chordii-4.3+repack/0000755000175000017500000000000011364053576015334 5ustar gideonstargideonstarchordii-4.3+repack/install-sh0000755000175000017500000003253711214147232017335 0ustar gideonstargideonstar#!/bin/sh # install - install a program, script, or datafile scriptversion=2009-04-28.21; # UTC # This originates from X11R5 (mit/util/scripts/install.sh), which was # later released in X11R6 (xc/config/util/install.sh) with the # following copyright and license. # # Copyright (C) 1994 X Consortium # # Permission is hereby granted, free of charge, to any person obtaining a copy # of this software and associated documentation files (the "Software"), to # deal in the Software without restriction, including without limitation the # rights to use, copy, modify, merge, publish, distribute, sublicense, and/or # sell copies of the Software, and to permit persons to whom the Software is # furnished to do so, subject to the following conditions: # # The above copyright notice and this permission notice shall be included in # all copies or substantial portions of the Software. # # THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR # IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, # FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE # X CONSORTIUM BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN # AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNEC- # TION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. # # Except as contained in this notice, the name of the X Consortium shall not # be used in advertising or otherwise to promote the sale, use or other deal- # ings in this Software without prior written authorization from the X Consor- # tium. # # # FSF changes to this file are in the public domain. # # Calling this script install-sh is preferred over install.sh, to prevent # `make' implicit rules from creating a file called install from it # when there is no Makefile. # # This script is compatible with the BSD install script, but was written # from scratch. nl=' ' IFS=" "" $nl" # set DOITPROG to echo to test this script # Don't use :- since 4.3BSD and earlier shells don't like it. doit=${DOITPROG-} if test -z "$doit"; then doit_exec=exec else doit_exec=$doit fi # Put in absolute file names if you don't have them in your path; # or use environment vars. chgrpprog=${CHGRPPROG-chgrp} chmodprog=${CHMODPROG-chmod} chownprog=${CHOWNPROG-chown} cmpprog=${CMPPROG-cmp} cpprog=${CPPROG-cp} mkdirprog=${MKDIRPROG-mkdir} mvprog=${MVPROG-mv} rmprog=${RMPROG-rm} stripprog=${STRIPPROG-strip} posix_glob='?' initialize_posix_glob=' test "$posix_glob" != "?" || { if (set -f) 2>/dev/null; then posix_glob= else posix_glob=: fi } ' posix_mkdir= # Desired mode of installed file. mode=0755 chgrpcmd= chmodcmd=$chmodprog chowncmd= mvcmd=$mvprog rmcmd="$rmprog -f" stripcmd= src= dst= dir_arg= dst_arg= copy_on_change=false no_target_directory= usage="\ Usage: $0 [OPTION]... [-T] SRCFILE DSTFILE or: $0 [OPTION]... SRCFILES... DIRECTORY or: $0 [OPTION]... -t DIRECTORY SRCFILES... or: $0 [OPTION]... -d DIRECTORIES... In the 1st form, copy SRCFILE to DSTFILE. In the 2nd and 3rd, copy all SRCFILES to DIRECTORY. In the 4th, create DIRECTORIES. Options: --help display this help and exit. --version display version info and exit. -c (ignored) -C install only if different (preserve the last data modification time) -d create directories instead of installing files. -g GROUP $chgrpprog installed files to GROUP. -m MODE $chmodprog installed files to MODE. -o USER $chownprog installed files to USER. -s $stripprog installed files. -t DIRECTORY install into DIRECTORY. -T report an error if DSTFILE is a directory. Environment variables override the default commands: CHGRPPROG CHMODPROG CHOWNPROG CMPPROG CPPROG MKDIRPROG MVPROG RMPROG STRIPPROG " while test $# -ne 0; do case $1 in -c) ;; -C) copy_on_change=true;; -d) dir_arg=true;; -g) chgrpcmd="$chgrpprog $2" shift;; --help) echo "$usage"; exit $?;; -m) mode=$2 case $mode in *' '* | *' '* | *' '* | *'*'* | *'?'* | *'['*) echo "$0: invalid mode: $mode" >&2 exit 1;; esac shift;; -o) chowncmd="$chownprog $2" shift;; -s) stripcmd=$stripprog;; -t) dst_arg=$2 shift;; -T) no_target_directory=true;; --version) echo "$0 $scriptversion"; exit $?;; --) shift break;; -*) echo "$0: invalid option: $1" >&2 exit 1;; *) break;; esac shift done if test $# -ne 0 && test -z "$dir_arg$dst_arg"; then # When -d is used, all remaining arguments are directories to create. # When -t is used, the destination is already specified. # Otherwise, the last argument is the destination. 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Create the # directory the slow way, step by step, checking for races as we go. case $dstdir in /*) prefix='/';; -*) prefix='./';; *) prefix='';; esac eval "$initialize_posix_glob" oIFS=$IFS IFS=/ $posix_glob set -f set fnord $dstdir shift $posix_glob set +f IFS=$oIFS prefixes= for d do test -z "$d" && continue prefix=$prefix$d if test -d "$prefix"; then prefixes= else if $posix_mkdir; then (umask=$mkdir_umask && $doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir") && break # Don't fail if two instances are running concurrently. test -d "$prefix" || exit 1 else case $prefix in *\'*) qprefix=`echo "$prefix" | sed "s/'/'\\\\\\\\''/g"`;; *) qprefix=$prefix;; esac prefixes="$prefixes '$qprefix'" fi fi prefix=$prefix/ done if test -n "$prefixes"; then # Don't fail if two instances are running concurrently. (umask $mkdir_umask && eval "\$doit_exec \$mkdirprog $prefixes") || test -d "$dstdir" || exit 1 obsolete_mkdir_used=true fi fi fi if test -n "$dir_arg"; then { test -z "$chowncmd" || $doit $chowncmd "$dst"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dst"; } && { test "$obsolete_mkdir_used$chowncmd$chgrpcmd" = false || test -z "$chmodcmd" || $doit $chmodcmd $mode "$dst"; } || exit 1 else # Make a couple of temp file names in the proper directory. dsttmp=$dstdir/_inst.$$_ rmtmp=$dstdir/_rm.$$_ # Trap to clean up those temp files at exit. trap 'ret=$?; rm -f "$dsttmp" "$rmtmp" && exit $ret' 0 # Copy the file name to the temp name. (umask $cp_umask && $doit_exec $cpprog "$src" "$dsttmp") && # and set any options; do chmod last to preserve setuid bits. # # If any of these fail, we abort the whole thing. If we want to # ignore errors from any of these, just make sure not to ignore # errors from the above "$doit $cpprog $src $dsttmp" command. # { test -z "$chowncmd" || $doit $chowncmd "$dsttmp"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dsttmp"; } && { test -z "$stripcmd" || $doit $stripcmd "$dsttmp"; } && { test -z "$chmodcmd" || $doit $chmodcmd $mode "$dsttmp"; } && # If -C, don't bother to copy if it wouldn't change the file. if $copy_on_change && old=`LC_ALL=C ls -dlL "$dst" 2>/dev/null` && new=`LC_ALL=C ls -dlL "$dsttmp" 2>/dev/null` && eval "$initialize_posix_glob" && $posix_glob set -f && set X $old && old=:$2:$4:$5:$6 && set X $new && new=:$2:$4:$5:$6 && $posix_glob set +f && test "$old" = "$new" && $cmpprog "$dst" "$dsttmp" >/dev/null 2>&1 then rm -f "$dsttmp" else # Rename the file to the real destination. $doit $mvcmd -f "$dsttmp" "$dst" 2>/dev/null || # The rename failed, perhaps because mv can't rename something else # to itself, or perhaps because mv is so ancient that it does not # support -f. { # Now remove or move aside any old file at destination location. # We try this two ways since rm can't unlink itself on some # systems and the destination file might be busy for other # reasons. In this case, the final cleanup might fail but the new # file should still install successfully. { test ! -f "$dst" || $doit $rmcmd -f "$dst" 2>/dev/null || { $doit $mvcmd -f "$dst" "$rmtmp" 2>/dev/null && { $doit $rmcmd -f "$rmtmp" 2>/dev/null; :; } } || { echo "$0: cannot unlink or rename $dst" >&2 (exit 1); exit 1 } } && # Now rename the file to the real destination. $doit $mvcmd "$dsttmp" "$dst" } fi || exit 1 trap '' 0 fi done # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "scriptversion=" # time-stamp-format: "%:y-%02m-%02d.%02H" # time-stamp-time-zone: "UTC" # time-stamp-end: "; # UTC" # End: chordii-4.3+repack/windows/0000755000175000017500000000000011316731016017013 5ustar gideonstargideonstarchordii-4.3+repack/windows/makefile0000644000175000017500000000107111316715175020522 0ustar gideonstargideonstar#! nmake -f makefile CHORDII_OBJS=chordii.obj \ common.obj \ xpose.obj \ iso.obj \ grid.obj \ getopt.obj \ toc.obj A2CRD_OBJS=a2crd.obj \ common.obj \ getopt.obj CFLAGS = /nologo /DHAVE_CONFIG_H /I. /I..\src all :: chordii.exe a2crd.exe chordii.exe :: $(CHORDII_OBJS) $(CC) $(CFLAGS) -o chordii.exe $(CHORDII_OBJS) a2crd.exe :: $(A2CRD_OBJS) $(CC) $(CFLAGS) -o a2crd.exe $(A2CRD_OBJS) {..\src}.c.obj : $(CC) $(CFLAGS) -c $< getopt.obj :: getopt.h getopt.c $(CC) $(CFLAGS) -c getopt.c clean :: del *.obj del *.exe chordii-4.3+repack/windows/config.h.in0000644000175000017500000000516011316715175021050 0ustar gideonstargideonstar/* src/config.h. CHORDII config.h for Microsoft Windows. */ /* Define to one of `_getb67', `GETB67', `getb67' for Cray-2 and Cray-YMP systems. This function is required for `alloca.c' support on those systems. */ /* #undef CRAY_STACKSEG_END */ /* Define to 1 if using `alloca.c'. */ /* #undef C_ALLOCA */ /* Define to 1 if you have `alloca', as a function or macro. */ #undef HAVE_ALLOCA /* Define to 1 if you have and it should be used (not on Ultrix). */ #undef HAVE_ALLOCA_H /* Define to 1 if you have the header file. */ #define HAVE_INTTYPES_H 1 /* Define to 1 if you have the header file. */ #define HAVE_MEMORY_H 1 /* Define to 1 if you have the header file. */ #define HAVE_STDINT_H 1 /* Define to 1 if you have the header file. */ #define HAVE_STDLIB_H 1 /* Define to 1 if you have the `strdup' function. */ #define HAVE_STRDUP 1 /* Define to 1 if you have the header file. */ #undef HAVE_STRINGS_H /* Define to 1 if you have the header file. */ #define HAVE_STRING_H 1 /* Define to 1 if you have the header file. */ #define HAVE_SYS_STAT_H 1 /* Define to 1 if you have the header file. */ #define HAVE_SYS_TYPES_H 1 /* Define to 1 if you have the header file. */ #undef HAVE_UNISTD_H /* Name of package */ #define PACKAGE "@PACKAGE@" /* Define to the address where bug reports for this package should be sent. */ #define PACKAGE_BUGREPORT "@PACKAGE_BUGREPORT@" /* Define to the full name of this package. */ #define PACKAGE_NAME "@PACKAGE_NAME@" /* Define to the full name and version of this package. */ #define PACKAGE_STRING "@PACKAGE_STRING@" /* Define to the one symbol short name of this package. */ #define PACKAGE_TARNAME "@PACKAGE_TARNAME@" /* Define to the version of this package. */ #define PACKAGE_VERSION "@PACKAGE_VERSION@" /* Define to the minor version (aka patch level) of this package. */ #define PATCH_LEVEL "@PATCH_LEVEL@" /* If using the C implementation of alloca, define if you know the direction of stack growth for your system; otherwise it will be automatically deduced at runtime. STACK_DIRECTION > 0 => grows toward higher addresses STACK_DIRECTION < 0 => grows toward lower addresses STACK_DIRECTION = 0 => direction of growth unknown */ /* #undef STACK_DIRECTION */ /* Define to 1 if you have the ANSI C header files. */ #define STDC_HEADERS 1 /* Version number of package */ #define VERSION "@VERSION@" /* Define to empty if `const' does not conform to ANSI C. */ /* #undef const */ chordii-4.3+repack/windows/config.h0000644000175000017500000000510311316726766020450 0ustar gideonstargideonstar/* src/config.h. CHORDII config.h for Microsoft Windows. */ /* Define to one of `_getb67', `GETB67', `getb67' for Cray-2 and Cray-YMP systems. This function is required for `alloca.c' support on those systems. */ /* #undef CRAY_STACKSEG_END */ /* Define to 1 if using `alloca.c'. */ /* #undef C_ALLOCA */ /* Define to 1 if you have `alloca', as a function or macro. */ #undef HAVE_ALLOCA /* Define to 1 if you have and it should be used (not on Ultrix). */ #undef HAVE_ALLOCA_H /* Define to 1 if you have the header file. */ #define HAVE_INTTYPES_H 1 /* Define to 1 if you have the header file. */ #define HAVE_MEMORY_H 1 /* Define to 1 if you have the header file. */ #define HAVE_STDINT_H 1 /* Define to 1 if you have the header file. */ #define HAVE_STDLIB_H 1 /* Define to 1 if you have the `strdup' function. */ #define HAVE_STRDUP 1 /* Define to 1 if you have the header file. */ #undef HAVE_STRINGS_H /* Define to 1 if you have the header file. */ #define HAVE_STRING_H 1 /* Define to 1 if you have the header file. */ #define HAVE_SYS_STAT_H 1 /* Define to 1 if you have the header file. */ #define HAVE_SYS_TYPES_H 1 /* Define to 1 if you have the header file. */ #undef HAVE_UNISTD_H /* Name of package */ #define PACKAGE "chordii" /* Define to the address where bug reports for this package should be sent. */ #define PACKAGE_BUGREPORT "jvromans@users.sourceforge.net" /* Define to the full name of this package. */ #define PACKAGE_NAME "Chordii" /* Define to the full name and version of this package. */ #define PACKAGE_STRING "Chordii 4.3" /* Define to the one symbol short name of this package. */ #define PACKAGE_TARNAME "chordii" /* Define to the version of this package. */ #define PACKAGE_VERSION "4.3" /* Define to the minor version (aka patch level) of this package. */ #define PATCH_LEVEL "0" /* If using the C implementation of alloca, define if you know the direction of stack growth for your system; otherwise it will be automatically deduced at runtime. STACK_DIRECTION > 0 => grows toward higher addresses STACK_DIRECTION < 0 => grows toward lower addresses STACK_DIRECTION = 0 => direction of growth unknown */ /* #undef STACK_DIRECTION */ /* Define to 1 if you have the ANSI C header files. */ #define STDC_HEADERS 1 /* Version number of package */ #define VERSION "4.3" /* Define to empty if `const' does not conform to ANSI C. */ /* #undef const */ chordii-4.3+repack/windows/getopt.c0000644000175000017500000011652711316715175020505 0ustar gideonstargideonstar/* Getopt for GNU. NOTE: getopt is now part of the C library, so if you don't know what "Keep this file name-space clean" means, talk to drepper@gnu.org before changing it! Copyright (C) 1987,88,89,90,91,92,93,94,95,96,98,99,2000,2001 Free Software Foundation, Inc. This file is part of the GNU C Library. The GNU C Library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. The GNU C Library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with the GNU C Library; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA. */ /* This tells Alpha OSF/1 not to define a getopt prototype in . Ditto for AIX 3.2 and . */ #ifndef _NO_PROTO # define _NO_PROTO #endif #ifdef HAVE_CONFIG_H # include #endif #if !defined __STDC__ || !__STDC__ /* This is a separate conditional since some stdc systems reject `defined (const)'. */ # ifndef const # define const # endif #endif #include /* Comment out all this code if we are using the GNU C Library, and are not actually compiling the library itself. This code is part of the GNU C Library, but also included in many other GNU distributions. Compiling and linking in this code is a waste when using the GNU C library (especially if it is a shared library). Rather than having every GNU program understand `configure --with-gnu-libc' and omit the object files, it is simpler to just do this in the source for each such file. */ #define GETOPT_INTERFACE_VERSION 2 #if !defined _LIBC && defined __GLIBC__ && __GLIBC__ >= 2 # include # if _GNU_GETOPT_INTERFACE_VERSION == GETOPT_INTERFACE_VERSION # define ELIDE_CODE # endif #endif #ifndef ELIDE_CODE /* This needs to come after some library #include to get __GNU_LIBRARY__ defined. */ #ifdef __GNU_LIBRARY__ /* Don't include stdlib.h for non-GNU C libraries because some of them contain conflicting prototypes for getopt. */ # include # include #endif /* GNU C library. */ #ifdef VMS # include # if HAVE_STRING_H - 0 # include # endif #endif #ifndef _ /* This is for other GNU distributions with internationalized messages. */ # if (HAVE_LIBINTL_H && ENABLE_NLS) || defined _LIBC # include # ifndef _ # define _(msgid) gettext (msgid) # endif # else # define _(msgid) (msgid) # endif # if defined _LIBC && defined USE_IN_LIBIO # include # endif #endif /* This version of `getopt' appears to the caller like standard Unix `getopt' but it behaves differently for the user, since it allows the user to intersperse the options with the other arguments. As `getopt' works, it permutes the elements of ARGV so that, when it is done, all the options precede everything else. Thus all application programs are extended to handle flexible argument order. Setting the environment variable POSIXLY_CORRECT disables permutation. Then the behavior is completely standard. GNU application programs can use a third alternative mode in which they can distinguish the relative order of options and other arguments. */ #include "getopt.h" /* For communication from `getopt' to the caller. When `getopt' finds an option that takes an argument, the argument value is returned here. Also, when `ordering' is RETURN_IN_ORDER, each non-option ARGV-element is returned here. */ char *optarg; /* Index in ARGV of the next element to be scanned. This is used for communication to and from the caller and for communication between successive calls to `getopt'. On entry to `getopt', zero means this is the first call; initialize. When `getopt' returns -1, this is the index of the first of the non-option elements that the caller should itself scan. Otherwise, `optind' communicates from one call to the next how much of ARGV has been scanned so far. */ /* 1003.2 says this must be 1 before any call. */ int optind = 1; /* Formerly, initialization of getopt depended on optind==0, which causes problems with re-calling getopt as programs generally don't know that. */ int __getopt_initialized; /* The next char to be scanned in the option-element in which the last option character we returned was found. This allows us to pick up the scan where we left off. If this is zero, or a null string, it means resume the scan by advancing to the next ARGV-element. */ static char *nextchar; /* Callers store zero here to inhibit the error message for unrecognized options. */ int opterr = 1; /* Set to an option character which was unrecognized. This must be initialized on some systems to avoid linking in the system's own getopt implementation. */ int optopt = '?'; /* Describe how to deal with options that follow non-option ARGV-elements. If the caller did not specify anything, the default is REQUIRE_ORDER if the environment variable POSIXLY_CORRECT is defined, PERMUTE otherwise. REQUIRE_ORDER means don't recognize them as options; stop option processing when the first non-option is seen. This is what Unix does. This mode of operation is selected by either setting the environment variable POSIXLY_CORRECT, or using `+' as the first character of the list of option characters. PERMUTE is the default. We permute the contents of ARGV as we scan, so that eventually all the non-options are at the end. This allows options to be given in any order, even with programs that were not written to expect this. RETURN_IN_ORDER is an option available to programs that were written to expect options and other ARGV-elements in any order and that care about the ordering of the two. We describe each non-option ARGV-element as if it were the argument of an option with character code 1. Using `-' as the first character of the list of option characters selects this mode of operation. The special argument `--' forces an end of option-scanning regardless of the value of `ordering'. In the case of RETURN_IN_ORDER, only `--' can cause `getopt' to return -1 with `optind' != ARGC. */ static enum { REQUIRE_ORDER, PERMUTE, RETURN_IN_ORDER } ordering; /* Value of POSIXLY_CORRECT environment variable. */ static char *posixly_correct; #ifdef __GNU_LIBRARY__ /* We want to avoid inclusion of string.h with non-GNU libraries because there are many ways it can cause trouble. On some systems, it contains special magic macros that don't work in GCC. */ # include # define my_index strchr #else # if HAVE_STRING_H || WIN32 /* Pete Wilson mod 7/28/02 */ # include # else # include # endif /* Avoid depending on library functions or files whose names are inconsistent. */ #ifndef getenv extern char *getenv (); #endif static char * my_index (str, chr) const char *str; int chr; { while (*str) { if (*str == chr) return (char *) str; str++; } return 0; } /* If using GCC, we can safely declare strlen this way. If not using GCC, it is ok not to declare it. */ #ifdef __GNUC__ /* Note that Motorola Delta 68k R3V7 comes with GCC but not stddef.h. That was relevant to code that was here before. */ # if (!defined __STDC__ || !__STDC__) && !defined strlen /* gcc with -traditional declares the built-in strlen to return int, and has done so at least since version 2.4.5. -- rms. */ extern int strlen (const char *); # endif /* not __STDC__ */ #endif /* __GNUC__ */ #endif /* not __GNU_LIBRARY__ */ /* Handle permutation of arguments. */ /* Describe the part of ARGV that contains non-options that have been skipped. `first_nonopt' is the index in ARGV of the first of them; `last_nonopt' is the index after the last of them. */ static int first_nonopt; static int last_nonopt; #ifdef _LIBC /* Stored original parameters. XXX This is no good solution. We should rather copy the args so that we can compare them later. But we must not use malloc(3). */ extern int __libc_argc; extern char **__libc_argv; /* Bash 2.0 gives us an environment variable containing flags indicating ARGV elements that should not be considered arguments. */ # ifdef USE_NONOPTION_FLAGS /* Defined in getopt_init.c */ extern char *__getopt_nonoption_flags; static int nonoption_flags_max_len; static int nonoption_flags_len; # endif # ifdef USE_NONOPTION_FLAGS # define SWAP_FLAGS(ch1, ch2) \ if (nonoption_flags_len > 0) \ { \ char __tmp = __getopt_nonoption_flags[ch1]; \ __getopt_nonoption_flags[ch1] = __getopt_nonoption_flags[ch2]; \ __getopt_nonoption_flags[ch2] = __tmp; \ } # else # define SWAP_FLAGS(ch1, ch2) # endif #else /* !_LIBC */ # define SWAP_FLAGS(ch1, ch2) #endif /* _LIBC */ /* Exchange two adjacent subsequences of ARGV. One subsequence is elements [first_nonopt,last_nonopt) which contains all the non-options that have been skipped so far. The other is elements [last_nonopt,optind), which contains all the options processed since those non-options were skipped. `first_nonopt' and `last_nonopt' are relocated so that they describe the new indices of the non-options in ARGV after they are moved. */ #if defined __STDC__ && __STDC__ static void exchange (char **); #endif static void exchange (argv) char **argv; { int bottom = first_nonopt; int middle = last_nonopt; int top = optind; char *tem; /* Exchange the shorter segment with the far end of the longer segment. That puts the shorter segment into the right place. It leaves the longer segment in the right place overall, but it consists of two parts that need to be swapped next. */ #if defined _LIBC && defined USE_NONOPTION_FLAGS /* First make sure the handling of the `__getopt_nonoption_flags' string can work normally. Our top argument must be in the range of the string. */ if (nonoption_flags_len > 0 && top >= nonoption_flags_max_len) { /* We must extend the array. The user plays games with us and presents new arguments. */ char *new_str = malloc (top + 1); if (new_str == NULL) nonoption_flags_len = nonoption_flags_max_len = 0; else { memset (__mempcpy (new_str, __getopt_nonoption_flags, nonoption_flags_max_len), '\0', top + 1 - nonoption_flags_max_len); nonoption_flags_max_len = top + 1; __getopt_nonoption_flags = new_str; } } #endif while (top > middle && middle > bottom) { if (top - middle > middle - bottom) { /* Bottom segment is the short one. */ int len = middle - bottom; register int i; /* Swap it with the top part of the top segment. */ for (i = 0; i < len; i++) { tem = argv[bottom + i]; argv[bottom + i] = argv[top - (middle - bottom) + i]; argv[top - (middle - bottom) + i] = tem; SWAP_FLAGS (bottom + i, top - (middle - bottom) + i); } /* Exclude the moved bottom segment from further swapping. */ top -= len; } else { /* Top segment is the short one. */ int len = top - middle; register int i; /* Swap it with the bottom part of the bottom segment. */ for (i = 0; i < len; i++) { tem = argv[bottom + i]; argv[bottom + i] = argv[middle + i]; argv[middle + i] = tem; SWAP_FLAGS (bottom + i, middle + i); } /* Exclude the moved top segment from further swapping. */ bottom += len; } } /* Update records for the slots the non-options now occupy. */ first_nonopt += (optind - last_nonopt); last_nonopt = optind; } /* Initialize the internal data when the first call is made. */ #if defined __STDC__ && __STDC__ static const char *_getopt_initialize (int, char *const *, const char *); #endif static const char * _getopt_initialize (argc, argv, optstring) int argc; char *const *argv; const char *optstring; { /* Start processing options with ARGV-element 1 (since ARGV-element 0 is the program name); the sequence of previously skipped non-option ARGV-elements is empty. */ first_nonopt = last_nonopt = optind; nextchar = NULL; posixly_correct = getenv ("POSIXLY_CORRECT"); /* Determine how to handle the ordering of options and nonoptions. */ if (optstring[0] == '-') { ordering = RETURN_IN_ORDER; ++optstring; } else if (optstring[0] == '+') { ordering = REQUIRE_ORDER; ++optstring; } else if (posixly_correct != NULL) ordering = REQUIRE_ORDER; else ordering = PERMUTE; #if defined _LIBC && defined USE_NONOPTION_FLAGS if (posixly_correct == NULL && argc == __libc_argc && argv == __libc_argv) { if (nonoption_flags_max_len == 0) { if (__getopt_nonoption_flags == NULL || __getopt_nonoption_flags[0] == '\0') nonoption_flags_max_len = -1; else { const char *orig_str = __getopt_nonoption_flags; int len = nonoption_flags_max_len = strlen (orig_str); if (nonoption_flags_max_len < argc) nonoption_flags_max_len = argc; __getopt_nonoption_flags = (char *) malloc (nonoption_flags_max_len); if (__getopt_nonoption_flags == NULL) nonoption_flags_max_len = -1; else memset (__mempcpy (__getopt_nonoption_flags, orig_str, len), '\0', nonoption_flags_max_len - len); } } nonoption_flags_len = nonoption_flags_max_len; } else nonoption_flags_len = 0; #endif return optstring; } /* Scan elements of ARGV (whose length is ARGC) for option characters given in OPTSTRING. If an element of ARGV starts with '-', and is not exactly "-" or "--", then it is an option element. The characters of this element (aside from the initial '-') are option characters. If `getopt' is called repeatedly, it returns successively each of the option characters from each of the option elements. If `getopt' finds another option character, it returns that character, updating `optind' and `nextchar' so that the next call to `getopt' can resume the scan with the following option character or ARGV-element. If there are no more option characters, `getopt' returns -1. Then `optind' is the index in ARGV of the first ARGV-element that is not an option. (The ARGV-elements have been permuted so that those that are not options now come last.) OPTSTRING is a string containing the legitimate option characters. If an option character is seen that is not listed in OPTSTRING, return '?' after printing an error message. If you set `opterr' to zero, the error message is suppressed but we still return '?'