# commpost.nmk: SECOND COMMON FRAGMENT FOR PLATFORMS USING NMAKE -*- makefile -*-
#
# $Id: //info.ravenbrook.com/project/mps/custom/cet/main/code/commpost.nmk#14 $
# Copyright (c) 2001-2016 Ravenbrook Limited. See end of file for license.
#
# DESCRIPTION
#
# Second common makefile fragment for w3*mv.nmk. See commpre.nmk
# == Pseudo-targets ==
all: $(ALL_TARGETS)
# Convenience targets
$(ALL_TARGETS) $(OPTIONAL_TARGETS):
!IFDEF VARIETY
$(MAKE) /nologo /f $(PFM).nmk TARGET=$@ variety
!ELSE
$(MAKE) /nologo /f $(PFM).nmk TARGET=$@ target
!ENDIF
# "clean" removes the directory containing the build results.
# Depends on there being no file called "clean".
# Note that we suspend error processing on the if line because rmdir
# sometimes exits with an error and the message "The directory is not
# empty" even if the /s option is given. See job003854.
clean:
$(ECHO) $(PFM): $@
-if exist $(PFM) rmdir /q /s $(PFM)
# target target
# %%VARIETY: When adding a new variety, optionally, add a recursive make
# call for the new variety, if it should be built by default. It probably
# shouldn't without a product design decision and an update of the readme
# and build manual!
# Depends on there being no file called "target".
!IFDEF TARGET
!IFNDEF VARIETY
target:
$(MAKE) /nologo /f $(PFM).nmk VARIETY=cool variety
$(MAKE) /nologo /f $(PFM).nmk VARIETY=hot variety
!ENDIF
!ENDIF
# variety
# Depends on there being no file called "variety".
!IFDEF VARIETY
!IFDEF TARGET
variety: $(PFM)\$(VARIETY)\$(TARGET)
!ENDIF
!ENDIF
# testrun testci testall testansi testpollnone
# Runs automated test cases.
testrun testci testall testansi testpollnone: $(TEST_TARGETS)
!IFDEF VARIETY
..\tool\testrun.bat $(PFM) $(VARIETY) $@
!ELSE
$(MAKE) /nologo /f $(PFM).nmk VARIETY=cool $@
$(MAKE) /nologo /f $(PFM).nmk VARIETY=hot $@
!ENDIF
# FLAGS AMALGAMATION
#
# %%VARIETY: When adding a new variety, add the following macros that
# expand to sets of flags that the variety should use:
#
# CFLAGS -- when compiling C;
# CFLAGSSQL -- when compiling mpseventsql;
# LINKFLAGS -- when building executables;
# LIBFLAGS -- when building libraries.
!IF "$(VARIETY)" == "hot"
CFLAGS=$(CFLAGSCOMMONPRE) $(CFHOT) $(CFLAGSCOMMONPOST)
CFLAGSSQL=$(CFLAGSSQLPRE) $(CFHOT) $(CFLAGSSQLPOST)
LINKFLAGS=$(LINKFLAGSCOMMON) $(LFHOT)
LIBFLAGS=$(LIBFLAGSCOMMON) $(LIBFLAGSHOT)
!ELSEIF "$(VARIETY)" == "cool"
CFLAGS=$(CFLAGSCOMMONPRE) $(CFCOOL) $(CFLAGSCOMMONPOST)
CFLAGSSQL=$(CFLAGSSQLPRE) $(CFCOOL) $(CFLAGSSQLPOST)
LINKFLAGS=$(LINKFLAGSCOMMON) $(LFCOOL)
LIBFLAGS=$(LIBFLAGSCOMMON) $(LIBFLAGSCOOL)
!ELSEIF "$(VARIETY)" == "rash"
CFLAGS=$(CFLAGSCOMMONPRE) $(CFRASH) $(CFLAGSCOMMONPOST)
CFLAGSSQL=$(CFLAGSSQLPRE) $(CFRASH) $(CFLAGSSQLPOST)
LINKFLAGS=$(LINKFLAGSCOMMON) $(LFRASH)
LIBFLAGS=$(LIBFLAGSCOMMON) $(LIBFLAGSRASH)
