mirror of https://github.com/PrimeDecomp/prime.git
Use patched 1.2.5n; delete frank/franklite
Former-commit-id: 5bc8675e2c
This commit is contained in:
parent
dc3762d410
commit
6f2b149bc0
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@ -67,7 +67,7 @@ Building
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```
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git clone https://github.com/PrimeDecomp/prime.git
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```
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- Download [GC_WII_COMPILERS.zip](https://cdn.discordapp.com/attachments/727918646525165659/917185027656286218/GC_WII_COMPILERS.zip)
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- Download [GC_WII_COMPILERS.zip](https://cdn.discordapp.com/attachments/727918646525165659/1129759991696457728/GC_WII_COMPILERS.zip)
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- Extract the _contents_ of the `GC` directory to `tools/mwcc_compiler`.
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- Resulting structure should be (for example) `tools/mwcc_compiler/1.3.2/mwcceppc.exe`
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- Configure:
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83
configure.py
83
configure.py
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@ -699,7 +699,7 @@ LIBS = [
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},
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{
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"lib": "ai",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -708,7 +708,7 @@ LIBS = [
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},
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{
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"lib": "ar",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -736,7 +736,7 @@ LIBS = [
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},
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{
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"lib": "dsp",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -747,7 +747,7 @@ LIBS = [
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},
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{
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"lib": "dvd",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -799,7 +799,7 @@ LIBS = [
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},
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{
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"lib": "os",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -809,7 +809,7 @@ LIBS = [
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["Dolphin/os/OSArena", True],
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["Dolphin/os/OSAudioSystem", True],
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["Dolphin/os/OSCache", True],
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["Dolphin/os/OSContext", True, {"mw_version": "1.2.5"}],
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["Dolphin/os/OSContext", True],
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["Dolphin/os/OSError", True],
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"Dolphin/os/OSFatal",
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"Dolphin/os/OSFont",
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@ -830,7 +830,7 @@ LIBS = [
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},
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{
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"lib": "pad",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -969,7 +969,7 @@ LIBS = [
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],
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},
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{
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"lib": "txwin",
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"lib": "txwin",
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"mw_version": "1.2.5",
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"cflags": "-Cpp_exceptions off -proc gecko -fp hard -nodefaults -nosyspath -i include -i libc -g -sym on -D_DEBUG=1 -enum int ",
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"host": False,
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@ -988,7 +988,7 @@ LIBS = [
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},
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{
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"lib": "card",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -1012,7 +1012,7 @@ LIBS = [
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},
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{
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"lib": "si",
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"mw_version": "1.2.5e",
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"mw_version": "1.2.5n",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -1042,8 +1042,8 @@ LIBS = [
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},
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{
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"lib": "gba",
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"mw_version": "1.2.5e",
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#"cflags" : "-proc gecko -Cpp_exceptions off -fp hard -nodefaults -nosyspath -i include -i libc -g -sym on -D_DEBUG=1 -enum int -use_lmw_stmw on",
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"mw_version": "1.2.5n",
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# "cflags" : "-proc gecko -Cpp_exceptions off -fp hard -nodefaults -nosyspath -i include -i libc -g -sym on -D_DEBUG=1 -enum int -use_lmw_stmw on",
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"cflags": "$cflags_base",
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"host": False,
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"objects": [
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@ -1132,12 +1132,6 @@ if __name__ == "__main__":
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default=Path("build"),
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help="base build directory",
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)
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parser.add_argument(
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"--franklite",
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dest="frank",
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action="store_false",
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help="use franklite.py instead of frank.py (non-matching)",
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)
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args = parser.parse_args()
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# On Windows, we need this to use && in commands
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@ -1155,7 +1149,7 @@ if __name__ == "__main__":
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if os.name != "nt" and "DEVKITPPC" in os.environ and not args.devkitppc:
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configure_args.extend(["--devkitppc", os.environ["DEVKITPPC"]])
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n.variable("configure_args", configure_args)
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n.variable("python", f"\"{sys.executable}\"")
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n.variable("python", f'"{sys.executable}"')
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n.newline()
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###
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@ -1185,8 +1179,6 @@ if __name__ == "__main__":
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cflags_base += " -sym on -D_DEBUG"
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else:
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cflags_base += " -DNDEBUG"
