mirror of
https://github.com/yuzu-emu/breakpad.git
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Provide a mechanism for SymbolSuppliers to interrupt processing (#93)
git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@80 4c0a9323-5329-0410-9bdc-e9ce6186880e
This commit is contained in:
parent
283fd39248
commit
f33b8d2d07
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@ -56,17 +56,18 @@ template<typename T> class linked_ptr;
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class CallStack {
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public:
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CallStack() { Clear(); }
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~CallStack();
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// Resets the CallStack to its initial empty state
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void Clear();
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const vector<StackFrame*>* frames() const { return &frames_; }
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private:
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// Stackwalker is responsible for building the frames_ vector.
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friend class Stackwalker;
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// Disallow instantiation other than by friends.
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CallStack() : frames_() {}
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// Storage for pushed frames.
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vector<StackFrame*> frames_;
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};
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@ -42,15 +42,21 @@ class SymbolSupplier;
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class MinidumpProcessor {
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public:
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// Return type for Process()
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enum ProcessResult {
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PROCESS_OK, // the minidump was processed successfully
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PROCESS_ERROR, // there was an error processing the minidump
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PROCESS_INTERRUPTED, // processing was interrupted by the SymbolSupplier
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};
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// Initializes this MinidumpProcessor. supplier should be an
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// implementation of the SymbolSupplier abstract base class.
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explicit MinidumpProcessor(SymbolSupplier *supplier);
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~MinidumpProcessor();
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// Returns a new ProcessState object produced by processing the minidump
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// file. The caller takes ownership of the ProcessState. Returns NULL on
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// failure.
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ProcessState* Process(const string &minidump_file);
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// Processes the minidump file and fills process_state with the result.
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ProcessResult Process(const string &minidump_file,
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ProcessState *process_state);
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// Returns a textual representation of the base CPU type that the minidump
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// in dump was produced on. Returns an empty string if this information
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@ -47,8 +47,12 @@ class CodeModules;
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class ProcessState {
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public:
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ProcessState() : modules_(NULL) { Clear(); }
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~ProcessState();
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// Resets the ProcessState to its default values
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void Clear();
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// Accessors. See the data declarations below.
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u_int32_t time_date_stamp() const { return time_date_stamp_; }
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bool crashed() const { return crashed_; }
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@ -66,11 +70,6 @@ class ProcessState {
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// MinidumpProcessor is responsible for building ProcessState objects.
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friend class MinidumpProcessor;
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// Disallow instantiation other than by friends.
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ProcessState() : time_date_stamp_(0), crashed_(false), crash_reason_(),
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crash_address_(0), requesting_thread_(-1), threads_(),
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os_(), os_version_(), cpu_(), cpu_info_(), modules_(NULL) {}
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// The time-date stamp of the minidump (time_t format)
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u_int32_t time_date_stamp_;
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@ -61,10 +61,11 @@ class Stackwalker {
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public:
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virtual ~Stackwalker() {}
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// Creates a new CallStack and populates it by calling GetContextFrame and
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// Populates the given CallStack by calling GetContextFrame and
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// GetCallerFrame. The frames are further processed to fill all available
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// data. The caller takes ownership of the CallStack returned by Walk.
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CallStack* Walk();
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// data. Returns true if the stackwalk completed, or false if it was
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// interrupted by SymbolSupplier::GetSymbolFile().
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bool Walk(CallStack *stack);
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// Returns a new concrete subclass suitable for the CPU that a stack was
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// generated on, according to the CPU type indicated by the context
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@ -42,10 +42,24 @@ class CodeModule;
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class SymbolSupplier {
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public:
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// Result type for GetSymbolFile
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enum SymbolResult {
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// no symbols were found, but continue processing
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NOT_FOUND,
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// symbols were found, and the path has been placed in symbol_file
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FOUND,
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// stops processing the minidump immediately
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INTERRUPT,
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};
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virtual ~SymbolSupplier() {}
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// Returns the path to the symbol file for the given module.
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virtual string GetSymbolFile(const CodeModule *module) = 0;
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// Retrieves the symbol file for the given CodeModule, placing the
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// path in symbol_file if successful.
