.
Added wxListBox.GetSelections returning selections as a Tuple.
Added a wxTreeItemData that is able to hold any Python object and be
associated with items in a wxTreeCtrl. Added test pytree.py to show
this feature off.
Added wxSafeYield function.
OpenGL Canvas can be optionally compiled in to wxPython.
Awesome new Demo Framework for showing off wxPython and for learning
how it all works.
The pre-built Win32 version is no longer distributing the wxWindows
DLL. It is statically linked with the wxWindows library instead.
Added a couple missing items from the docs.
Added wxImage, wxImageHandler, wxPNGHandler, wxJPEGHandler,
wxGIFHandler and wxBMPHandler.
Added new methods to wxTextCtrl.
Fixed some problems with how SWIG was wrapping some wxTreeCtrl
methods.
What's new in 2.0b8
-------------------
Support for using Python threads in wxPython apps.
Several missing methods from various classes.
Various bug fixes.
What's new in 2.0b7
-------------------
Added DLG_PNT and DLG_SZE convienience methods to wxWindow class.
Added missing constructor and other methods for wxMenuItem.
What's new in 2.0b6
-------------------
Just a quickie update to fix the self-installer to be compatible with
Python 1.5.2b2's Registry settings.
What's new in 2.0b5
-------------------
Well obviously the numbering scheme has changed. I did this to
reflect the fact that this truly is the second major revision of
wxPython, (well the third actually if you count the one I did for
wxWindows 1.68 and then threw away...) and also that it is associated
with the 2.0 version of wxWindows.
I have finally started documenting wxPython. There are several pages
in the wxWindows documentation tree specifically about wxPython, and I
have added notes within the class references about where and how wxPython
diverges from wxWindows.
Added wxWindow_FromHWND(hWnd) for wxMSW to construct a wxWindow from a
window handle. If you can get the window handle into the python code,
it should just work... More news on this later.
Added wxImageList, wxToolTip.
Re-enabled wxConfig.DeleteAll() since it is reportedly fixed for the
wxRegConfig class.
As usual, some bug fixes, tweaks, etc.
What's new in 0.5.3
-------------------
Added wxSashWindow, wxSashEvent, wxLayoutAlgorithm, etc.
Various cleanup, tweaks, minor additions, etc. to maintain
compatibility with the current wxWindows.
What's new in 0.5.0
-------------------
Changed the import semantics from "from wxPython import *" to "from
wxPython.wx import *" This is for people who are worried about
namespace pollution, they can use "from wxPython import wx" and then
prefix all the wxPython identifiers with "wx."
Added wxTaskbarIcon for wxMSW.
Made the events work for wxGrid.
Added wxConfig.
Added wxMiniFrame for wxGTK.
Changed many of the args and return values that were pointers to gdi
objects to references to reflect changes in the wxWindows API.
Other assorted fixes and additions.
What's new in 0.4.2
-------------------
wxPython on wxGTK works!!! Both dynamic and static on Linux and
static on Solaris have been tested. Many thanks go to Harm
<H.v.d.Heijden@phys.tue.nl> for his astute detective work on tracking
down a nasty DECREF bug. Okay so I have to confess that it was just a
DSM (Dumb Stupid Mistake) on my part but it was nasty none the less
because the behavior was so different on different platforms.
The dynamicly loaded module on Solaris is still segfaulting, so it
must have been a different issue all along...
What's New in 0.4
-----------------
1. Worked on wxGTK compatibility. It is partially working. On a
Solaris/Sparc box wxPython is working but only when it is statically
linked with the Python interpreter. When built as a dyamically loaded
extension module, things start acting weirdly and it soon seg-faults.
And on Linux both the statically linked and the dynamically linked
version segfault shortly after starting up.
2. Added Toolbar, StatusBar and SplitterWindow classes.
3. Varioius bug fixes, enhancements, etc.
----------------------------------------------------------------------

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@@ -1,84 +0,0 @@
wxPython README
---------------
Welcome to the wonderful world of wxPython!
Once you have installed the wxPython extension module, you can try it
out by going to the [install dir]\wxPython\demo directory and typing:
python demo.py
There are also some other sample files there for you to play with and
learn from.
If you selected to install the documentation then point your browser
to [install dir]\wxPython\docs\index.htm and you will then be looking
at the docs for wxWindows. For the most part you can use the C++ docs
as most classes and methods are used identically. Where there are
differences they are documented with a "wxPython Note."
On Win32 systems the binary self-installer creates a program group on
the Start Menu that contains a link to running the demo and a link to
the help file. To help you save disk space I'm now using Microsoft's
HTML Help format. If your system doesn't know what to do with the help
file, you can install the HTML Help Viewer as part of IE 4+, NT
Service Pack 4+, or the HTML Workshop at
http://msdn.microsoft.com/workshop/author/htmlhelp/download.asp.
For some features, the latest common controls library from microsoft
is required. You can get this by installing IE 5.0 or Office 2000.
You can also get it independently from here:
http://download.microsoft.com/download/platformsdk/Comctl32/5.80.2614.3600/W9XNT4/EN-US/50comupd.exe
Windows 95 users may also need the WinSock 2.0 and OpenGL libraries.
These can be found at these sites:
http://www.microsoft.com/windows95/downloads/contents/wuadmintools/s_wunetworkingtools/w95sockets2/default.asp
http://www.opengl.org/Downloads/Downloads.html
Getting Help
------------
Since wxPython is a blending of multiple technologies, help comes from
multiple sources. See the http://alldunn.com/wxPython for details on
various sources of help, but probably the best source is the
wxPython-users mail list. You can view the archive or subscribe by
going to
http://wxwindows.org/mailman/listinfo/wxpython-users
Or you can send mail directly to the list using this address:
wxpython-users@wxwindows.org
Other Info
----------
Please also see the following files in this directory:
CHANGES.txt Information about new features, fixes, etc. in
each release.
BUILD.txt Instructions for building wxPython on various
platforms.
licence.txt Text of the wxWindows license.
----------------
Robin Dunn
robin@alldunn.com

View File

@@ -1,6 +0,0 @@
Some minor tweaks were made to these files to allow wxPython to build
with Python 1.6. Just put these in your swig_lib/python dir and
you'll be all set. These are from SWIG 1.1-810, (yes, I am a bit
behind.)

View File

@@ -1,29 +0,0 @@
/* Definitions for Windows/Unix exporting */
#if defined(__WIN32__)
# if defined(_MSC_VER)
# define SWIGEXPORT(a) __declspec(dllexport) a
# else
# if defined(__BORLANDC__)
# define SWIGEXPORT(a) a _export
# else
# define SWIGEXPORT(a) a
# endif
# endif
#else
# define SWIGEXPORT(a) a
#endif
#include "Python.h"
#ifdef __cplusplus
extern "C" {
#endif
extern void SWIG_MakePtr(char *, void *, char *);
extern void SWIG_RegisterMapping(char *, char *, void *(*)(void *));
extern char *SWIG_GetPtr(char *, void **, char *);
extern char *SWIG_GetPtrObj(PyObject *, void **, char *);
extern void SWIG_addvarlink(PyObject *, char *, PyObject *(*)(void), int (*)(PyObject *));
extern PyObject *SWIG_newvarlink(void);
#ifdef __cplusplus
}
#endif

View File

@@ -1,561 +0,0 @@
//
// SWIG Typemap library
// Dave Beazley
// May 5, 1997
//
// Python implementation
//
// This library provides standard typemaps for modifying SWIG's behavior.
// With enough entries in this file, I hope that very few people actually
// ever need to write a typemap.
//
// Disclaimer : Unless you really understand how typemaps work, this file
// probably isn't going to make much sense.
//
#ifdef AUTODOC
%section "Typemap Library (Python)",info,after,pre,nosort,skip=1,chop_left=3,chop_right=0,chop_top=0,chop_bottom=0
%text %{
%include typemaps.i
The SWIG typemap library provides a language independent mechanism for
supporting output arguments, input values, and other C function
calling mechanisms. The primary use of the library is to provide a
better interface to certain C function--especially those involving
pointers.
%}
#endif
// ------------------------------------------------------------------------
// Pointer handling
//
// These mappings provide support for input/output arguments and common
// uses for C/C++ pointers.
// ------------------------------------------------------------------------
// INPUT typemaps.
// These remap a C pointer to be an "INPUT" value which is passed by value
// instead of reference.
#ifdef AUTODOC
%subsection "Input Methods"
%text %{
The following methods can be applied to turn a pointer into a simple
"input" value. That is, instead of passing a pointer to an object,
you would use a real value instead.
int *INPUT
short *INPUT
long *INPUT
unsigned int *INPUT
unsigned short *INPUT
unsigned long *INPUT
unsigned char *INPUT
float *INPUT
double *INPUT
To use these, suppose you had a C function like this :
double fadd(double *a, double *b) {
return *a+*b;
}
You could wrap it with SWIG as follows :
%include typemaps.i
double fadd(double *INPUT, double *INPUT);
or you can use the %apply directive :
%include typemaps.i
%apply double *INPUT { double *a, double *b };
double fadd(double *a, double *b);
%}
#endif
%typemap(python,in) double *INPUT(double temp)
{
temp = PyFloat_AsDouble($source);
$target = &temp;
}
%typemap(python,in) float *INPUT(float temp)
{
temp = (float) PyFloat_AsDouble($source);
$target = &temp;
}
%typemap(python,in) int *INPUT(int temp)
{
temp = (int) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) short *INPUT(short temp)
{
temp = (short) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) long *INPUT(long temp)
{
temp = (long) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) unsigned int *INPUT(unsigned int temp)
{
temp = (unsigned int) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) unsigned short *INPUT(unsigned short temp)
{
temp = (unsigned short) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) unsigned long *INPUT(unsigned long temp)
{
temp = (unsigned long) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) unsigned char *INPUT(unsigned char temp)
{
temp = (unsigned char) PyInt_AsLong($source);
$target = &temp;
}
%typemap(python,in) signed char *INPUT(signed char temp)
{
temp = (unsigned char) PyInt_AsLong($source);
$target = &temp;
}
// OUTPUT typemaps. These typemaps are used for parameters that
// are output only. The output value is appended to the result as
// a list element.
#ifdef AUTODOC
%subsection "Output Methods"
%text %{
The following methods can be applied to turn a pointer into an "output"
value. When calling a function, no input value would be given for
a parameter, but an output value would be returned. In the case of
multiple output values, they are returned in the form of a Python tuple.
int *OUTPUT
short *OUTPUT
long *OUTPUT
unsigned int *OUTPUT
unsigned short *OUTPUT
unsigned long *OUTPUT
unsigned char *OUTPUT
float *OUTPUT
double *OUTPUT
A Python List can also be returned by using L_OUTPUT instead of OUTPUT.
For example, suppose you were trying to wrap the modf() function in the
C math library which splits x into integral and fractional parts (and
returns the integer part in one of its parameters).K:
double modf(double x, double *ip);
You could wrap it with SWIG as follows :
%include typemaps.i
double modf(double x, double *OUTPUT);
or you can use the %apply directive :
%include typemaps.i
%apply double *OUTPUT { double *ip };
double modf(double x, double *ip);
The Python output of the function would be a tuple containing both
output values.
%}
#endif
// Helper function for List output
%{
static PyObject* l_output_helper(PyObject* target, PyObject* o) {
PyObject* o2;
if (!target) {
target = o;
} else if (target == Py_None) {
Py_DECREF(Py_None);
target = o;
} else {
if (!PyList_Check(target)) {
o2 = target;
target = PyList_New(0);
PyList_Append(target, o2);
Py_XDECREF(o2);
}
PyList_Append(target,o);
Py_XDECREF(o);
}
return target;
}
%}
// Force the argument to be ignored.
%typemap(python,ignore) int *L_OUTPUT(int temp),
short *L_OUTPUT(short temp),
long *L_OUTPUT(long temp),
unsigned int *L_OUTPUT(unsigned int temp),
unsigned short *L_OUTPUT(unsigned short temp),
unsigned long *L_OUTPUT(unsigned long temp),
unsigned char *L_OUTPUT(unsigned char temp),
signed char *L_OUTPUT(signed char temp),
float *L_OUTPUT(float temp),
double *L_OUTPUT(double temp)
{
$target = &temp;
}
%typemap(python,argout) int *L_OUTPUT,
short *L_OUTPUT,
long *L_OUTPUT,
unsigned int *L_OUTPUT,
unsigned short *L_OUTPUT,
unsigned long *L_OUTPUT,
unsigned char *L_OUTPUT,
signed char *L_OUTPUT
{
PyObject *o;
o = PyInt_FromLong((long) (*$source));
l_output_helper($target,o);
}
%typemap(python,argout) float *L_OUTPUT,
double *L_OUTPUT
{
PyObject *o;
o = PyFloat_FromDouble((double) (*$source));
$target = l_output_helper($target,o);
}
// These typemaps contributed by Robin Dunn
//----------------------------------------------------------------------
//
// T_OUTPUT typemap (and helper function) to return multiple argouts as
// a tuple instead of a list.
//
// Author: Robin Dunn
//----------------------------------------------------------------------
%{
static PyObject* t_output_helper(PyObject* target, PyObject* o) {
PyObject* o2;
PyObject* o3;
if (!target) {
target = o;
} else if (target == Py_None) {
Py_DECREF(Py_None);
target = o;
} else {
if (!PyTuple_Check(target)) {
o2 = target;
target = PyTuple_New(1);
PyTuple_SetItem(target, 0, o2);
}
o3 = PyTuple_New(1);
PyTuple_SetItem(o3, 0, o);
o2 = target;
target = PySequence_Concat(o2, o3);
Py_DECREF(o2);
Py_DECREF(o3);
}
return target;
}
%}
// Force the argument to be ignored.
%typemap(python,ignore) int *T_OUTPUT(int temp),
short *T_OUTPUT(short temp),
long *T_OUTPUT(long temp),
unsigned int *T_OUTPUT(unsigned int temp),
unsigned short *T_OUTPUT(unsigned short temp),
unsigned long *T_OUTPUT(unsigned long temp),
unsigned char *T_OUTPUT(unsigned char temp),
float *T_OUTPUT(float temp),
double *T_OUTPUT(double temp)
{
$target = &temp;
}
%typemap(python,argout) int *T_OUTPUT,
short *T_OUTPUT,
long *T_OUTPUT,
unsigned int *T_OUTPUT,
unsigned short *T_OUTPUT,
unsigned long *T_OUTPUT,
unsigned char *T_OUTPUT
{
PyObject *o;
o = PyInt_FromLong((long) (*$source));
$target = t_output_helper($target, o);
}
%typemap(python,argout) float *T_OUTPUT,
double *T_OUTPUT
{
PyObject *o;
o = PyFloat_FromDouble((double) (*$source));
$target = t_output_helper($target, o);
}
// Set the default output typemap
#ifdef OUTPUT_LIST
%typemap(python,ignore) int *OUTPUT = int *L_OUTPUT;
%typemap(python,ignore) short *OUTPUT = short *L_OUTPUT;
%typemap(python,ignore) long *OUTPUT = long *L_OUTPUT;
%typemap(python,ignore) unsigned *OUTPUT = unsigned *L_OUTPUT;
%typemap(python,ignore) unsigned short *OUTPUT = unsigned short *L_OUTPUT;
%typemap(python,ignore) unsigned long *OUTPUT = unsigned long *L_OUTPUT;
%typemap(python,ignore) unsigned char *OUTPUT = unsigned char *L_OUTPUT;
%typemap(python,ignore) signed char *OUTPUT = signed char *L_OUTPUT;
%typemap(python,ignore) double *OUTPUT = double *L_OUTPUT;
%typemap(python,ignore) float *OUTPUT = float *L_OUTPUT;
%typemap(python,argout) int *OUTPUT = int *L_OUTPUT;
%typemap(python,argout) short *OUTPUT = short *L_OUTPUT;
%typemap(python,argout) long *OUTPUT = long *L_OUTPUT;
%typemap(python,argout) unsigned *OUTPUT = unsigned *L_OUTPUT;
%typemap(python,argout) unsigned short *OUTPUT = unsigned short *L_OUTPUT;
%typemap(python,argout) unsigned long *OUTPUT = unsigned long *L_OUTPUT;
%typemap(python,argout) unsigned char *OUTPUT = unsigned char *L_OUTPUT;
%typemap(python,argout) signed char *OUTPUT = signed char *L_OUTPUT;
%typemap(python,argout) double *OUTPUT = double *L_OUTPUT;
%typemap(python,argout) float *OUTPUT = float *L_OUTPUT;
#else
%typemap(python,ignore) int *OUTPUT = int *T_OUTPUT;
%typemap(python,ignore) short *OUTPUT = short *T_OUTPUT;
%typemap(python,ignore) long *OUTPUT = long *T_OUTPUT;
%typemap(python,ignore) unsigned *OUTPUT = unsigned *T_OUTPUT;
%typemap(python,ignore) unsigned short *OUTPUT = unsigned short *T_OUTPUT;
%typemap(python,ignore) unsigned long *OUTPUT = unsigned long *T_OUTPUT;
%typemap(python,ignore) unsigned char *OUTPUT = unsigned char *T_OUTPUT;
%typemap(python,ignore) signed char *OUTPUT = signed char *T_OUTPUT;
%typemap(python,ignore) double *OUTPUT = double *T_OUTPUT;
%typemap(python,ignore) float *OUTPUT = float *T_OUTPUT;
%typemap(python,argout) int *OUTPUT = int *T_OUTPUT;
%typemap(python,argout) short *OUTPUT = short *T_OUTPUT;
%typemap(python,argout) long *OUTPUT = long *T_OUTPUT;
%typemap(python,argout) unsigned *OUTPUT = unsigned *T_OUTPUT;
%typemap(python,argout) unsigned short *OUTPUT = unsigned short *T_OUTPUT;
%typemap(python,argout) unsigned long *OUTPUT = unsigned long *T_OUTPUT;
%typemap(python,argout) unsigned char *OUTPUT = unsigned char *T_OUTPUT;
%typemap(python,argout) signed char *OUTPUT = signed char *T_OUTPUT;
%typemap(python,argout) double *OUTPUT = double *T_OUTPUT;
%typemap(python,argout) float *OUTPUT = float *T_OUTPUT;
#endif
// INOUT
// Mappings for an argument that is both an input and output
// parameter
#ifdef AUTODOC
%subsection "Input/Output Methods"
%text %{
The following methods can be applied to make a function parameter both
an input and output value. This combines the behavior of both the
"INPUT" and "OUTPUT" methods described earlier. Output values are
returned in the form of a Python tuple. To return a Python list,
using L_INOUT instead.
int *INOUT
short *INOUT
long *INOUT
unsigned int *INOUT
unsigned short *INOUT
unsigned long *INOUT
unsigned char *INOUT
float *INOUT
double *INOUT
For example, suppose you were trying to wrap the following function :
void neg(double *x) {
*x = -(*x);
}
You could wrap it with SWIG as follows :
%include typemaps.i
void neg(double *INOUT);
or you can use the %apply directive :
%include typemaps.i
%apply double *INOUT { double *x };
void neg(double *x);
Unlike C, this mapping does not directly modify the input value (since
this makes no sense in Python). Rather, the modified input value shows
up as the return value of the function. Thus, to apply this function
to a Python variable you might do this :
x = neg(x)
Note : previous versions of SWIG used the symbol 'BOTH' to mark
input/output arguments. This is still supported, but will be slowly
phased out in future releases.
%}
#endif
%typemap(python,in) int *INOUT = int *INPUT;
%typemap(python,in) short *INOUT = short *INPUT;
%typemap(python,in) long *INOUT = long *INPUT;
%typemap(python,in) unsigned *INOUT = unsigned *INPUT;
%typemap(python,in) unsigned short *INOUT = unsigned short *INPUT;
%typemap(python,in) unsigned long *INOUT = unsigned long *INPUT;
%typemap(python,in) unsigned char *INOUT = unsigned char *INPUT;
%typemap(python,in) float *INOUT = float *INPUT;
%typemap(python,in) double *INOUT = double *INPUT;
%typemap(python,argout) int *INOUT = int *OUTPUT;
%typemap(python,argout) short *INOUT = short *OUTPUT;
%typemap(python,argout) long *INOUT = long *OUTPUT;
%typemap(python,argout) unsigned *INOUT = unsigned *OUTPUT;
%typemap(python,argout) unsigned short *INOUT = unsigned short *OUTPUT;
%typemap(python,argout) unsigned long *INOUT = unsigned long *OUTPUT;
%typemap(python,argout) unsigned char *INOUT = unsigned char *OUTPUT;
%typemap(python,argout) float *INOUT = float *OUTPUT;
%typemap(python,argout) double *INOUT = double *OUTPUT;
%typemap(python,in) int *T_INOUT = int *INPUT;
%typemap(python,in) short *T_INOUT = short *INPUT;
%typemap(python,in) long *T_INOUT = long *INPUT;
%typemap(python,in) unsigned *T_INOUT = unsigned *INPUT;
%typemap(python,in) unsigned short *T_INOUT = unsigned short *INPUT;
%typemap(python,in) unsigned long *T_INOUT = unsigned long *INPUT;
%typemap(python,in) unsigned char *T_INOUT = unsigned char *INPUT;
%typemap(python,in) float *T_INOUT = float *INPUT;
%typemap(python,in) double *T_INOUT = double *INPUT;
%typemap(python,argout) int *T_INOUT = int *T_OUTPUT;
%typemap(python,argout) short *T_INOUT = short *T_OUTPUT;
%typemap(python,argout) long *T_INOUT = long *T_OUTPUT;
%typemap(python,argout) unsigned *T_INOUT = unsigned *T_OUTPUT;
%typemap(python,argout) unsigned short *T_INOUT = unsigned short *T_OUTPUT;
%typemap(python,argout) unsigned long *T_INOUT = unsigned long *T_OUTPUT;
%typemap(python,argout) unsigned char *T_INOUT = unsigned char *T_OUTPUT;
%typemap(python,argout) float *T_INOUT = float *T_OUTPUT;
%typemap(python,argout) double *T_INOUT = double *T_OUTPUT;
%typemap(python,in) int *L_INOUT = int *INPUT;
%typemap(python,in) short *L_INOUT = short *INPUT;
%typemap(python,in) long *L_INOUT = long *INPUT;
%typemap(python,in) unsigned *L_INOUT = unsigned *INPUT;
%typemap(python,in) unsigned short *L_INOUT = unsigned short *INPUT;
%typemap(python,in) unsigned long *L_INOUT = unsigned long *INPUT;
%typemap(python,in) unsigned char *L_INOUT = unsigned char *INPUT;
%typemap(python,in) float *L_INOUT = float *INPUT;
%typemap(python,in) double *L_INOUT = double *INPUT;
%typemap(python,argout) int *L_INOUT = int *L_OUTPUT;
%typemap(python,argout) short *L_INOUT = short *L_OUTPUT;
%typemap(python,argout) long *L_INOUT = long *L_OUTPUT;
%typemap(python,argout) unsigned *L_INOUT = unsigned *L_OUTPUT;
%typemap(python,argout) unsigned short *L_INOUT = unsigned short *L_OUTPUT;
%typemap(python,argout) unsigned long *L_INOUT = unsigned long *L_OUTPUT;
%typemap(python,argout) unsigned char *L_INOUT = unsigned char *L_OUTPUT;
%typemap(python,argout) float *L_INOUT = float *L_OUTPUT;
%typemap(python,argout) double *L_INOUT = double *L_OUTPUT;
// Backwards compatibility
%typemap(python,in) int *BOTH = int *INOUT;
%typemap(python,in) short *BOTH = short *INOUT;
%typemap(python,in) long *BOTH = long *INOUT;
%typemap(python,in) unsigned *BOTH = unsigned *INOUT;
%typemap(python,in) unsigned short *BOTH = unsigned short *INOUT;
%typemap(python,in) unsigned long *BOTH = unsigned long *INOUT;
%typemap(python,in) unsigned char *BOTH = unsigned char *INOUT;
%typemap(python,in) float *BOTH = float *INOUT;
%typemap(python,in) double *BOTH = double *INOUT;
%typemap(python,argout) int *BOTH = int *INOUT;
%typemap(python,argout) short *BOTH = short *INOUT;
%typemap(python,argout) long *BOTH = long *INOUT;
%typemap(python,argout) unsigned *BOTH = unsigned *INOUT;
%typemap(python,argout) unsigned short *BOTH = unsigned short *INOUT;
%typemap(python,argout) unsigned long *BOTH = unsigned long *INOUT;
%typemap(python,argout) unsigned char *BOTH = unsigned char *INOUT;
%typemap(python,argout) float *BOTH = float *INOUT;
%typemap(python,argout) double *BOTH = double *INOUT;
%typemap(python,in) int *T_BOTH = int *T_INOUT;
%typemap(python,in) short *T_BOTH = short *T_INOUT;
%typemap(python,in) long *T_BOTH = long *T_INOUT;
%typemap(python,in) unsigned *T_BOTH = unsigned *T_INOUT;
%typemap(python,in) unsigned short *T_BOTH = unsigned short *T_INOUT;
%typemap(python,in) unsigned long *T_BOTH = unsigned long *T_INOUT;
%typemap(python,in) unsigned char *T_BOTH = unsigned char *T_INOUT;
%typemap(python,in) float *T_BOTH = float *T_INOUT;
%typemap(python,in) double *T_BOTH = double *T_INOUT;
%typemap(python,argout) int *T_BOTH = int *T_INOUT;
%typemap(python,argout) short *T_BOTH = short *T_INOUT;
%typemap(python,argout) long *T_BOTH = long *T_INOUT;
%typemap(python,argout) unsigned *T_BOTH = unsigned *T_INOUT;
%typemap(python,argout) unsigned short *T_BOTH = unsigned short *T_INOUT;
%typemap(python,argout) unsigned long *T_BOTH = unsigned long *T_INOUT;
%typemap(python,argout) unsigned char *T_BOTH = unsigned char *T_INOUT;
%typemap(python,argout) float *T_BOTH = float *T_INOUT;
%typemap(python,argout) double *T_BOTH = double *T_INOUT;
// --------------------------------------------------------------------
// Special types
//
// --------------------------------------------------------------------
#ifdef AUTODOC
%subsection "Special Methods"
%text %{
The typemaps.i library also provides the following mappings :
PyObject *
When a PyObject * appears as either an input value or return
value of a function, SWIG passes it through unmodified. Thus,
if you want to write a C function that operates on PyObjects,
it is easy to write. For example :
%include typemaps.i
PyObject *spam(PyObject *obj1, int n);
Unlike normal Python wrapper functions, These functions can
use any combination of parameters that you wish.
%}
#endif
// If a PyObject * appears as either an argument or a function return
// value, simply pass it straight through.
%typemap(python,in) PyObject * {
$target = $source;
}
%typemap(python,out) PyObject * {
$target = $source;
}

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@@ -1,11 +0,0 @@
#!/bin/bash
cd src
python ../distrib/build.py $*
if [ "$?" != "0" ]; then
exit 1
fi
cd ../contrib
python buildall.py $*
cd ..

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@@ -1,10 +0,0 @@
cd src
python ..\distrib\build.py %1 %2 %3 %4 %5 %6 %7 %8 %9
cd ..\contrib
python .\buildall.py %1 %2 %3 %4 %5 %6 %7 %8 %9
cd ..

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@@ -1 +0,0 @@
update.log

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@@ -1,3 +0,0 @@
These sub directories contain add-on modules that are not part of the
core wxPython, either because of licensing issues, optional code in
wxWindows, contrib code in wxWindows, or whatever.

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@@ -1,31 +0,0 @@
#!/usr/bin/env python
#----------------------------------------------------------------------------
# Name: buildall.py
# Purpose: Invokes the build script for all modules defined in
# MODULELIST
#
# Author: Robin Dunn
#
# Created: 18-Aug-1999
# RCS-ID: $Id$
# Copyright: (c) 1999 by Total Control Software
# Licence: wxWindows license
#----------------------------------------------------------------------------
import sys, os
sys.path.insert(0, '../distrib')
import build
MODULELIST = ['glcanvas', 'ogl', 'stc', ]
sys.argv[0] = '../../distrib/build.py'
for module in MODULELIST:
cwd = os.getcwd()
print "**** Building %s ****" % module
err = build.main([sys.argv[0], '-C', module] + sys.argv[1:])
os.chdir(cwd)
if err:
break
sys.exit(err)

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@@ -1,14 +0,0 @@
*.exp
*.lib
*.obj
*.pch
Makefile
Makefile.pre
Setup
build.local
config.c
glcanvas.h
glcanvasc.ilk
glcanvasc.pyd
sedscript

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@@ -1,25 +0,0 @@
# -*- python -*-
import sys
MODULE = 'glcanvasc'
SWIGFILES = ['glcanvas.i', ]
if sys.platform == 'win32':
# SOURCES = ['_glcanvas.cpp']
# OTHERLIBS = 'glu32.lib opengl32.lib'
# OTHERCFLAGS = '-DwxUSE_GLCANVAS=1'
# OTHERRULES = '''
#_glcanvas.cpp : $(WXDIR)\src\msw\glcanvas.cpp
# copy $(WXDIR)\src\msw\glcanvas.cpp _glcanvas.cpp
#'''
pass
else:
#print "Warning: Assuming MesaGL libraries. Override OTHERLIBS in build.local\n"\
# " if you have native GL!"
#OTHERLIBS = "-lwx_gtk_gl -lMesaGL -lMesaGLU"
OTHERLIBS = "-lwx_gtk_gl -lGL -lGLU"

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@@ -1,128 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: glcanvas.i
// Purpose: SWIG definitions for the OpenGL wxWindows classes
//
// Author: Robin Dunn
//
// Created: 15-Mar-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module glcanvas
%{
#include "helpers.h"
#include <wx/glcanvas.h>
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%extern windows.i
%extern windows2.i
%extern windows3.i
%extern frames.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%extern controls.i
%extern events.i
%{
#if defined(__WXMSW__)
static wxString wxPyEmptyStr("");
static wxPoint wxPyDefaultPosition(-1, -1);
static wxSize wxPyDefaultSize(-1, -1);
#endif
%}
%pragma(python) code = "import wx"
//---------------------------------------------------------------------------
class wxPalette;
class wxWindow;
class wxSize;
class wxPoint;
class wxGLCanvas;
//---------------------------------------------------------------------------
class wxGLContext {
public:
wxGLContext(bool isRGB, wxGLCanvas *win, const wxPalette& palette = wxNullPalette);
~wxGLContext();
void SetCurrent();
void SetColour(const char *colour);
void SwapBuffers();
#ifdef __WXGTK__
void SetupPixelFormat();
void SetupPalette(const wxPalette& palette);
wxPalette CreateDefaultPalette();
wxPalette* GetPalette();
#endif
wxWindow* GetWindow();
};
//---------------------------------------------------------------------------
%typemap(python, in) int *attribList (int *temp) {
int i;
if (PySequence_Check($source)) {
int size = PyObject_Length($source);
temp = new int[size+1]; // (int*)malloc((size + 1) * sizeof(int));
for (i = 0; i < size; i++) {
temp[i] = PyInt_AsLong(PySequence_GetItem($source, i));
}
temp[size] = 0;
$target = temp;
}
}
%typemap(python, freearg) int *attribList
{
delete [] $source;
}
class wxGLCanvas : public wxScrolledWindow {
public:
wxGLCanvas(wxWindow *parent, wxWindowID id = -1,
const wxPoint& pos = wxPyDefaultPosition,
const wxSize& size = wxPyDefaultSize, long style = 0,
const char* name = "GLCanvas",
int *attribList = NULL,
const wxPalette& palette = wxNullPalette);
%pragma(python) addtomethod = "__init__:#wx._StdWindowCallbacks(self)"
void SetCurrent();
void SetColour(const char *colour);
void SwapBuffers();
wxGLContext* GetContext();
};
//---------------------------------------------------------------------------
%init %{
wxClassInfo::CleanUpClasses();
wxClassInfo::InitializeClasses();
%}
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------

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@@ -1,2 +0,0 @@
EXPORTS
initglcanvasc

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@@ -1,2 +0,0 @@
*~
_glcanvas.cpp

File diff suppressed because it is too large Load Diff

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@@ -1,117 +0,0 @@
# This file was created automatically by SWIG.
import glcanvasc
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
import wx
class wxGLContextPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def __del__(self,glcanvasc=glcanvasc):
if self.thisown == 1 :
glcanvasc.delete_wxGLContext(self)
def SetCurrent(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetCurrent,(self,) + _args, _kwargs)
return val
def SetColour(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetColour,(self,) + _args, _kwargs)
return val
def SwapBuffers(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SwapBuffers,(self,) + _args, _kwargs)
return val
def SetupPixelFormat(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetupPixelFormat,(self,) + _args, _kwargs)
return val
def SetupPalette(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetupPalette,(self,) + _args, _kwargs)
return val
def CreateDefaultPalette(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_CreateDefaultPalette,(self,) + _args, _kwargs)
if val: val = wxPalettePtr(val) ; val.thisown = 1
return val
def GetPalette(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_GetPalette,(self,) + _args, _kwargs)
if val: val = wxPalettePtr(val)
return val
def GetWindow(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_GetWindow,(self,) + _args, _kwargs)
if val: val = wxWindowPtr(val)
return val
def __repr__(self):
return "<C wxGLContext instance at %s>" % (self.this,)
class wxGLContext(wxGLContextPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(glcanvasc.new_wxGLContext,_args,_kwargs)
self.thisown = 1
class wxGLCanvasPtr(wxScrolledWindowPtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def SetCurrent(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SetCurrent,(self,) + _args, _kwargs)
return val
def SetColour(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SetColour,(self,) + _args, _kwargs)
return val
def SwapBuffers(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SwapBuffers,(self,) + _args, _kwargs)
return val
def GetContext(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_GetContext,(self,) + _args, _kwargs)
if val: val = wxGLContextPtr(val)
return val
def __repr__(self):
return "<C wxGLCanvas instance at %s>" % (self.this,)
class wxGLCanvas(wxGLCanvasPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(glcanvasc.new_wxGLCanvas,_args,_kwargs)
self.thisown = 1
#wx._StdWindowCallbacks(self)
#-------------- FUNCTION WRAPPERS ------------------
#-------------- VARIABLE WRAPPERS ------------------

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@@ -1 +0,0 @@
*~

File diff suppressed because it is too large Load Diff

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@@ -1,103 +0,0 @@
# This file was created automatically by SWIG.
import glcanvasc
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
import wx
class wxGLContextPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def __del__(self,glcanvasc=glcanvasc):
if self.thisown == 1 :
glcanvasc.delete_wxGLContext(self)
def SetCurrent(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetCurrent,(self,) + _args, _kwargs)
return val
def SetColour(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SetColour,(self,) + _args, _kwargs)
return val
def SwapBuffers(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_SwapBuffers,(self,) + _args, _kwargs)
return val
def GetWindow(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLContext_GetWindow,(self,) + _args, _kwargs)
if val: val = wxWindowPtr(val)
return val
def __repr__(self):
return "<C wxGLContext instance at %s>" % (self.this,)
class wxGLContext(wxGLContextPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(glcanvasc.new_wxGLContext,_args,_kwargs)
self.thisown = 1
class wxGLCanvasPtr(wxScrolledWindowPtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def SetCurrent(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SetCurrent,(self,) + _args, _kwargs)
return val
def SetColour(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SetColour,(self,) + _args, _kwargs)
return val
def SwapBuffers(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_SwapBuffers,(self,) + _args, _kwargs)
return val
def GetContext(self, *_args, **_kwargs):
val = apply(glcanvasc.wxGLCanvas_GetContext,(self,) + _args, _kwargs)
if val: val = wxGLContextPtr(val)
return val
def __repr__(self):
return "<C wxGLCanvas instance at %s>" % (self.this,)
class wxGLCanvas(wxGLCanvasPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(glcanvasc.new_wxGLCanvas,_args,_kwargs)
self.thisown = 1
#wx._StdWindowCallbacks(self)
#-------------- FUNCTION WRAPPERS ------------------
#-------------- VARIABLE WRAPPERS ------------------

View File

@@ -1,5 +0,0 @@
Makefile
oglc.exp
oglc.ilk
oglc.pch
oglc.pyd

View File

@@ -1,7 +0,0 @@
Since OGL is not always bundled with distributions of wxWindows, in
order for it to be a standard part of wxPython I need to bundle it
here. The contents of the contrib directory are copies of the
relevant parts of the main contrib directory in wxWindows. The
build.py script in this directory will also build the needed files
from there, so you no longer have to worry about aquiring and building
additional libraries beyond wxWindows itself.

