xref: /third_party/skia/tests/StreamTest.cpp (revision cb93a386)
1cb93a386Sopenharmony_ci/*
2cb93a386Sopenharmony_ci * Copyright 2011 Google Inc.
3cb93a386Sopenharmony_ci *
4cb93a386Sopenharmony_ci * Use of this source code is governed by a BSD-style license that can be
5cb93a386Sopenharmony_ci * found in the LICENSE file.
6cb93a386Sopenharmony_ci */
7cb93a386Sopenharmony_ci
8cb93a386Sopenharmony_ci// Make sure SkUserConfig.h is included so #defines are available on
9cb93a386Sopenharmony_ci// Android.
10cb93a386Sopenharmony_ci#include "include/core/SkTypes.h"
11cb93a386Sopenharmony_ci#ifdef SK_ENABLE_ANDROID_UTILS
12cb93a386Sopenharmony_ci#include "client_utils/android/FrontBufferedStream.h"
13cb93a386Sopenharmony_ci#endif
14cb93a386Sopenharmony_ci#include "include/core/SkData.h"
15cb93a386Sopenharmony_ci#include "include/core/SkStream.h"
16cb93a386Sopenharmony_ci#include "include/private/SkTo.h"
17cb93a386Sopenharmony_ci#include "include/utils/SkRandom.h"
18cb93a386Sopenharmony_ci#include "src/core/SkAutoMalloc.h"
19cb93a386Sopenharmony_ci#include "src/core/SkOSFile.h"
20cb93a386Sopenharmony_ci#include "src/core/SkStreamPriv.h"
21cb93a386Sopenharmony_ci#include "src/utils/SkOSPath.h"
22cb93a386Sopenharmony_ci#include "tests/Test.h"
23cb93a386Sopenharmony_ci#include "tools/Resources.h"
24cb93a386Sopenharmony_ci
25cb93a386Sopenharmony_ci#include <functional>
26cb93a386Sopenharmony_ci#include <limits>
27cb93a386Sopenharmony_ci
28cb93a386Sopenharmony_ci#ifndef SK_BUILD_FOR_WIN
29cb93a386Sopenharmony_ci#include <unistd.h>
30cb93a386Sopenharmony_ci#include <fcntl.h>
31cb93a386Sopenharmony_ci#endif
32cb93a386Sopenharmony_ci
33cb93a386Sopenharmony_ci#define MAX_SIZE    (256 * 1024)
34cb93a386Sopenharmony_ci
35cb93a386Sopenharmony_cistatic void test_loop_stream(skiatest::Reporter* reporter, SkStream* stream,
36cb93a386Sopenharmony_ci                             const void* src, size_t len, int repeat) {
37cb93a386Sopenharmony_ci    SkAutoSMalloc<256> storage(len);
38cb93a386Sopenharmony_ci    void* tmp = storage.get();
39cb93a386Sopenharmony_ci
40cb93a386Sopenharmony_ci    for (int i = 0; i < repeat; ++i) {
41cb93a386Sopenharmony_ci        size_t bytes = stream->read(tmp, len);
42cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, bytes == len);
43cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, !memcmp(tmp, src, len));
44cb93a386Sopenharmony_ci    }
45cb93a386Sopenharmony_ci
46cb93a386Sopenharmony_ci    // expect EOF
47cb93a386Sopenharmony_ci    size_t bytes = stream->read(tmp, 1);
48cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, 0 == bytes);
49cb93a386Sopenharmony_ci    // isAtEnd might not return true until after the first failing read.
50cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, stream->isAtEnd());
51cb93a386Sopenharmony_ci}
52cb93a386Sopenharmony_ci
53cb93a386Sopenharmony_cistatic void test_filestreams(skiatest::Reporter* reporter, const char* tmpDir) {
54cb93a386Sopenharmony_ci    SkString path = SkOSPath::Join(tmpDir, "wstream_test");
55cb93a386Sopenharmony_ci
56cb93a386Sopenharmony_ci    const char s[] = "abcdefghijklmnopqrstuvwxyz";
57cb93a386Sopenharmony_ci
58cb93a386Sopenharmony_ci    {
59cb93a386Sopenharmony_ci        SkFILEWStream writer(path.c_str());
60cb93a386Sopenharmony_ci        if (!writer.isValid()) {
61cb93a386Sopenharmony_ci            ERRORF(reporter, "Failed to create tmp file %s\n", path.c_str());
62cb93a386Sopenharmony_ci            return;
63cb93a386Sopenharmony_ci        }
64cb93a386Sopenharmony_ci
65cb93a386Sopenharmony_ci        for (int i = 0; i < 100; ++i) {
66cb93a386Sopenharmony_ci            writer.write(s, 26);
67cb93a386Sopenharmony_ci        }
68cb93a386Sopenharmony_ci    }
69cb93a386Sopenharmony_ci
70cb93a386Sopenharmony_ci    {
71cb93a386Sopenharmony_ci        SkFILEStream stream(path.c_str());
72cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, stream.isValid());
73cb93a386Sopenharmony_ci        test_loop_stream(reporter, &stream, s, 26, 100);
74cb93a386Sopenharmony_ci
75cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream2(stream.duplicate());
76cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream2.get(), s, 26, 100);
77cb93a386Sopenharmony_ci    }
78cb93a386Sopenharmony_ci
79cb93a386Sopenharmony_ci    {
80cb93a386Sopenharmony_ci        FILE* file = ::fopen(path.c_str(), "rb");
81cb93a386Sopenharmony_ci        SkFILEStream stream(file);
82cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, stream.isValid());
83cb93a386Sopenharmony_ci        test_loop_stream(reporter, &stream, s, 26, 100);
84cb93a386Sopenharmony_ci
85cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream2(stream.duplicate());
86cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream2.get(), s, 26, 100);
87cb93a386Sopenharmony_ci    }
88cb93a386Sopenharmony_ci}
89cb93a386Sopenharmony_ci
90cb93a386Sopenharmony_cistatic void TestWStream(skiatest::Reporter* reporter) {
91cb93a386Sopenharmony_ci    SkDynamicMemoryWStream  ds;
92cb93a386Sopenharmony_ci    const char s[] = "abcdefghijklmnopqrstuvwxyz";
93cb93a386Sopenharmony_ci    int i;
94cb93a386Sopenharmony_ci    for (i = 0; i < 100; i++) {
95cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, ds.write(s, 26));
96cb93a386Sopenharmony_ci    }
97cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, ds.bytesWritten() == 100 * 26);
98cb93a386Sopenharmony_ci
99cb93a386Sopenharmony_ci    char* dst = new char[100 * 26 + 1];
100cb93a386Sopenharmony_ci    dst[100*26] = '*';
101cb93a386Sopenharmony_ci    ds.copyTo(dst);
102cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, dst[100*26] == '*');
103cb93a386Sopenharmony_ci    for (i = 0; i < 100; i++) {
104cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, memcmp(&dst[i * 26], s, 26) == 0);
105cb93a386Sopenharmony_ci    }
106cb93a386Sopenharmony_ci
107cb93a386Sopenharmony_ci    {
108cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream(ds.detachAsStream());
109cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, 100 * 26 == stream->getLength());
110cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, ds.bytesWritten() == 0);
111cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream.get(), s, 26, 100);
112cb93a386Sopenharmony_ci
113cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream2(stream->duplicate());
114cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream2.get(), s, 26, 100);
115cb93a386Sopenharmony_ci
116cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream3(stream->fork());
117cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, stream3->isAtEnd());
118cb93a386Sopenharmony_ci        char tmp;
119cb93a386Sopenharmony_ci        size_t bytes = stream->read(&tmp, 1);
120cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, 0 == bytes);
121cb93a386Sopenharmony_ci        stream3->rewind();
122cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream3.get(), s, 26, 100);
123cb93a386Sopenharmony_ci    }
124cb93a386Sopenharmony_ci
125cb93a386Sopenharmony_ci    for (i = 0; i < 100; i++) {
126cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, ds.write(s, 26));
127cb93a386Sopenharmony_ci    }
128cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, ds.bytesWritten() == 100 * 26);
129cb93a386Sopenharmony_ci
130cb93a386Sopenharmony_ci    {
131cb93a386Sopenharmony_ci        // Test that this works after a snapshot.
132cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream(ds.detachAsStream());
133cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, ds.bytesWritten() == 0);
134cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream.get(), s, 26, 100);
135cb93a386Sopenharmony_ci
136cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> stream2(stream->duplicate());
137cb93a386Sopenharmony_ci        test_loop_stream(reporter, stream2.get(), s, 26, 100);
138cb93a386Sopenharmony_ci    }
139cb93a386Sopenharmony_ci    delete[] dst;
140cb93a386Sopenharmony_ci
141cb93a386Sopenharmony_ci    SkString tmpDir = skiatest::GetTmpDir();
142cb93a386Sopenharmony_ci    if (!tmpDir.isEmpty()) {
143cb93a386Sopenharmony_ci        test_filestreams(reporter, tmpDir.c_str());
144cb93a386Sopenharmony_ci    }
145cb93a386Sopenharmony_ci}
146cb93a386Sopenharmony_ci
147cb93a386Sopenharmony_cistatic void TestPackedUInt(skiatest::Reporter* reporter) {
148cb93a386Sopenharmony_ci    // we know that packeduint tries to write 1, 2 or 4 bytes for the length,
149cb93a386Sopenharmony_ci    // so we test values around each of those transitions (and a few others)
150cb93a386Sopenharmony_ci    const size_t sizes[] = {
151cb93a386Sopenharmony_ci        0, 1, 2, 0xFC, 0xFD, 0xFE, 0xFF, 0x100, 0x101, 32767, 32768, 32769,
152cb93a386Sopenharmony_ci        0xFFFD, 0xFFFE, 0xFFFF, 0x10000, 0x10001,
153cb93a386Sopenharmony_ci        0xFFFFFD, 0xFFFFFE, 0xFFFFFF, 0x1000000, 0x1000001,
154cb93a386Sopenharmony_ci        0x7FFFFFFE, 0x7FFFFFFF, 0x80000000, 0x80000001, 0xFFFFFFFE, 0xFFFFFFFF
155cb93a386Sopenharmony_ci    };
156cb93a386Sopenharmony_ci
157cb93a386Sopenharmony_ci
158cb93a386Sopenharmony_ci    size_t i;
159cb93a386Sopenharmony_ci    SkDynamicMemoryWStream wstream;
160cb93a386Sopenharmony_ci
161cb93a386Sopenharmony_ci    for (i = 0; i < SK_ARRAY_COUNT(sizes); ++i) {
162cb93a386Sopenharmony_ci        bool success = wstream.writePackedUInt(sizes[i]);
163cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, success);
164cb93a386Sopenharmony_ci    }
165cb93a386Sopenharmony_ci
166cb93a386Sopenharmony_ci    std::unique_ptr<SkStreamAsset> rstream(wstream.detachAsStream());
167cb93a386Sopenharmony_ci    for (i = 0; i < SK_ARRAY_COUNT(sizes); ++i) {
168cb93a386Sopenharmony_ci        size_t n;
169cb93a386Sopenharmony_ci        if (!rstream->readPackedUInt(&n)) {
170cb93a386Sopenharmony_ci            ERRORF(reporter, "[%zu] sizes:%zx could not be read\n", i, sizes[i]);
171cb93a386Sopenharmony_ci        }
172cb93a386Sopenharmony_ci        if (sizes[i] != n) {
173cb93a386Sopenharmony_ci            ERRORF(reporter, "[%zu] sizes:%zx != n:%zx\n", i, sizes[i], n);
174cb93a386Sopenharmony_ci        }
175cb93a386Sopenharmony_ci    }
176cb93a386Sopenharmony_ci}
177cb93a386Sopenharmony_ci
178cb93a386Sopenharmony_ci// Test that setting an SkMemoryStream to a nullptr data does not result in a crash when calling
179cb93a386Sopenharmony_ci// methods that access fData.
