1cb93a386Sopenharmony_ci/*
2cb93a386Sopenharmony_ci * Copyright 2015 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#include "tests/Test.h"
9cb93a386Sopenharmony_ci
10cb93a386Sopenharmony_ci#ifdef SK_SUPPORT_PDF
11cb93a386Sopenharmony_ci
12cb93a386Sopenharmony_ci#include "include/private/SkTo.h"
13cb93a386Sopenharmony_ci#include "include/utils/SkRandom.h"
14cb93a386Sopenharmony_ci#include "src/pdf/SkDeflate.h"
15cb93a386Sopenharmony_ci
16cb93a386Sopenharmony_cinamespace {
17cb93a386Sopenharmony_ci
18cb93a386Sopenharmony_ci#include "zlib.h"
19cb93a386Sopenharmony_ci
20cb93a386Sopenharmony_ci// Different zlib implementations use different T.
21cb93a386Sopenharmony_ci// We've seen size_t and unsigned.
22cb93a386Sopenharmony_citemplate <typename T> void* skia_alloc_func(void*, T items, T size) {
23cb93a386Sopenharmony_ci    return sk_calloc_throw(SkToSizeT(items) * SkToSizeT(size));
24cb93a386Sopenharmony_ci}
25cb93a386Sopenharmony_ci
26cb93a386Sopenharmony_civoid skia_free_func(void*, void* address) { sk_free(address); }
27cb93a386Sopenharmony_ci
28cb93a386Sopenharmony_ci/**
29cb93a386Sopenharmony_ci *  Use the un-deflate compression algorithm to decompress the data in src,
30cb93a386Sopenharmony_ci *  returning the result.  Returns nullptr if an error occurs.
31cb93a386Sopenharmony_ci */
32cb93a386Sopenharmony_cistd::unique_ptr<SkStreamAsset> stream_inflate(skiatest::Reporter* reporter, SkStream* src) {
33cb93a386Sopenharmony_ci    SkDynamicMemoryWStream decompressedDynamicMemoryWStream;
34cb93a386Sopenharmony_ci    SkWStream* dst = &decompressedDynamicMemoryWStream;
35cb93a386Sopenharmony_ci
36cb93a386Sopenharmony_ci    static const size_t kBufferSize = 1024;
37cb93a386Sopenharmony_ci    uint8_t inputBuffer[kBufferSize];
38cb93a386Sopenharmony_ci    uint8_t outputBuffer[kBufferSize];
39cb93a386Sopenharmony_ci    z_stream flateData;
40cb93a386Sopenharmony_ci    flateData.zalloc = &skia_alloc_func;
41cb93a386Sopenharmony_ci    flateData.zfree = &skia_free_func;
42cb93a386Sopenharmony_ci    flateData.opaque = nullptr;
43cb93a386Sopenharmony_ci    flateData.next_in = nullptr;
44cb93a386Sopenharmony_ci    flateData.avail_in = 0;
45cb93a386Sopenharmony_ci    flateData.next_out = outputBuffer;
46cb93a386Sopenharmony_ci    flateData.avail_out = kBufferSize;
47cb93a386Sopenharmony_ci    int rc;
48cb93a386Sopenharmony_ci    rc = inflateInit(&flateData);
49cb93a386Sopenharmony_ci    if (rc != Z_OK) {
50cb93a386Sopenharmony_ci        ERRORF(reporter, "Zlib: inflateInit failed");
51cb93a386Sopenharmony_ci        return nullptr;
52cb93a386Sopenharmony_ci    }
53cb93a386Sopenharmony_ci    uint8_t* input = (uint8_t*)src->getMemoryBase();
54cb93a386Sopenharmony_ci    size_t inputLength = src->getLength();
55cb93a386Sopenharmony_ci    if (input == nullptr || inputLength == 0) {
56cb93a386Sopenharmony_ci        input = nullptr;
57cb93a386Sopenharmony_ci        flateData.next_in = inputBuffer;
58cb93a386Sopenharmony_ci        flateData.avail_in = 0;
59cb93a386Sopenharmony_ci    } else {
60cb93a386Sopenharmony_ci        flateData.next_in = input;
61cb93a386Sopenharmony_ci        flateData.avail_in = SkToUInt(inputLength);
62cb93a386Sopenharmony_ci    }
63cb93a386Sopenharmony_ci