. If a char in OPTSTRING is followed by a colon, that means it wants an arg, so the following text in the same ARGV-element, or the text of the following ARGV-element, is returned in `optarg'. Two colons mean an option that wants an optional arg; if there is text in the current ARGV-element, it is returned in `optarg', otherwise `optarg' is set to zero. If OPTSTRING starts with `-' or `+', it requests different methods of handling the non-option ARGV-elements. See the comments about RETURN_IN_ORDER and REQUIRE_ORDER, above. Long-named options begin with `--' instead of `-'. Their names may be abbreviated as long as the abbreviation is unique or is an exact match for some defined option. If they have an argument, it follows the option name in the same ARGV-element, separated from the option name by a `=', or else the in next ARGV-element. When `getopt' finds a long-named option, it returns 0 if that option's `flag' field is nonzero, the value of the option's `val' field if the `flag' field is zero. The elements of ARGV aren't really const, because we permute them. But we pretend they're const in the prototype to be compatible with other systems. LONGOPTS is a vector of `struct option' terminated by an element containing a name which is zero. LONGIND returns the index in LONGOPT of the long-named option found. It is only valid when a long-named option has been found by the most recent call. If LONG_ONLY is nonzero, '-' as well as '--' can introduce long-named options. */ int _getopt_internal (argc, argv, optstring, longopts, longind, long_only) int argc; char *const *argv; const char *optstring; const struct option *longopts; int *longind; int long_only; { int print_errors = opterr; if (optstring[0] == ':') print_errors = 0; if (argc < 1) return -1; optarg = NULL; if (optind == 0 || !__getopt_initialized) { if (optind == 0) optind = 1; /* Don't scan ARGV[0], the program name. */ optstring = _getopt_initialize (argc, argv, optstring); __getopt_initialized = 1; } /* Test whether ARGV[optind] points to a non-option argument. Either it does not have option syntax, or there is an environment flag from the shell indicating it is not an option. The later information is only used when the used in the GNU libc. */ #if defined _LIBC && defined USE_NONOPTION_FLAGS # define NONOPTION_P (argv[optind][0] != '-' || argv[optind][1] == '\0' \ || (optind < nonoption_flags_len \ && __getopt_nonoption_flags[optind] == '1')) #else # define NONOPTION_P (argv[optind][0] != '-' || argv[optind][1] == '\0') #endif if (nextchar == NULL || *nextchar == '\0') { /* Advance to the next ARGV-element. */ /* Give FIRST_NONOPT and LAST_NONOPT rational values if OPTIND has been moved back by the user (who may also have changed the arguments). */ if (last_nonopt > optind) last_nonopt = optind; if (first_nonopt > optind) first_nonopt = optind; if (ordering == PERMUTE) { /* If we have just processed some options following some non-options, exchange them so that the options come first. */ if (first_nonopt != last_nonopt && last_nonopt != optind) exchange ((char **) argv); else if (last_nonopt != optind) first_nonopt = optind; /* Skip any additional non-options and extend the range of non-options previously skipped. */ while (optind < argc && NONOPTION_P) optind++; last_nonopt = optind; } /* The special ARGV-element `--' means premature end of options. Skip it like a null option, then exchange with previous non-options as if it were an option, then skip everything else like a non-option. */ if (optind != argc && !strcmp (argv[optind], "--")) { optind++; if (first_nonopt != last_nonopt && last_nonopt != optind) exchange ((char **) argv); else if (first_nonopt == last_nonopt) first_nonopt = optind; last_nonopt = argc; optind = argc; } /* If we have done all the ARGV-elements, stop the scan and back over any non-options that we skipped and permuted. */ if (optind == argc) { /* Set the next-arg-index to point at the non-options that we previously skipped, so the caller will digest them. */ if (first_nonopt != last_nonopt) optind = first_nonopt; return -1; } /* If we have come to a non-option and did not permute it, either stop the scan or describe it to the caller and pass it by. */ if (NONOPTION_P) { if (ordering == REQUIRE_ORDER) return -1; optarg = argv[optind++]; return 1; } /* We have found another option-ARGV-element. Skip the initial punctuation. */ nextchar = (argv[optind] + 1 + (longopts != NULL && argv[optind][1] == '-')); } /* Decode the current option-ARGV-element. */ /* Check whether the ARGV-element is a long option. If long_only and the ARGV-element has the form "-f", where f is a valid short option, don't consider it an abbreviated form of a long option that starts with f. Otherwise there would be no way to give the -f short option. On the other hand, if there's a long option "fubar" and the ARGV-element is "-fu", do consider that an abbreviation of the long option, just like "--fu", and not "-f" with arg "u". This distinction seems to be the most useful approach. */ if (longopts != NULL && (argv[optind][1] == '-' || (long_only && (argv[optind][2] || !my_index (optstring, argv[optind][1]))))) { char *nameend; const struct option *p; const struct option *pfound = NULL; int exact = 0; int ambig = 0; int indfound = -1; int option_index; for (nameend = nextchar; *nameend && *nameend != '='; nameend++) /* Do nothing. */ ; /* Test all long options for either exact match or abbreviated matches. */ for (p = longopts, option_index = 0; p->name; p++, option_index++) if (!strncmp (p->name, nextchar, nameend - nextchar)) { if ((unsigned int) (nameend - nextchar) == (unsigned int) strlen (p->name)) { /* Exact match found. */ pfound = p; indfound = option_index; exact = 1; break; } else if (pfound == NULL) { /* First nonexact match found. */ pfound = p; indfound = option_index; } else if (long_only || pfound->has_arg != p->has_arg || pfound->flag != p->flag || pfound->val != p->val) /* Second or later nonexact match found. */ ambig = 1; } if (ambig && !exact) { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("%s: option `%s' is ambiguous\n"), argv[0], argv[optind]); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option `%s' is ambiguous\n"), argv[0], argv[optind]); #endif } nextchar += strlen (nextchar); optind++; optopt = 0; return '?'; } if (pfound != NULL) { option_index = indfound; optind++; if (*nameend) { /* Don't test has_arg with >, because some C compilers don't allow it to be used on enums. */ if (pfound->has_arg) optarg = nameend + 1; else { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; #endif if (argv[optind - 1][1] == '-') { /* --option */ #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("\ %s: option `--%s' doesn't allow an argument\n"), argv[0], pfound->name); #else fprintf (stderr, _("\ %s: option `--%s' doesn't allow an argument\n"), argv[0], pfound->name); #endif } else { /* +option or -option */ #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("\ %s: option `%c%s' doesn't allow an argument\n"), argv[0], argv[optind - 1][0], pfound->name); #else fprintf (stderr, _("\ %s: option `%c%s' doesn't allow an argument\n"), argv[0], argv[optind - 1][0], pfound->name); #endif } #if defined _LIBC && defined USE_IN_LIBIO if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #endif } nextchar += strlen (nextchar); optopt = pfound->val; return '?'; } } else if (pfound->has_arg == 1) { if (optind < argc) optarg = argv[optind++]; else { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("%s: option `%s' requires an argument\n"), argv[0], argv[optind - 1]); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option `%s' requires an argument\n"), argv[0], argv[optind - 1]); #endif } nextchar += strlen (nextchar); optopt = pfound->val; return optstring[0] == ':' ? ':' : '?'; } } nextchar += strlen (nextchar); if (longind != NULL) *longind = option_index; if (pfound->flag) { *(pfound->flag) = pfound->val; return 0; } return pfound->val; } /* Can't find it as a long option. If this is not getopt_long_only, or the option starts with '--' or is not a valid short option, then it's an error. Otherwise interpret it as a short option. */ if (!long_only || argv[optind][1] == '-' || my_index (optstring, *nextchar) == NULL) { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; #endif if (argv[optind][1] == '-') { /* --option */ #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("%s: unrecognized option `--%s'\n"), argv[0], nextchar); #else fprintf (stderr, _("%s: unrecognized option `--%s'\n"), argv[0], nextchar); #endif } else { /* +option or -option */ #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("%s: unrecognized option `%c%s'\n"), argv[0], argv[optind][0], nextchar); #else fprintf (stderr, _("%s: unrecognized option `%c%s'\n"), argv[0], argv[optind][0], nextchar); #endif } #if defined _LIBC && defined USE_IN_LIBIO if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #endif } nextchar = (char *) ""; optind++; optopt = 0; return '?'; } } /* Look at and handle the next short option-character. */ { char c = *nextchar++; char *temp = my_index (optstring, c); /* Increment `optind' when we start to process its last character. */ if (*nextchar == '\0') ++optind; if (temp == NULL || c == ':') { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; #endif if (posixly_correct) { /* 1003.2 specifies the format of this message. */ #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("%s: illegal option -- %c\n"), argv[0], c); #else fprintf (stderr, _("%s: illegal option -- %c\n"), argv[0], c); #endif } else { #if defined _LIBC && defined USE_IN_LIBIO __asprintf (&buf, _("%s: invalid option -- %c\n"), argv[0], c); #else fprintf (stderr, _("%s: invalid option -- %c\n"), argv[0], c); #endif } #if defined _LIBC && defined USE_IN_LIBIO if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #endif } optopt = c; return '?'; } /* Convenience. Treat POSIX -W foo same as long option --foo */ if (temp[0] == 'W' && temp[1] == ';') { char *nameend; const struct option *p; const struct option *pfound = NULL; int exact = 0; int ambig = 0; int indfound = 0; int option_index; /* This is an option that requires an argument. */ if (*nextchar != '\0') { optarg = nextchar; /* If we end this ARGV-element by taking the rest as an arg, we must advance to the next element now. */ optind++; } else if (optind == argc) { if (print_errors) { /* 1003.2 specifies the format of this message. */ #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("%s: option requires an argument -- %c\n"), argv[0], c); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option requires an argument -- %c\n"), argv[0], c); #endif } optopt = c; if (optstring[0] == ':') c = ':'; else c = '?'; return c; } else /* We already incremented `optind' once; increment it again when taking next ARGV-elt as argument. */ optarg = argv[optind++]; /* optarg is now the argument, see if it's in the table of longopts. */ for (nextchar = nameend = optarg; *nameend && *nameend != '='; nameend++) /* Do nothing. */ ; /* Test all long options for either exact match or abbreviated matches. */ for (p = longopts, option_index = 0; p->name; p++, option_index++) if (!strncmp (p->name, nextchar, nameend - nextchar)) { if ((unsigned int) (nameend - nextchar) == strlen (p->name)) { /* Exact match found. */ pfound = p; indfound = option_index; exact = 1; break; } else if (pfound == NULL) { /* First nonexact match found. */ pfound = p; indfound = option_index; } else /* Second or later nonexact match found. */ ambig = 1; } if (ambig && !exact) { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("%s: option `-W %s' is ambiguous\n"), argv[0], argv[optind]); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option `-W %s' is ambiguous\n"), argv[0], argv[optind]); #endif } nextchar += strlen (nextchar); optind++; return '?'; } if (pfound != NULL) { option_index = indfound; if (*nameend) { /* Don't test has_arg with >, because some C compilers don't allow it to be used on enums. */ if (pfound->has_arg) optarg = nameend + 1; else { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("\ %s: option `-W %s' doesn't allow an argument\n"), argv[0], pfound->name); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("\ %s: option `-W %s' doesn't allow an argument\n"), argv[0], pfound->name); #endif } nextchar += strlen (nextchar); return '?'; } } else if (pfound->has_arg == 1) { if (optind < argc) optarg = argv[optind++]; else { if (print_errors) { #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("\ %s: option `%s' requires an argument\n"), argv[0], argv[optind - 1]); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option `%s' requires an argument\n"), argv[0], argv[optind - 1]); #endif } nextchar += strlen (nextchar); return optstring[0] == ':' ? ':' : '?'; } } nextchar += strlen (nextchar); if (longind != NULL) *longind = option_index; if (pfound->flag) { *(pfound->flag) = pfound->val; return 0; } return pfound->val; } nextchar = NULL; return 'W'; /* Let the application handle it. */ } if (temp[1] == ':') { if (temp[2] == ':') { /* This is an option that accepts an argument optionally. */ if (*nextchar != '\0') { optarg = nextchar; optind++; } else optarg = NULL; nextchar = NULL; } else { /* This is an option that requires an argument. */ if (*nextchar != '\0') { optarg = nextchar; /* If we end this ARGV-element by taking the rest as an arg, we must advance to the next element now. */ optind++; } else if (optind == argc) { if (print_errors) { /* 1003.2 specifies the format of this message. */ #if defined _LIBC && defined USE_IN_LIBIO char *buf; __asprintf (&buf, _("%s: option requires an argument -- %c\n"), argv[0], c); if (_IO_fwide (stderr, 0) > 0) __fwprintf (stderr, L"%s", buf); else fputs (buf, stderr); free (buf); #else fprintf (stderr, _("%s: option requires an argument -- %c\n"), argv[0], c); #endif } optopt = c; if (optstring[0] == ':') c = ':'; else c = '?'; } else /* We already incremented `optind' once; increment it again when taking next ARGV-elt as argument. */ optarg = argv[optind++]; nextchar = NULL; } } return c; } } int getopt (argc, argv, optstring) int argc; char *const *argv; const char *optstring; { return _getopt_internal (argc, argv, optstring, (const struct option *) 0, (int *) 0, 0); } #endif /* Not ELIDE_CODE. */ /* Compile with -DTEST to make an executable for use in testing the above definition of `getopt'. */ /* #define TEST */ /* Pete Wilson mod 7/28/02 */ #ifdef TEST #ifndef exit /* Pete Wilson mod 7/28/02 */ int exit(int); /* Pete Wilson mod 7/28/02 */ #endif /* Pete Wilson mod 7/28/02 */ int main (argc, argv) int argc; char **argv; { int c; int digit_optind = 0; while (1) { int this_option_optind = optind ? optind : 1; c = getopt (argc, argv, "abc:d:0123456789"); if (c == -1) break; switch (c) { case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9': if (digit_optind != 0 && digit_optind != this_option_optind) printf ("digits occur in two different argv-elements.\n"); digit_optind = this_option_optind; printf ("option %c\n", c); break; case 'a': printf ("option a\n"); break; case 'b': printf ("option b\n"); break; case 'c': printf ("option c with value `%s'\n", optarg); break; case '?': break; default: printf ("?? getopt returned character code 0%o ??\n", c); } } if (optind < argc) { printf ("non-option ARGV-elements: "); while (optind < argc) printf ("%s ", argv[optind++]); printf ("\n"); } exit (0); } #endif /* TEST */ chordii-4.3+repack/windows/getopt.h0000644000175000017500000001475511316715175020512 0ustar gideonstargideonstar/* Declarations for getopt. Copyright (C) 1989-1994, 1996-1999, 2001 Free Software Foundation, Inc. This file is part of the GNU C Library. The GNU C Library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. The GNU C Library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with the GNU C Library; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA. */ #ifndef _GETOPT_H #ifndef __need_getopt # define _GETOPT_H 1 #endif /* If __GNU_LIBRARY__ is not already defined, either we are being used standalone, or this is the first header included in the source file. If we are being used with glibc, we need to include , but that does not exist if we are standalone. So: if __GNU_LIBRARY__ is not defined, include , which will pull in for us if it's from glibc. (Why ctype.h? It's guaranteed to exist and it doesn't flood the namespace with stuff the way some other headers do.) */ #if !defined __GNU_LIBRARY__ # include #endif #ifdef __cplusplus extern "C" { #endif /* For communication from `getopt' to the caller. When `getopt' finds an option that takes an argument, the argument value is returned here. Also, when `ordering' is RETURN_IN_ORDER, each non-option ARGV-element is returned here. */ extern char *optarg; /* Index in ARGV of the next element to be scanned. This is used for communication to and from the caller and for communication between successive calls to `getopt'. On entry to `getopt', zero means this is the first call; initialize. When `getopt' returns -1, this is the index of the first of the non-option elements that the caller should itself scan. Otherwise, `optind' communicates from one call to the next how much of ARGV has been scanned so far. */ extern int optind; /* Callers store zero here to inhibit the error message `getopt' prints for unrecognized options. */ extern int opterr; /* Set to an option character which was unrecognized. */ extern int optopt; #ifndef __need_getopt /* Describe the long-named options requested by the application. The LONG_OPTIONS argument to getopt_long or getopt_long_only is a vector of `struct option' terminated by an element containing a name which is zero. The field `has_arg' is: no_argument (or 0) if the option does not take an argument, required_argument (or 1) if the option requires an argument, optional_argument (or 2) if the option takes an optional argument. If the field `flag' is not NULL, it points to a variable that is set to the value given in the field `val' when the option is found, but left unchanged if the option is not found. To have a long-named option do something other than set an `int' to a compiled-in constant, such as set a value from `optarg', set the option's `flag' field to zero and its `val' field to a nonzero value (the equivalent single-letter option character, if there is one). For long options that have a zero `flag' field, `getopt' returns the contents of the `val' field. */ struct option { # if (defined __STDC__ && __STDC__) || defined __cplusplus const char *name; # else char *name; # endif /* has_arg can't be an enum because some compilers complain about type mismatches in all the code that assumes it is an int. */ int has_arg; int *flag; int val; }; /* Names for the values of the `has_arg' field of `struct option'. */ # define no_argument 0 # define required_argument 1 # define optional_argument 2 #endif /* need getopt */ /* Get definitions and prototypes for functions to process the arguments in ARGV (ARGC of them, minus the program name) for options given in OPTS. Return the option character from OPTS just read. Return -1 when there are no more options. For unrecognized options, or options missing arguments, `optopt' is set to the option letter, and '?' is returned. The OPTS string is a list of characters which are recognized option letters, optionally followed by colons, specifying that that letter takes an argument, to be placed in `optarg'. If a letter in OPTS is followed by two colons, its argument is optional. This behavior is specific to the GNU `getopt'. The argument `--' causes premature termination of argument scanning, explicitly telling `getopt' that there are no more options. If OPTS begins with `--', then non-option arguments are treated as arguments to the option '\0'. This behavior is specific to the GNU `getopt'. */ #if (defined __STDC__ && __STDC__) || defined __cplusplus # ifdef __GNU_LIBRARY__ /* Many other libraries have conflicting prototypes for getopt, with differences in the consts, in stdlib.h. To avoid compilation errors, only prototype getopt for the GNU C library. */ extern int getopt (int ___argc, char *const *___argv, const char *__shortopts); # else /* not __GNU_LIBRARY__ */ extern int getopt (); # endif /* __GNU_LIBRARY__ */ # ifndef __need_getopt extern int getopt_long (int ___argc, char *const *___argv, const char *__shortopts, const struct option *__longopts, int *__longind); extern int getopt_long_only (int ___argc, char *const *___argv, const char *__shortopts, const struct option *__longopts, int *__longind); /* Internal only. Users should not call this directly. */ extern int _getopt_internal (int ___argc, char *const *___argv, const char *__shortopts, const struct option *__longopts, int *__longind, int __long_only); # endif #else /* not __STDC__ */ extern int getopt (); # ifndef __need_getopt extern int getopt_long (); extern int getopt_long_only (); extern int _getopt_internal (); # endif #endif /* __STDC__ */ #ifdef __cplusplus } #endif /* Make sure we later can get all the definitions and declarations. */ #undef __need_getopt #endif /* getopt.h */ chordii-4.3+repack/man/0000755000175000017500000000000011316731016016074 5ustar gideonstargideonstarchordii-4.3+repack/man/a2crd.10000644000175000017500000000353411316715175017166 0ustar gideonstargideonstar.TH a2crd 1 "July 2009" "Utilities" .SH NAME a2crd \- attempts the conversion of lyrics file into chordii input .SH SYNOPSIS .B a2crd [ options...] [ filename... ] .SH DESCRIPTION .I a2crd reads the lyrics of one songs from a file, and attempts to produce a output suitable for .I chordii. Chord names can appear above or below the lyrics. .I a2crd will embed those names into the lyrics. The FAQ list of alt.guitar documents the way a ascii file should look, but this format is not recognized by everyone, or fully enforced. Thus, it is impossible to modify .I chordii itself to read *any* type of ascii input and produce good result. .I a2crd tries its best to to do the tedious conversion job. .I a2crd attempts to recognize mail/news headers, and comments them out. It preserves as is any line starting with a '{', which would indicates a .I chordii command. It also preserves any lines starting with a '#'. .I a2crd prepends to the output the content of a file called $HOME/.a2crdsig, if it exists. The first line that is not a comment is assumed to be the title of the song. The nest lines until a blank one are assumed to be sub-titles. .SH OPTIONS .TP 8 .B \-r \fIratio\fR Sets the threshold for chordii line recognition. a2crd looks at every line. If the ratio ( space_characters / (non-space_characters) is greater than \fIratio\fR, the line will be recognized as a chordii line, and its content will be merge with the next available text line. The \fIratio\fR has a initial value of 1. It is defined as a floating precision value. .TP 8 .B \-D Prints debugging information. For programmers only. .TP 8 .B \-o \fIfilename\fB Sends output to \fIfilename\fB .TP 8 .SH See Also chordii(l) .SH COPYRIGHT Copyright 2008 The Chordii Project .br Copyright 1992 by Martin Leclerc and Mario Dorion .SH AUTHORS Martin Leclerc (martin.leclerc@canada.sun.com *** DEFUNCT ***) chordii-4.3+repack/man/Makefile.am0000644000175000017500000000007711316715175020144 0ustar gideonstargideonstardist_man_MANS = chordii.1 a2crd.1 man_MANS = chordii.1 a2crd.1 chordii-4.3+repack/man/Makefile.in0000644000175000017500000002777611316726527020177 0ustar gideonstargideonstar# Makefile.in generated by automake 1.11 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; 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The document produced contains the lyrics of a song, with the guitar chords appearing above the right words. A representation of all chords used in the song is printed at the bottom of the last page. Extensive documentation can be found in the Chordii User Guide, available from the download page http://sourceforge.net/project/chordii. .SH OPTIONS .TP 8 .B \-A Will print the "About CHORDII..." message. .TP 8 .B \-a Automatically single spaces lines that have no chords. .TP 8 .B \-c \fIchord_font_size\fB Sets the size, in points, of the font used to display chords to the specified integer value. .TP 8 .B \-C \fIChord_font\fB Sets the font used to print chords to the specified name. That name must be known to your PostScript Interpreter. .TP 8 .B \-d Generates a text chord chart of all internally known chords as well as chords defined in the $HOME/.chordrc file. Chords defined in the .chordrc file are identified with the "(local)" caption. The printout is suitable