180cb93a386Sopenharmony_cistatic void TestDereferencingData(SkMemoryStream* memStream) {
181cb93a386Sopenharmony_ci    memStream->read(nullptr, 0);
182cb93a386Sopenharmony_ci    memStream->getMemoryBase();
183cb93a386Sopenharmony_ci    (void)memStream->asData();
184cb93a386Sopenharmony_ci}
185cb93a386Sopenharmony_ci
186cb93a386Sopenharmony_cistatic void TestNullData() {
187cb93a386Sopenharmony_ci    SkMemoryStream memStream(nullptr);
188cb93a386Sopenharmony_ci    TestDereferencingData(&memStream);
189cb93a386Sopenharmony_ci
190cb93a386Sopenharmony_ci    memStream.setData(nullptr);
191cb93a386Sopenharmony_ci    TestDereferencingData(&memStream);
192cb93a386Sopenharmony_ci
193cb93a386Sopenharmony_ci}
194cb93a386Sopenharmony_ci
195cb93a386Sopenharmony_ciDEF_TEST(Stream, reporter) {
196cb93a386Sopenharmony_ci    TestWStream(reporter);
197cb93a386Sopenharmony_ci    TestPackedUInt(reporter);
198cb93a386Sopenharmony_ci    TestNullData();
199cb93a386Sopenharmony_ci}
200cb93a386Sopenharmony_ci
201cb93a386Sopenharmony_ci#ifndef SK_BUILD_FOR_IOS
202cb93a386Sopenharmony_ci/**
203cb93a386Sopenharmony_ci *  Tests peeking and then reading the same amount. The two should provide the
204cb93a386Sopenharmony_ci *  same results.
205cb93a386Sopenharmony_ci *  Returns the amount successfully read minus the amount successfully peeked.
206cb93a386Sopenharmony_ci */
207cb93a386Sopenharmony_cistatic size_t compare_peek_to_read(skiatest::Reporter* reporter,
208cb93a386Sopenharmony_ci                                   SkStream* stream, size_t bytesToPeek) {
209cb93a386Sopenharmony_ci    // The rest of our tests won't be very interesting if bytesToPeek is zero.
210cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, bytesToPeek > 0);
211cb93a386Sopenharmony_ci    SkAutoMalloc peekStorage(bytesToPeek);
212cb93a386Sopenharmony_ci    SkAutoMalloc readStorage(bytesToPeek);
213cb93a386Sopenharmony_ci    void* peekPtr = peekStorage.get();
214cb93a386Sopenharmony_ci    void* readPtr = peekStorage.get();
215cb93a386Sopenharmony_ci
216cb93a386Sopenharmony_ci    const size_t bytesPeeked = stream->peek(peekPtr, bytesToPeek);
217cb93a386Sopenharmony_ci    const size_t bytesRead = stream->read(readPtr, bytesToPeek);
218cb93a386Sopenharmony_ci
219cb93a386Sopenharmony_ci    // bytesRead should only be less than attempted if the stream is at the
220cb93a386Sopenharmony_ci    // end.
221cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, bytesRead == bytesToPeek || stream->isAtEnd());
222cb93a386Sopenharmony_ci
223cb93a386Sopenharmony_ci    // peek and read should behave the same, except peek returned to the
224cb93a386Sopenharmony_ci    // original position, so they read the same data.
225cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, !memcmp(peekPtr, readPtr, bytesPeeked));
226cb93a386Sopenharmony_ci
227cb93a386Sopenharmony_ci    // A stream should never be able to peek more than it can read.
228cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, bytesRead >= bytesPeeked);
229cb93a386Sopenharmony_ci
230cb93a386Sopenharmony_ci    return bytesRead - bytesPeeked;
231cb93a386Sopenharmony_ci}
232cb93a386Sopenharmony_ci
233cb93a386Sopenharmony_cistatic void test_fully_peekable_stream(skiatest::Reporter* r, SkStream* stream, size_t limit) {
234cb93a386Sopenharmony_ci    for (size_t i = 1; !stream->isAtEnd(); i++) {
235cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, compare_peek_to_read(r, stream, i) == 0);
236cb93a386Sopenharmony_ci    }
237cb93a386Sopenharmony_ci}
238cb93a386Sopenharmony_ci
239cb93a386Sopenharmony_ci#ifdef SK_ENABLE_ANDROID_UTILS
240cb93a386Sopenharmony_cistatic void test_peeking_front_buffered_stream(skiatest::Reporter* r,
241cb93a386Sopenharmony_ci                                               const SkStream& original,
242cb93a386Sopenharmony_ci                                               size_t bufferSize) {
243cb93a386Sopenharmony_ci    std::unique_ptr<SkStream> dupe(original.duplicate());
244cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, dupe != nullptr);
245cb93a386Sopenharmony_ci    auto bufferedStream = android::skia::FrontBufferedStream::Make(
246cb93a386Sopenharmony_ci            std::move(dupe), bufferSize);
247cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, bufferedStream != nullptr);
248cb93a386Sopenharmony_ci
249cb93a386Sopenharmony_ci    size_t peeked = 0;
250cb93a386Sopenharmony_ci    for (size_t i = 1; !bufferedStream->isAtEnd(); i++) {
251cb93a386Sopenharmony_ci        const size_t unpeekableBytes = compare_peek_to_read(r, bufferedStream.get(), i);
252cb93a386Sopenharmony_ci        if (unpeekableBytes > 0) {
253cb93a386Sopenharmony_ci            // This could not have returned a number greater than i.