!ENDIF
# SOURCE TO OBJECT FILE MAPPINGS
#
# %%PART: When adding a new part, add new macros which expand to the object
# files included in the part
#
# Note: nmake doesn't expand variables within a string replacement
# operation. We work around this by writing out a temporary makefile
# and including it.
TEMPMAKE=$(TEMP)\mps.nmk
!IF [echo MPMOBJ0 = $$(MPM:[=$(PFM)\$(VARIETY)\) > $(TEMPMAKE)] == 0 \
&& [echo FMTDYOBJ0 = $$(FMTDY:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0 \
&& [echo FMTTESTOBJ0 = $$(FMTTEST:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0 \
&& [echo FMTSCHEMEOBJ0 = $$(FMTSCHEME:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0 \
&& [echo POOLNOBJ0 = $$(POOLN:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0 \
&& [echo TESTLIBOBJ0 = $$(TESTLIB:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0 \
&& [echo TESTTHROBJ0 = $$(TESTTHR:[=$(PFM)\$(VARIETY)\) >> $(TEMPMAKE)] == 0
!INCLUDE $(TEMPMAKE)
!IF [del $(TEMPMAKE)] != 0
!ERROR Failed to delete $(TEMPMAKE)
!ENDIF
!ENDIF
MPMOBJ = $(MPMOBJ0:]=.obj)
FMTDYOBJ = $(FMTDYOBJ0:]=.obj)
FMTTESTOBJ = $(FMTTESTOBJ0:]=.obj)
FMTSCHEMEOBJ = $(FMTSCHEMEOBJ0:]=.obj)
POOLNOBJ = $(POOLNOBJ0:]=.obj)
TESTLIBOBJ = $(TESTLIBOBJ0:]=.obj)
TESTTHROBJ = $(TESTTHROBJ0:]=.obj)
# THE MPS LIBRARY
#
# The MPS library is built in two ways:
#
# 1. In the usual way, from a pile of object files compiled from their
# corresponding sources.
#
# 2. From mps.c, which effectively concatenates all the sources, allowing
# important global optimisation and inlining to occur.
#
# We mostly use the method (2), because it is fast to compile and execute.
# But we use method (1) for some varieties to ensure correctness of
# code (linkage errors are masked by (2)) and to maintain a correct list
# of source files in case method (1) won't work on some future constrained
# platform.
#
# %%VARIETY: When adding a new variety, add a rule for how to build the
# MPS library for the variety
$(PFM)\rash\mps.lib: $(PFM)\rash\mps.obj
$(ECHO) $@
$(LIBMAN) $(LIBFLAGS) /OUT:$@ $**
$(PFM)\hot\mps.lib: $(PFM)\hot\mps.obj
$(ECHO) $@
$(LIBMAN) $(LIBFLAGS) /OUT:$@ $**
$(PFM)\cool\mps.lib: $(MPMOBJ)