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if args.frank:
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cflags_base += " -DFULL_FRANK"
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n.variable("cflags_base", cflags_base)
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n.variable(
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"cflags_retro",
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@ -1205,12 +1197,12 @@ if __name__ == "__main__":
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map_path = build_path / "MetroidCWD.MAP"
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else:
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map_path = build_path / "MetroidCW.MAP"
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ldflags += f" -map {map_path}"
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if args.debug:
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ldflags += " -g"
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n.variable("ldflags", ldflags)
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n.variable("mw_version", "1.3.2")
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mw_link_version = "1.3.2"
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n.variable("mw_version", mw_link_version)
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if os.name == "nt":
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exe = ".exe"
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wine = ""
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@ -1283,20 +1275,9 @@ if __name__ == "__main__":
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compiler_path = args.compilers / "$mw_version"
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mwcc = compiler_path / "mwcceppc.exe"
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mwld = compiler_path / "mwldeppc.exe"
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frank = tools_path / "frank.py"
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franklite = tools_path / "franklite.py"
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gnu_as = dkp_path / "bin" / f"powerpc-eabi-as{exe}"
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mwcc_cmd = f"{chain}{wine}{mwcc} $cflags -MMD -c $in -o $basedir"
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if args.frank:
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profile_mwcc = args.compilers / "1.2.5e" / "mwcceppc.exe"
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mwcc_frank_cmd = (
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f"{chain}{wine}{mwcc} $cflags -MMD -c $in -o $basedir"
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+ f" && {wine}{profile_mwcc} $cflags -c $in -o $out.profile"
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+ f" && $python {frank} $out $out.profile $out"
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)
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else:
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mwcc_frank_cmd = f"{mwcc_cmd} && $python {franklite} $out $out"
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mwld_cmd = f"{wine}{mwld} $ldflags -o $out @$out.rsp"
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as_cmd = (
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f"{chain}{gnu_as} $asflags -o $out $in -MD $out.d"
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@ -1308,7 +1289,6 @@ if __name__ == "__main__":
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transform_dep = tools_path / "transform-dep.py"
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transform_dep_cmd = f" && $python {transform_dep} $basefile.d $basefile.d"
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mwcc_cmd += transform_dep_cmd
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mwcc_frank_cmd += transform_dep_cmd
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n.comment("Link ELF file")
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n.rule(
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@ -1330,16 +1310,6 @@ if __name__ == "__main__":
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)
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n.newline()
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n.comment("MWCC build with franklite")
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n.rule(
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name="mwcc_frank",
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command=mwcc_frank_cmd,
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description="FRANK $out",
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depfile="$basefile.d",
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deps="gcc",
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)
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n.newline()
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n.comment("Assemble asm")
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n.rule(
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name="as",
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@ -1392,6 +1362,7 @@ if __name__ == "__main__":
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source_inputs = []
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host_source_inputs = []
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link_inputs = []
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used_compiler_versions = set()
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for lib in LIBS:
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inputs = []
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if "lib" in lib:
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@ -1415,6 +1386,8 @@ if __name__ == "__main__":
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object = object[0]
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mw_version = options["mw_version"] or lib["mw_version"]
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used_compiler_versions.add(mw_version)
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c_file = None
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if os.path.exists(src_path / f"{object}.cpp"):
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c_file = src_path / f"{object}.cpp"
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@ -1425,13 +1398,6 @@ if __name__ == "__main__":
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print(f"Mark as incomplete: {c_file}")
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rule = "mwcc"
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implicit = []
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if mw_version == "1.2.5e":
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mw_version = "1.2.5"
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rule = "mwcc_frank"
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if args.frank:
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implicit.append(frank)
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else:
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implicit.append(franklite)
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n.build(
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outputs=path(build_src_path / f"{object}.o"),
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rule=rule,
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@ -1482,6 +1448,19 @@ if __name__ == "__main__":
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link_inputs.extend(inputs)
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n.newline()
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# Check if all compiler versions exist
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for mw_version in used_compiler_versions:
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mw_path = args.compilers / mw_version / "mwcceppc.exe"
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if not os.path.exists(mw_path):
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print(f"Compiler {mw_path} does not exist")
