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Makefile.in
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Makefile.in
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# Makefile for GNU C compiler.
# Copyright (C) 1987, 88, 90-97, 1998 Free Software Foundation, Inc.
#This file is part of GNU CC.
#GNU CC 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.
#GNU CC 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 GNU CC; see the file COPYING. If not, write to
#the Free Software Foundation, 59 Temple Place - Suite 330,
#Boston MA 02111-1307, USA.
# The targets for external use include:
# all, doc, proto, install, install-cross, install-cross-rest,
# uninstall, TAGS, mostlyclean, clean, distclean, maintainer-clean,
# stage1, stage2, stage3, stage4.
# Suppress smart makes who think they know how to automake Yacc files
.y.c:
# Directory where sources are, from where we are.
srcdir = @srcdir@
VPATH = @srcdir@
# Variables that exist for you to override.
# See below for how to change them for certain systems.
# List of language subdirectories.
# This is overridden by configure.
SUBDIRS =@subdirs@
# Selection of languages to be made.
# This is overridden by configure.
LANGUAGES = c proto gcov @all_languages@
# Selection of languages to be made during stage1 build.
# This is overridden by configure.
BOOT_LANGUAGES = c @all_boot_languages@
ALLOCA =
ALLOCA_FLAGS =
ALLOCA_FINISH = true
# Various ways of specifying flags for compilations:
# CFLAGS is for the user to override to, e.g., do a bootstrap with -O2.
# BOOT_CFLAGS is the value of CFLAGS to pass
# to the stage2 and stage3 compilations
# XCFLAGS is used for most compilations but not when using the GCC just built.
# TCFLAGS is used for compilations with the GCC just built.
XCFLAGS =
TCFLAGS =
CFLAGS = -g
BOOT_CFLAGS = -O $(CFLAGS)
# These exists to be overridden by the x-* and t-* files, respectively.
X_CFLAGS =
T_CFLAGS =
X_CPPFLAGS =
T_CPPFLAGS =
CC = @CC@
BISON = bison
BISONFLAGS =
LEX = flex
LEXFLAGS =
AR = ar
AR_FLAGS = rc
LN = @symbolic_link@
DLLTOOL = dlltool
SHELL = /bin/sh
# on sysV, define this as cp.
INSTALL = @INSTALL@
# These permit overriding just for certain files.
INSTALL_PROGRAM = $(INSTALL)
INSTALL_DATA = $(INSTALL)
MAKEINFO = makeinfo
MAKEINFOFLAGS =
TEXI2DVI = texi2dvi
# For GNUmake: let us decide what gets passed to recursive makes.
MAKEOVERRIDES =
@SET_MAKE@
# Define this as & to perform parallel make on a Sequent.
# Note that this has some bugs, and it seems currently necessary
# to compile all the gen* files first by hand to avoid erroneous results.
P =
# How to invoke ranlib.
RANLIB = ranlib
# Test to use to see whether ranlib exists on the system.
RANLIB_TEST = [ -f /usr/bin/ranlib -o -f /bin/ranlib ]
# Compiler to use for compiling libgcc1.a.
# OLDCC should not be the GNU C compiler,
# since that would compile typical libgcc1.a functions such as mulsi3
# into infinite recursions.
OLDCC = cc
# CFLAGS for use with OLDCC, for compiling libgcc1.a.
# NOTE: -O does not work on some Unix systems!
CCLIBFLAGS = -O
# Version of ar to use when compiling libgcc1.a.
OLDAR = ar
OLDAR_FLAGS = qc
# Target to use when installing include directory. Either
# install-headers-tar or install-headers-cpio.
INSTALL_HEADERS_DIR = @build_install_headers_dir@
# Header files that are made available under the same name
# to programs compiled with GCC.
USER_H = $(srcdir)/ginclude/stdarg.h $(srcdir)/ginclude/stddef.h \
$(srcdir)/ginclude/varargs.h $(srcdir)/ginclude/va-alpha.h \
$(srcdir)/ginclude/va-h8300.h $(srcdir)/ginclude/va-i860.h \
$(srcdir)/ginclude/va-i960.h $(srcdir)/ginclude/va-mips.h \
$(srcdir)/ginclude/va-m88k.h $(srcdir)/ginclude/va-mn10200.h \
$(srcdir)/ginclude/va-mn10300.h $(srcdir)/ginclude/va-pa.h \
$(srcdir)/ginclude/va-pyr.h $(srcdir)/ginclude/va-sparc.h \
$(srcdir)/ginclude/va-clipper.h $(srcdir)/ginclude/va-spur.h \
$(srcdir)/ginclude/va-m32r.h $(srcdir)/ginclude/va-sh.h \
$(srcdir)/ginclude/va-v850.h $(srcdir)/ginclude/va-arc.h \
$(srcdir)/ginclude/iso646.h $(srcdir)/ginclude/va-ppc.h \
$(srcdir)/ginclude/proto.h $(EXTRA_HEADERS) \
$(LANG_EXTRA_HEADERS)
# Target to use whe installing assert.h. Some systems may
# want to set this empty.
INSTALL_ASSERT_H = install-assert-h
# The GCC to use for compiling libgcc2.a, enquire, and libgcc1-test.
# Usually the one we just built.
# Don't use this as a dependency--use $(GCC_PASSES) or $(GCC_PARTS).
GCC_FOR_TARGET = ./xgcc -B./
# This is used instead of ALL_CFLAGS when compiling with GCC_FOR_TARGET.
# It omits XCFLAGS, and specifies -B./.
# It also specifies -I./include to find, e.g., stddef.h.
GCC_CFLAGS=$(INTERNAL_CFLAGS) $(X_CFLAGS) $(T_CFLAGS) $(CFLAGS) -I./include $(TCFLAGS)