$(ECHO) $@
$(LIBMAN) $(LIBFLAGS) /OUT:$@ $**
# OTHER GENUINE TARGETS
#
# Each line defines an executable or library target to be built and the object
# files it is build from. For an executable these lines add dependencies to
# the generic rules below, and should not include commands to execute.
# For a library this is not possible and the target should include commands
# to build it.
# %%TARGET: When adding a new target, add your new target here
!IFDEF VARIETY
$(PFM)\$(VARIETY)\abqtest.exe: $(PFM)\$(VARIETY)\abqtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\airtest.exe: $(PFM)\$(VARIETY)\airtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTSCHEMEOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\amcss.exe: $(PFM)\$(VARIETY)\amcss.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\amcsshe.exe: $(PFM)\$(VARIETY)\amcsshe.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\amcssth.exe: $(PFM)\$(VARIETY)\amcssth.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\amsss.exe: $(PFM)\$(VARIETY)\amsss.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\amssshe.exe: $(PFM)\$(VARIETY)\amssshe.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\apss.exe: $(PFM)\$(VARIETY)\apss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\arenacv.exe: $(PFM)\$(VARIETY)\arenacv.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\awlut.exe: $(PFM)\$(VARIETY)\awlut.obj \
$(FMTTESTOBJ) \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\awluthe.exe: $(PFM)\$(VARIETY)\awluthe.obj \
$(FMTTESTOBJ) \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\awlutth.exe: $(PFM)\$(VARIETY)\awlutth.obj \
$(FMTTESTOBJ) \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\btcv.exe: $(PFM)\$(VARIETY)\btcv.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\bttest.exe: $(PFM)\$(VARIETY)\bttest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\djbench.exe: $(PFM)\$(VARIETY)\djbench.obj \
$(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\exposet0.exe: $(PFM)\$(VARIETY)\exposet0.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\expt825.exe: $(PFM)\$(VARIETY)\expt825.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\finalcv.exe: $(PFM)\$(VARIETY)\finalcv.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\finaltest.exe: $(PFM)\$(VARIETY)\finaltest.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\fotest.exe: $(PFM)\$(VARIETY)\fotest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\gcbench.exe: $(PFM)\$(VARIETY)\gcbench.obj \
$(FMTTESTOBJ) $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\landtest.exe: $(PFM)\$(VARIETY)\landtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\locbwcss.exe: $(PFM)\$(VARIETY)\locbwcss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\lockcov.exe: $(PFM)\$(VARIETY)\lockcov.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\lockut.exe: $(PFM)\$(VARIETY)\lockut.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ) $(TESTTHROBJ)
$(PFM)\$(VARIETY)\locusss.exe: $(PFM)\$(VARIETY)\locusss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\locv.exe: $(PFM)\$(VARIETY)\locv.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\messtest.exe: $(PFM)\$(VARIETY)\messtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\mpmss.exe: $(PFM)\$(VARIETY)\mpmss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\mpsicv.exe: $(PFM)\$(VARIETY)\mpsicv.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\mv2test.exe: $(PFM)\$(VARIETY)\mv2test.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\nailboardtest.exe: $(PFM)\$(VARIETY)\nailboardtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\poolncv.exe: $(PFM)\$(VARIETY)\poolncv.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ) $(POOLNOBJ)
$(PFM)\$(VARIETY)\qs.exe: $(PFM)\$(VARIETY)\qs.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\sacss.exe: $(PFM)\$(VARIETY)\sacss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\segsmss.exe: $(PFM)\$(VARIETY)\segsmss.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\sncss.exe: $(PFM)\$(VARIETY)\sncss.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\steptest.exe: $(PFM)\$(VARIETY)\steptest.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\tagtest.exe: $(PFM)\$(VARIETY)\tagtest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\teletest.exe: $(PFM)\$(VARIETY)\teletest.obj \
$(PFM)\$(VARIETY)\mps.lib $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\walkt0.exe: $(PFM)\$(VARIETY)\walkt0.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\zcoll.exe: $(PFM)\$(VARIETY)\zcoll.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\zmess.exe: $(PFM)\$(VARIETY)\zmess.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\ztfm.exe: $(PFM)\$(VARIETY)\ztfm.obj \
$(PFM)\$(VARIETY)\mps.lib $(FMTTESTOBJ) $(TESTLIBOBJ)
