177 lines
6.0 KiB
C++
177 lines
6.0 KiB
C++
// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "lib/stacktrace.h"
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#include "vm/bootstrap_natives.h"
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#include "vm/debugger.h"
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#include "vm/exceptions.h"
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#include "vm/native_entry.h"
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#include "vm/object_store.h"
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#include "vm/runtime_entry.h"
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#include "vm/stack_frame.h"
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#include "vm/stack_trace.h"
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namespace dart {
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DECLARE_FLAG(bool, show_invisible_frames);
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static RawStackTrace* CurrentSyncStackTrace(Thread* thread,
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intptr_t skip_frames = 1) {
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Zone* zone = thread->zone();
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const Function& null_function = Function::ZoneHandle(zone);
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// Determine how big the stack trace is.
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const intptr_t stack_trace_length =
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StackTraceUtils::CountFrames(thread, skip_frames, null_function);
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// Allocate once.
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const Array& code_array =
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Array::ZoneHandle(zone, Array::New(stack_trace_length));
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const Array& pc_offset_array =
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Array::ZoneHandle(zone, Array::New(stack_trace_length));
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// Collect the frames.
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const intptr_t collected_frames_count = StackTraceUtils::CollectFrames(
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thread, code_array, pc_offset_array, 0, stack_trace_length, skip_frames);
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ASSERT(collected_frames_count == stack_trace_length);
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return StackTrace::New(code_array, pc_offset_array);
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}
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static RawStackTrace* CurrentStackTrace(
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Thread* thread,
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bool for_async_function,
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intptr_t skip_frames = 1,
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bool causal_async_stacks = FLAG_causal_async_stacks) {
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if (!causal_async_stacks) {
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// Return the synchronous stack trace.
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return CurrentSyncStackTrace(thread, skip_frames);
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}
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Zone* zone = thread->zone();
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Code& code = Code::ZoneHandle(zone);
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Smi& offset = Smi::ZoneHandle(zone);
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Function& async_function = Function::ZoneHandle(zone);
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StackTrace& async_stack_trace = StackTrace::ZoneHandle(zone);
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Array& async_code_array = Array::ZoneHandle(zone);
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Array& async_pc_offset_array = Array::ZoneHandle(zone);
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StackTraceUtils::ExtractAsyncStackTraceInfo(
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thread, &async_function, &async_stack_trace, &async_code_array,
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&async_pc_offset_array);
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// Determine the size of the stack trace.
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const intptr_t extra_frames = for_async_function ? 1 : 0;
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const intptr_t synchronous_stack_trace_length =
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StackTraceUtils::CountFrames(thread, skip_frames, async_function);
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const intptr_t capacity = synchronous_stack_trace_length +
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extra_frames; // For the asynchronous gap.
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// Allocate memory for the stack trace.
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const Array& code_array = Array::ZoneHandle(zone, Array::New(capacity));
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const Array& pc_offset_array = Array::ZoneHandle(zone, Array::New(capacity));
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intptr_t write_cursor = 0;
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if (for_async_function) {
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// Place the asynchronous gap marker at the top of the stack trace.
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code = StubCode::AsynchronousGapMarker_entry()->code();
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ASSERT(!code.IsNull());
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offset = Smi::New(0);
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code_array.SetAt(write_cursor, code);
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pc_offset_array.SetAt(write_cursor, offset);
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write_cursor++;
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}
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// Append the synchronous stack trace.
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const intptr_t collected_frames_count = StackTraceUtils::CollectFrames(
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thread, code_array, pc_offset_array, write_cursor,
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synchronous_stack_trace_length, skip_frames);
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write_cursor += collected_frames_count;
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ASSERT(write_cursor == capacity);
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return StackTrace::New(code_array, pc_offset_array, async_stack_trace);
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}
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RawStackTrace* GetStackTraceForException() {
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Thread* thread = Thread::Current();
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return CurrentStackTrace(thread, false, 0);
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}
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DEFINE_NATIVE_ENTRY(StackTrace_current, 0) {
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return CurrentStackTrace(thread, false);
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}
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DEFINE_NATIVE_ENTRY(StackTrace_asyncStackTraceHelper, 1) {
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GET_NATIVE_ARGUMENT(Closure, async_op, arguments->NativeArgAt(0));
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if (!async_op.IsNull()) {
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if (FLAG_support_debugger) {
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Debugger* debugger = isolate->debugger();
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if (debugger != NULL) {
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debugger->MaybeAsyncStepInto(async_op);
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}
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}
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}
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return CurrentStackTrace(thread, true);
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}
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DEFINE_NATIVE_ENTRY(StackTrace_clearAsyncThreadStackTrace, 0) {
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thread->clear_async_stack_trace();
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return Object::null();
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}
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DEFINE_NATIVE_ENTRY(StackTrace_setAsyncThreadStackTrace, 1) {
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GET_NON_NULL_NATIVE_ARGUMENT(StackTrace, stack_trace,
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arguments->NativeArgAt(0));
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thread->set_async_stack_trace(stack_trace);
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return Object::null();
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}
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static void AppendFrames(const GrowableObjectArray& code_list,
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const GrowableObjectArray& pc_offset_list,
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int skip_frames) {
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StackFrameIterator frames(StackFrameIterator::kDontValidateFrames,
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Thread::Current(),
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StackFrameIterator::kNoCrossThreadIteration);
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StackFrame* frame = frames.NextFrame();
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ASSERT(frame != NULL); // We expect to find a dart invocation frame.
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Code& code = Code::Handle();
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Smi& offset = Smi::Handle();
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while (frame != NULL) {
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if (frame->IsDartFrame()) {
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if (skip_frames > 0) {
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skip_frames--;
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} else {
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code = frame->LookupDartCode();
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offset = Smi::New(frame->pc() - code.PayloadStart());
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code_list.Add(code);
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pc_offset_list.Add(offset);
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}
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}
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frame = frames.NextFrame();
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}
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}
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// Creates a StackTrace object from the current stack.
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//
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// Skips the first skip_frames Dart frames.
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const StackTrace& GetCurrentStackTrace(int skip_frames) {
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const GrowableObjectArray& code_list =
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GrowableObjectArray::Handle(GrowableObjectArray::New());
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const GrowableObjectArray& pc_offset_list =
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GrowableObjectArray::Handle(GrowableObjectArray::New());
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AppendFrames(code_list, pc_offset_list, skip_frames);
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const Array& code_array = Array::Handle(Array::MakeFixedLength(code_list));
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const Array& pc_offset_array =
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Array::Handle(Array::MakeFixedLength(pc_offset_list));
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const StackTrace& stacktrace =
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StackTrace::Handle(StackTrace::New(code_array, pc_offset_array));
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return stacktrace;
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}
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} // namespace dart
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