# Special flags for compiling enquire.
# We disable optimization to make floating point more reliable.
ENQUIRE_CFLAGS = -DNO_MEM -DNO_LONG_DOUBLE_IO -O0
ENQUIRE_LDFLAGS = $(LDFLAGS)
# Sed command to transform gcc to installed name. Overwritten by configure.
program_transform_name = -e s,x,x,
program_transform_cross_name = -e s,^,$(target_alias)-,
# Tools to use when building a cross-compiler.
# These are used because `configure' appends `cross-make'
# to the makefile when making a cross-compiler.
TARGET_TOOLPREFIX = $(tooldir)/bin/
AR_FOR_TARGET = $(TARGET_TOOLPREFIX)ar
AR_FOR_TARGET_FLAGS = rc
RANLIB_FOR_TARGET = $(TARGET_TOOLPREFIX)ranlib
RANLIB_TEST_FOR_TARGET = [ -f $(TARGET_TOOLPREFIX)ranlib ]
# Dir to search for system headers. Overridden by cross-make.
SYSTEM_HEADER_DIR = /usr/include
# Control whether to run fixproto.
STMP_FIXPROTO = stmp-fixproto
# Test to see whether <float.h> exists in the system header files,
# and is not derived from GCC.
FLOAT_H_TEST = \
[ -f $(SYSTEM_HEADER_DIR)/float.h ] && \
if grep 'ifndef _FLOAT_H___' $(SYSTEM_HEADER_DIR)/float.h >/dev/null; \
then false; \
else :; fi
# Test to see whether <limits.h> exists in the system header files.
LIMITS_H_TEST = [ -f $(SYSTEM_HEADER_DIR)/limits.h ]
# There may be a premade insn-attrtab.c for this machine.
# (You could rebuild it with genattrtab as usual, but it takes a long time.)
# PREMADE_ATTRTAB is the file name of the file to use.
# PREMADE_ATTRTAB_MD is the md file it corresponds to.
PREMADE_ATTRTAB_MD = Makefile # Guaranteed not to cmp equal to md.
PREMADE_ATTRTAB =
target=@target@
target_alias=@target_alias@
xmake_file=@dep_host_xmake_file@
tmake_file=@dep_tmake_file@
out_file=$(srcdir)/config/@out_file@
out_object_file=@out_object_file@
md_file=$(srcdir)/config/@md_file@
tm_file=@tm_file_list@
build_xm_file=@build_xm_file_list@
host_xm_file=@host_xm_file_list@
lang_specs_files=@lang_specs_files@
lang_options_files=@lang_options_files@
GCC_THREAD_FILE=@thread_file@
version=@version@
mainversion=`sed -e 's/.*\"\([0-9]*\.[0-9]*\).*/\1/' < $(srcdir)/version.c`
# Common prefix for installation directories.
# NOTE: This directory must exist when you start installation.
prefix = @prefix@
# Directory in which to put localized header files. On the systems with
# gcc as the native cc, `local_prefix' may not be `prefix' which is
# `/usr'.
# NOTE: local_prefix *should not* default from prefix.
local_prefix = @local_prefix@
# Directory in which to put host dependent programs and libraries
exec_prefix = @exec_prefix@
# Directory in which to put the executable for the command `gcc'
bindir = @bindir@
# Directory in which to put the directories used by the compiler.
libdir = @libdir@
# Directory in which the compiler finds executables, libraries, etc.
libsubdir = $(libdir)/gcc-lib/$(target_alias)/$(version)
# Directory in which the compiler finds g++ includes.
gxx_include_dir= @gxx_include_dir@
# Directory in which the old g++ header files may be found.
# The reason we use $(libdir)/g++-include rather than using libsubdir
# is for compatibility with older versions of libg++.
old_gxx_include_dir= $(libdir)/g++-include
# Directory to search for site-specific includes.
includedir = $(local_prefix)/include
# assertdir is overridden in cross-make.
# (But this currently agrees with what is in cross-make.)
assertdir = $(tooldir)/include
# where the info files go
infodir = @infodir@
# Extension (if any) to put in installed man-page filename.
manext = .1
objext = .o
exeext = @build_exeext@
# Directory in which to put man pages.
mandir = @mandir@/man1
# Directory in which to find other cross-compilation tools and headers.
# Used in install-cross.
tooldir = $(exec_prefix)/$(target_alias)
# Dir for temp files.
tmpdir = /tmp
# Additional system libraries to link with.
CLIB=
# Change this to a null string if obstacks are installed in the
# system library.
OBSTACK=obstack.o
# Specify the rule for actually making libgcc.a,
LIBGCC = libgcc.a
# and the rule for installing it.
INSTALL_LIBGCC = install-libgcc
# Specify the rule for actually making libgcc1.a.
# The value may be empty; that means to do absolutely nothing
# with or for libgcc1.a.
LIBGCC1 = libgcc1.a
# Specify the rule for making libgcc1.a for a cross-compiler.
# The default rule assumes that libgcc1.a is supplied by the user.
CROSS_LIBGCC1 = libgcc1.cross
# Specify the rule for actually making libgcc2.a.
LIBGCC2 = libgcc2.a
# Options to use when compiling libgcc2.a.
# -g1 causes output of debug info only for file-scope entities.
# we use this here because that should be enough, and also
# so that -g1 will be tested.
LIBGCC2_DEBUG_CFLAGS = -g1
LIBGCC2_CFLAGS = -O2 $(LIBGCC2_INCLUDES) $(GCC_CFLAGS) $(TARGET_LIBGCC2_CFLAGS) $(LIBGCC2_DEBUG_CFLAGS) -DIN_LIBGCC2 -D__GCC_FLOAT_NOT_NEEDED -fexceptions
