* Copyright 2013 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/SkTypes.h"
#ifdef SK_ENABLE_ANDROID_UTILS
#include "client_utils/android/FrontBufferedStream.h"
#include "include/codec/SkCodec.h"
#include "include/core/SkBitmap.h"
#include "include/core/SkRefCnt.h"
#include "include/core/SkStream.h"
#include "src/base/SkAutoMalloc.h"
#include "tests/Test.h"
static void test_read(skiatest::Reporter* reporter, SkStream* bufferedStream,
const void* expectations, size_t bytesToRead) {
SkAutoMalloc storage(bytesToRead);
const size_t bytesRead = bufferedStream->read(storage.get(), bytesToRead);
REPORTER_ASSERT(reporter, bytesRead == bytesToRead || bufferedStream->isAtEnd());
REPORTER_ASSERT(reporter, memcmp(storage.get(), expectations, bytesRead) == 0);
}
static void test_rewind(skiatest::Reporter* reporter,
SkStream* bufferedStream, bool shouldSucceed) {
const bool success = bufferedStream->rewind();
REPORTER_ASSERT(reporter, success == shouldSucceed);
}
static void test_hasLength(skiatest::Reporter* reporter,
const SkStream& bufferedStream,
const SkStream& streamBeingBuffered) {
if (streamBeingBuffered.hasLength() && streamBeingBuffered.hasPosition()) {
REPORTER_ASSERT(reporter, bufferedStream.hasLength());
} else {
REPORTER_ASSERT(reporter, !bufferedStream.hasLength());
}
}
const char gAbcs[] = "abcdefghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwx";
static void test_incremental_buffering(skiatest::Reporter* reporter, size_t bufferSize) {
SkMemoryStream* memStream = SkMemoryStream::MakeDirect(gAbcs, strlen(gAbcs)).release();
auto bufferedStream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(memStream), bufferSize);
test_hasLength(reporter, *bufferedStream, *memStream);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize / 2);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize / 4);
test_read(reporter, bufferedStream.get(), gAbcs + bufferSize / 4, bufferSize / 2);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize << 1);
test_rewind(reporter, bufferedStream.get(), false);
}
static void test_perfectly_sized_buffer(skiatest::Reporter* reporter, size_t bufferSize) {
SkMemoryStream* memStream = SkMemoryStream::MakeDirect(gAbcs, strlen(gAbcs)).release();
auto bufferedStream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(memStream), bufferSize);
test_hasLength(reporter, *bufferedStream, *memStream);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize);
test_read(reporter, bufferedStream.get(), gAbcs + memStream->getPosition(), 1);
test_rewind(reporter, bufferedStream.get(), false);
}
static void test_skipping(skiatest::Reporter* reporter, size_t bufferSize) {
SkMemoryStream* memStream = SkMemoryStream::MakeDirect(gAbcs, strlen(gAbcs)).release();
auto bufferedStream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(memStream), bufferSize);
test_hasLength(reporter, *bufferedStream, *memStream);
bufferedStream->skip(bufferSize / 2);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize / 4);
bufferedStream->skip(bufferSize / 2);
test_read(reporter, bufferedStream.get(), gAbcs + memStream->getPosition(), bufferSize / 4);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize);
}
class AndroidLikeMemoryStream : public SkMemoryStream {
public:
AndroidLikeMemoryStream(void* data, size_t size, bool ownMemory)
: INHERITED(data, size, ownMemory)
, fIsAtEnd(false) {}
size_t read(void* dst, size_t requested) override {
size_t bytesRead = this->INHERITED::read(dst, requested);
if (bytesRead < requested) {
fIsAtEnd = true;
}
return bytesRead;
}
bool isAtEnd() const override {
return fIsAtEnd;
}
private:
bool fIsAtEnd;
using INHERITED = SkMemoryStream;
};
static void test_read_beyond_buffer(skiatest::Reporter* reporter, size_t bufferSize) {
AndroidLikeMemoryStream* memStream =
new AndroidLikeMemoryStream((void*)gAbcs, bufferSize, false);
auto bufferedStream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(memStream), bufferSize);
test_hasLength(reporter, *bufferedStream, *memStream);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize + 1);
test_rewind(reporter, bufferedStream.get(), true);
test_read(reporter, bufferedStream.get(), gAbcs, bufferSize);
}
class LengthOptionalStream : public SkStream {
public:
LengthOptionalStream(bool hasLength, bool hasPosition)
: fHasLength(hasLength)
, fHasPosition(hasPosition)
{}
bool hasLength() const override {
return fHasLength;
}
bool hasPosition() const override {
return fHasPosition;
}
size_t read(void*, size_t) override {
return 0;
}
bool isAtEnd() const override {
return true;
}
private:
const bool fHasLength;
const bool fHasPosition;
};
static void test_length_combos(skiatest::Reporter* reporter, size_t bufferSize) {
for (int hasLen = 0; hasLen <= 1; hasLen++) {
for (int hasPos = 0; hasPos <= 1; hasPos++) {
LengthOptionalStream* stream =
new LengthOptionalStream(SkToBool(hasLen), SkToBool(hasPos));
auto buffered = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(stream), bufferSize);
test_hasLength(reporter, *buffered, *stream);
}
}
}
static void test_initial_offset(skiatest::Reporter* reporter, size_t bufferSize) {
SkMemoryStream* memStream = new SkMemoryStream(gAbcs, strlen(gAbcs), false);
const size_t arbitraryOffset = 17;
memStream->skip(arbitraryOffset);
auto bufferedStream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(memStream), bufferSize);
REPORTER_ASSERT(reporter, bufferedStream->hasLength());
const size_t amountToRead = 10;
const size_t bufferedLength = bufferedStream->getLength();
size_t currentPosition = 0;
while (currentPosition < bufferedLength) {
REPORTER_ASSERT(reporter, !bufferedStream->isAtEnd());
test_read(reporter, bufferedStream.get(), gAbcs + arbitraryOffset + currentPosition,
amountToRead);
currentPosition = std::min(currentPosition + amountToRead, bufferedLength);
REPORTER_ASSERT(reporter, memStream->getPosition() - arbitraryOffset == currentPosition);
}
REPORTER_ASSERT(reporter, bufferedStream->isAtEnd());
REPORTER_ASSERT(reporter, bufferedLength == currentPosition);
}
static void test_buffers(skiatest::Reporter* reporter, size_t bufferSize) {
test_incremental_buffering(reporter, bufferSize);
test_perfectly_sized_buffer(reporter, bufferSize);
test_skipping(reporter, bufferSize);
test_read_beyond_buffer(reporter, bufferSize);
test_length_combos(reporter, bufferSize);
test_initial_offset(reporter, bufferSize);
}
DEF_TEST(FrontBufferedStream, reporter) {
test_buffers(reporter, 6);
test_buffers(reporter, 15);
test_buffers(reporter, 64);
}
class FailingStream : public SkStream {
public:
FailingStream()
: fAtEnd(false)
{}
size_t read(void* buffer, size_t size) override {
SkASSERT(!fAtEnd);
fAtEnd = true;
return 0;
}
bool isAtEnd() const override {
return fAtEnd;
}
private:
bool fAtEnd;
};
DEF_TEST(ShortFrontBufferedStream, reporter) {
FailingStream* failingStream = new FailingStream;
auto stream = android::skia::FrontBufferedStream::Make(
std::unique_ptr<SkStream>(failingStream), 64);
std::unique_ptr<SkCodec> codec(SkCodec::MakeFromStream(std::move(stream)));
}
#endif