View File

@@ -1,36 +0,0 @@
wxShapeCanvas = wxPyShapeCanvas
wxShapeEvtHandler = wxPyShapeEvtHandler
wxShape = wxPyShape
wxRectangleShape = wxPyRectangleShape
wxBitmapShape = wxPyBitmapShape
wxDrawnShape = wxPyDrawnShape
wxCompositeShape = wxPyCompositeShape
wxDividedShape = wxPyDividedShape
wxDivisionShape = wxPyDivisionShape
wxEllipseShape = wxPyEllipseShape
wxCircleShape = wxPyCircleShape
wxLineShape = wxPyLineShape
wxPolygonShape = wxPyPolygonShape
wxTextShape = wxPyTextShape
wxControlPoint = wxPyControlPoint
# Stuff these names into the wx namespace so wxPyConstructObject can find them
import wx
wx.wxPyShapeCanvasPtr = wxPyShapeCanvasPtr
wx.wxPyShapeEvtHandlerPtr = wxPyShapeEvtHandlerPtr
wx.wxPyShapePtr = wxPyShapePtr
wx.wxPyRectangleShapePtr = wxPyRectangleShapePtr
wx.wxPyBitmapShapePtr = wxPyBitmapShapePtr
wx.wxPyDrawnShapePtr = wxPyDrawnShapePtr
wx.wxPyCompositeShapePtr = wxPyCompositeShapePtr
wx.wxPyDividedShapePtr = wxPyDividedShapePtr
wx.wxPyDivisionShapePtr = wxPyDivisionShapePtr
wx.wxPyEllipseShapePtr = wxPyEllipseShapePtr
wx.wxPyCircleShapePtr = wxPyCircleShapePtr
wx.wxPyLineShapePtr = wxPyLineShapePtr
wx.wxPyPolygonShapePtr = wxPyPolygonShapePtr
wx.wxPyTextShapePtr = wxPyTextShapePtr
wx.wxShapeRegionPtr = wxShapeRegionPtr
wx.wxOGLConstraintPtr = wxOGLConstraintPtr
wx.wxControlPointPtr = wxPyControlPointPtr

View File

@@ -1,63 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: _ogldefs.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 27-Aug-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
//---------------------------------------------------------------------------
class wxOGLConstraint;
class wxBitmapShape;
class wxDiagram;
class wxDrawnShape;
class wxCircleShape;
class wxCompositeShape;
class wxDividedShape;
class wxDivisionShape;
class wxEllipseShape;
class wxLineShape;
class wxPolygonShape;
class wxRectangleShape;
class wxPseudoMetaFile;
class wxShape;
class wxShapeCanvas;
class wxShapeEvtHandler;
class wxTextShape;
class wxControlPoint;
class wxPyOGLConstraint;
class wxPyBitmapShape;
class wxPyDiagram;
class wxPyDrawnShape;
class wxPyCircleShape;
class wxPyCompositeShape;
class wxPyDividedShape;
class wxPyDivisionShape;
class wxPyEllipseShape;
class wxPyLineShape;
class wxPyPolygonShape;
class wxPyRectangleShape;
class wxPyPseudoMetaFile;
class wxPyShape;
class wxPyShapeCanvas;
class wxPyShapeEvtHandler;
class wxPyTextShape;
class wxPyControlPoint;
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------

View File

@@ -1,52 +0,0 @@
# -*- python -*-
import sys
MODULE = 'oglc'
SWIGFILES = ['ogl.i', 'oglbasic.i', 'oglshapes.i', 'oglshapes2.i', 'oglcanvas.i']
SOURCES = ['oglhelpers.cpp']
OTHERCFLAGS = '-I$(STCLOC)/contrib/include'
SOURCES = SOURCES + [
'$(STCLOC)/contrib/src/ogl/basic.cpp',
'$(STCLOC)/contrib/src/ogl/bmpshape.cpp',
'$(STCLOC)/contrib/src/ogl/composit.cpp',
'$(STCLOC)/contrib/src/ogl/divided.cpp',
'$(STCLOC)/contrib/src/ogl/lines.cpp',
'$(STCLOC)/contrib/src/ogl/misc.cpp',
'$(STCLOC)/contrib/src/ogl/basic2.cpp',
'$(STCLOC)/contrib/src/ogl/canvas.cpp',
'$(STCLOC)/contrib/src/ogl/constrnt.cpp',
'$(STCLOC)/contrib/src/ogl/drawn.cpp',
'$(STCLOC)/contrib/src/ogl/mfutils.cpp',
'$(STCLOC)/contrib/src/ogl/ogldiag.cpp',
]
if sys.platform == 'win32':
OTHERDEFS = 'STCLOC = $(WXWIN)'
OTHERRULES = '''
{$(WXWIN)/contrib/src/ogl}.cpp{}.obj:
$(cc) @<<
$(CPPFLAGS) /c /Tp $<
<<
'''
else:
OTHERCFLAGS = '-Icontrib/include'
DEFAULTRULE = 'default: contrib $(GENCODEDIR) $(TARGET) $(BUILDDIR)/$(TARGET) bldpycfiles'
OTHERRULES = """
%.o : contrib/src/ogl/%.cpp
$(CCC) $(CCSHARED) $(CFLAGS) $(OTHERCFLAGS) -c $<
contrib :
ln -s $(WXDIR)/contrib contrib
"""
SWIGDEPS = '_ogldefs.i'
OTHERDEPS = 'oglhelpers.h $(WXPSRCDIR)/helpers.h'
# There are no platform differences so we don't need separate code directories
GENCODEDIR='.'
SWIGTOOLKITFLAG=''

View File

@@ -1,762 +0,0 @@
/*
* FILE : ogl.cpp
*
* This file was automatically generated by :
* Simplified Wrapper and Interface Generator (SWIG)
* Version 1.1 (Build 810)
*
* Portions Copyright (c) 1995-1998
* The University of Utah and The Regents of the University of California.
* Permission is granted to distribute this file in any manner provided
* this notice remains intact.
*
* Do not make changes to this file--changes will be lost!
*
*/
#define SWIGCODE
/* Implementation : PYTHON */
#define SWIGPYTHON
#include <string.h>
#include <stdlib.h>
/* Definitions for Windows/Unix exporting */
#if defined(__WIN32__)
# if defined(_MSC_VER)
# define SWIGEXPORT(a) __declspec(dllexport) a
# else
# if defined(__BORLANDC__)
# define SWIGEXPORT(a) a _export
# else
# define SWIGEXPORT(a) a
# endif
# endif
#else
# define SWIGEXPORT(a) a
#endif
#include "Python.h"
#ifdef __cplusplus
extern "C" {
#endif
extern void SWIG_MakePtr(char *, void *, char *);
extern void SWIG_RegisterMapping(char *, char *, void *(*)(void *));
extern char *SWIG_GetPtr(char *, void **, char *);
extern char *SWIG_GetPtrObj(PyObject *, void **, char *);
extern void SWIG_addvarlink(PyObject *, char *, PyObject *(*)(void), int (*)(PyObject *));
extern PyObject *SWIG_newvarlink(void);
#ifdef __cplusplus
}
#endif
#define SWIG_init initoglc
#define SWIG_name "oglc"
#include "helpers.h"
#include "oglhelpers.h"
static PyObject* l_output_helper(PyObject* target, PyObject* o) {
PyObject* o2;
if (!target) {
target = o;
} else if (target == Py_None) {
Py_DECREF(Py_None);
target = o;
} else {
if (!PyList_Check(target)) {
o2 = target;
target = PyList_New(0);
PyList_Append(target, o2);
Py_XDECREF(o2);
}
PyList_Append(target,o);
Py_XDECREF(o);
}
return target;
}
static PyObject* t_output_helper(PyObject* target, PyObject* o) {
PyObject* o2;
PyObject* o3;
if (!target) {
target = o;
} else if (target == Py_None) {
Py_DECREF(Py_None);
target = o;
} else {
if (!PyTuple_Check(target)) {
o2 = target;
target = PyTuple_New(1);
PyTuple_SetItem(target, 0, o2);
}
o3 = PyTuple_New(1);
PyTuple_SetItem(o3, 0, o);
o2 = target;
target = PySequence_Concat(o2, o3);
Py_DECREF(o2);
Py_DECREF(o3);
}
return target;
}
static char* wxStringErrorMsg = "string type is required for parameter";
#if defined(__WXMSW__)
wxString wxPyEmptyStr("");
wxPoint wxPyDefaultPosition(-1, -1);
wxSize wxPyDefaultSize(-1, -1);
#endif
extern "C" SWIGEXPORT(void) initoglbasicc();
extern "C" SWIGEXPORT(void) initoglshapesc();
extern "C" SWIGEXPORT(void) initoglshapes2c();
extern "C" SWIGEXPORT(void) initoglcanvasc();
#ifdef __cplusplus
extern "C" {
#endif
static PyObject *_wrap_wxOGLInitialize(PyObject *self, PyObject *args, PyObject *kwargs) {
PyObject * _resultobj;
char *_kwnames[] = { NULL };
self = self;
if(!PyArg_ParseTupleAndKeywords(args,kwargs,":wxOGLInitialize",_kwnames))
return NULL;
{
wxPy_BEGIN_ALLOW_THREADS;
wxOGLInitialize();
wxPy_END_ALLOW_THREADS;
} Py_INCREF(Py_None);
_resultobj = Py_None;
return _resultobj;
}
static PyObject *_wrap_wxOGLCleanUp(PyObject *self, PyObject *args, PyObject *kwargs) {
PyObject * _resultobj;
char *_kwnames[] = { NULL };
self = self;
if(!PyArg_ParseTupleAndKeywords(args,kwargs,":wxOGLCleanUp",_kwnames))
return NULL;
{
wxPy_BEGIN_ALLOW_THREADS;
wxOGLCleanUp();
wxPy_END_ALLOW_THREADS;
} Py_INCREF(Py_None);
_resultobj = Py_None;
return _resultobj;
}
static PyMethodDef oglcMethods[] = {
{ "wxOGLCleanUp", (PyCFunction) _wrap_wxOGLCleanUp, METH_VARARGS | METH_KEYWORDS },
{ "wxOGLInitialize", (PyCFunction) _wrap_wxOGLInitialize, METH_VARARGS | METH_KEYWORDS },
{ NULL, NULL }
};
#ifdef __cplusplus
}
#endif
/*
* This table is used by the pointer type-checker
*/
static struct { char *n1; char *n2; void *(*pcnv)(void *); } _swig_mapping[] = {
{ "_wxAcceleratorTable","_class_wxAcceleratorTable",0},
{ "_wxEvent","_class_wxEvent",0},
{ "_class_wxActivateEvent","_wxActivateEvent",0},
{ "_signed_long","_long",0},
{ "_wxMenuEvent","_class_wxMenuEvent",0},
{ "_class_wxJPEGHandler","_wxJPEGHandler",0},
{ "_wxPyBitmapDataObject","_class_wxPyBitmapDataObject",0},
{ "_wxBitmapDataObject","_class_wxBitmapDataObject",0},
{ "_class_wxPyCommandEvent","_wxPyCommandEvent",0},
{ "_wxBMPHandler","_class_wxBMPHandler",0},
{ "_wxImage","_class_wxImage",0},
{ "_wxFlexGridSizer","_class_wxFlexGridSizer",0},
{ "_wxPrintQuality","_wxCoord",0},
{ "_wxPrintQuality","_int",0},
{ "_wxPrintQuality","_signed_int",0},
{ "_wxPrintQuality","_unsigned_int",0},
{ "_wxPrintQuality","_wxWindowID",0},
{ "_wxPrintQuality","_uint",0},
{ "_wxPrintQuality","_EBool",0},
{ "_wxPrintQuality","_size_t",0},
{ "_wxPrintQuality","_time_t",0},
{ "_class_wxCustomDataObject","_wxCustomDataObject",0},
{ "_wxSpinCtrl","_class_wxSpinCtrl",0},
{ "_wxFontData","_class_wxFontData",0},
{ "_class_wxRegionIterator","_wxRegionIterator",0},
{ "_class_wxPyTextDropTarget","_wxPyTextDropTarget",0},
{ "_class_wxMenuBar","_wxMenuBar",0},
{ "_class_wxPyTreeItemData","_wxPyTreeItemData",0},
{ "_class_wxStaticBoxSizer","_wxStaticBoxSizer",0},
{ "_class_wxEvtHandler","_wxEvtHandler",0},
{ "_wxPaintEvent","_class_wxPaintEvent",0},
{ "_wxGIFHandler","_class_wxGIFHandler",0},
{ "_wxPySizer","_class_wxPySizer",0},
{ "_wxPyCompositeShape","_class_wxPyCompositeShape",0},
{ "_wxIndividualLayoutConstraint","_class_wxIndividualLayoutConstraint",0},
{ "_wxCursor","_class_wxCursor",0},
{ "_wxNotifyEvent","_class_wxNotifyEvent",0},
{ "_wxPyTreeCtrl","_class_wxPyTreeCtrl",0},
{ "_wxImageHandler","_class_wxImageHandler",0},
{ "_class_wxPyRectangleShape","_wxPyRectangleShape",0},
{ "_wxLog","_class_wxLog",0},
{ "_class_wxToolBarBase","_wxToolBarBase",0},
{ "_wxMask","_class_wxMask",0},
{ "_wxToolTip","_class_wxToolTip",0},
{ "_wxPNGHandler","_class_wxPNGHandler",0},
{ "_class_wxOGLConstraint","_wxOGLConstraint",0},
{ "_class_wxColourData","_wxColourData",0},
{ "_class_wxPageSetupDialogData","_wxPageSetupDialogData",0},
{ "_wxPrinter","_class_wxPrinter",0},
{ "_wxPseudoMetaFile","_class_wxPseudoMetaFile",0},
{ "_class_wxArrowHead","_wxArrowHead",0},
{ "_wxPen","_class_wxPen",0},
{ "_wxUpdateUIEvent","_class_wxUpdateUIEvent",0},
{ "_class_wxNotebookSizer","_wxNotebookSizer",0},
{ "_byte","_unsigned_char",0},
{ "_wxDataObject","_class_wxDataObject",0},
{ "_class_wxPyFontEnumerator","_wxPyFontEnumerator",0},
{ "_wxStaticBox","_class_wxStaticBox",0},
{ "_wxPyDataObjectSimple","_class_wxPyDataObjectSimple",0},
{ "_wxPyDropSource","_class_wxPyDropSource",0},
{ "_wxChoice","_class_wxChoice",0},
{ "_wxSlider","_class_wxSlider",0},
{ "_wxNotebookEvent","_class_wxNotebookEvent",0},
{ "_wxPyPrintout","_class_wxPyPrintout",0},
{ "_wxShapeRegion","_class_wxShapeRegion",0},
{ "_long","_unsigned_long",0},
{ "_long","_signed_long",0},
{ "_wxImageList","_class_wxImageList",0},
{ "_wxDataObjectSimple","_class_wxDataObjectSimple",0},
{ "_wxDropFilesEvent","_class_wxDropFilesEvent",0},
{ "_wxBitmapButton","_class_wxBitmapButton",0},
{ "_wxSashWindow","_class_wxSashWindow",0},
{ "_class_wxSizer","_wxSizer",0},
{ "_class_wxTIFFHandler","_wxTIFFHandler",0},
{ "_class_wxPrintDialogData","_wxPrintDialogData",0},
{ "_wxGridSizer","_class_wxGridSizer",0},
{ "_class_wxAcceleratorTable","_wxAcceleratorTable",0},
{ "_class_wxClipboard","_wxClipboard",0},
{ "_class_wxGauge","_wxGauge",0},
{ "_class_wxSashEvent","_wxSashEvent",0},
{ "_wxDC","_class_wxDC",0},
{ "_wxSizerItem","_class_wxSizerItem",0},
{ "_class_wxBitmapDataObject","_wxBitmapDataObject",0},
{ "_wxListEvent","_class_wxListEvent",0},
{ "_class_wxSingleChoiceDialog","_wxSingleChoiceDialog",0},
{ "_wxProgressDialog","_class_wxProgressDialog",0},
{ "_class_wxBMPHandler","_wxBMPHandler",0},
{ "_wxPrintPreview","_class_wxPrintPreview",0},
{ "_class_wxFlexGridSizer","_wxFlexGridSizer",0},
{ "_wxSpinEvent","_class_wxSpinEvent",0},
{ "_wxSashLayoutWindow","_class_wxSashLayoutWindow",0},
{ "_wxPyBitmapShape","_class_wxPyBitmapShape",0},
{ "_class_wxPyEllipseShape","_wxPyEllipseShape",0},
{ "_size_t","_wxCoord",0},
{ "_size_t","_wxPrintQuality",0},
{ "_size_t","_time_t",0},
{ "_size_t","_unsigned_int",0},
{ "_size_t","_int",0},
{ "_size_t","_wxWindowID",0},
{ "_size_t","_uint",0},
{ "_class_wxRealPoint","_wxRealPoint",0},
{ "_wxNavigationKeyEvent","_class_wxNavigationKeyEvent",0},
{ "_wxPNMHandler","_class_wxPNMHandler",0},
{ "_wxWindowCreateEvent","_class_wxWindowCreateEvent",0},
{ "_wxLogGui","_class_wxLogGui",0},
{ "_class_wxPyShapeEvtHandler","_wxPyShapeEvtHandler",0},
{ "_class_wxMenuItem","_wxMenuItem",0},
{ "_class_wxPaintEvent","_wxPaintEvent",0},
{ "_wxSysColourChangedEvent","_class_wxSysColourChangedEvent",0},
{ "_class_wxStatusBar","_wxStatusBar",0},
{ "_class_wxGIFHandler","_wxGIFHandler",0},
{ "_class_wxPySizer","_wxPySizer",0},
{ "_class_wxPyCompositeShape","_wxPyCompositeShape",0},
{ "_wxPyPolygonShape","_class_wxPyPolygonShape",0},
{ "_class_wxPostScriptDC","_wxPostScriptDC",0},
{ "_wxPanel","_class_wxPanel",0},
{ "_wxInitDialogEvent","_class_wxInitDialogEvent",0},
{ "_wxCheckBox","_class_wxCheckBox",0},
{ "_class_wxPyTreeCtrl","_wxPyTreeCtrl",0},
{ "_wxPyEvent","_class_wxPyEvent",0},
{ "_wxTextCtrl","_class_wxTextCtrl",0},
{ "_class_wxMask","_wxMask",0},
{ "_wxTextDataObject","_class_wxTextDataObject",0},
{ "_class_wxKeyEvent","_wxKeyEvent",0},
{ "_class_wxToolTip","_wxToolTip",0},
{ "_class_wxPNGHandler","_wxPNGHandler",0},
{ "_wxColour","_class_wxColour",0},
{ "_class_wxDialog","_wxDialog",0},
{ "_wxBusyCursor","_class_wxBusyCursor",0},
{ "_wxPageSetupDialog","_class_wxPageSetupDialog",0},
{ "_class_wxPrinter","_wxPrinter",0},
{ "_class_wxFileDataObject","_wxFileDataObject",0},
{ "_wxIdleEvent","_class_wxIdleEvent",0},
{ "_class_wxUpdateUIEvent","_wxUpdateUIEvent",0},
{ "_wxToolBar","_class_wxToolBar",0},
{ "_class_wxDataObject","_wxDataObject",0},
{ "_wxCaret","_class_wxCaret",0},
{ "_wxStaticLine","_class_wxStaticLine",0},
{ "_class_wxLayoutAlgorithm","_wxLayoutAlgorithm",0},
{ "_wxBrush","_class_wxBrush",0},
{ "_wxMiniFrame","_class_wxMiniFrame",0},
{ "_class_wxNotebookEvent","_wxNotebookEvent",0},
{ "_class_wxPyPrintout","_wxPyPrintout",0},
{ "_wxDataFormat","_class_wxDataFormat",0},
{ "_class_wxDataObjectSimple","_wxDataObjectSimple",0},
{ "_class_wxSashWindow","_wxSashWindow",0},
{ "_wxShowEvent","_class_wxShowEvent",0},
{ "_class_wxPyDivisionShape","_wxPyDivisionShape",0},
{ "_uint","_wxCoord",0},
{ "_uint","_wxPrintQuality",0},
{ "_uint","_time_t",0},
{ "_uint","_size_t",0},
{ "_uint","_unsigned_int",0},
{ "_uint","_int",0},
{ "_uint","_wxWindowID",0},
{ "_wxChar","_char",0},
{ "_wxPyValidator","_class_wxPyValidator",0},
{ "_class_wxEvent","_wxEvent",0},
{ "_wxCheckListBox","_class_wxCheckListBox",0},
{ "_wxSplitterEvent","_class_wxSplitterEvent",0},
{ "_wxRect","_class_wxRect",0},
{ "_wxCommandEvent","_class_wxCommandEvent",0},
{ "_wxPyShapeCanvas","_class_wxPyShapeCanvas",0},
{ "_wxSizeEvent","_class_wxSizeEvent",0},
{ "_class_wxLogWindow","_wxLogWindow",0},
{ "_class_wxImage","_wxImage",0},
{ "_wxPoint","_class_wxPoint",0},
{ "_class_wxSashLayoutWindow","_wxSashLayoutWindow",0},
{ "_class_wxPyBitmapShape","_wxPyBitmapShape",0},
{ "_class_wxButton","_wxButton",0},
{ "_wxRadioBox","_class_wxRadioBox",0},
{ "_class_wxSpinCtrl","_wxSpinCtrl",0},
{ "_class_wxFontData","_wxFontData",0},
{ "_class_wxPNMHandler","_wxPNMHandler",0},
{ "_wxBoxSizer","_class_wxBoxSizer",0},
{ "_char","_wxChar",0},
{ "_wxBitmap","_class_wxBitmap",0},
{ "_wxPrintDialog","_class_wxPrintDialog",0},
{ "_wxPyControlPoint","_class_wxPyControlPoint",0},
{ "_wxWindowDC","_class_wxWindowDC",0},
{ "_wxTimerEvent","_class_wxTimerEvent",0},
{ "_wxPyTimer","_class_wxPyTimer",0},
{ "_wxScrollBar","_class_wxScrollBar",0},
{ "_wxSpinButton","_class_wxSpinButton",0},
{ "_wxColourDialog","_class_wxColourDialog",0},
{ "_wxPrintData","_class_wxPrintData",0},
{ "_class_wxIndividualLayoutConstraint","_wxIndividualLayoutConstraint",0},
{ "_class_wxNotifyEvent","_wxNotifyEvent",0},
{ "_wxMessageDialog","_class_wxMessageDialog",0},
{ "_class_wxValidator","_wxValidator",0},
{ "_class_wxPyEvent","_wxPyEvent",0},
{ "_wxTextEntryDialog","_class_wxTextEntryDialog",0},
{ "_class_wxIconizeEvent","_wxIconizeEvent",0},
{ "_class_wxStaticBitmap","_wxStaticBitmap",0},
{ "_class_wxPyDrawnShape","_wxPyDrawnShape",0},
{ "_class_wxBusyCursor","_wxBusyCursor",0},
{ "_wxToolBarSimple","_class_wxToolBarSimple",0},
{ "_wxMDIChildFrame","_class_wxMDIChildFrame",0},
{ "_wxListItem","_class_wxListItem",0},
{ "_class_wxPseudoMetaFile","_wxPseudoMetaFile",0},
{ "_class_wxToolBar","_wxToolBar",0},
{ "_wxDropTarget","_class_wxDropTarget",0},
{ "_class_wxStaticLine","_wxStaticLine",0},
{ "_wxScrollEvent","_class_wxScrollEvent",0},
{ "_wxToolBarToolBase","_class_wxToolBarToolBase",0},
{ "_wxCalculateLayoutEvent","_class_wxCalculateLayoutEvent",0},
{ "_class_wxShapeRegion","_wxShapeRegion",0},
{ "_EBool","_wxCoord",0},
{ "_EBool","_wxPrintQuality",0},
{ "_EBool","_signed_int",0},
{ "_EBool","_int",0},
{ "_EBool","_wxWindowID",0},
{ "_class_wxRegion","_wxRegion",0},
{ "_class_wxDataFormat","_wxDataFormat",0},
{ "_class_wxDropFilesEvent","_wxDropFilesEvent",0},
{ "_wxWindowDestroyEvent","_class_wxWindowDestroyEvent",0},
{ "_class_wxPreviewFrame","_wxPreviewFrame",0},
{ "_wxStaticText","_class_wxStaticText",0},
{ "_wxFont","_class_wxFont",0},
{ "_class_wxPyDropTarget","_wxPyDropTarget",0},
{ "_wxCloseEvent","_class_wxCloseEvent",0},
{ "_class_wxSplitterEvent","_wxSplitterEvent",0},
{ "_wxNotebook","_class_wxNotebook",0},
{ "_unsigned_long","_long",0},
{ "_class_wxRect","_wxRect",0},
{ "_class_wxDC","_wxDC",0},
{ "_wxScrollWinEvent","_class_wxScrollWinEvent",0},
{ "_wxPyCircleShape","_class_wxPyCircleShape",0},
{ "_class_wxPyShapeCanvas","_wxPyShapeCanvas",0},
{ "_wxGenericDragImage","_class_wxGenericDragImage",0},
{ "_class_wxProgressDialog","_wxProgressDialog",0},
{ "_wxQueryNewPaletteEvent","_class_wxQueryNewPaletteEvent",0},
{ "_wxPyApp","_class_wxPyApp",0},
{ "_class_wxWindowCreateEvent","_wxWindowCreateEvent",0},
{ "_wxLogTextCtrl","_class_wxLogTextCtrl",0},
{ "_wxMDIParentFrame","_class_wxMDIParentFrame",0},
{ "_class_wxTreeEvent","_wxTreeEvent",0},
{ "_class_wxDirDialog","_wxDirDialog",0},
{ "_wxPyLineShape","_class_wxPyLineShape",0},
{ "_wxFocusEvent","_class_wxFocusEvent",0},
{ "_wxMaximizeEvent","_class_wxMaximizeEvent",0},
{ "_class_wxTimerEvent","_wxTimerEvent",0},
{ "_class_wxPyTimer","_wxPyTimer",0},
{ "_class_wxSpinButton","_wxSpinButton",0},
{ "_class_wxPyPolygonShape","_wxPyPolygonShape",0},
{ "_wxAcceleratorEntry","_class_wxAcceleratorEntry",0},
{ "_class_wxPanel","_wxPanel",0},
{ "_class_wxCheckBox","_wxCheckBox",0},
{ "_wxComboBox","_class_wxComboBox",0},
{ "_wxRadioButton","_class_wxRadioButton",0},
{ "_class_wxMessageDialog","_wxMessageDialog",0},
{ "_signed_int","_wxCoord",0},
{ "_signed_int","_wxPrintQuality",0},
{ "_signed_int","_EBool",0},
{ "_signed_int","_wxWindowID",0},
{ "_signed_int","_int",0},
{ "_class_wxTextCtrl","_wxTextCtrl",0},
{ "_class_wxListItemAttr","_wxListItemAttr",0},
{ "_wxLayoutConstraints","_class_wxLayoutConstraints",0},
{ "_class_wxTextDataObject","_wxTextDataObject",0},
{ "_wxMenu","_class_wxMenu",0},
{ "_class_wxMoveEvent","_wxMoveEvent",0},
{ "_wxListBox","_class_wxListBox",0},
{ "_wxScreenDC","_class_wxScreenDC",0},
{ "_class_wxToolBarSimple","_wxToolBarSimple",0},
{ "_class_wxMDIChildFrame","_wxMDIChildFrame",0},
{ "_wxArrowHead","_class_wxArrowHead",0},
{ "_WXTYPE","_short",0},
{ "_WXTYPE","_signed_short",0},
{ "_WXTYPE","_unsigned_short",0},
{ "_wxFileDialog","_class_wxFileDialog",0},
{ "_class_wxDropTarget","_wxDropTarget",0},
{ "_class_wxCaret","_wxCaret",0},
{ "_class_wxMDIClientWindow","_wxMDIClientWindow",0},
{ "_class_wxBrush","_wxBrush",0},
{ "_wxTipProvider","_class_wxTipProvider",0},
{ "_unsigned_short","_WXTYPE",0},
{ "_unsigned_short","_short",0},
{ "_class_wxWindow","_wxWindow",0},
{ "_class_wxLogStderr","_wxLogStderr",0},
{ "_wxSplitterWindow","_class_wxSplitterWindow",0},
{ "_class_wxStaticText","_wxStaticText",0},
{ "_wxPrintDialogData","_class_wxPrintDialogData",0},
{ "_class_wxFont","_wxFont",0},
{ "_wxClipboard","_class_wxClipboard",0},
{ "_class_wxPyValidator","_wxPyValidator",0},
{ "_class_wxCloseEvent","_wxCloseEvent",0},
{ "_wxSashEvent","_class_wxSashEvent",0},
{ "_wxBusyInfo","_class_wxBusyInfo",0},
{ "_class_wxMenuEvent","_wxMenuEvent",0},
{ "_wxPaletteChangedEvent","_class_wxPaletteChangedEvent",0},
{ "_class_wxPyBitmapDataObject","_wxPyBitmapDataObject",0},
{ "_class_wxPyCircleShape","_wxPyCircleShape",0},
{ "_wxClientDC","_class_wxClientDC",0},
{ "_wxMouseEvent","_class_wxMouseEvent",0},
{ "_class_wxGenericDragImage","_wxGenericDragImage",0},
{ "_wxListCtrl","_class_wxListCtrl",0},
{ "_wxSingleChoiceDialog","_class_wxSingleChoiceDialog",0},
{ "_wxPyDividedShape","_class_wxPyDividedShape",0},
{ "_class_wxPoint","_wxPoint",0},
{ "_wxRealPoint","_class_wxRealPoint",0},
{ "_class_wxRadioBox","_wxRadioBox",0},
{ "_class_wxBoxSizer","_wxBoxSizer",0},
{ "_signed_short","_WXTYPE",0},
{ "_signed_short","_short",0},
{ "_wxMemoryDC","_class_wxMemoryDC",0},
{ "_wxPyTextDataObject","_class_wxPyTextDataObject",0},
{ "_class_wxPrintDialog","_wxPrintDialog",0},
{ "_class_wxPyControlPoint","_wxPyControlPoint",0},
{ "_wxPaintDC","_class_wxPaintDC",0},
{ "_class_wxWindowDC","_wxWindowDC",0},
{ "_class_wxFocusEvent","_wxFocusEvent",0},
{ "_class_wxMaximizeEvent","_wxMaximizeEvent",0},
{ "_wxStatusBar","_class_wxStatusBar",0},
{ "_class_wxAcceleratorEntry","_wxAcceleratorEntry",0},
{ "_class_wxCursor","_wxCursor",0},
{ "_wxPostScriptDC","_class_wxPostScriptDC",0},
{ "_wxPyFileDropTarget","_class_wxPyFileDropTarget",0},
{ "_class_wxImageHandler","_wxImageHandler",0},
{ "_wxPyShape","_class_wxPyShape",0},
{ "_wxScrolledWindow","_class_wxScrolledWindow",0},
{ "_class_wxLog","_wxLog",0},
{ "_wxTreeItemId","_class_wxTreeItemId",0},
{ "_unsigned_char","_byte",0},
{ "_class_wxMenu","_wxMenu",0},
{ "_wxControl","_class_wxControl",0},
{ "_class_wxListBox","_wxListBox",0},
{ "_unsigned_int","_wxCoord",0},
{ "_unsigned_int","_wxPrintQuality",0},
{ "_unsigned_int","_time_t",0},
{ "_unsigned_int","_size_t",0},
{ "_unsigned_int","_uint",0},
{ "_unsigned_int","_wxWindowID",0},
{ "_unsigned_int","_int",0},
{ "_wxIcon","_class_wxIcon",0},
{ "_wxDialog","_class_wxDialog",0},
{ "_class_wxListItem","_wxListItem",0},
{ "_class_wxPen","_wxPen",0},
{ "_class_wxFileDialog","_wxFileDialog",0},
{ "_wxQueryLayoutInfoEvent","_class_wxQueryLayoutInfoEvent",0},
{ "_short","_WXTYPE",0},
{ "_short","_unsigned_short",0},
{ "_short","_signed_short",0},
{ "_class_wxStaticBox","_wxStaticBox",0},
{ "_wxLayoutAlgorithm","_class_wxLayoutAlgorithm",0},
{ "_wxPyTextShape","_class_wxPyTextShape",0},
{ "_class_wxPyDataObjectSimple","_wxPyDataObjectSimple",0},
{ "_class_wxPyDropSource","_wxPyDropSource",0},
{ "_class_wxScrollEvent","_wxScrollEvent",0},
{ "_wxJoystickEvent","_class_wxJoystickEvent",0},
{ "_class_wxChoice","_wxChoice",0},
{ "_class_wxSlider","_wxSlider",0},
{ "_class_wxCalculateLayoutEvent","_wxCalculateLayoutEvent",0},
{ "_class_wxImageList","_wxImageList",0},
{ "_class_wxBitmapButton","_wxBitmapButton",0},
{ "_wxPyTipProvider","_class_wxPyTipProvider",0},
{ "_wxFrame","_class_wxFrame",0},
{ "_wxPCXHandler","_class_wxPCXHandler",0},
{ "_class_wxGridSizer","_wxGridSizer",0},
{ "_wxPyDivisionShape","_class_wxPyDivisionShape",0},
{ "_class_wxPaletteChangedEvent","_wxPaletteChangedEvent",0},
{ "_class_wxNotebook","_wxNotebook",0},
{ "_wxJPEGHandler","_class_wxJPEGHandler",0},
{ "_wxWindowID","_wxCoord",0},
{ "_wxWindowID","_wxPrintQuality",0},
{ "_wxWindowID","_time_t",0},
{ "_wxWindowID","_size_t",0},
{ "_wxWindowID","_EBool",0},
{ "_wxWindowID","_uint",0},
{ "_wxWindowID","_int",0},
{ "_wxWindowID","_signed_int",0},
{ "_wxWindowID","_unsigned_int",0},
{ "_class_wxScrollWinEvent","_wxScrollWinEvent",0},
{ "_class_wxSizerItem","_wxSizerItem",0},
{ "_int","_wxCoord",0},
{ "_int","_wxPrintQuality",0},
{ "_int","_time_t",0},
{ "_int","_size_t",0},
{ "_int","_EBool",0},
{ "_int","_uint",0},
{ "_int","_wxWindowID",0},
{ "_int","_unsigned_int",0},
{ "_int","_signed_int",0},
{ "_class_wxMouseEvent","_wxMouseEvent",0},
{ "_wxPyCommandEvent","_class_wxPyCommandEvent",0},
{ "_wxLogWindow","_class_wxLogWindow",0},
{ "_class_wxListEvent","_wxListEvent",0},
{ "_class_wxPrintPreview","_wxPrintPreview",0},
{ "_class_wxSpinEvent","_wxSpinEvent",0},
{ "_class_wxQueryNewPaletteEvent","_wxQueryNewPaletteEvent",0},
{ "_time_t","_wxCoord",0},
{ "_time_t","_wxPrintQuality",0},
{ "_time_t","_unsigned_int",0},
{ "_time_t","_int",0},
{ "_time_t","_wxWindowID",0},
{ "_time_t","_uint",0},
{ "_time_t","_size_t",0},
{ "_class_wxNavigationKeyEvent","_wxNavigationKeyEvent",0},
{ "_wxLogNull","_class_wxLogNull",0},
{ "_wxButton","_class_wxButton",0},
{ "_class_wxPyApp","_wxPyApp",0},
{ "_wxSize","_class_wxSize",0},
{ "_wxRegionIterator","_class_wxRegionIterator",0},
{ "_class_wxPyTextDataObject","_wxPyTextDataObject",0},
{ "_class_wxLogTextCtrl","_wxLogTextCtrl",0},
{ "_class_wxLogGui","_wxLogGui",0},
{ "_class_wxMDIParentFrame","_wxMDIParentFrame",0},
{ "_wxPyTreeItemData","_class_wxPyTreeItemData",0},
{ "_wxStaticBoxSizer","_class_wxStaticBoxSizer",0},
{ "_class_wxPyLineShape","_wxPyLineShape",0},
{ "_class_wxPaintDC","_wxPaintDC",0},
{ "_class_wxSysColourChangedEvent","_wxSysColourChangedEvent",0},
{ "_class_wxPyFileDropTarget","_wxPyFileDropTarget",0},
{ "_class_wxInitDialogEvent","_wxInitDialogEvent",0},
{ "_class_wxComboBox","_wxComboBox",0},
{ "_class_wxRadioButton","_wxRadioButton",0},
{ "_class_wxPyShape","_wxPyShape",0},
{ "_wxValidator","_class_wxValidator",0},
{ "_wxToolBarBase","_class_wxToolBarBase",0},
{ "_class_wxTreeItemId","_wxTreeItemId",0},
{ "_class_wxLayoutConstraints","_wxLayoutConstraints",0},
{ "_wxIconizeEvent","_class_wxIconizeEvent",0},
{ "_class_wxControl","_wxControl",0},
{ "_wxStaticBitmap","_class_wxStaticBitmap",0},
{ "_wxPyDrawnShape","_class_wxPyDrawnShape",0},
{ "_class_wxIcon","_wxIcon",0},
{ "_class_wxColour","_wxColour",0},
{ "_class_wxScreenDC","_wxScreenDC",0},
{ "_class_wxPageSetupDialog","_wxPageSetupDialog",0},
{ "_wxPalette","_class_wxPalette",0},
{ "_class_wxIdleEvent","_wxIdleEvent",0},
{ "_wxCoord","_int",0},
{ "_wxCoord","_signed_int",0},
{ "_wxCoord","_unsigned_int",0},
{ "_wxCoord","_wxWindowID",0},
{ "_wxCoord","_uint",0},
{ "_wxCoord","_EBool",0},
{ "_wxCoord","_size_t",0},
{ "_wxCoord","_time_t",0},
{ "_wxCoord","_wxPrintQuality",0},
{ "_wxEraseEvent","_class_wxEraseEvent",0},
{ "_wxDataObjectComposite","_class_wxDataObjectComposite",0},
{ "_class_wxJoystickEvent","_wxJoystickEvent",0},
{ "_class_wxTipProvider","_wxTipProvider",0},
{ "_class_wxMiniFrame","_wxMiniFrame",0},
{ "_wxFontDialog","_class_wxFontDialog",0},
{ "_wxRegion","_class_wxRegion",0},
{ "_class_wxSplitterWindow","_wxSplitterWindow",0},
{ "_wxPreviewFrame","_class_wxPreviewFrame",0},
{ "_wxSizer","_class_wxSizer",0},
{ "_class_wxShowEvent","_wxShowEvent",0},
{ "_class_wxPyTipProvider","_wxPyTipProvider",0},
{ "_class_wxPCXHandler","_wxPCXHandler",0},
{ "_wxTIFFHandler","_class_wxTIFFHandler",0},
{ "_wxDiagram","_class_wxDiagram",0},
{ "_wxPyDropTarget","_class_wxPyDropTarget",0},
{ "_wxActivateEvent","_class_wxActivateEvent",0},
{ "_wxGauge","_class_wxGauge",0},
{ "_class_wxCheckListBox","_wxCheckListBox",0},
{ "_class_wxBusyInfo","_wxBusyInfo",0},
{ "_class_wxCommandEvent","_wxCommandEvent",0},
{ "_class_wxClientDC","_wxClientDC",0},
{ "_class_wxSizeEvent","_wxSizeEvent",0},
{ "_class_wxListCtrl","_wxListCtrl",0},
{ "_class_wxPyDividedShape","_wxPyDividedShape",0},
{ "_wxPyEllipseShape","_class_wxPyEllipseShape",0},
{ "_wxCustomDataObject","_class_wxCustomDataObject",0},
{ "_class_wxLogNull","_wxLogNull",0},
{ "_class_wxSize","_wxSize",0},
{ "_class_wxBitmap","_wxBitmap",0},
{ "_class_wxMemoryDC","_wxMemoryDC",0},
{ "_wxPyTextDropTarget","_class_wxPyTextDropTarget",0},
{ "_wxMenuBar","_class_wxMenuBar",0},
{ "_wxTreeEvent","_class_wxTreeEvent",0},
{ "_wxDirDialog","_class_wxDirDialog",0},
{ "_wxPyShapeEvtHandler","_class_wxPyShapeEvtHandler",0},
{ "_wxEvtHandler","_class_wxEvtHandler",0},
{ "_wxMenuItem","_class_wxMenuItem",0},
{ "_class_wxScrollBar","_wxScrollBar",0},
{ "_class_wxColourDialog","_wxColourDialog",0},
{ "_class_wxPrintData","_wxPrintData",0},
{ "_wxPyRectangleShape","_class_wxPyRectangleShape",0},
{ "_class_wxScrolledWindow","_wxScrolledWindow",0},
{ "_wxListItemAttr","_class_wxListItemAttr",0},
{ "_class_wxTextEntryDialog","_wxTextEntryDialog",0},
{ "_wxKeyEvent","_class_wxKeyEvent",0},
{ "_wxMoveEvent","_class_wxMoveEvent",0},
{ "_wxOGLConstraint","_class_wxOGLConstraint",0},
{ "_wxColourData","_class_wxColourData",0},
{ "_wxPageSetupDialogData","_class_wxPageSetupDialogData",0},
{ "_class_wxPalette","_wxPalette",0},
{ "_wxFileDataObject","_class_wxFileDataObject",0},
{ "_class_wxQueryLayoutInfoEvent","_wxQueryLayoutInfoEvent",0},
{ "_wxNotebookSizer","_class_wxNotebookSizer",0},
{ "_class_wxEraseEvent","_wxEraseEvent",0},
{ "_wxPyFontEnumerator","_class_wxPyFontEnumerator",0},
{ "_wxMDIClientWindow","_class_wxMDIClientWindow",0},
{ "_class_wxPyTextShape","_wxPyTextShape",0},
{ "_class_wxDataObjectComposite","_wxDataObjectComposite",0},
{ "_class_wxToolBarToolBase","_wxToolBarToolBase",0},
{ "_class_wxFontDialog","_wxFontDialog",0},
{ "_wxWindow","_class_wxWindow",0},
{ "_class_wxWindowDestroyEvent","_wxWindowDestroyEvent",0},
{ "_wxLogStderr","_class_wxLogStderr",0},
{ "_class_wxFrame","_wxFrame",0},
{ "_class_wxDiagram","_wxDiagram",0},
{0,0,0}};
static PyObject *SWIG_globals;
#ifdef __cplusplus
extern "C"
#endif
SWIGEXPORT(void) initoglc() {
PyObject *m, *d;
SWIG_globals = SWIG_newvarlink();
m = Py_InitModule("oglc", oglcMethods);
d = PyModule_GetDict(m);
PyDict_SetItemString(d,"KEY_SHIFT", PyInt_FromLong((long) KEY_SHIFT));
PyDict_SetItemString(d,"KEY_CTRL", PyInt_FromLong((long) KEY_CTRL));
PyDict_SetItemString(d,"ARROW_NONE", PyInt_FromLong((long) ARROW_NONE));
PyDict_SetItemString(d,"ARROW_END", PyInt_FromLong((long) ARROW_END));
PyDict_SetItemString(d,"ARROW_BOTH", PyInt_FromLong((long) ARROW_BOTH));
PyDict_SetItemString(d,"ARROW_MIDDLE", PyInt_FromLong((long) ARROW_MIDDLE));
PyDict_SetItemString(d,"ARROW_START", PyInt_FromLong((long) ARROW_START));
PyDict_SetItemString(d,"ARROW_HOLLOW_CIRCLE", PyInt_FromLong((long) ARROW_HOLLOW_CIRCLE));
PyDict_SetItemString(d,"ARROW_FILLED_CIRCLE", PyInt_FromLong((long) ARROW_FILLED_CIRCLE));
PyDict_SetItemString(d,"ARROW_ARROW", PyInt_FromLong((long) ARROW_ARROW));
PyDict_SetItemString(d,"ARROW_SINGLE_OBLIQUE", PyInt_FromLong((long) ARROW_SINGLE_OBLIQUE));
PyDict_SetItemString(d,"ARROW_DOUBLE_OBLIQUE", PyInt_FromLong((long) ARROW_DOUBLE_OBLIQUE));
PyDict_SetItemString(d,"ARROW_METAFILE", PyInt_FromLong((long) ARROW_METAFILE));
PyDict_SetItemString(d,"ARROW_POSITION_END", PyInt_FromLong((long) ARROW_POSITION_END));
PyDict_SetItemString(d,"ARROW_POSITION_START", PyInt_FromLong((long) ARROW_POSITION_START));
PyDict_SetItemString(d,"CONTROL_POINT_VERTICAL", PyInt_FromLong((long) CONTROL_POINT_VERTICAL));
PyDict_SetItemString(d,"CONTROL_POINT_HORIZONTAL", PyInt_FromLong((long) CONTROL_POINT_HORIZONTAL));
PyDict_SetItemString(d,"CONTROL_POINT_DIAGONAL", PyInt_FromLong((long) CONTROL_POINT_DIAGONAL));
PyDict_SetItemString(d,"CONTROL_POINT_ENDPOINT_TO", PyInt_FromLong((long) CONTROL_POINT_ENDPOINT_TO));
PyDict_SetItemString(d,"CONTROL_POINT_ENDPOINT_FROM", PyInt_FromLong((long) CONTROL_POINT_ENDPOINT_FROM));
PyDict_SetItemString(d,"CONTROL_POINT_LINE", PyInt_FromLong((long) CONTROL_POINT_LINE));
PyDict_SetItemString(d,"FORMAT_NONE", PyInt_FromLong((long) FORMAT_NONE));
PyDict_SetItemString(d,"FORMAT_CENTRE_HORIZ", PyInt_FromLong((long) FORMAT_CENTRE_HORIZ));
PyDict_SetItemString(d,"FORMAT_CENTRE_VERT", PyInt_FromLong((long) FORMAT_CENTRE_VERT));
PyDict_SetItemString(d,"FORMAT_SIZE_TO_CONTENTS", PyInt_FromLong((long) FORMAT_SIZE_TO_CONTENTS));
PyDict_SetItemString(d,"LINE_ALIGNMENT_HORIZ", PyInt_FromLong((long) LINE_ALIGNMENT_HORIZ));
PyDict_SetItemString(d,"LINE_ALIGNMENT_VERT", PyInt_FromLong((long) LINE_ALIGNMENT_VERT));
PyDict_SetItemString(d,"LINE_ALIGNMENT_TO_NEXT_HANDLE", PyInt_FromLong((long) LINE_ALIGNMENT_TO_NEXT_HANDLE));
PyDict_SetItemString(d,"LINE_ALIGNMENT_NONE", PyInt_FromLong((long) LINE_ALIGNMENT_NONE));
PyDict_SetItemString(d,"SHADOW_NONE", PyInt_FromLong((long) SHADOW_NONE));
PyDict_SetItemString(d,"SHADOW_LEFT", PyInt_FromLong((long) SHADOW_LEFT));
PyDict_SetItemString(d,"SHADOW_RIGHT", PyInt_FromLong((long) SHADOW_RIGHT));
PyDict_SetItemString(d,"OP_CLICK_LEFT", PyInt_FromLong((long) OP_CLICK_LEFT));
PyDict_SetItemString(d,"OP_CLICK_RIGHT", PyInt_FromLong((long) OP_CLICK_RIGHT));
PyDict_SetItemString(d,"OP_DRAG_LEFT", PyInt_FromLong((long) OP_DRAG_LEFT));
PyDict_SetItemString(d,"OP_DRAG_RIGHT", PyInt_FromLong((long) OP_DRAG_RIGHT));
PyDict_SetItemString(d,"OP_ALL", PyInt_FromLong((long) OP_ALL));
PyDict_SetItemString(d,"ATTACHMENT_MODE_NONE", PyInt_FromLong((long) ATTACHMENT_MODE_NONE));
PyDict_SetItemString(d,"ATTACHMENT_MODE_EDGE", PyInt_FromLong((long) ATTACHMENT_MODE_EDGE));
PyDict_SetItemString(d,"ATTACHMENT_MODE_BRANCHING", PyInt_FromLong((long) ATTACHMENT_MODE_BRANCHING));
PyDict_SetItemString(d,"BRANCHING_ATTACHMENT_NORMAL", PyInt_FromLong((long) BRANCHING_ATTACHMENT_NORMAL));
PyDict_SetItemString(d,"BRANCHING_ATTACHMENT_BLOB", PyInt_FromLong((long) BRANCHING_ATTACHMENT_BLOB));
PyDict_SetItemString(d,"gyCONSTRAINT_CENTRED_VERTICALLY", PyInt_FromLong((long) gyCONSTRAINT_CENTRED_VERTICALLY));
PyDict_SetItemString(d,"gyCONSTRAINT_CENTRED_HORIZONTALLY", PyInt_FromLong((long) gyCONSTRAINT_CENTRED_HORIZONTALLY));
PyDict_SetItemString(d,"gyCONSTRAINT_CENTRED_BOTH", PyInt_FromLong((long) gyCONSTRAINT_CENTRED_BOTH));
PyDict_SetItemString(d,"gyCONSTRAINT_LEFT_OF", PyInt_FromLong((long) gyCONSTRAINT_LEFT_OF));
PyDict_SetItemString(d,"gyCONSTRAINT_RIGHT_OF", PyInt_FromLong((long) gyCONSTRAINT_RIGHT_OF));
PyDict_SetItemString(d,"gyCONSTRAINT_ABOVE", PyInt_FromLong((long) gyCONSTRAINT_ABOVE));
PyDict_SetItemString(d,"gyCONSTRAINT_BELOW", PyInt_FromLong((long) gyCONSTRAINT_BELOW));
PyDict_SetItemString(d,"gyCONSTRAINT_ALIGNED_TOP", PyInt_FromLong((long) gyCONSTRAINT_ALIGNED_TOP));
PyDict_SetItemString(d,"gyCONSTRAINT_ALIGNED_BOTTOM", PyInt_FromLong((long) gyCONSTRAINT_ALIGNED_BOTTOM));
PyDict_SetItemString(d,"gyCONSTRAINT_ALIGNED_LEFT", PyInt_FromLong((long) gyCONSTRAINT_ALIGNED_LEFT));
PyDict_SetItemString(d,"gyCONSTRAINT_ALIGNED_RIGHT", PyInt_FromLong((long) gyCONSTRAINT_ALIGNED_RIGHT));
PyDict_SetItemString(d,"gyCONSTRAINT_MIDALIGNED_TOP", PyInt_FromLong((long) gyCONSTRAINT_MIDALIGNED_TOP));
PyDict_SetItemString(d,"gyCONSTRAINT_MIDALIGNED_BOTTOM", PyInt_FromLong((long) gyCONSTRAINT_MIDALIGNED_BOTTOM));
PyDict_SetItemString(d,"gyCONSTRAINT_MIDALIGNED_LEFT", PyInt_FromLong((long) gyCONSTRAINT_MIDALIGNED_LEFT));
PyDict_SetItemString(d,"gyCONSTRAINT_MIDALIGNED_RIGHT", PyInt_FromLong((long) gyCONSTRAINT_MIDALIGNED_RIGHT));
PyDict_SetItemString(d,"DIVISION_SIDE_NONE", PyInt_FromLong((long) DIVISION_SIDE_NONE));
PyDict_SetItemString(d,"DIVISION_SIDE_LEFT", PyInt_FromLong((long) DIVISION_SIDE_LEFT));
PyDict_SetItemString(d,"DIVISION_SIDE_TOP", PyInt_FromLong((long) DIVISION_SIDE_TOP));
PyDict_SetItemString(d,"DIVISION_SIDE_RIGHT", PyInt_FromLong((long) DIVISION_SIDE_RIGHT));
PyDict_SetItemString(d,"DIVISION_SIDE_BOTTOM", PyInt_FromLong((long) DIVISION_SIDE_BOTTOM));
initoglbasicc();
initoglshapesc();
initoglshapes2c();
initoglcanvasc();
wxClassInfo::CleanUpClasses();
wxClassInfo::InitializeClasses();
{
int i;
for (i = 0; _swig_mapping[i].n1; i++)
SWIG_RegisterMapping(_swig_mapping[i].n1,_swig_mapping[i].n2,_swig_mapping[i].pcnv);
}
}

