Files
sdk/runtime/vm/source_report.h
T
Liam Appelbe 011068f824 [ VM / Service ] Add reportLines flag to getSourceReport RPC
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>
2021-08-26 18:42:58 +00:00

148 lines
4.8 KiB
C++

// Copyright (c) 2015, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#ifndef RUNTIME_VM_SOURCE_REPORT_H_
#define RUNTIME_VM_SOURCE_REPORT_H_
#include "vm/globals.h"
#if !defined(PRODUCT) && !defined(DART_PRECOMPILED_RUNTIME)
#include "vm/allocation.h"
#include "vm/flags.h"
#include "vm/hash_map.h"
#include "vm/object.h"
#include "vm/profiler_service.h"
#include "vm/token_position.h"
namespace dart {
// A SourceReport object is used to generate reports about the program
// source code, with information associated with source token
// positions. There are multiple possible kinds of reports.
class SourceReport {
public:
enum ReportKind {
kCallSites = 0x1,
kCoverage = 0x2,
kPossibleBreakpoints = 0x4,
kProfile = 0x8,
};
static const char* kCallSitesStr;
static const char* kCoverageStr;
static const char* kPossibleBreakpointsStr;
static const char* kProfileStr;
enum CompileMode { kNoCompile, kForceCompile };
// report_set is a bitvector indicating which reports to generate
// (e.g. kCallSites | kCoverage).
explicit SourceReport(intptr_t report_set,
CompileMode compile = kNoCompile,
bool report_lines = false);
~SourceReport();
// Generate a source report for (some subrange of) a script.
//
// If script is null, then the report is generated for all scripts
// in the isolate.
void PrintJSON(JSONStream* js,
const Script& script,
TokenPosition start_pos = TokenPosition::kMinSource,
TokenPosition end_pos = TokenPosition::kMaxSource);
private:
void ClearScriptTable();
void Init(Thread* thread,
const Script* script,
TokenPosition start_pos,
TokenPosition end_pos);
Thread* thread() const { return thread_; }
Zone* zone() const { return thread_->zone(); }
Isolate* isolate() const { return thread_->isolate(); }
bool IsReportRequested(ReportKind report_kind);
bool ShouldSkipFunction(const Function& func);
bool ShouldSkipField(const Field& field);
intptr_t GetScriptIndex(const Script& script);
bool ScriptIsLoadedByLibrary(const Script& script, const Library& lib);
intptr_t GetTokenPosOrLine(const Script& script,
const TokenPosition& token_pos);
void PrintCallSitesData(JSONObject* jsobj,
const Function& func,
const Code& code);
void PrintCoverageData(JSONObject* jsobj,
const Function& func,
const Code& code);
void PrintPossibleBreakpointsData(JSONObject* jsobj,
const Function& func,
const Code& code);
void PrintProfileData(JSONObject* jsobj, ProfileFunction* profile_function);
#if defined(DEBUG)
void VerifyScriptTable();
#endif
void PrintScriptTable(JSONArray* jsarr);
void VisitFunction(JSONArray* jsarr, const Function& func);
void VisitField(JSONArray* jsarr, const Field& field);
void VisitLibrary(JSONArray* jsarr, const Library& lib);
void VisitClosures(JSONArray* jsarr);
// An entry in the script table.
struct ScriptTableEntry {
ScriptTableEntry() : key(NULL), index(-1), script(NULL) {}
const String* key;
intptr_t index;
const Script* script;
};
// Needed for DirectChainedHashMap.
struct ScriptTableTrait {
typedef ScriptTableEntry* Value;
typedef const ScriptTableEntry* Key;
typedef ScriptTableEntry* Pair;
static Key KeyOf(Pair kv) { return kv; }
static Value ValueOf(Pair kv) { return kv; }
static inline uword Hash(Key key) { return key->key->Hash(); }
static inline bool IsKeyEqual(Pair kv, Key key) {
return kv->script->ptr() == key->script->ptr();
}
};
void CollectAllScripts(
DirectChainedHashMap<ScriptTableTrait>* local_script_table,
GrowableArray<ScriptTableEntry*>* local_script_table_entries);
void CleanupCollectedScripts(
DirectChainedHashMap<ScriptTableTrait>* local_script_table,
GrowableArray<ScriptTableEntry*>* local_script_table_entries);
void CollectConstConstructorCoverageFromScripts(
GrowableArray<ScriptTableEntry*>* local_script_table_entries,
JSONArray* ranges);
intptr_t report_set_;
CompileMode compile_mode_;
bool report_lines_;
Thread* thread_;
const Script* script_;
TokenPosition start_pos_;
TokenPosition end_pos_;
Profile profile_;
GrowableArray<ScriptTableEntry*> script_table_entries_;
DirectChainedHashMap<ScriptTableTrait> script_table_;
intptr_t next_script_index_;
};
} // namespace dart
#endif // !defined(PRODUCT) && !defined(DART_PRECOMPILED_RUNTIME)
#endif // RUNTIME_VM_SOURCE_REPORT_H_