# Additional options to use when compiling libgcc2.a.
# Some targets override this to -Iinclude
LIBGCC2_INCLUDES =
# Additional target-dependent options for compiling libgcc2.a.
TARGET_LIBGCC2_CFLAGS =
# Things which must be built before building libgcc2.a.
# Some targets override this to stmp-int-hdrs
LIBGCC2_DEPS =
# Enquire target (This is a variable so that a target can choose not to
# build it.)
ENQUIRE = enquire
# libgcc1-test target (must also be overridable for a target)
LIBGCC1_TEST = libgcc1-test
# List of extra executables that should be compiled for this target machine
# that are used for compiling from source code to object code.
# The rules for compiling them should be in the t-* file for the machine.
EXTRA_PASSES =@extra_passes@
# Like EXTRA_PASSES, but these are used when linking.
EXTRA_PROGRAMS = @extra_programs@
# List of extra object files that should be compiled for this target machine.
# The rules for compiling them should be in the t-* file for the machine.
EXTRA_PARTS = @extra_parts@
# List of extra object files that should be compiled and linked with
# compiler proper (cc1, cc1obj, cc1plus).
EXTRA_OBJS = @extra_objs@
# List of extra object files that should be compiled and linked with
# the gcc driver.
EXTRA_GCC_OBJS =@host_extra_gcc_objs@
# List of additional header files to install.
# Often this is edited directly by `configure'.
EXTRA_HEADERS =@extra_headers_list@
# Set this to `ld' to enable use of collect2.
USE_COLLECT2 = @will_use_collect2@
MAYBE_USE_COLLECT2 = @maybe_use_collect2@
# It is convenient for configure to add the assignment at the beginning,
# so don't override it here.
# List of extra C and assembler files to add to libgcc1.a.
# Assembler files should have names ending in `.asm'.
LIB1FUNCS_EXTRA =
# List of extra C and assembler files to add to libgcc2.a.
# Assembler files should have names ending in `.asm'.
LIB2FUNCS_EXTRA =
# Default float.h source to use for cross-compiler.
# This is overridden by configure.
CROSS_FLOAT_H=$(srcdir)/config/float-@[email protected]
# Program to convert libraries.
LIBCONVERT =
# Control whether header files are installed.
INSTALL_HEADERS=install-headers
# Options for tar when copying trees. So HPUX can override it.
TAROUTOPTS = xpBf
# Select which version of fixincludes to use (I.E. regular versus SVR4)
# This value is overridden directly by configure.
FIXINCLUDES = @fixincludes@
# Set to ChangeLog if we are in a CVS working directory. This lets
# us automatically build version.c.
VERSION_DEP = @version_dep@
# Additional directories of header files to run fixincludes on.
# These should be directories searched automatically by default
# just as /usr/include is.
# *Do not* use this for directories that happen to contain
# header files, but are not searched automatically by default.
# On most systems, this is empty.
OTHER_FIXINCLUDES_DIRS=
# A list of all the language-specific executables.
# This is overridden by configure.
COMPILERS = cc1$(exeext) @all_compilers@
# List of things which should already be built whenever we try to use xgcc
# to compile anything (without linking).
GCC_PASSES=xgcc cc1 cpp $(EXTRA_PASSES)
# List of things which should already be built whenever we try to use xgcc
# to link anything.
GCC_PARTS=$(GCC_PASSES) $(LIBGCC) $(EXTRA_PROGRAMS) $(USE_COLLECT2) $(EXTRA_PARTS)
# Directory to link to, when using the target `maketest'.
DIR = ../gcc
# Guaranteed to not exist when not passing md through cpp.
# This value is overridden directly by configure.
MD_FILE = md-cpp-not-used
# Flags to use when cross-building GCC.
# Prefix to apply to names of object files when using them
# to run on the machine we are compiling on.
HOST_PREFIX=
# Prefix to apply to names of object files when compiling them
# to run on the machine we are compiling on.
# The default for this variable is chosen to keep these rules
# out of the way of the other rules for compiling the same source files.
HOST_PREFIX_1=loser-
HOST_CC=$(CC)
HOST_CFLAGS=$(ALL_CFLAGS)
HOST_CLIB=$(CLIB)
HOST_LDFLAGS=$(LDFLAGS)
HOST_CPPFLAGS=$(ALL_CPPFLAGS)
HOST_ALLOCA=$(ALLOCA)
HOST_MALLOC=$(MALLOC)
HOST_OBSTACK=$(OBSTACK)
# Actual name to use when installing a native compiler.
GCC_INSTALL_NAME = `t='$(program_transform_name)'; echo gcc | sed $$t`
# Actual name to use when installing a cross-compiler.
GCC_CROSS_NAME = `t='$(program_transform_cross_name)'; echo gcc | sed $$t`
# Choose the real default target.
ALL=all.internal
# Choose the real install target.
INSTALL_TARGET=install-normal
# Source for float.h. Overridden by cross-make.
FLOAT_H=float.h-nat
# Extra symbols for fixproto to define when parsing headers.
FIXPROTO_DEFINES =
# Extra flags to use when compiling crt{begin,end}.o.
CRTSTUFF_T_CFLAGS =
# Extra flags to use when compiling [m]crt0.o.
CRT0STUFF_T_CFLAGS =
# "t" or nothing, for building multilibbed versions of, say, crtbegin.o.
T =
# End of variables for you to override.
# Definition of `all' is here so that new rules inserted by sed
# do not specify the default target.
# The real definition is under `all.internal' (for native compilers)
# or `all.cross' (for cross compilers).
all: all.indirect
# This tells GNU Make version 3 not to put all variables in the environment.
.NOEXPORT:
# sed inserts variable overrides after the following line.
####target overrides
@target_overrides@
####host overrides
@host_overrides@
####cross overrides
@cross_defines@
@cross_overrides@
####build overrides
@build_overrides@
#
# Now figure out from those variables how to compile and link.
all.indirect: $(ALL)
# IN_GCC tells obstack.h that we are using gcc's <stddef.h> file.
# ??? IN_GCC should be obsolete now.
INTERNAL_CFLAGS = $(CROSS) -DIN_GCC @extra_c_flags@
# This is the variable actually used when we compile.
ALL_CFLAGS = $(INTERNAL_CFLAGS) $(X_CFLAGS) $(T_CFLAGS) $(CFLAGS) $(XCFLAGS) \
@DEFS@
# Likewise.
ALL_CPPFLAGS = $(CPPFLAGS) $(X_CPPFLAGS) $(T_CPPFLAGS)
# Even if ALLOCA is set, don't use it if compiling with GCC.
USE_ALLOCA= ` case "${CC}" in "${OLDCC}") echo "${ALLOCA}" ;; esac `
USE_HOST_ALLOCA= ` case "${HOST_CC}"@"${HOST_ALLOCA}" in "${OLDCC}"@?*) echo ${HOST_PREFIX}${HOST_ALLOCA} ;; esac `
USE_HOST_MALLOC= ` case "${HOST_MALLOC}" in ?*) echo ${HOST_PREFIX}${HOST_MALLOC} ;; esac `
USE_HOST_OBSTACK= ` case "${HOST_OBSTACK}" in ?*) echo ${HOST_PREFIX}${HOST_OBSTACK} ;; esac `
# Dependency on obstack, alloca, malloc or whatever library facilities
# are not installed in the system libraries.
# We don't use USE_ALLOCA because backquote expansion doesn't work in deps.
LIBDEPS= $(OBSTACK) $(ALLOCA) $(MALLOC)
# Likewise, for use in the tools that must run on this machine
# even if we are cross-building GCC.
# We don't use USE_ALLOCA because backquote expansion doesn't work in deps.
HOST_LIBDEPS= $(HOST_PREFIX)$(HOST_OBSTACK) $(HOST_PREFIX)$(HOST_ALLOCA) $(HOST_PREFIX)$(HOST_MALLOC)
# How to link with both our special library facilities
# and the system's installed libraries.
LIBS = $(OBSTACK) $(USE_ALLOCA) $(MALLOC) $(CLIB)
# Likewise, for use in the tools that must run on this machine
# even if we are cross-building GCC.
HOST_LIBS = $(USE_HOST_OBSTACK) $(USE_HOST_ALLOCA) $(USE_HOST_MALLOC) \
$(HOST_CLIB)
HOST_RTL = $(HOST_PREFIX)rtl.o
HOST_RTLANAL = $(HOST_PREFIX)rtlanal.o
HOST_PRINT = $(HOST_PREFIX)print-rtl.o
# Specify the directories to be searched for header files.
# Both . and srcdir are used, in that order,
# so that tm.h and config.h will be found in the compilation
# subdirectory rather than in the source directory.
INCLUDES = -I. -I$(srcdir) -I$(srcdir)/config
# Always use -I$(srcdir)/config when compiling.
.c.o:
$(CC) -c $(ALL_CFLAGS) $(ALL_CPPFLAGS) $(INCLUDES) $<
# This tells GNU make version 3 not to export all the variables
# defined in this file into the environment.
.NOEXPORT:
#
# Support for additional languages (other than c and objc).
# ??? objc can be supported this way too (leave for later).
# These next lines are overridden by configure.
LANG_MAKEFILES = @all_lang_makefiles@
LANG_STAGESTUFF = @all_stagestuff@
LANG_DIFF_EXCLUDES = @all_diff_excludes@
LANG_LIB2FUNCS = @all_lib2funcs@
LANG_EXTRA_HEADERS = @all_headers@
# Flags to pass to recursive makes.
# CC is set by configure. Hosts without symlinks need special handling
# because we need CC="stage1/xgcc -Bstage1/" to work in the language
# subdirectories.
# ??? The choices here will need some experimenting with.
FLAGS_TO_PASS = \
"AR_FLAGS=$(AR_FLAGS)" \
"AR_FOR_TARGET=$(AR_FOR_TARGET)" \
"BISON=$(BISON)" \
"BISONFLAGS=$(BISONFLAGS)" \
"CC=@cc_set_by_configure@" \
"CFLAGS=$(CFLAGS)" \
"CLIB=$(CLIB)" \
"GCC_FOR_TARGET=$(GCC_FOR_TARGET)" \
"LDFLAGS=$(LDFLAGS)" \
"LEX=$(LEX)" \
"LEXFLAGS=$(LEXFLAGS)" \
"LN=$(LN)" \
"MAKEINFO=$(MAKEINFO)" \
"MAKEINFOFLAGS=$(MAKEINFOFLAGS)" \
"RANLIB_FOR_TARGET=$(RANLIB_FOR_TARGET)" \
"RANLIB_TEST_FOR_TARGET=$(RANLIB_TEST_FOR_TARGET)" \
"SHELL=$(SHELL)" \
"STAGE_PREFIX=@stage_prefix_set_by_configure@" \
"exeext=$(exeext)" \
"objext=$(objext)" \
"exec_prefix=$(exec_prefix)" \
"prefix=$(prefix)" \
"tooldir=$(tooldir)" \
"bindir=$(bindir)" \
"libsubdir=$(libsubdir)"
