* Copyright 2017 Google Inc.
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#include "include/core/SkImageInfo.h"
#include "include/core/SkPoint.h"
#include "include/core/SkRect.h"
#include "src/core/SkLeanWindows.h"
#include "src/core/SkTraceEvent.h"
#include "tests/Test.h"
#include "tools/flags/CommandLineFlags.h"
static DEFINE_bool(slowTracingTest, false,
"Artificially slow down tracing test to produce nicer JSON");
namespace {
* Helper types for demonstrating usage of TRACE_EVENT_OBJECT_XXX macros.
*/
struct TracingShape {
TracingShape() {
TRACE_EVENT_OBJECT_CREATED_WITH_ID("skia.objects", this->typeName(), this);
}
virtual ~TracingShape() {
TRACE_EVENT_OBJECT_DELETED_WITH_ID("skia.objects", this->typeName(), this);
}
void traceSnapshot() {
TRACE_EVENT_OBJECT_SNAPSHOT_WITH_ID("skia.objects", this->typeName(), this,
TRACE_STR_COPY(this->toString().c_str()));
}
virtual const char* typeName() { return "TracingShape"; }
virtual SkString toString() { return SkString("Shape()"); }
};
struct TracingCircle : public TracingShape {
TracingCircle(SkPoint center, SkScalar radius) : fCenter(center), fRadius(radius) {}
const char* typeName() override { return "TracingCircle"; }
SkString toString() override {
return SkStringPrintf("Circle(%f, %f, %f)", fCenter.fX, fCenter.fY, fRadius);
}
SkPoint fCenter;
SkScalar fRadius;
};
struct TracingRect : public TracingShape {
TracingRect(SkRect rect) : fRect(rect) {}
const char* typeName() override { return "TracingRect"; }
SkString toString() override {
return SkStringPrintf("Rect(%f, %f, %f, %f)",
fRect.fLeft, fRect.fTop, fRect.fRight, fRect.fBottom);
}
SkRect fRect;
};
}
static SkScalar gTracingTestWorkSink = 1.0f;
static void do_work(int howMuchWork) {
if (FLAGS_slowTracingTest) {
for (int i = 0; i < howMuchWork * 100; ++i) {
gTracingTestWorkSink += SkScalarSin(i);
}
}
}
static void test_trace_simple() {
TRACE_EVENT0("skia", TRACE_FUNC);
{
TRACE_EVENT1("skia", "Nested work",
"isBGRA", kN32_SkColorType == kBGRA_8888_SkColorType);
do_work(500);
}
{
SkString message = SkStringPrintf("%s %s", "Hello", "World");
TRACE_EVENT1("skia", "Dynamic String", "message", TRACE_STR_COPY(message.c_str()));
do_work(500);
}
}
static void test_trace_counters() {
TRACE_EVENT0("skia", TRACE_FUNC);
{
TRACE_EVENT0("skia", "Single Counter");
for (int i = 0; i < 180; ++i) {
SkScalar rad = SkDegreesToRadians(SkIntToScalar(i));
TRACE_COUNTER1("skia", "sin", SkScalarSin(rad) * 1000.0f + 1000.0f);
do_work(10);
}
}
{
TRACE_EVENT0("skia", "Independent Counters");
for (int i = 0; i < 180; ++i) {
SkScalar rad = SkDegreesToRadians(SkIntToScalar(i));
TRACE_COUNTER1("skia", "sin", SkScalarSin(rad) * 1000.0f + 1000.0f);
TRACE_COUNTER1("skia", "cos", SkScalarCos(rad) * 1000.0f + 1000.0f);
do_work(10);
}
}
{
TRACE_EVENT0("skia", "Stacked Counters");
for (int i = 0; i < 180; ++i) {
SkScalar rad = SkDegreesToRadians(SkIntToScalar(i));
TRACE_COUNTER2("skia", "trig",
"sin", SkScalarSin(rad) * 1000.0f + 1000.0f,
"cos", SkScalarCos(rad) * 1000.0f + 1000.0f);
do_work(10);
}
}
}
static void test_trace_objects() {
TRACE_EVENT0("skia", TRACE_FUNC);
TracingCircle* circle = new TracingCircle(SkPoint::Make(20, 20), 15);
circle->traceSnapshot();
do_work(100);
TracingRect* rect = new TracingRect(SkRect::MakeWH(100, 50));
rect->traceSnapshot();
do_work(100);
circle->fCenter.offset(10, 10);
circle->traceSnapshot();
{
TRACE_EVENT1("skia", "Processing Shape", "#shape", circle);
do_work(100);
}
delete circle;
delete rect;
}
DEF_TEST(Tracing, reporter) {
test_trace_simple();
test_trace_counters();
test_trace_objects();
}