011068f824
Every known user of the coverage report just wants the line numbers. At the moment they have to do a second RPC to get the Script object, so they can translate the token positions into line numbers. Slower test times with coverage are usually caused by the extra time it takes to run the RPCs. So reporting the line number directly will halve the time it takes to get coverage, for most users. Bug: https://github.com/flutter/flutter/issues/86722 Change-Id: I7b8d436669713ebc7b7096790a02593b9cb94dda TEST=CI Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/211081 Commit-Queue: Liam Appelbe <liama@google.com> Reviewed-by: Ben Konyi <bkonyi@google.com>
690 lines
24 KiB
C++
690 lines
24 KiB
C++
// Copyright (c) 2015, 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 "vm/globals.h"
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#if !defined(PRODUCT) && !defined(DART_PRECOMPILED_RUNTIME)
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#include "vm/source_report.h"
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#include "vm/bit_vector.h"
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#include "vm/closure_functions_cache.h"
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#include "vm/compiler/jit/compiler.h"
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#include "vm/isolate.h"
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#include "vm/kernel_loader.h"
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#include "vm/object.h"
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#include "vm/object_store.h"
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#include "vm/profiler.h"
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#include "vm/profiler_service.h"
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namespace dart {
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const char* SourceReport::kCallSitesStr = "_CallSites";
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const char* SourceReport::kCoverageStr = "Coverage";
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const char* SourceReport::kPossibleBreakpointsStr = "PossibleBreakpoints";
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const char* SourceReport::kProfileStr = "_Profile";
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SourceReport::SourceReport(intptr_t report_set,
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CompileMode compile_mode,
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bool report_lines)
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: report_set_(report_set),
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compile_mode_(compile_mode),
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report_lines_(report_lines),
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thread_(NULL),
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script_(NULL),
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start_pos_(TokenPosition::kMinSource),
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end_pos_(TokenPosition::kMaxSource),
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next_script_index_(0) {}
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SourceReport::~SourceReport() {
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ClearScriptTable();
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}
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void SourceReport::ClearScriptTable() {
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for (intptr_t i = 0; i < script_table_entries_.length(); i++) {
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delete script_table_entries_[i];
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script_table_entries_[i] = NULL;
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}
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script_table_entries_.Clear();
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script_table_.Clear();
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next_script_index_ = 0;
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}
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void SourceReport::Init(Thread* thread,
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const Script* script,
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TokenPosition start_pos,
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TokenPosition end_pos) {
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thread_ = thread;
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script_ = script;
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start_pos_ = TokenPosition::Max(start_pos, TokenPosition::kMinSource);
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end_pos_ = TokenPosition::Min(end_pos, TokenPosition::kMaxSource);
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ClearScriptTable();
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if (IsReportRequested(kProfile)) {
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// Build the profile.
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SampleFilter samplesForIsolate(thread_->isolate()->main_port(),
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Thread::kMutatorTask, -1, -1);
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profile_.Build(thread, &samplesForIsolate, Profiler::sample_block_buffer());
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}
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}
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bool SourceReport::IsReportRequested(ReportKind report_kind) {
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return (report_set_ & report_kind) != 0;
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}
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bool SourceReport::ShouldSkipFunction(const Function& func) {
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// TODO(32315): Verify that the check is still needed after the issue is
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// resolved.
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if (!func.token_pos().IsReal() || !func.end_token_pos().IsReal()) {
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// At least one of the token positions is not known.
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return true;
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}
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if (script_ != NULL && !script_->IsNull()) {
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if (func.script() != script_->ptr()) {
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// The function is from the wrong script.
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return true;
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}
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if ((func.end_token_pos() < start_pos_) || (func.token_pos() > end_pos_)) {
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// The function does not intersect with the requested token range.
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return true;
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}
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}
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// These don't have unoptimized code and are only used for synthetic stubs.