View File

@@ -1,175 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: ogl.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 30-June-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module ogl
%{
#include "helpers.h"
#include "oglhelpers.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%import windows.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%include _ogldefs.i
%import oglbasic.i
%import oglshapes.i
%import oglshapes2.i
%import oglcanvas.i
%{
#if defined(__WXMSW__)
wxString wxPyEmptyStr("");
wxPoint wxPyDefaultPosition(-1, -1);
wxSize wxPyDefaultSize(-1, -1);
#endif
%}
%pragma(python) code = "import wx"
//---------------------------------------------------------------------------
enum {
KEY_SHIFT,
KEY_CTRL,
ARROW_NONE,
ARROW_END,
ARROW_BOTH,
ARROW_MIDDLE,
ARROW_START,
ARROW_HOLLOW_CIRCLE,
ARROW_FILLED_CIRCLE,
ARROW_ARROW,
ARROW_SINGLE_OBLIQUE,
ARROW_DOUBLE_OBLIQUE,
ARROW_METAFILE,
ARROW_POSITION_END,
ARROW_POSITION_START,
CONTROL_POINT_VERTICAL,
CONTROL_POINT_HORIZONTAL,
CONTROL_POINT_DIAGONAL,
CONTROL_POINT_ENDPOINT_TO,
CONTROL_POINT_ENDPOINT_FROM,
CONTROL_POINT_LINE,
FORMAT_NONE,
FORMAT_CENTRE_HORIZ,
FORMAT_CENTRE_VERT,
FORMAT_SIZE_TO_CONTENTS,
LINE_ALIGNMENT_HORIZ,
LINE_ALIGNMENT_VERT,
LINE_ALIGNMENT_TO_NEXT_HANDLE,
LINE_ALIGNMENT_NONE,
SHADOW_NONE,
SHADOW_LEFT,
SHADOW_RIGHT,
// SHAPE_BASIC,
// SHAPE_RECTANGLE,
// SHAPE_ELLIPSE,
// SHAPE_POLYGON,
// SHAPE_CIRCLE,
// SHAPE_LINE,
// SHAPE_DIVIDED_RECTANGLE,
// SHAPE_COMPOSITE,
// SHAPE_CONTROL_POINT,
// SHAPE_DRAWN,
// SHAPE_DIVISION,
// SHAPE_LABEL_OBJECT,
// SHAPE_BITMAP,
// SHAPE_DIVIDED_OBJECT_CONTROL_POINT,
// OBJECT_REGION,
OP_CLICK_LEFT,
OP_CLICK_RIGHT,
OP_DRAG_LEFT,
OP_DRAG_RIGHT,
OP_ALL,
ATTACHMENT_MODE_NONE,
ATTACHMENT_MODE_EDGE,
ATTACHMENT_MODE_BRANCHING,
BRANCHING_ATTACHMENT_NORMAL,
BRANCHING_ATTACHMENT_BLOB,
gyCONSTRAINT_CENTRED_VERTICALLY,
gyCONSTRAINT_CENTRED_HORIZONTALLY,
gyCONSTRAINT_CENTRED_BOTH,
gyCONSTRAINT_LEFT_OF,
gyCONSTRAINT_RIGHT_OF,
gyCONSTRAINT_ABOVE,
gyCONSTRAINT_BELOW,
gyCONSTRAINT_ALIGNED_TOP,
gyCONSTRAINT_ALIGNED_BOTTOM,
gyCONSTRAINT_ALIGNED_LEFT,
gyCONSTRAINT_ALIGNED_RIGHT,
gyCONSTRAINT_MIDALIGNED_TOP,
gyCONSTRAINT_MIDALIGNED_BOTTOM,
gyCONSTRAINT_MIDALIGNED_LEFT,
gyCONSTRAINT_MIDALIGNED_RIGHT,
DIVISION_SIDE_NONE,
DIVISION_SIDE_LEFT,
DIVISION_SIDE_TOP,
DIVISION_SIDE_RIGHT,
DIVISION_SIDE_BOTTOM,
};
//---------------------------------------------------------------------------
void wxOGLInitialize();
void wxOGLCleanUp();
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
%{
extern "C" SWIGEXPORT(void) initoglbasicc();
extern "C" SWIGEXPORT(void) initoglshapesc();
extern "C" SWIGEXPORT(void) initoglshapes2c();
extern "C" SWIGEXPORT(void) initoglcanvasc();
%}
%init %{
initoglbasicc();
initoglshapesc();
initoglshapes2c();
initoglcanvasc();
wxClassInfo::CleanUpClasses();
wxClassInfo::InitializeClasses();
%}
//----------------------------------------------------------------------
// And this gets appended to the shadow class file.
//----------------------------------------------------------------------
%pragma(python) include="_extras.py";
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------

View File

@@ -1,159 +0,0 @@
# This file was created automatically by SWIG.
import oglc
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
from oglbasic import *
from oglshapes import *
from oglshapes2 import *
from oglcanvas import *
import wx
#-------------- FUNCTION WRAPPERS ------------------
wxOGLInitialize = oglc.wxOGLInitialize
wxOGLCleanUp = oglc.wxOGLCleanUp
#-------------- VARIABLE WRAPPERS ------------------
KEY_SHIFT = oglc.KEY_SHIFT
KEY_CTRL = oglc.KEY_CTRL
ARROW_NONE = oglc.ARROW_NONE
ARROW_END = oglc.ARROW_END
ARROW_BOTH = oglc.ARROW_BOTH
ARROW_MIDDLE = oglc.ARROW_MIDDLE
ARROW_START = oglc.ARROW_START
ARROW_HOLLOW_CIRCLE = oglc.ARROW_HOLLOW_CIRCLE
ARROW_FILLED_CIRCLE = oglc.ARROW_FILLED_CIRCLE
ARROW_ARROW = oglc.ARROW_ARROW
ARROW_SINGLE_OBLIQUE = oglc.ARROW_SINGLE_OBLIQUE
ARROW_DOUBLE_OBLIQUE = oglc.ARROW_DOUBLE_OBLIQUE
ARROW_METAFILE = oglc.ARROW_METAFILE
ARROW_POSITION_END = oglc.ARROW_POSITION_END
ARROW_POSITION_START = oglc.ARROW_POSITION_START
CONTROL_POINT_VERTICAL = oglc.CONTROL_POINT_VERTICAL
CONTROL_POINT_HORIZONTAL = oglc.CONTROL_POINT_HORIZONTAL
CONTROL_POINT_DIAGONAL = oglc.CONTROL_POINT_DIAGONAL
CONTROL_POINT_ENDPOINT_TO = oglc.CONTROL_POINT_ENDPOINT_TO
CONTROL_POINT_ENDPOINT_FROM = oglc.CONTROL_POINT_ENDPOINT_FROM
CONTROL_POINT_LINE = oglc.CONTROL_POINT_LINE
FORMAT_NONE = oglc.FORMAT_NONE
FORMAT_CENTRE_HORIZ = oglc.FORMAT_CENTRE_HORIZ
FORMAT_CENTRE_VERT = oglc.FORMAT_CENTRE_VERT
FORMAT_SIZE_TO_CONTENTS = oglc.FORMAT_SIZE_TO_CONTENTS
LINE_ALIGNMENT_HORIZ = oglc.LINE_ALIGNMENT_HORIZ
LINE_ALIGNMENT_VERT = oglc.LINE_ALIGNMENT_VERT
LINE_ALIGNMENT_TO_NEXT_HANDLE = oglc.LINE_ALIGNMENT_TO_NEXT_HANDLE
LINE_ALIGNMENT_NONE = oglc.LINE_ALIGNMENT_NONE
SHADOW_NONE = oglc.SHADOW_NONE
SHADOW_LEFT = oglc.SHADOW_LEFT
SHADOW_RIGHT = oglc.SHADOW_RIGHT
OP_CLICK_LEFT = oglc.OP_CLICK_LEFT
OP_CLICK_RIGHT = oglc.OP_CLICK_RIGHT
OP_DRAG_LEFT = oglc.OP_DRAG_LEFT
OP_DRAG_RIGHT = oglc.OP_DRAG_RIGHT
OP_ALL = oglc.OP_ALL
ATTACHMENT_MODE_NONE = oglc.ATTACHMENT_MODE_NONE
ATTACHMENT_MODE_EDGE = oglc.ATTACHMENT_MODE_EDGE
ATTACHMENT_MODE_BRANCHING = oglc.ATTACHMENT_MODE_BRANCHING
BRANCHING_ATTACHMENT_NORMAL = oglc.BRANCHING_ATTACHMENT_NORMAL
BRANCHING_ATTACHMENT_BLOB = oglc.BRANCHING_ATTACHMENT_BLOB
gyCONSTRAINT_CENTRED_VERTICALLY = oglc.gyCONSTRAINT_CENTRED_VERTICALLY
gyCONSTRAINT_CENTRED_HORIZONTALLY = oglc.gyCONSTRAINT_CENTRED_HORIZONTALLY
gyCONSTRAINT_CENTRED_BOTH = oglc.gyCONSTRAINT_CENTRED_BOTH
gyCONSTRAINT_LEFT_OF = oglc.gyCONSTRAINT_LEFT_OF
gyCONSTRAINT_RIGHT_OF = oglc.gyCONSTRAINT_RIGHT_OF
gyCONSTRAINT_ABOVE = oglc.gyCONSTRAINT_ABOVE
gyCONSTRAINT_BELOW = oglc.gyCONSTRAINT_BELOW
gyCONSTRAINT_ALIGNED_TOP = oglc.gyCONSTRAINT_ALIGNED_TOP
gyCONSTRAINT_ALIGNED_BOTTOM = oglc.gyCONSTRAINT_ALIGNED_BOTTOM
gyCONSTRAINT_ALIGNED_LEFT = oglc.gyCONSTRAINT_ALIGNED_LEFT
gyCONSTRAINT_ALIGNED_RIGHT = oglc.gyCONSTRAINT_ALIGNED_RIGHT
gyCONSTRAINT_MIDALIGNED_TOP = oglc.gyCONSTRAINT_MIDALIGNED_TOP
gyCONSTRAINT_MIDALIGNED_BOTTOM = oglc.gyCONSTRAINT_MIDALIGNED_BOTTOM
gyCONSTRAINT_MIDALIGNED_LEFT = oglc.gyCONSTRAINT_MIDALIGNED_LEFT
gyCONSTRAINT_MIDALIGNED_RIGHT = oglc.gyCONSTRAINT_MIDALIGNED_RIGHT
DIVISION_SIDE_NONE = oglc.DIVISION_SIDE_NONE
DIVISION_SIDE_LEFT = oglc.DIVISION_SIDE_LEFT
DIVISION_SIDE_TOP = oglc.DIVISION_SIDE_TOP
DIVISION_SIDE_RIGHT = oglc.DIVISION_SIDE_RIGHT
DIVISION_SIDE_BOTTOM = oglc.DIVISION_SIDE_BOTTOM
#-------------- USER INCLUDE -----------------------
wxShapeCanvas = wxPyShapeCanvas
wxShapeEvtHandler = wxPyShapeEvtHandler
wxShape = wxPyShape
wxRectangleShape = wxPyRectangleShape
wxBitmapShape = wxPyBitmapShape
wxDrawnShape = wxPyDrawnShape
wxCompositeShape = wxPyCompositeShape
wxDividedShape = wxPyDividedShape
wxDivisionShape = wxPyDivisionShape
wxEllipseShape = wxPyEllipseShape
wxCircleShape = wxPyCircleShape
wxLineShape = wxPyLineShape
wxPolygonShape = wxPyPolygonShape
wxTextShape = wxPyTextShape
wxControlPoint = wxPyControlPoint
# Stuff these names into the wx namespace so wxPyConstructObject can find them
import wx
wx.wxPyShapeCanvasPtr = wxPyShapeCanvasPtr
wx.wxPyShapeEvtHandlerPtr = wxPyShapeEvtHandlerPtr
wx.wxPyShapePtr = wxPyShapePtr
wx.wxPyRectangleShapePtr = wxPyRectangleShapePtr
wx.wxPyBitmapShapePtr = wxPyBitmapShapePtr
wx.wxPyDrawnShapePtr = wxPyDrawnShapePtr
wx.wxPyCompositeShapePtr = wxPyCompositeShapePtr
wx.wxPyDividedShapePtr = wxPyDividedShapePtr
wx.wxPyDivisionShapePtr = wxPyDivisionShapePtr
wx.wxPyEllipseShapePtr = wxPyEllipseShapePtr
wx.wxPyCircleShapePtr = wxPyCircleShapePtr
wx.wxPyLineShapePtr = wxPyLineShapePtr
wx.wxPyPolygonShapePtr = wxPyPolygonShapePtr
wx.wxPyTextShapePtr = wxPyTextShapePtr
wx.wxShapeRegionPtr = wxShapeRegionPtr
wx.wxOGLConstraintPtr = wxOGLConstraintPtr
wx.wxControlPointPtr = wxPyControlPointPtr

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@@ -1,401 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: oglbasic.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 3-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module oglbasic
%{
#include "helpers.h"
#include "oglhelpers.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%import windows.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%include _ogldefs.i
//%extern oglcanvas.i
%pragma(python) code = "import wx"
%pragma(python) code = "from oglcanvas import wxPyShapeCanvasPtr"
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
class wxShapeRegion {
public:
wxShapeRegion();
//~wxShapeRegion();
void SetText(const wxString& s);
void SetFont(wxFont *f);
void SetMinSize(double w, double h);
void SetSize(double w, double h);
void SetPosition(double x, double y);
void SetProportions(double x, double y);
void SetFormatMode(int mode);
void SetName(const wxString& s);
void SetColour(const wxString& col);
wxString GetText();
wxFont *GetFont();
void GetMinSize(double *OUTPUT, double *OUTPUT);
void GetProportion(double *OUTPUT, double *OUTPUT);
void GetSize(double *OUTPUT, double *OUTPUT);
void GetPosition(double *OUTPUT, double *OUTPUT);
int GetFormatMode();
wxString GetName();
wxString GetColour();
wxColour *GetActualColourObject();
wxList& GetFormattedText();
wxString GetPenColour();
int GetPenStyle();
void SetPenStyle(int style);
void SetPenColour(const wxString& col);
wxPen *GetActualPen();
double GetWidth();
double GetHeight();
void ClearText();
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyShapeEvtHandler,wxShapeEvtHandler);
%}
class wxPyShapeEvtHandler {
public:
wxPyShapeEvtHandler(wxPyShapeEvtHandler *prev = NULL,
wxPyShape *shape = NULL);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyShapeEvtHandler)"
%addmethods {
void Destroy() { delete self; }
}
void SetShape(wxPyShape *sh);
wxPyShape *GetShape();
void SetPreviousHandler(wxPyShapeEvtHandler* handler);
wxPyShapeEvtHandler* GetPreviousHandler();
wxPyShapeEvtHandler* CreateNewCopy();
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyShape, wxShape);
%}
class wxPyShape : public wxPyShapeEvtHandler {
public:
// wxPyShape(wxPyShapeCanvas *can = NULL); abstract base class...
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyShape)"
%addmethods {
void Destroy() { delete self; }
}
void GetBoundingBoxMax(double *OUTPUT, double *OUTPUT);
void GetBoundingBoxMin(double *OUTPUT, double *OUTPUT);
bool GetPerimeterPoint(double x1, double y1,
double x2, double y2,
double *OUTPUT, double *OUTPUT);
wxPyShapeCanvas *GetCanvas();
void SetCanvas(wxPyShapeCanvas *the_canvas);
void AddToCanvas(wxPyShapeCanvas *the_canvas, wxPyShape *addAfter = NULL);
void InsertInCanvas(wxPyShapeCanvas *the_canvas);
void RemoveFromCanvas(wxPyShapeCanvas *the_canvas);
double GetX();
double GetY();
void SetX(double x);
void SetY(double y);
wxPyShape *GetParent();
void SetParent(wxPyShape *p);
wxPyShape *GetTopAncestor();
// wxList& GetChildren();
%addmethods {
PyObject* GetChildren() {
wxList& list = self->GetChildren();
return wxPy_ConvertList(&list, "wxPyShape");
}
}
void Unlink();
void SetDrawHandles(bool drawH);
bool GetDrawHandles();
void MakeControlPoints();
void DeleteControlPoints(wxDC *dc = NULL);
void ResetControlPoints();
wxPyShapeEvtHandler *GetEventHandler();
void SetEventHandler(wxPyShapeEvtHandler *handler);
void MakeMandatoryControlPoints();
void ResetMandatoryControlPoints();
bool Recompute();
void CalculateSize();
void Select(bool select = TRUE, wxDC* dc = NULL);
void SetHighlight(bool hi = TRUE, bool recurse = FALSE);
bool IsHighlighted() ;
bool Selected();
bool AncestorSelected();
void SetSensitivityFilter(int sens = OP_ALL, bool recursive = FALSE);
int GetSensitivityFilter();
void SetDraggable(bool drag, bool recursive = FALSE);
void SetFixedSize(bool x, bool y);
void GetFixedSize(bool *OUTPUT, bool *OUTPUT) ;
bool GetFixedWidth();
bool GetFixedHeight();
void SetSpaceAttachments(bool sp);
bool GetSpaceAttachments() ;
void SetShadowMode(int mode, bool redraw = FALSE);
int GetShadowMode();
bool HitTest(double x, double y, int *OUTPUT, double *OUTPUT);
void SetCentreResize(bool cr);
bool GetCentreResize();
void SetMaintainAspectRatio(bool ar);
bool GetMaintainAspectRatio();
// wxList& GetLines();
%addmethods {
PyObject* GetLines() {
wxList& list = self->GetLines();
return wxPy_ConvertList(&list, "wxPyLineShape");
}
}
void SetDisableLabel(bool flag);
bool GetDisableLabel();
void SetAttachmentMode(int mode);
int GetAttachmentMode();
void SetId(long i);
long GetId();
void SetPen(wxPen *pen);
void SetBrush(wxBrush *brush);
// void SetClientData(wxObject *client_data);
// wxObject *GetClientData();
%addmethods {
void SetClientData(PyObject* userData) {
wxPyUserData* data = NULL;
if (userData)
data = new wxPyUserData(userData);
self->SetClientData(data);
}
PyObject* GetClientData() {
wxPyUserData* data = (wxPyUserData*)self->GetClientData();
if (data) {
Py_INCREF(data->m_obj);
return data->m_obj;
} else {
Py_INCREF(Py_None);
return Py_None;
}
}
}
void Show(bool show);
bool IsShown();
void Move(wxDC& dc, double x1, double y1, bool display = TRUE);
void Erase(wxDC& dc);
void EraseContents(wxDC& dc);
void Draw(wxDC& dc);
void Flash();
void MoveLinks(wxDC& dc);
void DrawContents(wxDC& dc);
void SetSize(double x, double y, bool recursive = TRUE);
void SetAttachmentSize(double x, double y);
void Attach(wxPyShapeCanvas *can);
void Detach();
bool Constrain();
void AddLine(wxPyLineShape *line, wxPyShape *other,
int attachFrom = 0, int attachTo = 0,
int positionFrom = -1, int positionTo = -1);
int GetLinePosition(wxPyLineShape* line);
void AddText(const wxString& string);
wxPen *GetPen();
wxBrush *GetBrush();
void SetDefaultRegionSize();
void FormatText(wxDC& dc, const wxString& s, int regionId = 0);
void SetFormatMode(int mode, int regionId = 0);
int GetFormatMode(int regionId = 0);
void SetFont(wxFont *font, int regionId = 0);
wxFont *GetFont(int regionId = 0);
void SetTextColour(const wxString& colour, int regionId = 0);
wxString GetTextColour(int regionId = 0);
int GetNumberOfTextRegions();
void SetRegionName(const wxString& name, int regionId = 0);
wxString GetRegionName(int regionId);
int GetRegionId(const wxString& name);
void NameRegions(const wxString& parentName = "");
// wxList& GetRegions();
%addmethods {
PyObject* GetRegions() {
wxList& list = self->GetRegions();
return wxPy_ConvertList(&list, "wxShapeRegion");
}
}
void AddRegion(wxShapeRegion *region);
void ClearRegions();
void AssignNewIds();
wxPyShape *FindRegion(const wxString& regionName, int *OUTPUT);
void FindRegionNames(wxStringList& list);
void ClearText(int regionId = 0);
void RemoveLine(wxPyLineShape *line);
#ifdef PROLOGIO
void WriteAttributes(wxExpr *clause);
void ReadAttributes(wxExpr *clause);
void ReadConstraints(wxExpr *clause, wxExprDatabase *database);
void WriteRegions(wxExpr *clause);
void ReadRegions(wxExpr *clause);
#endif
bool GetAttachmentPosition(int attachment, double *OUTPUT, double *OUTPUT,
int nth = 0, int no_arcs = 1, wxPyLineShape *line = NULL);
int GetNumberOfAttachments();
bool AttachmentIsValid(int attachment);
bool GetAttachmentPositionEdge(int attachment, double *OUTPUT, double *OUTPUT,
int nth = 0, int no_arcs = 1, wxPyLineShape *line = NULL);
wxRealPoint CalcSimpleAttachment(const wxRealPoint& pt1, const wxRealPoint& pt2,
int nth, int noArcs, wxPyLineShape* line);
bool AttachmentSortTest(int attachmentPoint, const wxRealPoint& pt1, const wxRealPoint& pt2);
void EraseLinks(wxDC& dc, int attachment = -1, bool recurse = FALSE);
void DrawLinks(wxDC& dc, int attachment = -1, bool recurse = FALSE);
bool MoveLineToNewAttachment(wxDC& dc, wxPyLineShape *to_move,
double x, double y);
//void ApplyAttachmentOrdering(wxList& linesToSort);
%addmethods {
void ApplyAttachmentOrdering(PyObject* linesToSort) {
wxList* list = wxPy_wxListHelper(linesToSort, "_wxPyLineShape_p");
self->ApplyAttachmentOrdering(*list);
delete list;
}
}
wxRealPoint GetBranchingAttachmentRoot(int attachment);
bool GetBranchingAttachmentInfo(int attachment, wxRealPoint& root, wxRealPoint& neck,
wxRealPoint& shoulder1, wxRealPoint& shoulder2);
bool GetBranchingAttachmentPoint(int attachment, int n, wxRealPoint& attachmentPoint,
wxRealPoint& stemPoint);
int GetAttachmentLineCount(int attachment);
void SetBranchNeckLength(int len);
int GetBranchNeckLength();
void SetBranchStemLength(int len);
int GetBranchStemLength();
void SetBranchSpacing(int len);
int GetBranchSpacing();
void SetBranchStyle(long style);
long GetBranchStyle();
int PhysicalToLogicalAttachment(int physicalAttachment);
int LogicalToPhysicalAttachment(int logicalAttachment);
bool Draggable();
bool HasDescendant(wxPyShape *image);
wxPyShape *CreateNewCopy(bool resetMapping = TRUE, bool recompute = TRUE);
void Copy(wxPyShape& copy);
void CopyWithHandler(wxPyShape& copy);
void Rotate(double x, double y, double theta);
double GetRotation();
void ClearAttachments();
void Recentre(wxDC& dc);
void ClearPointList(wxList& list);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------