for input to the .chordrc file. .TP 8 .B \-D Generates a PostScript chord chart of all internally known chords as well as chords defined in the $HOME/.chordrc file. Chords defined in the .chordrc file are identified with a small asterisk after the chord grid. .TP 8 .B \-G Disable printing of the chord grids for the whole input file(s). The effect can be disable for any particular song by the usage of the \fBgrid\fR or \fBg\fR directive. .TP 8 .B \-g Disable printing of grids for "easy" chords. Whether a builtin chord is easy or not has been arbitrarily decided by the authors. The general rule was that any chord in its major, minor, 7th or minor 7th was "easy" while everything else (maj7, aug, dim, sus, etc...) was "difficult". All chords defined in the $HOME/.chordrc file or in the input file are defined as "difficult". .TP 8 .B \-h Prints a short options summary. .TP .B \-i Generates a table of contents with the song titles and page numbers. It implies page numbering through the document. Index pages are not numbered. .TP 8 .B \-l Prints only the lyrics of the song. .TP 8 .B \-L Places the odd and even page numbers in the lower right and left corners respectively (for two-sided output). The default is all page numbers on the right. .TP 8 .B \-o \fIfilename\fB Sends PostScript output to \fIfilename\fB .TP 8 .B \-p " first_page" Numbers the pages consecutively starting with \fIfirst_page\fR (e.g. 1). Without this option, each song restarts the page numbering at 1, and page numbers are only put on subsequent pages of multiple page songs. .TP 8 .B \-P " paper_size" Specifies the paper size, either "us" or "a4". .TP 8 .B \-s \fIgrid_size\fB Sets the size of the chord grids. .TP 8 .B \-t \fItext_font size\fB Sets the size, in points, of the font used to display the lyrics to the specified integer value. The title line is displayed using that point size + 5. The sub-tiltle is displayed using that point size -2. The \fItablature\fB is displayed using this point-size -2. .TP 8 .B \-T \fIText_font\fB Sets the font used to print text to the specified name. That name must be known to your PostScript Interpreter. .TP 8 .B \-V Prints version and patch level. .TP 8 .B \-x \fIhalf-tones\fB Sets up transposition to that number of half-tones. Can not be zero. All chord names must be build in the following way in order to be recognized: {note-name}[#|b][^/]* [ '/' {note-name}[#|b][^/]* ] That is, a valid note name, possibly followed by '#' or 'b', followed by other modifier ('7', 'm', etc...). Many such construct can make up a chord name, as long as they are separated by '/'. {note-name} must appear in the list 'A','B','C','D','E','F','G'. .TP 8 .B \-2 Prints two logical pages per physical page. .TP 8 .B \-4 Prints four logical pages per physical page. .SH KEYWORDS A line starting with a '#' is interpreted as a comment, and generates no output. (although all your comments are automatically mailed to the authors, and we read them at parties...) Directives that appear between french brackets ('{' and '}') have a special meaning. They must be alone on a line. Blanks before the opening bracket and after the closing bracket are not significant. Blanks inside a directive are not significant (except inside one of the \fIcomments\fB directives). Supported directives are: .TP 8 .B \fBtitles: \fItype\fR Selects the placement of the titles. Currently supported are \fBleft\fR and \fBcenter\fP (default). .TP 8 .B \fBstart_of_chorus\fR or \fBsoc\fR which indicates the start of a chorus (yep). The complete chorus will be highlighted by a change bar, to be easily located by the player. .TP 8 .B \fBend_of_chorus\fR or \fBeoc\fR marks the end of the chorus .TP 8 .B \fBcomment:\fR or \fBc:\fR will call the printing of the rest of the line, highlighted by a grey box (Useful to call a chorus, for example) .TP 8 .B \fBcomment_italic:\fR or \fBci:\fR will print the comment in an italic font ... well not really. It will print the comment in the font used for printing the CHORD names (which is normally italic unless you specified a different chord_font). .TP 8 .B \fBcomment_box:\fR or \fBcb:\fR will print the comment inside a bounding box. .TP 8 .B \fBnew_song\fR or \fBns\fR marks the beginning of a new song. It enables you to put multiple songs in one file. It is not required at the beginning of the file. .TP 8 .B \fBtitle:\fR or \fBt:\fR specifies the title of the song. It will appear centered at the top of the first page, and at the bottom of every other page, accompanied there by the page number, within the current song. .TP 8 .B \fBsubtitle:\fR or \fBst:\fR specifies a string to be printed right below the title. Many subtitles can be specified .TP 8 .B \fBdefine: \fRname \fBbase-fret \fRoffset \fBfrets \fRstr1...str6\f defines a new chord called "name". The keyword "base-fret" indicates that the number that follows ("offset") is the first fret that is to be displayed when representing the way this chord is played. The keyword "frets" then appears and is followed by 6 values. These values are the fret number [ 1 to n ] for each string [str1 to str6] and are RELATIVE to the offset. A value of "-", "X" or "x" indicates a string that is not played. Keywords \fBbase-fret\fR and \fBfrets\fR are mandatory. A value of 0 for a given string means it is to be played open, and will be marked by a small open circle above the string in the grid. The strings are numbered in ascending order of tonality, starting on the low E (the top string). On output, a chord defined in the user's .chordrc file will have a small asterisk near its grid, a chord defined in a song will have two small asterixes. At the beginning of every song, the default chords are re-loaded and the user's .chordrc file is re-read. Chord definition of new chords inside the text of a song are only valid for that song. The syntax of a {define} directive has been modified in version 3.5. CHORDII will attempt to recognize an old-formar {define} and will accept it. It will, though, print a warning inviting you to modify your input file to use the new syntax (the exact {define} entry to use is provided as an example). .TP 8 .B \fBpagetype: \fItype\fR Selects the page type. Currently supported page types are \fBa4\fR and \fBletter\fP. .br This directive may only occur in the .chordrc. .TP 8 .B textfont: postscript_font same as -T command option .TP 8 .B textsize: n same as -t command option .TP 8 .B chordfont: postscript_font same as -C command option .TP 8 .B chordsize: n same as -c command option .TP 8 .B \fBno_grid\fR or \fBng\fR will disable printing of the chord grids for the current song. .TP 8 .B \fBgrid\fR or \fBg\fR will enable the printing of the chord grids for the current song (subject to the limitation caused by the usage of the \fB-g\fR option). This directive will overide the runtime \fB-G\fR option for the current song. .TP 8 .B \fBnew_page\fR or \fBnp\fR will force a logical page break (which will obviously turn out to be a physical page break if you are not in either 2-up or 4-up mode. .TP 8 .B \fBnew_physical_page\fR or \fBnpp\fR will force a physical page break (in any mode). .TP 8 .B \fBstart_of_tab\fR or \fBsot\fR will cause chord to use a monospace (ie: non-proportional) font for the printing of text. This can be used to enter 'tab' information where character positioning is crucial. The \fBCourier\fR font is used with a smaller point-size than the rest of the text. .TP 8 .B \fBend_of_tab\fR or \fBeot\fR will stop using monospace font. The effect is implicit at the end of a song. .TP 8 .B \fBcolumns: n\fR or \fBcol: n\fR specifies the number of columns on the pages of the current song. .TP 8 .B \fBcolumn_break\fR or \fBcolb\fR forces a column break. The next line of the song will appear in the next available column, at the same height as the last "columns" statement if still on the same page, or at the top of the page otherwise. .SH FILES .TP 8 .B $HOME/.chordrc Initial directives re-read after each song. .SH NOTES Run time options override settings from your .chordrc file. So the assignement sequence to, let's say, the text size will be: system default, .chordrc, run-time option, and finally from within the song itself. All keywords are case independent. .SH BUGS CHORDII will not wrap long lines around the right margin. .br White space is not inserted inside the text line, even if white space is inserted in the "chord" line above the text. The net effect is that chord names can appear further down the line than what was intended. This is a side effect from fixing an old "bug" that caused the chord names to overlap. This bug will only manifest itself if you have lots of chord but little text. Inserting white space in the text is a good workaround. .br In 2-up mode, if page-numbering is invoked on a document that has an odd number of page, the page number for the last page will be printed at the bottom right of the virtual page instead of the bottom right of the physical page. .SH COPYRIGHT Copyright 2008 The Chordii Project .br Copyright 1990-91-92-93 by Martin Leclerc and Mario Dorion .SH AUTHORS Johan Vromans Everyone is permitted to copy and distribute verbatim copies of this license document, but changing it is not allowed. Preamble The GNU General Public License is a free, copyleft license for software and other kinds of works. The licenses for most software and other practical works are designed to take away your freedom to share and change the works. By contrast, the GNU General Public License is intended to guarantee your freedom to share and change all versions of a program--to make sure it remains free software for all its users. 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Copyright (C) This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . Also add information on how to contact you by electronic and paper mail. If the program does terminal interaction, make it output a short notice like this when it starts in an interactive mode: Copyright (C) This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'. This is free software, and you are welcome to redistribute it under certain conditions; type `show c' for details. The hypothetical commands `show w' and `show c' should show the appropriate parts of the General Public License. Of course, your program's commands might be different; for a GUI interface, you would use an "about box". You should also get your employer (if you work as a programmer) or school, if any, to sign a "copyright disclaimer" for the program, if necessary. For more information on this, and how to apply and follow the GNU GPL, see . The GNU General Public License does not permit incorporating your program into proprietary programs. If your program is a subroutine library, you may consider it more useful to permit linking proprietary applications with the library. If this is what you want to do, use the GNU Lesser General Public License instead of this License. But first, please read . chordii-4.3+repack/depcomp0000755000175000017500000004426711214147232016711 0ustar gideonstargideonstar#! /bin/sh # depcomp - compile a program generating dependencies as side-effects scriptversion=2009-04-28.21; # UTC # Copyright (C) 1999, 2000, 2003, 2004, 2005, 2006, 2007, 2009 Free # Software Foundation, Inc. # This program is free software; you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation; either version 2, or (at your option) # any later version. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # You should have received a copy of the GNU General Public License # along with this program. If not, see . # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. # Originally written by Alexandre Oliva . case $1 in '') echo "$0: No command. Try \`$0 --help' for more information." 1>&2 exit 1; ;; -h | --h*) cat <<\EOF Usage: depcomp [--help] [--version] PROGRAM [ARGS] Run PROGRAMS ARGS to compile a file, generating dependencies as side-effects. Environment variables: depmode Dependency tracking mode. source Source file read by `PROGRAMS ARGS'. object Object file output by `PROGRAMS ARGS'. DEPDIR directory where to store dependencies. depfile Dependency file to output. tmpdepfile Temporary file to use when outputing dependencies. libtool Whether libtool is used (yes/no). Report bugs to . EOF exit $? ;; -v | --v*) echo "depcomp $scriptversion" exit $? ;; esac if test -z "$depmode" || test -z "$source" || test -z "$object"; then echo "depcomp: Variables source, object and depmode must be set" 1>&2 exit 1 fi # Dependencies for sub/bar.o or sub/bar.obj go into sub/.deps/bar.Po. depfile=${depfile-`echo "$object" | sed 's|[^\\/]*$|'${DEPDIR-.deps}'/&|;s|\.\([^.]*\)$|.P\1|;s|Pobj$|Po|'`} tmpdepfile=${tmpdepfile-`echo "$depfile" | sed 's/\.\([^.]*\)$/.T\1/'`} rm -f "$tmpdepfile" # Some modes work just like other modes, but use different flags. We # parameterize here, but still list the modes in the big case below, # to make depend.m4 easier to write. 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Note that the slowdown incurred here ## affects only configure: in makefiles, %FASTDEP% shortcuts this. for arg do case $arg in -c) set fnord "$@" -MT "$object" -MD -MP -MF "$tmpdepfile" "$arg" ;; *) set fnord "$@" "$arg" ;; esac shift # fnord shift # $arg done "$@" stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi mv "$tmpdepfile" "$depfile" ;; gcc) ## There are various ways to get dependency output from gcc. Here's ## why we pick this rather obscure method: ## - Don't want to use -MD because we'd like the dependencies to end ## up in a subdir. Having to rename by hand is ugly. ## (We might end up doing this anyway to support other compilers.) ## - The DEPENDENCIES_OUTPUT environment variable makes gcc act like ## -MM, not -M (despite what the docs say). ## - Using -M directly means running the compiler twice (even worse ## than renaming). if test -z "$gccflag"; then gccflag=-MD, fi "$@" -Wp,"$gccflag$tmpdepfile" stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi rm -f "$depfile" echo "$object : \\" > "$depfile" alpha=ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz ## The second -e expression handles DOS-style file names with drive letters. sed -e 's/^[^:]*: / /' \ -e 's/^['$alpha']:\/[^:]*: / /' < "$tmpdepfile" >> "$depfile" ## This next piece of magic avoids the `deleted header file' problem. ## The problem is that when a header file which appears in a .P file ## is deleted, the dependency causes make to die (because there is ## typically no way to rebuild the header). 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However on # icc -MD -MF foo.d -c -o sub/foo.o sub/foo.c # ICC 7.0 will fill foo.d with something like # foo.o: sub/foo.c # foo.o: sub/foo.h # which is wrong. We want: # sub/foo.o: sub/foo.c # sub/foo.o: sub/foo.h # sub/foo.c: # sub/foo.h: # ICC 7.1 will output # foo.o: sub/foo.c sub/foo.h # and will wrap long lines using \ : # foo.o: sub/foo.c ... \ # sub/foo.h ... \ # ... "$@" -MD -MF "$tmpdepfile" stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi rm -f "$depfile" # Each line is of the form `foo.o: dependent.h', # or `foo.o: dep1.h dep2.h \', or ` dep3.h dep4.h \'. # Do two passes, one to just change these to # `$object: dependent.h' and one to simply `dependent.h:'. sed "s,^[^:]*:,$object :," < "$tmpdepfile" > "$depfile" # Some versions of the HPUX 10.20 sed can't process this invocation # correctly. 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Swing [D7]low, sweet [G]chari[D]ot, Comin' for to [A7]carry me [D]home. {end_of_chorus} I looked over Jordan, and what did I see, Comin' for to carry me home. A band of angels comin' after me, Comin' for to carry me home. {c:Chorus} If you get there before I do, Comin' for to carry me home. Just tell my friends that I'm a comin' too. Comin' for to carry me home. {c:Chorus} I'm sometimes up and sometimes down, Comin' for to carry me home. But still my soul feels heavenly bound. Comin' for to carry me home. {c:Chorus} chordii-4.3+repack/NEWS0000644000175000017500000000526111316724647016040 0ustar gideonstargideonstarNEW IN VERSION 4.3 * Rebased on Chord 3.6.4. Since this release of Chord is licensed under GPL, Chordii is now legally GPL as well. NEW IN VERSION 4.2 * Port to Microsoft Windows. NEW IN VERSION 4.1 * Renamed to Chordii on request of chordie.com. NEW IN VERSION 4.0 **** Development and support taken over by Johan Vromans **** and Adam Monsen (November 2007) * Project web page: http://chordie.sourceforge.net. * Modify to use the GNU Build System. * Song titles can be flushed left. * Correct some PostScript errors. * Fix some crashes. NEW IN VERSION 3.6.2 **** Last known version by Martin Leclerc and **** Mario Dorion (July 1995) * The CHORDRC variable points to the ".chordrc" file, which can be called anything * -P option selects the paper size * better handling of -2 and -4 options * better handling of paper formats NEW IN VERSION 3.6 * Song index is sorted * .chordrc is read only once per execution * Speed improvement by a factor of ~5 * support of multiple columns * better (I hope...) support of A4 format * inclusion of a2crd to convert ASCII files to chord format * Chords defined multiples times ALL stay in the known chord structure, so that 'chord -D' shows them all, even if the names are duplicates. * bug fixes NEW IN VERSION 3.5 * Generation of PostScript indexes. * Generation of PostScript chord-charts. * Additional 'comments' style (box and italic). * Directive to set a monospace font (ie: not-proportional) suitable for tabs. * Support for A4 paper format. * Page numbers are now "physical page numbers". * Chord-charts (-dump option) now include chords from .chordrc file. * Option to print/not-print page numbers. * Option to print/not-print chord grids. * Option to print grids only for "difficult" chords. * Directive to force a physical page break. * Directive to force a virtual page break. * Chords are printed in a logical order. * Special chord [N.C.] (no-chord) without a chord grid. * New (and improved!) {define} syntax. * Chord names and directives are case-insensitive. * Public domain getopt() routine (for portability). * (almost) lint free (better portability) * Ansi-C compliant * ... and bug fixes NEW IN VERSION 1.2 * More flexible Page Numbering - Left/right - always-present - an option for simgle spacing on lines with no chords * Distinction between an unplayed string and a buffed one * TOC generation * Some bug fixes NEW IN VERSION 1.1 * CHORD supports transposition. See the man page. * miscellanious bug fixes, including dubious coding that kept IBM and SGI from executing CHORD properly * the grids now indicate string played open * Error messages noe correctly report the name of the file and the line number where the error was found chordii-4.3+repack/Makefile.am0000644000175000017500000000066711316715175017376 0ustar gideonstargideonstar# Note: we must explicitly list all songs in the "examples" dir... A shell glob # only works here if "bash" is the default system shell (grumble, grumble). EXTRA_DIST = chordii.spec \ examples/everybody-hurts.cho examples/love-me-tender.cho \ examples/swing-low.cho \ debian/control debian/changelog debian/rules debian/copyright \ debian/compat \ windows/config.h windows/getopt.h windows/getopt.c windows/makefile SUBDIRS = src man chordii-4.3+repack/ChangeLog0000644000175000017500000000000011316715175017071 0ustar gideonstargideonstarchordii-4.3+repack/configure.ac0000644000175000017500000000300311316715175017613 0ustar gideonstargideonstar# This file is part of Chordii. # # Chordii is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # Chordii is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with Chordii. If not, see . AC_INIT([Chordii], [4.3], [jvromans@users.sourceforge.net]) AM_INIT_AUTOMAKE PATCH_LEVEL=0 AC_DEFINE_UNQUOTED([PATCH_LEVEL],["$PATCH_LEVEL"],[Define to the minor version (aka patch level) of this package.]) AC_CONFIG_HEADER([src/config.h]) # Checks for programs. AC_PROG_CC # Checks for libraries. # Checks for header files. AC_FUNC_ALLOCA AC_HEADER_STDC AC_CHECK_HEADERS([stdlib.h string.h unistd.h]) # Checks for typedefs, structures, and compiler characteristics. AC_C_CONST # Checks for library functions. AC_CHECK_FUNCS([strdup]) # Do we need this one? AC_REPLACE_FUNCS # Enforce programmer sanity. if test "$CC" = "gcc"; then CFLAGS="$CFLAGS -Wall -Werror -pedantic-errors -g" fi AC_SUBST(CFLAGS) AC_SUBST([PATCH_LEVEL],$PATCH_LEVEL) # Desired output files. AC_CONFIG_FILES([ Makefile src/Makefile man/Makefile chordii.spec windows/config.h ]) AC_OUTPUT chordii-4.3+repack/chordii.spec0000644000175000017500000000454311316726766017644 0ustar gideonstargideonstarSummary: Print songsbooks (lyrics + chords) Name: chordii Version: 4.3 Release: 1%{?dist} URL: http://chordii.sourceforge.net Source: http://downloads.sourceforge.net/%{name}/%{name}-%{version}.tar.gz Patch0: %{name}-%{version}-makefile.patch License: GPLv3+ Group: Applications/Publishing BuildRoot: %(mktemp -ud %{_tmppath}/%{name}-%{version}-%{release}-XXXXXX) Obsoletes: chordie chord %description chordii provides guitar players and other musicians with a tool to produce good looking, self-descriptive music sheets from text files. chordii reads text files in chordpro format, containing the lyrics of songs, the chords to be played, their descriptions and some other optional data. It produces a PostScript document suitable for viewing and printing. chordii features include: - centered titles, - chord names above the words, - chord diagrams at the end of the songs, - multiple columns on a page, - multiple logical pages per physical pages (1, 2 or 4), - configurable fonts and sizes, - the complete ISO 8859-1 character set, - chorus marking, - automated chord transposition, - songbook creation: typeset multiple songs with page numbers and a table of contents. %prep %setup -q # Fix Makefiles to avoid double install of manual pages. %patch0 -p0 -b .mak %build %configure make %{?_smp_mflags} %install rm -rf %{buildroot} make DESTDIR=%{buildroot} INSTALL="install -p" install %clean rm -rf %{buildroot} %files %defattr(-,root,root,-) %doc README NEWS COPYING examples/ %{_bindir}/* %{_mandir}/man1/* %changelog * Mon Jul 13 2009 Johan Vromans - 4.3-1 - Rebase on GPL Chord 3.6.4. * Sat Jan 31 2009 Johan Vromans - 4.2-5 - Changed examples/* to examples/ to include all examples in a dir * Fri Jan 30 2009 Johan Vromans - 4.2-4 - Fixed changelog entries involving %% to prevent macro expansion * Fri Jan 30 2009 Johan Vromans - 4.2-3 - Fixed URL and Source urls - Added %%{?dist} to Release - Fixed missing (optional) argument to %%defattr - Changed examples to examples/* to include all examples * Fri Jan 30 2009 Johan Vromans - 4.2-2 - Update description - Add patch to fix Makefiles to avoid double install of manual pages - use smp_mflags - use install -p * Thu Jan 29 2009 Johan Vromans - 4.2-1 - First Fedora version chordii-4.3+repack/src/0000755000175000017500000000000011316731016016110 5ustar gideonstargideonstarchordii-4.3+repack/src/xpose.c0000644000175000017500000000511111316715175017420 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include "chordii.h" extern int grid_size; extern int transpose; extern char *mesg; int do_transpose ( chord ) char *chord; { /* attempting parsing 1) look for a known note name at start of name 2) copy literally until delimiter found 3) repeat */ int i,j; int p_chord, p_new_chord; int sharp, flat, new_i; char new_chord[MAXTOKEN]; static char *notes[] = { "C", "D", "E", "F", "G", "A", "B" }; p_chord = 0; p_new_chord = 0; while (TRUE) { /* Find basic note */ i=0; while ( (i < 7) && (strncmp ( chord + p_chord, notes[i], strlen (notes[i]))) ) i++; if (i >= 7) return(1); /* Look for sharp or flat */ p_chord += strlen(notes[i]); flat = ( chord[p_chord] == 'b'); sharp = ( chord[p_chord] == '#'); if (sharp || flat) p_chord++; /*compute new chord name */ new_i = i; /* moving upscale ... */ if (transpose > 0) for (j=0; j < transpose; j++) if (sharp) { sharp = 0; new_i = (new_i + 1) % 7; } else if (flat) flat = 0; else if ((new_i == 2) || (new_i == 6)) new_i = (new_i + 1) % 7; else sharp++; /* moving downscale ... */ else for (j=0; j > transpose; j--) if (flat) { flat = 0; new_i = (new_i + 6) % 7; } else if (sharp) sharp = 0; else if ((new_i == 3) || (new_i == 0)) new_i = (new_i + 6) % 7; else flat++; sprintf ( (char*)new_chord+p_new_chord, "%s", notes[new_i]); p_new_chord += strlen(notes[new_i]); if (sharp) sprintf( (char*)new_chord + p_new_chord++, "#"); if (flat) sprintf( (char*)new_chord + p_new_chord++, "b"); while ((chord[p_chord] != '/') && (chord[p_chord] != '\0')) new_chord[p_new_chord++] = chord[p_chord++]; if (chord[p_chord] == '\0') { new_chord[p_new_chord] = '\0'; sprintf (mesg, "[%s] becomes [%s]", chord, new_chord); debug (mesg); strcpy(chord, new_chord); return(0); } p_chord++; new_chord[p_new_chord++] = '/'; } } chordii-4.3+repack/src/Makefile.am0000644000175000017500000000043411316715175020155 0ustar gideonstargideonstar## Process this file with automake to produce Makefile.in common = chordii.h common.c getopt.h bin_PROGRAMS = chordii a2crd chordii_SOURCES = $(common) chordii.c xpose.c iso.c grid.c getopt.c toc.c a2crd_SOURCES = $(common) a2crd.c chordii_LDADD = $(LIBOBJS) a2crd_LDADD = $(LIBOBJS) chordii-4.3+repack/src/chordii.h0000644000175000017500000001046011316715175017713 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #ifndef CHORDII_H #define CHORDII_H #include "config.h" #include #include #include #include #ifdef HAVE_UNISTD_H #include #endif #define TRUE 1 #define FALSE 0 #define MAXLINE 256 #define MAXFONTS 16 /* Maximum number of different fonts in one execution */ #define MAXTOKEN 256 #define MAX_CHORD 1024 #define CHORD_NAME_SZ 20 #define MAXNOTE 8 #define LONG_FINGERS 4 #define FRET_NONE_STR "-" /* fret value for unplayed strings */ #define FRET_NONE -2 /* internal numeric value */ #define FRET_X_STR "X" /* fret value for muted strings */ #define FRET_X -1 /* internal value (must be -1) */ #define NO_CHORD_STR "N.C." /* Indicates No-Chord */ #define BASE_FRET_STR "base-fret" #define FRETS_STR "frets" #define DELIM_STR ": \t" #define DEF_TEXT_SIZE 12 #define DEF_CHORD_SIZE 9 #define DEF_GRID_SIZE 30 #define DEF_TEXT_FONT "Times-Roman" #define DEF_CHORD_FONT "Helvetica-Oblique" #define MONOSPACED_FONT "Courier" #define CHORD_BUILTIN 0 #define CHORD_DEFINED 1 #define CHORD_IN_CHORDRC 2 #define CHORD_EASY 0 #define CHORD_HARD 1 struct kcs { struct kcs *next; char chord_name[CHORD_NAME_SZ]; int displ; int s1,s2,s3,s4,s5,s6; int origin; int difficult; } dummy_kcs; struct chord_struct { struct chord_struct *next; struct kcs *chord; } dummy_chord_struct; struct sub_title_struct { struct sub_title_struct *next_sub; char *sub_title; }; struct toc_struct { struct toc_struct *next; struct sub_title_struct *sub_titles; char *title; int page_label; }; int do_define_chord(); void build_ps_toc(); void clean_chordtab(); void clean_known_chords(); void do_chorus_line(); void do_end_of_page(); void do_end_of_phys_page(); void do_end_of_song(); void do_init_grid_ps(); void do_new_song(); void do_start_of_page(); void do_subtitle(); void do_title(); void draw_chords(); void dump_chords(); void init_known_chords(); void init_ps(); void init_values(); void print_chord_line (); void print_re_encode(); void print_text_line(); void print_version(); void read_chordrc(); void set_chord_font(); void use_chord_font(); void use_text_font(); #ifdef __STDC__ struct chord_struct *add_to_chordtab(char *chord); void add_title_to_toc(char *title, int page_label); void add_subtitle_to_toc(char *subtitle); int do_transpose(char *chord); struct kcs *get_kc_entry (char *chord); void advance(int amount); void debug(char *dbg_str); void do_chord (int i_text, char *chord); void do_comment(char *comment, int style); void do_directive(char *directive); void do_help (char *command) ; void dump_fret(int fretnum); void error(char *error); void error_rt(char *error); void moveto(int new_hpos, int new_vpos); void process_file(FILE *source_fd); void ps_fputc(FILE *fd, int c); void ps_fputs(FILE *fd, char *string); void ps_puts(char *string); void put_in_string(char array[], int *p_index, int c, int max_index, int *p_ov_flag); void re_encode(char *font); void read_input_file(char source[], FILE *source_fd); void set_text_font(int size); char *tolower_str(char *string); char *toupper_str(char *string); extern char *strtok(char *s1, const char *s2); #else /* __STDC__ */ struct chord_struct *add_to_chordtab(); int do_transpose(); struct kcs *get_kc_entry (); void advance(); void debug(); void do_chord (); void do_comment(); void do_directive(); void do_help (); void do_translate(); void dump_fret(); void error(); void error_rt(); void moveto(); void process_file(); void ps_fputc(); void ps_fputs(); void ps_puts(); void put_in_string(); void re_encode(); void read_input_file(); void set_text_font(); char *tolower_str(); char *toupper_str(); extern char *strtok(); #endif /* ANSI_C */ #endif /* CHORDII_H */ chordii-4.3+repack/src/a2crd.c0000644000175000017500000001554611316715175017272 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include "chordii.h" FILE *source_fd; int p_put, lchord, ltext, lbuf, c, debug_mode = 0, dirty_chord=0, dirty_text=0, in_header, in_title=0, in_subtitle=0, n_lines, in_chorus=0; char chord_line[MAXLINE], text_line[MAXLINE], buf[MAXLINE], *command_name, source[MAXTOKEN], *current_file, mesgbuf[MAXLINE], *mesg; float spaces=0, not_space=0; double ratio=1.0; extern char *optarg; extern int optind, opterr; /* --------------------------------------------------------------------------------*/ void print_2lines(chord_line, text_line) char chord_line[], text_line[]; { int i, mini=0, max=0; int p_out=0; max = (ltext > lchord) ? ltext : lchord; sprintf (mesg, " print_2lines text_line=[%s]", text_line); debug(mesg); sprintf (mesg, " print_2lines chord_line=[%s]", chord_line); debug(mesg); for (i = 0; i < max ; i++) { if ( (i <= lchord) && ( chord_line[i] != ' ' ) && (chord_line[i] != '\0') && ( i >= mini ) ) { printf ("["); for (mini=i; (chord_line[mini] != ' ') && (mini ratio) || ((spaces==0) && (lbuf<3)) ) /* this must be a chord line */ { sprintf (mesg, "chord is \"%s\"",buf); debug(mesg); if (dirty_chord) { print_2lines (chord_line, text_line); } strcpy (chord_line, buf); lchord=lbuf; dirty_chord++; in_title=0; in_subtitle=0; } else /* so it is a text line ! */ { sprintf (mesg, "text is \"%s\"",buf); debug(mesg); if (dirty_text) { print_2lines (chord_line, text_line); } if (in_title) { printf("{title:%s}\n", buf); in_title=FALSE; in_subtitle=TRUE; } else if (in_subtitle) { printf("{subtitle:%s}\n", buf); } else { strcpy(text_line, buf); ltext=lbuf; dirty_text++; } } lbuf=0; spaces=0; not_space=0; } else { if (dirty_chord || dirty_text) print_2lines(chord_line, text_line); printf ("\n"); if (in_chorus) { printf("{end_of_chorus}\n"); in_chorus=0; } in_subtitle=FALSE; in_title=FALSE; } for (i=0;i and it should be used (not on Ultrix). */ #undef HAVE_ALLOCA_H /* Define to 1 if you have the header file. */ #undef HAVE_INTTYPES_H /* Define to 1 if you have the header file. */ #undef HAVE_MEMORY_H /* Define to 1 if you have the header file. */ #undef HAVE_STDINT_H /* Define to 1 if you have the header file. */ #undef HAVE_STDLIB_H /* Define to 1 if you have the `strdup' function. */ #undef HAVE_STRDUP /* Define to 1 if you have the header file. */ #undef HAVE_STRINGS_H /* Define to 1 if you have the header file. */ #undef HAVE_STRING_H /* Define to 1 if you have the header file. */ #undef HAVE_SYS_STAT_H /* Define to 1 if you have the header file. */ #undef HAVE_SYS_TYPES_H /* Define to 1 if you have the header file. */ #undef HAVE_UNISTD_H /* Name of package */ #undef PACKAGE /* Define to the address where bug reports for this package should be sent. */ #undef PACKAGE_BUGREPORT /* Define to the full name of this package. */ #undef PACKAGE_NAME /* Define to the full name and version of this package. */ #undef PACKAGE_STRING /* Define to the one symbol short name of this package. */ #undef PACKAGE_TARNAME /* Define to the version of this package. */ #undef PACKAGE_VERSION /* Define to the minor version (aka patch level) of this package. */ #undef PATCH_LEVEL /* If using the C implementation of alloca, define if you know the direction of stack growth for your system; otherwise it will be automatically deduced at runtime. STACK_DIRECTION > 0 => grows toward higher addresses STACK_DIRECTION < 0 => grows toward lower addresses STACK_DIRECTION = 0 => direction of growth unknown */ #undef STACK_DIRECTION /* Define to 1 if you have the ANSI C header files. */ #undef STDC_HEADERS /* Version number of package */ #undef VERSION /* Define to empty if `const' does not conform to ANSI C. */ #undef const chordii-4.3+repack/src/iso.c0000644000175000017500000002150111316715175017055 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include void print_re_encode () { printf("%% iso.ps reencodeing of ISO 8859-1 8-bit french characters\n"); printf("%%\n"); printf("/reencodedict 5 dict def\n"); printf("/ReEncode\n"); printf(" { reencodedict begin\n"); printf(" /newencoding exch def\n"); printf(" /newfontname exch def\n"); printf(" /basefontname exch def\n"); printf("\n"); printf(" /basefontdict basefontname findfont def\n"); printf("\n"); printf(" /newfont basefontdict maxlength dict def\n"); printf("\n"); printf(" basefontdict\n"); printf(" { exch dup dup /FID ne exch /Encoding ne and\n"); printf(" { exch newfont 3 1 roll put }\n"); printf(" { pop pop }\n"); printf(" ifelse\n"); printf(" } forall\n"); printf(" newfont /FontName newfontname put\n"); printf(" newfont /Encoding newencoding put\n"); printf(" newfontname newfont definefont pop\n"); printf(" end\n"); printf(" } def\n"); printf("\n"); printf("/ISO 256 array def\n"); printf("\n"); printf("0 1 255 { ISO exch /.notdef put } for\n"); printf("ISO\n"); printf("\n"); printf(" dup 8#040 /space put\n"); printf(" dup 8#041 /exclam put\n"); printf(" dup 8#042 /quotedbl put\n"); printf(" dup 8#043 /numbersign put\n"); printf(" dup 8#044 /dollar put\n"); printf(" dup 8#045 /percent put\n"); printf(" dup 8#046 /ampersand put\n"); printf(" dup 8#047 /quotesingle put\n"); printf(" dup 8#050 /parenleft put\n"); printf(" dup 8#051 /parenright put\n"); printf(" dup 8#052 /asterisk put\n"); printf(" dup 8#053 /plus put\n"); printf(" dup 8#054 /comma put\n"); printf(" dup 8#055 /hyphen put\n"); printf(" dup 8#056 /period put\n"); printf(" dup 8#057 /slash put\n"); printf(" dup 8#060 /zero put\n"); printf(" dup 8#061 /one put\n"); printf(" dup 8#062 /two put\n"); printf(" dup 8#063 /three put\n"); printf(" dup 8#064 /four put\n"); printf(" dup 8#065 /five put\n"); printf(" dup 8#066 /six put\n"); printf(" dup 8#067 /seven put\n"); printf(" dup 8#070 /eight put\n"); printf(" dup 8#071 /nine put\n"); printf(" dup 8#072 /colon put\n"); printf(" dup 8#073 /semicolon put\n"); printf(" dup 8#074 /less put\n"); printf(" dup 8#075 /equal put\n"); printf(" dup 8#076 /greater put\n"); printf(" dup 8#077 /question put\n"); printf(" dup 8#100 /at put\n"); printf(" dup 8#101 /A put\n"); printf(" dup 8#102 /B put\n"); printf(" dup 8#103 /C put\n"); printf(" dup 8#104 /D put\n"); printf(" dup 8#105 /E put\n"); printf(" dup 8#106 /F put\n"); printf(" dup 8#107 /G put\n"); printf(" dup 8#110 /H put\n"); printf(" dup 8#111 /I put\n"); printf(" dup 8#112 /J put\n"); printf(" dup 8#113 /K put\n"); printf(" dup 8#114 /L put\n"); printf(" dup 8#115 /M put\n"); printf(" dup 8#116 /N put\n"); printf(" dup 8#117 /O put\n"); printf(" dup 8#120 /P put\n"); printf(" dup 8#121 /Q put\n"); printf(" dup 8#122 /R put\n"); printf(" dup 8#123 /S put\n"); printf(" dup 8#124 /T put\n"); printf(" dup 8#125 /U put\n"); printf(" dup 8#126 /V put\n"); printf(" dup 8#127 /W put\n"); printf(" dup 8#130 /X put\n"); printf(" dup 8#131 /Y put\n"); printf(" dup 8#132 /Z put\n"); printf(" dup 8#133 /bracketleft put\n"); printf(" dup 8#134 /backslash put\n"); printf(" dup 8#135 /bracketright put\n"); printf(" dup 8#136 /asciicircum put\n"); printf(" dup 8#137 /underscore put\n"); printf(" dup 8#140 /grave put\n"); printf(" dup 8#141 /a put\n"); printf(" dup 8#142 /b put\n"); printf(" dup 8#143 /c put\n"); printf(" dup 8#144 /d put\n"); printf(" dup 8#145 /e put\n"); printf(" dup 8#146 /f put\n"); printf(" dup 8#147 /g put\n"); printf(" dup 8#150 /h put\n"); printf(" dup 8#151 /i put\n"); printf(" dup 8#152 /j put\n"); printf(" dup 8#153 /k put\n"); printf(" dup 8#154 /l put\n"); printf(" dup 8#155 /m put\n"); printf(" dup 8#156 /n put\n"); printf(" dup 8#157 /o put\n"); printf(" dup 8#160 /p put\n"); printf(" dup 8#161 /q put\n"); printf(" dup 8#162 /r put\n"); printf(" dup 8#163 /s put\n"); printf(" dup 8#164 /t put\n"); printf(" dup 8#165 /u put\n"); printf(" dup 8#166 /v put\n"); printf(" dup 8#167 /w put\n"); printf(" dup 8#170 /x put\n"); printf(" dup 8#171 /y put\n"); printf(" dup 8#172 /z put\n"); printf(" dup 8#173 /braceleft put\n"); printf(" dup 8#174 /bar put\n"); printf(" dup 8#175 /braceright put\n"); printf(" dup 8#176 /asciitilde put\n"); printf(" dup 8#241 /exclamdown put\n"); printf(" dup 8#242 /cent put\n"); printf(" dup 8#243 /sterling put\n"); printf(" dup 8#244 /currency put\n"); printf(" dup 8#245 /yen put\n"); printf(" dup 8#246 /bar put\n"); printf(" dup 8#247 /section put\n"); printf(" dup 8#250 /dieresis put\n"); printf(" dup 8#251 /copyright put\n"); printf(" dup 8#252 /ordfeminine put\n"); printf(" dup 8#253 /guillemotleft put\n"); printf(" dup 8#254 /.notdef put\n"); printf(" dup 8#255 /endash put\n"); printf(" dup 8#256 /registered put\n"); printf(" dup 8#257 /tilde put\n"); printf(" dup 8#260 /ring put\n"); printf(" dup 8#261 /.notdef put\n"); printf(" dup 8#262 /.notdef put\n"); printf(" dup 8#263 /.notdef put\n"); printf(" dup 8#264 /acute put\n"); printf(" dup 8#265 /.notdef put\n"); printf(" dup 8#266 /paragraph put\n"); printf(" dup 8#267 /.notdef put\n"); printf(" dup 8#270 /cedilla put\n"); printf(" dup 8#271 /.notdef put\n"); printf(" dup 8#272 /ordmasculine put\n"); printf(" dup 8#273 /guillemotright put\n"); printf(" dup 8#274 /.notdef put\n"); printf(" dup 8#275 /circumflex put\n"); printf(" dup 8#276 /dotlessi put\n"); printf(" dup 8#277 /questiondown put\n"); printf(" dup 8#300 /Agrave put\n"); printf(" dup 8#301 /Aacute put\n"); printf(" dup 8#302 /Acircumflex put\n"); printf(" dup 8#303 /Atilde put\n"); printf(" dup 8#304 /Adieresis put\n"); printf(" dup 8#305 /Aring put\n"); printf(" dup 8#306 /AE put\n"); printf(" dup 8#307 /Ccedilla put\n"); printf(" dup 8#310 /Egrave put\n"); printf(" dup 8#311 /Eacute put\n"); printf(" dup 8#312 /Ecircumflex put\n"); printf(" dup 8#313 /Edieresis put\n"); printf(" dup 8#314 /Igrave put\n"); printf(" dup 8#315 /Iacute put\n"); printf(" dup 8#316 /Icircumflex put\n"); printf(" dup 8#317 /Idieresis put\n"); printf(" dup 8#320 /.notdef put\n"); printf(" dup 8#321 /Ntilde put\n"); printf(" dup 8#322 /Ograve put\n"); printf(" dup 8#323 /Oacute put\n"); printf(" dup 8#324 /Ocircumflex put\n"); printf(" dup 8#325 /Otilde put\n"); printf(" dup 8#326 /Odieresis put\n"); printf(" dup 8#327 /.notdef put\n"); printf(" dup 8#330 /Oslash put\n"); printf(" dup 8#331 /Ugrave put\n"); printf(" dup 8#332 /Uacute put\n"); printf(" dup 8#333 /Ucircumflex put\n"); printf(" dup 8#334 /Udieresis put\n"); printf(" dup 8#335 /.notdef put\n"); printf(" dup 8#336 /.notdef put\n"); printf(" dup 8#337 /germandbls put\n"); printf(" dup 8#340 /agrave put\n"); printf(" dup 8#341 /aacute put\n"); printf(" dup 8#342 /acircumflex put\n"); printf(" dup 8#343 /atilde put\n"); printf(" dup 8#344 /adieresis put\n"); printf(" dup 8#345 /aring put\n"); printf(" dup 8#346 /ae put\n"); printf(" dup 8#347 /ccedilla put\n"); printf(" dup 8#350 /egrave put\n"); printf(" dup 8#351 /eacute put\n"); printf(" dup 8#352 /ecircumflex put\n"); printf(" dup 8#353 /edieresis put\n"); printf(" dup 8#354 /igrave put\n"); printf(" dup 8#355 /iacute put\n"); printf(" dup 8#356 /icircumflex put\n"); printf(" dup 8#357 /idieresis put\n"); printf(" dup 8#360 /.notdef put\n"); printf(" dup 8#361 /ntilde put\n"); printf(" dup 8#362 /ograve put\n"); printf(" dup 8#363 /oacute put\n"); printf(" dup 8#364 /ocircumflex put\n"); printf(" dup 8#365 /otilde put\n"); printf(" dup 8#366 /odieresis put\n"); printf(" dup 8#367 /.notdef put\n"); printf(" dup 8#370 /oslash put\n"); printf(" dup 8#371 /ugrave put\n"); printf(" dup 8#372 /uacute put\n"); printf(" dup 8#373 /ucircumflex put\n"); printf(" dup 8#374 /udieresis put\n"); printf(" dup 8#375 /ydieresis put\n"); printf(" dup 8#376 /.notdef put\n"); printf(" pop\n"); printf("\n"); printf("\n"); } void re_encode (font) char *font; { printf("/%s /%s ISO ReEncode\n", font, font); } chordii-4.3+repack/src/Makefile.in0000644000175000017500000003627611316726527020206 0ustar gideonstargideonstar# Makefile.in generated by automake 1.11 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; 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Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include "chordii.h" struct toc_struct *so_toc = NULL; struct toc_struct *cur_toc_entry; extern char title1[]; extern int v_pages; extern int pagination; extern float scale; extern int number_all; extern int song_pages; extern int text_size; extern int vpos; extern float top, bottom, l_margin, width; struct toc_struct *toc_ptr; struct sub_title_struct **sub_ptr_handle; /* --------------------------------------------------------------------------------*/ void print_toc_entry (toc_ptr) struct toc_struct *toc_ptr; { struct sub_title_struct *sub_ptr; fprintf (stderr, "+++\n"); if ( toc_ptr != NULL ) { fprintf (stderr, "*%s\n %d\n", toc_ptr->title, toc_ptr->page_label); sub_ptr = toc_ptr->sub_titles; while (sub_ptr != NULL) { fprintf(stderr, "%s\n", sub_ptr->sub_title); sub_ptr = sub_ptr->next_sub; } } else fprintf (stderr, "Pointer is NULL\n"); fprintf (stderr, "---\n"); } /* --------------------------------------------------------------------------------*/ void print_toc_entries() { struct toc_struct *dummy; dummy=so_toc; while (dummy != NULL ) { print_toc_entry (dummy); dummy=dummy->next; } } /* --------------------------------------------------------------------------------*/ void add_title_to_toc (title, page_label) char *title; int page_label; { struct toc_struct **prev_ptr_handle, *new_toc_entry; static struct toc_struct dummy_toc; debug ("start of add_title_to_toc"); new_toc_entry = (struct toc_struct *)malloc (sizeof (dummy_toc)); new_toc_entry->page_label=page_label; new_toc_entry->title = malloc (strlen (title)+1); new_toc_entry->sub_titles = NULL; sub_ptr_handle = &new_toc_entry->sub_titles; strcpy (new_toc_entry->title, title); toc_ptr = so_toc; prev_ptr_handle = &so_toc; while ( ( toc_ptr != NULL) && (strcmp (title, toc_ptr->title) >= 0 )) { prev_ptr_handle = &(toc_ptr->next); toc_ptr=toc_ptr->next; } new_toc_entry->next = toc_ptr; *prev_ptr_handle = new_toc_entry; cur_toc_entry = new_toc_entry; } /* --------------------------------------------------------------------------------*/ void add_subtitle_to_toc (sub_title) char *sub_title; { static struct sub_title_struct dummy_sub_title_struct; struct sub_title_struct *new_sub = NULL; char *tmp_string; debug ("start of add_subtitle_to_toc"); new_sub = (struct sub_title_struct *)malloc (sizeof (dummy_sub_title_struct)); tmp_string = (char *)malloc (strlen (sub_title) + 1); new_sub->sub_title = tmp_string; new_sub->next_sub = NULL; strcpy (new_sub->sub_title, sub_title); *sub_ptr_handle = new_sub; sub_ptr_handle = &(new_sub->next_sub); new_sub = NULL; } /* --------------------------------------------------------------------------------*/ void build_ps_toc() { struct toc_struct *toc_ptr; struct sub_title_struct *sub_ptr; debug("Debut de build_ps_toc"); /* print_toc_entries(); */ strcpy (title1, "Index"); if (v_pages % pagination) do_end_of_page(TRUE); if (pagination == 4) { pagination = 1; scale = 1.0; } v_pages=0; do_start_of_page(); number_all= FALSE; song_pages= 0; set_text_font (text_size+10); use_text_font(); printf ("("); ps_puts (title1); printf (") dup stringwidth pop 2 div\n"); printf ("%f 2 div exch sub %d moveto\n", width, vpos); printf ("show\n"); advance(text_size); toc_ptr = so_toc; while (toc_ptr != NULL) { /* title */ if ( vpos < bottom + 3 * text_size) { advance (vpos); song_pages= 0; } advance(text_size+8); set_text_font(text_size + 5); use_text_font(); printf("72 %d moveto\n", vpos); printf("("); debug ("Setting title\n"); ps_puts(toc_ptr->title); printf(") show\n"); printf("500 %d moveto\n", vpos); debug ("Setting page_label\n"); printf("(%d) show\n", toc_ptr->page_label); /* sub titles */ sub_ptr=toc_ptr->sub_titles; while (sub_ptr != NULL) { advance(text_size); set_text_font(text_size); use_text_font(); printf ("108 %d moveto\n", vpos); printf("("); ps_puts(sub_ptr->sub_title); printf(") show\n"); sub_ptr = sub_ptr->next_sub; } toc_ptr= toc_ptr->next; } vpos = vpos - text_size - 5; set_text_font (text_size); } /* --------------------------------------------------------------------------------*/ chordii-4.3+repack/src/chordii.c0000644000175000017500000010515711316715175017716 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include "chordii.h" static FILE *source_fd; char text_line[MAXLINE], /* Lyrics Buffer */ chord[MAXTOKEN], /* Buffer for the name of the chord */ title1[MAXLINE], /* Holds the first title line */ source[MAXTOKEN], directive[MAXLINE], /* Buffer for the directive */ i_input, /* Input line pointer */ mesgbuf[MAXTOKEN], *mesg, *text_font, *rt_text_font, *rc_text_font, /* font for text */ *chord_font, *rt_chord_font, *rc_chord_font, /* font for chord */ *mono_font = MONOSPACED_FONT, /* non-proprotional font for tabs */ *current_file, *chord_line[MAXLINE], *command_name; int c, /* Current character in input file */ i_chord, /* Index to 'chord' */ i_directive, /* Index to 'directive' */ i_text, /* Index to 'text_line' */ left_foot_even = -1, /* 0 for even page numbers on the right */ /* 1 for even page numbers on the left */ no_grid, rt_no_grid, rc_no_grid, page_label = 0, /* physical page number */ lpage_label = 1, /* logical page number */ pagination = 1, /* virtual pages per physical pages */ transpose = 0, /* transposition value */ vpos, /* Current PostScript position, in points */ col_vpos, /* Beginning height of column, in points */ min_col_vpos, /* lowest colums ending */ hpos, h_offset = 0, /* horizontal offset for multi-col output */ start_of_chorus, /* Vertical positions of the chorus */ end_of_chorus, chord_size, rt_chord_size, rc_chord_size, /* font size for 'chord_font' */ cur_text_size = 0, text_size, rt_text_size, rc_text_size, /* font size for 'text_font' */ grid_size, rt_grid_size, rc_grid_size, n_pages = 0, /* total physical page counter */ v_pages = 1, /* virtual pages */ n_lines = 1, /* line number in input file */ max_columns = 1, /* number of columns */ n_columns = 0, /* counter of columns */ song_pages = 1, /* song page counter */ titles_flush = 1, /* center */ blank_space = 0; /* consecutive blank line counter */ int /* BOOLEANS */ number_all = FALSE, /* number the first page (set with -p 1) */ in_chord = FALSE, /* Booleans indicating parsing status */ lyrics_only = FALSE, dump_only = FALSE, in_tab = FALSE, postscript_dump = FALSE, auto_space = FALSE, /* applies lyrics_only when no chords */ need_soc = FALSE, do_toc = FALSE, no_easy_grids = FALSE, i_chord_ov, /* Overflow Booleans */ i_directive_ov = FALSE, i_text_ov = FALSE, in_directive = FALSE, in_chordrc = FALSE, first_time_in_chordrc = TRUE, in_chorus = FALSE, has_directive = FALSE, has_chord = FALSE, title1_found = FALSE, number_logical = FALSE, debug_mode = FALSE; float chord_inc, scale = 1.0, /* Current scale factor */ rotation = 0.0, /* Current rotation */ margin, top, bottom, height, width; #define MAXPAGENAME 6 typedef struct { char name[MAXPAGENAME]; float height; float width; } t_pagespec; t_pagespec pagespecs[] = { { "letter", 792.0, 612.0 }, { "us", 792.0, 612.0 }, { "a4", 842.0, 595.0 }, }; t_pagespec *pagespec = pagespecs, /* current */ *rt_pagespec = NULL, /* from command line */ *rc_pagespec = NULL; /* from chordrc */ extern int nb_chord, first_ptr; extern struct chord_struct *so_chordtab; extern struct toc_struct *so_toc ; extern char *optarg; extern int optind, opterr; /* --------------------------------------------------------------------------------*/ t_pagespec *pagetype(name) char *name; { t_pagespec *t = pagespecs; name = tolower_str(name); if ( name && *name ) { while ( t < pagespecs+(sizeof(pagespecs)/sizeof(t_pagespec)) ) { if ( !strncmp(name, t->name, MAXPAGENAME) ) { break; } t++; } if ( t >= pagespecs+(sizeof(pagespecs)/sizeof(t_pagespec)) ) { error("unrecognized page type"); t = pagespecs; } } return t; } /* --------------------------------------------------------------------------------*/ void ps_fputc(fd, c) FILE *fd; int c; { if (c >128) { fprintf (fd, "\\%o", c); } else switch ((char)c) { case ')' : case '(' : case '\\' : fprintf (fd, "\\%c", c); break; default: fprintf (fd, "%c", c); } } /* --------------------------------------------------------------------------------*/ void ps_fputs(fd, string) FILE *fd; char *string; { int i; /* sprintf (mesg, "ps_fputs:%s ",string); debug(mesg); */ for (i= 0; string[i] != '\0'; i++) ps_fputc (fd, string[i]); } /* --------------------------------------------------------------------------------*/ void ps_puts(string) char *string; { ps_fputs(stdout, string); } /* --------------------------------------------------------------------------------*/ void set_text_font(size) int size; { #define MONO_SIZE_DECR 2 /* TABsize is smaller by this nb of points */ if (( size != cur_text_size)) { printf ("/TEXT_FONT { /%s findfont %d scalefont } def\n", text_font, size); re_encode (text_font); printf ("/MONO_FONT { /%s findfont %d scalefont } def\n", mono_font, size - MONO_SIZE_DECR); re_encode (mono_font); cur_text_size= size; /* sprintf(mesg, "Changing text size to %d", size); debug (mesg); */ } #undef MONO_SIZE_DECR } /* --------------------------------------------------------------------------------*/ void use_text_font() { if (! in_tab) printf ("TEXT_FONT setfont\n"); else printf ("MONO_FONT setfont\n"); } /* --------------------------------------------------------------------------------*/ void use_mono_font() { printf ("MONO_FONT setfont\n"); } /* --------------------------------------------------------------------------------*/ void do_translate(vert, horiz) float vert, horiz; { printf ("%f %f translate\n", vert , horiz ); debug ("changing translation"); } /* --------------------------------------------------------------------------------*/ void init_page() /* common to do_start_of_page and to init_ps */ { if (v_pages == 1) { n_pages++; page_label++; printf ("%%%%Page: \"%d\" %d\n",n_pages, n_pages); printf ("%%%%BeginPageSetup\n"); if (pagination > 1) { printf ("gsave\n"); printf ("%f %f scale\n", scale, scale); printf ("%f rotate\n",rotation); } printf ("%%%%EndPageSetup\n"); } if (pagination== 4) { if (v_pages== 1) do_translate(margin/2, height + 3*(bottom/scale)/4); else if (v_pages== 2) do_translate(width, 0.0); else if (v_pages== 3) do_translate(-width, -height); else if (v_pages== 4) do_translate(width, 0.0); } if (pagination== 2) { if (v_pages == 1) { do_translate ((bottom/scale)/2, -(height + (width/scale - height)/2 )); } else if (v_pages == 2) do_translate(width, 0.0); } /* draw a box around virtual page */ /* printf ("1 setlinewidth\n"); printf ("0 setgray\n"); printf ("newpath\n"); printf ("%d %d moveto\n", 0, 0); printf ("%d %d lineto\n", (int)width, 0); printf ("%d %d lineto\n", (int)width, (int)height); printf ("%d %d lineto\n", 0, (int)height); printf ("%d %d lineto\n", 0, 0); printf ("stroke\n"); */ } /* --------------------------------------------------------------------------------*/ void do_start_of_page() /*logical page ! */ { v_pages++; lpage_label++; init_page(); vpos = top; min_col_vpos = top; hpos= margin; n_columns = 0; song_pages++; set_text_font(text_size); /*28/4/94 ML */ if ( in_chorus ) { start_of_chorus = vpos; } } /* --------------------------------------------------------------------------------*/ void use_chord_font() { printf ("CHORD_FONT setfont\n"); } /* --------------------------------------------------------------------------------*/ void set_chord_font() { printf ("/CHORD_FONT { /%s findfont %d scalefont } def\n", chord_font, chord_size); re_encode (chord_font); } /* --------------------------------------------------------------------------------*/ void do_help (command) char *command; { fprintf (stderr, "Usage: %s [options] file [file ...]