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if (func.ForceOptimize()) return true;
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switch (func.kind()) {
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case UntaggedFunction::kRegularFunction:
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case UntaggedFunction::kClosureFunction:
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case UntaggedFunction::kImplicitClosureFunction:
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case UntaggedFunction::kImplicitStaticGetter:
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case UntaggedFunction::kFieldInitializer:
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case UntaggedFunction::kGetterFunction:
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case UntaggedFunction::kSetterFunction:
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case UntaggedFunction::kConstructor:
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break;
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default:
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return true;
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}
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if (func.is_abstract() || func.IsImplicitConstructor() ||
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func.is_synthetic()) {
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return true;
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}
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if (func.IsNonImplicitClosureFunction() &&
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(func.context_scope() == ContextScope::null())) {
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// TODO(iposva): This can arise if we attempt to compile an inner function
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// before we have compiled its enclosing function or if the enclosing
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// function failed to compile.
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return true;
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}
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return false;
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}
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bool SourceReport::ShouldSkipField(const Field& field) {
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if (!field.token_pos().IsReal() || !field.end_token_pos().IsReal()) {
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// At least one of the token positions is not known.
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return true;
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}
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if (script_ != NULL && !script_->IsNull()) {
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if (field.Script() != script_->ptr()) {
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// The field is from the wrong script.
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return true;
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}
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if ((field.end_token_pos() < start_pos_) ||
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(field.token_pos() > end_pos_)) {
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// The field does not intersect with the requested token range.
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return true;
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}
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}
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return false;
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}
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intptr_t SourceReport::GetScriptIndex(const Script& script) {
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ScriptTableEntry wrapper;
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const String& url = String::Handle(zone(), script.url());
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wrapper.key = &url;
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wrapper.script = &Script::Handle(zone(), script.ptr());
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ScriptTableEntry* pair = script_table_.LookupValue(&wrapper);
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if (pair != NULL) {
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return pair->index;
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}
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ScriptTableEntry* tmp = new ScriptTableEntry();
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tmp->key = &url;
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tmp->index = next_script_index_++;
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tmp->script = wrapper.script;
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script_table_entries_.Add(tmp);
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script_table_.Insert(tmp);
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ASSERT(script_table_entries_.length() == next_script_index_);
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#if defined(DEBUG)
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VerifyScriptTable();
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#endif
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return tmp->index;
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}
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#if defined(DEBUG)
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void SourceReport::VerifyScriptTable() {
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for (intptr_t i = 0; i < script_table_entries_.length(); i++) {
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const String* url = script_table_entries_[i]->key;
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const Script* script = script_table_entries_[i]->script;
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intptr_t index = script_table_entries_[i]->index;
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ASSERT(i == index);
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const String& url2 = String::Handle(zone(), script->url());
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ASSERT(url2.Equals(*url));
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ScriptTableEntry wrapper;
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wrapper.key = &url2;
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wrapper.script = &Script::Handle(zone(), script->ptr());
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ScriptTableEntry* pair = script_table_.LookupValue(&wrapper);
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ASSERT(i == pair->index);
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}
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}
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#endif
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bool SourceReport::ScriptIsLoadedByLibrary(const Script& script,
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const Library& lib) {
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const Array& scripts = Array::Handle(zone(), lib.LoadedScripts());
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for (intptr_t j = 0; j < scripts.Length(); j++) {
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if (scripts.At(j) == script.ptr()) {
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return true;
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}
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}
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return false;
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}
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void SourceReport::PrintCallSitesData(JSONObject* jsobj,
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const Function& function,
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const Code& code) {
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ASSERT(!code.IsNull());
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const TokenPosition& begin_pos = function.token_pos();
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const TokenPosition& end_pos = function.end_token_pos();
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ZoneGrowableArray<const ICData*>* ic_data_array =
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new (zone()) ZoneGrowableArray<const ICData*>();
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function.RestoreICDataMap(ic_data_array, false /* clone ic-data */);
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const PcDescriptors& descriptors =
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PcDescriptors::Handle(zone(), code.pc_descriptors());
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JSONArray sites(jsobj, "callSites");
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PcDescriptors::Iterator iter(
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descriptors,
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UntaggedPcDescriptors::kIcCall | UntaggedPcDescriptors::kUnoptStaticCall);
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while (iter.MoveNext()) {
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HANDLESCOPE(thread());
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ASSERT(iter.DeoptId() < ic_data_array->length());
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const ICData* ic_data = (*ic_data_array)[iter.DeoptId()];
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if (ic_data != NULL) {
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const TokenPosition& token_pos = iter.TokenPos();
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if (!token_pos.IsWithin(begin_pos, end_pos)) {
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// Does not correspond to a valid source position.