64cb93a386Sopenharmony_ci    rc = Z_OK;
65cb93a386Sopenharmony_ci    while (true) {
66cb93a386Sopenharmony_ci        if (flateData.avail_out < kBufferSize) {
67cb93a386Sopenharmony_ci            if (!dst->write(outputBuffer, kBufferSize - flateData.avail_out)) {
68cb93a386Sopenharmony_ci                rc = Z_BUF_ERROR;
69cb93a386Sopenharmony_ci                break;
70cb93a386Sopenharmony_ci            }
71cb93a386Sopenharmony_ci            flateData.next_out = outputBuffer;
72cb93a386Sopenharmony_ci            flateData.avail_out = kBufferSize;
73cb93a386Sopenharmony_ci        }
74cb93a386Sopenharmony_ci        if (rc != Z_OK)
75cb93a386Sopenharmony_ci            break;
76cb93a386Sopenharmony_ci        if (flateData.avail_in == 0) {
77cb93a386Sopenharmony_ci            if (input != nullptr)
78cb93a386Sopenharmony_ci                break;
79cb93a386Sopenharmony_ci            size_t read = src->read(&inputBuffer, kBufferSize);
80cb93a386Sopenharmony_ci            if (read == 0)
81cb93a386Sopenharmony_ci                break;
82cb93a386Sopenharmony_ci            flateData.next_in = inputBuffer;
83cb93a386Sopenharmony_ci            flateData.avail_in = SkToUInt(read);
84cb93a386Sopenharmony_ci        }
85cb93a386Sopenharmony_ci        rc = inflate(&flateData, Z_NO_FLUSH);
86cb93a386Sopenharmony_ci    }
87cb93a386Sopenharmony_ci    while (rc == Z_OK) {
88cb93a386Sopenharmony_ci        rc = inflate(&flateData, Z_FINISH);
89cb93a386Sopenharmony_ci        if (flateData.avail_out < kBufferSize) {
90cb93a386Sopenharmony_ci            if (!dst->write(outputBuffer, kBufferSize - flateData.avail_out)) {
91cb93a386Sopenharmony_ci                ERRORF(reporter, "write failed");
92cb93a386Sopenharmony_ci                return nullptr;
93cb93a386Sopenharmony_ci            }
94cb93a386Sopenharmony_ci            flateData.next_out = outputBuffer;
95cb93a386Sopenharmony_ci            flateData.avail_out = kBufferSize;
96cb93a386Sopenharmony_ci        }
97cb93a386Sopenharmony_ci    }
98cb93a386Sopenharmony_ci
99cb93a386Sopenharmony_ci    inflateEnd(&flateData);
100cb93a386Sopenharmony_ci    if (rc != Z_STREAM_END) {
101cb93a386Sopenharmony_ci        ERRORF(reporter, "Zlib: inflateEnd failed");
102cb93a386Sopenharmony_ci        return nullptr;
103cb93a386Sopenharmony_ci    }
104cb93a386Sopenharmony_ci    return decompressedDynamicMemoryWStream.detachAsStream();
105cb93a386Sopenharmony_ci}
106cb93a386Sopenharmony_ci}  // namespace
107cb93a386Sopenharmony_ci
108cb93a386Sopenharmony_ciDEF_TEST(SkPDF_DeflateWStream, r) {
109cb93a386Sopenharmony_ci    SkRandom random(123456);
110cb93a386Sopenharmony_ci    for (int loop = 0; loop < 50; ++loop) {
111cb93a386Sopenharmony_ci        uint32_t size = random.nextULessThan(10000);
112cb93a386Sopenharmony_ci        SkAutoTMalloc<uint8_t> buffer(size);
113cb93a386Sopenharmony_ci        for (uint32_t j = 0; j < size; ++j) {
114cb93a386Sopenharmony_ci            buffer[j] = random.nextU() & 0xff;
115cb93a386Sopenharmony_ci        }
116cb93a386Sopenharmony_ci
117cb93a386Sopenharmony_ci        SkDynamicMemoryWStream dynamicMemoryWStream;
118cb93a386Sopenharmony_ci        {
119cb93a386Sopenharmony_ci            SkDeflateWStream deflateWStream(&dynamicMemoryWStream);