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exit(1)
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# Check if linker exists
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mw_path = args.compilers / mw_link_version / "mwldeppc.exe"
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if not os.path.exists(mw_path):
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print(f"Linker {mw_path} does not exist")
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exit(1)
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###
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# Link
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###
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215
tools/frank.py
215
tools/frank.py
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@ -1,215 +0,0 @@
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#! /usr/bin/env python3
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# Written by Ethan Roseman (ethteck)
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# MIT License
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# Copyright 2021
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# Modified by EpochFlame
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import argparse
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import sys
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# Byte sequence that marks code size
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CODESIZE_MAGIC = b"\x00\x00\x00\x06\x00\x00\x00\x00\x00\x00\x00\x34"
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BLR_BYTE_SEQ = b"\x4E\x80\x00\x20"
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MTLR_BYTE_SEQ = b"\x7C\x08\x03\xA6"
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PROFILE_EXTRA_BYTES = b"\x48\x00\x00\x01\x60\x00\x00\x00"
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LWZ_BYTE = b"\x80"
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# Byte sequence array for branches to link register
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BLR_BYTE_SEQ_ARRAY = [BLR_BYTE_SEQ,
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b"\x4D\x80\x00\x20", b"\x4D\x80\x00\x21", b"\x4C\x81\x00\x20", b"\x4C\x81\x00\x21",
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b"\x4D\x82\x00\x20", b"\x4D\x82\x00\x21", b"\x4C\x80\x00\x20", b"\x4C\x80\x00\x21",
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b"\x4D\x81\x00\x20", b"\x4D\x81\x00\x21", b"\x4C\x80\x00\x20", b"\x4C\x80\x00\x21",
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b"\x4C\x82\x00\x20", b"\x4C\x82\x00\x21", b"\x4C\x81\x00\x20", b"\x4C\x81\x00\x21",
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b"\x4D\x83\x00\x20", b"\x4D\x83\x00\x21", b"\x4C\x83\x00\x20", b"\x4C\x83\x00\x21",
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b"\x4D\x83\x00\x20", b"\x4D\x83\x00\x21", b"\x4C\x83\x00\x20", b"\x4C\x83\x00\x21"]
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# Example invocation: ./frank.py vanilla.o profile.o output.o
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parser = argparse.ArgumentParser()
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parser.add_argument("vanilla", help="Path to the vanilla object", type=argparse.FileType('rb'))
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parser.add_argument("profile", help="Path to the profile object", type=argparse.FileType('rb'))
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parser.add_argument("target", help="Path to the target object (to write)")
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args = parser.parse_args()
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# Read contents into bytearrays and close files
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vanilla_bytes = args.vanilla.read()
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args.vanilla.close()
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# If the file contains no code, the codesize magic will not be found.
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# The vanilla object requires no modification.
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code_size_magic_idx = vanilla_bytes.find(CODESIZE_MAGIC)
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if code_size_magic_idx == -1:
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with open(args.target, "wb") as f:
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f.write(vanilla_bytes)
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sys.exit(0)
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profile_bytes = args.profile.read()
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args.profile.close()
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# Peephole rescheduling
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#
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# This is the pattern we will detect:
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# (A) lwz <--. .--> (A) li
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# (B) li <---\-' bl
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# \ nop
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# '---> (B) lwz
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#
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# If the profiled schedule swaps the
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# instructions around the bl/nop, we
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# instead use the vanilla schedule.
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#
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idx = 8
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shift = 0 # difference between vanilla and profile code, due to bl/nops
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while idx < len(profile_bytes) - 16:
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# Find next epilogue
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epi_pos = profile_bytes.find(PROFILE_EXTRA_BYTES, idx)
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if epi_pos == -1:
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break # break while loop when no targets remain
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if epi_pos % 4 != 0: # check 4-byte alignment
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idx += 4
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continue
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v_pos = epi_pos - shift
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shift += 8
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vanilla_inst_a = vanilla_bytes[v_pos-4:v_pos]
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vanilla_inst_b = vanilla_bytes[v_pos:v_pos+4]
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vanilla_inst_c = vanilla_bytes[v_pos+4:v_pos+8]
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profile_inst_a = profile_bytes[epi_pos-4:epi_pos]
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profile_inst_b = profile_bytes[epi_pos+8:epi_pos+12]
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profile_inst_c = profile_bytes[epi_pos+12:epi_pos+16]
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opcode_a = vanilla_inst_a[0] >> 2
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opcode_b = vanilla_inst_b[0] >> 2
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opcode_c = vanilla_inst_c[0] >> 2
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LWZ = 0x80 >> 2
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LFS = 0xC0 >> 2
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ADDI = 0x38 >> 2
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LI = ADDI # an LI instruction is just an ADDI with RA=0
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LMW = 0xB8 >> 2
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FDIVS = 0xEC >> 2
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# Adjust LWZ and LMW loading from r1.