254cb93a386Sopenharmony_ci            REPORTER_ASSERT(r, unpeekableBytes <= i);
255cb93a386Sopenharmony_ci
256cb93a386Sopenharmony_ci            // We have reached the end of the buffer. Verify that it was at least
257cb93a386Sopenharmony_ci            // bufferSize.
258cb93a386Sopenharmony_ci            REPORTER_ASSERT(r, peeked + i - unpeekableBytes >= bufferSize);
259cb93a386Sopenharmony_ci            // No more peeking is supported.
260cb93a386Sopenharmony_ci            break;
261cb93a386Sopenharmony_ci        }
262cb93a386Sopenharmony_ci        peeked += i;
263cb93a386Sopenharmony_ci    }
264cb93a386Sopenharmony_ci
265cb93a386Sopenharmony_ci    // Test that attempting to peek beyond the length of the buffer does not prevent rewinding.
266cb93a386Sopenharmony_ci    bufferedStream = android::skia::FrontBufferedStream::Make(original.duplicate(), bufferSize);
267cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, bufferedStream != nullptr);
268cb93a386Sopenharmony_ci
269cb93a386Sopenharmony_ci    const size_t bytesToPeek = bufferSize + 1;
270cb93a386Sopenharmony_ci    SkAutoMalloc peekStorage(bytesToPeek);
271cb93a386Sopenharmony_ci    SkAutoMalloc readStorage(bytesToPeek);
272cb93a386Sopenharmony_ci
273cb93a386Sopenharmony_ci    for (size_t start = 0; start <= bufferSize; start++) {
274cb93a386Sopenharmony_ci        // Skip to the starting point
275cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, bufferedStream->skip(start) == start);
276cb93a386Sopenharmony_ci
277cb93a386Sopenharmony_ci        const size_t bytesPeeked = bufferedStream->peek(peekStorage.get(), bytesToPeek);
278cb93a386Sopenharmony_ci        if (0 == bytesPeeked) {
279cb93a386Sopenharmony_ci            // Peeking should only fail completely if we have read/skipped beyond the buffer.
280cb93a386Sopenharmony_ci            REPORTER_ASSERT(r, start >= bufferSize);
281cb93a386Sopenharmony_ci            break;
282cb93a386Sopenharmony_ci        }
283cb93a386Sopenharmony_ci
284cb93a386Sopenharmony_ci        // Only read the amount that was successfully peeked.
285cb93a386Sopenharmony_ci        const size_t bytesRead = bufferedStream->read(readStorage.get(), bytesPeeked);
286cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, bytesRead == bytesPeeked);
287cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(peekStorage.get(), readStorage.get(), bytesPeeked));
288cb93a386Sopenharmony_ci
289cb93a386Sopenharmony_ci        // This should be safe to rewind.
290cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, bufferedStream->rewind());
291cb93a386Sopenharmony_ci    }
292cb93a386Sopenharmony_ci}
293cb93a386Sopenharmony_ci#endif
294cb93a386Sopenharmony_ci
295cb93a386Sopenharmony_ci// This test uses file system operations that don't work out of the
296cb93a386Sopenharmony_ci// box on iOS. It's likely that we don't need them on iOS. Ignoring for now.
297cb93a386Sopenharmony_ci// TODO(stephana): Re-evaluate if we need this in the future.
298cb93a386Sopenharmony_ciDEF_TEST(StreamPeek, reporter) {
299cb93a386Sopenharmony_ci    // Test a memory stream.
300cb93a386Sopenharmony_ci    const char gAbcs[] = "abcdefghijklmnopqrstuvwxyz";
301cb93a386Sopenharmony_ci    SkMemoryStream memStream(gAbcs, strlen(gAbcs), false);
302cb93a386Sopenharmony_ci    test_fully_peekable_stream(reporter, &memStream, memStream.getLength());
303cb93a386Sopenharmony_ci
304cb93a386Sopenharmony_ci    // Test an arbitrary file stream. file streams do not support peeking.