View File

@@ -1,791 +0,0 @@
# This file was created automatically by SWIG.
import oglbasicc
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
import wx
from oglcanvas import wxPyShapeCanvasPtr
class wxShapeRegionPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def SetText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetText,(self,) + _args, _kwargs)
return val
def SetFont(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetFont,(self,) + _args, _kwargs)
return val
def SetMinSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetMinSize,(self,) + _args, _kwargs)
return val
def SetSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetSize,(self,) + _args, _kwargs)
return val
def SetPosition(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetPosition,(self,) + _args, _kwargs)
return val
def SetProportions(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetProportions,(self,) + _args, _kwargs)
return val
def SetFormatMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetFormatMode,(self,) + _args, _kwargs)
return val
def SetName(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetName,(self,) + _args, _kwargs)
return val
def SetColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetColour,(self,) + _args, _kwargs)
return val
def GetText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetText,(self,) + _args, _kwargs)
return val
def GetFont(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetFont,(self,) + _args, _kwargs)
if val: val = wxFontPtr(val)
return val
def GetMinSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetMinSize,(self,) + _args, _kwargs)
return val
def GetProportion(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetProportion,(self,) + _args, _kwargs)
return val
def GetSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetSize,(self,) + _args, _kwargs)
return val
def GetPosition(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetPosition,(self,) + _args, _kwargs)
return val
def GetFormatMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetFormatMode,(self,) + _args, _kwargs)
return val
def GetName(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetName,(self,) + _args, _kwargs)
return val
def GetColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetColour,(self,) + _args, _kwargs)
return val
def GetActualColourObject(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetActualColourObject,(self,) + _args, _kwargs)
if val: val = wxColourPtr(val)
return val
def GetFormattedText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetFormattedText,(self,) + _args, _kwargs)
return val
def GetPenColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetPenColour,(self,) + _args, _kwargs)
return val
def GetPenStyle(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetPenStyle,(self,) + _args, _kwargs)
return val
def SetPenStyle(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetPenStyle,(self,) + _args, _kwargs)
return val
def SetPenColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_SetPenColour,(self,) + _args, _kwargs)
return val
def GetActualPen(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetActualPen,(self,) + _args, _kwargs)
if val: val = wxPenPtr(val)
return val
def GetWidth(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetWidth,(self,) + _args, _kwargs)
return val
def GetHeight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_GetHeight,(self,) + _args, _kwargs)
return val
def ClearText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxShapeRegion_ClearText,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxShapeRegion instance at %s>" % (self.this,)
class wxShapeRegion(wxShapeRegionPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglbasicc.new_wxShapeRegion,_args,_kwargs)
self.thisown = 1
class wxPyShapeEvtHandlerPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler__setSelf,(self,) + _args, _kwargs)
return val
def Destroy(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_Destroy,(self,) + _args, _kwargs)
return val
def SetShape(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_SetShape,(self,) + _args, _kwargs)
return val
def GetShape(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_GetShape,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def SetPreviousHandler(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_SetPreviousHandler,(self,) + _args, _kwargs)
return val
def GetPreviousHandler(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_GetPreviousHandler,(self,) + _args, _kwargs)
if val: val = wxPyShapeEvtHandlerPtr(val)
return val
def CreateNewCopy(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_CreateNewCopy,(self,) + _args, _kwargs)
if val: val = wxPyShapeEvtHandlerPtr(val)
return val
def base_OnDelete(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDelete,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShapeEvtHandler_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyShapeEvtHandler instance at %s>" % (self.this,)
class wxPyShapeEvtHandler(wxPyShapeEvtHandlerPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglbasicc.new_wxPyShapeEvtHandler,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyShapeEvtHandler)
class wxPyShapePtr(wxPyShapeEvtHandlerPtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape__setSelf,(self,) + _args, _kwargs)
return val
def Destroy(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Destroy,(self,) + _args, _kwargs)
return val
def GetBoundingBoxMax(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBoundingBoxMax,(self,) + _args, _kwargs)
return val
def GetBoundingBoxMin(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBoundingBoxMin,(self,) + _args, _kwargs)
return val
def GetPerimeterPoint(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetPerimeterPoint,(self,) + _args, _kwargs)
return val
def GetCanvas(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetCanvas,(self,) + _args, _kwargs)
if val: val = wxPyShapeCanvasPtr(val)
return val
def SetCanvas(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetCanvas,(self,) + _args, _kwargs)
return val
def AddToCanvas(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AddToCanvas,(self,) + _args, _kwargs)
return val
def InsertInCanvas(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_InsertInCanvas,(self,) + _args, _kwargs)
return val
def RemoveFromCanvas(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_RemoveFromCanvas,(self,) + _args, _kwargs)
return val
def GetX(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetX,(self,) + _args, _kwargs)
return val
def GetY(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetY,(self,) + _args, _kwargs)
return val
def SetX(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetX,(self,) + _args, _kwargs)
return val
def SetY(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetY,(self,) + _args, _kwargs)
return val
def GetParent(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetParent,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def SetParent(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetParent,(self,) + _args, _kwargs)
return val
def GetTopAncestor(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetTopAncestor,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def GetChildren(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetChildren,(self,) + _args, _kwargs)
return val
def Unlink(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Unlink,(self,) + _args, _kwargs)
return val
def SetDrawHandles(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetDrawHandles,(self,) + _args, _kwargs)
return val
def GetDrawHandles(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetDrawHandles,(self,) + _args, _kwargs)
return val
def MakeControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_MakeControlPoints,(self,) + _args, _kwargs)
return val
def DeleteControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_DeleteControlPoints,(self,) + _args, _kwargs)
return val
def ResetControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ResetControlPoints,(self,) + _args, _kwargs)
return val
def GetEventHandler(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetEventHandler,(self,) + _args, _kwargs)
if val: val = wxPyShapeEvtHandlerPtr(val)
return val
def SetEventHandler(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetEventHandler,(self,) + _args, _kwargs)
return val
def MakeMandatoryControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_MakeMandatoryControlPoints,(self,) + _args, _kwargs)
return val
def ResetMandatoryControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ResetMandatoryControlPoints,(self,) + _args, _kwargs)
return val
def Recompute(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Recompute,(self,) + _args, _kwargs)
return val
def CalculateSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_CalculateSize,(self,) + _args, _kwargs)
return val
def Select(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Select,(self,) + _args, _kwargs)
return val
def SetHighlight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetHighlight,(self,) + _args, _kwargs)
return val
def IsHighlighted(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_IsHighlighted,(self,) + _args, _kwargs)
return val
def Selected(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Selected,(self,) + _args, _kwargs)
return val
def AncestorSelected(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AncestorSelected,(self,) + _args, _kwargs)
return val
def SetSensitivityFilter(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetSensitivityFilter,(self,) + _args, _kwargs)
return val
def GetSensitivityFilter(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetSensitivityFilter,(self,) + _args, _kwargs)
return val
def SetDraggable(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetDraggable,(self,) + _args, _kwargs)
return val
def SetFixedSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetFixedSize,(self,) + _args, _kwargs)
return val
def GetFixedSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetFixedSize,(self,) + _args, _kwargs)
return val
def GetFixedWidth(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetFixedWidth,(self,) + _args, _kwargs)
return val
def GetFixedHeight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetFixedHeight,(self,) + _args, _kwargs)
return val
def SetSpaceAttachments(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetSpaceAttachments,(self,) + _args, _kwargs)
return val
def GetSpaceAttachments(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetSpaceAttachments,(self,) + _args, _kwargs)
return val
def SetShadowMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetShadowMode,(self,) + _args, _kwargs)
return val
def GetShadowMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetShadowMode,(self,) + _args, _kwargs)
return val
def HitTest(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_HitTest,(self,) + _args, _kwargs)
return val
def SetCentreResize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetCentreResize,(self,) + _args, _kwargs)
return val
def GetCentreResize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetCentreResize,(self,) + _args, _kwargs)
return val
def SetMaintainAspectRatio(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetMaintainAspectRatio,(self,) + _args, _kwargs)
return val
def GetMaintainAspectRatio(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetMaintainAspectRatio,(self,) + _args, _kwargs)
return val
def GetLines(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetLines,(self,) + _args, _kwargs)
return val
def SetDisableLabel(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetDisableLabel,(self,) + _args, _kwargs)
return val
def GetDisableLabel(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetDisableLabel,(self,) + _args, _kwargs)
return val
def SetAttachmentMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetAttachmentMode,(self,) + _args, _kwargs)
return val
def GetAttachmentMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetAttachmentMode,(self,) + _args, _kwargs)
return val
def SetId(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetId,(self,) + _args, _kwargs)
return val
def GetId(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetId,(self,) + _args, _kwargs)
return val
def SetPen(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetPen,(self,) + _args, _kwargs)
return val
def SetBrush(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetBrush,(self,) + _args, _kwargs)
return val
def SetClientData(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetClientData,(self,) + _args, _kwargs)
return val
def GetClientData(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetClientData,(self,) + _args, _kwargs)
return val
def Show(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Show,(self,) + _args, _kwargs)
return val
def IsShown(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_IsShown,(self,) + _args, _kwargs)
return val
def Move(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Move,(self,) + _args, _kwargs)
return val
def Erase(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Erase,(self,) + _args, _kwargs)
return val
def EraseContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_EraseContents,(self,) + _args, _kwargs)
return val
def Draw(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Draw,(self,) + _args, _kwargs)
return val
def Flash(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Flash,(self,) + _args, _kwargs)
return val
def MoveLinks(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_MoveLinks,(self,) + _args, _kwargs)
return val
def DrawContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_DrawContents,(self,) + _args, _kwargs)
return val
def SetSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetSize,(self,) + _args, _kwargs)
return val
def SetAttachmentSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetAttachmentSize,(self,) + _args, _kwargs)
return val
def Attach(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Attach,(self,) + _args, _kwargs)
return val
def Detach(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Detach,(self,) + _args, _kwargs)
return val
def Constrain(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Constrain,(self,) + _args, _kwargs)
return val
def AddLine(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AddLine,(self,) + _args, _kwargs)
return val
def GetLinePosition(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetLinePosition,(self,) + _args, _kwargs)
return val
def AddText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AddText,(self,) + _args, _kwargs)
return val
def GetPen(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetPen,(self,) + _args, _kwargs)
if val: val = wxPenPtr(val)
return val
def GetBrush(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBrush,(self,) + _args, _kwargs)
if val: val = wxBrushPtr(val)
return val
def SetDefaultRegionSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetDefaultRegionSize,(self,) + _args, _kwargs)
return val
def FormatText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_FormatText,(self,) + _args, _kwargs)
return val
def SetFormatMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetFormatMode,(self,) + _args, _kwargs)
return val
def GetFormatMode(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetFormatMode,(self,) + _args, _kwargs)
return val
def SetFont(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetFont,(self,) + _args, _kwargs)
return val
def GetFont(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetFont,(self,) + _args, _kwargs)
if val: val = wxFontPtr(val)
return val
def SetTextColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetTextColour,(self,) + _args, _kwargs)
return val
def GetTextColour(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetTextColour,(self,) + _args, _kwargs)
return val
def GetNumberOfTextRegions(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetNumberOfTextRegions,(self,) + _args, _kwargs)
return val
def SetRegionName(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetRegionName,(self,) + _args, _kwargs)
return val
def GetRegionName(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetRegionName,(self,) + _args, _kwargs)
return val
def GetRegionId(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetRegionId,(self,) + _args, _kwargs)
return val
def NameRegions(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_NameRegions,(self,) + _args, _kwargs)
return val
def GetRegions(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetRegions,(self,) + _args, _kwargs)
return val
def AddRegion(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AddRegion,(self,) + _args, _kwargs)
return val
def ClearRegions(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ClearRegions,(self,) + _args, _kwargs)
return val
def AssignNewIds(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AssignNewIds,(self,) + _args, _kwargs)
return val
def FindRegion(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_FindRegion,(self,) + _args, _kwargs)
return val
def FindRegionNames(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_FindRegionNames,(self,) + _args, _kwargs)
return val
def ClearText(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ClearText,(self,) + _args, _kwargs)
return val
def RemoveLine(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_RemoveLine,(self,) + _args, _kwargs)
return val
def GetAttachmentPosition(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetAttachmentPosition,(self,) + _args, _kwargs)
return val
def GetNumberOfAttachments(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetNumberOfAttachments,(self,) + _args, _kwargs)
return val
def AttachmentIsValid(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AttachmentIsValid,(self,) + _args, _kwargs)
return val
def GetAttachmentPositionEdge(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetAttachmentPositionEdge,(self,) + _args, _kwargs)
return val
def CalcSimpleAttachment(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_CalcSimpleAttachment,(self,) + _args, _kwargs)
if val: val = wxRealPointPtr(val) ; val.thisown = 1
return val
def AttachmentSortTest(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_AttachmentSortTest,(self,) + _args, _kwargs)
return val
def EraseLinks(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_EraseLinks,(self,) + _args, _kwargs)
return val
def DrawLinks(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_DrawLinks,(self,) + _args, _kwargs)
return val
def MoveLineToNewAttachment(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_MoveLineToNewAttachment,(self,) + _args, _kwargs)
return val
def ApplyAttachmentOrdering(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ApplyAttachmentOrdering,(self,) + _args, _kwargs)
return val
def GetBranchingAttachmentRoot(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchingAttachmentRoot,(self,) + _args, _kwargs)
if val: val = wxRealPointPtr(val) ; val.thisown = 1
return val
def GetBranchingAttachmentInfo(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchingAttachmentInfo,(self,) + _args, _kwargs)
return val
def GetBranchingAttachmentPoint(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchingAttachmentPoint,(self,) + _args, _kwargs)
return val
def GetAttachmentLineCount(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetAttachmentLineCount,(self,) + _args, _kwargs)
return val
def SetBranchNeckLength(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetBranchNeckLength,(self,) + _args, _kwargs)
return val
def GetBranchNeckLength(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchNeckLength,(self,) + _args, _kwargs)
return val
def SetBranchStemLength(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetBranchStemLength,(self,) + _args, _kwargs)
return val
def GetBranchStemLength(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchStemLength,(self,) + _args, _kwargs)
return val
def SetBranchSpacing(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetBranchSpacing,(self,) + _args, _kwargs)
return val
def GetBranchSpacing(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchSpacing,(self,) + _args, _kwargs)
return val
def SetBranchStyle(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_SetBranchStyle,(self,) + _args, _kwargs)
return val
def GetBranchStyle(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetBranchStyle,(self,) + _args, _kwargs)
return val
def PhysicalToLogicalAttachment(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_PhysicalToLogicalAttachment,(self,) + _args, _kwargs)
return val
def LogicalToPhysicalAttachment(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_LogicalToPhysicalAttachment,(self,) + _args, _kwargs)
return val
def Draggable(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Draggable,(self,) + _args, _kwargs)
return val
def HasDescendant(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_HasDescendant,(self,) + _args, _kwargs)
return val
def CreateNewCopy(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_CreateNewCopy,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def Copy(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Copy,(self,) + _args, _kwargs)
return val
def CopyWithHandler(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_CopyWithHandler,(self,) + _args, _kwargs)
return val
def Rotate(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Rotate,(self,) + _args, _kwargs)
return val
def GetRotation(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_GetRotation,(self,) + _args, _kwargs)
return val
def ClearAttachments(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ClearAttachments,(self,) + _args, _kwargs)
return val
def Recentre(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_Recentre,(self,) + _args, _kwargs)
return val
def ClearPointList(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_ClearPointList,(self,) + _args, _kwargs)
return val
def base_OnDelete(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDelete,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglbasicc.wxPyShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyShape instance at %s>" % (self.this,)
class wxPyShape(wxPyShapePtr):
def __init__(self,this):
self.this = this
#-------------- FUNCTION WRAPPERS ------------------
#-------------- VARIABLE WRAPPERS ------------------

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@@ -1,2 +0,0 @@
EXPORTS
initoglc

File diff suppressed because it is too large Load Diff

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@@ -1,157 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: oglcanvas.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 7-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module oglcanvas
%{
#include "helpers.h"
#include "oglhelpers.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%import windows.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%include _ogldefs.i
%extern oglbasic.i
%pragma(python) code = "import wx"
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
class wxDiagram {
public:
wxDiagram();
~wxDiagram();
void AddShape(wxPyShape*shape, wxPyShape *addAfter = NULL);
void Clear(wxDC& dc);
void DeleteAllShapes();
void DrawOutline(wxDC& dc, double x1, double y1, double x2, double y2);
wxPyShape* FindShape(long id);
wxPyShapeCanvas* GetCanvas();
int GetCount();
double GetGridSpacing();
int GetMouseTolerance();
// wxList* GetShapeList();
%addmethods {
PyObject* GetShapeList() {
wxList* list = self->GetShapeList();
return wxPy_ConvertList(list, "wxPyShape");
}
}
bool GetQuickEditMode();
bool GetSnapToGrid();
void InsertShape(wxPyShape *shape);
bool LoadFile(const wxString& filename);
// **** Have to deal with wxExpr and wxExprDatabase first...
//void OnDatabaseLoad(wxExprDatabase& database);
//void OnDatabaseSave(wxExprDatabase& database);
//bool OnHeaderLoad(wxExprDatabase& database, wxExpr& expr);
//bool OnHeaderSave(wxExprDatabase& database, wxExpr& expr);
//bool OnShapeLoad(wxExprDatabase& database, wxPyShape& shape, wxExpr& expr);
//bool OnShapeSave(wxExprDatabase& database, wxPyShape& shape, wxExpr& expr);
void ReadContainerGeometry(wxExprDatabase& database);
void ReadLines(wxExprDatabase& database);
void ReadNodes(wxExprDatabase& database);
void RecentreAll(wxDC& dc);
void Redraw(wxDC& dc);
void RemoveAllShapes();
void RemoveShape(wxPyShape* shape);
bool SaveFile(const wxString& filename);
void SetCanvas(wxPyShapeCanvas* canvas);
void SetGridSpacing(double spacing);
void SetMouseTolerance(int tolerance);
void SetQuickEditMode(bool mode);
void SetSnapToGrid(bool snap);
void ShowAll(bool show);
void Snap(double *OUTPUT, double *OUTPUT);
};
//---------------------------------------------------------------------------
%{
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnBeginDragLeft);
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnBeginDragRight);
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnEndDragLeft);
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnEndDragRight);
IMP_PYCALLBACK__BOOL2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnDragLeft);
IMP_PYCALLBACK__BOOL2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnDragRight);
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnLeftClick);
IMP_PYCALLBACK__2DBLINT(wxPyShapeCanvas, wxShapeCanvas, OnRightClick);
%}
class wxPyShapeCanvas : public wxScrolledWindow {
public:
wxPyShapeCanvas(wxWindow* parent = NULL, wxWindowID id = -1,
const wxPoint& pos = wxPyDefaultPosition,
const wxSize& size = wxPyDefaultSize,
long style = wxBORDER);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyShapeCanvas)"
%pragma(python) addtomethod = "__init__:#wx._StdWindowCallbacks(self)"
%pragma(python) addtomethod = "__init__:#wx._StdOnScrollCallbacks(self)"
void AddShape(wxPyShape *shape, wxPyShape *addAfter = NULL);
// **** Need a typemap for wxClassInfo, or implement wxObject, etc.....
wxPyShape* FindShape(double x1, double y, int *OUTPUT,
wxClassInfo *info = NULL, wxPyShape* notImage = NULL);
wxPyShape * FindFirstSensitiveShape(double x1, double y, int *OUTPUT, int op);
wxDiagram* GetDiagram();
bool GetQuickEditMode();
void InsertShape(wxPyShape* shape);
void base_OnBeginDragLeft(double x, double y, int keys = 0);
void base_OnBeginDragRight(double x, double y, int keys = 0);
void base_OnEndDragLeft(double x, double y, int keys = 0);
void base_OnEndDragRight(double x, double y, int keys = 0);
void base_OnDragLeft(bool draw, double x, double y, int keys = 0);
void base_OnDragRight(bool draw, double x, double y, int keys = 0);
void base_OnLeftClick(double x, double y, int keys = 0);
void base_OnRightClick(double x, double y, int keys = 0);
void Redraw(wxDC& dc);
void RemoveShape(wxPyShape *shape);
void SetDiagram(wxDiagram *diagram);
void Snap(double *OUTPUT, double *OUTPUT);
};
//---------------------------------------------------------------------------

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@@ -1,226 +0,0 @@
# This file was created automatically by SWIG.
import oglcanvasc
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
import wx
class wxDiagramPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def __del__(self,oglcanvasc=oglcanvasc):
if self.thisown == 1 :
oglcanvasc.delete_wxDiagram(self)
def AddShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_AddShape,(self,) + _args, _kwargs)
return val
def Clear(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_Clear,(self,) + _args, _kwargs)
return val
def DeleteAllShapes(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_DeleteAllShapes,(self,) + _args, _kwargs)
return val
def DrawOutline(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_DrawOutline,(self,) + _args, _kwargs)
return val
def FindShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_FindShape,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def GetCanvas(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetCanvas,(self,) + _args, _kwargs)
if val: val = wxPyShapeCanvasPtr(val)
return val
def GetCount(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetCount,(self,) + _args, _kwargs)
return val
def GetGridSpacing(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetGridSpacing,(self,) + _args, _kwargs)
return val
def GetMouseTolerance(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetMouseTolerance,(self,) + _args, _kwargs)
return val
def GetShapeList(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetShapeList,(self,) + _args, _kwargs)
return val
def GetQuickEditMode(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetQuickEditMode,(self,) + _args, _kwargs)
return val
def GetSnapToGrid(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_GetSnapToGrid,(self,) + _args, _kwargs)
return val
def InsertShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_InsertShape,(self,) + _args, _kwargs)
return val
def LoadFile(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_LoadFile,(self,) + _args, _kwargs)
return val
def ReadContainerGeometry(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_ReadContainerGeometry,(self,) + _args, _kwargs)
return val
def ReadLines(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_ReadLines,(self,) + _args, _kwargs)
return val
def ReadNodes(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_ReadNodes,(self,) + _args, _kwargs)
return val
def RecentreAll(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_RecentreAll,(self,) + _args, _kwargs)
return val
def Redraw(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_Redraw,(self,) + _args, _kwargs)
return val
def RemoveAllShapes(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_RemoveAllShapes,(self,) + _args, _kwargs)
return val
def RemoveShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_RemoveShape,(self,) + _args, _kwargs)
return val
def SaveFile(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SaveFile,(self,) + _args, _kwargs)
return val
def SetCanvas(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SetCanvas,(self,) + _args, _kwargs)
return val
def SetGridSpacing(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SetGridSpacing,(self,) + _args, _kwargs)
return val
def SetMouseTolerance(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SetMouseTolerance,(self,) + _args, _kwargs)
return val
def SetQuickEditMode(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SetQuickEditMode,(self,) + _args, _kwargs)
return val
def SetSnapToGrid(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_SetSnapToGrid,(self,) + _args, _kwargs)
return val
def ShowAll(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_ShowAll,(self,) + _args, _kwargs)
return val
def Snap(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxDiagram_Snap,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxDiagram instance at %s>" % (self.this,)
class wxDiagram(wxDiagramPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglcanvasc.new_wxDiagram,_args,_kwargs)
self.thisown = 1
class wxPyShapeCanvasPtr(wxScrolledWindowPtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas__setSelf,(self,) + _args, _kwargs)
return val
def AddShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_AddShape,(self,) + _args, _kwargs)
return val
def FindShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_FindShape,(self,) + _args, _kwargs)
return val
def FindFirstSensitiveShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_FindFirstSensitiveShape,(self,) + _args, _kwargs)
return val
def GetDiagram(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_GetDiagram,(self,) + _args, _kwargs)
if val: val = wxDiagramPtr(val)
return val
def GetQuickEditMode(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_GetQuickEditMode,(self,) + _args, _kwargs)
return val
def InsertShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_InsertShape,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_base_OnRightClick,(self,) + _args, _kwargs)
return val
def Redraw(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_Redraw,(self,) + _args, _kwargs)
return val
def RemoveShape(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_RemoveShape,(self,) + _args, _kwargs)
return val
def SetDiagram(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_SetDiagram,(self,) + _args, _kwargs)
return val
def Snap(self, *_args, **_kwargs):
val = apply(oglcanvasc.wxPyShapeCanvas_Snap,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyShapeCanvas instance at %s>" % (self.this,)
class wxPyShapeCanvas(wxPyShapeCanvasPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglcanvasc.new_wxPyShapeCanvas,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyShapeCanvas)
#wx._StdWindowCallbacks(self)
#wx._StdOnScrollCallbacks(self)
#-------------- FUNCTION WRAPPERS ------------------
#-------------- VARIABLE WRAPPERS ------------------

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@@ -1,103 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: oglhelpers.cpp
// Purpose: Some Helper functions to help in data conversions in OGL
//
// Author: Robin Dunn
//
// Created: 3-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
#include <Python.h>
#include "helpers.h"
//---------------------------------------------------------------------------
// This one will work for any class for the VERY generic cases, but beyond that
// the helper needs to know more about the type.
wxList* wxPy_wxListHelper(PyObject* pyList, char* className) {
bool doSave = wxPyRestoreThread();
if (!PyList_Check(pyList)) {
PyErr_SetString(PyExc_TypeError, "Expected a list object.");
wxPySaveThread(doSave);
return NULL;
}
int count = PyList_Size(pyList);
wxList* list = new wxList;
if (! list) {
PyErr_SetString(PyExc_MemoryError, "Unable to allocate wxList object");
wxPySaveThread(doSave);
return NULL;
}
for (int x=0; x<count; x++) {
PyObject* pyo = PyList_GetItem(pyList, x);
wxObject* wxo = NULL;
if (SWIG_GetPtrObj(pyo, (void **)&wxo, className)) {
char errmsg[1024];
sprintf(errmsg, "Type error, expected list of %s objects", className);
PyErr_SetString(PyExc_TypeError, errmsg);
wxPySaveThread(doSave);
return NULL;
}
list->Append(wxo);
}
wxPySaveThread(doSave);
return list;
}
//---------------------------------------------------------------------------
wxList* wxPy_wxRealPoint_ListHelper(PyObject* pyList) {
bool doSave = wxPyRestoreThread();
if (!PyList_Check(pyList)) {
PyErr_SetString(PyExc_TypeError, "Expected a list object.");
wxPySaveThread(doSave);
return NULL;
}
int count = PyList_Size(pyList);
wxList* list = new wxList;
if (! list) {
PyErr_SetString(PyExc_MemoryError, "Unable to allocate wxList object");
wxPySaveThread(doSave);
return NULL;
}
for (int x=0; x<count; x++) {
PyObject* pyo = PyList_GetItem(pyList, x);
if (PyTuple_Check(pyo)) {
PyObject* o1 = PyNumber_Float(PyTuple_GetItem(pyo, 0));
PyObject* o2 = PyNumber_Float(PyTuple_GetItem(pyo, 1));
double val1 = (o1 ? PyFloat_AsDouble(o1) : 0.0);
double val2 = (o2 ? PyFloat_AsDouble(o2) : 0.0);
list->Append((wxObject*) new wxRealPoint(val1, val2));
} else {
wxRealPoint* wxo = NULL;
if (SWIG_GetPtrObj(pyo, (void **)&wxo, "_wxRealPoint_p")) {
PyErr_SetString(PyExc_TypeError, "Type error, expected list of wxRealPoint objects or 2-tuples");
wxPySaveThread(doSave);
return NULL;
}
list->Append((wxObject*) new wxRealPoint(*wxo));
}
}
wxPySaveThread(doSave);
return list;
}
//---------------------------------------------------------------------------

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@@ -1,262 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: oglhelpers.h
// Purpose: Some Helper functions to help in data conversions in OGL
//
// Author: Robin Dunn
//
// Created: 9-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
#ifndef __wxp_ogl_helpers__
#define __wxp_ogl_helpers__
#include <wx/ogl/ogl.h>
#include <wx/ogl/basicp.h>
#include <wx/ogl/constrnt.h>
#include <wx/ogl/bmpshape.h>
#include <wx/ogl/drawn.h>
//---------------------------------------------------------------------------
// Define a macro that will be used in the class definintions below
#define WXSHAPE_DEC_CALLBACKS() \
DEC_PYCALLBACK__ (OnDelete); \
DEC_PYCALLBACK__DC (OnDraw); \
DEC_PYCALLBACK__DC (OnDrawContents); \
DEC_PYCALLBACK__DCBOOL (OnDrawBranches); \
DEC_PYCALLBACK__DC (OnMoveLinks); \
DEC_PYCALLBACK__DC (OnErase); \
DEC_PYCALLBACK__DC (OnEraseContents); \
DEC_PYCALLBACK__DC (OnHighlight); \
DEC_PYCALLBACK__2DBL2INT (OnLeftClick); \
DEC_PYCALLBACK__2DBL2INT (OnLeftDoubleClick); \
DEC_PYCALLBACK__2DBL2INT (OnRightClick); \
DEC_PYCALLBACK__2DBL (OnSize); \
DEC_PYCALLBACK_BOOL_DC4DBLBOOL (OnMovePre); \
DEC_PYCALLBACK__DC4DBLBOOL (OnMovePost); \
DEC_PYCALLBACK__BOOL2DBL2INT (OnDragLeft); \
DEC_PYCALLBACK__2DBL2INT (OnBeginDragLeft); \
DEC_PYCALLBACK__2DBL2INT (OnEndDragLeft); \
DEC_PYCALLBACK__BOOL2DBL2INT (OnDragRight); \
DEC_PYCALLBACK__2DBL2INT (OnBeginDragRight); \
DEC_PYCALLBACK__2DBL2INT (OnEndDragRight); \
DEC_PYCALLBACK__DC4DBL (OnDrawOutline); \
DEC_PYCALLBACK__DC (OnDrawControlPoints); \
DEC_PYCALLBACK__DC (OnEraseControlPoints); \
DEC_PYCALLBACK__DCBOOL (OnMoveLink); \
DEC_PYCALLBACK__WXCPBOOL2DBL2INT(OnSizingDragLeft); \
DEC_PYCALLBACK__WXCP2DBL2INT (OnSizingBeginDragLeft);\
DEC_PYCALLBACK__WXCP2DBL2INT (OnSizingEndDragLeft); \
DEC_PYCALLBACK__2DBL (OnBeginSize); \
DEC_PYCALLBACK__2DBL (OnEndSize); \
\
PYPRIVATE;
#define WXSHAPE_IMP_CALLBACKS(CLASS, PARENT) \
IMP_PYCALLBACK__ (CLASS, PARENT, OnDelete); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnDraw); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnDrawContents); \
IMP_PYCALLBACK__DCBOOL (CLASS, PARENT, OnDrawBranches); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnMoveLinks); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnErase); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnEraseContents); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnHighlight); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnLeftClick); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnLeftDoubleClick); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnRightClick); \
IMP_PYCALLBACK__2DBL (CLASS, PARENT, OnSize); \
IMP_PYCALLBACK_BOOL_DC4DBLBOOL (CLASS, PARENT, OnMovePre); \
IMP_PYCALLBACK__DC4DBLBOOL (CLASS, PARENT, OnMovePost); \
IMP_PYCALLBACK__BOOL2DBL2INT (CLASS, PARENT, OnDragLeft); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnBeginDragLeft); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnEndDragLeft); \
IMP_PYCALLBACK__BOOL2DBL2INT (CLASS, PARENT, OnDragRight); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnBeginDragRight); \
IMP_PYCALLBACK__2DBL2INT (CLASS, PARENT, OnEndDragRight); \
IMP_PYCALLBACK__DC4DBL (CLASS, PARENT, OnDrawOutline); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnDrawControlPoints); \
IMP_PYCALLBACK__DC (CLASS, PARENT, OnEraseControlPoints); \
IMP_PYCALLBACK__DCBOOL (CLASS, PARENT, OnMoveLink); \
IMP_PYCALLBACK__WXCPBOOL2DBL2INT(CLASS, PARENT, OnSizingDragLeft); \
IMP_PYCALLBACK__WXCP2DBL2INT (CLASS, PARENT, OnSizingBeginDragLeft);\
IMP_PYCALLBACK__WXCP2DBL2INT (CLASS, PARENT, OnSizingEndDragLeft); \
IMP_PYCALLBACK__2DBL (CLASS, PARENT, OnBeginSize); \
IMP_PYCALLBACK__2DBL (CLASS, PARENT, OnEndSize); \
// This one may be difficult...
//PYCALLBACK__??????? (PARENT, OnChangeAttachment);
//---------------------------------------------------------------------------
// These are prototypes of some helper functions found in oglhelpers.cpp
wxList* wxPy_wxListHelper(PyObject* pyList, char* className);
wxList* wxPy_wxRealPoint_ListHelper(PyObject* pyList);
//---------------------------------------------------------------------------
// Classes that derive from the shapes and such, but which know how to turn
// virtual callbacks into Python callbacks.
class wxPyShapeCanvas : public wxShapeCanvas {
public:
wxPyShapeCanvas(wxWindow* parent = NULL, wxWindowID id = -1,
const wxPoint& pos = wxPyDefaultPosition,
const wxSize& size = wxPyDefaultSize,
long style = wxBORDER)
: wxShapeCanvas(parent, id, pos, size, style) {}
DEC_PYCALLBACK__2DBLINT(OnBeginDragLeft);
DEC_PYCALLBACK__2DBLINT(OnBeginDragRight);
DEC_PYCALLBACK__2DBLINT(OnEndDragLeft);
DEC_PYCALLBACK__2DBLINT(OnEndDragRight);
DEC_PYCALLBACK__BOOL2DBLINT(OnDragLeft);
DEC_PYCALLBACK__BOOL2DBLINT(OnDragRight);
DEC_PYCALLBACK__2DBLINT(OnLeftClick);
DEC_PYCALLBACK__2DBLINT(OnRightClick);
PYPRIVATE;
};
class wxPyShapeEvtHandler : public wxShapeEvtHandler {
public:
wxPyShapeEvtHandler(wxShapeEvtHandler *prev = NULL, wxShape *shape = NULL)
: wxShapeEvtHandler(prev, shape) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyShape : public wxShape {
public:
wxPyShape(wxPyShapeCanvas *can = NULL)
: wxShape(can) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyRectangleShape : public wxRectangleShape {
public:
wxPyRectangleShape(double width = 0.0, double height = 0.0)
: wxRectangleShape(width, height) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyControlPoint : public wxControlPoint {
public:
wxPyControlPoint(wxPyShapeCanvas *the_canvas = NULL,
wxPyShape *object = NULL,
double size = 0.0, double the_xoffset = 0.0,
double the_yoffset = 0.0, int the_type = 0)
: wxControlPoint(the_canvas, object, size,
the_xoffset, the_yoffset, the_type) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyBitmapShape : public wxBitmapShape {
public:
wxPyBitmapShape() : wxBitmapShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyDrawnShape : public wxDrawnShape {
public:
wxPyDrawnShape() : wxDrawnShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyCompositeShape : public wxCompositeShape {
public:
wxPyCompositeShape() : wxCompositeShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyDividedShape : public wxDividedShape {
public:
wxPyDividedShape(double width = 0.0, double height = 0.0)
: wxDividedShape(width, height) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyDivisionShape : public wxDivisionShape {
public:
wxPyDivisionShape() : wxDivisionShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyEllipseShape : public wxEllipseShape {
public:
wxPyEllipseShape(double width = 0.0, double height = 0.0)
: wxEllipseShape(width, height) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyCircleShape : public wxCircleShape {
public:
wxPyCircleShape(double width = 0.0)
: wxCircleShape(width) {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyLineShape : public wxLineShape {
public:
wxPyLineShape() : wxLineShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyPolygonShape : public wxPolygonShape {
public:
wxPyPolygonShape() : wxPolygonShape() {}
WXSHAPE_DEC_CALLBACKS();
};
class wxPyTextShape : public wxTextShape {
public:
wxPyTextShape(double width = 0.0, double height = 0.0)
: wxTextShape(width, height) {}
WXSHAPE_DEC_CALLBACKS();
};
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
#endif

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/////////////////////////////////////////////////////////////////////////////
// Name: oglshapes.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 3-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module oglshapes
%{
#include "helpers.h"
#include "oglhelpers.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%import windows.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%include _ogldefs.i
%import oglbasic.i
%pragma(python) code = "import wx"
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
class wxPseudoMetaFile {
public:
wxPseudoMetaFile();
~wxPseudoMetaFile();
void Draw(wxDC& dc, double xoffset, double yoffset);
void WriteAttributes(wxExpr *clause, int whichAngle);
void ReadAttributes(wxExpr *clause, int whichAngle);
void Clear();
void Copy(wxPseudoMetaFile& copy);
void Scale(double sx, double sy);
void ScaleTo(double w, double h);
void Translate(double x, double y);
void Rotate(double x, double y, double theta);
bool LoadFromMetaFile(char* filename, double *width, double *height);
void GetBounds(double *minX, double *minY, double *maxX, double *maxY);
void CalculateSize(wxDrawnShape* shape);
// **** fix these... is it even possible? these are lists of various GDI opperations (not the objects...)
// wxList& GetOutlineColours();
// wxList& GetFillColours();
// wxList& GetOps();
void SetRotateable(bool rot);
bool GetRotateable();
void SetSize(double w, double h);
void SetFillBrush(wxBrush* brush);
wxBrush* GetFillBrush();
void SetOutlinePen(wxPen* pen);
wxPen* GetOutlinePen();
void SetOutlineOp(int op);
int GetOutlineOp();
bool IsValid();
void DrawLine(const wxPoint& pt1, const wxPoint& pt2);
void DrawRectangle(const wxRect& rect);
void DrawRoundedRectangle(const wxRect& rect, double radius);
void DrawArc(const wxPoint& centrePt, const wxPoint& startPt, const wxPoint& endPt);
void DrawEllipticArc(const wxRect& rect, double startAngle, double endAngle);
void DrawEllipse(const wxRect& rect);
void DrawPoint(const wxPoint& pt);
void DrawText(const wxString& text, const wxPoint& pt);
void DrawLines(int PCOUNT, wxPoint* points);
void DrawPolygon(int PCOUNT, wxPoint* points, int flags = 0);
void DrawSpline(int PCOUNT, wxPoint* points);
void SetClippingRect(const wxRect& rect);
void DestroyClippingRect();
void SetPen(wxPen* pen, bool isOutline = FALSE);
void SetBrush(wxBrush* brush, bool isFill = FALSE);
void SetFont(wxFont* font);
void SetTextColour(const wxColour& colour);
void SetBackgroundColour(const wxColour& colour);
void SetBackgroundMode(int mode);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyRectangleShape, wxRectangleShape);
%}
class wxPyRectangleShape : public wxPyShape {
public:
wxPyRectangleShape(double width = 0.0, double height = 0.0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyRectangleShape)"
void SetCornerRadius(double radius);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyControlPoint, wxControlPoint);
%}
class wxPyControlPoint : public wxPyRectangleShape {
public:
wxPyControlPoint(wxPyShapeCanvas *the_canvas = NULL,
wxPyShape *object = NULL,
double size = 0.0, double the_xoffset = 0.0,
double the_yoffset = 0.0, int the_type = 0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyControlPoint)"
void SetCornerRadius(double radius);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyBitmapShape, wxBitmapShape);
%}
class wxPyBitmapShape : public wxPyRectangleShape {
public:
wxPyBitmapShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyBitmapShape)"
wxBitmap& GetBitmap();
wxString GetFilename();
void SetBitmap(const wxBitmap& bitmap);
void SetFilename(const wxString& filename);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyDrawnShape, wxDrawnShape);
%}
class wxPyDrawnShape : public wxPyRectangleShape {
public:
wxPyDrawnShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyDrawnShape)"
void CalculateSize();
void DestroyClippingRect();
void DrawArc(const wxPoint& centrePoint, const wxPoint& startPoint,
const wxPoint& endPoint);
void DrawAtAngle(int angle);
void DrawEllipticArc(const wxRect& rect, double startAngle, double endAngle);
void DrawLine(const wxPoint& point1, const wxPoint& point2);
void DrawLines(int PCOUNT, wxPoint* points);
void DrawPoint(const wxPoint& point);
void DrawPolygon(int PCOUNT, wxPoint* points, int flags = 0);
void DrawRectangle(const wxRect& rect);
void DrawRoundedRectangle(const wxRect& rect, double radius);
void DrawSpline(int PCOUNT, wxPoint* points);
void DrawText(const wxString& text, const wxPoint& point);
int GetAngle();
wxPseudoMetaFile& GetMetaFile();
double GetRotation();
bool LoadFromMetaFile(char * filename);
void Rotate(double x, double y, double theta);
void SetClippingRect(const wxRect& rect);
void SetDrawnBackgroundColour(const wxColour& colour);
void SetDrawnBackgroundMode(int mode);
void SetDrawnBrush(wxBrush* pen, bool isOutline = FALSE);
void SetDrawnFont(wxFont* font);
void SetDrawnPen(wxPen* pen, bool isOutline = FALSE);
void SetDrawnTextColour(const wxColour& colour);
void Scale(double sx, double sy);
void SetSaveToFile(bool save);
void Translate(double x, double y);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
class wxOGLConstraint {
public:
//wxOGLConstraint(int type, wxPyShape *constraining, wxList& constrained);
%addmethods {
wxOGLConstraint(int type, wxPyShape *constraining, PyObject* constrained) {
wxList* list = wxPy_wxListHelper(constrained, "_wxPyShape_p");
wxOGLConstraint* rv = new wxOGLConstraint(type, constraining, *list);
delete list;
return rv;
}
}
~wxOGLConstraint();
bool Evaluate();
void SetSpacing(double x, double y);
bool Equals(double a, double b);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyCompositeShape, wxCompositeShape);
%}
class wxPyCompositeShape : public wxPyRectangleShape {
public:
wxPyCompositeShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyCompositeShape)"
void AddChild(wxPyShape *child, wxPyShape *addAfter = NULL);
wxOGLConstraint * AddConstraint(wxOGLConstraint *constraint);
//wxOGLConstraint * AddConstraint(int type,
// wxPyShape *constraining,
// wxList& constrained);
%addmethods {
wxOGLConstraint * AddConstrainedShapes(int type, wxPyShape *constraining,
PyObject* constrained) {
wxList* list = wxPy_wxListHelper(constrained, "_wxPyShape_p");
wxOGLConstraint* rv = self->AddConstraint(type, constraining, *list);
delete list;
return rv;
}
}
%name(AddSimpleConstraint)wxOGLConstraint* AddConstraint(int type,
wxPyShape *constraining,
wxPyShape *constrained);
void CalculateSize();
bool ContainsDivision(wxPyDivisionShape *division);
void DeleteConstraint(wxOGLConstraint *constraint);
void DeleteConstraintsInvolvingChild(wxPyShape *child);
// **** Needs an output typemap
//wxOGLConstraint * FindConstraint(long id, wxPyCompositeShape **actualComposite);
wxPyShape * FindContainerImage();
// wxList& GetConstraints();
// wxList& GetDivisions();
%addmethods {
PyObject* GetConstraints() {
wxList& list = self->GetConstraints();
return wxPy_ConvertList(&list, "wxOGLConstraint");
}
PyObject* GetDivisions() {
wxList& list = self->GetDivisions();
return wxPy_ConvertList(&list, "wxPyDivisionShape");
}
}
void MakeContainer();
bool Recompute();
void RemoveChild(wxPyShape *child);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyDividedShape, wxDividedShape);
%}
class wxPyDividedShape : public wxPyRectangleShape {
public:
wxPyDividedShape(double width = 0.0, double height = 0.0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyDividedShape)"
void EditRegions();
void SetRegionSizes();
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyDivisionShape, wxDivisionShape);
%}
class wxPyDivisionShape : public wxPyCompositeShape {
public:
wxPyDivisionShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyDivisionShape)"
void AdjustBottom(double bottom, bool test);
void AdjustLeft(double left, bool test);
void AdjustRight(double right, bool test);
void AdjustTop(double top, bool test);
void Divide(int direction);
void EditEdge(int side);
wxPyDivisionShape * GetBottomSide();
int GetHandleSide();
wxPyDivisionShape * GetLeftSide();
wxString GetLeftSideColour();
wxPen * GetLeftSidePen();
wxPyDivisionShape * GetRightSide();
wxPyDivisionShape * GetTopSide();
wxPen * GetTopSidePen();
void ResizeAdjoining(int side, double newPos, bool test);
void PopupMenu(double x, double y);
void SetBottomSide(wxPyDivisionShape *shape);
void SetHandleSide(int side);
void SetLeftSide(wxPyDivisionShape *shape);
void SetLeftSideColour(const wxString& colour);
void SetLeftSidePen(wxPen *pen);
void SetRightSide(wxPyDivisionShape *shape);
void SetTopSide(wxPyDivisionShape *shape);
void SetTopSideColour(const wxString& colour);
void SetTopSidePen(wxPen *pen);
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------