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continue;
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}
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ic_data->PrintToJSONArray(sites, token_pos);
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}
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}
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}
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intptr_t SourceReport::GetTokenPosOrLine(const Script& script,
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const TokenPosition& token_pos) {
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if (!report_lines_) {
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return token_pos.Pos();
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}
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intptr_t line = -1;
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const bool found = script.GetTokenLocation(token_pos, &line);
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ASSERT(found);
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return line;
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}
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void SourceReport::PrintCoverageData(JSONObject* jsobj,
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const Function& function,
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const Code& code) {
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ASSERT(!code.IsNull());
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const TokenPosition& begin_pos = function.token_pos();
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const TokenPosition& end_pos = function.end_token_pos();
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ZoneGrowableArray<const ICData*>* ic_data_array =
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new (zone()) ZoneGrowableArray<const ICData*>();
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function.RestoreICDataMap(ic_data_array, false /* clone ic-data */);
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const PcDescriptors& descriptors =
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PcDescriptors::Handle(zone(), code.pc_descriptors());
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const Script& script = Script::Handle(zone(), function.script());
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const int kCoverageNone = 0;
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const int kCoverageMiss = 1;
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const int kCoverageHit = 2;
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intptr_t func_length = function.SourceSize() + 1;
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GrowableArray<char> coverage(func_length);
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coverage.SetLength(func_length);
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for (int i = 0; i < func_length; i++) {
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coverage[i] = kCoverageNone;
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}
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if (function.WasExecuted()) {
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coverage[0] = kCoverageHit;
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} else {
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coverage[0] = kCoverageMiss;
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}
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PcDescriptors::Iterator iter(
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descriptors,
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UntaggedPcDescriptors::kIcCall | UntaggedPcDescriptors::kUnoptStaticCall);
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while (iter.MoveNext()) {
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HANDLESCOPE(thread());
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ASSERT(iter.DeoptId() < ic_data_array->length());
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const ICData* ic_data = (*ic_data_array)[iter.DeoptId()];
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if (ic_data != NULL) {
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const TokenPosition& token_pos = iter.TokenPos();
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if (!token_pos.IsWithin(begin_pos, end_pos)) {
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// Does not correspond to a valid source position.
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continue;
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}
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intptr_t count = ic_data->AggregateCount();
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intptr_t token_offset = token_pos.Pos() - begin_pos.Pos();
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if (count > 0) {
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coverage[token_offset] = kCoverageHit;
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} else {
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if (coverage[token_offset] == kCoverageNone) {
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coverage[token_offset] = kCoverageMiss;
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}
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}
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}
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}
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JSONObject cov(jsobj, "coverage");
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{
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JSONArray hits(&cov, "hits");
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TokenPosition pos = begin_pos;
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for (int i = 0; i < func_length; i++) {
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if (coverage[i] == kCoverageHit) {
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// Add the token position or line number of the hit.
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hits.AddValue(GetTokenPosOrLine(script, pos));
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}
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pos = pos.Next();
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}
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}
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{
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JSONArray misses(&cov, "misses");
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TokenPosition pos = begin_pos;
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for (int i = 0; i < func_length; i++) {
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if (coverage[i] == kCoverageMiss) {
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// Add the token position or line number of the miss.