305cb93a386Sopenharmony_ci    auto tmpdir = skiatest::GetTmpDir();
306cb93a386Sopenharmony_ci    if (tmpdir.isEmpty()) {
307cb93a386Sopenharmony_ci        ERRORF(reporter, "no tmp dir!");
308cb93a386Sopenharmony_ci        return;
309cb93a386Sopenharmony_ci    }
310cb93a386Sopenharmony_ci    auto path = SkOSPath::Join(tmpdir.c_str(), "file");
311cb93a386Sopenharmony_ci    {
312cb93a386Sopenharmony_ci        SkFILEWStream wStream(path.c_str());
313cb93a386Sopenharmony_ci        constexpr char filename[] = "images/baby_tux.webp";
314cb93a386Sopenharmony_ci        auto data = GetResourceAsData(filename);
315cb93a386Sopenharmony_ci        if (!data || data->size() == 0) {
316cb93a386Sopenharmony_ci            ERRORF(reporter, "resource missing: %s\n", filename);
317cb93a386Sopenharmony_ci            return;
318cb93a386Sopenharmony_ci        }
319cb93a386Sopenharmony_ci        if (!wStream.isValid() || !wStream.write(data->data(), data->size())) {
320cb93a386Sopenharmony_ci            ERRORF(reporter, "error wrtiting to file %s", path.c_str());
321cb93a386Sopenharmony_ci            return;
322cb93a386Sopenharmony_ci        }
323cb93a386Sopenharmony_ci    }
324cb93a386Sopenharmony_ci    SkFILEStream fileStream(path.c_str());
325cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, fileStream.isValid());
326cb93a386Sopenharmony_ci    if (!fileStream.isValid()) {
327cb93a386Sopenharmony_ci        return;
328cb93a386Sopenharmony_ci    }
329cb93a386Sopenharmony_ci    SkAutoMalloc storage(fileStream.getLength());
330cb93a386Sopenharmony_ci    for (size_t i = 1; i < fileStream.getLength(); i++) {
331cb93a386Sopenharmony_ci        REPORTER_ASSERT(reporter, fileStream.peek(storage.get(), i) == 0);
332cb93a386Sopenharmony_ci    }
333cb93a386Sopenharmony_ci
334cb93a386Sopenharmony_ci#ifdef SK_ENABLE_ANDROID_UTILS
335cb93a386Sopenharmony_ci    // Now test some FrontBufferedStreams
336cb93a386Sopenharmony_ci    for (size_t i = 1; i < memStream.getLength(); i++) {
337cb93a386Sopenharmony_ci        test_peeking_front_buffered_stream(reporter, memStream, i);
338cb93a386Sopenharmony_ci    }
339cb93a386Sopenharmony_ci#endif
340cb93a386Sopenharmony_ci}
341cb93a386Sopenharmony_ci#endif
342cb93a386Sopenharmony_ci
343cb93a386Sopenharmony_ci// Asserts that asset == expected and is peekable.
344cb93a386Sopenharmony_cistatic void stream_peek_test(skiatest::Reporter* rep,
345cb93a386Sopenharmony_ci                             SkStreamAsset* asset,
346cb93a386Sopenharmony_ci                             const SkData* expected) {
347cb93a386Sopenharmony_ci    if (asset->getLength() != expected->size()) {
348cb93a386Sopenharmony_ci        ERRORF(rep, "Unexpected length.");
349cb93a386Sopenharmony_ci        return;
350cb93a386Sopenharmony_ci    }
351cb93a386Sopenharmony_ci    SkRandom rand;
352cb93a386Sopenharmony_ci    uint8_t buffer[4096];
353cb93a386Sopenharmony_ci    const uint8_t* expect = expected->bytes();
354cb93a386Sopenharmony_ci    for (size_t i = 0; i < asset->getLength(); ++i) {
355cb93a386Sopenharmony_ci        uint32_t maxSize =
356cb93a386Sopenharmony_ci                SkToU32(std::min(sizeof(buffer), asset->getLength() - i));
357cb93a386Sopenharmony_ci        size_t size = rand.nextRangeU(1, maxSize);
358cb93a386Sopenharmony_ci        SkASSERT(size >= 1);
359cb93a386Sopenharmony_ci        SkASSERT(size <= sizeof(buffer));
360cb93a386Sopenharmony_ci        SkASSERT(size + i <= asset->getLength());
361cb93a386Sopenharmony_ci        if (asset->peek(buffer, size) < size) {
362cb93a386Sopenharmony_ci            ERRORF(rep, "Peek Failed!");
363cb93a386Sopenharmony_ci            return;
364cb93a386Sopenharmony_ci        }
365cb93a386Sopenharmony_ci        if (0 != memcmp(buffer, &expect[i], size)) {
366cb93a386Sopenharmony_ci            ERRORF(rep, "Peek returned wrong bytes!");
367cb93a386Sopenharmony_ci            return;
368cb93a386Sopenharmony_ci        }
369cb93a386Sopenharmony_ci        uint8_t value;
370cb93a386Sopenharmony_ci        REPORTER_ASSERT(rep, 1 == asset->read(&value, 1));
371cb93a386Sopenharmony_ci        if (value != expect[i]) {
372cb93a386Sopenharmony_ci            ERRORF(rep, "Read Failed!");
373cb93a386Sopenharmony_ci            return;
374cb93a386Sopenharmony_ci        }
375cb93a386Sopenharmony_ci    }
376cb93a386Sopenharmony_ci}
377cb93a386Sopenharmony_ci
378cb93a386Sopenharmony_ciDEF_TEST(StreamPeek_BlockMemoryStream, rep) {
379cb93a386Sopenharmony_ci    const static int kSeed = 1234;
380cb93a386Sopenharmony_ci    SkRandom valueSource(kSeed);
381cb93a386Sopenharmony_ci    SkRandom rand(kSeed << 1);
382cb93a386Sopenharmony_ci    uint8_t buffer[4096];
383cb93a386Sopenharmony_ci    SkDynamicMemoryWStream dynamicMemoryWStream;
384cb93a386Sopenharmony_ci    size_t totalWritten = 0;
385cb93a386Sopenharmony_ci    for (int i = 0; i < 32; ++i) {
386cb93a386Sopenharmony_ci        // Randomize the length of the blocks.
387cb93a386Sopenharmony_ci        size_t size = rand.nextRangeU(1, sizeof(buffer));
388cb93a386Sopenharmony_ci        for (size_t j = 0; j < size; ++j) {
389cb93a386Sopenharmony_ci            buffer[j] = valueSource.nextU() & 0xFF;
390cb93a386Sopenharmony_ci        }
391cb93a386Sopenharmony_ci        dynamicMemoryWStream.write(buffer, size);
392cb93a386Sopenharmony_ci        totalWritten += size;
393cb93a386Sopenharmony_ci        REPORTER_ASSERT(rep, totalWritten == dynamicMemoryWStream.bytesWritten());
394cb93a386Sopenharmony_ci    }
395cb93a386Sopenharmony_ci    std::unique_ptr<SkStreamAsset> asset(dynamicMemoryWStream.detachAsStream());
396cb93a386Sopenharmony_ci    sk_sp<SkData> expected(SkData::MakeUninitialized(asset->getLength()));
397cb93a386Sopenharmony_ci    uint8_t* expectedPtr = static_cast<uint8_t*>(expected->writable_data());
398cb93a386Sopenharmony_ci    valueSource.setSeed(kSeed);  // reseed.
