197e01b6dc
* arm-tdep.c: * ia64-tdep.c: * i386-tdep.c: * hpread.c: * hppa-tdep.c: * hppa-hpux-tdep.c: * gnu-nat.c: * gdbtypes.c: * gdbarch.h: * gdbarch.c: * eval.c: * dwarf2read.c: * dbxread.c: * copying: * symfile.c: * stabsread.c: * sh64-tdep.c: * sh-tdep.c: * s390-tdep.c: * rs6000-tdep.c: * remote.c: * remote-mips.c: * mips-tdep.c: * mdebugread.c: * linux-nat.c: * infrun.c: * xcoffread.c: * win32-nat.c: * valops.c: * utils.c: * tracepoint.c: * target.c: * symtab.c: * c-exp.y: * ada-valprint.c: * ada-typeprint.c: * ada-lex.l: * ada-lang.h: * ada-lang.c: * ada-exp.y: * alphafbsd-tdep.c: * alphabsd-tdep.h: * alphabsd-tdep.c: * alphabsd-nat.c: * alpha-tdep.h: * alpha-tdep.c: * alpha-osf1-tdep.c: * alpha-nat.c: * alpha-mdebug-tdep.c: * alpha-linux-tdep.c: * alpha-linux-nat.c: * aix-thread.c: * abug-rom.c: * arch-utils.c: * annotate.h: * annotate.c: * amd64obsd-tdep.c: * amd64obsd-nat.c: * amd64nbsd-tdep.c: * amd64nbsd-nat.c: * amd64fbsd-tdep.c: * amd64fbsd-nat.c: * amd64bsd-nat.c: * amd64-tdep.h: * amd64-tdep.c: * amd64-sol2-tdep.c: * amd64-nat.h: * amd64-nat.c: * amd64-linux-tdep.c: * amd64-linux-nat.c: * alphanbsd-tdep.c: * block.h: * block.c: * bfd-target.h: * bfd-target.c: * bcache.h: * bcache.c: * ax.h: * ax-general.c: * ax-gdb.h: * ax-gdb.c: * avr-tdep.c: * auxv.h: * auxv.c: * armnbsd-tdep.c: * armnbsd-nat.c: * arm-tdep.h: * arm-linux-nat.c: * arch-utils.h: * charset.c: * call-cmds.h: * c-valprint.c: * c-typeprint.c: * c-lang.h: * c-lang.c: * buildsym.h: * buildsym.c: * bsd-uthread.h: * bsd-uthread.c: * bsd-kvm.h: * bsd-kvm.c: * breakpoint.h: * core-regset.c: * core-aout.c: * completer.h: * completer.c: * complaints.h: * complaints.c: * command.h: * coffread.c: * coff-solib.h: * coff-solib.c: * coff-pe-read.h: * coff-pe-read.c: * cli-out.h: * cli-out.c: * charset.h: * dink32-rom.c: * dictionary.h: * dictionary.c: * demangle.c: * defs.h: * dcache.h: * dcache.c: * d10v-tdep.c: * cpu32bug-rom.c: * cp-valprint.c: * cp-support.h: * cp-support.c: * cp-namespace.c: * cp-abi.h: * cp-abi.c: * corelow.c: * corefile.c: * environ.c: * elfread.c: * dwarfread.c: * dwarf2loc.c: * dwarf2expr.h: * dwarf2expr.c: * dwarf2-frame.h: * dwarf2-frame.c: * dve3900-rom.c: * dummy-frame.h: * dummy-frame.c: * dsrec.c: * doublest.h: * doublest.c: * disasm.h: * disasm.c: * fork-child.c: * findvar.c: * fbsd-nat.h: * fbsd-nat.c: * f-valprint.c: * f-typeprint.c: * f-lang.h: * f-lang.c: * expression.h: * expprint.c: * exec.h: * exec.c: * exceptions.h: * exceptions.c: * event-top.h: * event-top.c: * event-loop.h: * event-loop.c: * gdb.c: * gdb-stabs.h: * gdb-events.h: * gdb-events.c: * gcore.c: * frv-tdep.h: * frv-tdep.c: * frv-linux-tdep.c: * frame.h: * frame.c: * frame-unwind.h: * frame-unwind.c: * frame-base.h: * frame-base.c: * gdb_vfork.h: * gdb_thread_db.h: * gdb_string.h: * gdb_stat.h: * gdb_regex.h: * gdb_ptrace.h: * gdb_proc_service.h: * gdb_obstack.h: * gdb_locale.h: * gdb_dirent.h: * gdb_curses.h: * gdb_assert.h: * gdbarch.sh: * gdb.h: * hpux-thread.c: * hppabsd-nat.c: * hppa-tdep.h: * hpacc-abi.c: * h8300-tdep.c: * gregset.h: * go32-nat.c: * gnu-v3-abi.c: * gnu-v2-abi.h: * gnu-v2-abi.c: * gnu-nat.h: * glibc-tdep.c: * gdbtypes.h: * gdbcore.h: * gdbcmd.h: * i386nbsd-tdep.c: * i386nbsd-nat.c: * i386gnu-tdep.c: * i386gnu-nat.c: * i386fbsd-tdep.c: * i386fbsd-nat.c: * i386bsd-tdep.c: * i386bsd-nat.h: * i386bsd-nat.c: * i386-tdep.h: * i386-sol2-nat.c: * i386-nto-tdep.c: * i386-nat.c: * i386-linux-tdep.h: * i386-linux-tdep.c: * i386-linux-nat.c: * i386-cygwin-tdep.c: * inf-ttrace.c: * inf-ptrace.h: * inf-ptrace.c: * inf-loop.h: * inf-loop.c: * inf-child.h: * inf-child.c: * ia64-tdep.h: * ia64-linux-nat.c: * i387-tdep.h: * i387-tdep.c: * i386v4-nat.c: * i386v-nat.c: * i386obsd-tdep.c: * i386obsd-nat.c: * kod.c: * jv-valprint.c: * jv-typeprint.c: * jv-lang.h: * jv-lang.c: * irix5-nat.c: * iq2000-tdep.c: * interps.h: * interps.c: * inftarg.c: * inflow.h: * inflow.c: * inferior.h: * infcmd.c: * infcall.h: * infcall.c: * inf-ttrace.h: * m32r-tdep.h: * m32r-tdep.c: * m32r-rom.c: * m32r-linux-tdep.c: * m32r-linux-nat.c: * m2-valprint.c: * m2-typeprint.c: * m2-lang.h: * m2-lang.c: * lynx-nat.c: * linux-thread-db.c: * linux-nat.h: * linespec.c: * libunwind-frame.h: * libunwind-frame.c: * language.h: * language.c: * macroexp.c: * macrocmd.c: * m88kbsd-nat.c: * m88k-tdep.h: * m88k-tdep.c: * m68klinux-tdep.c: * m68klinux-nat.c: * m68kbsd-tdep.c: * m68kbsd-nat.c: * m68k-tdep.h: * m68k-tdep.c: * mips-linux-nat.c: * mips-irix-tdep.c: * minsyms.c: * memattr.h: * memattr.c: * mem-break.c: * mdebugread.h: * main.h: * main.c: * macrotab.h: * macrotab.c: * macroscope.h: * macroscope.c: * macroexp.h: * nbsd-tdep.c: * mt-tdep.c: * monitor.h: * monitor.c: * mn10300-tdep.h: * mn10300-tdep.c: * mn10300-linux-tdep.c: * mipsv4-nat.c: * mipsread.c: * mipsnbsd-tdep.h: * mipsnbsd-tdep.c: * mipsnbsd-nat.c: * mips64obsd-tdep.c: * mips64obsd-nat.c: * mips-tdep.h: * mips-mdebug-tdep.c: * mips-linux-tdep.c: * osabi.h: * osabi.c: * ocd.h: * ocd.c: * observer.c: * objfiles.h: * objfiles.c: * objc-lang.h: * objc-lang.c: * objc-exp.y: * nto-tdep.h: * nto-tdep.c: * nto-procfs.c: * nlmread.c: * nbsd-tdep.h: * ppcobsd-tdep.c: * ppcobsd-nat.c: * ppcnbsd-tdep.h: * ppcnbsd-tdep.c: * ppcnbsd-nat.c: * ppcbug-rom.c: * ppc-tdep.h: * ppc-sysv-tdep.c: * ppc-linux-tdep.c: * ppc-linux-nat.c: * ppc-bdm.c: * parser-defs.h: * parse.c: * p-valprint.c: * p-typeprint.c: * p-lang.h: * p-lang.c: * remote-fileio.h: * remote-fileio.c: * remote-est.c: * remote-e7000.c: * regset.h: * regset.c: * reggroups.h: * reggroups.c: * regcache.h: * regcache.c: * proc-why.c: * proc-service.c: * proc-events.c: * printcmd.c: * ppcobsd-tdep.h: * sentinel-frame.h: * sentinel-frame.c: * scm-valprint.c: * scm-tags.h: * scm-lang.h: * scm-lang.c: * scm-exp.c: * s390-tdep.h: * rom68k-rom.c: * remote.h: * remote-utils.c: * remote-st.c: * remote-sim.c: * remote-sds.c: * remote-rdp.c: * remote-rdi.c: * remote-hms.c: * sim-regno.h: * shnbsd-tdep.h: * shnbsd-tdep.c: * shnbsd-nat.c: * sh-tdep.h: * serial.h: * serial.c: * ser-unix.h: * ser-unix.c: * ser-tcp.c: * ser-pipe.c: * ser-go32.c: * ser-e7kpc.c: * ser-base.h: * ser-base.c: * solib.c: * solib-svr4.h: * solib-svr4.c: * solib-sunos.c: * solib-som.h: * solib-som.c: * solib-pa64.h: * solib-pa64.c: * solib-osf.c: * solib-null.c: * solib-legacy.c: * solib-irix.c: * solib-frv.c: * solib-aix5.c: * sol-thread.c: * sparc64-linux-tdep.c: * sparc64-linux-nat.c: * sparc-tdep.h: * sparc-tdep.c: * sparc-sol2-tdep.c: * sparc-sol2-nat.c: * sparc-nat.h: * sparc-nat.c: * sparc-linux-tdep.c: * sparc-linux-nat.c: * source.h: * source.c: * somread.c: * solist.h: * solib.h: * std-regs.c: * stack.h: * stack.c: * stabsread.h: * sparcobsd-tdep.c: * sparcnbsd-tdep.c: * sparcnbsd-nat.c: * sparc64obsd-tdep.c: * sparc64nbsd-tdep.c: * sparc64nbsd-nat.c: * sparc64fbsd-tdep.c: * sparc64fbsd-nat.c: * sparc64-tdep.h: * sparc64-tdep.c: * sparc64-sol2-tdep.c: * sparc64-nat.c: * ui-file.c: * typeprint.h: * typeprint.c: * tramp-frame.h: * tramp-frame.c: * trad-frame.h: * trad-frame.c: * tracepoint.h: * top.c: * tobs.inc: * thread.c: * terminal.h: * target.h: * symfile.h: * stop-gdb.c: * vaxbsd-nat.c: * vax-tdep.h: * vax-tdep.c: * vax-nat.c: * varobj.h: * varobj.c: * value.h: * value.c: * valprint.h: * valprint.c: * v850-tdep.c: * uw-thread.c: * user-regs.c: * ui-out.h: * ui-out.c: * ui-file.h: * xcoffsolib.h: * xcoffsolib.c: * wrapper.c: * wince.c: * wince-stub.h: * wince-stub.c: * vaxobsd-tdep.c: * vaxnbsd-tdep.c: * gdb_gcore.sh: * copying.c: * configure.ac: * aclocal.m4: * acinclude.m4: * reply_mig_hack.awk: * observer.sh: * gdb_mbuild.sh: * arm-linux-tdep.c: * blockframe.c: * dbug-rom.c: * environ.h: * dwarf2loc.h: * gdb-events.sh: * glibc-tdep.h: * gdb_wait.h: * gdbthread.h: * i386-sol2-tdep.c: * hppabsd-tdep.c: * hppa-linux-nat.c: * hppa-hpux-nat.c: * ia64-linux-tdep.c: * infptrace.c: * linespec.h: * maint.c: * mips-mdebug-tdep.h: * remote-m32r-sdi.c: * s390-nat.c: * rs6000-nat.c: * remote-utils.h: * sh3-rom.c: * sh-linux-tdep.c: * top.h: * symtab.h: * symmisc.c: * symfile-mem.c: * srec.h: * user-regs.h: * version.h: * valarith.c: * xstormy16-tdep.c: * wrapper.h: * Makefile.in: * f-exp.y: * cris-tdep.c: * cp-name-parser.y: * procfs.c: * proc-utils.h: * proc-flags.c: * proc-api.c: * p-exp.y: * m68hc11-tdep.c: * m2-exp.y: * kod.h: * kod-cisco.c: * jv-exp.y: * hppa-linux-tdep.c: Add (c) after Copyright. Update the FSF address.
304 lines
13 KiB
C
304 lines
13 KiB
C
/* Interface to C preprocessor macro tables for GDB.
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Copyright (C) 2002 Free Software Foundation, Inc.
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Contributed by Red Hat, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program 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
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301, USA. */
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#ifndef MACROTAB_H
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#define MACROTAB_H
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struct obstack;
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struct bcache;
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/* How do we represent a source location? I mean, how should we
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represent them within GDB; the user wants to use all sorts of
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ambiguous abbreviations, like "break 32" and "break foo.c:32"
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("foo.c" may have been #included into several compilation units),
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but what do we disambiguate those things to?
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- Answer 1: "Filename and line number." (Or column number, if
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you're picky.) That's not quite good enough. For example, the
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same source file can be #included into several different
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compilation units --- which #inclusion do you mean?
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- Answer 2: "Compilation unit, filename, and line number." This is
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a pretty good answer; GDB's `struct symtab_and_line' basically