\n", command); fprintf (stderr, "Options:\n"); fprintf (stderr, " -A : About Chordii...\n"); fprintf (stderr, " -a : Automatic single space lines without chords\n"); fprintf (stderr, " -c n : Set chord size [9]\n"); fprintf (stderr, " -C postscript_font : Set chord font\n"); fprintf (stderr, " -D : Dumps chords definitions (PostScript)\n"); fprintf (stderr, " -d : Dumps chords definitions (Text)\n"); fprintf (stderr, " -G : Disable printing of chord grids\n"); fprintf (stderr, " -g : Don't print grids for builtin \"easy\" chords.\n"); fprintf (stderr, " -h : This message\n"); fprintf (stderr, " -i : Generates a table of contents\n"); fprintf (stderr, " -L : Even pages numbers on left\n"); fprintf (stderr, " -l : Only print lyrics\n"); fprintf (stderr, " -n : Number logical pages, not physical\n"); fprintf (stderr, " -o filename : Saves the output to file\n"); fprintf (stderr, " -p n : Starting page number [1]\n"); fprintf (stderr, " -s n : Set chord grid size [30]\n"); fprintf (stderr, " -t n : Set text size [12]\n"); fprintf (stderr, " -T postscript_font : Set text font\n"); fprintf (stderr, " -V : Print version and patchlevel\n"); fprintf (stderr, " -x n : Transpose by 'n' half-tones\n"); fprintf (stderr, " -P type : Specify page size [letter, a4 (default)]\n"); fprintf (stderr, " -2 : 2 pages per sheet\n"); fprintf (stderr, " -4 : 4 pages per sheet\n"); exit(0); } /* --------------------------------------------------------------------------------*/ void do_about () { printf("Chordii: A lyrics and chords formatting program.\n"); printf("===== \n"); printf("\n");; printf("Chordii will read an ASCII file containing the lyrics of one or many\n"); printf("songs plus chord information. Chordii will then generate a photo-ready,\n"); printf("professional looking, impress-your-friends sheet-music suitable for printing\n"); printf("on your nearest PostScript printer.\n"); printf("\n"); printf("To learn more about Chordii, look for the man page or do \"chordii -h\" for\n"); printf("the list of options.\n"); printf("\n"); printf(" --0--\n"); } /* --------------------------------------------------------------------------------*/ void do_comment(comment, style) char *comment; int style; { if (comment == NULL) { error ("Null comment."); return; } for (; *comment == ' '; comment++); /* strip leading blanks */ advance(blank_space); blank_space = 0; advance(text_size); text_line[i_text] = '\0'; use_text_font(); if (style == 1) { printf (".9 setgray\n"); printf ("%d setlinewidth\n", text_size); printf ("newpath\n"); printf ("%d %d moveto\n", hpos - 2, vpos + text_size/2 - 2); printf ("("); ps_puts(comment); printf (" ) stringwidth rlineto\n"); printf ("stroke\n"); printf ("%d %d moveto\n", hpos, vpos); printf ("0 setgray\n"); printf ("1 setlinewidth\n"); printf ("("); ps_puts(comment); printf (") show\n"); } else if (style == 2) { printf ("/"); ps_puts (chord_font); printf (" findfont %d scalefont setfont\n",text_size); printf ("%d %d moveto\n", hpos, vpos); printf ("("); ps_puts(comment); printf (") show\n"); use_text_font(); } else if (style == 3) { printf ("newpath\n"); printf ("%d %d moveto\n",hpos + 2, vpos - 2); printf ("("); ps_puts(comment); printf (") stringwidth /vdelta exch def /hdelta exch def\n"); printf ("hdelta vdelta rlineto 0 %d rlineto hdelta neg 0 rlineto closepath\n", text_size); printf ("stroke\n"); printf ("%d %d moveto\n", hpos, vpos); printf ("0 setgray\n"); printf ("("); ps_puts(comment); printf (") show\n"); } i_text = 0; } /* --------------------------------------------------------------------------------*/ void do_chorus_line() { printf ("1 setlinewidth\n"); printf ("newpath\n"); printf ("%d %d moveto\n", hpos - 10, start_of_chorus); printf ("0 %d rlineto\n", -(start_of_chorus - end_of_chorus)); printf ("closepath\n"); printf ("stroke\n"); } /* --------------------------------------------------------------------------------*/ void do_chord (i_text, chord) int i_text; char *chord; { int j; struct chord_struct *ct_ptr; if ((transpose != 0) && (strcmp(toupper_str(chord), NO_CHORD_STR))) if (do_transpose (chord) != 0) { sprintf (mesg, "Don't know how to transpose [%s]", chord); error (mesg); } for (j= i_text; chord_line[j] != NULL; j++); if (j < MAXLINE) { if (strcmp(toupper_str(chord), NO_CHORD_STR)) { ct_ptr = add_to_chordtab(chord); chord_line[j] = ct_ptr->chord->chord_name; } else chord_line[j] = NO_CHORD_STR; } } /* --------------------------------------------------------------------------------*/ void print_chord_line () { int i, j; /* Counter */ printf ("/minhpos %d def\n", hpos); for (j= 0; j 1) printf ("grestore\n"); if (! number_logical) { if (number_all) do_page_numbering(page_label); else if (song_pages > 1) do_page_numbering(song_pages); } printf ("showpage\n"); printf ("%%%%EndPage: \"%d\" %d\n",n_pages, n_pages); lpage_label += pagination-v_pages; } /* --------------------------------------------------------------------------------*/ void do_end_of_page(force_physical) int force_physical; /* Logical */ { if ((song_pages > 1) && title1_found) { set_text_font(DEF_TEXT_SIZE - 2); use_text_font(); printf ("("); ps_puts(&title1[0]); printf (") dup stringwidth pop 2 div\n"); printf ("%f 2 div exch sub %f 3 div moveto\n", width, bottom); printf ("show\n"); set_text_font(text_size); } if (number_logical) { if (number_all) do_page_numbering(lpage_label); else if (song_pages > 1) do_page_numbering(song_pages); } if ( in_chorus ) { end_of_chorus = vpos; do_chorus_line(); } if ((v_pages == pagination) || force_physical) { do_end_of_phys_page(); v_pages = 0; } n_columns = 0; min_col_vpos = top; col_vpos = top; } /* --------------------------------------------------------------------------------*/ void do_end_of_column() { if (n_columns == (max_columns-1)) { do_end_of_page(FALSE); do_start_of_page(); } else { n_columns++; if (vpos < min_col_vpos ) min_col_vpos = vpos; vpos = col_vpos; hpos = margin + (n_columns * h_offset); } } /* --------------------------------------------------------------------------------*/ void do_end_of_song() { if ((! lyrics_only && ! no_grid)) { if (min_col_vpos < vpos ) vpos = min_col_vpos; draw_chords(); } do_end_of_page(FALSE); } /* --------------------------------------------------------------------------------*/ void set_sys_def() { text_size= DEF_TEXT_SIZE; chord_size= DEF_CHORD_SIZE; grid_size = DEF_GRID_SIZE; text_font = DEF_TEXT_FONT; chord_font = DEF_CHORD_FONT; text_font = DEF_TEXT_FONT; no_grid = FALSE; n_columns = 0; max_columns = 1; dummy_kcs.chord_name[0]='\0'; } /* --------------------------------------------------------------------------------*/ void set_rc_def() { if (rc_text_size != 0) text_size = rc_text_size; if (rc_chord_size != 0) chord_size = rc_chord_size; if (rc_grid_size != 0) grid_size = rc_grid_size; if (rc_no_grid != 0) no_grid = rc_no_grid; if (rc_text_font != NULL) text_font = rc_text_font; if (rc_chord_font != NULL) chord_font = rc_chord_font; if (rc_pagespec != NULL) pagespec = rc_pagespec; } /* --------------------------------------------------------------------------------*/ void set_rt_def() { if (rt_text_size != 0) text_size = rt_text_size; if (rt_chord_size != 0) chord_size = rt_chord_size; if (rt_grid_size != 0) grid_size = rt_grid_size; if (rt_no_grid != 0) no_grid = rt_no_grid; if (rt_text_font != NULL) text_font = rt_text_font; if (rt_chord_font != NULL) chord_font = rt_chord_font; if (rt_pagespec != NULL) pagespec = rt_pagespec; } /* --------------------------------------------------------------------------------*/ void init_values() { set_sys_def(); set_rc_def(); set_rt_def(); height = pagespec->height; width = pagespec->width; top = height - 36.0; bottom = 40.0; margin = 72.0; min_col_vpos = top; /* lowest colums ending */ switch (pagination) { case 1: break; case 2: scale = (height/2 - bottom)/width; break; case 4: scale = ((height - bottom)/2)/height; break; } } /* --------------------------------------------------------------------------------*/ void do_new_song() { do_end_of_song(); nb_chord= first_ptr= 0; song_pages = 0; in_tab = FALSE; strcpy (title1, ""); do_start_of_page(); /* reset default */ init_values(); clean_known_chords(); clean_chordtab(); set_text_font(text_size); } /* --------------------------------------------------------------------------------*/ void advance(amount) int amount; { vpos = vpos - amount; /* Affect text positionning ! */ if (vpos < bottom ) { do_end_of_column(); } } /* --------------------------------------------------------------------------------*/ void print_text_line() { int i; text_line[i_text] = '\0'; for (i= 0; text_line[i] == ' '; i++); if (!((auto_space || in_tab) && !has_chord)) { advance(blank_space); blank_space = 0; advance (chord_size + 1); if ( ( text_line[i] != '\0' ) && ( vpos - text_size <= bottom)) advance (text_size); if (need_soc) { start_of_chorus = vpos + chord_size; need_soc = FALSE; } if ((! lyrics_only) && has_chord) print_chord_line(); } if ( text_line[i] == '\0') { blank_space += text_size - 2; } else { advance (blank_space); blank_space = 0; advance (text_size - 1); if (need_soc) { start_of_chorus = vpos + text_size; need_soc = FALSE; } use_text_font(); printf ("%d %d moveto\n", hpos, vpos); printf ("("); ps_puts(&text_line[0]); printf (") show\n"); } i_text = 0; i_text_ov = FALSE; /* hpos = margin; */ has_chord = FALSE; } /* --------------------------------------------------------------------------------*/ void do_title(title) char *title; { set_text_font (text_size+5); use_text_font(); switch (titles_flush) { case 0: printf ("%f %d moveto (", margin, vpos); ps_puts(title); printf (") show\n"); break; default: printf ("("); ps_puts(title); printf (") dup stringwidth pop 2 div\n"); printf ("%f 2 div exch sub %d moveto\n", width, vpos); printf ("show\n"); } vpos = vpos - text_size - 5; /* skip blanks */ while ( *title == ' ') title++; strcpy (&title1[0], title); title1_found = TRUE; set_text_font (text_size); if (do_toc && song_pages == 1) /* generate index entry */ add_title_to_toc(title, number_logical ? lpage_label : page_label); } /* --------------------------------------------------------------------------------*/ void do_subtitle(sub_title) char *sub_title; { use_text_font(); switch (titles_flush) { case 0: printf ("%f %d moveto (", margin, vpos); ps_puts(sub_title); printf (") show\n"); break; default: printf ("("); ps_puts(sub_title); printf (") dup stringwidth pop 2 div\n"); printf ("%f 2 div exch sub %d moveto\n", width , vpos); printf ("show\n"); } vpos = vpos - text_size ; if (do_toc && song_pages == 1) add_subtitle_to_toc(sub_title); } /* --------------------------------------------------------------------------------*/ void do_directive(directive) char *directive; { int i; char *command, *comment; command= tolower_str(strtok(directive, ": ")); if (!strcmp(command, "start_of_chorus") || !strcmp(command,"soc")) { /* start_of_chorus = vpos - blank_space; */ need_soc = TRUE; in_chorus = TRUE; } else if (!strcmp (command, "end_of_chorus") || !strcmp(command, "eoc")) { if ( in_chorus ) { end_of_chorus = vpos; do_chorus_line(); in_chorus = FALSE; } else error ("Not in a chorus."); } else if (!strcmp (command, "textfont") || !strcmp (command, "tf")) { if (in_chordrc) rc_text_font = strdup(strtok(NULL, ": ")); else text_font = strdup(strtok(NULL, ": ")); } else if (!strcmp (command, "chordfont") || !strcmp (command, "cf")) { if (in_chordrc) rc_chord_font = strdup(strtok(NULL, ": ")); else { chord_font = strtok(NULL, ": "); set_chord_font(); } } else if (!strcmp (command, "chordsize") || !strcmp (command, "cs")) { i = atoi(strtok(NULL, ": ")); if ( i == 0 ) error ("invalid value for chord_size"); else if (in_chordrc) rc_chord_size = i; else { chord_size = i; set_chord_font(); } } else if (!strcmp (command, "textsize") || !strcmp (command, "ts")) { i = atoi(strtok(NULL, ": ")); if ( i == 0 ) error ("invalid value for text_size"); else if (in_chordrc) rc_text_size = i; else { text_size = i; set_text_font (text_size); } } else if (!strcmp (command, "comment") || !strcmp (command, "c")) { comment = strtok(NULL, "\0"); do_comment(comment, 1); } else if (!strcmp (command, "comment_italic") || !strcmp (command, "ci")) { comment = strtok(NULL, "\0"); do_comment(comment, 2); } else if (!strcmp (command, "comment_box") || !strcmp (command, "cb")) { comment = strtok(NULL, "\0"); do_comment(comment, 3); } else if (!strcmp(command, "new_song") || !strcmp(command,"ns")) { do_new_song(); } else if (!strcmp(command, "title") || !strcmp(command,"t")) { do_title(strtok(NULL, "\0")); } else if (!strcmp(command, "subtitle") || !strcmp(command,"st")) { do_subtitle(strtok(NULL, "\0")); } else if (!strcmp(command, "define") || !strcmp(command,"d")) { do_define_chord(); } else if (!strcmp(command, "no_grid") || !strcmp(command,"ng")) { if (in_chordrc) rc_no_grid = TRUE; else no_grid = TRUE; } else if (!strcmp(command, "grid") || !strcmp(command,"g")) { if (in_chordrc) rc_no_grid = FALSE; else no_grid = FALSE; } else if (!strcmp(command, "new_page") || !strcmp(command,"np")) { do_end_of_page(FALSE); do_start_of_page(); } else if (!strcmp(command, "start_of_tab") || !strcmp(command,"sot")) { if ( in_tab ) error ("Already in a tablature !"); else in_tab = TRUE; } else if (!strcmp(command, "end_of_tab") || !strcmp(command,"eot")) { if (! in_tab ) error ("Not in a tablature !") ; else in_tab = FALSE; } else if (!strcmp(command, "column_break") || !strcmp(command,"colb")) { do_end_of_column(); } else if (!strcmp(command, "columns") || !strcmp(command,"col")) { i = atoi(strtok(NULL, ": ")); if ( i <= 1 ) error ("invalid value for number of columns"); else { max_columns = i; n_columns = 0; col_vpos = vpos; h_offset = (int)(( width - margin) / max_columns); } } else if (!strcmp(command, "new_physical_page") || !strcmp(command,"npp")) { do_end_of_page(TRUE); do_start_of_page(); } else if (!strcmp(command, "titles")) { comment = strtok(NULL, ": "); if (!strcmp(comment, "left")) titles_flush = 0; else if (!strcmp(comment, "center") || !strcmp(comment, "centre")) titles_flush = 1; } else if (!strcmp(command, "pagetype")) { if (!in_chordrc) error("{pagetype} may not be used inside songs"); rc_pagespec = pagetype(strtok(NULL, ": ")); } else { sprintf (mesg, "Invalid Directive : [%s]", command); error(mesg); has_directive = FALSE; } } /* --------------------------------------------------------------------------------*/ void put_in_string(array, p_index, c, max_index, p_ov_flag) char array[MAXLINE]; int *p_index; int c; int max_index; int *p_ov_flag; { if (*p_index < max_index) array[(*p_index)++] = (char) c; else { if (!*p_ov_flag) { error ("Buffer Overflow"); *p_ov_flag = TRUE; } } } /* --------------------------------------------------------------------------------*/ void do_eol() { if ( in_directive ) error ("Line ends while in a directive !"); if ( in_chord) error ("Line ends while in a chord !"); if (has_directive == FALSE) { if (in_chordrc) { if (strcmp(text_line, "\0")) error("line is NOT a directive"); } else if (! in_tab || ! lyrics_only) print_text_line(); } else has_directive = FALSE; n_lines++; i_input = 0; in_directive = FALSE; in_chord = FALSE; i_text = 0; i_text_ov = FALSE; text_line[0]='\0'; } /* --------------------------------------------------------------------------------*/ void process_file(source_fd) FILE *source_fd; { /*debug("start of process_file");*/ n_lines = 0; while ( (c= getc(source_fd)) != EOF) { i_input++; switch ((char)c) { case '[': if (! in_tab) { if ( in_chord ) error("Opening a chord within a chord!"); else in_chord = TRUE; i_chord = 0; } else put_in_string(text_line, &i_text, c, MAXLINE, &i_text_ov); break; case ']': if (! in_tab) { if ( in_chord ) { in_chord = FALSE; chord[i_chord]= '\0'; do_chord(i_text, &chord[0]); has_chord = TRUE; i_chord = 0; i_chord_ov = FALSE; } else error("']' found with no matching '['"); } else put_in_string(text_line, &i_text, c, MAXLINE, &i_text_ov); break; case '{': in_directive = TRUE; i_directive = 0; has_directive = TRUE; break; case '}': if ( in_directive) { in_directive = FALSE; directive[i_directive]= '\0'; while (1) { c = getc(source_fd); if (c == '\n' || c == -1) break; } i_input = 0; do_directive(&directive[0]); has_directive = FALSE; n_lines++; i_directive = 0; i_directive_ov = FALSE; } else error("'}' found with no matching '{'"); break; case '\n': do_eol(); break; case '(': case ')': if (in_directive) { put_in_string(directive, &i_directive, c, MAXTOKEN, &i_directive_ov); break; } else if (in_chord) /* allow parens in chord names */ { put_in_string (chord, &i_chord, c, CHORD_NAME_SZ, &i_chord_ov); break; } else { put_in_string (text_line, &i_text, c, MAXLINE, &i_text_ov); break; } /* This case HAS to be the last before the default statement !!! */ case '#': if (i_input == 1) { while (1) { c = getc(source_fd); if (c == '\n' || c == -1) break; } n_lines++; i_input = 0; break; } default : if (in_chord ) { if ( c != ' ' ) { put_in_string(chord, &i_chord, c, CHORD_NAME_SZ, &i_chord_ov); } } else if (in_directive) { put_in_string(directive, &i_directive, c, MAXTOKEN, &i_directive_ov); } else { put_in_string(text_line, &i_text, c, MAXLINE, &i_text_ov); } break; } } if (i_input != 0 ) do_eol(); if (! in_chordrc) print_text_line(); } /* --------------------------------------------------------------------------------*/ /* read the file $HOME/.chordrc as a set of directive */ void read_chordrc() { char chordrc[MAXTOKEN]; FILE *chordrc_fd; int n_lines_save; char *env_var = getenv("CHORDIIRC"); if (!env_var) env_var = getenv("CHORDRC"); if (env_var) { strcpy (chordrc, env_var); } else if ( (env_var = getenv("HOME")) ) { strcpy (chordrc, env_var); strcat (chordrc,"/.chordrc\0"); } else /* Windows, most likely. */ { strcpy (chordrc, "/chordrc\0"); } current_file = chordrc; chordrc_fd = fopen (chordrc, "r"); if (chordrc_fd != NULL) { n_lines_save= n_lines; n_lines= 1; in_chordrc = TRUE; process_file(chordrc_fd); in_chordrc = FALSE; n_lines= n_lines_save; fclose(chordrc_fd); } current_file = &source[0]; first_time_in_chordrc = FALSE; } /* --------------------------------------------------------------------------------*/ int main(argc, argv) int argc; char **argv; { int c,i; mesg = mesgbuf; /* Option Parsing */ command_name= argv[0]; while ((c = getopt(argc, argv, "aAc:C:dDgGhilLno:p:P:s:t:T:Vx:24")) != -1) switch (c) { case 'd': dump_only = TRUE; break; case 'D': dump_only = TRUE; postscript_dump = TRUE; break; case 'c': i = atoi (optarg); if ( i == 0 ) error_rt("invalid value for chord_size"); else rt_chord_size = i; break; case 'C': rt_chord_font = optarg; break; case 'h': do_help(argv[0]); break; case 't': i = atoi (optarg); if ( i == 0 ) error_rt("invalid value for text_size"); else rt_text_size= i; break; case 'T': rt_text_font = optarg; break; case 'x': i = atoi (optarg); if ( i == 0 ) error_rt("invalid value for transposition"); else transpose = i; break; case 's': i = atoi (optarg); if ( i == 0 ) error_rt("invalid value for grid_size"); else rt_grid_size = i; break; case 'g': no_easy_grids = TRUE; break; case 'G': rt_no_grid = TRUE; break; case 'l': lyrics_only= TRUE; break; case 'n': number_logical = TRUE; break; case 'V': print_version(); exit(0); break; case '2': pagination= 2; rotation= 90.0; break; case '4': pagination= 4; break; case 'i': /* generate in index */ do_toc= TRUE; number_all = TRUE; break; case 'a': auto_space= TRUE; break; case 'p': i = atoi (optarg); if ( i == 0 ) error_rt("invalid value for initial page number"); else { page_label = i; number_all = TRUE; } break; case 'L': left_foot_even = 0; number_all= TRUE; break; case 'o': if ( freopen(optarg, "w", stdout) == NULL) { fprintf (stderr, "Unable to open \"%s\" for output\n", optarg); exit(1); } break; case 'A': do_about(); exit(0); break; case 'P': rt_pagespec = pagetype(optarg); break; case '?': do_help(argv[0]); break; } /* Is there anything? */ if (argc == 1) do_help(argv[0]); /* Is there input? */ if ((optind == argc) && isatty(0) && !dump_only) { fprintf (stderr, "Error: Chordii does not expect you to type the song on your keyboard.\n"); fprintf (stderr, "Please either specify an input filename on the command line\n"); fprintf (stderr, "or have the input redirected or piped in.\n"); fprintf (stderr, "Examples:\n"); fprintf (stderr, " $ chordii my_song.cho > myfile.ps\n"); fprintf (stderr, " $ chordii < mysong.cho > myfile.ps\n"); fprintf (stderr, "Do \"chordii -h\" to learn about Chordii's options\n"); exit(1); } /* Is there output? */ if (isatty(1) && (!dump_only || postscript_dump)) /* 1 == stdout */ { fprintf (stderr, "Error: Chordii will not send PostScript to your terminal.\n"); fprintf (stderr, "Please either redirect (>) or pipe (|) the output.\n"); fprintf (stderr, "Examples:\n"); fprintf (stderr, " $ chordii my_song.cho > myfile.ps\n"); fprintf (stderr, " $ chordii my_song.cho | lpr\n"); exit(1); } /* File Processing */ if (dump_only) { dump_chords(postscript_dump); exit(0); } init_known_chords(); read_chordrc(); init_values(); init_ps(); chord_inc = chord_size * 1.5; for ( ; optind < argc; optind++ ) { strcpy(source, argv[optind]); read_input_file(source, source_fd); if (optind < argc - 1) do_new_song(); } do_end_of_song(); if (do_toc) /* generate index page */ { build_ps_toc(); do_end_of_page(FALSE); } if (v_pages != 0) { do_end_of_phys_page(); } printf ("%%%%Trailer\n"); printf ("%%%%Pages: %d 1\n", n_pages); printf ("%%%%DocumentFonts: %s %s %s\n", text_font, chord_font, mono_font); printf ("%%%%EOF\n"); exit (0); return(0); } chordii-4.3+repack/src/getopt.c0000644000175000017500000005075011316715175017575 0ustar gideonstargideonstar/* Getopt for GNU. NOTE: getopt is now part of the C library, so if you don't know what "Keep this file name-space clean" means, talk to roland@gnu.ai.mit.edu before changing it! Copyright (C) 1987, 88, 89, 90, 91, 92, 1993 Free Software Foundation, Inc. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */ /* NOTE!!! AIX requires this to be the first thing in the file. Do not put ANYTHING before it! */ #if !defined (__GNUC__) && defined (_AIX) #pragma alloca #endif #ifdef HAVE_CONFIG_H #include "config.h" #endif #ifdef HAVE_STRING_H #include #endif #ifdef __GNUC__ #define alloca __builtin_alloca #else /* not __GNUC__ */ #if defined (HAVE_ALLOCA_H) || (defined(sparc) && (defined(sun) || (!defined(USG) && !defined(SVR4) && !defined(__svr4__)))) || defined(__sgi) #include #else #ifndef _AIX char *alloca (); #endif #endif /* alloca.h */ #endif /* not __GNUC__ */ /* #if !__STDC__ && !defined(const) && IN_GCC */ #if !