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misses.AddValue(GetTokenPosOrLine(script, pos));
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}
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pos = pos.Next();
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}
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}
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}
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void SourceReport::PrintPossibleBreakpointsData(JSONObject* jsobj,
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const Function& func,
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const Code& code) {
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const TokenPosition& begin_pos = func.token_pos();
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const TokenPosition& end_pos = func.end_token_pos();
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intptr_t func_length = func.SourceSize() + 1;
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BitVector possible(zone(), func_length);
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ASSERT(!code.IsNull());
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const uint8_t kSafepointKind = (UntaggedPcDescriptors::kIcCall |
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UntaggedPcDescriptors::kUnoptStaticCall |
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UntaggedPcDescriptors::kRuntimeCall);
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const PcDescriptors& descriptors =
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PcDescriptors::Handle(zone(), code.pc_descriptors());
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const Script& script = Script::Handle(zone(), func.script());
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PcDescriptors::Iterator iter(descriptors, kSafepointKind);
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while (iter.MoveNext()) {
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const TokenPosition& token_pos = iter.TokenPos();
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if (!token_pos.IsWithin(begin_pos, end_pos)) {
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// Does not correspond to a valid source position.
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continue;
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}
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intptr_t token_offset = token_pos.Pos() - begin_pos.Pos();
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possible.Add(token_offset);
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}
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JSONArray bpts(jsobj, "possibleBreakpoints");
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TokenPosition pos = begin_pos;
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for (int i = 0; i < func_length; i++) {
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if (possible.Contains(i)) {
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// Add the token position or line number.
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bpts.AddValue(GetTokenPosOrLine(script, pos));
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}
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pos = pos.Next();
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}
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}
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void SourceReport::PrintProfileData(JSONObject* jsobj,
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ProfileFunction* profile_function) {
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ASSERT(profile_function != NULL);
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ASSERT(profile_function->NumSourcePositions() > 0);
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{
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JSONObject profile(jsobj, "profile");
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{
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JSONObject profileData(&profile, "metadata");
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profileData.AddProperty("sampleCount", profile_.sample_count());
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}
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// Positions.
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{
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JSONArray positions(&profile, "positions");
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for (intptr_t i = 0; i < profile_function->NumSourcePositions(); i++) {
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const ProfileFunctionSourcePosition& position =
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profile_function->GetSourcePosition(i);
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if (position.token_pos().IsReal()) {
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// Add as an integer.
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positions.AddValue(position.token_pos().Pos());
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} else {
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// Add as a string.
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positions.AddValue(position.token_pos().ToCString());
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}
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}
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}
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// Exclusive ticks.
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{
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JSONArray exclusiveTicks(&profile, "exclusiveTicks");
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for (intptr_t i = 0; i < profile_function->NumSourcePositions(); i++) {
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const ProfileFunctionSourcePosition& position =
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profile_function->GetSourcePosition(i);
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exclusiveTicks.AddValue(position.exclusive_ticks());
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}
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}
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// Inclusive ticks.
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{
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JSONArray inclusiveTicks(&profile, "inclusiveTicks");
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for (intptr_t i = 0; i < profile_function->NumSourcePositions(); i++) {
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const ProfileFunctionSourcePosition& position =
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profile_function->GetSourcePosition(i);
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inclusiveTicks.AddValue(position.inclusive_ticks());
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}
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}
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}
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}
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void SourceReport::PrintScriptTable(JSONArray* scripts) {
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for (intptr_t i = 0; i < script_table_entries_.length(); i++) {
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const Script* script = script_table_entries_[i]->script;
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scripts->AddValue(*script);
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}
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}
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void SourceReport::VisitFunction(JSONArray* jsarr, const Function& func) {
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if (ShouldSkipFunction(func)) {
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return;
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}
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const Script& script = Script::Handle(zone(), func.script());
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const TokenPosition begin_pos = func.token_pos();
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const TokenPosition end_pos = func.end_token_pos();
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Code& code = Code::Handle(zone(), func.unoptimized_code());
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if (code.IsNull()) {
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if (func.HasCode() || (compile_mode_ == kForceCompile)) {
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const Error& err =
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Error::Handle(Compiler::EnsureUnoptimizedCode(thread(), func));
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if (!err.IsNull()) {
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// Emit an uncompiled range for this function with error information.