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virtual SymbolResult GetSymbolFile(const CodeModule *module,
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string *symbol_file) = 0;
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};
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} // namespace google_airbag
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@ -39,6 +39,10 @@
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namespace google_airbag {
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CallStack::~CallStack() {
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Clear();
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}
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void CallStack::Clear() {
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for (vector<StackFrame *>::const_iterator iterator = frames_.begin();
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iterator != frames_.end();
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++iterator) {
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@ -45,13 +45,14 @@ MinidumpProcessor::MinidumpProcessor(SymbolSupplier *supplier)
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MinidumpProcessor::~MinidumpProcessor() {
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}
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ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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MinidumpProcessor::ProcessResult MinidumpProcessor::Process(
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const string &minidump_file, ProcessState *process_state) {
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Minidump dump(minidump_file);
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if (!dump.Read()) {
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return NULL;
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return PROCESS_ERROR;
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}
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scoped_ptr<ProcessState> process_state(new ProcessState());
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process_state->Clear();
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const MDRawHeader *header = dump.header();
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assert(header);
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@ -91,7 +92,7 @@ ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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MinidumpThreadList *threads = dump.GetThreadList();
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if (!threads) {
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return NULL;
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return PROCESS_ERROR;
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}
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bool found_requesting_thread = false;
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@ -101,12 +102,12 @@ ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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++thread_index) {
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MinidumpThread *thread = threads->GetThreadAtIndex(thread_index);
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if (!thread) {
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return NULL;
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return PROCESS_ERROR;
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}
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u_int32_t thread_id;
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if (!thread->GetThreadID(&thread_id)) {
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return NULL;
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return PROCESS_ERROR;
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}
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// If this thread is the thread that produced the minidump, don't process
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@ -122,7 +123,7 @@ ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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if (has_requesting_thread && thread_id == requesting_thread_id) {
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if (found_requesting_thread) {
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// There can't be more than one requesting thread.
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return NULL;
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return PROCESS_ERROR;
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}
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// Use processed_state->threads_.size() instead of thread_index.
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@ -148,7 +149,7 @@ ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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MinidumpMemoryRegion *thread_memory = thread->GetMemory();
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if (!thread_memory) {
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return NULL;
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return PROCESS_ERROR;
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}
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// Use process_state->modules_ instead of module_list, because the
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@ -165,23 +166,22 @@ ProcessState* MinidumpProcessor::Process(const string &minidump_file) {
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process_state->modules_,
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supplier_));
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if (!stackwalker.get()) {
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return NULL;
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return PROCESS_ERROR;
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}
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scoped_ptr<CallStack> stack(stackwalker->Walk());
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if (!stack.get()) {
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return NULL;
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scoped_ptr<CallStack> stack(new CallStack());
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if (!stackwalker->Walk(stack.get())) {
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return PROCESS_INTERRUPTED;
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}
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process_state->threads_.push_back(stack.release());
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}
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// If a requesting thread was indicated, it must be present.
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if (has_requesting_thread && !found_requesting_thread) {
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return NULL;
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return PROCESS_ERROR;
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}
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return process_state.release();
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return PROCESS_OK;
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}
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// Returns the MDRawSystemInfo from a minidump, or NULL if system info is
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@ -62,18 +62,33 @@ using google_airbag::SymbolSupplier;
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class TestSymbolSupplier : public SymbolSupplier {
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public:
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virtual string GetSymbolFile(const CodeModule *module);
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TestSymbolSupplier() : interrupt_(false) {}
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virtual SymbolResult GetSymbolFile(const CodeModule *module,