__STDC__ #define const #endif /* This tells Alpha OSF/1 not to define a getopt prototype in . */ #ifndef _NO_PROTO #define _NO_PROTO #endif #include /* Comment out all this code if we are using the GNU C Library, and are not actually compiling the library itself. This code is part of the GNU C Library, but also included in many other GNU distributions. Compiling and linking in this code is a waste when using the GNU C library (especially if it is a shared library). Rather than having every GNU program understand `configure --with-gnu-libc' and omit the object files, it is simpler to just do this in the source for each such file. */ #if defined (_LIBC) || !defined (__GNU_LIBRARY__) /* This needs to come after some library #include to get __GNU_LIBRARY__ defined. */ #ifdef __GNU_LIBRARY__ #undef alloca /* Don't include stdlib.h for non-GNU C libraries because some of them contain conflicting prototypes for getopt. */ #include #else /* Not GNU C library. */ #define __alloca alloca #endif /* GNU C library. */ /* If GETOPT_COMPAT is defined, `+' as well as `--' can introduce a long-named option. Because this is not POSIX.2 compliant, it is being phased out. */ /* #define GETOPT_COMPAT */ /* This version of `getopt' appears to the caller like standard Unix `getopt' but it behaves differently for the user, since it allows the user to intersperse the options with the other arguments. As `getopt' works, it permutes the elements of ARGV so that, when it is done, all the options precede everything else. Thus all application programs are extended to handle flexible argument order. Setting the environment variable POSIXLY_CORRECT disables permutation. Then the behavior is completely standard. GNU application programs can use a third alternative mode in which they can distinguish the relative order of options and other arguments. */ #include "getopt.h" /* For communication from `getopt' to the caller. When `getopt' finds an option that takes an argument, the argument value is returned here. Also, when `ordering' is RETURN_IN_ORDER, each non-option ARGV-element is returned here. */ char *optarg = 0; /* Index in ARGV of the next element to be scanned. This is used for communication to and from the caller and for communication between successive calls to `getopt'. On entry to `getopt', zero means this is the first call; initialize. When `getopt' returns EOF, this is the index of the first of the non-option elements that the caller should itself scan. Otherwise, `optind' communicates from one call to the next how much of ARGV has been scanned so far. */ /* XXX 1003.2 says this must be 1 before any call. */ int optind = 0; /* The next char to be scanned in the option-element in which the last option character we returned was found. This allows us to pick up the scan where we left off. If this is zero, or a null string, it means resume the scan by advancing to the next ARGV-element. */ static char *nextchar; /* Callers store zero here to inhibit the error message for unrecognized options. */ int opterr = 1; /* Set to an option character which was unrecognized. This must be initialized on some systems to avoid linking in the system's own getopt implementation. */ int optopt = '?'; /* Describe how to deal with options that follow non-option ARGV-elements. If the caller did not specify anything, the default is REQUIRE_ORDER if the environment variable POSIXLY_CORRECT is defined, PERMUTE otherwise. REQUIRE_ORDER means don't recognize them as options; stop option processing when the first non-option is seen. This is what Unix does. This mode of operation is selected by either setting the environment variable POSIXLY_CORRECT, or using `+' as the first character of the list of option characters. PERMUTE is the default. We permute the contents of ARGV as we scan, so that eventually all the non-options are at the end. This allows options to be given in any order, even with programs that were not written to expect this. RETURN_IN_ORDER is an option available to programs that were written to expect options and other ARGV-elements in any order and that care about the ordering of the two. We describe each non-option ARGV-element as if it were the argument of an option with character code 1. Using `-' as the first character of the list of option characters selects this mode of operation. The special argument `--' forces an end of option-scanning regardless of the value of `ordering'. In the case of RETURN_IN_ORDER, only `--' can cause `getopt' to return EOF with `optind' != ARGC. */ static enum { REQUIRE_ORDER, PERMUTE, RETURN_IN_ORDER } ordering; #ifdef __GNU_LIBRARY__ /* We want to avoid inclusion of string.h with non-GNU libraries because there are many ways it can cause trouble. On some systems, it contains special magic macros that don't work in GCC. */ #include #define my_index strchr #define my_bcopy(src, dst, n) memcpy ((dst), (src), (n)) #else /* Avoid depending on library functions or files whose names are inconsistent. */ char *getenv (); static char * my_index (str, chr) const char *str; int chr; { while (*str) { if (*str == chr) return (char *) str; str++; } return 0; } static void my_bcopy (from, to, size) const char *from; char *to; int size; { int i; for (i = 0; i < size; i++) to[i] = from[i]; } #endif /* GNU C library. */ /* Handle permutation of arguments. */ /* Describe the part of ARGV that contains non-options that have been skipped. `first_nonopt' is the index in ARGV of the first of them; `last_nonopt' is the index after the last of them. */ static int first_nonopt; static int last_nonopt; /* Exchange two adjacent subsequences of ARGV. One subsequence is elements [first_nonopt,last_nonopt) which contains all the non-options that have been skipped so far. The other is elements [last_nonopt,optind), which contains all the options processed since those non-options were skipped. `first_nonopt' and `last_nonopt' are relocated so that they describe the new indices of the non-options in ARGV after they are moved. */ static void exchange (argv) char **argv; { int nonopts_size = (last_nonopt - first_nonopt) * sizeof (char *); char **temp = (char **) __alloca (nonopts_size); /* Interchange the two blocks of data in ARGV. */ my_bcopy ((char *) &argv[first_nonopt], (char *) temp, nonopts_size); my_bcopy ((char *) &argv[last_nonopt], (char *) &argv[first_nonopt], (optind - last_nonopt) * sizeof (char *)); my_bcopy ((char *) temp, (char *) &argv[first_nonopt + optind - last_nonopt], nonopts_size); /* Update records for the slots the non-options now occupy. */ first_nonopt += (optind - last_nonopt); last_nonopt = optind; } /* Scan elements of ARGV (whose length is ARGC) for option characters given in OPTSTRING. If an element of ARGV starts with '-', and is not exactly "-" or "--", then it is an option element. The characters of this element (aside from the initial '-') are option characters. If `getopt' is called repeatedly, it returns successively each of the option characters from each of the option elements. If `getopt' finds another option character, it returns that character, updating `optind' and `nextchar' so that the next call to `getopt' can resume the scan with the following option character or ARGV-element. If there are no more option characters, `getopt' returns `EOF'. Then `optind' is the index in ARGV of the first ARGV-element that is not an option. (The ARGV-elements have been permuted so that those that are not options now come last.) OPTSTRING is a string containing the legitimate option characters. If an option character is seen that is not listed in OPTSTRING, return '?' after printing an error message. If you set `opterr' to zero, the error message is suppressed but we still return '?'. If a char in OPTSTRING is followed by a colon, that means it wants an arg, so the following text in the same ARGV-element, or the text of the following ARGV-element, is returned in `optarg'. Two colons mean an option that wants an optional arg; if there is text in the current ARGV-element, it is returned in `optarg', otherwise `optarg' is set to zero. If OPTSTRING starts with `-' or `+', it requests different methods of handling the non-option ARGV-elements. See the comments about RETURN_IN_ORDER and REQUIRE_ORDER, above. Long-named options begin with `--' instead of `-'. Their names may be abbreviated as long as the abbreviation is unique or is an exact match for some defined option. If they have an argument, it follows the option name in the same ARGV-element, separated from the option name by a `=', or else the in next ARGV-element. When `getopt' finds a long-named option, it returns 0 if that option's `flag' field is nonzero, the value of the option's `val' field if the `flag' field is zero. The elements of ARGV aren't really const, because we permute them. But we pretend they're const in the prototype to be compatible with other systems. LONGOPTS is a vector of `struct option' terminated by an element containing a name which is zero. LONGIND returns the index in LONGOPT of the long-named option found. It is only valid when a long-named option has been found by the most recent call. If LONG_ONLY is nonzero, '-' as well as '--' can introduce long-named options. */ int _getopt_internal (argc, argv, optstring, longopts, longind, long_only) int argc; char *const *argv; const char *optstring; const struct option *longopts; int *longind; int long_only; { int option_index; optarg = 0; /* Initialize the internal data when the first call is made. Start processing options with ARGV-element 1 (since ARGV-element 0 is the program name); the sequence of previously skipped non-option ARGV-elements is empty. */ if (optind == 0) { first_nonopt = last_nonopt = optind = 1; nextchar = NULL; /* Determine how to handle the ordering of options and nonoptions. */ if (optstring[0] == '-') { ordering = RETURN_IN_ORDER; ++optstring; } else if (optstring[0] == '+') { ordering = REQUIRE_ORDER; ++optstring; } else if (getenv ("POSIXLY_CORRECT") != NULL) ordering = REQUIRE_ORDER; else ordering = PERMUTE; } if (nextchar == NULL || *nextchar == '\0') { if (ordering == PERMUTE) { /* If we have just processed some options following some non-options, exchange them so that the options come first. */ if (first_nonopt != last_nonopt && last_nonopt != optind) exchange ((char **) argv); else if (last_nonopt != optind) first_nonopt = optind; /* Now skip any additional non-options and extend the range of non-options previously skipped. */ while (optind < argc && (argv[optind][0] != '-' || argv[optind][1] == '\0') #ifdef GETOPT_COMPAT && (longopts == NULL || argv[optind][0] != '+' || argv[optind][1] == '\0') #endif /* GETOPT_COMPAT */ ) optind++; last_nonopt = optind; } /* Special ARGV-element `--' means premature end of options. Skip it like a null option, then exchange with previous non-options as if it were an option, then skip everything else like a non-option. */ if (optind != argc && !strcmp (argv[optind], "--")) { optind++; if (first_nonopt != last_nonopt && last_nonopt != optind) exchange ((char **) argv); else if (first_nonopt == last_nonopt) first_nonopt = optind; last_nonopt = argc; optind = argc; } /* If we have done all the ARGV-elements, stop the scan and back over any non-options that we skipped and permuted. */ if (optind == argc) { /* Set the next-arg-index to point at the non-options that we previously skipped, so the caller will digest them. */ if (first_nonopt != last_nonopt) optind = first_nonopt; return EOF; } /* If we have come to a non-option and did not permute it, either stop the scan or describe it to the caller and pass it by. */ if ((argv[optind][0] != '-' || argv[optind][1] == '\0') #ifdef GETOPT_COMPAT && (longopts == NULL || argv[optind][0] != '+' || argv[optind][1] == '\0') #endif /* GETOPT_COMPAT */ ) { if (ordering == REQUIRE_ORDER) return EOF; optarg = argv[optind++]; return 1; } /* We have found another option-ARGV-element. Start decoding its characters. */ nextchar = (argv[optind] + 1 + (longopts != NULL && argv[optind][1] == '-')); } if (longopts != NULL && ((argv[optind][0] == '-' && (argv[optind][1] == '-' || long_only)) #ifdef GETOPT_COMPAT || argv[optind][0] == '+' #endif /* GETOPT_COMPAT */ )) { const struct option *p; char *s = nextchar; int exact = 0; int ambig = 0; const struct option *pfound = NULL; int indfound = 0; while (*s && *s != '=') s++; /* Test all options for either exact match or abbreviated matches. */ for (p = longopts, option_index = 0; p->name; p++, option_index++) if (!strncmp (p->name, nextchar, s - nextchar)) { if (s - nextchar == strlen (p->name)) { /* Exact match found. */ pfound = p; indfound = option_index; exact = 1; break; } else if (pfound == NULL) { /* First nonexact match found. */ pfound = p; indfound = option_index; } else /* Second nonexact match found. */ ambig = 1; } if (ambig && !exact) { if (opterr) fprintf (stderr, "%s: option `%s' is ambiguous\n", argv[0], argv[optind]); nextchar += strlen (nextchar); optind++; return '?'; } if (pfound != NULL) { option_index = indfound; optind++; if (*s) { /* Don't test has_arg with >, because some C compilers don't allow it to be used on enums. */ if (pfound->has_arg) optarg = s + 1; else { if (opterr) { if (argv[optind - 1][1] == '-') /* --option */ fprintf (stderr, "%s: option `--%s' doesn't allow an argument\n", argv[0], pfound->name); else /* +option or -option */ fprintf (stderr, "%s: option `%c%s' doesn't allow an argument\n", argv[0], argv[optind - 1][0], pfound->name); } nextchar += strlen (nextchar); return '?'; } } else if (pfound->has_arg == 1) { if (optind < argc) optarg = argv[optind++]; else { if (opterr) fprintf (stderr, "%s: option `%s' requires an argument\n", argv[0], argv[optind - 1]); nextchar += strlen (nextchar); return optstring[0] == ':' ? ':' : '?'; } } nextchar += strlen (nextchar); if (longind != NULL) *longind = option_index; if (pfound->flag) { *(pfound->flag) = pfound->val; return 0; } return pfound->val; } /* Can't find it as a long option. If this is not getopt_long_only, or the option starts with '--' or is not a valid short option, then it's an error. Otherwise interpret it as a short option. */ if (!long_only || argv[optind][1] == '-' #ifdef GETOPT_COMPAT || argv[optind][0] == '+' #endif /* GETOPT_COMPAT */ || my_index (optstring, *nextchar) == NULL) { if (opterr) { if (argv[optind][1] == '-') /* --option */ fprintf (stderr, "%s: unrecognized option `--%s'\n", argv[0], nextchar); else /* +option or -option */ fprintf (stderr, "%s: unrecognized option `%c%s'\n", argv[0], argv[optind][0], nextchar); } nextchar = (char *) ""; optind++; return '?'; } } /* Look at and handle the next option-character. */ { char c = *nextchar++; char *temp = my_index (optstring, c); /* Increment `optind' when we start to process its last character. */ if (*nextchar == '\0') ++optind; if (temp == NULL || c == ':') { if (opterr) { #if 0 if (c < 040 || c >= 0177) fprintf (stderr, "%s: unrecognized option, character code 0%o\n", argv[0], c); else fprintf (stderr, "%s: unrecognized option `-%c'\n", argv[0], c); #else /* 1003.2 specifies the format of this message. */ fprintf (stderr, "%s: illegal option -- %c\n", argv[0], c); #endif } optopt = c; return '?'; } if (temp[1] == ':') { if (temp[2] == ':') { /* This is an option that accepts an argument optionally. */ if (*nextchar != '\0') { optarg = nextchar; optind++; } else optarg = 0; nextchar = NULL; } else { /* This is an option that requires an argument. */ if (*nextchar != '\0') { optarg = nextchar; /* If we end this ARGV-element by taking the rest as an arg, we must advance to the next element now. */ optind++; } else if (optind == argc) { if (opterr) { #if 0 fprintf (stderr, "%s: option `-%c' requires an argument\n", argv[0], c); #else /* 1003.2 specifies the format of this message. */ fprintf (stderr, "%s: option requires an argument -- %c\n", argv[0], c); #endif } optopt = c; if (optstring[0] == ':') c = ':'; else c = '?'; } else /* We already incremented `optind' once; increment it again when taking next ARGV-elt as argument. */ optarg = argv[optind++]; nextchar = NULL; } } return c; } } int getopt (argc, argv, optstring) int argc; char *const *argv; const char *optstring; { return _getopt_internal (argc, argv, optstring, (const struct option *) 0, (int *) 0, 0); } #endif /* _LIBC or not __GNU_LIBRARY__. */ #ifdef TEST /* Compile with -DTEST to make an executable for use in testing the above definition of `getopt'. */ int main (argc, argv) int argc; char **argv; { int c; int digit_optind = 0; while (1) { int this_option_optind = optind ? optind : 1; c = getopt (argc, argv, "abc:d:0123456789"); if (c == EOF) break; switch (c) { case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9': if (digit_optind != 0 && digit_optind != this_option_optind) printf ("digits occur in two different argv-elements.\n"); digit_optind = this_option_optind; printf ("option %c\n", c); break; case 'a': printf ("option a\n"); break; case 'b': printf ("option b\n"); break; case 'c': printf ("option c with value `%s'\n", optarg); break; case '?': break; default: printf ("?? getopt returned character code 0%o ??\n", c); } } if (optind < argc) { printf ("non-option ARGV-elements: "); while (optind < argc) printf ("%s ", argv[optind++]); printf ("\n"); } exit (0); } #endif /* TEST */ chordii-4.3+repack/src/grid.c0000644000175000017500000012420111316715175017211 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include "chordii.h" struct chord_struct *so_chordtab = NULL; struct kcs *so_known_chords = NULL; int nb_chord = 0; int first_ptr = 0; int nb_known_chord = 0; extern int hpos,vpos; extern int grid_size, no_easy_grids, n_pages; extern int first_time_in_chordrc; extern char *mesg; extern int in_chordrc; extern int sort_type; extern float top, bottom, margin, width; extern char *text_font, *chord_font, *mono_font; /*--------------------------------------------------------------------------------*/ void do_init_grid_ps() { printf("%% routines for the drawing of the chords\n"); printf("/grid { \n"); printf(" currentpoint currentpoint\n"); printf(" 6 { 0 cagesizeX rlineto incr cagesize neg incr add rmoveto } repeat\n"); printf(" moveto\n"); printf(" 5 { cagesize 0 rlineto 0 cagesize sub incr rmoveto } repeat\n"); printf(" 1 setlinewidth stroke \n"); printf(" moveto\n"); printf(" currentpoint\n"); printf(" 0 cagesizeX rmoveto cagesize 0 rlineto\n"); printf(" cagesize 30 div setlinewidth stroke\n"); printf(" moveto\n"); printf("} def\n"); printf("\n"); printf("/dot {\n"); printf(" /fret exch def /str exch def\n"); printf(" /x 5 fret abs sub incr mul half-incr sub def\n"); printf(" /y 6 str sub incr mul def\n"); printf(" currentpoint\n"); printf(" y x rmoveto\n"); printf(" 0 setgray\n"); printf(" fret -1 eq\n"); printf(" {\n"); printf(" 0 incr rmoveto\n"); printf(" check neg check neg rmoveto\n"); printf(" check check rlineto check check rlineto\n"); printf(" check neg check neg rmoveto check neg check rmoveto\n"); printf(" check check neg rlineto check check neg rlineto\n"); printf(" cagesize 50 div setlinewidth stroke\n"); printf(" }\n"); printf(" { fret 0 ne\n"); printf(" { currentpoint dot-size 0 360 arc fill}\n"); printf(" { currentpoint\n"); printf(" check 0 360 newpath arc\n"); printf(" cagesize 50 div setlinewidth\n"); printf(" }\n"); printf(" ifelse \n"); printf(" stroke \n"); printf(" }\n"); printf(" ifelse\n"); printf(" moveto\n"); printf("} def \n"); printf("\n"); printf("/dots {\n"); printf(" grid\n"); printf(" /origin exch def\n"); printf(" /fret-displ exch def\n"); printf(" 1 1 6\n"); printf(" {\n"); printf(" /str exch def\n"); printf(" /fret exch def\n"); printf(" fret %d ne {str fret dot} if\n", FRET_NONE); printf(" } for\n"); printf("\n"); printf(" fret-displ 1 ne\n"); printf(" {\n"); printf(" currentpoint displ-font setfont\n"); /* printf(" 0 cagesize 3 div sub cagesizeX incr sub rmoveto\n"); */ printf(" 0 cagesize fret-displ 10 ge {1.75} {3} ifelse div sub\n"); printf(" cagesizeX incr sub rmoveto\n"); printf(" /char 6 string def fret-displ char cvs show moveto \n"); printf(" } if\n"); printf("\n"); printf(" /chord-name exch def\n"); printf(" currentpoint displ-font setfont\n"); printf(" 0 cagesizeX cagesizeX 15 div add dot-size 3 mul add rmoveto\n"); printf(" chord-name stringwidth pop 2 div cagesize 2 div exch sub 0 rmoveto\n"); printf(" chord-name show\n"); printf(" 0 cagesize 10 div rmoveto\n"); printf(" origin 2 eq { (*) show} if\n"); printf(" origin 1 eq { (**) show} if\n"); printf(" chord-font setfont moveto\n"); printf("} def\n"); printf("\n"); printf("/cagesize %d def\n",grid_size); printf("/incr cagesize 5 div def\n"); printf("/cagesizeX incr 4 mul def\n"); printf("/half-incr incr 2 div def\n"); printf("/dot-size cagesize 15 div def\n"); printf("/check cagesize 20 div def\n"); printf("\n"); printf("/chord-font /Times-Roman findfont cagesize 5 div scalefont def\n"); printf("/displ-font /Times-Roman findfont cagesize 3 div scalefont def\n"); printf("%% end of the routines for the drawing of the chords\n"); printf("\n"); } /*--------------------------------------------------------------------------------*/ /* ChordCompare - provided by Leo Bicknell (ab147@freenet.acsu.buffalo.edu) */ int chordcompare(chord1, chord2) char *chord1, *chord2; { chord1[0]=tolower(chord1[0]); chord2[0]=tolower(chord2[0]); if (chord1[0] != chord2[0]) { return(chord1[0] - chord2[0]); } else { switch (chord1[1]) { case 'b': switch (chord2[1]) { case 'b': return (chordcompare(&chord1[1], &chord2[1])); case '#': return (-1); case 'm': return (-1); default: return (-1); } case '#': switch (chord2[1]) { case 'b': return (1); case '#': return (chordcompare(&chord1[1], &chord2[1])); case 'm': return (1); default: return (1); } case 'm': switch (chord2[1]) { case 'b': return (1); case '#': return (-1); case 'm': return (chordcompare(&chord1[1], &chord2[1])); default: return (1); } default: switch(chord2[1]) { case 'b': return (1); case '#': return (-1); case 'm': return (-1); default: return (strcmp(chord1, chord2)); } } } } /*--------------------------------------------------------------------------------*/ void learn_chord(chord, s1, s2, s3, s4, s5, s6, displ, origin, difficult) char *chord; int displ; int s1,s2,s3,s4,s5,s6; int origin, difficult; { struct kcs *kc_ptr, **prev_kc_ptr, *new_kc_ptr; char chord1[CHORD_NAME_SZ], chord2[CHORD_NAME_SZ]; kc_ptr = so_known_chords; prev_kc_ptr = &so_known_chords; strcpy(chord1, chord); while ((kc_ptr != NULL) && (chordcompare (chord1, strcpy(chord2,kc_ptr->chord_name)) > 0)) { prev_kc_ptr= &(kc_ptr->next); kc_ptr=kc_ptr->next; } new_kc_ptr = (struct kcs *) malloc (sizeof dummy_kcs); new_kc_ptr->next = kc_ptr; *prev_kc_ptr = new_kc_ptr; if (displ == 0) displ = 1; strcpy(new_kc_ptr->chord_name,chord); new_kc_ptr->displ = displ; new_kc_ptr->s1 = s1; new_kc_ptr->s2 = s2; new_kc_ptr->s3 = s3; new_kc_ptr->s4 = s4; new_kc_ptr->s5 = s5; new_kc_ptr->s6 = s6; new_kc_ptr->origin = origin; new_kc_ptr->difficult = difficult; } /*--------------------------------------------------------------------------------*/ struct chord_struct* add_to_chordtab(chord) char *chord; { struct chord_struct *ct_ptr, *new, **prev_ptr_handle; struct kcs *kc_ptr; char chord1[CHORD_NAME_SZ], chord2[CHORD_NAME_SZ]; int n = 0; ct_ptr = so_chordtab; prev_ptr_handle = &so_chordtab; strcpy(chord1, chord); while (( ct_ptr != NULL ) && ((n=chordcompare(chord1, strcpy(chord2,ct_ptr->chord->chord_name))) > 0)) { prev_ptr_handle = &(ct_ptr->next); ct_ptr = ct_ptr->next; } if ((ct_ptr != NULL) && (n == 0)) { new=ct_ptr; } else { if ((kc_ptr=get_kc_entry (chord)) == NULL) { sprintf (mesg, "chord \'%s\' has never been defined", chord); error(mesg); learn_chord(chord, -2, -2, -2, -2, -2, -2, 0, CHORD_BUILTIN, CHORD_EASY); kc_ptr=get_kc_entry (chord); } new = (struct chord_struct *) malloc (sizeof (dummy_chord_struct)); new->chord=kc_ptr; new->next = ct_ptr; *prev_ptr_handle = new; } return (new); } /*--------------------------------------------------------------------------------*/ void moveto(new_hpos,new_vpos) int new_hpos,new_vpos; { if (new_hpos + grid_size + margin > width) { new_hpos = margin; new_vpos -= 2*grid_size; } if (new_vpos < bottom) { do_end_of_page(FALSE); do_start_of_page(); new_vpos= top-2*grid_size; } printf ("%d %d moveto\n", new_hpos, new_vpos); hpos= new_hpos;vpos = new_vpos; } /*--------------------------------------------------------------------------------*/ void draw_known_chords() { struct kcs *kc_ptr; moveto((int)(width - grid_size - grid_size - margin), vpos); kc_ptr = so_known_chords; while (kc_ptr != NULL) { moveto(hpos + 2 * grid_size, vpos); printf("("); ps_puts(kc_ptr->chord_name); printf(") %d %d %d %d %d %d %d %d dots\n", kc_ptr->s1, kc_ptr->s2, kc_ptr->s3, kc_ptr->s4, kc_ptr->s5, kc_ptr->s6, kc_ptr->displ, kc_ptr->origin); kc_ptr = kc_ptr->next; } } /*--------------------------------------------------------------------------------*/ void draw_chords() { struct chord_struct *ct_ptr; moveto((int)(width - grid_size - grid_size - margin), vpos); ct_ptr= so_chordtab; while (ct_ptr != NULL) { if (!no_easy_grids || ( no_easy_grids && ct_ptr->chord->difficult) ) { moveto(hpos + 2 * grid_size, vpos); printf("("); ps_puts(ct_ptr->chord->chord_name); printf(") %d %d %d %d %d %d %d %d dots\n", ct_ptr->chord->s1, ct_ptr->chord->s2, ct_ptr->chord->s3, ct_ptr->chord->s4, ct_ptr->chord->s5, ct_ptr->chord->s6, ct_ptr->chord->displ, ct_ptr->chord->origin); } ct_ptr = ct_ptr->next; } } /*--------------------------------------------------------------------------------*/ void clean_chordtab() { struct chord_struct *ct_ptr, *ct_next; ct_ptr= so_chordtab; while (ct_ptr != NULL) { ct_next = ct_ptr->next; free(ct_ptr); ct_ptr=ct_next; } so_chordtab=NULL; } /*--------------------------------------------------------------------------------*/ void clean_known_chords() { struct kcs *kc_ptr, **prev_kc_ptr; kc_ptr = so_known_chords; prev_kc_ptr = &so_known_chords; while (kc_ptr != NULL) { if (kc_ptr->origin == CHORD_DEFINED ) /* remove from known chords */ { *prev_kc_ptr = kc_ptr->next; free(kc_ptr); kc_ptr=*prev_kc_ptr; } else { prev_kc_ptr= &(kc_ptr->next); kc_ptr=kc_ptr->next; } } } /*--------------------------------------------------------------------------------*/ void count_known_chords() /* Debugging routines only */ { struct kcs *kc_ptr; int int_count = 0; int rc_count = 0; int song_count = 0; kc_ptr = so_known_chords; while (kc_ptr != NULL) { if (kc_ptr->origin == CHORD_BUILTIN) int_count++; else if (kc_ptr->origin == CHORD_DEFINED) { song_count++; } else if (kc_ptr->origin == CHORD_IN_CHORDRC) { rc_count++; } kc_ptr=kc_ptr->next; } fprintf (stderr, "%d builtin, %d in chordrc, %d in song\n", int_count, rc_count, song_count); } /*--------------------------------------------------------------------------------*/ int check_old_define_syntax(temp_str, chord_name) char *temp_str; char *chord_name; { char *str; int n; int ok = TRUE; int fret_displ; int dot_array[6]; int i; char error_str[MAXLINE]; fret_displ=atoi(temp_str); for (n=0; n<=5; n++) { str=toupper_str(strtok(NULL, DELIM_STR)); if (!strcmp(str,FRET_NONE_STR) || !strcmp(str, FRET_X_STR)) dot_array[n]=FRET_X; else dot_array[n]=atoi(str); ok = ok && (str); } if (strtok(NULL, DELIM_STR)) ok=FALSE; if (ok ) { if (!in_chordrc || first_time_in_chordrc) { sprintf(error_str, "definition of chord '%s' uses obsolete format", chord_name); error(error_str); fprintf(stderr, " Please edit your input file and replace its %s", "definition by the following:\n"); fprintf(stderr, " {define: %s base-fret %d frets ", chord_name, fret_displ); for (i=5; i>=0; i--) if (dot_array[i] < 0) fprintf (stderr, "x "); else fprintf (stderr, "%d ", dot_array[i]); fprintf (stderr, "}\n\n"); } learn_chord(chord_name, dot_array[5],dot_array[4],dot_array[3], dot_array[2],dot_array[1],dot_array[0], fret_displ, in_chordrc ? CHORD_DEFINED : CHORD_IN_CHORDRC, CHORD_HARD); } return(ok); } /*--------------------------------------------------------------------------------*/ int do_define_chord() { int dot_array[6]; char *chord_name; char *temp_str; int fret_displ; int n; int hardtoplay = 0; for ( n= 0; n<6; n++) dot_array[n] = 0; chord_name= strtok(NULL, DELIM_STR); if (chord_name== NULL) { error("syntax error in chord definition: no chord name"); return(0); } temp_str= tolower_str(strtok(NULL, DELIM_STR)); if (strcmp(temp_str, BASE_FRET_STR)) { if (!check_old_define_syntax(temp_str,chord_name)) error("syntax error in chord definition: keyword missing"); return(0); } temp_str= strtok(NULL, DELIM_STR); if (temp_str== NULL) { error("syntax error in chord definition: no base fret value"); return(0); } fret_displ= atoi(temp_str); if (fret_displ == 0) fret_displ = 1; temp_str= tolower_str(strtok(NULL, DELIM_STR)); if (strcmp(temp_str, FRETS_STR)) { error("syntax error in chord definition: keyword missing"); return(0); } for (n= 0; n< 6; n++) { strcpy(temp_str, toupper_str(strtok(NULL, DELIM_STR))); if (temp_str!