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/////////////////////////////////////////////////////////////////////////////
// Name: oglshapes2.i
// Purpose: SWIG definitions for the wxWindows Object Graphics Library
//
// Author: Robin Dunn
//
// Created: 3-Sept-1999
// RCS-ID: $Id$
// Copyright: (c) 1998 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module oglshapes2
%{
#include "helpers.h"
#include "oglhelpers.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%import windows.i
%extern _defs.i
%extern misc.i
%extern gdi.i
%include _ogldefs.i
%import oglbasic.i
%import oglshapes.i
%pragma(python) code = "import wx"
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyEllipseShape, wxEllipseShape);
%}
class wxPyEllipseShape : public wxPyShape {
public:
wxPyEllipseShape(double width = 0.0, double height = 0.0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyEllipseShape)"
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyCircleShape, wxCircleShape);
%}
class wxPyCircleShape : public wxPyEllipseShape {
public:
wxPyCircleShape(double width = 0.0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyCircleShape)"
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
//---------------------------------------------------------------------------
class wxArrowHead {
public:
wxArrowHead(int type = 0,
int end = 0,
double size = 0.0,
double dist = 0.0,
const char * name = "",
wxPseudoMetaFile *mf = NULL,
long arrowId = -1);
~wxArrowHead();
int _GetType();
int GetPosition();
void SetPosition(int pos);
double GetXOffset();
double GetYOffset();
double GetSpacing();
double GetSize();
wxString GetName();
void SetXOffset(double x);
void SetYOffset(double y);
wxPseudoMetaFile *GetMetaFile();
long GetId();
int GetArrowEnd();
double GetArrowSize();
void SetSize(double size);
void SetSpacing(double sp);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyLineShape, wxLineShape);
%}
class wxPyLineShape : public wxPyShape {
public:
wxPyLineShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyLineShape)"
void AddArrow(int type, int end = ARROW_POSITION_END,
double arrowSize = 10.0, double xOffset = 0.0,
char* name = "", wxPseudoMetaFile *mf = NULL,
long arrowId = -1);
//void AddArrowOrdered(wxArrowHead *arrow, wxList& referenceList, int end);
%addmethods {
void AddArrowOrdered(wxArrowHead *arrow, PyObject* referenceList, int end) {
wxList* list = wxPy_wxListHelper(referenceList, "_wxArrowHead_p");
self->AddArrowOrdered(arrow, *list, end);
delete list;
}
}
bool ClearArrow(const wxString& name);
void ClearArrowsAtPosition(int position = -1);
void DrawArrow(wxDC& dc, wxArrowHead *arrow, double xOffset, bool proportionalOffset);
%name(DeleteArrowHeadId)bool DeleteArrowHead(long arrowId);
bool DeleteArrowHead(int position, const wxString& name);
bool DeleteLineControlPoint();
void DrawArrows(wxDC& dc);
void DrawRegion(wxDC& dc, wxShapeRegion *region, double x, double y);
void EraseRegion(wxDC& dc, wxShapeRegion *region, double x, double y);
%name(FindArrowHeadId)wxArrowHead * FindArrowHead(long arrowId);
wxArrowHead * FindArrowHead(int position, const wxString& name);
void FindLineEndPoints(double *OUTPUT, double *OUTPUT,
double *OUTPUT, double *OUTPUT);
int FindLinePosition(double x, double y);
double FindMinimumWidth();
void FindNth(wxPyShape *image, int *OUTPUT, int *OUTPUT, bool incoming);
int GetAttachmentFrom();
int GetAttachmentTo();
void GetEnds(double *OUTPUT, double *OUTPUT, double *OUTPUT, double *OUTPUT);
wxPyShape * GetFrom();
void GetLabelPosition(int position, double *OUTPUT, double *OUTPUT);
wxPoint * GetNextControlPoint(wxPyShape *shape);
wxPyShape * GetTo();
void Initialise();
void InsertLineControlPoint(wxDC* dc);
bool IsEnd(wxPyShape *shape);
bool IsSpline();
void MakeLineControlPoints(int n);
void SetAttachmentFrom(int fromAttach);
void SetAttachments(int fromAttach, int toAttach);
void SetAttachmentTo(int toAttach);
void SetEnds(double x1, double y1, double x2, double y2);
void SetFrom(wxPyShape *object);
void SetIgnoreOffsets(bool ignore);
void SetSpline(bool spline);
void SetTo(wxPyShape *object);
void Straighten(wxDC* dc = NULL);
void Unlink();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyPolygonShape, wxPolygonShape);
%}
class wxPyPolygonShape : public wxPyShape {
public:
wxPyPolygonShape();
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyPolygonShape)"
// void Create(wxList* points);
%addmethods {
PyObject* Create(PyObject* points) {
wxList* list = wxPy_wxRealPoint_ListHelper(points);
if (list) {
self->Create(list);
Py_INCREF(Py_None);
return Py_None;
}
else return NULL;
}
}
void AddPolygonPoint(int pos = 0);
void CalculatePolygonCentre();
void DeletePolygonPoint(int pos = 0);
// wxList* GetPoints();
%addmethods {
PyObject* GetPoints() {
wxList* list = self->GetPoints();
return wxPy_ConvertList(list, "wxRealPoint");
}
}
void UpdateOriginalPoints();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------
%{
WXSHAPE_IMP_CALLBACKS(wxPyTextShape, wxTextShape);
%}
class wxPyTextShape : public wxPyRectangleShape {
public:
wxPyTextShape(double width = 0.0, double height = 0.0);
void _setSelf(PyObject* self, PyObject* _class);
%pragma(python) addtomethod = "__init__:self._setSelf(self, wxPyTextShape)"
void base_OnDelete();
void base_OnDraw(wxDC& dc);
void base_OnDrawContents(wxDC& dc);
void base_OnDrawBranches(wxDC& dc, bool erase = FALSE);
void base_OnMoveLinks(wxDC& dc);
void base_OnErase(wxDC& dc);
void base_OnEraseContents(wxDC& dc);
void base_OnHighlight(wxDC& dc);
void base_OnLeftClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnLeftDoubleClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnRightClick(double x, double y, int keys = 0, int attachment = 0);
void base_OnSize(double x, double y);
bool base_OnMovePre(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnMovePost(wxDC& dc, double x, double y, double old_x, double old_y, bool display = TRUE);
void base_OnDragLeft(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragLeft(double x, double y, int keys=0, int attachment = 0);
void base_OnDragRight(bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnEndDragRight(double x, double y, int keys=0, int attachment = 0);
void base_OnDrawOutline(wxDC& dc, double x, double y, double w, double h);
void base_OnDrawControlPoints(wxDC& dc);
void base_OnEraseControlPoints(wxDC& dc);
void base_OnMoveLink(wxDC& dc, bool moveControlPoints = TRUE);
void base_OnSizingDragLeft(wxPyControlPoint* pt, bool draw, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingBeginDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnSizingEndDragLeft(wxPyControlPoint* pt, double x, double y, int keys=0, int attachment = 0);
void base_OnBeginSize(double w, double h);
void base_OnEndSize(double w, double h);
// void base_OnChangeAttachment(int attachment, wxPyLineShape* line, wxList& ordering);
};
//---------------------------------------------------------------------------

View File

@@ -1,768 +0,0 @@
# This file was created automatically by SWIG.
import oglshapes2c
from misc import *
from misc2 import *
from windows import *
from gdi import *
from clip_dnd import *
from events import *
from mdi import *
from frames import *
from stattool import *
from controls import *
from controls2 import *
from windows2 import *
from cmndlgs import *
from windows3 import *
from image import *
from printfw import *
from sizers import *
from oglbasic import *
from oglshapes import *
import wx
class wxPyEllipseShapePtr(wxPyShapePtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape__setSelf,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyEllipseShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyEllipseShape instance at %s>" % (self.this,)
class wxPyEllipseShape(wxPyEllipseShapePtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxPyEllipseShape,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyEllipseShape)
class wxPyCircleShapePtr(wxPyEllipseShapePtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape__setSelf,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyCircleShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyCircleShape instance at %s>" % (self.this,)
class wxPyCircleShape(wxPyCircleShapePtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxPyCircleShape,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyCircleShape)
class wxArrowHeadPtr :
def __init__(self,this):
self.this = this
self.thisown = 0
def __del__(self,oglshapes2c=oglshapes2c):
if self.thisown == 1 :
oglshapes2c.delete_wxArrowHead(self)
def _GetType(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead__GetType,(self,) + _args, _kwargs)
return val
def GetPosition(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetPosition,(self,) + _args, _kwargs)
return val
def SetPosition(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_SetPosition,(self,) + _args, _kwargs)
return val
def GetXOffset(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetXOffset,(self,) + _args, _kwargs)
return val
def GetYOffset(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetYOffset,(self,) + _args, _kwargs)
return val
def GetSpacing(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetSpacing,(self,) + _args, _kwargs)
return val
def GetSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetSize,(self,) + _args, _kwargs)
return val
def GetName(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetName,(self,) + _args, _kwargs)
return val
def SetXOffset(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_SetXOffset,(self,) + _args, _kwargs)
return val
def SetYOffset(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_SetYOffset,(self,) + _args, _kwargs)
return val
def GetMetaFile(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetMetaFile,(self,) + _args, _kwargs)
if val: val = wxPseudoMetaFilePtr(val)
return val
def GetId(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetId,(self,) + _args, _kwargs)
return val
def GetArrowEnd(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetArrowEnd,(self,) + _args, _kwargs)
return val
def GetArrowSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_GetArrowSize,(self,) + _args, _kwargs)
return val
def SetSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_SetSize,(self,) + _args, _kwargs)
return val
def SetSpacing(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxArrowHead_SetSpacing,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxArrowHead instance at %s>" % (self.this,)
class wxArrowHead(wxArrowHeadPtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxArrowHead,_args,_kwargs)
self.thisown = 1
class wxPyLineShapePtr(wxPyShapePtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape__setSelf,(self,) + _args, _kwargs)
return val
def AddArrow(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_AddArrow,(self,) + _args, _kwargs)
return val
def AddArrowOrdered(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_AddArrowOrdered,(self,) + _args, _kwargs)
return val
def ClearArrow(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_ClearArrow,(self,) + _args, _kwargs)
return val
def ClearArrowsAtPosition(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_ClearArrowsAtPosition,(self,) + _args, _kwargs)
return val
def DrawArrow(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DrawArrow,(self,) + _args, _kwargs)
return val
def DeleteArrowHeadId(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DeleteArrowHeadId,(self,) + _args, _kwargs)
return val
def DeleteArrowHead(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DeleteArrowHead,(self,) + _args, _kwargs)
return val
def DeleteLineControlPoint(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DeleteLineControlPoint,(self,) + _args, _kwargs)
return val
def DrawArrows(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DrawArrows,(self,) + _args, _kwargs)
return val
def DrawRegion(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_DrawRegion,(self,) + _args, _kwargs)
return val
def EraseRegion(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_EraseRegion,(self,) + _args, _kwargs)
return val
def FindArrowHeadId(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindArrowHeadId,(self,) + _args, _kwargs)
if val: val = wxArrowHeadPtr(val)
return val
def FindArrowHead(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindArrowHead,(self,) + _args, _kwargs)
if val: val = wxArrowHeadPtr(val)
return val
def FindLineEndPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindLineEndPoints,(self,) + _args, _kwargs)
return val
def FindLinePosition(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindLinePosition,(self,) + _args, _kwargs)
return val
def FindMinimumWidth(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindMinimumWidth,(self,) + _args, _kwargs)
return val
def FindNth(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_FindNth,(self,) + _args, _kwargs)
return val
def GetAttachmentFrom(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetAttachmentFrom,(self,) + _args, _kwargs)
return val
def GetAttachmentTo(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetAttachmentTo,(self,) + _args, _kwargs)
return val
def GetEnds(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetEnds,(self,) + _args, _kwargs)
return val
def GetFrom(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetFrom,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def GetLabelPosition(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetLabelPosition,(self,) + _args, _kwargs)
return val
def GetNextControlPoint(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetNextControlPoint,(self,) + _args, _kwargs)
if val: val = wxPointPtr(val)
return val
def GetTo(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_GetTo,(self,) + _args, _kwargs)
if val: val = wxPyShapePtr(val)
return val
def Initialise(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_Initialise,(self,) + _args, _kwargs)
return val
def InsertLineControlPoint(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_InsertLineControlPoint,(self,) + _args, _kwargs)
return val
def IsEnd(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_IsEnd,(self,) + _args, _kwargs)
return val
def IsSpline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_IsSpline,(self,) + _args, _kwargs)
return val
def MakeLineControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_MakeLineControlPoints,(self,) + _args, _kwargs)
return val
def SetAttachmentFrom(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetAttachmentFrom,(self,) + _args, _kwargs)
return val
def SetAttachments(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetAttachments,(self,) + _args, _kwargs)
return val
def SetAttachmentTo(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetAttachmentTo,(self,) + _args, _kwargs)
return val
def SetEnds(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetEnds,(self,) + _args, _kwargs)
return val
def SetFrom(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetFrom,(self,) + _args, _kwargs)
return val
def SetIgnoreOffsets(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetIgnoreOffsets,(self,) + _args, _kwargs)
return val
def SetSpline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetSpline,(self,) + _args, _kwargs)
return val
def SetTo(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_SetTo,(self,) + _args, _kwargs)
return val
def Straighten(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_Straighten,(self,) + _args, _kwargs)
return val
def Unlink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_Unlink,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyLineShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyLineShape instance at %s>" % (self.this,)
class wxPyLineShape(wxPyLineShapePtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxPyLineShape,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyLineShape)
class wxPyPolygonShapePtr(wxPyShapePtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape__setSelf,(self,) + _args, _kwargs)
return val
def Create(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_Create,(self,) + _args, _kwargs)
return val
def AddPolygonPoint(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_AddPolygonPoint,(self,) + _args, _kwargs)
return val
def CalculatePolygonCentre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_CalculatePolygonCentre,(self,) + _args, _kwargs)
return val
def DeletePolygonPoint(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_DeletePolygonPoint,(self,) + _args, _kwargs)
return val
def GetPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_GetPoints,(self,) + _args, _kwargs)
return val
def UpdateOriginalPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_UpdateOriginalPoints,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyPolygonShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyPolygonShape instance at %s>" % (self.this,)
class wxPyPolygonShape(wxPyPolygonShapePtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxPyPolygonShape,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyPolygonShape)
class wxPyTextShapePtr(wxPyRectangleShapePtr):
def __init__(self,this):
self.this = this
self.thisown = 0
def _setSelf(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape__setSelf,(self,) + _args, _kwargs)
return val
def base_OnDelete(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDelete,(self,) + _args, _kwargs)
return val
def base_OnDraw(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDraw,(self,) + _args, _kwargs)
return val
def base_OnDrawContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDrawContents,(self,) + _args, _kwargs)
return val
def base_OnDrawBranches(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDrawBranches,(self,) + _args, _kwargs)
return val
def base_OnMoveLinks(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnMoveLinks,(self,) + _args, _kwargs)
return val
def base_OnErase(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnErase,(self,) + _args, _kwargs)
return val
def base_OnEraseContents(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnEraseContents,(self,) + _args, _kwargs)
return val
def base_OnHighlight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnHighlight,(self,) + _args, _kwargs)
return val
def base_OnLeftClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnLeftClick,(self,) + _args, _kwargs)
return val
def base_OnLeftDoubleClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnLeftDoubleClick,(self,) + _args, _kwargs)
return val
def base_OnRightClick(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnRightClick,(self,) + _args, _kwargs)
return val
def base_OnSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnSize,(self,) + _args, _kwargs)
return val
def base_OnMovePre(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnMovePre,(self,) + _args, _kwargs)
return val
def base_OnMovePost(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnMovePost,(self,) + _args, _kwargs)
return val
def base_OnDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDragRight,(self,) + _args, _kwargs)
return val
def base_OnBeginDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnBeginDragRight,(self,) + _args, _kwargs)
return val
def base_OnEndDragRight(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnEndDragRight,(self,) + _args, _kwargs)
return val
def base_OnDrawOutline(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDrawOutline,(self,) + _args, _kwargs)
return val
def base_OnDrawControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnDrawControlPoints,(self,) + _args, _kwargs)
return val
def base_OnEraseControlPoints(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnEraseControlPoints,(self,) + _args, _kwargs)
return val
def base_OnMoveLink(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnMoveLink,(self,) + _args, _kwargs)
return val
def base_OnSizingDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnSizingDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingBeginDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnSizingBeginDragLeft,(self,) + _args, _kwargs)
return val
def base_OnSizingEndDragLeft(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnSizingEndDragLeft,(self,) + _args, _kwargs)
return val
def base_OnBeginSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnBeginSize,(self,) + _args, _kwargs)
return val
def base_OnEndSize(self, *_args, **_kwargs):
val = apply(oglshapes2c.wxPyTextShape_base_OnEndSize,(self,) + _args, _kwargs)
return val
def __repr__(self):
return "<C wxPyTextShape instance at %s>" % (self.this,)
class wxPyTextShape(wxPyTextShapePtr):
def __init__(self,*_args,**_kwargs):
self.this = apply(oglshapes2c.new_wxPyTextShape,_args,_kwargs)
self.thisown = 1
self._setSelf(self, wxPyTextShape)
#-------------- FUNCTION WRAPPERS ------------------
#-------------- VARIABLE WRAPPERS ------------------

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@@ -1,5 +0,0 @@
Makefile
Makefile
stc_c.exp
stc_c.ilk
stc_c.pch

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@@ -1,7 +0,0 @@
Since STC is not always bundled with distributions of wxWindows, in
order for it to be a standard part of wxPython I need to bundle it
here. The contents of the contrib directory are copies of the
relevant parts of the main contrib directory in wxWindows. The
build.py script in this directory will also build the needed files
from there, so you no longer have to worry about aquiring and building
additional libraries beyond wxWindows itself.

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@@ -1,4 +0,0 @@
# Stuff these names into the wx namespace so wxPyConstructObject can find them
wx.wxStyledTextEventPtr = wxStyledTextEventPtr
wx.wxStyledTextCtrlPtr = wxStyledTextCtrlPtr

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@@ -1,85 +0,0 @@
# -*- python -*-
import sys
MODULE = 'stc_c'
SWIGFILES = ['stc_.i']
SOURCES = []
PYFILES = ['stc.py']
OTHERSWIGFLAGS = '-I$(STCLOC)/contrib/include/wx/stc'
SWIGDEPS = '$(STCLOC)/contrib/include/wx/stc/stc.h'
SOURCES = SOURCES + [
'$(STCLOC)/contrib/src/stc/scintilla/src/AutoComplete.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/CallTip.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/CellBuffer.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/ContractionState.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/Document.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/Editor.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/Indicator.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/KeyMap.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/KeyWords.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LineMarker.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/PropSet.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/ScintillaBase.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/Style.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/ViewStyle.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexCPP.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexHTML.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexLua.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexOthers.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexPerl.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexPython.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexSQL.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/LexVB.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/DocumentAccessor.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/UniConversion.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/WindowAccessor.cxx',
'$(STCLOC)/contrib/src/stc/scintilla/src/PosRegExp.cxx',
'$(STCLOC)/contrib/src/stc/PlatWX.cpp',
'$(STCLOC)/contrib/src/stc/ScintillaWX.cpp',
'$(STCLOC)/contrib/src/stc/stc.cpp',
]
OTHERCFLAGS = '-D__WX__ -DSCI_LEXER ' + \
'-I$(STCLOC)/contrib/src/stc/scintilla/include ' + \
'-I$(STCLOC)/contrib/include ' + \
'-I$(STCLOC)/contrib/src/stc/scintilla/src'
if sys.platform == 'win32':
OTHERDEFS = 'STCLOC = $(WXWIN)'
OTHERRULES = '''
{$(WXWIN)/contrib/src/stc}.cpp{}.obj:
$(cc) @<<
$(CPPFLAGS) /c /Tp $<
<<
{$(WXWIN)/contrib/src/stc/scintilla/src}.cxx{}.obj:
$(cc) @<<
$(CPPFLAGS) /c /Tp $<
<<
'''
else:
DEFAULTRULE = 'default: contrib $(GENCODEDIR) $(TARGET) $(BUILDDIR)/$(TARGET) bldpycfiles'
OTHERDEFS = 'STCLOC = .'
OTHERRULES = '''
%.o : contrib/src/stc/%.cpp
$(CCC) $(CCSHARED) $(CFLAGS) $(OTHERCFLAGS) -c $<
%.o : contrib/src/stc/scintilla/src/%.cxx
$(CCC) $(CCSHARED) $(CFLAGS) $(OTHERCFLAGS) -c $<
contrib :
ln -s $(WXDIR)/contrib contrib
'''
# There are no platform differences so we don't need separate code directories
GENCODEDIR='.'
SWIGTOOLKITFLAG=''

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@@ -1,7 +0,0 @@
# The name "stc.cpp" was cuasing the debugger to get confused with the
# same module name in the stc library, so I changed the name of this
# one to stc_.cpp and this little stub to make the "stc" Python module
# name still usesable for everything that matters.
from stc_ import *

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@@ -1,105 +0,0 @@
/////////////////////////////////////////////////////////////////////////////
// Name: stc.i
// Purpose: Wrappers for the wxStyledTextCtrl.
//
// Author: Robin Dunn
//
// Created: 12-Oct-1999
// RCS-ID: $Id$
// Copyright: (c) 2000 by Total Control Software
// Licence: wxWindows license
/////////////////////////////////////////////////////////////////////////////
%module stc_
%{
#include "helpers.h"
#include "wx/stc/stc.h"
%}
//---------------------------------------------------------------------------
%include typemaps.i
%include my_typemaps.i
%extern wx.i
%extern windows.i
%extern _defs.i
%extern events.i
%extern controls.i
//----------------------------------------------------------------------
// Get all our defs from the REAL header file.
%include stc.h
//%include SciLexer.h
//----------------------------------------------------------------------
// Python functions to act like the event macros
%pragma(python) code = "
def EVT_STC_CHANGE(win, id, fn):
win.Connect(id, -1, wxEVT_STC_CHANGE, fn)
def EVT_STC_STYLENEEDED(win, id, fn):
win.Connect(id, -1, wxEVT_STC_STYLENEEDED, fn)
def EVT_STC_CHARADDED(win, id, fn):
win.Connect(id, -1, wxEVT_STC_CHARADDED, fn)
def EVT_STC_UPDATEUI(win, id, fn):
win.Connect(id, -1, wxEVT_STC_UPDATEUI, fn)
def EVT_STC_SAVEPOINTREACHED(win, id, fn):
win.Connect(id, -1, wxEVT_STC_SAVEPOINTREACHED, fn)
def EVT_STC_SAVEPOINTLEFT(win, id, fn):
win.Connect(id, -1, wxEVT_STC_SAVEPOINTLEFT, fn)
def EVT_STC_ROMODIFYATTEMPT(win, id, fn):
win.Connect(id, -1, wxEVT_STC_ROMODIFYATTEMPT, fn)
def EVT_STC_DOUBLECLICK(win, id, fn):
win.Connect(id, -1, wxEVT_STC_DOUBLECLICK, fn)
def EVT_STC_MODIFIED(win, id, fn):
win.Connect(id, -1, wxEVT_STC_MODIFIED, fn)
def EVT_STC_KEY(win, id, fn):
win.Connect(id, -1, wxEVT_STC_KEY, fn)
def EVT_STC_MACRORECORD(win, id, fn):
win.Connect(id, -1, wxEVT_STC_MACRORECORD, fn)
def EVT_STC_MARGINCLICK(win, id, fn):
win.Connect(id, -1, wxEVT_STC_MARGINCLICK, fn)
def EVT_STC_NEEDSHOWN(win, id, fn):
win.Connect(id, -1, wxEVT_STC_NEEDSHOWN, fn)
def EVT_STC_POSCHANGED(win, id, fn):
win.Connect(id, -1, wxEVT_STC_POSCHANGED, fn)
"
//----------------------------------------------------------------------
%init %{
wxClassInfo::CleanUpClasses();
wxClassInfo::InitializeClasses();
%}
//----------------------------------------------------------------------
%pragma(python) include="_stcextras.py";
//----------------------------------------------------------------------
//----------------------------------------------------------------------

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@@ -1,6 +0,0 @@
*.pyc
.emacs.desktop
hangman_dict.txt
setup.bat
test.out
tmphtml.txt

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@@ -1,64 +0,0 @@
from wxPython.wx import *
from wxPython.html import *
import wxPython.lib.wxpTag
#---------------------------------------------------------------------------
class MyAboutBox(wxDialog):
text = '''
<html>
<body bgcolor="#AC76DE">
<center><table bgcolor="#458154" width="100%%" cellspacing="0"
cellpadding="0" border="1">
<tr>
<td align="center"><h1>wxPython %s</h1></td>
</tr>
</table>
<p><b>wxPython</b> is a Python extension module that
encapsulates the wxWindows GUI classes.</p>
<p>This demo shows off some of the capabilities
of <b>wxPython</b>. Select items from the menu or tree control,
sit back and enjoy. Be sure to take a peek at the source code for each
demo item so you can learn how to use the classes yourself.</p>
<p><b>wxPython</b> is brought to you by <b>Robin Dunn</b> and<br>
<b>Total Control Software</b>, Copyright (c) 1997-2000.</p>
<p>
<font size="-1">Please see <i>license.txt</i> for licensing information.</font>
</p>
<p><wxp class="wxButton">
<param name="label" value="Okay">
<param name="id" value="wxID_OK">
</wxp></p>
</center>
</body>
</html>
'''
def __init__(self, parent):
wxDialog.__init__(self, parent, -1, 'About the wxPython demo',
size=wxSize(420, 380))
self.html = wxHtmlWindow(self, -1)
self.html.SetPage(self.text % wx.__version__)
self.SetAutoLayout(true)
lc = wxLayoutConstraints()
lc.top.SameAs(self, wxTop, 5)
lc.left.SameAs(self, wxLeft, 5)
lc.bottom.SameAs(self, wxBottom, 5)
lc.right.SameAs(self, wxRight, 5)
self.html.SetConstraints(lc)
self.Layout()
self.CentreOnParent(wxBOTH)
#---------------------------------------------------------------------------

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@@ -1,130 +0,0 @@
"""
<html><body>
This demo shows how to embed an ActiveX control in a wxPython application, (Win32 only.)
<p>
The MakeActiveXClass function dynamically builds a new Class on the fly, that has the
same signature and semantics as wxWindow. This means that when you call the function
you get back a new class that you can use just like wxWindow, (set the size and position,
use in a sizer, etc.) except its contents will be the COM control.
<p>
This demo embeds the Adobe Acrobat Reader, and gives you some buttons for opening a PDF
file, changing pages, etc. that show how to call methods on the COM object. If you don't
have Acrobat Reader 4.0 installed it won't work.
</body></html>
"""
from wxPython.wx import *
if wxPlatform == '__WXMSW__':
from wxPython.lib.activexwrapper import MakeActiveXClass
import win32com.client.gencache
try:
acrobat = win32com.client.gencache.EnsureModule('{CA8A9783-280D-11CF-A24D-444553540000}', 0x0, 1, 3)
except:
raise ImportError("Can't load PDF.OCX, install Acrobat 4.0")
#----------------------------------------------------------------------
class TestPanel(wxPanel):
def __init__(self, parent):
wxPanel.__init__(self, parent, -1)
self.pdf = None
sizer = wxBoxSizer(wxVERTICAL)
btnSizer = wxBoxSizer(wxHORIZONTAL)
# this function creates a new class that can be used as
# a wxWindow, but contains the given ActiveX control.
ActiveXWrapper = MakeActiveXClass(acrobat.Pdf)
# create an instance of the new class
self.pdf = ActiveXWrapper( self, -1, style=wxSUNKEN_BORDER)
sizer.Add(self.pdf, 1, wxEXPAND)
btn = wxButton(self, wxNewId(), "Open PDF File")
EVT_BUTTON(self, btn.GetId(), self.OnOpenButton)
btnSizer.Add(btn, 1, wxEXPAND|wxALL, 5)
btn = wxButton(self, wxNewId(), "<-- Previous Page")
EVT_BUTTON(self, btn.GetId(), self.OnPrevPageButton)
btnSizer.Add(btn, 1, wxEXPAND|wxALL, 5)
btn = wxButton(self, wxNewId(), "Next Page -->")
EVT_BUTTON(self, btn.GetId(), self.OnNextPageButton)
btnSizer.Add(btn, 1, wxEXPAND|wxALL, 5)
btnSizer.Add(50, -1, 2, wxEXPAND)
sizer.Add(btnSizer, 0, wxEXPAND)
self.SetSizer(sizer)
self.SetAutoLayout(true)
def __del__(self):
if self.pdf:
self.pdf.Cleanup()
self.pdf = None
def OnOpenButton(self, event):
dlg = wxFileDialog(self, wildcard="*.pdf")
if dlg.ShowModal() == wxID_OK:
wxBeginBusyCursor()
self.pdf.LoadFile(dlg.GetPath())
wxEndBusyCursor()
dlg.Destroy()
def OnPrevPageButton(self, event):
self.pdf.gotoPreviousPage()
def OnNextPageButton(self, event):
self.pdf.gotoNextPage()
#----------------------------------------------------------------------
def runTest(frame, nb, log):
if wxPlatform == '__WXMSW__':
win = TestPanel(nb)
return win
else:
dlg = wxMessageDialog(frame, 'This demo only works on MSW.',
'Sorry', wxOK | wxICON_INFORMATION)
dlg.ShowModal()
dlg.Destroy()
overview = __doc__
#----------------------------------------------------------------------
if __name__ == '__main__':
class TestFrame(wxFrame):
def __init__(self):
wxFrame.__init__(self, None, -1, "ActiveX test -- Acrobat", size=(640, 480),
style=wxDEFAULT_FRAME_STYLE|wxNO_FULL_REPAINT_ON_RESIZE)
self.tp = TestPanel(self, sys.stdout)
EVT_CLOSE(self, self.OnCloseWindow)
def OnCloseWindow(self, event):
self.tp.pdf.Cleanup()
self.Destroy()
app = wxPySimpleApp()
frame = TestFrame()
frame.Show(true)
app.MainLoop()

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@@ -1,205 +0,0 @@
"""
<html><body>
This demo shows how to embed an ActiveX control in a wxPython
application, (Win32 only.)
<p>
The MakeActiveXClass function dynamically builds a new Class on the
fly, that has the same signature and semantics as wxWindow. This
means that when you call the function you get back a new class that
you can use just like wxWindow, (set the size and position, use in a
sizer, etc.) except its contents will be the COM control.
<p>
This demo embeds the Internet Exploer WebBrowser control, and shows
how to receive events from the COM control. (The title bar and status
bar are updated as pages change, in addition to the log messages being
shown.)
</body></html>
"""
from wxPython.wx import *
if wxPlatform == '__WXMSW__':
from wxPython.lib.activexwrapper import MakeActiveXClass
import win32com.client.gencache
try:
browserModule = win32com.client.gencache.EnsureModule("{EAB22AC0-30C1-11CF-A7EB-0000C05BAE0B}", 0, 1, 1)
except:
raise ImportError("IE4 or greater does not appear to be installed.")
#----------------------------------------------------------------------
class TestPanel(wxWindow):
def __init__(self, parent, log, frame=None):
wxWindow.__init__(self, parent, -1)#, style=wxCLIP_CHILDREN)
self.ie = None
self.log = log
self.current = "http://alldunn.com/"
self.frame = frame
if frame:
self.titleBase = frame.GetTitle()
sizer = wxBoxSizer(wxVERTICAL)
btnSizer = wxBoxSizer(wxHORIZONTAL)
# Make a new class that derives from the WebBrowser class in the
# COM module imported above. This class also derives from wxWindow and
# implements the machinery needed to integrate the two worlds.
theClass = MakeActiveXClass(browserModule.WebBrowser,
eventObj = self)
# Create an instance of that class
self.ie = theClass(self, -1, style=wxSUNKEN_BORDER)
#btn = wxButton(self, wxNewId(), " Open ")
#EVT_BUTTON(self, btn.GetId(), self.OnOpenButton)
#btnSizer.Add(btn, 0, wxEXPAND|wxALL, 5)
btn = wxButton(self, wxNewId(), " Home ")
EVT_BUTTON(self, btn.GetId(), self.OnHomeButton)
btnSizer.Add(btn, 0, wxEXPAND|wxALL, 5)
btn = wxButton(self, wxNewId(), " <-- ")
EVT_BUTTON(self, btn.GetId(), self.OnPrevPageButton)
btnSizer.Add(btn, 0, wxEXPAND|wxALL, 5)
btn = wxButton(self, wxNewId(), " --> ")
EVT_BUTTON(self, btn.GetId(), self.OnNextPageButton)
btnSizer.Add(btn, 0, wxEXPAND|wxALL, 5)
txt = wxStaticText(self, -1, "Location:")
btnSizer.Add(txt, 0, wxCENTER|wxALL, 5)
self.location = wxComboBox(self, wxNewId(), "", style=wxCB_DROPDOWN)
EVT_COMBOBOX(self, self.location.GetId(), self.OnLocationSelect)
EVT_KEY_UP(self.location, self.OnLocationKey)
#EVT_CHAR(self.location, self.IgnoreReturn)
btnSizer.Add(self.location, 1, wxEXPAND|wxALL, 5)
sizer.Add(btnSizer, 0, wxEXPAND)
sizer.Add(self.ie, 1, wxEXPAND)
self.ie.Navigate(self.current)
self.location.Append(self.current)
self.SetSizer(sizer)
self.SetAutoLayout(true)
EVT_SIZE(self, self.OnSize)
def OnSize(self, evt):
self.Layout()
def __del__(self):
if self.ie:
self.ie.Cleanup()
self.ie = None
def OnLocationSelect(self, evt):
url = self.location.GetStringSelection()
self.log.write('OnLocationSelect: %s\n' % url)
self.ie.Navigate(url)
def OnLocationKey(self, evt):
if evt.KeyCode() == WXK_RETURN:
URL = self.location.GetValue()
self.location.Append(URL)
self.ie.Navigate(URL)
else:
evt.Skip()
def IgnoreReturn(self, evt):
print 'IgnoreReturn'
if evt.KeyCode() != WXK_RETURN:
evt.Skip()
def OnOpenButton(self, event):
dlg = wxTextEntryDialog(self, "Open Location",
"Enter a full URL or local path",
self.current, wxOK|wxCANCEL)
dlg.CentreOnParent()
if dlg.ShowModal() == wxID_OK:
self.current = dlg.GetValue()
self.ie.Navigate(self.current)
dlg.Destroy()
def OnHomeButton(self, event):
self.ie.GoHome() ## ET Phone Home!
def OnPrevPageButton(self, event):
self.ie.GoBack()
def OnNextPageButton(self, event):
self.ie.GoForward()
# The following event handlers are called by the web browser COM
# control since we passed self to MakeActiveXClass. It will look
# here for matching attributes and call them if they exist. See the
# module generated by makepy for details of method names, etc.
def OnBeforeNavigate2(self, pDisp, URL, *args):
self.log.write('OnBeforeNavigate2: %s\n' % URL)
def OnNavigateComplete2(self, pDisp, URL):
self.log.write('OnNavigateComplete2: %s\n' % URL)
self.current = URL
self.location.SetValue(URL)
def OnTitleChange(self, text):
self.log.write('OnTitleChange: %s\n' % text)
if self.frame:
self.frame.SetTitle(self.titleBase + ' -- ' + text)
def OnStatusTextChange(self, text):
self.log.write('OnStatusTextChange: %s\n' % text)
if self.frame:
self.frame.SetStatusText(text)
#----------------------------------------------------------------------
# for the demo framework...
def runTest(frame, nb, log):
if wxPlatform == '__WXMSW__':
win = TestPanel(nb, log, frame)
return win
else:
dlg = wxMessageDialog(frame, 'This demo only works on MSW.',
'Sorry', wxOK | wxICON_INFORMATION)
dlg.ShowModal()
dlg.Destroy()
overview = __doc__
#----------------------------------------------------------------------
if __name__ == '__main__':
class TestFrame(wxFrame):
def __init__(self):
wxFrame.__init__(self, None, -1, "ActiveX test -- Internet Explorer",
size=(640, 480),
style=wxDEFAULT_FRAME_STYLE|wxNO_FULL_REPAINT_ON_RESIZE)
self.CreateStatusBar()
self.tp = TestPanel(self, sys.stdout, self)
EVT_CLOSE(self, self.OnCloseWindow)
def OnCloseWindow(self, event):
self.tp.ie.Cleanup()
self.Destroy()
app = wxPySimpleApp()
frame = TestFrame()
frame.Show(true)
app.MainLoop()