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JSONObject range(jsarr);
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range.AddProperty("scriptIndex", GetScriptIndex(script));
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range.AddProperty("startPos", begin_pos);
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range.AddProperty("endPos", end_pos);
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range.AddProperty("compiled", false);
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range.AddProperty("error", err);
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return;
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}
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code = func.unoptimized_code();
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} else {
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// This function has not been compiled yet.
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JSONObject range(jsarr);
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range.AddProperty("scriptIndex", GetScriptIndex(script));
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range.AddProperty("startPos", begin_pos);
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range.AddProperty("endPos", end_pos);
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range.AddProperty("compiled", false);
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return;
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}
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}
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ASSERT(!code.IsNull());
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// We skip compiled async functions. Once an async function has
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// been compiled, there is another function with the same range which
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// actually contains the user code.
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if (!func.IsAsyncFunction() && !func.IsAsyncGenerator() &&
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!func.IsSyncGenerator()) {
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JSONObject range(jsarr);
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range.AddProperty("scriptIndex", GetScriptIndex(script));
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range.AddProperty("startPos", begin_pos);
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range.AddProperty("endPos", end_pos);
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range.AddProperty("compiled", true);
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if (IsReportRequested(kCallSites)) {
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PrintCallSitesData(&range, func, code);
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}
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if (IsReportRequested(kCoverage)) {
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PrintCoverageData(&range, func, code);
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}
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if (IsReportRequested(kPossibleBreakpoints)) {
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PrintPossibleBreakpointsData(&range, func, code);
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}
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if (IsReportRequested(kProfile)) {
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ProfileFunction* profile_function = profile_.FindFunction(func);
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if ((profile_function != NULL) &&
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(profile_function->NumSourcePositions() > 0)) {
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PrintProfileData(&range, profile_function);
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}
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}
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}
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}
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void SourceReport::VisitField(JSONArray* jsarr, const Field& field) {
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if (ShouldSkipField(field) || !field.HasInitializerFunction()) return;
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const Function& func = Function::Handle(field.InitializerFunction());
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VisitFunction(jsarr, func);
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}
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void SourceReport::VisitLibrary(JSONArray* jsarr, const Library& lib) {
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Class& cls = Class::Handle(zone());
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Array& functions = Array::Handle(zone());
|
|
Array& fields = Array::Handle(zone());
|
|
Function& func = Function::Handle(zone());
|
|
Field& field = Field::Handle(zone());
|
|
Script& script = Script::Handle(zone());
|
|
ClassDictionaryIterator it(lib, ClassDictionaryIterator::kIteratePrivate);
|
|
while (it.HasNext()) {
|
|
cls = it.GetNextClass();
|
|
if (!cls.is_finalized()) {
|
|
if (compile_mode_ == kForceCompile) {
|
|
Error& err = Error::Handle(cls.EnsureIsFinalized(thread()));
|
|
if (!err.IsNull()) {
|
|
// Emit an uncompiled range for this class with error information.
|
|
JSONObject range(jsarr);
|
|
script = cls.script();
|
|
range.AddProperty("scriptIndex", GetScriptIndex(script));
|
|
range.AddProperty("startPos", cls.token_pos());
|
|
range.AddProperty("endPos", cls.end_token_pos());
|
|
range.AddProperty("compiled", false);
|
|
range.AddProperty("error", err);
|
|
continue;
|
|
}
|
|
ASSERT(cls.is_finalized());
|
|
} else {
|
|
cls.EnsureDeclarationLoaded();
|
|
// Emit one range for the whole uncompiled class.