#
# Lists of files for various purposes.
# Language-specific object files for C and Objective C.
C_AND_OBJC_OBJS = c-lex.o c-pragma.o c-decl.o c-typeck.o c-convert.o \
c-aux-info.o c-common.o c-iterate.o @extra_c_objs@
# Language-specific object files for C.
C_OBJS = c-parse.o c-lang.o $(C_AND_OBJC_OBJS)
# Files specific to the C interpreter bytecode compiler(s).
BC_OBJS = bc-emit.o bc-optab.o
# Bytecode header files constructed at build time; vmsconfig.com wants this.
BC_ALL = bc-arity.h bc-opcode.h bc-opname.h
# Language-independent object files.
OBJS = toplev.o version.o tree.o print-tree.o stor-layout.o fold-const.o \
function.o stmt.o except.o expr.o calls.o expmed.o explow.o optabs.o \
varasm.o rtl.o print-rtl.o rtlanal.o emit-rtl.o real.o \
dbxout.o sdbout.o dwarfout.o dwarf2out.o xcoffout.o bitmap.o \
integrate.o jump.o cse.o loop.o unroll.o flow.o stupid.o combine.o \
regclass.o local-alloc.o global.o reload.o reload1.o caller-save.o \
insn-peep.o reorg.o sched.o final.o recog.o reg-stack.o \
insn-opinit.o insn-recog.o insn-extract.o insn-output.o insn-emit.o \
profile.o insn-attrtab.o $(out_object_file) getpwd.o convert.o $(EXTRA_OBJS)
# GEN files are listed separately, so they can be built before doing parallel
# makes for cc1 or cc1plus. Otherwise sequent parallel make attempts to load
# them before rtl.o is compiled.
GEN= genemit genoutput genrecog genextract genflags gencodes genconfig genpeep
CCCP=cccp
# Uncomment this line if you want to use cppmain (w/cpplib) as cpp.
#CCCP=cppmain
# Files to be copied away after each stage in building.
STAGESTUFF = *$(objext) insn-flags.h insn-config.h insn-codes.h \
insn-output.c insn-recog.c insn-emit.c insn-extract.c insn-peep.c \
insn-attr.h insn-attrtab.c insn-opinit.c \
s-flags s-config s-codes s-mlib \
s-output s-recog s-emit s-extract s-peep \
s-attr s-attrtab s-opinit s-proto s-crt s-crtS s-crt0 \
genemit$(exeext) genoutput$(exeext) genrecog$(exeext) genextract$(exeext) \
genflags$(exeext) gencodes$(exeext) genconfig$(exeext) genpeep$(exeext) \
genattrtab$(exeext) genattr$(exeext) genopinit$(exeext) \
$(BC_ALL) \
s-bcarity s-bcopcode s-bcopname \
bi-arity$(exeext) bi-opcode$(exeext) bi-opname$(exeext) \
xgcc$(exeext) cc1$(exeext) cpp$(exeext) $(EXTRA_PASSES) \
$(EXTRA_PARTS) $(EXTRA_PROGRAMS) gcc-cross$(exeext) \
$(CCCP)$(exeext) cc1obj$(exeext) enquire$(exeext) \
protoize$(exeext) unprotoize$(exeext) \
specs collect2$(exeext) $(USE_COLLECT2) underscore.c \
gcov$(exeext) *.bp \
*.greg *.lreg *.combine *.flow *.cse *.jump *.rtl *.tree *.loop \
*.dbr *.jump2 *.sched *.cse2 *.sched2 *.stack \
*.[si] \
$(LANG_STAGESTUFF)