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@@ -1,13 +0,0 @@
from wxPython.wx import *
#---------------------------------------------------------------------------
class ColoredPanel(wxWindow):
def __init__(self, parent, color):
wxWindow.__init__(self, parent, -1,
wxDefaultPosition, wxDefaultSize, wxRAISED_BORDER)
self.SetBackgroundColour(color)
#---------------------------------------------------------------------------

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@@ -1,285 +0,0 @@
from wxPython.wx import *
import cPickle
#----------------------------------------------------------------------
class DoodlePad(wxWindow):
def __init__(self, parent, log):
wxWindow.__init__(self, parent, -1, style=wxSUNKEN_BORDER)
self.log = log
self.SetBackgroundColour(wxWHITE)
self.lines = []
self.x = self.y = 0
self.SetCursor(wxStockCursor(wxCURSOR_PENCIL))
EVT_LEFT_DOWN(self, self.OnLeftDown)
EVT_LEFT_UP(self, self.OnLeftUp)
EVT_RIGHT_UP(self, self.OnRightUp)
EVT_MOTION(self, self.OnMotion)
EVT_PAINT(self, self.OnPaint)
def OnPaint(self, event):
dc = wxPaintDC(self)
self.DrawSavedLines(dc)
def DrawSavedLines(self, dc):
dc.BeginDrawing()
dc.SetPen(wxPen(wxBLUE, 3))
for line in self.lines:
for coords in line:
apply(dc.DrawLine, coords)
dc.EndDrawing()
def OnLeftDown(self, event):
if event.ControlDown():
self.StartDragOpperation()
else:
self.curLine = []
self.x, self.y = event.GetPositionTuple()
self.CaptureMouse()
def OnLeftUp(self, event):
self.lines.append(self.curLine)
self.curLine = []
self.ReleaseMouse()
def OnRightUp(self, event):
self.lines = []
self.Refresh()
def OnMotion(self, event):
if event.Dragging() and not event.ControlDown():
dc = wxClientDC(self)
dc.BeginDrawing()
dc.SetPen(wxPen(wxBLUE, 3))
coords = (self.x, self.y) + event.GetPositionTuple()
self.curLine.append(coords)
apply(dc.DrawLine, coords)
self.x, self.y = event.GetPositionTuple()
dc.EndDrawing()
def StartDragOpperation(self):
# pickle the lines list
linesdata = cPickle.dumps(self.lines, 1)
# create our own data format and use it in a
# custom data object
ldata = wxCustomDataObject(wxCustomDataFormat("DoodleLines"))
ldata.SetData(linesdata)
# Also create a Bitmap version of the drawing
size = self.GetSize()
bmp = wxEmptyBitmap(size.width, size.height)
dc = wxMemoryDC()
dc.SelectObject(bmp)
dc.SetBackground(wxWHITE_BRUSH)
dc.Clear()
self.DrawSavedLines(dc)
dc.SelectObject(wxNullBitmap)
# Now make a data object for the bitmap and also a composite
# data object holding both of the others.
bdata = wxBitmapDataObject(bmp)
data = wxDataObjectComposite()
data.Add(ldata)
data.Add(bdata)
# And finally, create the drop source and begin the drag
# and drop opperation
dropSource = wxDropSource(self)
dropSource.SetData(data)
self.log.WriteText("Begining DragDrop\n")
result = dropSource.DoDragDrop()
self.log.WriteText("DragDrop completed: %d\n" % result)
#----------------------------------------------------------------------
class DoodleDropTarget(wxPyDropTarget):
def __init__(self, window, log):
wxPyDropTarget.__init__(self)
self.log = log
self.dv = window
# specify the type of data we will accept
self.data = wxCustomDataObject(wxCustomDataFormat("DoodleLines"))
self.SetDataObject(self.data)
# some virtual methods that track the progress of the drag
def OnEnter(self, x, y, d):
self.log.WriteText("OnEnter: %d, %d, %d\n" % (x, y, d))
return wxDragCopy
def OnLeave(self):
self.log.WriteText("OnLeave\n")
def OnDrop(self, x, y):
self.log.WriteText("OnDrop: %d %d\n" % (x, y))
return true
#def OnDragOver(self, x, y, d):
# self.log.WriteText("OnDragOver: %d, %d, %d\n" % (x, y, d))
# return wxDragCopy
# Called when OnDrop returns true. We need to get the data and
# do something with it.
def OnData(self, x, y, d):
self.log.WriteText("OnData: %d, %d, %d\n" % (x, y, d))
# copy the data from the drag source to out data object
if self.GetData():
# convert it back to a list of lines and give it to the viewer
linesdata = self.data.GetData()
lines = cPickle.loads(linesdata)
self.dv.SetLines(lines)
return d
class DoodleViewer(wxWindow):
def __init__(self, parent, log):
wxWindow.__init__(self, parent, -1, style=wxSUNKEN_BORDER)
self.log = log
self.SetBackgroundColour(wxWHITE)
self.lines = []
self.x = self.y = 0
dt = DoodleDropTarget(self, log)
self.SetDropTarget(dt)
EVT_PAINT(self, self.OnPaint)
def SetLines(self, lines):
self.lines = lines
self.Refresh()
def OnPaint(self, event):
dc = wxPaintDC(self)
self.DrawSavedLines(dc)
def DrawSavedLines(self, dc):
dc.BeginDrawing()
dc.SetPen(wxPen(wxRED, 3))
for line in self.lines:
for coords in line:
apply(dc.DrawLine, coords)
dc.EndDrawing()
#----------------------------------------------------------------------
class CustomDnDPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.SetFont(wxFont(10, wxSWISS, wxNORMAL, wxBOLD, false))
sizer = wxBoxSizer(wxHORIZONTAL)
text = wxStaticText(self, -1,
"Draw a little picture in this window\n"
"then Ctrl-Drag it to the lower \n"
"window or to another application\n"
"that accepts BMP's as a drop target.\n\n"
"The lower window is accepting a\n"
"custom data type that is a pickled\n"
"Python list of lines data.")
sizer.Add(text, 1, wxALL, 10)
insizer = wxBoxSizer(wxVERTICAL)
insizer.Add(DoodlePad(self, log), 1, wxEXPAND|wxALL, 5)
insizer.Add(DoodleViewer(self, log), 1, wxEXPAND|wxALL, 5)
sizer.Add(insizer, 1, wxEXPAND)
self.SetAutoLayout(true)
self.SetSizer(sizer)
#----------------------------------------------------------------------
#----------------------------------------------------------------------
class TestPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.SetAutoLayout(true)
sizer = wxBoxSizer(wxVERTICAL)
msg = "Custom Drag-And-Drop"
text = wxStaticText(self, -1, "", style=wxALIGN_CENTRE)
text.SetFont(wxFont(24, wxSWISS, wxNORMAL, wxBOLD, false))
text.SetLabel(msg)
w,h = text.GetTextExtent(msg)
text.SetSize(wxSize(w,h+1))
text.SetForegroundColour(wxBLUE)
sizer.Add(text, 0, wxEXPAND|wxALL, 5)
sizer.Add(wxStaticLine(self, -1), 0, wxEXPAND)
sizer.Add(CustomDnDPanel(self, log), 1, wxEXPAND)
self.SetSizer(sizer)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, log)
return win
if __name__ == '__main__':
import sys
class DummyLog:
def WriteText(self, text):
sys.stdout.write(text)
class TestApp(wxApp):
def OnInit(self):
self.MakeFrame()
return true
def MakeFrame(self, event=None):
frame = wxFrame(None, -1, "Custom Drag and Drop", size=(550,400))
menu = wxMenu()
menu.Append(6543, "Window")
mb = wxMenuBar()
mb.Append(menu, "New")
frame.SetMenuBar(mb)
EVT_MENU(frame, 6543, self.MakeFrame)
panel = TestPanel(frame, DummyLog())
frame.Show(true)
self.SetTopWindow(frame)
app = TestApp(0)
app.MainLoop()
#----------------------------------------------------------------------
overview = """\
This demo shows Drag and Drop using a custom data type and a custom data object. A type called "DoodleLines" is created and a Python Pickle of a list is actually transfered in the drag and drop opperation.
A second data object is also created containing a bitmap of the image and is made available to any drop target that accepts bitmaps, such as MS Word.
The two data objects are combined in a wxDataObjectComposite and the rest is handled by the framework.
"""

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@@ -1,127 +0,0 @@
#!/usr/bin/env python
#----------------------------------------------------------------------------
# Name: DialogUnits.py
# Purpose: A minimal wxPython program that is a bit smarter than test1.
#
# Author: Robin Dunn
#
# Created: A long time ago, in a galaxy far, far away...
# RCS-ID: $Id$
# Copyright: (c) 1998 by Total Control Software
# Licence: wxWindows license
#----------------------------------------------------------------------------
## import all of the wxPython GUI package
from wxPython.wx import *
#---------------------------------------------------------------------------
## Create a new frame class, derived from the wxPython Frame.
class MyFrame(wxFrame):
def __init__(self, parent, id, title):
# First, call the base class' __init__ method to create the frame
wxFrame.__init__(self, parent, id, title,
wxPoint(100, 100), wxSize(160, 100))
# Associate some events with methods of this class
EVT_SIZE(self, self.OnSize)
EVT_MOVE(self, self.OnMove)
EVT_CLOSE(self, self.OnCloseWindow)
# Add a panel and some controls to display the size and position
panel = wxPanel(self, -1)
wxStaticText(panel, -1, "Size:",
wxDLG_PNT(panel, wxPoint(4, 4)), wxDefaultSize)
wxStaticText(panel, -1, "Pos:",
wxDLG_PNT(panel, wxPoint(4, 16)), wxDefaultSize)
self.sizeCtrl = wxTextCtrl(panel, -1, "",
wxDLG_PNT(panel, wxPoint(24, 4)),
wxDLG_SZE(panel, wxSize(36, -1)),
wxTE_READONLY)
self.posCtrl = wxTextCtrl(panel, -1, "",
wxDLG_PNT(panel, wxPoint(24, 16)),
wxDLG_SZE(panel, wxSize(36, -1)),
wxTE_READONLY)
#print wxDLG_PNT(panel, wxPoint(24, 4)), wxDLG_SZE(panel, wxSize(36, -1))
#print wxDLG_PNT(panel, wxPoint(24, 16)),wxDLG_SZE(panel, wxSize(36, -1))
# This method is called automatically when the CLOSE event is
# sent to this window
def OnCloseWindow(self, event):
# tell the window to kill itself
self.Destroy()
# This method is called by the System when the window is resized,
# because of the association above.
def OnSize(self, event):
size = event.GetSize()
self.sizeCtrl.SetValue("%s, %s" % (size.width, size.height))
# tell the event system to continue looking for an event handler,
# so the default handler will get called.
event.Skip()
# This method is called by the System when the window is moved,
# because of the association above.
def OnMove(self, event):
pos = event.GetPosition()
self.posCtrl.SetValue("%s, %s" % (pos.x, pos.y))
#---------------------------------------------------------------------------
# if running standalone
if __name__ == "__main__":
# Every wxWindows application must have a class derived from wxApp
class MyApp(wxApp):
# wxWindows calls this method to initialize the application
def OnInit(self):
# Create an instance of our customized Frame class
frame = MyFrame(NULL, -1, "This is a test")
frame.Show(true)
# Tell wxWindows that this is our main window
self.SetTopWindow(frame)
# Return a success flag
return true
app = MyApp(0) # Create an instance of the application class
app.MainLoop() # Tell it to start processing events
#---------------------------------------------------------------------------
# if running as part of the Demo Framework...
def runTest(frame, nb, log):
win = MyFrame(frame, -1, "This is a test")
frame.otherWin = win
win.Show(true)
overview = """\
A simple example that shows how to use Dialog Units.
"""
#----------------------------------------------------------------------------
#

View File

@@ -1,196 +0,0 @@
from wxPython.wx import *
#----------------------------------------------------------------------
class ClipTextPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.log = log
#self.SetFont(wxFont(10, wxSWISS, wxNORMAL, wxBOLD, false))
sizer = wxBoxSizer(wxVERTICAL)
sizer.Add(wxStaticText(self, -1,
"Copy/Paste text to/from\n"
"this window and other apps"), 0, wxEXPAND|wxALL, 2)
self.text = wxTextCtrl(self, -1, "", style=wxTE_MULTILINE|wxHSCROLL)
sizer.Add(self.text, 1, wxEXPAND)
hsz = wxBoxSizer(wxHORIZONTAL)
hsz.Add(wxButton(self, 6050, " Copy "), 1, wxEXPAND|wxALL, 2)
hsz.Add(wxButton(self, 6051, " Paste "), 1, wxEXPAND|wxALL, 2)
sizer.Add(hsz, 0, wxEXPAND)
sizer.Add(wxButton(self, 6052, " Copy Bitmap "), 0, wxEXPAND|wxALL, 2)
EVT_BUTTON(self, 6050, self.OnCopy)
EVT_BUTTON(self, 6051, self.OnPaste)
EVT_BUTTON(self, 6052, self.OnCopyBitmap)
self.SetAutoLayout(true)
self.SetSizer(sizer)
def OnCopy(self, evt):
self.do = wxTextDataObject()
self.do.SetText(self.text.GetValue())
wxTheClipboard.Open()
wxTheClipboard.SetData(self.do)
wxTheClipboard.Close()
def OnPaste(self, evt):
do = wxTextDataObject()
wxTheClipboard.Open()
success = wxTheClipboard.GetData(do)
wxTheClipboard.Close()
if success:
self.text.SetValue(do.GetText())
else:
wxMessageBox("There is no data in the clipboard in the required format",
"Error")
def OnCopyBitmap(self, evt):
dlg = wxFileDialog(self, "Choose a bitmap to copy", wildcard="*.bmp")
if dlg.ShowModal() == wxID_OK:
bmp = wxBitmap(dlg.GetFilename(), wxBITMAP_TYPE_BMP)
bmpdo = wxBitmapDataObject(bmp)
wxTheClipboard.Open()
wxTheClipboard.SetData(bmpdo)
wxTheClipboard.Close()
wxMessageBox("The bitmap is now in the Clipboard. Switch to a graphics\n"
"editor and try pasting it in...")
dlg.Destroy()
#----------------------------------------------------------------------
class OtherDropTarget(wxPyDropTarget):
def __init__(self, window, log):
wxPyDropTarget.__init__(self)
self.log = log
self.do = wxFileDataObject()
self.SetDataObject(self.do)
def OnEnter(self, x, y, d):
self.log.WriteText("OnEnter: %d, %d, %d\n" % (x, y, d))
return wxDragCopy
#def OnDragOver(self, x, y, d):
# self.log.WriteText("OnDragOver: %d, %d, %d\n" % (x, y, d))
# return wxDragCopy
def OnLeave(self):
self.log.WriteText("OnLeave\n")
def OnDrop(self, x, y):
self.log.WriteText("OnDrop: %d %d\n" % (x, y))
return true
def OnData(self, x, y, d):
self.log.WriteText("OnData: %d, %d, %d\n" % (x, y, d))
self.GetData()
self.log.WriteText("%s\n" % self.do.GetFilenames())
return d
class MyFileDropTarget(wxFileDropTarget):
def __init__(self, window, log):
wxFileDropTarget.__init__(self)
self.window = window
self.log = log
def OnDropFiles(self, x, y, filenames):
self.window.SetInsertionPointEnd()
self.window.WriteText("\n%d file(s) dropped at %d,%d:\n" %
(len(filenames), x, y))
for file in filenames:
self.window.WriteText(file + '\n')
class FileDropPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
#self.SetFont(wxFont(10, wxSWISS, wxNORMAL, wxBOLD, false))
sizer = wxBoxSizer(wxVERTICAL)
sizer.Add(wxStaticText(self, -1, " \nDrag some files here:"),
0, wxEXPAND|wxALL, 2)
self.text = wxTextCtrl(self, -1, "",
style = wxTE_MULTILINE|wxHSCROLL|wxTE_READONLY)
dt = MyFileDropTarget(self, log)
self.text.SetDropTarget(dt)
sizer.Add(self.text, 1, wxEXPAND)
self.SetAutoLayout(true)
self.SetSizer(sizer)
def WriteText(self, text):
self.text.WriteText(text)
def SetInsertionPointEnd(self):
self.text.SetInsertionPointEnd()
#----------------------------------------------------------------------
#----------------------------------------------------------------------
class TestPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.SetAutoLayout(true)
outsideSizer = wxBoxSizer(wxVERTICAL)
msg = "Clipboard / Drag-And-Drop"
text = wxStaticText(self, -1, "", style=wxALIGN_CENTRE)
text.SetFont(wxFont(24, wxSWISS, wxNORMAL, wxBOLD, false))
text.SetLabel(msg)
w,h = text.GetTextExtent(msg)
text.SetSize(wxSize(w,h+1))
text.SetForegroundColour(wxBLUE)
outsideSizer.Add(text, 0, wxEXPAND|wxALL, 5)
outsideSizer.Add(wxStaticLine(self, -1), 0, wxEXPAND)
inSizer = wxBoxSizer(wxHORIZONTAL)
inSizer.Add(ClipTextPanel(self, log), 1, wxEXPAND)
inSizer.Add(FileDropPanel(self, log), 1, wxEXPAND)
outsideSizer.Add(inSizer, 1, wxEXPAND)
self.SetSizer(outsideSizer)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, log)
return win
#----------------------------------------------------------------------
overview = """\
This demo shows some examples of data transfer through clipboard or drag and drop. In wxWindows, these two ways to transfer data (either between different applications or inside one and the same) are very similar which allows to implement both of them using almost the same code - or, in other words, if you implement drag and drop support for your application, you get clipboard support for free and vice versa.
At the heart of both clipboard and drag and drop operations lies the wxDataObject class. The objects of this class (or, to be precise, classes derived from it) represent the data which is being carried by the mouse during drag and drop operation or copied to or pasted from the clipboard. wxDataObject is a "smart" piece of data because it knows which formats it supports (see GetFormatCount and GetAllFormats) and knows how to render itself in any of them (see GetDataHere). It can also receive its value from the outside in a format it supports if it implements the SetData method. Please see the documentation of this class for more details.
Both clipboard and drag and drop operations have two sides: the source and target, the data provider and the data receiver. These which may be in the same application and even the same window when, for example, you drag some text from one position to another in a word processor. Let us describe what each of them should do.
"""

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@@ -1,47 +0,0 @@
from wxPython.wx import *
from wxPython.lib.filebrowsebutton import FileBrowseButton, FileBrowseButtonWithHistory
#----------------------------------------------------------------------
class TestPanel(wxPanel):
def __init__(self, parent, ID, log):
wxPanel.__init__(self, parent, ID)
self.log = log
self.fbb = FileBrowseButton(self, -1, wxPoint(20,20), wxSize(450, -1),
changeCallback = self.fbbCallback)
self.fbbh = FileBrowseButtonWithHistory(self, -1, wxPoint(20, 50),
wxSize(450, -1),
#changeCallback = self.fbbhCallback
)
self.fbbh.SetHistory(['You', 'can', 'put', 'some', 'file', 'names', 'here'])
def fbbCallback(self, evt):
self.log.write('FileBrowseButton: %s\n' % evt.GetString())
def fbbhCallback(self, evt):
if hasattr(self, 'fbbh'):
value = evt.GetString()
self.log.write('FileBrowseButtonWithHistory: %s\n' % value)
history = self.fbbh.GetHistory()
history.append(value)
self.fbbh.SetHistory(history)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, -1, log)
return win
#----------------------------------------------------------------------
overview = FileBrowseButton.__doc__

View File

@@ -1,61 +0,0 @@
from wxPython.wx import *
#----------------------------------------------------------------------
## class MyFontEnumerator(wxFontEnumerator):
## def __init__(self, list):
## wxFontEnumerator.__init__(self)
## self.list = list
## def OnFacename(self, face):
## self.list.append(face)
## return true
class TestPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
## list = []
## e = MyFontEnumerator(list)
## e.EnumerateFacenames()
e = wxFontEnumerator()
e.EnumerateFacenames()
list = e.GetFacenames()
list.sort()
wxStaticText(self, -1, "Face names:", wxPoint(15, 50), wxSize(65, 18))
self.lb1 = wxListBox(self, 60, wxPoint(80, 50), wxSize(200, 250),
list, wxLB_SINGLE)
self.lb1.SetSelection(0)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, log)
return win
#----------------------------------------------------------------------
overview = """\
wxFontEnumerator enumerates either all available fonts on the system or only the ones with given attributes - either only fixed-width (suited for use in programs such as terminal emulators and the like) or the fonts available in the given encoding.
"""

View File

@@ -1,92 +0,0 @@
from wxPython.wx import *
from wxPython.lib.buttons import wxGenButton, wxGenBitmapButton, \
wxGenToggleButton, wxGenBitmapToggleButton
#----------------------------------------------------------------------
class TestPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.log = log
b = wxButton(self, -1, "A real button", (10,10))
b.SetDefault()
EVT_BUTTON(self, b.GetId(), self.OnButton)
b = wxButton(self, -1, "non-default", (140, 10))
EVT_BUTTON(self, b.GetId(), self.OnButton)
#wxTextCtrl(self, -1, "", (10,40))
b = wxGenButton(self, -1, 'Hello', (10,65))
EVT_BUTTON(self, b.GetId(), self.OnButton)
b = wxGenButton(self, -1, 'disabled', (140,65))
EVT_BUTTON(self, b.GetId(), self.OnButton)
b.Enable(false)
b = wxGenButton(self, -1, 'bigger', (250,50))
EVT_BUTTON(self, b.GetId(), self.OnButton)
b.SetFont(wxFont(20, wxSWISS, wxNORMAL, wxBOLD, false))
b.SetBezelWidth(5)
b.SetBestSize()
b.SetBackgroundColour(wxNamedColour("Navy"))
b.SetForegroundColour(wxWHITE)
#b.SetUseFocusIndicator(false)
bmp = wxBitmap('bitmaps/test2.bmp', wxBITMAP_TYPE_BMP)
b = wxGenBitmapButton(self, -1, bmp, (10, 130))
EVT_BUTTON(self, b.GetId(), self.OnButton)
b = wxGenBitmapButton(self, -1, None, (140, 130))
EVT_BUTTON(self, b.GetId(), self.OnButton)
bmp = wxBitmap('bitmaps/lb1.bmp', wxBITMAP_TYPE_BMP)
mask = wxMaskColour(bmp, wxBLUE)
bmp.SetMask(mask)
b.SetBitmapLabel(bmp)
bmp = wxBitmap('bitmaps/lb2.bmp', wxBITMAP_TYPE_BMP)
mask = wxMaskColour(bmp, wxBLUE)
bmp.SetMask(mask)
b.SetBitmapSelected(bmp)
b.SetBestSize()
b = wxGenToggleButton(self, -1, "Toggle Button", (10, 230))
EVT_BUTTON(self, b.GetId(), self.OnToggleButton)
b = wxGenBitmapToggleButton(self, -1, None, (140, 230))
EVT_BUTTON(self, b.GetId(), self.OnToggleButton)
bmp = wxBitmap('bitmaps/lb1.bmp', wxBITMAP_TYPE_BMP)
mask = wxMaskColour(bmp, wxBLUE)
bmp.SetMask(mask)
b.SetBitmapLabel(bmp)
bmp = wxBitmap('bitmaps/lb2.bmp', wxBITMAP_TYPE_BMP)
mask = wxMaskColour(bmp, wxBLUE)
bmp.SetMask(mask)
b.SetBitmapSelected(bmp)
b.SetToggle(true)
b.SetBestSize()
def OnButton(self, event):
self.log.WriteText("Button Clicked: %d\n" % event.GetId())
def OnToggleButton(self, event):
msg = (event.GetIsDown() and "on") or "off"
self.log.WriteText("Button %d Toggled: %s\n" % (event.GetId(), msg))
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, log)
return win
#----------------------------------------------------------------------
import wxPython.lib.buttons
overview = wxPython.lib.buttons.__doc__

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@@ -1,153 +0,0 @@
from wxPython.wx import *
from wxPython.grid import *
import string
#---------------------------------------------------------------------------
class CustomDataTable(wxPyGridTableBase):
"""
"""
def __init__(self, log):
wxPyGridTableBase.__init__(self)
self.log = log
self.colLabels = ['ID', 'Description', 'Severity', 'Priority', 'Platform',
'Opened?', 'Fixed?', 'Tested?']
self.dataTypes = [wxGRID_VALUE_NUMBER,
wxGRID_VALUE_STRING,
wxGRID_VALUE_CHOICE + ':only in a million years!,wish list,minor,normal,major,critical',
wxGRID_VALUE_NUMBER + ':1,5',
wxGRID_VALUE_CHOICE + ':all,MSW,GTK,other',
wxGRID_VALUE_BOOL,
wxGRID_VALUE_BOOL,
wxGRID_VALUE_BOOL]
self.data = [
[1010, "The foo doesn't bar", "major", 1, 'MSW', 1, 1, 1],
[1011, "I've got a wicket in my wocket", "wish list", 2, 'other', 0, 0, 0],
[1012, "Rectangle() returns a triangle", "critical", 5, 'all', 0, 0, 0]
]
#--------------------------------------------------
# required methods for the wxPyGridTableBase interface
def GetNumberRows(self):
return len(self.data) + 1
def GetNumberCols(self):
return len(self.data[0])
def IsEmptyCell(self, row, col):
return not self.data[row][col]
# Get/Set values in the table. The Python version of these
# methods can handle any data-type, (as long as the Editor and
# Renderer understands the type too,) not just strings as in the
# C++ version.
def GetValue(self, row, col):
try:
return self.data[row][col]
except IndexError:
return ''
def SetValue(self, row, col, value):
try:
self.data[row][col] = value
except IndexError:
# add a new row
self.data.append([''] * self.GetNumberCols())
self.SetValue(row, col, value)
# tell the grid we've added a row
msg = wxGridTableMessage(self, # The table
wxGRIDTABLE_NOTIFY_ROWS_APPENDED, # what we did to it
1) # how many
self.GetView().ProcessTableMessage(msg)
#--------------------------------------------------
# Some optional methods
# Called when the grid needs to display labels
def GetColLabelValue(self, col):
return self.colLabels[col]
# Called to determine the kind of editor/renderer to use by
# default, doesn't necessarily have to be the same type used
# nativly by the editor/renderer if they know how to convert.
def GetTypeName(self, row, col):
return self.dataTypes[col]
# Called to determine how the data can be fetched and stored by the
# editor and renderer. This allows you to enforce some type-safety
# in the grid.
def CanGetValueAs(self, row, col, typeName):
colType = string.split(self.dataTypes[col], ':')[0]
if typeName == colType:
return true
else:
return false
def CanSetValueAs(self, row, col, typeName):
return self.CanGetValueAs(row, col, typeName)
#---------------------------------------------------------------------------
class CustTableGrid(wxGrid):
def __init__(self, parent, log):
wxGrid.__init__(self, parent, -1)
table = CustomDataTable(log)
# The second parameter means that the grid is to take ownership of the
# table and will destroy it when done. Otherwise you would need to keep
# a reference to it and call it's Destroy method later.
self.SetTable(table, true)
self.SetRowLabelSize(0)
self.SetMargins(0,0)
self.AutoSizeColumns(false)
EVT_GRID_CELL_LEFT_DCLICK(self, self.OnLeftDClick)
# I do this because I don't like the default behaviour of not starting the
# cell editor on double clicks, but only a second click.
def OnLeftDClick(self, evt):
if self.CanEnableCellControl():
self.EnableCellEditControl()
#---------------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, log):
wxFrame.__init__(self, parent, -1, "Custom Table, data driven Grid Demo", size=(640,480))
grid = CustTableGrid(self, log)
#---------------------------------------------------------------------------
if __name__ == '__main__':
import sys
app = wxPySimpleApp()
frame = TestFrame(None, sys.stdout)
frame.Show(true)
app.MainLoop()
#---------------------------------------------------------------------------

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@@ -1,62 +0,0 @@
from wxPython.wx import *
from wxPython.grid import *
#---------------------------------------------------------------------------
class NewEnterHandlingGrid(wxGrid):
def __init__(self, parent, log):
wxGrid.__init__(self, parent, -1)
self.log = log
self.CreateGrid(20, 6)
self.SetCellValue(0, 0, "Enter moves to the right")
self.SetCellValue(0, 5, "Enter wraps to next row")
self.SetColSize(0, 150)
self.SetColSize(5, 150)
EVT_KEY_DOWN(self, self.OnKeyDown)
def OnKeyDown(self, evt):
if evt.KeyCode() != WXK_RETURN:
evt.Skip()
return
if evt.ControlDown(): # the edit control needs this key
evt.Skip()
return
self.DisableCellEditControl()
success = self.MoveCursorRight(evt.ShiftDown())
if not success:
newRow = self.GetGridCursorRow() + 1
if newRow < self.GetTable().GetNumberRows():
self.SetGridCursor(newRow, 0)
self.MakeCellVisible(newRow, 0)
else:
# this would be a good place to add a new row if your app
# needs to do that
pass
#---------------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, log):
wxFrame.__init__(self, parent, -1, "Simple Grid Demo", size=(640,480))
grid = NewEnterHandlingGrid(self, log)
#---------------------------------------------------------------------------
if __name__ == '__main__':
import sys
app = wxPySimpleApp()
frame = TestFrame(None, sys.stdout)
frame.Show(true)
app.MainLoop()
#---------------------------------------------------------------------------

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@@ -1,71 +0,0 @@
from wxPython.wx import *
from wxPython.grid import *
#---------------------------------------------------------------------------
class HugeTable(wxPyGridTableBase):
"""
This is all it takes to make a custom data table to plug into a
wxGrid. There are many more methods that can be overridden, but
the ones shown below are the required ones. This table simply
provides strings containing the row and column values.
"""
def __init__(self, log):
wxPyGridTableBase.__init__(self)
self.log = log
def GetNumberRows(self):
return 10000
def GetNumberCols(self):
return 10000
def IsEmptyCell(self, row, col):
return false
def GetValue(self, row, col):
return str( (row, col) )
def SetValue(self, row, col, value):
self.log.write('SetValue(%d, %d, "%s") ignored.\n' % (row, col, value))
#---------------------------------------------------------------------------
class HugeTableGrid(wxGrid):
def __init__(self, parent, log):
wxGrid.__init__(self, parent, -1)
table = HugeTable(log)
# The second parameter means that the grid is to take ownership of the
# table and will destroy it when done. Otherwise you would need to keep
# a reference to it and call it's Destroy method later.
self.SetTable(table, true)
#---------------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, log):
wxFrame.__init__(self, parent, -1, "Huge (virtual) Table Demo", size=(640,480))
grid = HugeTableGrid(self, log)
#---------------------------------------------------------------------------
if __name__ == '__main__':
import sys
app = wxPySimpleApp()
frame = TestFrame(None, sys.stdout)
frame.Show(true)
app.MainLoop()
#---------------------------------------------------------------------------

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@@ -1,189 +0,0 @@
from wxPython.wx import *
from wxPython.grid import *
#---------------------------------------------------------------------------
class SimpleGrid(wxGrid):
def __init__(self, parent, log):
wxGrid.__init__(self, parent, -1)
self.log = log
self.moveTo = None
EVT_IDLE(self, self.OnIdle)
self.CreateGrid(25, 25)
# simple cell formatting
self.SetColSize(3, 200)
self.SetRowSize(4, 45)
self.SetCellValue(0, 0, "First cell")
self.SetCellValue(1, 1, "Another cell")
self.SetCellValue(2, 2, "Yet another cell")
self.SetCellFont(0, 0, wxFont(12, wxROMAN, wxITALIC, wxNORMAL))
self.SetCellTextColour(1, 1, wxRED)
self.SetCellBackgroundColour(2, 2, wxCYAN)
# attribute objects let you keep a set of formatting values
# in one spot, and reuse them if needed
attr = wxGridCellAttr()
attr.SetTextColour(wxBLACK)
attr.SetBackgroundColour(wxRED)
attr.SetFont(wxFont(10, wxSWISS, wxNORMAL, wxBOLD))
# you can set cell attributes for the whole row (or column)
self.SetRowAttr(5, attr)
self.SetColLabelValue(0, "Custom")
self.SetColLabelValue(1, "column")
self.SetColLabelValue(2, "labels")
# test all the events
EVT_GRID_CELL_LEFT_CLICK(self, self.OnCellLeftClick)
EVT_GRID_CELL_RIGHT_CLICK(self, self.OnCellRightClick)
EVT_GRID_CELL_LEFT_DCLICK(self, self.OnCellLeftDClick)
EVT_GRID_CELL_RIGHT_DCLICK(self, self.OnCellRightDClick)
EVT_GRID_LABEL_LEFT_CLICK(self, self.OnLabelLeftClick)
EVT_GRID_LABEL_RIGHT_CLICK(self, self.OnLabelRightClick)
EVT_GRID_LABEL_LEFT_DCLICK(self, self.OnLabelLeftDClick)
EVT_GRID_LABEL_RIGHT_DCLICK(self, self.OnLabelRightDClick)
EVT_GRID_ROW_SIZE(self, self.OnRowSize)
EVT_GRID_COL_SIZE(self, self.OnColSize)
EVT_GRID_RANGE_SELECT(self, self.OnRangeSelect)
EVT_GRID_CELL_CHANGE(self, self.OnCellChange)
EVT_GRID_SELECT_CELL(self, self.OnSelectCell)
EVT_GRID_EDITOR_SHOWN(self, self.OnEditorShown)
EVT_GRID_EDITOR_HIDDEN(self, self.OnEditorHidden)
def OnCellLeftClick(self, evt):
self.log.write("OnCellLeftClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnCellRightClick(self, evt):
self.log.write("OnCellRightClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnCellLeftDClick(self, evt):
self.log.write("OnCellLeftDClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnCellRightDClick(self, evt):
self.log.write("OnCellRightDClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnLabelLeftClick(self, evt):
self.log.write("OnLabelLeftClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnLabelRightClick(self, evt):
self.log.write("OnLabelRightClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnLabelLeftDClick(self, evt):
self.log.write("OnLabelLeftDClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnLabelRightDClick(self, evt):
self.log.write("OnLabelRightDClick: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnRowSize(self, evt):
self.log.write("OnRowSize: row %d, %s\n" %
(evt.GetRowOrCol(), evt.GetPosition()))
evt.Skip()
def OnColSize(self, evt):
self.log.write("OnColSize: col %d, %s\n" %
(evt.GetRowOrCol(), evt.GetPosition()))
evt.Skip()
def OnRangeSelect(self, evt):
if evt.Selecting():
self.log.write("OnRangeSelect: top-left %s, bottom-right %s\n" %
(evt.GetTopLeftCoords(), evt.GetBottomRightCoords()))
evt.Skip()
def OnCellChange(self, evt):
self.log.write("OnCellChange: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
# Show how to stay in a cell that has bad data. We can't just
# call SetGridCursor here since we are nested inside one so it
# won't have any effect. Instead, set coordinants to move to in
# idle time.
value = self.GetCellValue(evt.GetRow(), evt.GetCol())
if value == 'no good':
self.moveTo = evt.GetRow(), evt.GetCol()
def OnIdle(self, evt):
if self.moveTo != None:
self.SetGridCursor(self.moveTo[0], self.moveTo[1])
self.moveTo = None
def OnSelectCell(self, evt):
self.log.write("OnSelectCell: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
# Another way to stay in a cell that has a bad value...
row = self.GetGridCursorRow()
col = self.GetGridCursorCol()
if self.IsCellEditControlEnabled():
self.HideCellEditControl()
self.DisableCellEditControl()
value = self.GetCellValue(row, col)
if value == 'no good 2':
return # cancels the cell selection
else:
evt.Skip()
def OnEditorShown(self, evt):
self.log.write("OnEditorShown: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
def OnEditorHidden(self, evt):
self.log.write("OnEditorHidden: (%d,%d) %s\n" %
(evt.GetRow(), evt.GetCol(), evt.GetPosition()))
evt.Skip()
#---------------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, log):
wxFrame.__init__(self, parent, -1, "Simple Grid Demo", size=(640,480))
grid = SimpleGrid(self, log)
#---------------------------------------------------------------------------
if __name__ == '__main__':
import sys
app = wxPySimpleApp()
frame = TestFrame(None, sys.stdout)
frame.Show(true)
app.MainLoop()
#---------------------------------------------------------------------------