|
|
JSONObject range(jsarr);
|
|
script = cls.script();
|
|
range.AddProperty("scriptIndex", GetScriptIndex(script));
|
|
range.AddProperty("startPos", cls.token_pos());
|
|
range.AddProperty("endPos", cls.end_token_pos());
|
|
range.AddProperty("compiled", false);
|
|
continue;
|
|
}
|
|
}
|
|
|
|
functions = cls.current_functions();
|
|
for (int i = 0; i < functions.Length(); i++) {
|
|
func ^= functions.At(i);
|
|
// Skip getter functions of static const field.
|
|
if (func.kind() == UntaggedFunction::kImplicitStaticGetter) {
|
|
field ^= func.accessor_field();
|
|
if (field.is_const() && field.is_static()) {
|
|
continue;
|
|
}
|
|
}
|
|
VisitFunction(jsarr, func);
|
|
}
|
|
|
|
fields = cls.fields();
|
|
for (intptr_t i = 0; i < fields.Length(); i++) {
|
|
field ^= fields.At(i);
|
|
VisitField(jsarr, field);
|
|
}
|
|
}
|
|
}
|
|
|
|
void SourceReport::VisitClosures(JSONArray* jsarr) {
|
|
ClosureFunctionsCache::ForAllClosureFunctions([&](const Function& func) {
|
|
VisitFunction(jsarr, func);
|
|
return true; // Continue iteration.
|
|
});
|
|
}
|
|
|
|
void SourceReport::PrintJSON(JSONStream* js,
|
|
const Script& script,
|
|
TokenPosition start_pos,
|
|
TokenPosition end_pos) {
|
|
Init(Thread::Current(), &script, start_pos, end_pos);
|
|
|
|
JSONObject report(js);
|
|
report.AddProperty("type", "SourceReport");
|
|
{
|
|
JSONArray ranges(&report, "ranges");
|
|
|
|
const GrowableObjectArray& libs = GrowableObjectArray::Handle(
|
|
zone(), thread()->isolate_group()->object_store()->libraries());
|
|
|
|
// We only visit the libraries which actually load the specified script.
|
|
Library& lib = Library::Handle(zone());
|
|
for (int i = 0; i < libs.Length(); i++) {
|
|
lib ^= libs.At(i);
|
|
if (script.IsNull() || ScriptIsLoadedByLibrary(script, lib)) {
|
|
VisitLibrary(&ranges, lib);
|
|
}
|
|
}
|
|
|
|
// Visit all closures for this isolate.
|
|
VisitClosures(&ranges);
|
|
|
|
// Output constant coverage if coverage is requested.
|
|
if (IsReportRequested(kCoverage)) {
|
|
// Find all scripts. We need to go though all scripts because a script
|
|
// (even one we don't want) can add coverage to another library (i.e.
|
|
// potentially one we want).
|
|
DirectChainedHashMap<ScriptTableTrait> local_script_table;
|
|
GrowableArray<ScriptTableEntry*> local_script_table_entries;
|
|
CollectAllScripts(&local_script_table, &local_script_table_entries);
|
|
CollectConstConstructorCoverageFromScripts(&local_script_table_entries,
|
|
&ranges);
|
|
CleanupCollectedScripts(&local_script_table, &local_script_table_entries);
|
|
}
|
|
}
|
|
|
|
// Print the script table.