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embodies this representation. But it's still ambiguous; what if a
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given compilation unit #includes the same file twice --- how can I
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set a breakpoint on line 12 of the fifth #inclusion of "foo.c"?
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- Answer 3: "Compilation unit, chain of #inclusions, and line
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number." This is analogous to the way GCC reports errors in
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#include files:
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$ gcc -c base.c
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In file included from header2.h:8,
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from header1.h:3,
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from base.c:5:
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header3.h:1: parse error before ')' token
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$
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GCC tells you exactly what path of #inclusions led you to the
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problem. It gives you complete information, in a way that the
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following would not:
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$ gcc -c base.c
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header3.h:1: parse error before ')' token
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$
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Converting all of GDB to use this is a big task, and I'm not really
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suggesting it should be a priority. But this module's whole
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purpose is to maintain structures describing the macro expansion
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process, so I think it's appropriate for us to take a little care
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to do that in a complete fashion.
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In this interface, the first line of a file is numbered 1, not 0.
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This is the same convention the rest of GDB uses. */
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/* A table of all the macro definitions for a given compilation unit. */
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struct macro_table;
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/* A source file that participated in a compilation unit --- either a
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main file, or an #included file. If a file is #included more than
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once, the presence of the `included_from' and `included_at_line'
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members means that we need to make one instance of this structure
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for each #inclusion. Taken as a group, these structures form a
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tree mapping the #inclusions that contributed to the compilation
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unit, with the main source file as its root.