399cb93a386Sopenharmony_ci    // We want the exact same same "random" string of numbers to put
400cb93a386Sopenharmony_ci    // in expected. i.e.: don't rely on SkDynamicMemoryStream to work
401cb93a386Sopenharmony_ci    // correctly while we are testing SkDynamicMemoryStream.
402cb93a386Sopenharmony_ci    for (size_t i = 0; i < asset->getLength(); ++i) {
403cb93a386Sopenharmony_ci        expectedPtr[i] = valueSource.nextU() & 0xFF;
404cb93a386Sopenharmony_ci    }
405cb93a386Sopenharmony_ci    stream_peek_test(rep, asset.get(), expected.get());
406cb93a386Sopenharmony_ci}
407cb93a386Sopenharmony_ci
408cb93a386Sopenharmony_cinamespace {
409cb93a386Sopenharmony_ciclass DumbStream : public SkStream {
410cb93a386Sopenharmony_cipublic:
411cb93a386Sopenharmony_ci    DumbStream(const uint8_t* data, size_t n)
412cb93a386Sopenharmony_ci        : fData(data), fCount(n), fIdx(0) {}
413cb93a386Sopenharmony_ci    size_t read(void* buffer, size_t size) override {
414cb93a386Sopenharmony_ci        size_t copyCount = std::min(fCount - fIdx, size);
415cb93a386Sopenharmony_ci        if (copyCount) {
416cb93a386Sopenharmony_ci            memcpy(buffer, &fData[fIdx], copyCount);
417cb93a386Sopenharmony_ci            fIdx += copyCount;
418cb93a386Sopenharmony_ci        }
419cb93a386Sopenharmony_ci        return copyCount;
420cb93a386Sopenharmony_ci    }
421cb93a386Sopenharmony_ci    bool isAtEnd() const override {
422cb93a386Sopenharmony_ci        return fCount == fIdx;
423cb93a386Sopenharmony_ci    }
424cb93a386Sopenharmony_ci private:
425cb93a386Sopenharmony_ci    const uint8_t* fData;
426cb93a386Sopenharmony_ci    size_t fCount, fIdx;
427cb93a386Sopenharmony_ci};
428cb93a386Sopenharmony_ci}  // namespace
429cb93a386Sopenharmony_ci
430cb93a386Sopenharmony_cistatic void stream_copy_test(skiatest::Reporter* reporter,
431cb93a386Sopenharmony_ci                             const void* srcData,
432cb93a386Sopenharmony_ci                             size_t N,
433cb93a386Sopenharmony_ci                             SkStream* stream) {
434cb93a386Sopenharmony_ci    SkDynamicMemoryWStream tgt;
435cb93a386Sopenharmony_ci    if (!SkStreamCopy(&tgt, stream)) {
436cb93a386Sopenharmony_ci        ERRORF(reporter, "SkStreamCopy failed");
437cb93a386Sopenharmony_ci        return;
438cb93a386Sopenharmony_ci    }
439cb93a386Sopenharmony_ci    sk_sp<SkData> data(tgt.detachAsData());
440cb93a386Sopenharmony_ci    if (data->size() != N) {
441cb93a386Sopenharmony_ci        ERRORF(reporter, "SkStreamCopy incorrect size");
442cb93a386Sopenharmony_ci        return;
443cb93a386Sopenharmony_ci    }
444cb93a386Sopenharmony_ci    if (0 != memcmp(data->data(), srcData, N)) {
445cb93a386Sopenharmony_ci        ERRORF(reporter, "SkStreamCopy bad copy");
446cb93a386Sopenharmony_ci    }
447cb93a386Sopenharmony_ci}
448cb93a386Sopenharmony_ci
449cb93a386Sopenharmony_ciDEF_TEST(DynamicMemoryWStream_detachAsData, r) {
450cb93a386Sopenharmony_ci    const char az[] = "abcdefghijklmnopqrstuvwxyz";
451cb93a386Sopenharmony_ci    const unsigned N = 40000;
452cb93a386Sopenharmony_ci    SkDynamicMemoryWStream dmws;
453cb93a386Sopenharmony_ci    for (unsigned i = 0; i < N; ++i) {
454cb93a386Sopenharmony_ci        dmws.writeText(az);
455cb93a386Sopenharmony_ci    }
456cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, dmws.bytesWritten() == N * strlen(az));
457cb93a386Sopenharmony_ci    auto data = dmws.detachAsData();
458cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, data->size() == N * strlen(az));
459cb93a386Sopenharmony_ci    const uint8_t* ptr = data->bytes();
460cb93a386Sopenharmony_ci    for (unsigned i = 0; i < N; ++i) {
461cb93a386Sopenharmony_ci        if (0 != memcmp(ptr, az, strlen(az))) {
462cb93a386Sopenharmony_ci            ERRORF(r, "detachAsData() memcmp failed");
463cb93a386Sopenharmony_ci            return;
464cb93a386Sopenharmony_ci        }
465cb93a386Sopenharmony_ci        ptr += strlen(az);
466cb93a386Sopenharmony_ci    }
467cb93a386Sopenharmony_ci}
468cb93a386Sopenharmony_ci
469cb93a386Sopenharmony_ciDEF_TEST(StreamCopy, reporter) {
470cb93a386Sopenharmony_ci    SkRandom random(123456);
471cb93a386Sopenharmony_ci    static const int N = 10000;
472cb93a386Sopenharmony_ci    SkAutoTMalloc<uint8_t> src((size_t)N);
473cb93a386Sopenharmony_ci    for (int j = 0; j < N; ++j) {
474cb93a386Sopenharmony_ci        src[j] = random.nextU() & 0xff;
475cb93a386Sopenharmony_ci    }
476cb93a386Sopenharmony_ci    // SkStreamCopy had two code paths; this test both.