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string *symbol_file);
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// When set to true, causes the SymbolSupplier to return INTERRUPT
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void set_interrupt(bool interrupt) { interrupt_ = interrupt; }
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private:
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bool interrupt_;
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};
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string TestSymbolSupplier::GetSymbolFile(const CodeModule *module) {
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SymbolSupplier::SymbolResult TestSymbolSupplier::GetSymbolFile(
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const CodeModule *module, string *symbol_file) {
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if (interrupt_) {
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return INTERRUPT;
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}
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if (module && module->code_file() == "C:\\test_app.exe") {
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return string(getenv("srcdir") ? getenv("srcdir") : ".") +
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*symbol_file = string(getenv("srcdir") ? getenv("srcdir") : ".") +
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"/src/processor/testdata/symbols/test_app.pdb/" +
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module->debug_identifier() +
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"/test_app.sym";
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return FOUND;
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}
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return "";
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return NOT_FOUND;
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}
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static bool RunTests() {
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@ -83,19 +98,20 @@ static bool RunTests() {
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string minidump_file = string(getenv("srcdir") ? getenv("srcdir") : ".") +
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"/src/processor/testdata/minidump2.dmp";
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scoped_ptr<ProcessState> state(processor.Process(minidump_file));
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ASSERT_TRUE(state.get());
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ASSERT_EQ(state->cpu(), "x86");
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ASSERT_EQ(state->cpu_info(), "GenuineIntel family 6 model 13 stepping 8");
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ASSERT_EQ(state->os(), "Windows NT");
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ASSERT_EQ(state->os_version(), "5.1.2600 Service Pack 2");
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ASSERT_TRUE(state->crashed());
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ASSERT_EQ(state->crash_reason(), "EXCEPTION_ACCESS_VIOLATION");
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ASSERT_EQ(state->crash_address(), 0x45);
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ASSERT_EQ(state->threads()->size(), 1);
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ASSERT_EQ(state->requesting_thread(), 0);
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ProcessState state;
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ASSERT_EQ(processor.Process(minidump_file, &state),
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MinidumpProcessor::PROCESS_OK);
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ASSERT_EQ(state.cpu(), "x86");
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ASSERT_EQ(state.cpu_info(), "GenuineIntel family 6 model 13 stepping 8");
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ASSERT_EQ(state.os(), "Windows NT");
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ASSERT_EQ(state.os_version(), "5.1.2600 Service Pack 2");
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ASSERT_TRUE(state.crashed());
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ASSERT_EQ(state.crash_reason(), "EXCEPTION_ACCESS_VIOLATION");
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ASSERT_EQ(state.crash_address(), 0x45);
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ASSERT_EQ(state.threads()->size(), 1);
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ASSERT_EQ(state.requesting_thread(), 0);
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CallStack *stack = state->threads()->at(0);
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CallStack *stack = state.threads()->at(0);
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ASSERT_TRUE(stack);
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ASSERT_EQ(stack->frames()->size(), 4);
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ASSERT_TRUE(stack->frames()->at(3)->source_file_name.empty());
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ASSERT_EQ(stack->frames()->at(3)->source_line, 0);
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ASSERT_EQ(state->modules()->module_count(), 13);
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ASSERT_TRUE(state->modules()->GetMainModule());
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ASSERT_EQ(state->modules()->GetMainModule()->code_file(), "C:\\test_app.exe");
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ASSERT_FALSE(state->modules()->GetModuleForAddress(0));
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ASSERT_EQ(state->modules()->GetMainModule(),
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state->modules()->GetModuleForAddress(0x400000));
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ASSERT_EQ(state->modules()->GetModuleForAddress(0x7c801234)->debug_file(),
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ASSERT_EQ(state.modules()->module_count(), 13);
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ASSERT_TRUE(state.modules()->GetMainModule());
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ASSERT_EQ(state.modules()->GetMainModule()->code_file(), "C:\\test_app.exe");
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ASSERT_FALSE(state.modules()->GetModuleForAddress(0));
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ASSERT_EQ(state.modules()->GetMainModule(),
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state.modules()->GetModuleForAddress(0x400000));
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ASSERT_EQ(state.modules()->GetModuleForAddress(0x7c801234)->debug_file(),
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"kernel32.pdb");
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ASSERT_EQ(state->modules()->GetModuleForAddress(0x77d43210)->version(),
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ASSERT_EQ(state.modules()->GetModuleForAddress(0x77d43210)->version(),
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"5.1.2600.2622");
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// Test that the symbol supplier can interrupt processing
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state.Clear();
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supplier.set_interrupt(true);
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ASSERT_EQ(processor.Process(minidump_file, &state),
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MinidumpProcessor::PROCESS_INTERRUPTED);
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return true;
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}
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@ -195,18 +195,18 @@ static bool PrintMinidumpProcess(const string &minidump_file,
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MinidumpProcessor minidump_processor(symbol_supplier.get());
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// Process the minidump.
