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import os |
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|
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Import ('env') |
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|
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# math libs |
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mlib = env['RAD_MLIB'] |
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|
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# compose paths |
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def rbin(name): return os.path.join(env['RAD_BUILDBIN'], name) |
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def rlib(name): return os.path.join(env['RAD_BUILDLIB'], name) |
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def mgfs(src): return map(lambda s:os.path.join('mgflib', s), src) |
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|
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MGFSRC = Split('''parser.c context.c xf.c object.c lookup.c badarg.c |
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words.c |
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fvect.c''') |
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libmgf = env.StaticLibrary(rlib('mgf'), source=mgfs(MGFSRC)) |
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|
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MGFPROGS = ( |
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('mgfilt', Split('mgfilt.c')), |
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('mgf2inv', Split('mgf2inv.c cvrgb.c')), |
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('3ds2mgf', Split('3ds2mgf.c rayopt.c vect.c')), |
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) |
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for p in MGFPROGS: |
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prog = env.Program(target=rbin(p[0]), source=mgfs(p[1]), LIBS=mlib+['mgf']) |
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Default(prog) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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trans = env.Object(source="trans.c") |
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|
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# standard targets |
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PROGS = [ |
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('ies2rad', ['ies2rad.c'], ['rtlamps','rtcolor','rtio','rtpath']+ mlib), |
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('arch2rad', ['arch2rad.c',trans],['rtcont','rtmem'] + mlib), |
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('nff2rad', ['nff2rad.c'], []), |
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('lampcolor', ['lampcolor.c'], ['rtlamps','rtcolor','rtio','rtpath']), |
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('tmesh2rad', ['tmesh2rad.c'], ['rtscene','rtmath'] + mlib), |
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('obj2rad', ['obj2rad.c',trans], |
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['rtscene','rtargs','rtio','rtcont','rtmem','rtmath','rterror'] + mlib), |
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('mgf2rad', ['mgf2rad.c'], ['rtscene','rtcolor','mgf'] + mlib), |
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('rad2mgf', ['rad2mgf.c'], |
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['rtproc', 'rtpath', # for win_popen() |
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'rtscene','rtio','rtcolor','rtcont','rtmem','rterror'] + mlib), |
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] |
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for p in PROGS: |
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prog = env.Program(target=rbin(p[0]), source=p[1], LIBS=p[2]) |
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Default(prog) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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# meta targets |
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prog = env.Program(target=rbin('mgf2meta'), source=['mgf2meta.c'], |
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CPPPATH=env.get('CPPPATH', []) + [os.path.join('#src','meta')], |
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LIBS=['meta','rtmath','rtcont','rtmem','rterror','mgf'] + mlib) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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LIBFILES = Split('source.cal tilt.cal window.cal') |
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env.Append(RAD_RLIBINSTALL=env.Install(env['RAD_RLIBDIR'], LIBFILES)) |
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|
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if os.name == 'posix': |
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for s in Split('''optics2rad'''): |
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Default(env.InstallCsh(rbin(s), s + '.csh')) |
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import os |
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|
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Import ('env') |
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> |
|
5 |
> |
# math libs |
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mlib = env['RAD_MLIB'] |
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|
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# compose paths |
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def rbin(name): return os.path.join(env['RAD_BUILDBIN'], name) |
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|
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MGFPROGS = ( |
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('3ds2mgf', Split('3ds2mgf.c rayopt3ds.c vect3ds.c')), |
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) |
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for p in MGFPROGS: |
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prog = env.Program(target=rbin(p[0]), source=p[1], LIBS=mlib+['mgf','rtcont']) |
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Default(prog) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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trans = env.Object(source="trans.c") |
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|
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# standard targets |
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PROGS = [ |
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('ies2rad', ['ies2rad.c'], ['rtlamps','rtcolor','rtio','rtpath']+ mlib), |
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('arch2rad', ['arch2rad.c',trans],['rtcont','rtmem'] + mlib), |
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('nff2rad', ['nff2rad.c'], []), |
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('lampcolor', ['lampcolor.c'], ['rtlamps','rtcolor','rtio','rtpath']), |
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('tmesh2rad', ['tmesh2rad.c'], ['rtscene','rtmath'] + mlib), |
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('mgf2inv', ['mgf2inv.c'], ['mgf','rtall'] + mlib), |
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('obj2rad', ['obj2rad.c',trans], |
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['rtscene','rtargs','rtio','rtcont','rtmem','rtmath','rterror'] + mlib), |
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('mgf2rad', ['mgf2rad.c'], ['mgf','rtall'] + mlib), |
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('mgfilt', ['mgfilt.c'], ['mgf','rtall'] + mlib), |
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('rad2mgf', ['rad2mgf.c'], |
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['rtproc', 'rtpath', # for win_popen() |
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'rtscene','rtio','rtcolor','rtcont','rtmem','rterror'] + mlib), |
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] |
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for p in PROGS: |
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prog = env.Program(target=rbin(p[0]), source=p[1], LIBS=p[2]) |
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Default(prog) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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# meta targets |
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prog = env.Program(target=rbin('mgf2meta'), source=['mgf2meta.c'], |
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CPPPATH=env.get('CPPPATH', []) + [os.path.join('#src','meta')], |
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LIBS=['meta','mgf','rtall'] + mlib) |
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env.Append(RAD_BININSTALL=[env.Install(env['RAD_BINDIR'], prog)]) |
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|
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LIBFILES = Split('source.cal tilt.cal window.cal') |
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env.Append(RAD_RLIBINSTALL=env.Install(env['RAD_RLIBDIR'], LIBFILES)) |
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|
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if os.name == 'posix': |
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for s in Split('''optics2rad'''): |
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Default(env.InstallCsh(rbin(s), s + '.csh')) |