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Also, change sources.redhat.com to sourceware.org. This patch was automatically generated by running the following shell script, which uses GNU sed, and which avoids modifying files imported from upstream: sed -ri ' s,(http|ftp)(://(.*\.)?(gnu|fsf|sourceware)\.org($|[^.]|\.[^a-z])),https\2,g s,(http|ftp)(://(.*\.)?)sources\.redhat\.com($|[^.]|\.[^a-z]),https\2sourceware.org\4,g ' \ $(find $(git ls-files) -prune -type f \ ! -name '*.po' \ ! -name 'ChangeLog*' \ ! -path COPYING ! -path COPYING.LIB \ ! -path manual/fdl-1.3.texi ! -path manual/lgpl-2.1.texi \ ! -path manual/texinfo.tex ! -path scripts/config.guess \ ! -path scripts/config.sub ! -path scripts/install-sh \ ! -path scripts/mkinstalldirs ! -path scripts/move-if-change \ ! -path INSTALL ! -path locale/programs/charmap-kw.h \ ! -path po/libc.pot ! -path sysdeps/gnu/errlist.c \ ! '(' -name configure \ -execdir test -f configure.ac -o -f configure.in ';' ')' \ ! '(' -name preconfigure \ -execdir test -f preconfigure.ac ';' ')' \ -print) and then by running 'make dist-prepare' to regenerate files built from the altered files, and then executing the following to cleanup: chmod a+x sysdeps/unix/sysv/linux/riscv/configure # Omit irrelevant whitespace and comment-only changes, # perhaps from a slightly-different Autoconf version. git checkout -f \ sysdeps/csky/configure \ sysdeps/hppa/configure \ sysdeps/riscv/configure \ sysdeps/unix/sysv/linux/csky/configure # Omit changes that caused a pre-commit check to fail like this: # remote: *** error: sysdeps/powerpc/powerpc64/ppc-mcount.S: trailing lines git checkout -f \ sysdeps/powerpc/powerpc64/ppc-mcount.S \ sysdeps/unix/sysv/linux/s390/s390-64/syscall.S # Omit change that caused a pre-commit check to fail like this: # remote: *** error: sysdeps/sparc/sparc64/multiarch/memcpy-ultra3.S: last line does not end in newline git checkout -f sysdeps/sparc/sparc64/multiarch/memcpy-ultra3.S
218 lines
8.7 KiB
Python
218 lines
8.7 KiB
Python
#!/usr/bin/python
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# Check that use of symbols declared in a given header does not result
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# in any symbols being brought in that are not reserved with external
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# linkage for the given standard.
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# Copyright (C) 2014-2019 Free Software Foundation, Inc.
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# This file is part of the GNU C Library.
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#
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# The GNU C Library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License, or (at your option) any later version.
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#
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# The GNU C Library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with the GNU C Library; if not, see
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# <https://www.gnu.org/licenses/>.
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import argparse
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from collections import defaultdict
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import os.path
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import re
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import subprocess
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import sys
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import tempfile
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import glibcconform
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# The following whitelisted symbols are also allowed for now.
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#
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# * Bug 17576: stdin, stdout, stderr only reserved with external
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# linkage when stdio.h included (and possibly not then), not
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# generally.
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#
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# * Bug 18442: re_syntax_options wrongly brought in by regcomp and
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# used by re_comp.
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#
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WHITELIST = {'stdin', 'stdout', 'stderr', 're_syntax_options'}
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def list_syms(filename):
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"""Return information about GLOBAL and WEAK symbols listed in readelf
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-s output."""
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ret = []
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cur_file = filename
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with open(filename, 'r') as syms_file:
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for line in syms_file:
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line = line.rstrip()
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if line.startswith('File: '):
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cur_file = line[len('File: '):]
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cur_file = cur_file.split('/')[-1]
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continue
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# Architecture-specific st_other bits appear inside [] and
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# disrupt the format of readelf output.
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line = re.sub(r'\[.*?\]', '', line)
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fields = line.split()
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if len(fields) < 8:
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continue
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bind = fields[4]
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ndx = fields[6]
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sym = fields[7]
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if bind not in ('GLOBAL', 'WEAK'):
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continue
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if not re.fullmatch('[A-Za-z0-9_]+', sym):
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continue
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ret.append((cur_file, sym, bind, ndx != 'UND'))
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return ret
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def main():
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"""The main entry point."""
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parser = argparse.ArgumentParser(description='Check link-time namespace.')
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parser.add_argument('--header', metavar='HEADER',
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help='name of header')
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parser.add_argument('--standard', metavar='STD',
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help='standard to use when processing header')
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parser.add_argument('--cc', metavar='CC',
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help='C compiler to use')
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parser.add_argument('--flags', metavar='CFLAGS',
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help='Compiler flags to use with CC')
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parser.add_argument('--stdsyms', metavar='FILE',
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help='File with list of standard symbols')
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parser.add_argument('--libsyms', metavar='FILE',
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help='File with symbol information from libraries')
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parser.add_argument('--readelf', metavar='READELF',
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help='readelf program to use')
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args = parser.parse_args()
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# Load the list of symbols that are OK.