# Members of libgcc1.a.
LIB1FUNCS = _mulsi3 _udivsi3 _divsi3 _umodsi3 _modsi3 \
_lshrsi3 _ashrsi3 _ashlsi3 \
_divdf3 _muldf3 _negdf2 _adddf3 _subdf3 \
_fixdfsi _fixsfsi _floatsidf _floatsisf _truncdfsf2 _extendsfdf2 \
_addsf3 _negsf2 _subsf3 _mulsf3 _divsf3 \
_eqdf2 _nedf2 _gtdf2 _gedf2 _ltdf2 _ledf2 \
_eqsf2 _nesf2 _gtsf2 _gesf2 _ltsf2 _lesf2
# Library members defined in libgcc2.c.
LIB2FUNCS = _muldi3 _divdi3 _moddi3 _udivdi3 _umoddi3 _negdi2 \
_lshrdi3 _ashldi3 _ashrdi3 _ffsdi2 \
_udiv_w_sdiv _udivmoddi4 _cmpdi2 _ucmpdi2 _floatdidf _floatdisf \
_fixunsdfsi _fixunssfsi _fixunsdfdi _fixdfdi _fixunssfdi _fixsfdi \
_fixxfdi _fixunsxfdi _floatdixf _fixunsxfsi \
_fixtfdi _fixunstfdi _floatditf \
__gcc_bcmp _varargs __dummy _eprintf _op_new _op_vnew _new_handler \
_op_delete _op_vdel _bb _shtab _clear_cache _trampoline __main _exit \
_ctors _eh _eh_compat _pure
# The files that "belong" in CONFIG_H are deliberately omitted
# because having them there would not be useful in actual practice.
# All they would do is cause complete recompilation every time
# one of the machine description files is edited.
# That may or may not be what one wants to do.
# If it is, rm *.o is an easy way to do it.
# CONFIG_H = $(host_xm_file) $(tm_file)
CONFIG_H =
RTL_H = rtl.h rtl.def gansidecl.h machmode.h machmode.def
TREE_H = tree.h real.h tree.def gansidecl.h machmode.h machmode.def
BYTECODE_H = bytecode.h bc-emit.h bc-optab.h
BASIC_BLOCK_H = basic-block.h bitmap.h
DEMANGLE_H = demangle.h gansidecl.h
RECOG_H = recog.h gansidecl.h
#
# Language makefile fragments.
# The following targets define the interface between us and the languages.
#
# all.build, all.cross, start.encap, rest.encap,
# info, dvi,
# install-normal, install-common, install-info, install-man,
# uninstall, distdir,
# mostlyclean, clean, distclean, extraclean, maintainer-clean,
# stage1, stage2, stage3, stage4
#
# Each language is linked in with a series of hooks (since we can't use `::'
# targets). The name of each hooked is "lang.${target_name}" (eg: lang.info).
# Configure computes and adds these here.
####language hooks
@language_hooks@
# sed inserts language fragments after the following line.
####language fragments
@language_fragments@
# End of language makefile fragments.
#
# Avoid a lot of time thinking about remaking Makefile.in and *.def.
.SUFFIXES: .in .def
$(srcdir)/version.c: $(VERSION_DEP)
cd $(srcdir); cvs log -h $? >tmp-ver
tag=`sed '1,/^sym/d;s/ *gcc-//;s/:.*$$//;q' tmp-ver`; \
ver=`echo $${tag} | sed 's/-.*//' | sed 's/_/./g'`; \
date=`echo $${tag} | sed 's/.*-//'`; \
if [ $${date} != RELEASE ]; then ver="testgcc-$${ver} $${date} experimental"; fi; \
echo "char *version_string = \"$${ver}\";" >>tmp-version.c
rm -f tmp-ver
$(srcdir)/move-if-change tmp-version.c $(srcdir)/version.c
Makefile: $(srcdir)/Makefile.in config.status $(srcdir)/version.c \
$(xmake_file) $(tmake_file) $(LANG_MAKEFILES)
$(SHELL) $(srcdir)/configure.frag $(srcdir) "$(SUBDIRS)" \
"$(xmake_file)" "$(tmake_file)"
cp config.status config.run
$(SHELL) config.run
rm -f config.run
$(srcdir)/configure: $(srcdir)/configure.in
cd $(srcdir); autoconf
# cstamp-h.in controls rebuilding of config.in.
# It is named cstamp-h.in and not stamp-h.in so the mostlyclean rule doesn't
# delete it. A stamp file is needed as autoheader won't update the file if
# nothing has changed.
# It remains in the source directory and is part of the distribution.
# This follows what is done in shellutils, fileutils, etc.
# "echo timestamp" is used instead of touch to be consistent with other
# packages that use autoconf (??? perhaps also to avoid problems with patch?).
# ??? Newer versions have a maintainer mode that may be useful here.
$(srcdir)/config.in: $(srcdir)/cstamp-h.in
$(srcdir)/cstamp-h.in: $(srcdir)/configure.in $(srcdir)/acconfig.h
cd $(srcdir) && autoheader
echo timestamp > $(srcdir)/cstamp-h.in
auto-config.h: cstamp-h ; @true
cstamp-h: config.in config.status
CONFIG_HEADERS=auto-config.h:config.in $(SHELL) config.status
# Really, really stupid make features, such as SUN's KEEP_STATE, may force
# a target to build even if it is up-to-date. So we must verify that
# config.status does not exist before failing.
config.status: configure version.c
@if [ ! -f config.status ] ; then \
echo You must configure gcc. Look at the INSTALL file for details.; \
false; \
else \
$(SHELL) config.status --recheck; \
fi
all.internal: start.encap rest.encap
# This is what to compile if making a cross-compiler.
# Note that we can compile enquire using the cross-compiler just built,
# although we can't run it on this machine.
all.cross: native gcc-cross specs stmp-headers $(LIBGCC) $(STMP_FIXPROTO) \
$(LIBGCC1_TEST) $(EXTRA_PARTS) lang.all.cross
# This is what to compile if making gcc with a cross-compiler.
all.build: native xgcc $(EXTRA_PARTS) lang.all.build
# This is what must be made before installing GCC and converting libraries.
start.encap: native xgcc specs $(LIBGCC1) xlimits.h lang.start.encap
# These can't be made until after GCC can run.
rest.encap: stmp-headers $(LIBGCC) $(STMP_FIXPROTO) $(EXTRA_PARTS) lang.rest.encap
# This is what is made with the host's compiler
# whether making a cross compiler or not.
native: config.status auto-config.h cpp $(LANGUAGES) \
$(EXTRA_PASSES) $(EXTRA_PROGRAMS) $(USE_COLLECT2)
# Define the names for selecting languages in LANGUAGES.
C c: cc1
PROTO: proto
# Tell GNU make these are phony targets.
.PHONY: C c PROTO proto
# On the target machine, finish building a cross compiler.
# This does the things that can't be done on the host machine.
rest.cross: $(LIBGCC) gfloat.h specs
# Verify that it works to compile and link libgcc1-test.
# If it does, then there are sufficient replacements for libgcc1.a.
libgcc1-test: libgcc1-test.o native $(GCC_PARTS)
@echo "Testing libgcc1. Ignore linker warning messages."