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if opcode_a in [LWZ, LMW] and vanilla_inst_a[2] == 0x00 and \
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opcode_b in [LI, LFS, FDIVS] and \
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vanilla_inst_a == profile_inst_b and \
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vanilla_inst_b == profile_inst_a and \
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vanilla_inst_c == profile_inst_c and \
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opcode_c != ADDI: # <- don't reorder if at the very end of the epilogue
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# Swap instructions (A) and (B)
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profile_bytes = profile_bytes[:epi_pos-4] \
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+ vanilla_inst_a \
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+ PROFILE_EXTRA_BYTES \
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+ vanilla_inst_b \
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+ profile_bytes[epi_pos+12:]
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# Similar reordering for lwz/lmw, except both insns follow the bl/nop
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elif opcode_b == LWZ and \
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opcode_c == LMW and \
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vanilla_inst_b == profile_inst_c and \
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vanilla_inst_c == profile_inst_b:
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profile_bytes = profile_bytes[:epi_pos+8] \
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+ vanilla_inst_b \
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+ vanilla_inst_c \
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+ profile_bytes[epi_pos+16:]
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idx = epi_pos + 8
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# Remove byte sequence
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stripped_bytes = profile_bytes.replace(PROFILE_EXTRA_BYTES, b"")
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# Find end of code sections in vanilla and stripped bytes
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code_size_offset = code_size_magic_idx + len(CODESIZE_MAGIC)
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code_size_bytes = vanilla_bytes[code_size_offset:code_size_offset+4]
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code_size = int.from_bytes(code_size_bytes, byteorder='big')
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eoc_offset = 0x34 + code_size
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# Break if the eoc is not found
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assert(eoc_offset != len(vanilla_bytes))
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# Replace 0x34 - eoc in vanilla with bytes from stripped
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final_bytes = vanilla_bytes[:0x34] + stripped_bytes[0x34:eoc_offset] + vanilla_bytes[eoc_offset:]
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|
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# Fix branches to link register
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for seq in BLR_BYTE_SEQ_ARRAY:
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idx = 0
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while idx < len(vanilla_bytes):
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found_pos = vanilla_bytes.find(seq, idx)
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if found_pos == -1:
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break # break while loop when no targets remain
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if found_pos % 4 != 0: # check 4-byte alignment
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idx += 4
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continue
|
||||
final_bytes = final_bytes[:found_pos] + vanilla_bytes[found_pos:found_pos+4] + final_bytes[found_pos+4:]
|
||||
idx = found_pos + len(seq)
|
||||
|
||||
# Reunify mtlr/blr instructions, shifting intermediary instructions up
|
||||
idx = 0
|
||||
|
||||
while idx < len(final_bytes):
|
||||
# Find mtlr position
|
||||
mtlr_found_pos = final_bytes.find(MTLR_BYTE_SEQ, idx)
|
||||
if mtlr_found_pos == -1:
|
||||
break # break while loop when no targets remain
|
||||
if mtlr_found_pos % 4 != 0: # check 4-byte alignment
|
||||
idx += 4
|
||||
continue
|
||||
# Find paired blr position
|
||||
blr_found_pos = final_bytes.find(BLR_BYTE_SEQ, mtlr_found_pos)
|
||||
if blr_found_pos == -1:
|
||||
break # break while loop when no targets remain
|
||||
if blr_found_pos % 4 != 0: # check 4-byte alignment
|
||||
idx += 4
|
||||
continue
|
||||
if mtlr_found_pos + 4 == blr_found_pos:
|
||||
idx += 4
|
||||
continue # continue if mtlr is followed directly by blr
|
||||
|
||||
final_bytes = final_bytes[:mtlr_found_pos] + final_bytes[mtlr_found_pos+4:blr_found_pos] + final_bytes[mtlr_found_pos:mtlr_found_pos+4] + final_bytes[blr_found_pos:]
|
||||
idx = mtlr_found_pos + len(MTLR_BYTE_SEQ)