= NULL) { if (!strcmp(temp_str, FRET_NONE_STR) || !strcmp(temp_str, FRET_X_STR)) dot_array[n]= FRET_X; else { dot_array[n]= atoi(temp_str); if (dot_array[n] < 0) dot_array[n]= FRET_X; } hardtoplay= hardtoplay||(dot_array[n]>LONG_FINGERS); } else { error("syntax error in chord definition : too few arguments"); return(0); } } temp_str= strtok(NULL, DELIM_STR); if (temp_str!=NULL) { error("syntax error in chord definition: too many arguments"); return(0); } /* CHORD is OK */ /* if (hardtoplay) { sprintf(mesg, "You'll need long fingers to play \"%s\" this way!", chord_name); error (mesg); } */ learn_chord(chord_name, dot_array[0],dot_array[1],dot_array[2], dot_array[3],dot_array[4],dot_array[5], fret_displ, in_chordrc ? CHORD_IN_CHORDRC : CHORD_DEFINED, CHORD_HARD); return(0); } /*--------------------------------------------------------------------------------*/ void init_known_chords() { nb_known_chord= 0; #define N FRET_X learn_chord("Ab", 1, 3, 3, 2, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ab+", N, N, 2, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ab4", N, N, 1, 1, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ab7", N, N, 1, 1, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ab11", 1, 3, 1, 3, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Absus", N, N, 1, 1, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Absus4", N, N, 1, 1, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abdim", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abmaj", 1, 3, 3, 2, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abmaj7", N, N, 1, 1, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abm", 1, 3, 3, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abmin", 1, 3, 3, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Abm7", N, N, 1, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("A", N, 0, 2, 2, 2, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("A+", N, 0, 3, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A4", 0, 0, 2, 2, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A6", N, N, 2, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A7", N, 0, 2, 0, 2, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("A7+", N, N, 3, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A7(9+)", N, 2, 2, 2, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A9", N, 0, 2, 1, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A11", N, 4, 2, 4, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A13", N, 0, 1, 2, 3, 1, 5, CHORD_BUILTIN, CHORD_HARD); learn_chord("A7sus4", 0, 0, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A9sus", N, 0, 2, 1, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Asus", N, N, 2, 2, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Asus2", 0, 0, 2, 2, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Asus4", N, N, 2, 2, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Adim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Amaj", N, 0, 2, 2, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Amaj7", N, 0, 2, 1, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am", N, 0, 2, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Amin", N, 0, 2, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A/D", N, N, 0, 0, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A/F#", 2, 0, 2, 2, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A/G#", 4, 0, 2, 2, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am#7", N, N, 2, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am(7#)", N, 0, 2, 2, 1, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am6", N, 0, 2, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am7", N, 0, 2, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Am7sus4", 0, 0, 0, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am9", N, 0, 1, 1, 1, 3, 5, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am/G", 3, 0, 2, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Amadd9", 0, 2, 2, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Am(add9)", 0, 2, 2, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#", N, 1, 3, 3, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#+", N, N, 0, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#4", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#7", N, N, 1, 1, 1, 2, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#sus", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#sus4", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#maj", N, 1, 3, 3, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#maj7", N, 1, 3, 2, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#dim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#m", N, 1, 3, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#min", N, 1, 3, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("A#m7", N, 1, 3, 1, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb", N, 1, 3, 3, 3, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Bb+", N, N, 0, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb4", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb6", N, N, 3, 3, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb7", N, N, 1, 1, 1, 2, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb9", 1, 3, 1, 2, 1, 3, 6, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bb11", 1, 3, 1, 3, 4, 1, 6, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbsus", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbsus4", N, N, 3, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbmaj", N, 1, 3, 3, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbmaj7", N, 1, 3, 2, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbdim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbm", N, 1, 3, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbmin", N, 1, 3, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbm7", N, 1, 3, 1, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bbm9", N, N, N, 1, 1, 3, 6, CHORD_BUILTIN, CHORD_HARD); learn_chord("B", N, 2, 4, 4, 4, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("B+", N, N, 1, 0, 0, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B4", N, N, 3, 3, 4, 1, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("B7", 0, 2, 1, 2, 0, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("B7+", N, 2, 1, 2, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B7+5", N, 2, 1, 2, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B7#9", N, 2, 1, 2, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B7(#9)", N, 2, 1, 2, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B9", 1, 3, 1, 2, 1, 3, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("B11", 1, 3, 3, 2, 0, 0, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("B11/13", N, 1, 1, 1, 1, 3, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("B13", N, 2, 1, 2, 0, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bsus", N, N, 3, 3, 4, 1, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bsus4", N, N, 3, 3, 4, 1, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bmaj", N, 2, 4, 3, 4, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bmaj7", N, 2, 4, 3, 4, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bdim", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm", N, 2, 4, 4, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bmin", N, 2, 4, 4, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B/F#", 0, 2, 2, 2, 0, 0, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("BaddE", N, 2, 4, 4, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("B(addE)", N, 2, 4, 4, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("BaddE/F#", 2, N, 4, 4, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm6", N, N, 4, 4, 3, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm7", N, 1, 3, 1, 2, 1, 2, CHORD_BUILTIN, CHORD_EASY); learn_chord("Bmmaj7", N, 1, 4, 4, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm(maj7)", N, 1, 4, 4, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bmsus9", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm(sus9)", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Bm7b5", 1, 2, 4, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C", N, 3, 2, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("C+", N, N, 2, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C4", N, N, 3, 0, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C6", N, 0, 2, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C7", 0, 3, 2, 3, 1, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("C9", 1, 3, 1, 2, 1, 3, 8, CHORD_BUILTIN, CHORD_HARD); learn_chord("C9(11)", N, 3, 3, 3, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C11", N, 1, 3, 1, 4, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("Csus", N, N, 3, 0, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Csus2", N, 3, 0, 0, 1, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Csus4", N, N, 3, 0, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Csus9", N, N, 4, 1, 2, 4, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cmaj", 0, 3, 2, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cmaj7", N, 3, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cm", N, 1, 3, 3, 2, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cmin", N, 1, 3, 3, 2, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cdim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C/B", N, 2, 2, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cadd2/B", N, 2, 0, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("CaddD", N, 3, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C(addD)", N, 3, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Cadd9", N, 3, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C(add9)", N, 3, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C3", N, 1, 3, 3, 2, 1, 3, CHORD_BUILTIN, CHORD_EASY); learn_chord("Cm7", N, 1, 3, 1, 2, 1, 3, CHORD_BUILTIN, CHORD_EASY); learn_chord("Cm11", N, 1, 3, 1, 4, N, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#", N, N, 3, 1, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#+", N, N, 3, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#4", N, N, 3, 3, 4, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#7", N, N, 3, 4, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#7(b5)", N, 2, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#sus", N, N, 3, 3, 4, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#sus4", N, N, 3, 3, 4, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#maj", N, 4, 3, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#maj7", N, 4, 3, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#dim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#m", N, N, 2, 1, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#min", N, N, 2, 1, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#add9", N, 1, 3, 3, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#(add9)", N, 1, 3, 3, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("C#m7", N, N, 2, 4, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Db", N, N, 3, 1, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Db+", N, N, 3, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Db7", N, N, 3, 4, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbsus", N, N, 3, 3, 4, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbsus4", N, N, 3, 3, 4, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbmaj", N, N, 3, 1, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbmaj7", N, 4, 3, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbdim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbm", N, N, 2, 1, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbmin", N, N, 2, 1, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dbm7", N, N, 2, 4, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D", N, N, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("D+", N, N, 0, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D4", N, N, 0, 2, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D6", N, 0, 0, 2, 0, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D7", N, N, 0, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("D7#9", N, 2, 1, 2, 3, 3, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("D7(#9)", N, 2, 1, 2, 3, 3, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("D9", 1, 3, 1, 2, 1, 3, 10, CHORD_BUILTIN, CHORD_HARD); learn_chord("D11", 3, 0, 0, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dsus", N, N, 0, 2, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dsus2", 0, 0, 0, 2, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dsus4", N, N, 0, 2, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D7sus2", N, 0, 0, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D7sus4", N, 0, 0, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dmaj", N, N, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dmaj7", N, N, 0, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ddim", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm", N, N, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Dmin", N, N, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("D/A", N, 0, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D/B", N, 2, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D/C", N, 3, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D/C#", N, 4, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D/E", N, 1, 1, 1, 1, N, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("D/G", 3, N, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D5/E", 0, 1, 1, 1, N, N, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dadd9", 0, 0, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D(add9)", 0, 0, 0, 2, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D9add6", 1, 3, 3, 2, 0, 0, 10, CHORD_BUILTIN, CHORD_HARD); learn_chord("D9(add6)", 1, 3, 3, 2, 0, 0, 10, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm6(5b)", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm7", N, N, 0, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Dm#5", N, N, 0, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm(#5)", N, N, 0, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm#7", N, N, 0, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm(#7)", N, N, 0, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm/A", N, 0, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm/B", N, 2, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm/C", N, 3, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm/C#", N, 4, 0, 2, 3, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Dm9", N, N, 3, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#", N, N, 3, 1, 2, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#+", N, N, 1, 0, 0, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#4", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#7", N, N, 1, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#sus", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#sus4", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#maj", N, N, 3, 1, 2, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#maj7", N, N, 1, 3, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#dim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#m", N, N, 4, 3, 4, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#min", N, N, 4, 3, 4, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("D#m7", N, N, 1, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Eb", N, N, 3, 1, 2, 1, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("Eb+", N, N, 1, 0, 0, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Eb4", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Eb7", N, N, 1, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebsus", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebsus4", N, N, 1, 3, 4, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebmaj", N, N, 1, 3, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebmaj7", N, N, 1, 3, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebdim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebadd9", N, 1, 1, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Eb(add9)", N, 1, 1, 3, 4, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebm", N, N, 4, 3, 4, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebmin", N, N, 4, 3, 4, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Ebm7", N, N, 1, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E", 0, 2, 2, 1, 0, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("E+", N, N, 2, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E5", 0, 1, 3, 3, N, N, 7, CHORD_BUILTIN, CHORD_HARD); learn_chord("E6", N, N, 3, 3, 3, 3, 9, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7", 0, 2, 2, 1, 3, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("E7#9", 0, 2, 2, 1, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7(#9)", 0, 2, 2, 1, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7(5b)", N, 1, 0, 1, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7b9", 0, 2, 0, 1, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7(b9)", 0, 2, 0, 1, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E7(11)", 0, 2, 2, 2, 3, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E9", 1, 3, 1, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("E11", 1, 1, 1, 1, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Esus", 0, 2, 2, 2, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Esus4", 0, 2, 2, 2, 0, 0, 0, CHORD_BUILTIN, CHORD_HARD); learn_chord("Emaj", 0, 2, 2, 1, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Emaj7", 0, 2, 1, 1, 0, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Edim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em", 0, 2, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Emin", 0, 2, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em6", 0, 2, 2, 0, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em7", 0, 2, 2, 0, 3, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Em/B", N, 2, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em/D", N, N, 0, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em7/D", N, N, 0, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Emsus4", 0, 0, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em(sus4)", 0, 0, 2, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Emadd9", 0, 2, 4, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Em(add9)", 0, 2, 4, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F", 1, 3, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F+", N, N, 3, 2, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F+7+11", 1, 3, 3, 2, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F4", N, N, 3, 3, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F6", N, 3, 3, 2, 3, N, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F7", 1, 3, 1, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F9", 2, 4, 2, 3, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F11", 1, 3, 1, 3, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fsus", N, N, 3, 3, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fsus4", N, N, 3, 3, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fmaj", 1, 3, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fmaj7", N, 3, 3, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fdim", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fm", 1, 3, 3, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Fmin", 1, 3, 3, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F/A", N, 0, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F/C", N, N, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F/D", N, N, 0, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F/G", 3, 3, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F7/A", N, 0, 3, 0, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fmaj7/A", N, 0, 3, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fmaj7/C", N, 3, 3, 2, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fmaj7(+5)", N, N, 3, 2, 2, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fadd9", 3, 0, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F(add9)", 3, 0, 3, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("FaddG", 1, N, 3, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("FaddG", 1, N, 3, 2, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fm6", N, N, 0, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Fm7", 1, 3, 1, 1, 1, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Fmmaj7", N, 3, 3, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#", 2, 4, 4, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F#+", N, N, 4, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#7", N, N, 4, 3, 2, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F#9", N, 1, 2, 1, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#11", 2, 4, 2, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#sus", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#sus4", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#maj", 2, 4, 4, 3, 2, 2, 0, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#maj7", N, N, 4, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#dim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#m", 2, 4, 4, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F#min", 2, 4, 4, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F#/E", 0, 4, 4, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#4", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#m6", N, N, 1, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#m7", N, N, 2, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("F#m7-5", 1, 0, 2, 3, 3, 3, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("F#m/C#m", N, N, 4, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gb", 2, 4, 4, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Gb+", N, N, 4, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gb7", N, N, 4, 3, 2, 0, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("Gb9", N, 1, 2, 1, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbsus", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbsus4", N, N, 4, 4, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbmaj", 2, 4, 4, 3, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbmaj7", N, N, 4, 3, 2, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbdim", N, N, 1, 2, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbm", 2, 4, 4, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbmin", 2, 4, 4, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gbm7", N, N, 2, 2, 2, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G", 3, 2, 0, 0, 0, 3, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("G+", N, N, 1, 0, 0, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G4", N, N, 0, 0, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G6", 3, N, 0, 0, 0, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7", 3, 2, 0, 0, 0, 1, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("G7+", N, N, 4, 3, 3, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7b9", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7(b9)", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7#9", 1, 3, N, 2, 4, 4, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7(#9)", 1, 3, N, 2, 4, 4, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("G9", 3, N, 0, 2, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G9(11)", 1, 3, 1, 3, 1, 3, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("G11", 3, N, 0, 2, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gsus", N, N, 0, 0, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gsus4", N, N, 0, 0, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G6sus4", 0, 2, 0, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G6(sus4)", 0, 2, 0, 0, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7sus4", 3, 3, 0, 0, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G7(sus4)", 3, 3, 0, 0, 1, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gmaj", 3, 2, 0, 0, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gmaj7", N, N, 4, 3, 2, 1, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gmaj7sus4", N, N, 0, 0, 1, 2, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gmaj9", 1, 1, 4, 1, 2, 1, 2, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gm", 1, 3, 3, 1, 1, 1, 3, CHORD_BUILTIN, CHORD_EASY); learn_chord("Gmin", 1, 3, 3, 1, 1, 1, 3, CHORD_BUILTIN, CHORD_EASY); learn_chord("Gdim", N, N, 2, 3, 2, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gadd9", 1, 3, N, 2, 1, 3, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("G(add9)", 1, 3, N, 2, 1, 3, 3, CHORD_BUILTIN, CHORD_HARD); learn_chord("G/A", N, 0, 0, 0, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G/B", N, 2, 0, 0, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G/D", N, 2, 2, 1, 0, 0, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G/F#", 2, 2, 0, 0, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gm6", N, N, 2, 3, 3, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("Gm7", 1, 3, 1, 1, 1, 1, 3, CHORD_BUILTIN, CHORD_EASY); learn_chord("Gm/Bb", 3, 2, 2, 1, N, N, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#", 1, 3, 3, 2, 1, 1, 4, CHORD_BUILTIN, CHORD_EASY); learn_chord("G#+", N, N, 2, 1, 1, 0, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#4", 1, 3, 3, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#7", N, N, 1, 1, 1, 2, 1, CHORD_BUILTIN, CHORD_EASY); learn_chord("G#sus", N, N, 1, 1, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#sus4", N, N, 1, 1, 2, 4, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#maj", 1, 3, 3, 2, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#maj7", N, N, 1, 1, 1, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#dim", N, N, 0, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#m", 1, 3, 3, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#min", 1, 3, 3, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#m6", N, N, 1, 1, 0, 1, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#m7", N, N, 1, 1, 1, 1, 4, CHORD_BUILTIN, CHORD_EASY); learn_chord("G#m9maj7", N, N, 1, 3, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); learn_chord("G#m9(maj7)",N, N, 1, 3, 0, 3, 1, CHORD_BUILTIN, CHORD_HARD); #undef N } /*--------------------------------------------------------------------------------*/ struct kcs *get_kc_entry(chord_name) char *chord_name; { struct kcs *kc_ptr; kc_ptr = so_known_chords; while ( (kc_ptr != NULL) && (strcmp(chord_name, kc_ptr->chord_name))) kc_ptr = kc_ptr->next; return(kc_ptr); } /*--------------------------------------------------------------------------------*/ void dump_fret(fretnum) int fretnum; { if (fretnum == FRET_X) printf(" %2s", FRET_X_STR); else printf(" %2d", fretnum); } /*--------------------------------------------------------------------------------*/ void dump_chords(PostScript) int PostScript; { struct kcs *kc_ptr; if (PostScript) { char msg[256]; sprintf(msg, "Generated by %s %s.