|
|
JSONArray scripts(&report, "scripts");
|
|
PrintScriptTable(&scripts);
|
|
}
|
|
|
|
void SourceReport::CollectAllScripts(
|
|
DirectChainedHashMap<ScriptTableTrait>* local_script_table,
|
|
GrowableArray<ScriptTableEntry*>* local_script_table_entries) {
|
|
ScriptTableEntry wrapper;
|
|
const GrowableObjectArray& libs = GrowableObjectArray::Handle(
|
|
zone(), thread()->isolate_group()->object_store()->libraries());
|
|
Library& lib = Library::Handle(zone());
|
|
Script& scriptRef = Script::Handle(zone());
|
|
for (int i = 0; i < libs.Length(); i++) {
|
|
lib ^= libs.At(i);
|
|
const Array& scripts = Array::Handle(zone(), lib.LoadedScripts());
|
|
for (intptr_t j = 0; j < scripts.Length(); j++) {
|
|
scriptRef ^= scripts.At(j);
|
|
const String& url = String::Handle(zone(), scriptRef.url());
|
|
wrapper.key = &url;
|
|
wrapper.script = &Script::Handle(zone(), scriptRef.ptr());
|
|
ScriptTableEntry* pair = local_script_table->LookupValue(&wrapper);
|
|
if (pair != NULL) {
|
|
// Existing one.
|
|
continue;
|
|
}
|
|
// New one. Insert.
|
|
ScriptTableEntry* tmp = new ScriptTableEntry();
|
|
tmp->key = &url;
|
|
tmp->index = next_script_index_++;
|
|
tmp->script = wrapper.script;
|
|
local_script_table_entries->Add(tmp);
|
|
local_script_table->Insert(tmp);
|
|
}
|
|
}
|
|
}
|
|
|
|
void SourceReport::CleanupCollectedScripts(
|
|
DirectChainedHashMap<ScriptTableTrait>* local_script_table,
|
|
GrowableArray<ScriptTableEntry*>* local_script_table_entries) {
|
|
for (intptr_t i = 0; i < local_script_table_entries->length(); i++) {
|
|
delete local_script_table_entries->operator[](i);
|
|
local_script_table_entries->operator[](i) = NULL;
|
|
}
|
|
local_script_table_entries->Clear();
|
|
local_script_table->Clear();
|
|
}
|
|
|
|
void SourceReport::CollectConstConstructorCoverageFromScripts(
|
|
GrowableArray<ScriptTableEntry*>* local_script_table_entries,
|
|
JSONArray* ranges) {
|
|
// Now output the wanted constant coverage.
|
|
for (intptr_t i = 0; i < local_script_table_entries->length(); i++) {
|
|
const Script* script = local_script_table_entries->At(i)->script;
|
|
|
|
// Whether we want *this* script or not we need to look at the constant
|
|
// constructor coverage. Any of those could be in a script we *do* want.
|
|
{
|
|
Script& scriptRef = Script::Handle(zone());
|
|
const Array& constructors =
|
|
Array::Handle(kernel::CollectConstConstructorCoverageFrom(*script));
|
|
intptr_t constructors_count = constructors.Length();
|
|
Function& constructor = Function::Handle(zone());
|
|
Code& code = Code::Handle(zone());
|
|
for (intptr_t i = 0; i < constructors_count; i++) {
|
|
constructor ^= constructors.At(i);
|
|
// Check if we want coverage for this constructor.
|
|
if (ShouldSkipFunction(constructor)) {
|
|
continue;
|
|
}
|
|
scriptRef ^= constructor.script();
|
|
code ^= constructor.unoptimized_code();
|
|
const TokenPosition begin_pos = constructor.token_pos();
|
|
const TokenPosition end_pos = constructor.end_token_pos();
|
|
JSONObject range(ranges);
|
|
range.AddProperty("scriptIndex", GetScriptIndex(scriptRef));
|
|
range.AddProperty("compiled",
|
|
!code.IsNull()); // Does this make a difference?
|
|
range.AddProperty("startPos", begin_pos);
|
|
range.AddProperty("endPos", end_pos);
|
|
|
|
JSONObject cov(&range, "coverage");
|
|
{
|
|
JSONArray hits(&cov, "hits");
|
|
hits.AddValue(GetTokenPosOrLine(scriptRef, begin_pos));
|
|
}
|
|
{
|
|
JSONArray misses(&cov, "misses");
|
|
// No misses
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
} // namespace dart
|
|
#endif // !defined(PRODUCT) && !defined(DART_PRECOMPILED_RUNTIME)
|