View File

@@ -1,181 +0,0 @@
from wxPython.wx import *
from wxPython.grid import *
import string, random
#---------------------------------------------------------------------------
class MyCustomRenderer(wxPyGridCellRenderer):
def __init__(self):
wxPyGridCellRenderer.__init__(self)
def Draw(self, grid, attr, dc, rect, row, col, isSelected):
dc.SetBackgroundMode(wxSOLID)
dc.SetBrush(wxBrush(wxBLACK, wxSOLID))
dc.SetPen(wxTRANSPARENT_PEN)
dc.DrawRectangle(rect.x, rect.y, rect.width, rect.height)
dc.SetBackgroundMode(wxTRANSPARENT)
dc.SetFont(attr.GetFont())
text = grid.GetCellValue(row, col)
colors = [wxRED, wxWHITE, wxCYAN]
x = rect.x + 1
y = rect.y + 1
for ch in text:
dc.SetTextForeground(random.choice(colors))
dc.DrawText(ch, x, y)
w, h = dc.GetTextExtent(ch)
x = x + w
if x > rect.right - 5:
break
def GetBestSize(self, grid, attr, dc, row, col):
text = grid.GetCellValue(row, col)
dc.SetFont(attr.GetFont())
w, h = dc.GetTextExtent(text)
return wxSize(w, h)
def Clone(self):
return MyCustomRenderer()
#---------------------------------------------------------------------------
rendererDemoData = [
('wxGridCellStringRenderer\n(the default)', 'this is a text value', wxGridCellStringRenderer, ()),
('wxGridCellNumberRenderer', '12345', wxGridCellNumberRenderer, ()),
('wxGridCellFloatRenderer', '1234.5678', wxGridCellFloatRenderer, (6,2)),
('wxGridCellBoolRenderer', '1', wxGridCellBoolRenderer, ()),
('MyCustomRenderer', 'This is my renderer', MyCustomRenderer, ()),
]
editorDemoData = [
('wxGridCellTextEditor\n(the default)', 'Here is some more text', wxGridCellTextEditor, ()),
('wxGridCellNumberEditor\nwith min,max', '101', wxGridCellNumberEditor, (5, 10005)),
('wxGridCellNumberEditor\nwithout bounds', '101', wxGridCellNumberEditor, ()),
('wxGridCellFloatEditor', '1234.5678', wxGridCellFloatEditor, ()),
('wxGridCellBoolEditor', '1', wxGridCellBoolEditor, ()),
('wxGridCellChoiceEditor', 'one', wxGridCellChoiceEditor, (['one', 'two', 'three', 'four',
'kick', 'Microsoft', 'out the',
'door'], false)),
]
comboDemoData = [
('wxGridCellNumberRenderer\nwxGridCellNumberEditor', '20792', wxGridCellNumberRenderer, wxGridCellNumberEditor),
('wxGridCellBoolRenderer\nwxGridCellBoolEditor', '1', wxGridCellBoolRenderer, wxGridCellBoolEditor),
]
class EditorsAndRenderersGrid(wxGrid):
def __init__(self, parent, log):
wxGrid.__init__(self, parent, -1)
self.log = log
self.CreateGrid(25, 8)
renCol = 1
edCol = 4
self.SetCellValue(0, renCol, '''\
Cell Renderers are used to draw
the contents of the cell when they
need to be refreshed. Different
types of Renderers can be plugged in
to different cells in the grid, it can
even be automatically determined based
on the type of data in the cell.
''')
self.SetCellValue(0, edCol, '''\
Cell Editors are used when the
value of the cell is edited by
the user. An editor class is
wrapped around a an object
derived from wxControl and it
implements some methods required
to integrate with the grid.
''')
self.SetCellValue(16, renCol, '''\
Here are some combinations of Editors and
Renderers used together.
''')
row = 2
for label, value, renderClass, args in rendererDemoData:
renderer = apply(renderClass, args)
self.SetCellValue(row, renCol, label)
self.SetCellValue(row, renCol+1, value)
self.SetCellRenderer(row, renCol+1, renderer)
row = row + 2
row = 2
for label, value, editorClass, args in editorDemoData:
editor = apply(editorClass, args)
self.SetCellValue(row, edCol, label)
self.SetCellValue(row, edCol+1, value)
self.SetCellEditor(row, edCol+1, editor)
row = row + 2
row = 18
for label, value, renClass, edClass in comboDemoData:
self.SetCellValue(row, renCol, label)
self.SetCellValue(row, renCol+1, value)
editor = apply(edClass, ()) #args)
renderer = apply(renClass, ()) #args)
self.SetCellEditor(row, renCol+1, editor)
self.SetCellRenderer(row, renCol+1, renderer)
row = row + 2
font = self.GetFont()
font.SetWeight(wxBOLD)
attr = wxGridCellAttr()
attr.SetFont(font)
attr.SetBackgroundColour(wxLIGHT_GREY)
attr.SetReadOnly(true)
attr.SetAlignment(wxRIGHT, -1)
self.SetColAttr(renCol, attr)
self.SetColAttr(edCol, attr)
# There is a bug in wxGTK for this method...
if wxPlatform != '__WXGTK__':
self.AutoSizeColumns(true)
self.AutoSizeRows(true)
EVT_GRID_CELL_LEFT_DCLICK(self, self.OnLeftDClick)
# I do this because I don't like the default behaviour of not starting the
# cell editor on double clicks, but only a second click.
def OnLeftDClick(self, evt):
if self.CanEnableCellControl():
self.EnableCellEditControl()
#---------------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, log):
wxFrame.__init__(self, parent, -1, "Editors and Renderers Demo", size=(640,480))
grid = EditorsAndRenderersGrid(self, log)
#---------------------------------------------------------------------------
if __name__ == '__main__':
import sys
app = wxPySimpleApp()
frame = TestFrame(None, sys.stdout)
frame.Show(true)
app.MainLoop()
#---------------------------------------------------------------------------

View File

@@ -1,62 +0,0 @@
from wxPython.wx import *
from wxPython.lib.layoutf import Layoutf
#---------------------------------------------------------------------------
class TestLayoutf(wxPanel):
def __init__(self, parent):
wxPanel.__init__(self, parent, -1)
self.SetAutoLayout(true)
EVT_BUTTON(self, 100, self.OnButton)
self.panelA = wxWindow(self, -1, wxPyDefaultPosition, wxPyDefaultSize, wxSIMPLE_BORDER)
self.panelA.SetBackgroundColour(wxBLUE)
self.panelA.SetConstraints(Layoutf('t=t10#1;l=l10#1;b=b10#1;r%r50#1',(self,)))
self.panelB = wxWindow(self, -1, wxPyDefaultPosition, wxPyDefaultSize, wxSIMPLE_BORDER)
self.panelB.SetBackgroundColour(wxRED)
self.panelB.SetConstraints(Layoutf('t=t10#1;r=r10#1;b%b30#1;l>10#2', (self,self.panelA)))
self.panelC = wxWindow(self, -1, wxPyDefaultPosition, wxPyDefaultSize, wxSIMPLE_BORDER)
self.panelC.SetBackgroundColour(wxWHITE)
self.panelC.SetConstraints(Layoutf('t_10#3;r=r10#1;b=b10#1;l>10#2', (self,self.panelA,self.panelB)))
b = wxButton(self.panelA, 100, ' Panel A ')
b.SetConstraints(Layoutf('X=X#1;Y=Y#1;h*;w%w50#1', (self.panelA,)))
b = wxButton(self.panelB, 100, ' Panel B ')
b.SetConstraints(Layoutf('t=t2#1;r=r4#1;h*;w*', (self.panelB,)))
self.panelD = wxWindow(self.panelC, -1, wxPyDefaultPosition, wxPyDefaultSize, wxSIMPLE_BORDER)
self.panelD.SetBackgroundColour(wxGREEN)
self.panelD.SetConstraints(Layoutf('b%h50#1;r%w50#1;h=h#2;w=w#2', (self.panelC, b)))
b = wxButton(self.panelC, 100, ' Panel C ')
b.SetConstraints(Layoutf('t_#1;l>#1;h*;w*', (self.panelD,)))
wxStaticText(self.panelD, -1, "Panel D", wxPoint(4, 4)).SetBackgroundColour(wxGREEN)
def OnButton(self, event):
wxBell()
#---------------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestLayoutf(nb)
return win
#---------------------------------------------------------------------------
overview = Layoutf.__doc__

View File

@@ -1,53 +0,0 @@
#!/usr/bin/env python
from wxPython.wx import *
from wxScrolledWindow import MyCanvas
#----------------------------------------------------------------------
class MyParentFrame(wxMDIParentFrame):
def __init__(self):
wxMDIParentFrame.__init__(self, None, -1, "MDI Parent", size=(600,400))
self.winCount = 0
menu = wxMenu()
menu.Append(5000, "&New Window")
menu.AppendSeparator()
menu.Append(5001, "E&xit")
menubar = wxMenuBar()
menubar.Append(menu, "&File")
self.SetMenuBar(menubar)
#self.CreateStatusBar()
EVT_MENU(self, 5000, self.OnNewWindow)
EVT_MENU(self, 5001, self.OnExit)
def OnExit(self, evt):
self.Close(true)
def OnNewWindow(self, evt):
self.winCount = self.winCount + 1
win = wxMDIChildFrame(self, -1, "Child Window: %d" % self.winCount)
canvas = MyCanvas(win)
win.Show(true)
#----------------------------------------------------------------------
class MyApp(wxApp):
def OnInit(self):
frame = MyParentFrame()
frame.Show(true)
self.SetTopWindow(frame)
return true
app = MyApp(0)
app.MainLoop()

View File

@@ -1,527 +0,0 @@
#!/bin/env python
#----------------------------------------------------------------------------
# Name: Main.py
# Purpose: Testing lots of stuff, controls, window types, etc.
#
# Author: Robin Dunn
#
# Created: A long time ago, in a galaxy far, far away...
# RCS-ID: $Id$
# Copyright: (c) 1999 by Total Control Software
# Licence: wxWindows license
#----------------------------------------------------------------------------
import sys, os
from wxPython.wx import *
from wxPython.lib.splashscreen import SplashScreen
from wxPython.html import wxHtmlWindow
#---------------------------------------------------------------------------
_treeList = [
#('New since last release', ['PyShellWindow',
# ]),
('Managed Windows', ['wxFrame', 'wxDialog', 'wxMiniFrame']),
('Non-Managed Windows', ['wxGrid', 'wxSashWindow',
'wxScrolledWindow', 'wxSplitterWindow',
'wxStatusBar', 'wxNotebook',
'wxHtmlWindow',
'wxStyledTextCtrl_1', 'wxStyledTextCtrl_2',]),
('Common Dialogs', ['wxColourDialog', 'wxDirDialog', 'wxFileDialog',
'wxSingleChoiceDialog', 'wxTextEntryDialog',
'wxFontDialog', 'wxPageSetupDialog', 'wxPrintDialog',
'wxMessageDialog', 'wxProgressDialog']),
('Controls', ['wxButton', 'wxCheckBox', 'wxCheckListBox', 'wxChoice',
'wxComboBox', 'wxGauge', 'wxListBox', 'wxListCtrl', 'wxTextCtrl',
'wxTreeCtrl', 'wxSpinButton', 'wxSpinCtrl', 'wxStaticText',
'wxStaticBitmap', 'wxRadioBox', 'wxSlider', 'wxToolBar',
'wxCalendarCtrl',
]),
('Window Layout', ['wxLayoutConstraints', 'Sizers', 'OldSizers']),
('Miscellaneous', [ 'DragAndDrop', 'CustomDragAndDrop', 'FontEnumerator',
'wxTimer', 'wxValidator', 'wxGLCanvas', 'DialogUnits',
'wxImage', 'wxMask', 'PrintFramework', 'wxOGL',
'PythonEvents', 'Threads',
'ActiveXWrapper_Acrobat', 'ActiveXWrapper_IE',
'wxDragImage', 'PyShellWindow',
]),
('wxPython Library', ['Layoutf', 'wxScrolledMessageDialog',
'wxMultipleChoiceDialog', 'wxPlotCanvas', 'wxFloatBar',
'PyShell', 'wxCalendar', 'wxMVCTree', 'wxVTKRenderWindow',
'FileBrowseButton', 'GenericButtons', 'wxEditor']),
('Cool Contribs', ['pyTree', 'hangman', 'SlashDot', 'XMLtreeview']),
]
#---------------------------------------------------------------------------
class wxPythonDemo(wxFrame):
def __init__(self, parent, id, title):
wxFrame.__init__(self, parent, -1, title, size = (800, 600),
style=wxDEFAULT_FRAME_STYLE|wxNO_FULL_REPAINT_ON_RESIZE)
self.cwd = os.getcwd()
self.curOverview = ""
if wxPlatform == '__WXMSW__':
icon = wxIcon('bitmaps/mondrian.ico', wxBITMAP_TYPE_ICO)
self.SetIcon(icon)
# setup a taskbar icon, and catch some events from it
self.tbicon = wxTaskBarIcon()
self.tbicon.SetIcon(icon, "wxPython Demo")
EVT_TASKBAR_LEFT_DCLICK(self.tbicon, self.OnTaskBarActivate)
EVT_TASKBAR_RIGHT_UP(self.tbicon, self.OnTaskBarMenu)
EVT_MENU(self.tbicon, self.TBMENU_RESTORE, self.OnTaskBarActivate)
EVT_MENU(self.tbicon, self.TBMENU_CLOSE, self.OnTaskBarClose)
self.otherWin = None
EVT_IDLE(self, self.OnIdle)
EVT_CLOSE(self, self.OnCloseWindow)
self.Centre(wxBOTH)
self.CreateStatusBar(1, wxST_SIZEGRIP)
splitter = wxSplitterWindow(self, -1, style=wxNO_3D|wxSP_3D)
splitter2 = wxSplitterWindow(splitter, -1, style=wxNO_3D|wxSP_3D)
# Prevent TreeCtrl from displaying all items after destruction
self.dying = false
# Make a File menu
self.mainmenu = wxMenuBar()
menu = wxMenu()
exitID = wxNewId()
menu.Append(exitID, 'E&xit\tAlt-X', 'Get the heck outta here!')
EVT_MENU(self, exitID, self.OnFileExit)
self.mainmenu.Append(menu, '&File')
# Make a Demo menu
menu = wxMenu()
for item in _treeList:
submenu = wxMenu()
for childItem in item[1]:
mID = wxNewId()
submenu.Append(mID, childItem)
EVT_MENU(self, mID, self.OnDemoMenu)
menu.AppendMenu(wxNewId(), item[0], submenu)
self.mainmenu.Append(menu, '&Demo')
# Make a Help menu
helpID = wxNewId()
menu = wxMenu()
menu.Append(helpID, '&About\tCtrl-H', 'wxPython RULES!!!')
EVT_MENU(self, helpID, self.OnHelpAbout)
self.mainmenu.Append(menu, '&Help')
self.SetMenuBar(self.mainmenu)
# set the menu accellerator table...
aTable = wxAcceleratorTable([(wxACCEL_ALT, ord('X'), exitID),
(wxACCEL_CTRL, ord('H'), helpID)])
self.SetAcceleratorTable(aTable)
# Create a TreeCtrl
tID = wxNewId()
self.treeMap = {}
self.tree = wxTreeCtrl(splitter, tID,
style=wxTR_HAS_BUTTONS |
wxTR_EDIT_LABELS |
wxTR_HAS_VARIABLE_ROW_HEIGHT |
wxSUNKEN_BORDER)
#self.tree.SetBackgroundColour(wxNamedColour("Pink"))
root = self.tree.AddRoot("Overview")
firstChild = None
for item in _treeList:
child = self.tree.AppendItem(root, item[0])
if not firstChild: firstChild = child
for childItem in item[1]:
theDemo = self.tree.AppendItem(child, childItem)
self.treeMap[childItem] = theDemo
self.tree.Expand(root)
self.tree.Expand(firstChild)
EVT_TREE_ITEM_EXPANDED (self.tree, tID, self.OnItemExpanded)
EVT_TREE_ITEM_COLLAPSED (self.tree, tID, self.OnItemCollapsed)
EVT_TREE_SEL_CHANGED (self.tree, tID, self.OnSelChanged)
EVT_LEFT_DOWN (self.tree, self.OnTreeLeftDown)
# Create a Notebook
self.nb = wxNotebook(splitter2, -1)
# Set up a TextCtrl on the Overview Notebook page
self.ovr = wxHtmlWindow(self.nb, -1)
self.nb.AddPage(self.ovr, "Overview")
# Set up a TextCtrl on the Demo Code Notebook page
self.txt = wxTextCtrl(self.nb, -1,
style = wxTE_MULTILINE|wxTE_READONLY|wxHSCROLL)
self.txt.SetFont(wxFont(9, wxMODERN, wxNORMAL, wxNORMAL, false))
self.nb.AddPage(self.txt, "Demo Code")
# Set up a log on the View Log Notebook page
self.log = wxTextCtrl(splitter2, -1,
style = wxTE_MULTILINE|wxTE_READONLY|wxHSCROLL)
# Set the wxWindows log target to be this textctrl
wxLog_SetActiveTarget(wxLogTextCtrl(self.log))
self.Show(true)
# add the windows to the splitter and split it.
splitter2.SplitHorizontally(self.nb, self.log)
splitter2.SetSashPosition(450, true)
splitter2.SetMinimumPaneSize(20)
splitter.SplitVertically(self.tree, splitter2)
splitter.SetSashPosition(180, true)
splitter.SetMinimumPaneSize(20)
# select initial items
self.nb.SetSelection(0)
self.tree.SelectItem(root)
if len(sys.argv) == 2:
try:
selectedDemo = self.treeMap[sys.argv[1]]
except:
selectedDemo = None
if selectedDemo:
self.tree.SelectItem(selectedDemo)
self.tree.EnsureVisible(selectedDemo)
wxLogMessage('window handle: %s' % self.GetHandle())
#---------------------------------------------
def WriteText(self, text):
if text[-1:] == '\n':
text = text[:-1]
wxLogMessage(text)
def write(self, txt):
self.WriteText(txt)
#---------------------------------------------
def OnItemExpanded(self, event):
item = event.GetItem()
wxLogMessage("OnItemExpanded: %s" % self.tree.GetItemText(item))
event.Skip()
#---------------------------------------------
def OnItemCollapsed(self, event):
item = event.GetItem()
wxLogMessage("OnItemCollapsed: %s" % self.tree.GetItemText(item))
event.Skip()
#---------------------------------------------
def OnTreeLeftDown(self, event):
pt = event.GetPosition();
item, flags = self.tree.HitTest(pt)
if item == self.tree.GetSelection():
self.SetOverview(self.tree.GetItemText(item), self.curOverview)
else:
event.Skip()
#---------------------------------------------
def OnSelChanged(self, event):
if self.dying:
return
item = event.GetItem()
itemText = self.tree.GetItemText(item)
self.RunDemo(itemText)
#---------------------------------------------
def RunDemo(self, itemText):
os.chdir(self.cwd)
if self.nb.GetPageCount() == 3:
if self.nb.GetSelection() == 2:
self.nb.SetSelection(0)
self.nb.DeletePage(2)
if itemText == 'Overview':
self.GetDemoFile('Main.py')
self.SetOverview('Overview', overview)
self.nb.Refresh();
self.window = None
else:
if os.path.exists(itemText + '.py'):
wxBeginBusyCursor()
wxLogMessage("Running demo %s.py..." % itemText)
try:
self.GetDemoFile(itemText + '.py')
module = __import__(itemText, globals())
self.SetOverview(itemText, module.overview)
finally:
wxEndBusyCursor()
# in case runTest is modal, make sure things look right...
self.nb.Refresh();
wxYield()
self.window = module.runTest(self, self.nb, self) ###
if self.window:
self.nb.AddPage(self.window, 'Demo')
wxYield()
self.nb.SetSelection(2)
else:
self.ovr.SetPage("")
self.txt.Clear()
self.window = None
#---------------------------------------------
# Get the Demo files
def GetDemoFile(self, filename):
self.txt.Clear()
try:
self.txt.SetValue(open(filename).read())
except IOError:
self.txt.WriteText("Cannot open %s file." % filename)
self.txt.SetInsertionPoint(0)
self.txt.ShowPosition(0)
#---------------------------------------------
def SetOverview(self, name, text):
self.curOverview = text
lead = text[:6]
if lead != '<html>' and lead != '<HTML>':
text = string.join(string.split(text, '\n'), '<br>')
#text = '<font size="-1"><pre>' + text + '</pre></font>'
self.ovr.SetPage(text)
self.nb.SetPageText(0, name)
#---------------------------------------------
# Menu methods
def OnFileExit(self, *event):
self.Close()
def OnHelpAbout(self, event):
from About import MyAboutBox
about = MyAboutBox(self)
about.ShowModal()
about.Destroy()
#---------------------------------------------
def OnCloseWindow(self, event):
self.dying = true
self.window = None
self.mainmenu = None
if hasattr(self, "tbicon"):
del self.tbicon
self.Destroy()
#---------------------------------------------
def OnIdle(self, event):
if self.otherWin:
self.otherWin.Raise()
self.window = self.otherWin
self.otherWin = None
#---------------------------------------------
def OnDemoMenu(self, event):
try:
selectedDemo = self.treeMap[self.mainmenu.GetLabel(event.GetId())]
except:
selectedDemo = None
if selectedDemo:
self.tree.SelectItem(selectedDemo)
self.tree.EnsureVisible(selectedDemo)
#---------------------------------------------
def OnTaskBarActivate(self, evt):
if self.IsIconized():
self.Iconize(false)
if not self.IsShown():
self.Show(true)
self.Raise()
#---------------------------------------------
TBMENU_RESTORE = 1000
TBMENU_CLOSE = 1001
def OnTaskBarMenu(self, evt):
menu = wxMenu()
menu.Append(self.TBMENU_RESTORE, "Restore wxPython Demo")
menu.Append(self.TBMENU_CLOSE, "Close")
self.tbicon.PopupMenu(menu)
menu.Destroy()
#---------------------------------------------
def OnTaskBarClose(self, evt):
self.Close()
# because of the way wxTaskBarIcon.PopupMenu is implemented we have to
# prod the main idle handler a bit to get the window to actually close
wxGetApp().ProcessIdle()
#---------------------------------------------------------------------------
#---------------------------------------------------------------------------
class MyApp(wxApp):
def OnInit(self):
wxInitAllImageHandlers()
self.splash = SplashScreen(None, bitmapfile='bitmaps/splash.gif',
duration=4000, callback=self.AfterSplash)
self.splash.Show(true)
wxYield()
return true
def AfterSplash(self):
self.splash.Close(true)
frame = wxPythonDemo(None, -1, "wxPython: (A Demonstration)")
frame.Show(true)
self.SetTopWindow(frame)
self.ShowTip(frame)
def ShowTip(self, frame):
try:
showTipText = open("data/showTips").read()
showTip, index = eval(showTipText)
except IOError:
showTip, index = (1, 0)
#print showTip, index
if showTip:
tp = wxCreateFileTipProvider("data/tips.txt", index)
showTip = wxShowTip(frame, tp)
index = tp.GetCurrentTip()
open("data/showTips", "w").write(str( (showTip, index) ))
#---------------------------------------------------------------------------
def main():
try:
demoPath = os.path.split(__file__)[0]
os.chdir(demoPath)
except:
pass
app = MyApp(0)
app.MainLoop()
#---------------------------------------------------------------------------
overview = """<html><body>
<h2>Python</h2>
Python is an interpreted, interactive, object-oriented programming
language often compared to Tcl, Perl, Scheme, or Java.
<p> Python combines remarkable power with very clear syntax. It has
modules, classes, exceptions, very high level dynamic data types, and
dynamic typing. There are interfaces to many system calls and
libraries, and new built-in modules are easily written in C or
C++. Python is also usable as an extension language for applications
that need a programmable interface. <p>
<h2>wxWindows</h2>
wxWindows is a free C++ framework designed to make cross-platform
programming child's play. Well, almost. wxWindows 2 supports Windows
3.1/95/98/NT, Unix with GTK/Motif/Lesstif, with a Mac version
underway. Other ports are under consideration. <p>
wxWindows is a set of libraries that allows C++ applications to
compile and run on several different types of computers, with minimal
source code changes. There is one library per supported GUI (such as
Motif, or Windows). As well as providing a common API (Application
Programming Interface) for GUI functionality, it provides
functionality for accessing some commonly-used operating system
facilities, such as copying or deleting files. wxWindows is a
'framework' in the sense that it provides a lot of built-in
functionality, which the application can use or replace as required,
thus saving a great deal of coding effort. Basic data structures such
as strings, linked lists and hash tables are also supported.
<p>
<h2>wxPython</h2>
wxPython is a Python extension module that encapsulates the wxWindows
GUI classes. Currently it is only available for the Win32 and GTK
ports of wxWindows, but as soon as the other ports are brought up to
the same level as Win32 and GTK, it should be fairly trivial to
enable wxPython to be used with the new GUI.
<p>
The wxPython extension module attempts to mirror the class heiarchy
of wxWindows as closely as possible. This means that there is a
wxFrame class in wxPython that looks, smells, tastes and acts almost
the same as the wxFrame class in the C++ version. Unfortunately,
because of differences in the languages, wxPython doesn't match
wxWindows exactly, but the differences should be easy to absorb
because they are natural to Python. For example, some methods that
return multiple values via argument pointers in C++ will return a
tuple of values in Python.
<p>
There is still much to be done for wxPython, many classes still need
to be mirrored. Also, wxWindows is still somewhat of a moving target
so it is a bit of an effort just keeping wxPython up to date. On the
other hand, there are enough of the core classes completed that
useful applications can be written.
<p>
wxPython is close enough to the C++ version that the majority of
the wxPython documentation is actually just notes attached to the C++
documents that describe the places where wxPython is different. There
is also a series of sample programs included, and a series of
documentation pages that assist the programmer in getting started
with wxPython.
"""
#----------------------------------------------------------------------------
#----------------------------------------------------------------------------
if __name__ == '__main__':
main()
#----------------------------------------------------------------------------

View File

@@ -1,403 +0,0 @@
#----------------------------------------------------------------------
# sizer test code
#----------------------------------------------------------------------
from wxPython.wx import *
from wxPython.lib.sizers import *
#----------------------------------------------------------------------
def makeSimpleBox1(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0)
box.Add(wxButton(win, 1010, "two"), 0)
box.Add(wxButton(win, 1010, "three"), 0)
box.Add(wxButton(win, 1010, "four"), 0)
return box
#----------------------------------------------------------------------
def makeSimpleBox2(win):
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, "one"), 0)
box.Add(wxButton(win, 1010, "two"), 0)
box.Add(wxButton(win, 1010, "three"), 0)
box.Add(wxButton(win, 1010, "four"), 0)
return box
#----------------------------------------------------------------------
def makeSimpleBox3(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0)
box.Add(wxButton(win, 1010, "two"), 0)
box.Add(wxButton(win, 1010, "three"), 0)
box.Add(wxButton(win, 1010, "four"), 0)
box.Add(wxButton(win, 1010, "five"), 1)
return box
#----------------------------------------------------------------------
def makeSimpleBox4(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0)
box.Add(wxButton(win, 1010, "two"), 0)
box.Add(wxButton(win, 1010, "three"), 1)
box.Add(wxButton(win, 1010, "four"), 1)
box.Add(wxButton(win, 1010, "five"), 1)
return box
#----------------------------------------------------------------------
def makeSimpleBox5(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0)
box.Add(wxButton(win, 1010, "two"), 0)
box.Add(wxButton(win, 1010, "three"), 3)
box.Add(wxButton(win, 1010, "four"), 1)
box.Add(wxButton(win, 1010, "five"), 1)
return box
#----------------------------------------------------------------------
def makeSimpleBox6(win):
box = wxBoxSizer(wxHORIZONTAL, wxSize(250, 50))
box.Add(wxButton(win, 1010, "10"), 10)
box.Add(wxButton(win, 1010, "20"), 20)
box.Add(wxButton(win, 1010, "30"), 30)
box.Add(wxButton(win, 1010, "15"), 15)
box.Add(wxButton(win, 1010, "5"), 5)
return box
#----------------------------------------------------------------------
def makeSimpleBorder1(win):
bdr = wxBorderSizer(wxALL)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 15)
return bdr
#----------------------------------------------------------------------
def makeSimpleBorder2(win):
bdr = wxBorderSizer(wxEAST | wxWEST)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 15)
return bdr
#----------------------------------------------------------------------
def makeSimpleBorder3(win):
bdr = wxBorderSizer(wxNORTH | wxWEST)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 15)
return bdr
#----------------------------------------------------------------------
def makeShapes(win):
box =wxBoxSizer(wxVERTICAL)
box.Add(wxStaticLine(win, -1), 0)
for line in (
(wxANCHOR_NW, "NorthWest"),
(wxANCHOR_NORTH, "North"),
(wxANCHOR_NE, "NorthEast")
), (
(wxANCHOR_WEST, "West"),
(wxANCHOR_NONE, "Center"),
(wxANCHOR_EAST, "East")
), (
(wxANCHOR_SW, "SouthWest"),
(wxANCHOR_SOUTH, "South"),
(wxANCHOR_SE, "SouthEast")
):
linebox =wxBoxSizer(wxHORIZONTAL)
linebox.Add(wxStaticLine(win, -1, style=wxVERTICAL), 0)
for (anchor, label) in line:
sizer =wxShapeSizer(anchor)
sizer.Add(wxButton(win, -1, label, size=wxSize(100, 50)))
linebox.Add(sizer, 1)
linebox.Add(wxStaticLine(win, -1, style=wxVERTICAL), 0)
box.Add(linebox, 1)
box.Add(wxStaticLine(win, -1), 0)
return box
#----------------------------------------------------------------------
def makeBoxInBox(win):
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, "one"))
box2 = wxBoxSizer(wxHORIZONTAL)
box2.AddMany([ wxButton(win, 1010, "two"),
wxButton(win, 1010, "three"),
wxButton(win, 1010, "four"),
wxButton(win, 1010, "five"),
])
box3 = wxBoxSizer(wxVERTICAL)
box3.AddMany([ (wxButton(win, 1010, "six"), 0),
(wxButton(win, 1010, "seven"), 2),
(wxButton(win, 1010, "eight"), 1),
(wxButton(win, 1010, "nine"), 1),
])
box2.Add(box3, 1)
box.Add(box2, 1)
box.Add(wxButton(win, 1010, "ten"))
return box
#----------------------------------------------------------------------
def makeBoxInBorder(win):
bdr = wxBorderSizer(wxALL)
box = makeSimpleBox3(win)
bdr.Add(box, 15)
return bdr
#----------------------------------------------------------------------
def makeBorderInBox(win):
insideBox = wxBoxSizer(wxHORIZONTAL)
box2 = wxBoxSizer(wxHORIZONTAL)
box2.AddMany([ wxButton(win, 1010, "one"),
wxButton(win, 1010, "two"),
wxButton(win, 1010, "three"),
wxButton(win, 1010, "four"),
wxButton(win, 1010, "five"),
])
insideBox.Add(box2, 0)
bdr = wxBorderSizer(wxALL)
bdr.Add(wxButton(win, 1010, "border"), 20)
insideBox.Add(bdr, 1)
box3 = wxBoxSizer(wxVERTICAL)
box3.AddMany([ (wxButton(win, 1010, "six"), 0),
(wxButton(win, 1010, "seven"), 2),
(wxButton(win, 1010, "eight"), 1),
(wxButton(win, 1010, "nine"), 1),
])
insideBox.Add(box3, 1)
outsideBox = wxBoxSizer(wxVERTICAL)
outsideBox.Add(wxButton(win, 1010, "top"))
outsideBox.Add(insideBox, 1)
outsideBox.Add(wxButton(win, 1010, "bottom"))
return outsideBox
#----------------------------------------------------------------------
theTests = [
("Simple horizontal boxes", makeSimpleBox1,
"This is a HORIZONTAL box sizer with four non-stretchable buttons held "
"within it. Notice that the buttons are added and aligned in the horizontal "
"dimension. Also notice that they are fixed size in the horizontal dimension, "
"but will stretch vertically."
),
("Simple vertical boxes", makeSimpleBox2,
"Exactly the same as the previous sample but using a VERTICAL box sizer "
"instead of a HORIZONTAL one."
),
("Add a stretchable", makeSimpleBox3,
"We've added one more button with the strechable flag turned on. Notice "
"how it grows to fill the extra space in the otherwise fixed dimension."
),
("More than one stretchable", makeSimpleBox4,
"Here there are several items that are stretchable, they all divide up the "
"extra space evenly."
),
("Weighting factor", makeSimpleBox5,
"This one shows more than one strechable, but one of them has a weighting "
"factor so it gets more of the free space."
),
# ("Percent Sizer", makeSimpleBox6,
# "You can use the wxBoxSizer like a Percent Sizer. Just make sure that all "
# "the weighting factors add up to 100!"
# ),
("", None, ""),
("Simple border sizer", makeSimpleBorder1,
"The wxBorderSizer leaves empty space around its contents. This one "
"gives a border all the way around."
),
("East and West border", makeSimpleBorder2,
"You can pick and choose which sides have borders."
),
("North and West border", makeSimpleBorder3,
"You can pick and choose which sides have borders."
),
("", None, ""),
("Proportional resize", makeShapes,
"The wxShapeSizer preserves the original proportions of the window."
),
("", None, ""),
("Boxes inside of boxes", makeBoxInBox,
"This one shows nesting of boxes within boxes within boxes, using both "
"orientations. Notice also that button seven has a greater weighting "
"factor than its siblings."
),
("Boxes inside a Border", makeBoxInBorder,
"Sizers of different types can be nested withing each other as well. "
"Here is a box sizer with several buttons embedded within a border sizer."
),
("Border in a Box", makeBorderInBox,
"Another nesting example. This one has Boxes and a Border inside another Box."
),
]
#----------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, title, sizerFunc):
wxFrame.__init__(self, parent, -1, title)
EVT_BUTTON(self, 1010, self.OnButton)
self.sizer = sizerFunc(self)
self.CreateStatusBar()
self.SetStatusText("Resize this frame to see how the sizers respond...")
self.sizer.FitWindow(self)
EVT_CLOSE(self, self.OnCloseWindow)
EVT_SIZE(self, self.OnSize)
def OnSize(self, event):
size = self.GetClientSize()
self.sizer.Layout(size)
def OnCloseWindow(self, event):
self.MakeModal(false)
self.Destroy()
def OnButton(self, event):
self.Close(true)
#----------------------------------------------------------------------
class TestSelectionPanel(wxPanel):
def __init__(self, parent, frame=NULL):
wxPanel.__init__(self, parent, -1)
self.frame = frame
self.list = wxListBox(self, 401,
wxDLG_PNT(self, 10, 10), wxDLG_SZE(self, 100, 60),
[])
EVT_LISTBOX(self, 401, self.OnSelect)
EVT_LISTBOX_DCLICK(self, 401, self.OnDClick)
wxButton(self, 402, "Try it!", wxDLG_PNT(self, 120, 10)).SetDefault()
EVT_BUTTON(self, 402, self.OnDClick)
self.text = wxTextCtrl(self, -1, "",
wxDLG_PNT(self, 10, 80),
wxDLG_SZE(self, 200, 60),
wxTE_MULTILINE | wxTE_READONLY)
for item in theTests:
self.list.Append(item[0])
def OnSelect(self, event):
pos = self.list.GetSelection()
self.text.SetValue(theTests[pos][2])
def OnDClick(self, event):
pos = self.list.GetSelection()
title = theTests[pos][0]
func = theTests[pos][1]
if func:
win = TestFrame(self, title, func)
win.CentreOnParent(wxBOTH)
win.Show(true)
win.MakeModal(true)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestSelectionPanel(nb, frame)
return win
overview = wxSizer.__doc__ + '\n' + '-' * 80 + '\n' + \
wxBoxSizer.__doc__ + '\n' + '-' * 80 + '\n' + \
wxBorderSizer.__doc__
#----------------------------------------------------------------------
if __name__ == '__main__':
class MainFrame(wxFrame):
def __init__(self):
wxFrame.__init__(self, NULL, -1, "Testing...")
self.CreateStatusBar()
mainmenu = wxMenuBar()
menu = wxMenu()
menu.Append(200, 'E&xit', 'Get the heck outta here!')
mainmenu.Append(menu, "&File")
self.SetMenuBar(mainmenu)
EVT_MENU(self, 200, self.OnExit)
self.panel = TestSelectionPanel(self, self)
self.SetSize(wxSize(400, 380))
EVT_CLOSE(self, self.OnCloseWindow)
def OnCloseWindow(self, event):
self.Destroy()
def OnExit(self, event):
self.Close(true)
class TestApp(wxApp):
def OnInit(self):
frame = MainFrame()
frame.Show(true)
self.SetTopWindow(frame)
return true
app = TestApp(0)
app.MainLoop()
#----------------------------------------------------------------------