%s", PACKAGE_NAME, PACKAGE_VERSION, PATCH_LEVEL); init_values(); init_ps(); init_known_chords(); do_title("CHORD CHART"); do_subtitle(msg); do_subtitle("http://chordii.sourceforge.net/"); } else { init_known_chords(); printf("# CHORD CHART\n"); printf("# Generated by %s %s.%s\n", PACKAGE_NAME, PACKAGE_VERSION, PATCH_LEVEL); printf("# http://chordii.sourceforge.net/\n"); printf("#\n"); printf("#\t\t\t\t\t '------ strings ------`\n"); printf("#Chord\t\t\t\t\t E A D G B E\n"); } read_chordrc(); if (PostScript) { draw_known_chords(); do_end_of_page(TRUE); printf ("%%%%Trailer\n"); printf ("%%%%Pages: %d 1\n", n_pages); printf ("%%%%DocumentFonts: %s %s %s\n", text_font, chord_font, mono_font); printf ("%%%%EOF\n"); } else { kc_ptr = so_known_chords; debug ("starting dump"); while (kc_ptr != NULL) { printf("{define %s:\t\tbase-fret %2d\tfrets", kc_ptr->chord_name, kc_ptr->displ); dump_fret(kc_ptr->s1); dump_fret(kc_ptr->s2); dump_fret(kc_ptr->s3); dump_fret(kc_ptr->s4); dump_fret(kc_ptr->s5); dump_fret(kc_ptr->s6); printf("}"); printf("\t%s\n", kc_ptr->origin== CHORD_BUILTIN ? "" : "(local)"); kc_ptr = kc_ptr->next; } } } chordii-4.3+repack/src/common.c0000644000175000017500000000576611316715175017572 0ustar gideonstargideonstar/* This file is part of Chordii. Chordii is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Chordii is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Chordii. If not, see . */ #include #include "chordii.h" extern char *current_file; extern char *command_name; extern char *mesg; extern int in_chordrc; extern int first_time_in_chordrc; /* --------------------------------------------------------------------------------*/ char *tolower_str(str) char *str; { static char temp_str[MAXLINE]; char *ptr; strcpy(temp_str, str); ptr=temp_str; while ( (*ptr=(char) tolower((int) *ptr)) ) ptr++; return(temp_str); } /* --------------------------------------------------------------------------------*/ char *toupper_str(str) char *str; { static char temp_str[MAXLINE]; char *ptr; strcpy(temp_str, str); ptr=temp_str; while ( (*ptr=(char) toupper((int) *ptr)) ) ptr++; return(temp_str); } /* --------------------------------------------------------------------------------*/ void error(err_str) char *err_str; { extern int n_lines; fprintf(stderr, "WARNING: %s\n",err_str); fprintf(stderr, " in file \"%s\", line %d\n\n", current_file,n_lines+1); } /* --------------------------------------------------------------------------------*/ void error_rt(err_str) char *err_str; { /* extern int n_lines; */ fprintf(stderr, "WARNING: %s defined as a run-time option\n\n",err_str); } /* --------------------------------------------------------------------------------*/ void debug(dbg_str) char *dbg_str; { extern int debug_mode; if ( debug_mode ) fprintf (stderr, "Debug: %s\n", dbg_str); } /* --------------------------------------------------------------------------------*/ void print_version() { char *version = VERSION; char *patch_level = PATCH_LEVEL; printf ("%s version %s, patchlevel %s\n", command_name, version, patch_level); } /* --------------------------------------------------------------------------------*/ /* read the file passed as argument */ void read_input_file(source, source_fd) char source[]; FILE *source_fd; { sprintf (mesg , "start of read_input_file on [%s]", source); debug (mesg); current_file = source; source_fd = fopen (source, "r"); if (source_fd == NULL) { fprintf(stderr, "Unable to open \"%s\"\n", source); exit (1); } process_file(source_fd); fclose(source_fd); } chordii-4.3+repack/src/getopt.h0000644000175000017500000001047411316715175017601 0ustar gideonstargideonstar/* Declarations for getopt. Copyright (C) 1989, 1990, 1991, 1992, 1993 Free Software Foundation, Inc. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */ #ifndef _GETOPT_H #define _GETOPT_H 1 #ifdef __cplusplus extern "C" { #endif /* For communication from `getopt' to the caller. When `getopt' finds an option that takes an argument, the argument value is returned here. Also, when `ordering' is RETURN_IN_ORDER, each non-option ARGV-element is returned here. */ extern char *optarg; /* Index in ARGV of the next element to be scanned. This is used for communication to and from the caller and for communication between successive calls to `getopt'. On entry to `getopt', zero means this is the first call; initialize. When `getopt' returns EOF, this is the index of the first of the non-option elements that the caller should itself scan. Otherwise, `optind' communicates from one call to the next how much of ARGV has been scanned so far. */ extern int optind; /* Callers store zero here to inhibit the error message `getopt' prints for unrecognized options. */ extern int opterr; /* Set to an option character which was unrecognized. */ extern int optopt; /* Describe the long-named options requested by the application. The LONG_OPTIONS argument to getopt_long or getopt_long_only is a vector of `struct option' terminated by an element containing a name which is zero. The field `has_arg' is: no_argument (or 0) if the option does not take an argument, required_argument (or 1) if the option requires an argument, optional_argument (or 2) if the option takes an optional argument. If the field `flag' is not NULL, it points to a variable that is set to the value given in the field `val' when the option is found, but left unchanged if the option is not found. To have a long-named option do something other than set an `int' to a compiled-in constant, such as set a value from `optarg', set the option's `flag' field to zero and its `val' field to a nonzero value (the equivalent single-letter option character, if there is one). For long options that have a zero `flag' field, `getopt' returns the contents of the `val' field. */ struct option { #if __STDC__ const char *name; #else char *name; #endif /* has_arg can't be an enum because some compilers complain about type mismatches in all the code that assumes it is an int. */ int has_arg; int *flag; int val; }; /* Names for the values of the `has_arg' field of `struct option'. */ #define no_argument 0 #define required_argument 1 #define optional_argument 2 #if __STDC__ #if defined(__GNU_LIBRARY__) /* Many other libraries have conflicting prototypes for getopt, with differences in the consts, in stdlib.h. To avoid compilation errors, only prototype getopt for the GNU C library. */ extern int getopt (int argc, char *const *argv, const char *shortopts); #else /* not __GNU_LIBRARY__ */ extern int getopt (); #endif /* not __GNU_LIBRARY__ */ extern int getopt_long (int argc, char *const *argv, const char *shortopts, const struct option *longopts, int *longind); extern int getopt_long_only (int argc, char *const *argv, const char *shortopts, const struct option *longopts, int *longind); /* Internal only. Users should not call this directly. */ extern int _getopt_internal (int argc, char *const *argv, const char *shortopts, const struct option *longopts, int *longind, int long_only); #else /* not __STDC__ */ extern int getopt (); extern int getopt_long (); extern int getopt_long_only (); extern int _getopt_internal (); #endif /* not __STDC__ */ #ifdef __cplusplus } #endif #endif /* _GETOPT_H */ chordii-4.3+repack/Makefile.in0000644000175000017500000005225011316726527017405 0ustar gideonstargideonstar# Makefile.in generated by automake 1.11 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. @SET_MAKE@ VPATH = @srcdir@ pkgdatadir = $(datadir)/@PACKAGE@ pkgincludedir = $(includedir)/@PACKAGE@ pkglibdir = $(libdir)/@PACKAGE@ pkglibexecdir = $(libexecdir)/@PACKAGE@ am__cd = CDPATH="$${ZSH_VERSION+.}$(PATH_SEPARATOR)" && cd install_sh_DATA = $(install_sh) -c -m 644 install_sh_PROGRAM = $(install_sh) -c install_sh_SCRIPT = $(install_sh) -c INSTALL_HEADER = $(INSTALL_DATA) transform = $(program_transform_name) NORMAL_INSTALL = : PRE_INSTALL = : POST_INSTALL = : NORMAL_UNINSTALL = : PRE_UNINSTALL = : POST_UNINSTALL = : subdir = . 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After multiple failed attempts to contact the original authors, it was determined that Chord was unmaintained. Luckily, Chord was licensed under the GPL, so it was forked into Chordii and active development could continue. Chordii's purpose is to provide guitar players with a tool to produce good looking, self-descriptive music sheets from text files. Chordii reads a text file containing the lyrics of a song, the chords to be played, their description and some other optional data to produce a PostScript document that includes: Centered titles Chord names above the words Graphical representation of the chords at the end of the songs Transposition Multiple columns on a page Index of a songbook Multiple logical pages per physical pages (1, 2 or 4) Configurable fonts for the lyrics and the chord names Multiple songs inside one file The complete ISO 8859-1 character set Chorus marking And, as they say, more... and even more to come! Chordii homepage: http://chordii.sourceforge.net/ Project homepage: http://www.sourceforge.net/projects/chordii/ Extensive documentation can be found in the Chordii User Guide, available on the Chordii Download Page. A Java beta version of the old Chord program from its original authors can be found on http://sourceforge.net/projects/chord4 . Initially, Chordii was named Chordie, but this has been changed on request to avoid confusion with the Chordie.Com web site. ===== Copyright ===== Chordii version 4.1 and later is Copyright 2008 The Chordii Project Chordie version 4.0 and later is Copyright 2007 The Chordie Project Chordii is licensed following the conditions of the GNU Public License, version 3 or later. CHORD is licensed following the conditions of the GNU Public License, version 2 or later. See COPYING for the full license text. chordii-4.3+repack/TODO0000644000175000017500000000317011316715175016022 0ustar gideonstargideonstar[X] replace current examples use songs available under an open license [_] add unit tests [X] update RPM specfile for v4.0 [X] try building directly from tarball using 'rpmbuild -tb' [_] use system getopt library [_] clean up code [_] reindent suggestion: "indent -bli0 -nut -i4" [_] update "K&R-style" function defs [_] allow GNU-style long options (--help, etc) [_] implement PDF generation [_] pipe to ps2pdf [_] use pango [_] Unicode [_] distribution-specific packages [X] Debian/Ubuntu [_] Mac OS X [_] Windows [_] include in popular GNU/Linux distributions [_] Fedora [_] Debian [_] abstract version information from patchlevel.h [X] remove patchlevel.h in favor of config.h (trunk@23) [_] RPM and DEB generation scripts should use same version numbers [_] port to other operating systems [X] Windows [X] Mac OS X [_] set up "continuous integration" cron job on sf.net shell server [_] regularly check for new trunk commits [_] automatically build and run unit tests [_] post somewhere on the chordie sf.net Web site [_] perhaps a tool like Cruise Control would be useful for this task [_] use user-provided title for PostScript document title [_] use user-provided margins for the document [_] better way to select which chords are printed [_] transpose up different from transpose down [_] user defined (language specific) note names, e.g. German, Italian. [_] transposable! [_] graphical user interface (not likely) [_] i18n, L10n maybe just allowing Unicode text input would be good enough [X] use GNU autotools (trunk@13) -------------------------------------------------------------------------------- vim:ft=vo_base chordii-4.3+repack/chordii.spec.in0000644000175000017500000000455511316725102020233 0ustar gideonstargideonstarSummary: Print songsbooks (lyrics + chords) Name: @PACKAGE@ Version: @VERSION@ Release: 1%{?dist} URL: http://@PACKAGE@.sourceforge.net Source: http://downloads.sourceforge.net/%{name}/%{name}-%{version}.tar.gz Patch0: %{name}-%{version}-makefile.patch License: GPLv3+ Group: Applications/Publishing BuildRoot: %(mktemp -ud %{_tmppath}/%{name}-%{version}-%{release}-XXXXXX) Obsoletes: chordie chord %description chordii provides guitar players and other musicians with a tool to produce good looking, self-descriptive music sheets from text files. chordii reads text files in chordpro format, containing the lyrics of songs, the chords to be played, their descriptions and some other optional data. It produces a PostScript document suitable for viewing and printing. chordii features include: - centered titles, - chord names above the words, - chord diagrams at the end of the songs, - multiple columns on a page, - multiple logical pages per physical pages (1, 2 or 4), - configurable fonts and sizes, - the complete ISO 8859-1 character set, - chorus marking, - automated chord transposition, - songbook creation: typeset multiple songs with page numbers and a table of contents. %prep %setup -q # Fix Makefiles to avoid double install of manual pages. %patch0 -p0 -b .mak %build %configure make %{?_smp_mflags} %install rm -rf %{buildroot} make DESTDIR=%{buildroot} INSTALL="install -p" install %clean rm -rf %{buildroot} %files %defattr(-,root,root,-) %doc README NEWS COPYING examples/ %{_bindir}/* %{_mandir}/man1/* %changelog * Mon Jul 13 2009 Johan Vromans - 4.3-1 - Rebase on GPL Chord 3.6.4. * Sat Jan 31 2009 Johan Vromans - 4.2-5 - Changed examples/* to examples/ to include all examples in a dir * Fri Jan 30 2009 Johan Vromans - 4.2-4 - Fixed changelog entries involving %% to prevent macro expansion * Fri Jan 30 2009 Johan Vromans - 4.2-3 - Fixed URL and Source urls - Added %%{?dist} to Release - Fixed missing (optional) argument to %%defattr - Changed examples to examples/* to include all examples * Fri Jan 30 2009 Johan Vromans - 4.2-2 - Update description - Add patch to fix Makefiles to avoid double install of manual pages - use smp_mflags - use install -p * Thu Jan 29 2009 Johan Vromans - 4.2-1 - First Fedora version chordii-4.3+repack/aclocal.m40000644000175000017500000010345511316726316017200 0ustar gideonstargideonstar# generated automatically by aclocal 1.11 -*- Autoconf -*- # Copyright (C) 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, # 2005, 2006, 2007, 2008, 2009 Free Software Foundation, Inc. # This file is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. m4_ifndef([AC_AUTOCONF_VERSION], [m4_copy([m4_PACKAGE_VERSION], [AC_AUTOCONF_VERSION])])dnl m4_if(m4_defn([AC_AUTOCONF_VERSION]), [2.63],, [m4_warning([this file was generated for autoconf 2.63. 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We just wanted to have am__tar # and am__untar set. test -n "${am_cv_prog_tar_$1}" && break # tar/untar a dummy directory, and stop if the command works rm -rf conftest.dir mkdir conftest.dir echo GrepMe > conftest.dir/file AM_RUN_LOG([tardir=conftest.dir && eval $am__tar_ >conftest.tar]) rm -rf conftest.dir if test -s conftest.tar; then AM_RUN_LOG([$am__untar /dev/null 2>&1 && break fi done rm -rf conftest.dir AC_CACHE_VAL([am_cv_prog_tar_$1], [am_cv_prog_tar_$1=$_am_tool]) AC_MSG_RESULT([$am_cv_prog_tar_$1])]) AC_SUBST([am__tar]) AC_SUBST([am__untar]) ]) # _AM_PROG_TAR chordii-4.3+repack/AUTHORS0000644000175000017500000000153011316724460016375 0ustar gideonstargideonstarCHORD is originally written by Martin Leclerc and Mario Dorion. They have given up interest. In 2007, Johan Vromans and Adam Monsen decided to revive it. They formed the Chordie Project, later renamed to Chordii Project. Chordii version 4.1 and later is Copyright 2008 The Chordii Project Chordie version 4.0 and later is Copyright 2007 The Chordie Project Chordii is based on Chord 3.6.4 and licensed following the conditions of the GNU Public License, version 3 or later. Chord version 3.6.4 Copyright 1992,1995,2009 Martin Leclerc and Mario Dorion License type: GPL. Chord version 3.6 Copyright 1992,1995 Martin Leclerc and Mario Dorion License type: GPL + restrictions. Johan Vromans Adam Monsen Martin Leclerc Mario Dorion chordii-4.3+repack/INSTALL0000644000175000017500000002243211316715175016365 0ustar gideonstargideonstarInstallation Instructions ************************* Copyright (C) 1994, 1995, 1996, 1999, 2000, 2001, 2002, 2004, 2005 Free Software Foundation, Inc. This file is free documentation; the Free Software Foundation gives unlimited permission to copy, distribute and modify it. Basic Installation ================== These are generic installation instructions. The `configure' shell script attempts to guess correct values for various system-dependent variables used during compilation. It uses those values to create a `Makefile' in each directory of the package. It may also create one or more `.h' files containing system-dependent definitions. Finally, it creates a shell script `config.status' that you can run in the future to recreate the current configuration, and a file `config.log' containing compiler output (useful mainly for debugging `configure'). It can also use an optional file (typically called `config.cache' and enabled with `--cache-file=config.cache' or simply `-C') that saves the results of its tests to speed up reconfiguring. (Caching is disabled by default to prevent problems with accidental use of stale cache files.) If you need to do unusual things to compile the package, please try to figure out how `configure' could check whether to do them, and mail diffs or instructions to the address given in the `README' so they can be considered for the next release. If you are using the cache, and at some point `config.cache' contains results you don't want to keep, you may remove or edit it. The file `configure.ac' (or `configure.in') is used to create `configure' by a program called `autoconf'. You only need `configure.ac' if you want to change it or regenerate `configure' using a newer version of `autoconf'. The simplest way to compile this package is: 1. `cd' to the directory containing the package's source code and type `./configure' to configure the package for your system. If you're using `csh' on an old version of System V, you might need to type `sh ./configure' instead to prevent `csh' from trying to execute `configure' itself. Running `configure' takes awhile. While running, it prints some messages telling which features it is checking for. 2. Type `make' to compile the package. 3. Optionally, type `make check' to run any self-tests that come with the package. 4. Type `make install' to install the programs and any data files and documentation. 5. You can remove the program binaries and object files from the source code directory by typing `make clean'. To also remove the files that `configure' created (so you can compile the package for a different kind of computer), type `make distclean'. There is also a `make maintainer-clean' target, but that is intended mainly for the package's developers. If you use it, you may have to get all sorts of other programs in order to regenerate files that came with the distribution. Compilers and Options ===================== Some systems require unusual options for compilation or linking that the `configure' script does not know about. Run `./configure --help' for details on some of the pertinent environment variables. You can give `configure' initial values for configuration parameters by setting variables in the command line or in the environment. Here is an example: ./configure CC=c89 CFLAGS=-O2 LIBS=-lposix *Note Defining Variables::, for more details. Compiling For Multiple Architectures ==================================== You can compile the package for more than one kind of computer at the same time, by placing the object files for each architecture in their own directory. To do this, you must use a version of `make' that supports the `VPATH' variable, such as GNU `make'. `cd' to the directory where you want the object files and executables to go and run the `configure' script. `configure' automatically checks for the source code in the directory that `configure' is in and in `..'. If you have to use a `make' that does not support the `VPATH' variable, you have to compile the package for one architecture at a time in the source code directory. After you have installed the package for one architecture, use `make distclean' before reconfiguring for another architecture. Installation Names ================== By default, `make install' installs the package's commands under `/usr/local/bin', include files under `/usr/local/include', etc. You can specify an installation prefix other than `/usr/local' by giving `configure' the option `--prefix=PREFIX'. You can specify separate installation prefixes for architecture-specific files and architecture-independent files. If you pass the option `--exec-prefix=PREFIX' to `configure', the package uses PREFIX as the prefix for installing programs and libraries. Documentation and other data files still use the regular prefix. In addition, if you use an unusual directory layout you can give options like `--bindir=DIR' to specify different values for particular kinds of files. Run `configure --help' for a list of the directories you can set and what kinds of files go in them. If the package supports it, you can cause programs to be installed with an extra prefix or suffix on their names by giving `configure' the option `--program-prefix=PREFIX' or `--program-suffix=SUFFIX'. Optional Features ================= Some packages pay attention to `--enable-FEATURE' options to `configure', where FEATURE indicates an optional part of the package. They may also pay attention to `--with-PACKAGE' options, where PACKAGE is something like `gnu-as' or `x' (for the X Window System). The `README' should mention any `--enable-' and `--with-' options that the package recognizes. For packages that use the X Window System, `configure' can usually find the X include and library files automatically, but if it doesn't, you can use the `configure' options `--x-includes=DIR' and `--x-libraries=DIR' to specify their locations. Specifying the System Type ========================== There may be some features `configure' cannot figure out automatically, but needs to determine by the type of machine the package will run on. Usually, assuming the package is built to be run on the _same_ architectures, `configure' can figure that out, but if it prints a message saying it cannot guess the machine type, give it the `--build=TYPE' option. TYPE can either be a short name for the system type, such as `sun4', or a canonical name which has the form: CPU-COMPANY-SYSTEM where SYSTEM can have one of these forms: OS KERNEL-OS See the file `config.sub' for the possible values of each field. If `config.sub' isn't included in this package, then this package doesn't need to know the machine type. If you are _building_ compiler tools for cross-compiling, you should use the option `--target=TYPE' to select the type of system they will produce code for. If you want to _use_ a cross compiler, that generates code for a platform different from the build platform, you should specify the "host" platform (i.e., that on which the generated programs will eventually be run) with `--host=TYPE'. Sharing Defaults ================ If you want to set default values for `configure' scripts to share, you can create a site shell script called `config.site' that gives default values for variables like `CC', `cache_file', and `prefix'. `configure' looks for `PREFIX/share/config.site' if it exists, then `PREFIX/etc/config.site' if it exists. Or, you can set the `CONFIG_SITE' environment variable to the location of the site script. A warning: not all `configure' scripts look for a site script. Defining Variables ================== Variables not defined in a site shell script can be set in the environment passed to `configure'. However, some packages may run configure again during the build, and the customized values of these variables may be lost. In order to avoid this problem, you should set them in the `configure' command line, using `VAR=value'. For example: ./configure CC=/usr/local2/bin/gcc causes the specified `gcc' to be used as the C compiler (unless it is overridden in the site shell script). Here is a another example: /bin/bash ./configure CONFIG_SHELL=/bin/bash Here the `CONFIG_SHELL=/bin/bash' operand causes subsequent configuration-related scripts to be executed by `/bin/bash'. `configure' Invocation ====================== `configure' recognizes the following options to control how it operates. `--help' `-h' Print a summary of the options to `configure', and exit. `--version' `-V' Print the version of Autoconf used to generate the `configure' script, and exit. `--cache-file=FILE' Enable the cache: use and save the results of the tests in FILE, traditionally `config.cache'. FILE defaults to `/dev/null' to disable caching. `--config-cache' `-C' Alias for `--cache-file=config.cache'. `--quiet' `--silent' `-q' Do not print messages saying which checks are being made. To suppress all normal output, redirect it to `/dev/null' (any error messages will still be shown). `--srcdir=DIR' Look for the package's source code in directory DIR. Usually `configure' can determine that directory automatically. `configure' also accepts some other, not widely useful, options. Run `configure --help' for more details.