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scoped_ptr<ProcessState> process_state(
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minidump_processor.Process(minidump_file));
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if (!process_state.get()) {
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ProcessState process_state;
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if (minidump_processor.Process(minidump_file, &process_state) !=
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MinidumpProcessor::PROCESS_OK) {
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fprintf(stderr, "MinidumpProcessor::Process failed\n");
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return false;
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}
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// Print OS and CPU information.
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string cpu = process_state->cpu();
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string cpu_info = process_state->cpu_info();
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printf("Operating system: %s\n", process_state->os().c_str());
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printf(" %s\n", process_state->os_version().c_str());
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string cpu = process_state.cpu();
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string cpu_info = process_state.cpu_info();
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printf("Operating system: %s\n", process_state.os().c_str());
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printf(" %s\n", process_state.os_version().c_str());
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printf("CPU: %s\n", cpu.c_str());
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if (!cpu_info.empty()) {
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// This field is optional.
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printf("\n");
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// Print crash information.
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if (process_state->crashed()) {
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printf("Crash reason: %s\n", process_state->crash_reason().c_str());
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printf("Crash address: 0x%llx\n", process_state->crash_address());
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if (process_state.crashed()) {
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printf("Crash reason: %s\n", process_state.crash_reason().c_str());
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printf("Crash address: 0x%llx\n", process_state.crash_address());
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} else {
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printf("No crash\n");
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}
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// If the thread that requested the dump is known, print it first.
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int requesting_thread = process_state->requesting_thread();
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int requesting_thread = process_state.requesting_thread();
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if (requesting_thread != -1) {
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printf("\n");
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printf("Thread %d (%s)\n",
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requesting_thread,
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process_state->crashed() ? "crashed" :
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process_state.crashed() ? "crashed" :
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"requested dump, did not crash");
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PrintStack(process_state->threads()->at(requesting_thread), cpu);
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PrintStack(process_state.threads()->at(requesting_thread), cpu);
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}
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// Print all of the threads in the dump.
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int thread_count = process_state->threads()->size();
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int thread_count = process_state.threads()->size();
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for (int thread_index = 0; thread_index < thread_count; ++thread_index) {
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if (thread_index != requesting_thread) {
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// Don't print the crash thread again, it was already printed.
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printf("\n");
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printf("Thread %d\n", thread_index);
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PrintStack(process_state->threads()->at(thread_index), cpu);
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PrintStack(process_state.threads()->at(thread_index), cpu);
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}
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}
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PrintModules(process_state->modules());
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PrintModules(process_state.modules());
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return true;
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}
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@ -40,13 +40,27 @@
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namespace google_airbag {
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ProcessState::~ProcessState() {
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Clear();
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}
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void ProcessState::Clear() {
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time_date_stamp_ = 0;
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crashed_ = false;
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crash_reason_.clear();
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crash_address_ = 0;
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requesting_thread_ = -1;
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for (vector<CallStack *>::const_iterator iterator = threads_.begin();
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iterator != threads_.end();
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++iterator) {
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delete *iterator;
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}
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threads_.clear();
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os_.clear();
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os_version_.clear();
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cpu_.clear();
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cpu_info_.clear();
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delete modules_;
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modules_ = NULL;
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}
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} // namespace google_airbag
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@ -33,16 +33,19 @@
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//
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// Author: Mark Mentovai
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#include <cassert>
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#include "processor/simple_symbol_supplier.h"
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#include "google_airbag/processor/code_module.h"
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#include "processor/pathname_stripper.h"
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namespace google_airbag {
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string SimpleSymbolSupplier::GetSymbolFileAtPath(const CodeModule *module,
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const string &root_path) {
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SymbolSupplier::SymbolResult SimpleSymbolSupplier::GetSymbolFileAtPath(
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const CodeModule *module, const string &root_path, string *symbol_file) {
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assert(symbol_file);
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if (!module)
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return "";
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return NOT_FOUND;
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// Start with the base path.
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string path = root_path;
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@ -51,14 +54,14 @@ string SimpleSymbolSupplier::GetSymbolFileAtPath(const CodeModule *module,
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path.append("/");
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string debug_file_name = PathnameStripper::File(module->debug_file());
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if (debug_file_name.empty())
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return "";
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return NOT_FOUND;
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path.append(debug_file_name);
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// Append the identifier as a directory name.
