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https://github.com/yuzu-emu/breakpad.git
synced 2024-11-28 00:24:15 +01:00
Fix the tools and processor build for Android
This small patch allows the build of the tools and processor when targetting Android with the Automake/Autconf build. Not that these necessarily work correctly at the moment, but there is no need for --disable-tools --disable-processor now when using --host=arm-linux-androideabi or --host=i686-linux-android. + Modify android/run-checks.sh to build all binaries with the Automake build. + Tiny fix for --abi=x86 in android/run-checks.sh Review URL: https://breakpad.appspot.com/438002 git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@1018 4c0a9323-5329-0410-9bdc-e9ce6186880e
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@ -462,8 +462,15 @@ esac
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# Extract GNU configuration name
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case $ARCH in
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arm) GNU_CONFIG=arm-linux-androideabi;;
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*) GNU_CONFIG="$ARCH-linux-android";;
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arm)
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GNU_CONFIG=arm-linux-androideabi
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;;
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x86)
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GNU_CONFIG=i686-linux-android
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;;
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*)
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GNU_CONFIG="$ARCH-linux-android"
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;;
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esac
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# Generate standalone NDK toolchain installation
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@ -475,10 +482,10 @@ run "$NDK_DIR/build/tools/make-standalone-toolchain.sh" \
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--install-dir="$NDK_STANDALONE"
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fail_panic "Can't generate standalone NDK toolchain installation!"
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# Rebuild the client library with the auto-tools base build system.
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# Even though it's not going to be used, this checks that this still
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# works correctly.
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echo "Building client Android library with configure/make"
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# Rebuild the client library, processor and tools with the auto-tools based
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# build system. Even though it's not going to be used, this checks that this
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# still works correctly.
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echo "Building Android binaries with configure/make"
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TMPTARGET="$TMPDIR/target-local"
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(
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PATH="$NDK_STANDALONE/bin:$PATH"
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@ -486,12 +493,10 @@ TMPTARGET="$TMPDIR/target-local"
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run mkdir "$TMPDIR"/build-target &&
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run cd "$TMPDIR"/build-target &&
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run2 "$PROGDIR"/../configure --prefix="$TMPTARGET" \
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--host="$GNU_CONFIG" \
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--disable-tools \
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--disable-processor &&
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--host="$GNU_CONFIG" &&
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run2 make -j$NUM_JOBS install
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)
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fail_panic "Could not rebuild Android client library!"
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fail_panic "Could not rebuild Android binaries!"
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# Copy sources to temporary directory
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PROJECT_DIR=$TMPDIR/project
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@ -457,7 +457,7 @@ bool ExceptionHandler::WriteMinidump(const string& dump_path,
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}
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bool ExceptionHandler::WriteMinidump() {
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#if !defined(__ARM_EABI__)
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#if !defined(__ARM_EABI__) && !defined(__ANDROID__)
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if (!IsOutOfProcess() && !minidump_descriptor_.IsFD()) {
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// Update the path of the minidump so that this can be called multiple times
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// and new files are created for each minidump. This is done before the
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@ -485,7 +485,7 @@ bool ExceptionHandler::WriteMinidump() {
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return GenerateDump(&context);
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#else
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return false;
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#endif // !defined(__ARM_EABI__)
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#endif // !defined(__ARM_EABI__) && !defined(__ANDROID__)
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}
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void ExceptionHandler::AddMappingInfo(const string& name,
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@ -68,12 +68,19 @@
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#define ELF_ARCH EM_X86_64
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#elif defined(__i386__)
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#define ELF_ARCH EM_386
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#elif defined(__ARM_ARCH_3__)
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#elif defined(__arm__)
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#define ELF_ARCH EM_ARM
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#elif defined(__mips__)
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#define ELF_ARCH EM_MIPS
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#endif
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#if defined(__arm__)
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// GLibc/ARM and Android/ARM both use 'user_regs' for the structure type
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// containing core registers, while they use 'user_regs_struct' on other
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// architectures. This file-local typedef simplifies the source code.