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Beware --- not every source file mentioned in a compilation unit's
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symtab structures will appear in the #inclusion tree! As of Oct
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2002, GCC does record the effect of #line directives in the source
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line info, but not in macro info. This means that GDB's symtabs
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(built from the former, among other things) may mention filenames
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that the #inclusion tree (built from the latter) doesn't have any
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record of. See macroscope.c:sal_macro_scope for how to accomodate
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this.
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It's worth noting that libcpp has a simpler way of representing all
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this, which we should consider switching to. It might even be
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suitable for ordinary non-macro line number info.
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Suppose you take your main source file, and after each line
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containing an #include directive you insert the text of the
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#included file. The result is a big file that pretty much
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corresponds to the full text the compiler's going to see. There's
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a one-to-one correspondence between lines in the big file and
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per-inclusion lines in the source files. (Obviously, #include
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directives that are #if'd out don't count. And you'll need to
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append a newline to any file that doesn't end in one, to avoid
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splicing the last #included line with the next line of the
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#including file.)
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Libcpp calls line numbers in this big imaginary file "logical line
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numbers", and has a data structure called a "line map" that can map
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logical line numbers onto actual source filenames and line numbers,
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and also tell you the chain of #inclusions responsible for any
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particular logical line number. Basically, this means you can pass
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around a single line number and some kind of "compilation unit"
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object and you get nice, unambiguous source code locations that
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distinguish between multiple #inclusions of the same file, etc.
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Pretty neat, huh? */
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struct macro_source_file
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{
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/* The macro table for the compilation unit this source location is
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a part of. */
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struct macro_table *table;
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/* A source file --- possibly a header file. */
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const char *filename;
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/* The location we were #included from, or zero if we are the
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compilation unit's main source file. */
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struct macro_source_file *included_by;
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/* If `included_from' is non-zero, the line number in that source
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file at which we were included. */
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int included_at_line;
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/* Head of a linked list of the source files #included by this file;
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our children in the #inclusion tree. This list is sorted by its
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elements' `included_at_line' values, which are unique. (The
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macro splay tree's ordering function needs this property.) */
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struct macro_source_file *includes;
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/* The next file #included by our `included_from' file; our sibling
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in the #inclusion tree. */
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struct macro_source_file *next_included;
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};
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/* Create a new, empty macro table. Allocate it in OBSTACK, or use
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xmalloc if OBSTACK is zero. Use BCACHE to store all macro names,
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arguments, definitions, and anything else that might be the same
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amongst compilation units in an executable file; if BCACHE is zero,
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don't cache these things.
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Note that, if either OBSTACK or BCACHE are non-zero, then you
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should only ever add information the macro table --- you should
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never remove things from it. You'll get an error if you try. At
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the moment, since we only provide obstacks and bcaches for macro
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tables for symtabs, this restriction makes a nice sanity check.
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Obstacks and bcaches are pretty much grow-only structures anyway.
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However, if we find that it's occasionally useful to delete things
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even from the symtab's tables, and the storage leak isn't a
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problem, this restriction could be lifted. */
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struct macro_table *new_macro_table (struct obstack *obstack,
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struct bcache *bcache);
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/* Free TABLE, and any macro definitions, source file structures,
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etc. it owns. This will raise an internal error if TABLE was
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allocated on an obstack, or if it uses a bcache. */
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void free_macro_table (struct macro_table *table);
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/* Set FILENAME as the main source file of TABLE. Return a source
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file structure describing that file; if we record the #definition
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of macros, or the #inclusion of other files into FILENAME, we'll
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use that source file structure to indicate the context.
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The "main source file" is the one that was given to the compiler;
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all other source files that contributed to the compilation unit are
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#included, directly or indirectly, from this one.
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The macro table makes its own copy of FILENAME; the caller is
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responsible for freeing FILENAME when it is no longer needed. */
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struct macro_source_file *macro_set_main (struct macro_table *table,
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const char *filename);
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/* Return the main source file of the macro table TABLE. */
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struct macro_source_file *macro_main (struct macro_table *table);
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/* Record a #inclusion.