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||||
path.append("/");
|
||||
string identifier = module->debug_identifier();
|
||||
if (identifier.empty())
|
||||
return "";
|
||||
return NOT_FOUND;
|
||||
path.append(identifier);
|
||||
|
||||
// Transform the debug file name into one ending in .sym. If the existing
|
||||
|
@ -76,7 +79,8 @@ string SimpleSymbolSupplier::GetSymbolFileAtPath(const CodeModule *module,
|
|||
}
|
||||
path.append(".sym");
|
||||
|
||||
return path;
|
||||
*symbol_file = path;
|
||||
return FOUND;
|
||||
}
|
||||
|
||||
} // namespace google_airbag
|
||||
|
|
|
@ -92,13 +92,15 @@ class SimpleSymbolSupplier : public SymbolSupplier {
|
|||
|
||||
// Returns the path to the symbol file for the given module. See the
|
||||
// description above.
|
||||
virtual string GetSymbolFile(const CodeModule *module) {
|
||||
return GetSymbolFileAtPath(module, path_);
|
||||
virtual SymbolResult GetSymbolFile(const CodeModule *module,
|
||||
string *symbol_file) {
|
||||
return GetSymbolFileAtPath(module, path_, symbol_file);
|
||||
}
|
||||
|
||||
protected:
|
||||
string GetSymbolFileAtPath(const CodeModule *module,
|
||||
const string &root_path);
|
||||
SymbolResult GetSymbolFileAtPath(const CodeModule *module,
|
||||
const string &root_path,
|
||||
string *symbol_file);
|
||||
|
||||
private:
|
||||
string path_;
|
||||
|
|
|
@ -34,6 +34,8 @@
|
|||
// Author: Mark Mentovai
|
||||
|
||||
|
||||
#include <cassert>
|
||||
|
||||
#include "google_airbag/processor/stackwalker.h"
|
||||
#include "google_airbag/processor/call_stack.h"
|
||||
#include "google_airbag/processor/code_module.h"
|
||||
|
@ -57,10 +59,10 @@ Stackwalker::Stackwalker(MemoryRegion *memory, const CodeModules *modules,
|
|||
}
|
||||
|
||||
|
||||
CallStack* Stackwalker::Walk() {
|
||||
bool Stackwalker::Walk(CallStack *stack) {
|
||||
assert(stack);
|
||||
SourceLineResolver resolver;
|
||||
|
||||
scoped_ptr<CallStack> stack(new CallStack());
|
||||
stack->Clear();
|
||||
|
||||
// stack_frame_info parallels the CallStack. The vector is passed to the
|
||||
// GetCallerFrame function. It contains information that may be helpful
|
||||
|
@ -87,9 +89,18 @@ CallStack* Stackwalker::Walk() {
|
|||
if (module) {
|
||||
frame->module = module;
|
||||
if (!resolver.HasModule(frame->module->code_file()) && supplier_) {
|
||||
string symbol_file = supplier_->GetSymbolFile(module);
|
||||
if (!symbol_file.empty()) {
|
||||
string symbol_file;
|
||||
SymbolSupplier::SymbolResult symbol_result =
|
||||
supplier_->GetSymbolFile(module, &symbol_file);
|
||||
|
||||
switch (symbol_result) {
|
||||
case SymbolSupplier::FOUND:
|
||||
resolver.LoadModule(frame->module->code_file(), symbol_file);
|
||||
break;
|
||||
case SymbolSupplier::NOT_FOUND:
|
||||
break; // nothing to do
|
||||
case SymbolSupplier::INTERRUPT:
|
||||
return false;
|
||||
}
|
||||
}
|
||||
frame_info.reset(resolver.FillSourceLineInfo(frame.get()));
|
||||
|
@ -105,10 +116,10 @@ CallStack* Stackwalker::Walk() {
|
|||
frame_info.reset(NULL);
|
||||
|
||||
// Get the next frame and take ownership.
|
||||
frame.reset(GetCallerFrame(stack.get(), stack_frame_info));
|
||||
frame.reset(GetCallerFrame(stack, stack_frame_info));
|
||||
}
|
||||
|
||||
return stack.release();
|
||||
return true;
|
||||
}
|
||||
|
||||
|
||||
|
|
Loading…
Reference in a new issue