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typedef user_regs user_regs_struct;
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#endif
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using google_breakpad::MemoryMappedFile;
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using google_breakpad::MinidumpMemoryRange;
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@ -195,7 +202,9 @@ struct CrashedProcess {
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struct Thread {
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pid_t tid;
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user_regs_struct regs;
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#if defined(__i386__) || defined(__x86_64__)
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user_fpregs_struct fpregs;
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#endif
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#if defined(__i386__)
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user_fpxregs_struct fpxregs;
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#endif
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@ -322,6 +331,32 @@ ParseThreadRegisters(CrashedProcess::Thread* thread,
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memcpy(thread->fpregs.st_space, rawregs->flt_save.float_registers, 8 * 16);
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memcpy(thread->fpregs.xmm_space, rawregs->flt_save.xmm_registers, 16 * 16);
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}
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#elif defined(__arm__)
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static void
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ParseThreadRegisters(CrashedProcess::Thread* thread,
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const MinidumpMemoryRange& range) {
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const MDRawContextARM* rawregs = range.GetData<MDRawContextARM>(0);
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thread->regs.uregs[0] = rawregs->iregs[0];
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thread->regs.uregs[1] = rawregs->iregs[1];
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thread->regs.uregs[2] = rawregs->iregs[2];
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thread->regs.uregs[3] = rawregs->iregs[3];
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thread->regs.uregs[4] = rawregs->iregs[4];
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thread->regs.uregs[5] = rawregs->iregs[5];
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thread->regs.uregs[6] = rawregs->iregs[6];
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thread->regs.uregs[7] = rawregs->iregs[7];
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thread->regs.uregs[8] = rawregs->iregs[8];
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thread->regs.uregs[9] = rawregs->iregs[9];
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thread->regs.uregs[10] = rawregs->iregs[10];
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thread->regs.uregs[11] = rawregs->iregs[11];
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thread->regs.uregs[12] = rawregs->iregs[12];
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thread->regs.uregs[13] = rawregs->iregs[13];
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thread->regs.uregs[14] = rawregs->iregs[14];
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thread->regs.uregs[15] = rawregs->iregs[15];
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thread->regs.uregs[16] = rawregs->cpsr;
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thread->regs.uregs[17] = 0; // what is ORIG_r0 exactly?
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}
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#else
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#error "This code has not been ported to your platform yet"
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#endif
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@ -380,6 +415,12 @@ ParseSystemInfo(CrashedProcess* crashinfo, const MinidumpMemoryRange& range,
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",\nbut the minidump file is from a 32bit machine" : "");
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_exit(1);
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}
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#elif defined(__arm__)
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if (sysinfo->processor_architecture != MD_CPU_ARCHITECTURE_ARM) {
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fprintf(stderr,
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"This version of minidump-2-core only supports ARM (32bit).\n");
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_exit(1);
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}
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#else
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#error "This code has not been ported to your platform yet"
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#endif
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@ -682,6 +723,7 @@ WriteThread(const CrashedProcess::Thread& thread, int fatal_signal) {
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return false;
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}
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#if defined(__i386__) || defined(__x86_64__)
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nhdr.n_descsz = sizeof(user_fpregs_struct);
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nhdr.n_type = NT_FPREGSET;
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if (!writea(1, &nhdr, sizeof(nhdr)) ||
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@ -689,6 +731,7 @@ WriteThread(const CrashedProcess::Thread& thread, int fatal_signal) {
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!writea(1, &thread.fpregs, sizeof(user_fpregs_struct))) {
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return false;
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}
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#endif
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#if defined(__i386__)
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nhdr.n_descsz = sizeof(user_fpxregs_struct);
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@ -1018,8 +1061,10 @@ main(int argc, char** argv) {
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// sizeof(Nhdr) + 8 + sizeof(user) +
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sizeof(Nhdr) + 8 + crashinfo.auxv_length +
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crashinfo.threads.size() * (
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(sizeof(Nhdr) + 8 + sizeof(prstatus)) +
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sizeof(Nhdr) + 8 + sizeof(user_fpregs_struct)
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(sizeof(Nhdr) + 8 + sizeof(prstatus))
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#if defined(__i386__) || defined(__x86_64__)
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+ sizeof(Nhdr) + 8 + sizeof(user_fpregs_struct)
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#endif
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#if defined(__i386__)
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+ sizeof(Nhdr) + 8 + sizeof(user_fpxregs_struct)
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#endif
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