120cb93a386Sopenharmony_ci            uint32_t j = 0;
121cb93a386Sopenharmony_ci            while (j < size) {
122cb93a386Sopenharmony_ci                uint32_t writeSize =
123cb93a386Sopenharmony_ci                        std::min(size - j, random.nextRangeU(1, 400));
124cb93a386Sopenharmony_ci                if (!deflateWStream.write(&buffer[j], writeSize)) {
125cb93a386Sopenharmony_ci                    ERRORF(r, "something went wrong.");
126cb93a386Sopenharmony_ci                    return;
127cb93a386Sopenharmony_ci                }
128cb93a386Sopenharmony_ci                j += writeSize;
129cb93a386Sopenharmony_ci            }
130cb93a386Sopenharmony_ci            REPORTER_ASSERT(r, deflateWStream.bytesWritten() == size);
131cb93a386Sopenharmony_ci        }
132cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> compressed(dynamicMemoryWStream.detachAsStream());
133cb93a386Sopenharmony_ci        std::unique_ptr<SkStreamAsset> decompressed(stream_inflate(r, compressed.get()));
134cb93a386Sopenharmony_ci
135cb93a386Sopenharmony_ci        if (!decompressed) {
136cb93a386Sopenharmony_ci            ERRORF(r, "Decompression failed.");
137cb93a386Sopenharmony_ci            return;
138cb93a386Sopenharmony_ci        }
139cb93a386Sopenharmony_ci        if (decompressed->getLength() != size) {
140cb93a386Sopenharmony_ci            ERRORF(r, "Decompression failed to get right size [%d]. %u != %u",
141cb93a386Sopenharmony_ci                   loop, (unsigned)(decompressed->getLength()), (unsigned)size);
142cb93a386Sopenharmony_ci            SkString s = SkStringPrintf("/tmp/deftst_compressed_%d", loop);
143cb93a386Sopenharmony_ci            SkFILEWStream o(s.c_str());
144cb93a386Sopenharmony_ci            o.writeStream(compressed.get(), compressed->getLength());
145cb93a386Sopenharmony_ci            compressed->rewind();
146cb93a386Sopenharmony_ci
147cb93a386Sopenharmony_ci            s = SkStringPrintf("/tmp/deftst_input_%d", loop);
148cb93a386Sopenharmony_ci            SkFILEWStream o2(s.c_str());
149cb93a386Sopenharmony_ci            o2.write(&buffer[0], size);
150cb93a386Sopenharmony_ci
151cb93a386Sopenharmony_ci            continue;
152cb93a386Sopenharmony_ci        }
153cb93a386Sopenharmony_ci        uint32_t minLength = std::min(size, (uint32_t)(decompressed->getLength()));
154cb93a386Sopenharmony_ci        for (uint32_t i = 0; i < minLength; ++i) {
155cb93a386Sopenharmony_ci            uint8_t c;
156cb93a386Sopenharmony_ci            SkDEBUGCODE(size_t rb =)decompressed->read(&c, sizeof(uint8_t));
157cb93a386Sopenharmony_ci            SkASSERT(sizeof(uint8_t) == rb);
158cb93a386Sopenharmony_ci            if (buffer[i] != c) {
159cb93a386Sopenharmony_ci                ERRORF(r, "Decompression failed at byte %u.", (unsigned)i);
160cb93a386Sopenharmony_ci                break;
161cb93a386Sopenharmony_ci            }
162cb93a386Sopenharmony_ci        }
163cb93a386Sopenharmony_ci    }
164cb93a386Sopenharmony_ci    SkDeflateWStream emptyDeflateWStream(nullptr);
165cb93a386Sopenharmony_ci    REPORTER_ASSERT(r, !emptyDeflateWStream.writeText("FOO"));
166cb93a386Sopenharmony_ci}
167cb93a386Sopenharmony_ci
168cb93a386Sopenharmony_ci#endif
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