|
||||
|
||||
# Reorder lmw/lwz/lfd instructions, if needed (@Altafen)
|
||||
# Specifically, if this sequence shows up in the stripped profiler code: "LMW, LWZ, LFD*"
|
||||
# And this sequence shows up in the vanilla code: "LWZ, LFD*, LMW"
|
||||
# (LFD* = any number of LFDs, including zero)
|
||||
# If all bytes match between the two (except for the reordering), then use the vanilla ordering.
|
||||
# This could be written to anchor around the "BL, NOP" instructions in unstripped profiler code,
|
||||
# or to check for the presence of "ADDI, MTLR, BLR" soon after.
|
||||
# This also could be written to decode the operands of each instruction to make sure the reorder is harmless.
|
||||
# Neither of these safeguards are necessary at the moment.
|
||||
LWZ = 32
|
||||
LMW = 46
|
||||
LFD = 50
|
||||
idx = 0
|
||||
while idx+4 < len(final_bytes):
|
||||
if final_bytes[idx] >> 2 == LMW and final_bytes[idx+4] >> 2 == LWZ and vanilla_bytes[idx] >> 2 == LWZ:
|
||||
start_idx = idx
|
||||
lmw_bytes = final_bytes[idx:idx+4]
|
||||
lwz_bytes = final_bytes[idx+4:idx+8]
|
||||
if vanilla_bytes[idx:idx+4] != lwz_bytes:
|
||||
idx += 4
|
||||
continue
|
||||
lfd_bytes = b""
|
||||
idx += 4
|
||||
while vanilla_bytes[idx] >> 2 == LFD:
|
||||
lfd_bytes += vanilla_bytes[idx:idx+4]
|
||||
idx += 4
|
||||
if vanilla_bytes[idx:idx+4] != lmw_bytes:
|
||||
continue
|
||||
if final_bytes[start_idx+8:start_idx+8+len(lfd_bytes)] != lfd_bytes:
|
||||
continue
|
||||
idx += 4
|
||||
final_bytes = final_bytes[:start_idx] + lwz_bytes + lfd_bytes + lmw_bytes + final_bytes[idx:]
|
||||
continue
|
||||
idx += 4
|
||||
|
||||
with open(args.target, "wb") as f:
|
||||
f.write(final_bytes)
|
|
@ -1,52 +0,0 @@
|
|||
#! /usr/bin/env python3
|
||||
|
||||
# Written by Ethan Roseman (ethteck)
|
||||
# MIT License
|
||||
# Copyright 2021
|
||||
|
||||
# Modified by EpochFlame
|
||||
|
||||
import argparse
|
||||
|
||||
# Byte sequences
|
||||
BLR_BYTE_SEQ = b"\x4E\x80\x00\x20"
|
||||
MTLR_BYTE_SEQ = b"\x7C\x08\x03\xA6"
|
||||
|
||||
# Example invocation: ./frank.py vanilla.o target.o
|
||||
parser = argparse.ArgumentParser()
|
||||
parser.add_argument("vanilla", help="Path to the vanilla object", type=argparse.FileType('rb'))
|
||||
parser.add_argument("target", help="Path to the target object (to write)")
|
||||
|
||||
args = parser.parse_args()
|
||||
|
||||
# Read contents into bytearrays and close files
|
||||
vanilla_bytes = args.vanilla.read()
|
||||
args.vanilla.close()
|
||||
|
||||
# Reunify mtlr/blr instructions, shifting intermediary instructions up
|
||||
idx = 0
|
||||
|
||||
while idx < len(vanilla_bytes):
|
||||
# Find mtlr position
|
||||
mtlr_found_pos = vanilla_bytes.find(MTLR_BYTE_SEQ, idx)
|
||||
if mtlr_found_pos == -1:
|
||||
break # break while loop when no targets remain
|
||||
if mtlr_found_pos % 4 != 0: # check 4-byte alignment
|
||||
idx += 4
|
||||
continue
|
||||
# Find paired blr position
|
||||
blr_found_pos = vanilla_bytes.find(BLR_BYTE_SEQ, mtlr_found_pos)
|
||||
if blr_found_pos == -1:
|
||||
break # break while loop when no targets remain
|
||||
if blr_found_pos % 4 != 0: # check 4-byte alignment
|
||||
idx += 4
|
||||
continue
|
||||
if mtlr_found_pos + 4 == blr_found_pos:
|
||||
idx += 4
|
||||
continue # continue if mtlr is followed directly by blr
|
||||
|
||||
vanilla_bytes = vanilla_bytes[:mtlr_found_pos] + vanilla_bytes[mtlr_found_pos+4:blr_found_pos] + vanilla_bytes[mtlr_found_pos:mtlr_found_pos+4] + vanilla_bytes[blr_found_pos:]
|
||||
idx = mtlr_found_pos + len(MTLR_BYTE_SEQ)
|
||||
|
||||
with open(args.target, "wb") as f:
|
||||
f.write(vanilla_bytes)
|
Loading…
Reference in New Issue