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Record in SOURCE's macro table that, at line number LINE in SOURCE,
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we #included the file INCLUDED. Return a source file structure we
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can use for symbols #defined or files #included into that. If we've
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already created a source file structure for this #inclusion, return
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the same structure we created last time.
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The first line of the source file has a line number of 1, not 0.
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The macro table makes its own copy of INCLUDED; the caller is
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responsible for freeing INCLUDED when it is no longer needed. */
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struct macro_source_file *macro_include (struct macro_source_file *source,
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int line,
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const char *included);
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/* Find any source file structure for a file named NAME, either
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included into SOURCE, or SOURCE itself. Return zero if we have
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none. NAME is only the final portion of the filename, not the full
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path. e.g., `stdio.h', not `/usr/include/stdio.h'. If NAME
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appears more than once in the inclusion tree, return the
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least-nested inclusion --- the one closest to the main source file. */
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struct macro_source_file *(macro_lookup_inclusion
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(struct macro_source_file *source,
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const char *name));
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/* Record an object-like #definition (i.e., one with no parameter list).
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Record in SOURCE's macro table that, at line number LINE in SOURCE,
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we #defined a preprocessor symbol named NAME, whose replacement
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string is REPLACEMENT. This function makes copies of NAME and
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REPLACEMENT; the caller is responsible for freeing them. */
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void macro_define_object (struct macro_source_file *source, int line,
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const char *name, const char *replacement);
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/* Record an function-like #definition (i.e., one with a parameter list).
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Record in SOURCE's macro table that, at line number LINE in SOURCE,
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we #defined a preprocessor symbol named NAME, with ARGC arguments
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whose names are given in ARGV, whose replacement string is REPLACEMENT. If
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the macro takes a variable number of arguments, then ARGC should be
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one greater than the number of named arguments, and ARGV[ARGC-1]
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should be the string "...". This function makes its own copies of
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NAME, ARGV, and REPLACEMENT; the caller is responsible for freeing
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them. */
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void macro_define_function (struct macro_source_file *source, int line,
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const char *name, int argc, const char **argv,
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const char *replacement);
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/* Record an #undefinition.
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Record in SOURCE's macro table that, at line number LINE in SOURCE,
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we removed the definition for the preprocessor symbol named NAME. */
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void macro_undef (struct macro_source_file *source, int line,
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const char *name);
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/* Different kinds of macro definitions. */
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enum macro_kind
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{
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macro_object_like,
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macro_function_like
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};
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/* A preprocessor symbol definition. */
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struct macro_definition
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{
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/* The table this definition lives in. */
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struct macro_table *table;
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/* What kind of macro it is. */
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enum macro_kind kind;
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/* If `kind' is `macro_function_like', the number of arguments it
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takes, and their names. The names, and the array of pointers to
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them, are in the table's bcache, if it has one. */
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int argc;
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const char * const *argv;
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/* The replacement string (body) of the macro. This is in the
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|
table's bcache, if it has one. */
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const char *replacement;
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};
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/* Return a pointer to the macro definition for NAME in scope at line
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number LINE of SOURCE. If LINE is -1, return the definition in
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|
effect at the end of the file. The macro table owns the structure;
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the caller need not free it. Return zero if NAME is not #defined
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at that point. */
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struct macro_definition *(macro_lookup_definition
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|
(struct macro_source_file *source,
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|
int line, const char *name));
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/* Return the source location of the definition for NAME in scope at
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|
line number LINE of SOURCE. Set *DEFINITION_LINE to the line
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|
number of the definition, and return a source file structure for
|
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the file. Return zero if NAME has no definition in scope at that
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point, and leave *DEFINITION_LINE unchanged. */
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struct macro_source_file *(macro_definition_location
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|
(struct macro_source_file *source,
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|
int line,
|
|
const char *name,
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|
int *definition_line));
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#endif /* MACROTAB_H */
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