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Update aom to v1.0.0
Update aom to commit id d14c5bb4f336ef1842046089849dee4a301fbbf0.
This commit is contained in:
parent
bb61121b44
commit
48f6d2e034
1087 changed files with 154333 additions and 265310 deletions
359
third_party/aom/test/dr_prediction_test.cc
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359
third_party/aom/test/dr_prediction_test.cc
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/*
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* Copyright (c) 2018, Alliance for Open Media. All rights reserved
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*
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* This source code is subject to the terms of the BSD 2 Clause License and
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* the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
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* was not distributed with this source code in the LICENSE file, you can
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* obtain it at www.aomedia.org/license/software. If the Alliance for Open
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* Media Patent License 1.0 was not distributed with this source code in the
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* PATENTS file, you can obtain it at www.aomedia.org/license/patent.
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*/
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#include "third_party/googletest/src/googletest/include/gtest/gtest.h"
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#include "config/aom_config.h"
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#include "config/aom_dsp_rtcd.h"
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#include "aom_mem/aom_mem.h"
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#include "aom_ports/aom_timer.h"
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#include "av1/common/blockd.h"
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#include "av1/common/pred_common.h"
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#include "av1/common/reconintra.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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namespace {
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const int kZ1Start = 0;
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const int kZ2Start = 90;
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const int kZ3Start = 180;
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const TX_SIZE kTxSize[] = { TX_4X4, TX_8X8, TX_16X16, TX_32X32, TX_64X64,
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TX_4X8, TX_8X4, TX_8X16, TX_16X8, TX_16X32,
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TX_32X16, TX_32X64, TX_64X32, TX_4X16, TX_16X4,
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TX_8X32, TX_32X8, TX_16X64, TX_64X16 };
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const char *const kTxSizeStrings[] = {
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"TX_4X4", "TX_8X8", "TX_16X16", "TX_32X32", "TX_64X64",
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"TX_4X8", "TX_8X4", "TX_8X16", "TX_16X8", "TX_16X32",
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"TX_32X16", "TX_32X64", "TX_64X32", "TX_4X16", "TX_16X4",
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"TX_8X32", "TX_32X8", "TX_16X64", "TX_64X16"
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};
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using libaom_test::ACMRandom;
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typedef void (*DrPred_Hbd)(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_above, int upsample_left, int dx,
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int dy, int bd);
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typedef void (*DrPred)(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left,
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int upsample_above, int upsample_left, int dx, int dy,
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int bd);
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typedef void (*Z1_Lbd)(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left,
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int upsample_above, int dx, int dy);
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template <Z1_Lbd fn>
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void z1_wrapper(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left, int upsample_above,
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int /*upsample_left*/, int dx, int dy, int /*bd*/) {
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fn(dst, stride, bw, bh, above, left, upsample_above, dx, dy);
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}
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typedef void (*Z2_Lbd)(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left,
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int upsample_above, int upsample_left, int dx, int dy);
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template <Z2_Lbd fn>
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void z2_wrapper(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left, int upsample_above,
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int upsample_left, int dx, int dy, int /*bd*/) {
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fn(dst, stride, bw, bh, above, left, upsample_above, upsample_left, dx, dy);
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}
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typedef void (*Z3_Lbd)(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left,
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int upsample_left, int dx, int dy);
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template <Z3_Lbd fn>
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void z3_wrapper(uint8_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint8_t *above, const uint8_t *left,
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int /*upsample_above*/, int upsample_left, int dx, int dy,
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int /*bd*/) {
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fn(dst, stride, bw, bh, above, left, upsample_left, dx, dy);
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}
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typedef void (*Z1_Hbd)(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_above, int dx, int dy, int bd);
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template <Z1_Hbd fn>
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void z1_wrapper_hbd(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_above, int /*upsample_left*/, int dx, int dy,
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int bd) {
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fn(dst, stride, bw, bh, above, left, upsample_above, dx, dy, bd);
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}
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typedef void (*Z2_Hbd)(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_above, int upsample_left, int dx, int dy,
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int bd);
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template <Z2_Hbd fn>
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void z2_wrapper_hbd(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_above, int upsample_left, int dx, int dy,
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int bd) {
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fn(dst, stride, bw, bh, above, left, upsample_above, upsample_left, dx, dy,
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bd);
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}
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typedef void (*Z3_Hbd)(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int upsample_left, int dx, int dy, int bd);
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template <Z3_Hbd fn>
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void z3_wrapper_hbd(uint16_t *dst, ptrdiff_t stride, int bw, int bh,
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const uint16_t *above, const uint16_t *left,
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int /*upsample_above*/, int upsample_left, int dx, int dy,
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int bd) {
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fn(dst, stride, bw, bh, above, left, upsample_left, dx, dy, bd);
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}