$(GCC_FOR_TARGET) $(GCC_CFLAGS) libgcc1-test.o -o libgcc1-test \
-nostartfiles -nostdlib `$(GCC_FOR_TARGET) --print-libgcc-file-name`
libgcc1-test.o: libgcc1-test.c native xgcc
$(GCC_FOR_TARGET) $(GCC_CFLAGS) $(ALL_CPPFLAGS) -c $(srcdir)/libgcc1-test.c
# Recompile all the language-independent object files.
# This is used only if the user explicitly asks for it.
compilations: ${OBJS}
# Create a list of the language-independent object files so the language
# subdirectories needn't mention their names explicitly.
stamp-objlist: $(OBJS) $(BC_OBJS)
echo " $(OBJS) $(BC_OBJS)" | sed -e 's, \([a-z0-9]\), ../\1,g' -e 's/\.o/$(objext)/g' >stamp-objlist
# We call this executable `xgcc' rather than `gcc'
# to avoid confusion if the current directory is in the path
# and CC is `gcc'. It is renamed to `gcc' when it is installed.
xgcc: gcc.o version.o choose-temp.o pexecute.o prefix.o version.o \
$(LIBDEPS) $(EXTRA_GCC_OBJS)
$(CC) $(ALL_CFLAGS) $(LDFLAGS) -o $@ gcc.o prefix.o version.o \
choose-temp.o pexecute.o $(EXTRA_GCC_OBJS) $(LIBS)
# Dump a specs file to make -B./ read these specs over installed ones.
specs: xgcc
$(GCC_FOR_TARGET) -dumpspecs > tmp-specs
mv tmp-specs specs
# We do want to create an executable named `xgcc', so we can use it to
# compile libgcc2.a.
# Also create gcc-cross, so that install-common will install properly.
gcc-cross: xgcc
cp xgcc$(exeext) gcc-cross$(exeext)
cc1: $(P) $(C_OBJS) $(OBJS) $(BC_OBJS) $(LIBDEPS)
$(CC) $(ALL_CFLAGS) $(LDFLAGS) -o $@ $(C_OBJS) $(OBJS) $(BC_OBJS) $(LIBS)
# Copy float.h from its source.
gfloat.h: $(FLOAT_H)
-rm -f gfloat.h
cp $(FLOAT_H) gfloat.h
# Create float.h source for the native machine.
# Make it empty if we can use the system float.h without changes.
float.h-nat: enquire
-./enquire -f > tmp-float.h
grep '#define [^_]' tmp-float.h >/dev/null || true > tmp-float.h
mv tmp-float.h float.h-nat
# Create a dummy float.h source for a cross-compiler.
# ??? This isn't used anymore. Should we create config/float-unkn.h
# and make that the default float_format in configure?
float.h-cross:
echo "#ifndef __GCC_FLOAT_NOT_NEEDED" > t-float.h-cross
echo "#error float.h values not known for cross-compiler" >> t-float.h-cross
echo "#endif" >> t-float.h-cross
mv t-float.h-cross float.h-cross
# Used to compile enquire with standard cc, but have forgotten why.
# Let's try with GCC.
enquire: enquire.o $(GCC_PARTS)
$(GCC_FOR_TARGET) $(GCC_CFLAGS) $(ENQUIRE_LDFLAGS) enquire.o -o $@
enquire.o: $(srcdir)/enquire.c $(GCC_PASSES) stmp-int-hdrs
rm -f include/float.h
if $(FLOAT_H_TEST); then \
SYS_FLOAT_H_WRAP=1; \
else :; \
SYS_FLOAT_H_WRAP=0; \
fi; \
$(GCC_FOR_TARGET) $(GCC_CFLAGS) $(ALL_CPPFLAGS) $(ENQUIRE_CFLAGS) \
-DSYS_FLOAT_H_WRAP=$$SYS_FLOAT_H_WRAP \
-I. -c $(srcdir)/enquire.c
# Build the version of limits.h that we will install.
xlimits.h: glimits.h limitx.h limity.h
if $(LIMITS_H_TEST) ; then \
cat $(srcdir)/limitx.h $(srcdir)/glimits.h $(srcdir)/limity.h > tmp-xlimits.h; \
else \
cat $(srcdir)/glimits.h > tmp-xlimits.h; \
fi
mv tmp-xlimits.h xlimits.h
#
# Build libgcc.a.
# This is done in two parts because some functions, in libgcc1.c,
# must be compiled with something other than GCC,
# while the rest, in libgcc2.c, must be compiled with xgcc.
# That means we can't do libgcc2.c until after xgcc, cc1, etc.
# Use this as value of LIBGCC1 to cause conversion to GNU library format.
# LIBCONVERT should put its output in libgcc1.conv.
libgcc1.conv: libgcc1.a
$(LIBCONVERT) libgcc1.a libgcc1.conv
# Use this as value of LIBGCC1 to inhibit use of libgcc1.c entirely.
# Make an empty file instead.
libgcc1.null: $(GCC_PASSES)
echo "__foo () {}" > dummy.c
$(GCC_FOR_TARGET) $(GCC_CFLAGS) -c dummy.c
$(OLDAR) $(OLDAR_FLAGS) libgcc1.null dummy$(objext)
rm -f dummy$(objext) dummy.c
# This is $(LIBGCC1) for a cross-compiler.
# We have no automatic way of building libgcc1.a,
# so it's up to the installer to find a way to do that.
# This rule deliberately does not depend on libgcc1.a
# so that it will fail if the installer hasn't provided it.
libgcc1.cross:
mv libgcc1.a libgcc1.cross || (echo You must find a way to make libgcc1.a; false)