$(PFM)\$(VARIETY)\mpseventcnv.exe: $(PFM)\$(VARIETY)\eventcnv.obj \
$(PFM)\$(VARIETY)\mps.lib
$(PFM)\$(VARIETY)\mpseventpy.exe: $(PFM)\$(VARIETY)\eventpy.obj \
$(PFM)\$(VARIETY)\mps.lib
$(PFM)\$(VARIETY)\mpseventtxt.exe: $(PFM)\$(VARIETY)\eventtxt.obj \
$(PFM)\$(VARIETY)\mps.lib
$(PFM)\$(VARIETY)\mpseventsql.exe: $(PFM)\$(VARIETY)\eventsql.obj \
$(PFM)\$(VARIETY)\sqlite3.obj $(PFM)\$(VARIETY)\mps.lib
$(PFM)\$(VARIETY)\replay.exe: $(PFM)\$(VARIETY)\replay.obj \
$(PFM)\$(VARIETY)\eventrep.obj \
$(PFM)\$(VARIETY)\table.obj \
$(PFM)\$(VARIETY)\mps.lib
# Have to rename the object file, because the names must match, or
# the template rule for .exe.obj won't be used.
$(PFM)\$(VARIETY)\replaysw.obj: $(PFM)\$(VARIETY)\replay.obj
$(ECHO) $@
copy $** $@ >nul:
$(PFM)\$(VARIETY)\mpseventcnv.obj: $(PFM)\$(VARIETY)\eventcnv.obj
copy $** $@ >nul:
$(PFM)\$(VARIETY)\mpseventpy.obj: $(PFM)\$(VARIETY)\eventpy.obj
copy $** $@ >nul:
$(PFM)\$(VARIETY)\mpseventtxt.obj: $(PFM)\$(VARIETY)\eventtxt.obj
copy $** $@ >nul:
$(PFM)\$(VARIETY)\mpseventsql.obj: $(PFM)\$(VARIETY)\eventsql.obj
copy $** $@ >nul:
!ENDIF
# GENERIC RULES
# Object files
{}.c{$(PFM)\$(VARIETY)}.obj:
$(ECHO) $@
@if not exist $(PFM) mkdir $(PFM)
@if not exist $(PFM)\$(VARIETY) mkdir $(PFM)\$(VARIETY)
$(CC) /c $(CFLAGS) /Fo$@ $<
$(PFM)\$(VARIETY)\sqlite3.obj:
$(ECHO) $@
@if not exist $(PFM) mkdir $(PFM)
@if not exist $(PFM)\$(VARIETY) mkdir $(PFM)\$(VARIETY)
$(CC) /c $(CFLAGSSQL) /Fo$@ sqlite3.c
{}.asm{$(PFM)\$(VARIETY)}.obj:
$(ECHO) $@
@if not exist $(PFM) mkdir $(PFM)
@if not exist $(PFM)\$(VARIETY) mkdir $(PFM)\$(VARIETY)
$(MASM) /nologo /c /Fo$@ $<
# Coverage files
#{$(PFM)\$(VARIETY)}.exe{$(PFM)\$(VARIETY)}.cov:
# $(ECHO) $@
# cd $(PFM)\$(VARIETY)
# prep /nologo /lv $(<F)
# profile /nologo $(<B)
# prep /nologo /m $(<B)
# plist /nologo /D ..\.. $(<B) > $(@F)
# Executables
{$(PFM)\$(VARIETY)}.obj{$(PFM)\$(VARIETY)}.exe:
$(ECHO) $@
$(LINKER) $(LINKFLAGS) /OUT:$@ $(**)
# C. COPYRIGHT AND LICENSE
#
# Copyright (c) 2001-2016 Ravenbrook Limited <http://www.ravenbrook.com/>.
# All rights reserved. This is an open source license. Contact
# Ravenbrook for commercial licensing options.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are
# met:
#
# 1. Redistributions of source code must retain the above copyright
# notice, this list of conditions and the following disclaimer.
#
# 2. Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
#
# 3. Redistributions in any form must be accompanied by information on how
# to obtain complete source code for this software and any accompanying
# software that uses this software. The source code must either be
# included in the distribution or be available for no more than the cost
# of distribution plus a nominal fee, and must be freely redistributable
# under reasonable conditions. For an executable file, complete source
# code means the source code for all modules it contains. It does not
# include source code for modules or files that typically accompany the
# major components of the operating system on which the executable file
# runs.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
# IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
# TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
# PURPOSE, OR NON-INFRINGEMENT, ARE DISCLAIMED. IN NO EVENT SHALL THE
# COPYRIGHT HOLDERS AND CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
# INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
# NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
# USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
# ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
# THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.