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template <typename FuncType>
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struct DrPredFunc {
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DrPredFunc(FuncType pred = NULL, FuncType tst = NULL, int bit_depth_value = 0,
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int start_angle_value = 0)
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: ref_fn(pred), tst_fn(tst), bit_depth(bit_depth_value),
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start_angle(start_angle_value) {}
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FuncType ref_fn;
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FuncType tst_fn;
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int bit_depth;
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int start_angle;
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};
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template <typename Pixel, typename FuncType>
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class DrPredTest : public ::testing::TestWithParam<DrPredFunc<FuncType> > {
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protected:
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static const int kMaxNumTests = 100000;
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static const int kIterations = 10;
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static const int kDstStride = 64;
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static const int kDstSize = kDstStride * kDstStride;
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static const int kOffset = 16;
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static const int kBufSize = ((2 * MAX_TX_SIZE) << 1) + 16;
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DrPredTest()
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: upsample_above_(0), upsample_left_(0), bw_(0), bh_(0), dx_(1), dy_(1),
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bd_(8), txsize_(TX_4X4) {
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params_ = this->GetParam();
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start_angle_ = params_.start_angle;
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stop_angle_ = start_angle_ + 90;
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dst_ref_ = &dst_ref_data_[0];
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dst_tst_ = &dst_tst_data_[0];
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dst_stride_ = kDstStride;
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above_ = &above_data_[kOffset];
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left_ = &left_data_[kOffset];
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for (int i = 0; i < kBufSize; ++i) {
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above_data_[i] = rng_.Rand8();
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left_data_[i] = rng_.Rand8();
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}
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for (int i = 0; i < kDstSize; ++i) {
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dst_ref_[i] = 0;
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}
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}
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virtual ~DrPredTest() {}
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void Predict(bool speedtest, int tx) {
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const int kNumTests = speedtest ? kMaxNumTests : 1;
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aom_usec_timer timer;
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aom_usec_timer_start(&timer);
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for (int k = 0; k < kNumTests; ++k) {
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params_.ref_fn(dst_ref_, dst_stride_, bw_, bh_, above_, left_,
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upsample_above_, upsample_left_, dx_, dy_, bd_);
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}
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aom_usec_timer_mark(&timer);
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const int ref_time = static_cast<int>(aom_usec_timer_elapsed(&timer));
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aom_usec_timer_start(&timer);
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if (params_.tst_fn) {
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for (int k = 0; k < kNumTests; ++k) {
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ASM_REGISTER_STATE_CHECK(params_.tst_fn(dst_tst_, dst_stride_, bw_, bh_,
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above_, left_, upsample_above_,
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upsample_left_, dx_, dy_, bd_));
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}
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}
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aom_usec_timer_mark(&timer);
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const int tst_time = static_cast<int>(aom_usec_timer_elapsed(&timer));
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OutputTimes(kNumTests, ref_time, tst_time, tx);
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}
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void RunTest(bool speedtest) {
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for (int i = 0; i < kBufSize; ++i) {
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above_data_[i] = left_data_[i] = (1 << bd_) - 1;
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}
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for (int tx = 0; tx < TX_SIZES_ALL; ++tx) {
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if (params_.tst_fn == NULL) {
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for (int i = 0; i < kDstSize; ++i) {
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dst_tst_[i] = (1 << bd_) - 1;
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}
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} else {
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for (int i = 0; i < kDstSize; ++i) {
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dst_tst_[i] = 0;
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}
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}
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bw_ = tx_size_wide[kTxSize[tx]];
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bh_ = tx_size_high[kTxSize[tx]];
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Predict(speedtest, tx);
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for (int r = 0; r < bh_; ++r) {
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for (int c = 0; c < bw_; ++c) {
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ASSERT_EQ(dst_ref_[r * dst_stride_ + c],
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dst_tst_[r * dst_stride_ + c])
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<< bw_ << "x" << bh_ << " r: " << r << " c: " << c
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<< " dx: " << dx_ << " dy: " << dy_
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<< " upsample_above: " << upsample_above_
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<< " upsample_left: " << upsample_left_;
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}
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}
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}
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}
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void OutputTimes(int num_tests, int ref_time, int tst_time, int tx) {
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if (num_tests > 1) {
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if (params_.tst_fn) {
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const float x = static_cast<float>(ref_time) / tst_time;
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printf("\t[%8s] :: ref time %6d, tst time %6d %3.2f\n",
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kTxSizeStrings[tx], ref_time, tst_time, x);
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} else {
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printf("\t[%8s] :: ref time %6d\n", kTxSizeStrings[tx], ref_time);
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}
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}
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}
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Pixel dst_ref_data_[kDstSize];
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Pixel dst_tst_data_[kDstSize];