# Compile the library of arithmetic subroutines with the native compiler.
# Don't compile it with GCC!
# (That would cause most arithmetic functions to call themselves.)
#
# NOTE: If you modify these rules substantially, please be sure to
# check at least config/i386/t-sco5 and possibly other makefile
# fragments.
libgcc1.a: libgcc1.c $(CONFIG_H) $(LIB1FUNCS_EXTRA) config.status
-rm -f tmplibgcc1.a
# Actually build it in tmplibgcc1.a, then rename at end,
# so that libgcc1.a itself remains nonexistent if compilation is aborted.
# -e causes any failing command to make this rule fail.
# -e doesn't work in certain shells, so we test $$? as well.
# lynx has a broken ar, it always complains when the initial library is
# empty, thus this command works only if we don't do -e
# There is a trailing backslash (\) deleted from the following line.
# set -e;
for name in $(LIB1FUNCS); \
do \
echo $${name}; \
rm -f $${name}$(objext); \
$(OLDCC) -DIN_LIBGCC1 $(CCLIBFLAGS) $(INCLUDES) -c -DL$${name} $(srcdir)/libgcc1.c; \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
mv libgcc1$(objext) $${name}$(objext); \
$(OLDAR) $(OLDAR_FLAGS) tmplibgcc1.a $${name}$(objext); \
rm -f $${name}$(objext); \
done
# Some shells crash when a loop has no items.
# So make sure there is always at least one--`..'.
# Then ignore it.
# We don't use -e here because there are if statements
# that should not make the command give up when the if condition is false.
# Instead, we test for failure after each command where it matters.
for file in .. $(LIB1FUNCS_EXTRA); \
do \
if [ x$${file} != x.. ]; then \
name=`echo $${file} | sed -e 's/[.][cS]$$//' -e 's/[.]asm$$//'`; \
echo $${name}; \
if [ $${name}.asm = $${file} ]; then \
cp $${file} $${name}.s || exit 1; file=$${name}.s; \
else true; fi; \
$(OLDCC) -DIN_LIBGCC1 $(CCLIBFLAGS) $(INCLUDES) -c $${file}; \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
$(OLDAR) $(OLDAR_FLAGS) tmplibgcc1.a $${name}$(objext); \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
rm -f $${name}.s $${name}$(objext); \
else true; \
fi; \
done
-if $(RANLIB_TEST) ; then $(RANLIB) tmplibgcc1.a; else true; fi
mv tmplibgcc1.a libgcc1.a
# Build libgcc1.a from assembler source. LIB1ASMFUNCS is the list of
# functions. LIB1ASMSRC is the name of the source file in the config
# subdirectory.
libgcc1-asm.a: libgcc2.ready config.status $(srcdir)/config/$(LIB1ASMSRC)
-rm -f tmplibgcc1.a libgcc1.S
cp $(srcdir)/config/$(LIB1ASMSRC) libgcc1.S
# Actually build it in tmplibgcc1.a, then rename at end,
# so that libgcc1-asm.a itself remains nonexistent if compilation is aborted.
# -e causes any failing command to make this rule fail.
# -e doesn't work in certain shells, so we test $$? as well.
# lynx has a broken ar, it always complains when the initial library is
# empty, thus this command works only if we don't do -e
# There is a trailing backslash (\) deleted from the following line.
# set -e;
for name in $(LIB1ASMFUNCS); \
do \
echo $${name}; \
$(GCC_FOR_TARGET) $(LIBGCC2_CFLAGS) $(INCLUDES) -c -DL$${name} libgcc1.S; \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
mv libgcc1$(objext) $${name}$(objext); \
$(AR) $(AR_FLAGS) tmplibgcc1.a $${name}$(objext); \
rm -f $${name}$(objext); \
done
-rm -f libgcc1.S
mv tmplibgcc1.a libgcc1-asm.a
# Generate assembly versions of the functions required for libgcc1.
# You'll still need to massage the code by hand (possibly hacking
# underscores and local labels) but this will get you started.
libgcc1.S: libgcc1.c $(CONFIG_H) config.status
-rm -f libgcc1.S
touch libgcc1.S
for name in $(LIB1FUNCS); \
do \
echo $${name}; \
$(OLDCC) -DIN_LIBGCC1 $(CCLIBFLAGS) $(INCLUDES) -S -DL$${name} $(srcdir)/libgcc1.c; \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
echo '#ifdef ' L$${name} >> libgcc1.S; \
cat libgcc1.s >> libgcc1.S; \
echo '#endif /*' L$${name} '*/' >> libgcc1.S; \
echo "" >> libgcc1.S; \
done
# Compiling libgcc2.a requires making sure that cc1, etc. have been compiled.
# But recompiling cc1 should not force recompilation of libgcc2.a.
# If you want to force recompilation, delete libgcc2.a.
libgcc2.ready: $(GCC_PASSES) $(LIBGCC2_DEPS) stmp-int-hdrs
-if [ -f libgcc2.ready ] ; then \
true; \
else \
touch libgcc2.ready; \
fi
LIB2ADD = $(srcdir)/frame.c $(LIB2FUNCS_EXTRA) $(LANG_LIB2FUNCS)
libgcc2.a: libgcc2.c libgcc2.ready $(CONFIG_H) $(LIB2ADD) \
machmode.h longlong.h frame.h gansidecl.h gbl-ctors.h config.status
# Actually build it in tmplibgcc2.a, then rename at end,
# so that libgcc2.a itself remains nonexistent if compilation is aborted.
-rm -f tmplibgcc2.a
# -e causes any failing command to make this rule fail.
# -e doesn't work in certain shells, so we test $$? as well.
# lynx has a broken ar, it always complains when the initial library is
# empty, thus this command works only if we don't do -e
# There is a trailing backslash (\) deleted from the following line.
# set -e;
for name in $(LIB2FUNCS); \
do \
echo $${name}; \
$(GCC_FOR_TARGET) $(LIBGCC2_CFLAGS) $(INCLUDES) -c -DL$${name} \
$(srcdir)/libgcc2.c -o $${name}$(objext); \
if [ $$? -eq 0 ] ; then true; else exit 1; fi; \
$(AR) $(AR_FLAGS) tmplibgcc2.a $${name}$(objext); \
rm -f $${name}$(objext); \
done
# Some shells crash when a loop has no items.
# So make sure there is always at least one--`..'.
# Then ignore it.
# We don't use -e here because there are if statements
# that should not make the command give up when the if condition is false.
# Instead, we test for failure after each command where it matters.
for file in $(LIB2ADD); do \
name=`echo $${file} | sed -e 's/[.][cSo]$$//' -e 's/[.]asm$$//' -e 's/[.]txt$$//'`; \
oname=` echo $${name} | sed -e 's,.*/,,'`; \
if [ $${name}.txt = $${file} ]; then \