View File

@@ -1,176 +0,0 @@
from wxPython.wx import *
from wxScrolledWindow import MyCanvas
#----------------------------------------------------------------------
class MyPrintout(wxPrintout):
def __init__(self, canvas, log):
wxPrintout.__init__(self)
self.canvas = canvas
self.log = log
def OnBeginDocument(self, start, end):
self.log.WriteText("wxPrintout.OnBeginDocument\n")
return self.base_OnBeginDocument(start, end)
def OnEndDocument(self):
self.log.WriteText("wxPrintout.OnEndDocument\n")
self.base_OnEndDocument()
def OnBeginPrinting(self):
self.log.WriteText("wxPrintout.OnBeginPrinting\n")
self.base_OnBeginPrinting()
def OnEndPrinting(self):
self.log.WriteText("wxPrintout.OnEndPrinting\n")
self.base_OnEndPrinting()
def OnPreparePrinting(self):
self.log.WriteText("wxPrintout.OnPreparePrinting\n")
self.base_OnPreparePrinting()
def HasPage(self, page):
self.log.WriteText("wxPrintout.HasPage\n")
if page == 1:
return true
else:
return false
def GetPageInfo(self):
self.log.WriteText("wxPrintout.GetPageInfo\n")
return (1, 1, 1, 1)
def OnPrintPage(self, page):
self.log.WriteText("wxPrintout.OnPrintPage\n")
dc = self.GetDC()
#-------------------------------------------
# One possible method of setting scaling factors...
maxX = self.canvas.getWidth()
maxY = self.canvas.getHeight()
# Let's have at least 50 device units margin
marginX = 50
marginY = 50
# Add the margin to the graphic size
maxX = maxX + (2 * marginX)
maxY = maxY + (2 * marginY)
# Get the size of the DC in pixels
(w, h) = dc.GetSizeTuple()
# Calculate a suitable scaling factor
scaleX = float(w) / maxX
scaleY = float(h) / maxY
# Use x or y scaling factor, whichever fits on the DC
actualScale = min(scaleX, scaleY)
# Calculate the position on the DC for centring the graphic
posX = (w - (self.canvas.getWidth() * actualScale)) / 2.0
posY = (h - (self.canvas.getHeight() * actualScale)) / 2.0
# Set the scale and origin
dc.SetUserScale(actualScale, actualScale)
dc.SetDeviceOrigin(int(posX), int(posY))
#-------------------------------------------
self.canvas.DoDrawing(dc)
return true
#----------------------------------------------------------------------
class TestPrintPanel(wxPanel):
def __init__(self, parent, frame, log):
wxPanel.__init__(self, parent, -1)
self.log = log
self.frame = frame
self.printData = wxPrintData()
self.printData.SetPaperId(wxPAPER_LETTER)
self.box = wxBoxSizer(wxVERTICAL)
self.canvas = MyCanvas(self)
self.box.Add(self.canvas, 1, wxGROW)
subbox = wxBoxSizer(wxHORIZONTAL)
btn = wxButton(self, 1201, "Print Setup")
EVT_BUTTON(self, 1201, self.OnPrintSetup)
subbox.Add(btn, 1, wxGROW | wxALL, 2)
btn = wxButton(self, 1202, "Print Preview")
EVT_BUTTON(self, 1202, self.OnPrintPreview)
subbox.Add(btn, 1, wxGROW | wxALL, 2)
btn = wxButton(self, 1203, "Print")
EVT_BUTTON(self, 1203, self.OnDoPrint)
subbox.Add(btn, 1, wxGROW | wxALL, 2)
self.box.Add(subbox, 0, wxGROW)
self.SetAutoLayout(true)
self.SetSizer(self.box)
def OnPrintSetup(self, event):
printerDialog = wxPrintDialog(self)
printerDialog.GetPrintDialogData().SetPrintData(self.printData)
printerDialog.GetPrintDialogData().SetSetupDialog(true)
printerDialog.ShowModal();
self.printData = printerDialog.GetPrintDialogData().GetPrintData()
printerDialog.Destroy()
def OnPrintPreview(self, event):
self.log.WriteText("OnPrintPreview\n")
printout = MyPrintout(self.canvas, self.log)
printout2 = MyPrintout(self.canvas, self.log)
self.preview = wxPrintPreview(printout, printout2, self.printData)
if not self.preview.Ok():
self.log.WriteText("Houston, we have a problem...\n")
return
frame = wxPreviewFrame(self.preview, self.frame, "This is a print preview")
frame.Initialize()
frame.SetPosition(self.frame.GetPosition())
frame.SetSize(self.frame.GetSize())
frame.Show(true)
def OnDoPrint(self, event):
pdd = wxPrintDialogData()
pdd.SetPrintData(self.printData)
printer = wxPrinter(pdd)
printout = MyPrintout(self.canvas, self.log)
if not printer.Print(self.frame, printout):
wxMessageBox("There was a problem printing.\nPerhaps your current printer is not set correctly?", "Printing", wxOK)
else:
self.printData = printer.GetPrintDialogData().GetPrintData()
printout.Destroy()
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPrintPanel(nb, frame, log)
return win
#----------------------------------------------------------------------
overview = """\
"""

View File

@@ -1,21 +0,0 @@
from wxPython.wx import *
from wxPython.lib.shell import PyShell
#----------------------------------------------------------------------
def runTest(frame, nb, log):
testGlobals = {'hello' : 'How are you?'}
win = PyShell(nb, globals=testGlobals)
win.Show(true)
return win
#----------------------------------------------------------------------
overview = """
A simple GUI version of the interactive interpreter.
"""

View File

@@ -1,15 +0,0 @@
from wxPython.lib.pyshell import PyShellWindow
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = PyShellWindow(nb, -1)
return win
#----------------------------------------------------------------------
import wxPython.lib.pyshell
overview = wxPython.lib.pyshell.__doc__

View File

@@ -1,85 +0,0 @@
from wxPython.wx import *
import sys
#----------------------------------------------------------------------
myEVT_BUTTON_CLICKPOS = 5015
def EVT_BUTTON_CLICKPOS(win, id, func):
win.Connect(id, -1, myEVT_BUTTON_CLICKPOS, func)
class MyEvent(wxPyCommandEvent):
def __init__(self, evtType, id):
wxPyCommandEvent.__init__(self, evtType, id)
self.myVal = None
#def __del__(self):
# print '__del__'
# wxPyCommandEvent.__del__(self)
def SetMyVal(self, val):
self.myVal = val
def GetMyVal(self):
return self.myVal
class MyButton(wxButton):
def __init__(self, parent, id, txt, pos):
wxButton.__init__(self, parent, id, txt, pos)
EVT_LEFT_DOWN(self, self.OnLeftDown)
def OnLeftDown(self, event):
pt = event.GetPosition()
evt = MyEvent(myEVT_BUTTON_CLICKPOS, self.GetId())
evt.SetMyVal(pt)
#print id(evt), sys.getrefcount(evt)
self.GetEventHandler().ProcessEvent(evt)
#print id(evt), sys.getrefcount(evt)
event.Skip()
class TestPanel(wxPanel):
def __init__(self, parent, log):
wxPanel.__init__(self, parent, -1)
self.log = log
b = MyButton(self, -1, " Click me ", wxPoint(30,30))
EVT_BUTTON(self, b.GetId(), self.OnClick)
EVT_BUTTON_CLICKPOS(self, b.GetId(), self.OnMyEvent)
wxStaticText(self, -1, "Please see the Overview and Demo Code for details...",
wxPoint(30, 80))
def OnClick(self, event):
self.log.WriteText("OnClick\n")
def OnMyEvent(self, event):
#print id(event), sys.getrefcount(event)
self.log.WriteText("MyEvent: %s\n" % (event.GetMyVal(), ) )
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestPanel(nb, log)
return win
#----------------------------------------------------------------------
overview = """\
This demo is a contrived example of defining an event class in wxPython and sending it up the containment heirachy for processing.
"""

View File

@@ -1,7 +0,0 @@
To run the main demo in this directory, execute demo.py. In other
words, one of the following commands should do it:
demo.py
python demo.py
pythonw demo.py

View File

@@ -1,587 +0,0 @@
#----------------------------------------------------------------------
# sizer test code
#----------------------------------------------------------------------
from wxPython.wx import *
from wxPython.lib.grids import wxGridSizer, wxFlexGridSizer
#----------------------------------------------------------------------
def makeSimpleBox1(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 0, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox2(win):
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 0, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox3(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox4(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 1, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 1, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox5(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 3, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 1, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox6(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 1, wxALIGN_TOP)
box.Add(wxButton(win, 1010, "two"), 1, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 1, wxALIGN_CENTER)
box.Add(wxButton(win, 1010, "four"), 1, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxALIGN_BOTTOM)
return box
#----------------------------------------------------------------------
def makeSimpleBox7(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(60, 20, 0, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeSimpleBox8(win):
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(0,0, 1)
box.Add(wxButton(win, 1010, "two"), 0, wxALIGN_CENTER)
box.Add(0,0, 1)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 0, wxEXPAND)
# box.Add(wxButton(win, 1010, "five"), 1, wxEXPAND)
return box
#----------------------------------------------------------------------
#----------------------------------------------------------------------
def makeSimpleBorder1(win):
bdr = wxBoxSizer(wxHORIZONTAL)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 1, wxEXPAND|wxALL, 15)
return bdr
#----------------------------------------------------------------------
def makeSimpleBorder2(win):
bdr = wxBoxSizer(wxHORIZONTAL)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 1, wxEXPAND | wxEAST | wxWEST, 15)
return bdr
#----------------------------------------------------------------------
def makeSimpleBorder3(win):
bdr = wxBoxSizer(wxHORIZONTAL)
btn = wxButton(win, 1010, "border")
btn.SetSize(wxSize(80, 80))
bdr.Add(btn, 1, wxEXPAND | wxNORTH | wxWEST, 15)
return bdr
#----------------------------------------------------------------------
#----------------------------------------------------------------------
def makeBoxInBox(win):
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box2 = wxBoxSizer(wxHORIZONTAL)
box2.AddMany([ (wxButton(win, 1010, "two"), 0, wxEXPAND),
(wxButton(win, 1010, "three"), 0, wxEXPAND),
(wxButton(win, 1010, "four"), 0, wxEXPAND),
(wxButton(win, 1010, "five"), 0, wxEXPAND),
])
box3 = wxBoxSizer(wxVERTICAL)
box3.AddMany([ (wxButton(win, 1010, "six"), 0, wxEXPAND),
(wxButton(win, 1010, "seven"), 2, wxEXPAND),
(wxButton(win, 1010, "eight"), 1, wxEXPAND),
(wxButton(win, 1010, "nine"), 1, wxEXPAND),
])
box2.Add(box3, 1, wxEXPAND)
box.Add(box2, 1, wxEXPAND)
box.Add(wxButton(win, 1010, "ten"), 0, wxEXPAND)
return box
#----------------------------------------------------------------------
def makeBoxInBorder(win):
bdr = wxBoxSizer(wxHORIZONTAL)
box = makeSimpleBox3(win)
bdr.Add(box, 1, wxEXPAND | wxALL, 15)
return bdr
#----------------------------------------------------------------------
def makeBorderInBox(win):
insideBox = wxBoxSizer(wxHORIZONTAL)
box2 = wxBoxSizer(wxHORIZONTAL)
box2.AddMany([ (wxButton(win, 1010, "one"), 0, wxEXPAND),
(wxButton(win, 1010, "two"), 0, wxEXPAND),
(wxButton(win, 1010, "three"), 0, wxEXPAND),
(wxButton(win, 1010, "four"), 0, wxEXPAND),
(wxButton(win, 1010, "five"), 0, wxEXPAND),
])
insideBox.Add(box2, 0, wxEXPAND)
bdr = wxBoxSizer(wxHORIZONTAL)
bdr.Add(wxButton(win, 1010, "border"), 1, wxEXPAND | wxALL)
insideBox.Add(bdr, 1, wxEXPAND | wxALL, 20)
box3 = wxBoxSizer(wxVERTICAL)
box3.AddMany([ (wxButton(win, 1010, "six"), 0, wxEXPAND),
(wxButton(win, 1010, "seven"), 2, wxEXPAND),
(wxButton(win, 1010, "eight"), 1, wxEXPAND),
(wxButton(win, 1010, "nine"), 1, wxEXPAND),
])
insideBox.Add(box3, 1, wxEXPAND)
outsideBox = wxBoxSizer(wxVERTICAL)
outsideBox.Add(wxButton(win, 1010, "top"), 0, wxEXPAND)
outsideBox.Add(insideBox, 1, wxEXPAND)
outsideBox.Add(wxButton(win, 1010, "bottom"), 0, wxEXPAND)
return outsideBox
#----------------------------------------------------------------------
def makeGrid1(win):
gs = wxGridSizer(3, 3, 2, 2) # rows, cols, hgap, vgap
gs.AddMany([ (wxButton(win, 1010, 'one'), 0, wxEXPAND),
(wxButton(win, 1010, 'two'), 0, wxEXPAND),
(wxButton(win, 1010, 'three'), 0, wxEXPAND),
(wxButton(win, 1010, 'four'), 0, wxEXPAND),
(wxButton(win, 1010, 'five'), 0, wxEXPAND),
#(75, 50),
(wxButton(win, 1010, 'six'), 0, wxEXPAND),
(wxButton(win, 1010, 'seven'), 0, wxEXPAND),
(wxButton(win, 1010, 'eight'), 0, wxEXPAND),
(wxButton(win, 1010, 'nine'), 0, wxEXPAND),
])
return gs
#----------------------------------------------------------------------
def makeGrid2(win):
gs = wxGridSizer(3, 3) # rows, cols, hgap, vgap
box = wxBoxSizer(wxVERTICAL)
box.Add(wxButton(win, 1010, 'A'), 0, wxEXPAND)
box.Add(wxButton(win, 1010, 'B'), 1, wxEXPAND)
gs2 = wxGridSizer(2,2, 4, 4)
gs2.AddMany([ (wxButton(win, 1010, 'C'), 0, wxEXPAND),
(wxButton(win, 1010, 'E'), 0, wxEXPAND),
(wxButton(win, 1010, 'F'), 0, wxEXPAND),
(wxButton(win, 1010, 'G'), 0, wxEXPAND)])
gs.AddMany([ (wxButton(win, 1010, 'one'), 0, wxALIGN_RIGHT | wxALIGN_BOTTOM),
(wxButton(win, 1010, 'two'), 0, wxEXPAND),
(wxButton(win, 1010, 'three'), 0, wxALIGN_LEFT | wxALIGN_BOTTOM),
(wxButton(win, 1010, 'four'), 0, wxEXPAND),
(wxButton(win, 1010, 'five'), 0, wxALIGN_CENTER),
(wxButton(win, 1010, 'six'), 0, wxEXPAND),
(box, 0, wxEXPAND | wxALL, 10),
(wxButton(win, 1010, 'eight'), 0, wxEXPAND),
(gs2, 0, wxEXPAND | wxALL, 4),
])
return gs
#----------------------------------------------------------------------
def makeGrid3(win):
gs = wxFlexGridSizer(3, 3, 2, 2) # rows, cols, hgap, vgap
gs.AddMany([ (wxButton(win, 1010, 'one'), 0, wxEXPAND),
(wxButton(win, 1010, 'two'), 0, wxEXPAND),
(wxButton(win, 1010, 'three'), 0, wxEXPAND),
(wxButton(win, 1010, 'four'), 0, wxEXPAND),
#(wxButton(win, 1010, 'five'), 0, wxEXPAND),
(175, 50),
(wxButton(win, 1010, 'six'), 0, wxEXPAND),
(wxButton(win, 1010, 'seven'), 0, wxEXPAND),
(wxButton(win, 1010, 'eight'), 0, wxEXPAND),
(wxButton(win, 1010, 'nine'), 0, wxEXPAND),
])
gs.AddGrowableRow(0)
gs.AddGrowableRow(2)
gs.AddGrowableCol(1)
return gs
#----------------------------------------------------------------------
def makeGrid4(win):
bpos = wxDefaultPosition
bsize = wxSize(100, 50)
gs = wxGridSizer(3, 3, 2, 2) # rows, cols, hgap, vgap
gs.AddMany([ (wxButton(win, 1010, 'one', bpos, bsize),
0, wxALIGN_TOP | wxALIGN_LEFT ),
(wxButton(win, 1010, 'two', bpos, bsize),
0, wxALIGN_TOP | wxALIGN_CENTER_HORIZONTAL ),
(wxButton(win, 1010, 'three', bpos, bsize),
0, wxALIGN_TOP | wxALIGN_RIGHT ),
(wxButton(win, 1010, 'four', bpos, bsize),
0, wxALIGN_CENTER_VERTICAL | wxALIGN_LEFT ),
(wxButton(win, 1010, 'five', bpos, bsize),
0, wxALIGN_CENTER ),
(wxButton(win, 1010, 'six', bpos, bsize),
0, wxALIGN_CENTER_VERTICAL | wxALIGN_RIGHT ),
(wxButton(win, 1010, 'seven', bpos, bsize),
0, wxALIGN_BOTTOM | wxALIGN_LEFT ),
(wxButton(win, 1010, 'eight', bpos, bsize),
0, wxALIGN_BOTTOM | wxALIGN_CENTER_HORIZONTAL ),
(wxButton(win, 1010, 'nine', bpos, bsize),
0, wxALIGN_BOTTOM | wxALIGN_RIGHT ),
])
return gs
#----------------------------------------------------------------------
def makeShapes(win):
bpos = wxDefaultPosition
bsize = wxSize(100, 50)
gs = wxGridSizer(3, 3, 2, 2) # rows, cols, hgap, vgap
gs.AddMany([ (wxButton(win, 1010, 'one', bpos, bsize),
0, wxSHAPED | wxALIGN_TOP | wxALIGN_LEFT ),
(wxButton(win, 1010, 'two', bpos, bsize),
0, wxSHAPED | wxALIGN_TOP | wxALIGN_CENTER_HORIZONTAL ),
(wxButton(win, 1010, 'three', bpos, bsize),
0, wxSHAPED | wxALIGN_TOP | wxALIGN_RIGHT ),
(wxButton(win, 1010, 'four', bpos, bsize),
0, wxSHAPED | wxALIGN_CENTER_VERTICAL | wxALIGN_LEFT ),
(wxButton(win, 1010, 'five', bpos, bsize),
0, wxSHAPED | wxALIGN_CENTER ),
(wxButton(win, 1010, 'six', bpos, bsize),
0, wxSHAPED | wxALIGN_CENTER_VERTICAL | wxALIGN_RIGHT ),
(wxButton(win, 1010, 'seven', bpos, bsize),
0, wxSHAPED | wxALIGN_BOTTOM | wxALIGN_LEFT ),
(wxButton(win, 1010, 'eight', bpos, bsize),
0, wxSHAPED | wxALIGN_BOTTOM | wxALIGN_CENTER_HORIZONTAL ),
(wxButton(win, 1010, 'nine', bpos, bsize),
0, wxSHAPED | wxALIGN_BOTTOM | wxALIGN_RIGHT ),
])
return gs
#----------------------------------------------------------------------
def makeSimpleBoxShaped(win):
box = wxBoxSizer(wxHORIZONTAL)
box.Add(wxButton(win, 1010, "one"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "two"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "three"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "four"), 0, wxEXPAND)
box.Add(wxButton(win, 1010, "five"), 1, wxSHAPED)
return box
#----------------------------------------------------------------------
theTests = [
("Simple horizontal boxes", makeSimpleBox1,
"This is a HORIZONTAL box sizer with four non-stretchable buttons held "
"within it. Notice that the buttons are added and aligned in the horizontal "
"dimension. Also notice that they are fixed size in the horizontal dimension, "
"but will stretch vertically."
),
("Simple vertical boxes", makeSimpleBox2,
"Exactly the same as the previous sample but using a VERTICAL box sizer "
"instead of a HORIZONTAL one."
),
("Add a stretchable", makeSimpleBox3,
"We've added one more button with the strechable flag turned on. Notice "
"how it grows to fill the extra space in the otherwise fixed dimension."
),
("More than one stretchable", makeSimpleBox4,
"Here there are several items that are stretchable, they all divide up the "
"extra space evenly."
),
("Weighting factor", makeSimpleBox5,
"This one shows more than one strechable, but one of them has a weighting "
"factor so it gets more of the free space."
),
("Edge Affinity", makeSimpleBox6,
"For items that don't completly fill their allotted space, and don't "
"stretch, you can specify which side (or the center) they should stay "
"attached to."
),
("Spacer", makeSimpleBox7,
"You can add empty space to be managed by a Sizer just as if it were a "
"window or another Sizer."
),
("Centering in available space", makeSimpleBox8,
"This one shows an item that does not expand to fill it's space, but rather"
"stays centered within it."
),
# ("Percent Sizer", makeSimpleBox6,
# "You can use the wxBoxSizer like a Percent Sizer. Just make sure that all "
# "the weighting factors add up to 100!"
# ),
("", None, ""),
("Simple border sizer", makeSimpleBorder1,
"The wxBoxSizer can leave empty space around its contents. This one "
"gives a border all the way around."
),
("East and West border", makeSimpleBorder2,
"You can pick and choose which sides have borders."
),
("North and West border", makeSimpleBorder3,
"You can pick and choose which sides have borders."
),
("", None, ""),
("Boxes inside of boxes", makeBoxInBox,
"This one shows nesting of boxes within boxes within boxes, using both "
"orientations. Notice also that button seven has a greater weighting "
"factor than its siblings."
),
("Boxes inside a Border", makeBoxInBorder,
"Sizers of different types can be nested withing each other as well. "
"Here is a box sizer with several buttons embedded within a border sizer."
),
("Border in a Box", makeBorderInBox,
"Another nesting example. This one has Boxes and a Border inside another Box."
),
("", None, ""),
("Simple Grid", makeGrid1,
"This is an example of the wxGridSizer. In this case all row heights "
"and column widths are kept the same as all the others and all items "
"fill their available space. The horzontal and vertical gaps are set to "
"2 pixels each."
),
("More Grid Features", makeGrid2,
"This is another example of the wxGridSizer. This one has no gaps in the grid, "
"but various cells are given different alignment options and some of them "
"hold nested sizers."
),
("Flexible Grid", makeGrid3,
"This grid allows the rows to have different heights and the columns to have "
"different widths. You can also specify rows and columns that are growable, "
"which we have done for the first and last row and the middle column for "
"this example.\n"
"\nThere is also a spacer in the middle cell instead of an actual window."
),
("Grid with Alignment", makeGrid4,
"New alignment flags allow for the positioning of items in any corner or centered "
"position."
),
("", None, ""),
("Proportional resize", makeSimpleBoxShaped,
"Managed items can preserve their original aspect ratio. The last item has the "
"wxSHAPED flag set and will resize proportional to its origingal size."
),
("Proportional resize with Alignments", makeShapes,
"This one shows various alignments as well as proportional resizing for all items."
),
]
#----------------------------------------------------------------------
class TestFrame(wxFrame):
def __init__(self, parent, title, sizerFunc):
wxFrame.__init__(self, parent, -1, title)
EVT_BUTTON(self, 1010, self.OnButton)
self.sizer = sizerFunc(self)
self.CreateStatusBar()
self.SetStatusText("Resize this frame to see how the sizers respond...")
self.sizer.Fit(self)
self.SetAutoLayout(true)
self.SetSizer(self.sizer)
EVT_CLOSE(self, self.OnCloseWindow)
def OnCloseWindow(self, event):
self.MakeModal(false)
self.Destroy()
def OnButton(self, event):
self.Close(true)
#----------------------------------------------------------------------
class TestSelectionPanel(wxPanel):
def __init__(self, parent, frame):
wxPanel.__init__(self, parent, -1)
self.frame = frame
self.list = wxListBox(self, 401,
wxDLG_PNT(self, 10, 10), wxDLG_SZE(self, 100, 100),
[])
EVT_LISTBOX(self, 401, self.OnSelect)
EVT_LISTBOX_DCLICK(self, 401, self.OnDClick)
self.btn = wxButton(self, 402, "Try it!", wxDLG_PNT(self, 120, 10)).SetDefault()
EVT_BUTTON(self, 402, self.OnDClick)
self.text = wxTextCtrl(self, -1, "",
wxDLG_PNT(self, 10, 115),
wxDLG_SZE(self, 200, 50),
wxTE_MULTILINE | wxTE_READONLY)
for item in theTests:
self.list.Append(item[0])
def OnSelect(self, event):
pos = self.list.GetSelection()
self.text.SetValue(theTests[pos][2])
def OnDClick(self, event):
pos = self.list.GetSelection()
title = theTests[pos][0]
func = theTests[pos][1]
if func:
win = TestFrame(self, title, func)
win.CentreOnParent(wxBOTH)
win.Show(true)
win.MakeModal(true)
#----------------------------------------------------------------------
def runTest(frame, nb, log):
win = TestSelectionPanel(nb, frame)
return win
overview = ""
#wxSizer.__doc__ + '\n' + '-' * 80 + '\n' + \
#wxBoxSizer.__doc__ + '\n' + '-' * 80 + '\n' + \
#wxBorderSizer.__doc__
#----------------------------------------------------------------------
if __name__ == '__main__':
class MainFrame(wxFrame):
def __init__(self):
wxFrame.__init__(self, NULL, -1, "Testing...")
self.CreateStatusBar()
mainmenu = wxMenuBar()
menu = wxMenu()
menu.Append(200, 'E&xit', 'Get the heck outta here!')
mainmenu.Append(menu, "&File")
self.SetMenuBar(mainmenu)
EVT_MENU(self, 200, self.OnExit)
self.panel = TestSelectionPanel(self, self)
self.SetSize(wxSize(400, 380))
EVT_CLOSE(self, self.OnCloseWindow)
def OnCloseWindow(self, event):
self.Destroy()
def OnExit(self, event):
self.Close(true)
class TestApp(wxApp):
def OnInit(self):
frame = MainFrame()
frame.Show(true)
self.SetTopWindow(frame)
return true
app = TestApp(0)
app.MainLoop()
#----------------------------------------------------------------------

View File

@@ -1,379 +0,0 @@
#!/usr/bin/python
"""This is SlashDot 1.2
It's the obligatory Slashdot.org headlines reader that
any modern widget set/library must have in order to be taken
seriously :-)
Usage is quite simple; wxSlash attempts to download the
'ultramode.txt' file from http://slashdot.org, which
contains the headlines in a computer friendly format. It
then displays said headlines in a wxWindows list control.
You can read articles using either Python's html library
or an external browser. Uncheck the 'browser->internal' menu
item to use the latter option. Use the settings dialog box
to set which external browser is started.
This code is available under the wxWindows license, see
elsewhere. If you modify this code, be aware of the fact
that slashdot.org's maintainer, CmdrTaco, explicitly asks
'ultramode.txt' downloaders not to do this automatically
more than twice per hour. If this feature is abused,
CmdrTaco may remove the ultramode file completely and that
will make a *lot* of people unhappy.
I want to thank Alex Shnitman whose slashes.pl
(Perl/GTK) script gave me the idea for this applet.
Have fun with it,
Harm van der Heijden (H.v.d.Heijden@phys.tue.nl)
"""
from wxPython.wx import *
from httplib import HTTP
from htmllib import HTMLParser
import os
import re
import formatter
class HTMLTextView(wxFrame):
def __init__(self, parent, id, title='HTMLTextView', url=None):
wxFrame.__init__(self, parent, id, title, wxPyDefaultPosition,
wxSize(600,400))
EVT_CLOSE(self, self.OnCloseWindow)
self.mainmenu = wxMenuBar()
menu = wxMenu()
menu.Append(201, '&Open URL...', 'Open URL')
EVT_MENU(self, 201, self.OnFileOpen)
menu.Append(209, 'E&xit', 'Exit viewer')
EVT_MENU(self, 209, self.OnFileExit)
self.mainmenu.Append(menu, '&File')
self.SetMenuBar(self.mainmenu)
self.CreateStatusBar(1)
self.text = wxTextCtrl(self, -1, "", wxPyDefaultPosition,
wxPyDefaultSize, wxTE_MULTILINE | wxTE_READONLY)
if (url):
self.OpenURL(url)
def logprint(self, x):
self.SetStatusText(x)
def OpenURL(self, url):
self.url = url
m = re.match('file:(\S+)\s*', url)
if m:
f = open(m.groups()[0],'r')
else:
m = re.match('http://([^/]+)(/\S*)\s*', url)
if m:
host = m.groups()[0]
path = m.groups()[1]
else:
m = re.match('http://(\S+)\s*', url)
if not m:
# Invalid URL
self.logprint("Invalid or unsupported URL: %s" % (url))
return
host = m.groups()[0]
path = ''
f = RetrieveAsFile(host,path,self.logprint)
if not f:
self.logprint("Could not open %s" % (url))
return
self.logprint("Receiving data...")
data = f.read()
tmp = open('tmphtml.txt','w')
fmt = formatter.AbstractFormatter(formatter.DumbWriter(tmp))
p = HTMLParser(fmt)
self.logprint("Parsing data...")
p.feed(data)
p.close()
tmp.close()
tmp = open('tmphtml.txt', 'r')
self.text.SetValue(tmp.read())
self.SetTitle(url)
self.logprint(url)
def OnFileOpen(self, event):
dlg = wxTextEntryDialog(self, "Enter URL to open:", "")
if dlg.ShowModal() == wxID_OK:
url = dlg.GetValue()
else:
url = None
if url:
self.OpenURL(url)
def OnFileExit(self, event):
self.Close()
def OnCloseWindow(self, event):
self.Destroy()
def ParseSlashdot(f):
art_sep = re.compile('%%\r?\n')
line_sep = re.compile('\r?\n')
data = f.read()
list = art_sep.split(data)
art_list = []
for i in range(1,len(list)-1):
art_list.append(line_sep.split(list[i]))
return art_list
def myprint(x):
print x
def RetrieveAsFile(host, path='', logprint = myprint):
try:
h = HTTP(host)
except:
logprint("Failed to create HTTP connection to %s... is the network available?" % (host))
return None
h.putrequest('GET',path)
h.putheader('Accept','text/html')
h.putheader('Accept','text/plain')
h.endheaders()
errcode, errmsg, headers = h.getreply()
if errcode != 200:
logprint("HTTP error code %d: %s" % (errcode, errmsg))
return None
f = h.getfile()
# f = open('/home/harm/ultramode.txt','r')
return f
class AppStatusBar(wxStatusBar):
def __init__(self, parent):
wxStatusBar.__init__(self,parent, -1)
self.SetFieldsCount(2)
self.SetStatusWidths([-1, 100])
self.but = wxButton(self, 1001, "Refresh")
EVT_BUTTON(self, 1001, parent.OnViewRefresh)
EVT_SIZE(self, self.OnSize)
self.OnSize(None)
def logprint(self,x):
self.SetStatusText(x,0)
def OnSize(self, event):
rect = self.GetFieldRect(1)
self.but.SetPosition(wxPoint(rect.x+2, rect.y+2))
self.but.SetSize(wxSize(rect.width-4, rect.height-4))
# This is a simple timer class to start a function after a short delay;
class QuickTimer(wxTimer):
def __init__(self, func, wait=100):
wxTimer.__init__(self)
self.callback = func
self.Start(wait); # wait .1 second (.001 second doesn't work. why?)
def Notify(self):
self.Stop();
apply(self.callback, ());
class AppFrame(wxFrame):
def __init__(self, parent, id, title):
wxFrame.__init__(self, parent, id, title, wxPyDefaultPosition,
wxSize(650, 250))
# if the window manager closes the window:
EVT_CLOSE(self, self.OnCloseWindow);
# Now Create the menu bar and items
self.mainmenu = wxMenuBar()
menu = wxMenu()
menu.Append(209, 'E&xit', 'Enough of this already!')
EVT_MENU(self, 209, self.OnFileExit)
self.mainmenu.Append(menu, '&File')
menu = wxMenu()
menu.Append(210, '&Refresh', 'Refresh headlines')
EVT_MENU(self, 210, self.OnViewRefresh)
menu.Append(211, '&Slashdot Index', 'View Slashdot index')
EVT_MENU(self, 211, self.OnViewIndex)
menu.Append(212, 'Selected &Article', 'View selected article')
EVT_MENU(self, 212, self.OnViewArticle)
self.mainmenu.Append(menu, '&View')
menu = wxMenu()
menu.Append(220, '&Internal', 'Use internal text browser',TRUE)
menu.Check(220, true)
self.UseInternal = 1;
EVT_MENU(self, 220, self.OnBrowserInternal)
menu.Append(222, '&Settings...', 'External browser Settings')
EVT_MENU(self, 222, self.OnBrowserSettings)
self.mainmenu.Append(menu, '&Browser')
menu = wxMenu()
menu.Append(230, '&About', 'Some documentation');
EVT_MENU(self, 230, self.OnAbout)
self.mainmenu.Append(menu, '&Help')
self.SetMenuBar(self.mainmenu)
if wxPlatform == '__WXGTK__':
# I like lynx. Also Netscape 4.5 doesn't react to my cmdline opts
self.BrowserSettings = "xterm -e lynx %s &"
elif wxPlatform == '__WXMSW__':
# netscape 4.x likes to hang out here...
self.BrowserSettings = '\\progra~1\\Netscape\\Communicator\\Program\\netscape.exe %s'
else:
# a wild guess...
self.BrowserSettings = 'netscape %s'
# A status bar to tell people what's happening
self.sb = AppStatusBar(self)
self.SetStatusBar(self.sb)
self.list = wxListCtrl(self, 1100, style=wxLC_REPORT)
self.list.InsertColumn(0, 'Subject')
self.list.InsertColumn(1, 'Date')
self.list.InsertColumn(2, 'Posted by')
self.list.InsertColumn(3, 'Comments')
self.list.SetColumnWidth(0, 300)
self.list.SetColumnWidth(1, 150)
self.list.SetColumnWidth(2, 100)
self.list.SetColumnWidth(3, 100)
EVT_LIST_ITEM_SELECTED(self, 1100, self.OnItemSelected)
EVT_LEFT_DCLICK(self.list, self.OnLeftDClick)
self.logprint("Connecting to slashdot... Please wait.")
# wxYield doesn't yet work here. That's why we use a timer
# to make sure that we see some GUI stuff before the slashdot
# file is transfered.
self.timer = QuickTimer(self.DoRefresh, 1000)
def logprint(self, x):
self.sb.logprint(x)
def OnFileExit(self, event):
self.Destroy()
def DoRefresh(self):
f = RetrieveAsFile('slashdot.org','/ultramode.txt',self.sb.logprint)
art_list = ParseSlashdot(f)
self.list.DeleteAllItems()
self.url = []
self.current = -1
i = 0;
for article in art_list:
self.list.InsertStringItem(i, article[0])
self.list.SetStringItem(i, 1, article[2])
self.list.SetStringItem(i, 2, article[3])
self.list.SetStringItem(i, 3, article[6])
self.url.append(article[1])
i = i + 1
self.logprint("File retrieved OK.")
def OnViewRefresh(self, event):
self.logprint("Connecting to slashdot... Please wait.");
wxYield()
self.DoRefresh()
def DoViewIndex(self):
if self.UseInternal:
self.view = HTMLTextView(self, -1, 'slashdot.org',
'http://slashdot.org')
self.view.Show(true)
else:
self.logprint(self.BrowserSettings % ('http://slashdot.org'))
#os.system(self.BrowserSettings % ('http://slashdot.org'))
wxExecute(self.BrowserSettings % ('http://slashdot.org'))
self.logprint("OK")
def OnViewIndex(self, event):
self.logprint("Starting browser... Please wait.")
wxYield()
self.DoViewIndex()
def DoViewArticle(self):
if self.current<0: return
url = self.url[self.current]
if self.UseInternal:
self.view = HTMLTextView(self, -1, url, url)
self.view.Show(true)
else:
self.logprint(self.BrowserSettings % (url))
os.system(self.BrowserSettings % (url))
self.logprint("OK")
def OnViewArticle(self, event):
self.logprint("Starting browser... Please wait.")
wxYield()
self.DoViewArticle()
def OnBrowserInternal(self, event):
if self.mainmenu.Checked(220):
self.UseInternal = 1
else:
self.UseInternal = 0
def OnBrowserSettings(self, event):
dlg = wxTextEntryDialog(self, "Enter command to view URL.\nUse %s as a placeholder for the URL.", "", self.BrowserSettings);
if dlg.ShowModal() == wxID_OK:
self.BrowserSettings = dlg.GetValue()
def OnAbout(self, event):
dlg = wxMessageDialog(self, __doc__, "wxSlash", wxOK | wxICON_INFORMATION)
dlg.ShowModal()
def OnItemSelected(self, event):
self.current = event.m_itemIndex
self.logprint("URL: %s" % (self.url[self.current]))
def OnLeftDClick(self, event):
(x,y) = event.Position();
# Actually, we should convert x,y to logical coords using
# a dc, but only for a wxScrolledWindow widget.
# Now wxGTK derives wxListCtrl from wxScrolledWindow,
# and wxMSW from wxControl... So that doesn't work.
#dc = wxClientDC(self.list)
##self.list.PrepareDC(dc)
#x = dc.DeviceToLogicalX( event.GetX() )
#y = dc.DeviceToLogicalY( event.GetY() )
id = self.list.HitTest(wxPoint(x,y))
#print "Double click at %d %d" % (x,y), id
# Okay, we got a double click. Let's assume it's the current selection
wxYield()
self.OnViewArticle(event)
def OnCloseWindow(self, event):
self.Destroy()
#---------------------------------------------------------------------------
# if running standalone
if __name__ == '__main__':
class MyApp(wxApp):
def OnInit(self):
frame = AppFrame(NULL, -1, "Slashdot Breaking News")
frame.Show(true)
self.SetTopWindow(frame)
return true
app = MyApp(0)
app.MainLoop()
#---------------------------------------------------------------------------
# if running as part of the Demo Framework...
def runTest(frame, nb, log):
win = AppFrame(NULL, -1, "Slashdot Breaking News")
frame.otherWin = win
win.Show(true)
overview = __doc__
#----------------------------------------------------------------------------

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