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stdsyms = set()
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with open(args.stdsyms, 'r') as stdsyms_file:
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for line in stdsyms_file:
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stdsyms.add(line.rstrip())
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stdsyms |= WHITELIST
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# Load information about GLOBAL and WEAK symbols defined or used
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# in the standard libraries.
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# Symbols from a given object, except for weak defined symbols.
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seen_syms = defaultdict(list)
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# Strong undefined symbols from a given object.
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strong_undef_syms = defaultdict(list)
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# Objects defining a given symbol (strongly or weakly).
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sym_objs = defaultdict(list)
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for file, name, bind, defined in list_syms(args.libsyms):
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if defined:
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sym_objs[name].append(file)
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if bind == 'GLOBAL' or not defined:
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seen_syms[file].append(name)
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if bind == 'GLOBAL' and not defined:
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strong_undef_syms[file].append(name)
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# Determine what ELF-level symbols are brought in by use of C-level
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# symbols declared in the given header.
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#
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# The rules followed are heuristic and so may produce false
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# positives and false negatives.
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#
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# * All undefined symbols are considered of signficance, but it is
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# possible that (a) any standard library definition is weak, so
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# can be overridden by the user's definition, and (b) the symbol
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# is only used conditionally and not if the program is limited to
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# standard functionality.
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#
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# * If a symbol reference is only brought in by the user using a
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# data symbol rather than a function from the standard library,
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# this will not be detected.
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#
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# * If a symbol reference is only brought in by crt*.o or libgcc,
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# this will not be detected.
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#
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# * If a symbol reference is only brought in through __builtin_foo
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# in a standard macro being compiled to call foo, this will not be
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# detected.
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#
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# * Header inclusions should be compiled several times with
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# different options such as -O2, -D_FORTIFY_SOURCE and
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# -D_FILE_OFFSET_BITS=64 to find out what symbols are undefined
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# from such a compilation; this is not yet implemented.
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#
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# * This script finds symbols referenced through use of macros on
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# the basis that if a macro calls an internal function, that
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# function must also be declared in the header. However, the
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# header might also declare implementation-namespace functions
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# that are not called by any standard macro in the header,
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# resulting in false positives for any symbols brought in only
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# through use of those implementation-namespace functions.
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#
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# * Namespace issues can apply for dynamic linking as well as
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# static linking, when a call is from one shared library to
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# another or uses a PLT entry for a call within a shared library;
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# such issues are only detected by this script if the same
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# namespace issue applies for static linking.
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seen_where = {}
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files_seen = set()
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all_undef = {}
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current_undef = {}
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compiler = '%s %s' % (args.cc, args.flags)
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c_syms = glibcconform.list_exported_functions(compiler, args.standard,
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args.header)
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with tempfile.TemporaryDirectory() as temp_dir:
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cincfile_name = os.path.join(temp_dir, 'undef.c')
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cincfile_o_name = os.path.join(temp_dir, 'undef.o')
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cincfile_sym_name = os.path.join(temp_dir, 'undef.sym')
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cincfile_text = ('#include <%s>\n%s\n'
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% (args.header,
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'\n'.join('void *__glibc_test_%s = (void *) &%s;'
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% (sym, sym) for sym in sorted(c_syms))))
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with open(cincfile_name, 'w') as cincfile:
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cincfile.write(cincfile_text)
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cmd = ('%s %s -D_ISOMAC %s -c %s -o %s'
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% (args.cc, args.flags, glibcconform.CFLAGS[args.standard],
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cincfile_name, cincfile_o_name))
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subprocess.check_call(cmd, shell=True)
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cmd = ('LC_ALL=C %s -W -s %s > %s'
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% (args.readelf, cincfile_o_name, cincfile_sym_name))
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subprocess.check_call(cmd, shell=True)
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for file, name, bind, defined in list_syms(cincfile_sym_name):
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if bind == 'GLOBAL' and not defined:
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sym_text = '[initial] %s' % name
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seen_where[name] = sym_text
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all_undef[name] = sym_text
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current_undef[name] = sym_text
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while current_undef:
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new_undef = {}
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for sym, cu_sym in sorted(current_undef.items()):
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for file in sym_objs[sym]:
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if file in files_seen:
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continue
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files_seen.add(file)
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for ssym in seen_syms[file]:
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if ssym not in seen_where:
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seen_where[ssym] = ('%s -> [%s] %s'
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% (cu_sym, file, ssym))
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for usym in strong_undef_syms[file]:
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if usym not in all_undef:
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usym_text = '%s -> [%s] %s' % (cu_sym, file, usym)
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all_undef[usym] = usym_text
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new_undef[usym] = usym_text
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current_undef = new_undef
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ret = 0
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for sym in sorted(seen_where):
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if sym.startswith('_'):
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continue
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if sym in stdsyms:
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continue
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print(seen_where[sym])
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ret = 1
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sys.exit(ret)
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if __name__ == '__main__':
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main()
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