477cb93a386Sopenharmony_ci    DumbStream dumbStream(src.get(), (size_t)N);
478cb93a386Sopenharmony_ci    stream_copy_test(reporter, src, N, &dumbStream);
479cb93a386Sopenharmony_ci    SkMemoryStream smartStream(src.get(), (size_t)N);
480cb93a386Sopenharmony_ci    stream_copy_test(reporter, src, N, &smartStream);
481cb93a386Sopenharmony_ci}
482cb93a386Sopenharmony_ci
483cb93a386Sopenharmony_ciDEF_TEST(StreamEmptyStreamMemoryBase, r) {
484cb93a386Sopenharmony_ci    SkDynamicMemoryWStream tmp;
485cb93a386Sopenharmony_ci    std::unique_ptr<SkStreamAsset> asset(tmp.detachAsStream());
486cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, nullptr == asset->getMemoryBase());
487cb93a386Sopenharmony_ci}
488cb93a386Sopenharmony_ci
489cb93a386Sopenharmony_ciDEF_TEST(FILEStreamWithOffset, r) {
490cb93a386Sopenharmony_ci    if (GetResourcePath().isEmpty()) {
491cb93a386Sopenharmony_ci        return;
492cb93a386Sopenharmony_ci    }
493cb93a386Sopenharmony_ci
494cb93a386Sopenharmony_ci    SkString filename = GetResourcePath("images/baby_tux.png");
495cb93a386Sopenharmony_ci    SkFILEStream stream1(filename.c_str());
496cb93a386Sopenharmony_ci    if (!stream1.isValid()) {
497cb93a386Sopenharmony_ci        ERRORF(r, "Could not create SkFILEStream from %s", filename.c_str());
498cb93a386Sopenharmony_ci        return;
499cb93a386Sopenharmony_ci    }
500cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, stream1.hasLength());
501cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, stream1.hasPosition());
502cb93a386Sopenharmony_ci
503cb93a386Sopenharmony_ci    // Seek halfway through the file. The second SkFILEStream will be created
504cb93a386Sopenharmony_ci    // with the same filename and offset and therefore will treat that offset as
505cb93a386Sopenharmony_ci    // the beginning.
506cb93a386Sopenharmony_ci    const size_t size = stream1.getLength();
507cb93a386Sopenharmony_ci    const size_t middle = size / 2;
508cb93a386Sopenharmony_ci    if (!stream1.seek(middle)) {
509cb93a386Sopenharmony_ci        ERRORF(r, "Could not seek SkFILEStream to %lu out of %lu", middle, size);
510cb93a386Sopenharmony_ci        return;
511cb93a386Sopenharmony_ci    }
512cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, stream1.getPosition() == middle);
513cb93a386Sopenharmony_ci
514cb93a386Sopenharmony_ci    FILE* file = sk_fopen(filename.c_str(), kRead_SkFILE_Flag);
515cb93a386Sopenharmony_ci    if (!file) {
516cb93a386Sopenharmony_ci        ERRORF(r, "Could not open %s as a FILE", filename.c_str());
517cb93a386Sopenharmony_ci        return;
518cb93a386Sopenharmony_ci    }
519cb93a386Sopenharmony_ci
520cb93a386Sopenharmony_ci    if (fseek(file, (long) middle, SEEK_SET) != 0) {
521cb93a386Sopenharmony_ci        ERRORF(r, "Could not fseek FILE to %lu out of %lu", middle, size);
522cb93a386Sopenharmony_ci        return;
523cb93a386Sopenharmony_ci    }
524cb93a386Sopenharmony_ci    SkFILEStream stream2(file);
525cb93a386Sopenharmony_ci
526cb93a386Sopenharmony_ci    const size_t remaining = size - middle;
527cb93a386Sopenharmony_ci    SkAutoTMalloc<uint8_t> expected(remaining);
528cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, stream1.read(expected.get(), remaining) == remaining);
529cb93a386Sopenharmony_ci
530cb93a386Sopenharmony_ci    auto test_full_read = [&r, &expected, remaining](SkStream* stream) {
531cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> actual(remaining);
532cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->read(actual.get(), remaining) == remaining);
533cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(expected.get(), actual.get(), remaining));
534cb93a386Sopenharmony_ci
535cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == stream->getLength());
536cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
537cb93a386Sopenharmony_ci    };
538cb93a386Sopenharmony_ci
539cb93a386Sopenharmony_ci    auto test_rewind = [&r, &expected, remaining](SkStream* stream) {
540cb93a386Sopenharmony_ci        // Rewind goes back to original offset.
541cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->rewind());
542cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == 0);
543cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> actual(remaining);
544cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->read(actual.get(), remaining) == remaining);
545cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(expected.get(), actual.get(), remaining));
546cb93a386Sopenharmony_ci    };
547cb93a386Sopenharmony_ci
548cb93a386Sopenharmony_ci    auto test_move = [&r, &expected, size, remaining](SkStream* stream) {
549cb93a386Sopenharmony_ci        // Cannot move to before the original offset.
550cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->move(- (long) size));
551cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == 0);
552cb93a386Sopenharmony_ci
553cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->move(std::numeric_limits<long>::min()));
554cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == 0);
555cb93a386Sopenharmony_ci
556cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> actual(remaining);
557cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->read(actual.get(), remaining) == remaining);
558cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(expected.get(), actual.get(), remaining));
559cb93a386Sopenharmony_ci
560cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
561cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == remaining);
562cb93a386Sopenharmony_ci
563cb93a386Sopenharmony_ci        // Cannot move beyond the end.
564cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->move(1));
565cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
566cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == remaining);
567cb93a386Sopenharmony_ci    };
568cb93a386Sopenharmony_ci
569cb93a386Sopenharmony_ci    auto test_seek = [&r, &expected, middle, remaining](SkStream* stream) {
570cb93a386Sopenharmony_ci        // Seek to an arbitrary position.
571cb93a386Sopenharmony_ci        const size_t arbitrary = middle / 2;
572cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(arbitrary));
573cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == arbitrary);
574cb93a386Sopenharmony_ci        const size_t miniRemaining = remaining - arbitrary;
575cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> actual(miniRemaining);
576cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->read(actual.get(), miniRemaining) == miniRemaining);
577cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(expected.get() + arbitrary, actual.get(), miniRemaining));
578cb93a386Sopenharmony_ci    };
579cb93a386Sopenharmony_ci
580cb93a386Sopenharmony_ci    auto test_seek_beginning = [&r, &expected, remaining](SkStream* stream) {
581cb93a386Sopenharmony_ci        // Seek to the beginning.
582cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(0));
583cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == 0);
584cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> actual(remaining);
585cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->read(actual.get(), remaining) == remaining);
586cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !memcmp(expected.get(), actual.get(), remaining));
587cb93a386Sopenharmony_ci    };
588cb93a386Sopenharmony_ci
589cb93a386Sopenharmony_ci    auto test_seek_end = [&r, remaining](SkStream* stream) {
590cb93a386Sopenharmony_ci        // Cannot seek past the end.
591cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
592cb93a386Sopenharmony_ci
593cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(remaining + 1));
594cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
595cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == remaining);
596cb93a386Sopenharmony_ci
597cb93a386Sopenharmony_ci        const size_t middle = remaining / 2;
598cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(middle));
599cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, !stream->isAtEnd());
600cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == middle);
601cb93a386Sopenharmony_ci
602cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(remaining * 2));
603cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
604cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == remaining);
605cb93a386Sopenharmony_ci
606cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->seek(std::numeric_limits<long>::max()));
607cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->isAtEnd());
608cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == remaining);
609cb93a386Sopenharmony_ci    };
610cb93a386Sopenharmony_ci
611cb93a386Sopenharmony_ci
612cb93a386Sopenharmony_ci    std::function<void (SkStream* stream, bool recurse)> test_all;
613cb93a386Sopenharmony_ci    test_all = [&](SkStream* stream, bool recurse) {
614cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getLength() == remaining);
615cb93a386Sopenharmony_ci        REPORTER_ASSERT(r, stream->getPosition() == 0);
616cb93a386Sopenharmony_ci
617cb93a386Sopenharmony_ci        test_full_read(stream);
618cb93a386Sopenharmony_ci        test_rewind(stream);
619cb93a386Sopenharmony_ci        test_move(stream);
620cb93a386Sopenharmony_ci        test_seek(stream);
621cb93a386Sopenharmony_ci        test_seek_beginning(stream);
622cb93a386Sopenharmony_ci        test_seek_end(stream);
623cb93a386Sopenharmony_ci
624cb93a386Sopenharmony_ci        if (recurse) {
625cb93a386Sopenharmony_ci            // Duplicate shares the original offset.
626cb93a386Sopenharmony_ci            auto duplicate = stream->duplicate();
627cb93a386Sopenharmony_ci            if (!duplicate) {
628cb93a386Sopenharmony_ci                ERRORF(r, "Failed to duplicate the stream!");
629cb93a386Sopenharmony_ci            } else {
630cb93a386Sopenharmony_ci                test_all(duplicate.get(), false);
631cb93a386Sopenharmony_ci            }
632cb93a386Sopenharmony_ci
633cb93a386Sopenharmony_ci            // Fork shares the original offset, too.
634cb93a386Sopenharmony_ci            auto fork = stream->fork();
635cb93a386Sopenharmony_ci            if (!fork) {
636cb93a386Sopenharmony_ci                ERRORF(r, "Failed to fork the stream!");
637cb93a386Sopenharmony_ci            } else {
638cb93a386Sopenharmony_ci                REPORTER_ASSERT(r, fork->isAtEnd());
639cb93a386Sopenharmony_ci                REPORTER_ASSERT(r, fork->getLength() == remaining);
640cb93a386Sopenharmony_ci                REPORTER_ASSERT(r, fork->rewind());
641cb93a386Sopenharmony_ci
642cb93a386Sopenharmony_ci                test_all(fork.get(), false);
643cb93a386Sopenharmony_ci            }
644cb93a386Sopenharmony_ci        }
645cb93a386Sopenharmony_ci    };
646cb93a386Sopenharmony_ci
647cb93a386Sopenharmony_ci    test_all(&stream2, true);
648cb93a386Sopenharmony_ci}
649cb93a386Sopenharmony_ci
650cb93a386Sopenharmony_ci#include "src/core/SkBuffer.h"
651cb93a386Sopenharmony_ci
652cb93a386Sopenharmony_ciDEF_TEST(RBuffer, reporter) {
653cb93a386Sopenharmony_ci    int32_t value = 0;
654cb93a386Sopenharmony_ci    SkRBuffer buffer(&value, 4);
655cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, buffer.isValid());
656cb93a386Sopenharmony_ci
657cb93a386Sopenharmony_ci    int32_t tmp;
658cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, buffer.read(&tmp, 4));
659cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, buffer.isValid());
660cb93a386Sopenharmony_ci
661cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, !buffer.read(&tmp, 4));
662cb93a386Sopenharmony_ci    REPORTER_ASSERT(reporter, !buffer.isValid());
663cb93a386Sopenharmony_ci}
664