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Pixel left_data_[kBufSize];
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Pixel dummy_data_[kBufSize];
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Pixel above_data_[kBufSize];
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Pixel *dst_ref_;
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Pixel *dst_tst_;
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Pixel *above_;
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Pixel *left_;
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int dst_stride_;
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int upsample_above_;
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int upsample_left_;
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int bw_;
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int bh_;
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int dx_;
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int dy_;
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int bd_;
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TX_SIZE txsize_;
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int start_angle_;
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int stop_angle_;
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ACMRandom rng_;
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DrPredFunc<FuncType> params_;
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};
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class LowbdDrPredTest : public DrPredTest<uint8_t, DrPred> {};
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TEST_P(LowbdDrPredTest, SaturatedValues) {
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for (int iter = 0; iter < kIterations && !HasFatalFailure(); ++iter) {
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upsample_above_ = iter & 1;
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for (int angle = start_angle_; angle < stop_angle_; ++angle) {
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dx_ = av1_get_dx(angle);
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dy_ = av1_get_dy(angle);
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if (dx_ && dy_) RunTest(false);
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}
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}
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}
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TEST_P(LowbdDrPredTest, DISABLED_Speed) {
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const int angles[] = { 3, 45, 87 };
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for (upsample_above_ = 0; upsample_above_ < 2; ++upsample_above_) {
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upsample_left_ = upsample_above_;
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for (int i = 0; i < 3; ++i) {
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dx_ = av1_get_dx(angles[i] + start_angle_);
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dy_ = av1_get_dy(angles[i] + start_angle_);
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printf("upsample_above: %d upsample_left: %d angle: %d ~~~~~~~~~~~~~~~\n",
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upsample_above_, upsample_left_, angles[i] + start_angle_);
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if (dx_ && dy_) RunTest(true);
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}
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}
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}
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using ::testing::make_tuple;
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INSTANTIATE_TEST_CASE_P(
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C, LowbdDrPredTest,
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::testing::Values(DrPredFunc<DrPred>(&z1_wrapper<av1_dr_prediction_z1_c>,
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NULL, AOM_BITS_8, kZ1Start),
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DrPredFunc<DrPred>(&z2_wrapper<av1_dr_prediction_z2_c>,
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NULL, AOM_BITS_8, kZ2Start),
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DrPredFunc<DrPred>(&z3_wrapper<av1_dr_prediction_z3_c>,
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NULL, AOM_BITS_8, kZ3Start)));
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class HighbdDrPredTest : public DrPredTest<uint16_t, DrPred_Hbd> {};
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TEST_P(HighbdDrPredTest, SaturatedValues) {
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for (int iter = 0; iter < kIterations && !HasFatalFailure(); ++iter) {
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upsample_above_ = iter & 1;
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for (int angle = start_angle_; angle < stop_angle_; ++angle) {
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dx_ = av1_get_dx(angle);
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dy_ = av1_get_dy(angle);
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if (dx_ && dy_) RunTest(false);
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}
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}
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}
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TEST_P(HighbdDrPredTest, DISABLED_Speed) {
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const int angles[] = { 3, 45, 87 };
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for (upsample_above_ = 0; upsample_above_ < 2; ++upsample_above_) {
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upsample_left_ = upsample_above_;
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for (int i = 0; i < 3; ++i) {
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dx_ = av1_get_dx(angles[i] + start_angle_);
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dy_ = av1_get_dy(angles[i] + start_angle_);
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printf("upsample_above: %d upsample_left: %d angle: %d ~~~~~~~~~~~~~~~\n",
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upsample_above_, upsample_left_, angles[i] + start_angle_);
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if (dx_ && dy_) RunTest(true);
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}
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}
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}
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INSTANTIATE_TEST_CASE_P(
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C, HighbdDrPredTest,
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::testing::Values(
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DrPredFunc<DrPred_Hbd>(&z1_wrapper_hbd<av1_highbd_dr_prediction_z1_c>,
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NULL, AOM_BITS_8, kZ1Start),
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DrPredFunc<DrPred_Hbd>(&z1_wrapper_hbd<av1_highbd_dr_prediction_z1_c>,
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NULL, AOM_BITS_10, kZ1Start),
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DrPredFunc<DrPred_Hbd>(&z1_wrapper_hbd<av1_highbd_dr_prediction_z1_c>,
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NULL, AOM_BITS_12, kZ1Start),
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DrPredFunc<DrPred_Hbd>(&z2_wrapper_hbd<av1_highbd_dr_prediction_z2_c>,
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NULL, AOM_BITS_8, kZ2Start),
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DrPredFunc<DrPred_Hbd>(&z2_wrapper_hbd<av1_highbd_dr_prediction_z2_c>,
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NULL, AOM_BITS_10, kZ2Start),
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DrPredFunc<DrPred_Hbd>(&z2_wrapper_hbd<av1_highbd_dr_prediction_z2_c>,
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NULL, AOM_BITS_12, kZ2Start),
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DrPredFunc<DrPred_Hbd>(&z3_wrapper_hbd<av1_highbd_dr_prediction_z3_c>,
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NULL, AOM_BITS_8, kZ3Start),
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DrPredFunc<DrPred_Hbd>(&z3_wrapper_hbd<av1_highbd_dr_prediction_z3_c>,
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NULL, AOM_BITS_10, kZ3Start),
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DrPredFunc<DrPred_Hbd>(&z3_wrapper_hbd<av1_highbd_dr_prediction_z3_c>,
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NULL, AOM_BITS_12, kZ3Start)));
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} // namespace
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