151 строка
4.9 KiB
C++
151 строка
4.9 KiB
C++
/*
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* Copyright (c) 2014 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include <cmath>
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#include <cstdlib>
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#include <string>
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#include "third_party/googletest/src/include/gtest/gtest.h"
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#include "test/acm_random.h"
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#include "test/clear_system_state.h"
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#include "test/register_state_check.h"
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#include "test/util.h"
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#include "./vpx_config.h"
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#include "./vp9_rtcd.h"
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#include "vp9/common/vp9_entropy.h"
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#include "vpx/vpx_integer.h"
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using libvpx_test::ACMRandom;
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namespace {
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#if CONFIG_VP9_HIGHBITDEPTH
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const int kNumIterations = 1000;
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typedef int64_t (*ErrorBlockFunc)(const tran_low_t *coeff,
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const tran_low_t *dqcoeff,
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intptr_t block_size,
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int64_t *ssz, int bps);
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typedef std::tr1::tuple<ErrorBlockFunc, ErrorBlockFunc, vpx_bit_depth_t>
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ErrorBlockParam;
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class ErrorBlockTest
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: public ::testing::TestWithParam<ErrorBlockParam> {
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public:
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virtual ~ErrorBlockTest() {}
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virtual void SetUp() {
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error_block_op_ = GET_PARAM(0);
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ref_error_block_op_ = GET_PARAM(1);
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bit_depth_ = GET_PARAM(2);
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}
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virtual void TearDown() { libvpx_test::ClearSystemState(); }
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protected:
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vpx_bit_depth_t bit_depth_;
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ErrorBlockFunc error_block_op_;
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ErrorBlockFunc ref_error_block_op_;
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};
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TEST_P(ErrorBlockTest, OperationCheck) {
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ACMRandom rnd(ACMRandom::DeterministicSeed());
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DECLARE_ALIGNED_ARRAY(16, tran_low_t, coeff, 4096);
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DECLARE_ALIGNED_ARRAY(16, tran_low_t, dqcoeff, 4096);
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int err_count_total = 0;
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int first_failure = -1;
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intptr_t block_size;
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int64_t ssz;
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int64_t ret;
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int64_t ref_ssz;
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int64_t ref_ret;
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for (int i = 0; i < kNumIterations; ++i) {
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int err_count = 0;
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block_size = 16 << (i % 9); // All block sizes from 4x4, 8x4 ..64x64
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for (int j = 0; j < block_size; j++) {
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coeff[j] = rnd(2 << 20) - (1 << 20);
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dqcoeff[j] = rnd(2 << 20) - (1 << 20);
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}
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ref_ret = ref_error_block_op_(coeff, dqcoeff, block_size, &ref_ssz,
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bit_depth_);
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ASM_REGISTER_STATE_CHECK(ret = error_block_op_(coeff, dqcoeff, block_size,
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&ssz, bit_depth_));
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err_count += (ref_ret != ret) | (ref_ssz != ssz);
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if (err_count && !err_count_total) {
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first_failure = i;
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}
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err_count_total += err_count;
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}
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EXPECT_EQ(0, err_count_total)
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<< "Error: Error Block Test, C output doesn't match SSE2 output. "
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<< "First failed at test case " << first_failure;
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}
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TEST_P(ErrorBlockTest, ExtremeValues) {
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ACMRandom rnd(ACMRandom::DeterministicSeed());
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DECLARE_ALIGNED_ARRAY(16, tran_low_t, coeff, 4096);
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DECLARE_ALIGNED_ARRAY(16, tran_low_t, dqcoeff, 4096);
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int err_count_total = 0;
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int first_failure = -1;
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intptr_t block_size;
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int64_t ssz;
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int64_t ret;
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int64_t ref_ssz;
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int64_t ref_ret;
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int max_val = ((1 << 20) - 1);
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for (int i = 0; i < kNumIterations; ++i) {
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int err_count = 0;
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int k = (i / 9) % 5;
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// Change the maximum coeff value, to test different bit boundaries
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if ( k == 4 && (i % 9) == 0 ) {
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max_val >>= 1;
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}
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block_size = 16 << (i % 9); // All block sizes from 4x4, 8x4 ..64x64
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for (int j = 0; j < block_size; j++) {
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if (k < 4) { // Test at maximum values
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coeff[j] = k % 2 ? max_val : -max_val;
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dqcoeff[j] = (k >> 1) % 2 ? max_val : -max_val;
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} else {
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coeff[j] = rnd(2 << 14) - (1 << 14);
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dqcoeff[j] = rnd(2 << 14) - (1 << 14);
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}
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}
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ref_ret = ref_error_block_op_(coeff, dqcoeff, block_size, &ref_ssz,
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bit_depth_);
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ASM_REGISTER_STATE_CHECK(ret = error_block_op_(coeff, dqcoeff, block_size,
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&ssz, bit_depth_));
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err_count += (ref_ret != ret) | (ref_ssz != ssz);
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if (err_count && !err_count_total) {
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first_failure = i;
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}
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err_count_total += err_count;
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}
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EXPECT_EQ(0, err_count_total)
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<< "Error: Error Block Test, C output doesn't match SSE2 output. "
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<< "First failed at test case " << first_failure;
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}
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using std::tr1::make_tuple;
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#if HAVE_SSE2
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INSTANTIATE_TEST_CASE_P(
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SSE2, ErrorBlockTest,
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::testing::Values(
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make_tuple(&vp9_highbd_block_error_sse2,
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&vp9_highbd_block_error_c, VPX_BITS_10),
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make_tuple(&vp9_highbd_block_error_sse2,
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&vp9_highbd_block_error_c, VPX_BITS_12),
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make_tuple(&vp9_highbd_block_error_sse2,
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&vp9_highbd_block_error_c, VPX_BITS_8)));
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#endif // HAVE_SSE2
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#endif // CONFIG_VP9_HIGHBITDEPTH
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} // namespace
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