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Update aom to v1.0.0
Update aom to commit id d14c5bb4f336ef1842046089849dee4a301fbbf0.
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1087 changed files with 154333 additions and 265310 deletions
51
third_party/aom/test/av1_inv_txfm1d_test.cc
vendored
51
third_party/aom/test/av1_inv_txfm1d_test.cc
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@ -13,39 +13,35 @@
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#include "test/av1_txfm_test.h"
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#include "test/util.h"
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#include "av1/common/av1_fwd_txfm1d.h"
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#include "av1/common/av1_inv_txfm1d.h"
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#include "av1/encoder/av1_fwd_txfm1d.h"
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using libaom_test::ACMRandom;
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using libaom_test::input_base;
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namespace {
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const int txfm_type_num = 2;
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const int txfm_size_ls[5] = { 4, 8, 16, 32, 64 };
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const int txfm_size_ls[] = { 4, 8, 16, 32, 64 };
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const TxfmFunc fwd_txfm_func_ls[][2] = {
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const TxfmFunc fwd_txfm_func_ls[][txfm_type_num] = {
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{ av1_fdct4_new, av1_fadst4_new },
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{ av1_fdct8_new, av1_fadst8_new },
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{ av1_fdct16_new, av1_fadst16_new },
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{ av1_fdct32_new, av1_fadst32_new },
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#if CONFIG_TX64X64
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{ av1_fdct32_new, NULL },
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{ av1_fdct64_new, NULL },
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#endif
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};
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const TxfmFunc inv_txfm_func_ls[][2] = {
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const TxfmFunc inv_txfm_func_ls[][txfm_type_num] = {
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{ av1_idct4_new, av1_iadst4_new },
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{ av1_idct8_new, av1_iadst8_new },
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{ av1_idct16_new, av1_iadst16_new },
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{ av1_idct32_new, av1_iadst32_new },
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#if CONFIG_TX64X64
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{ av1_idct32_new, NULL },
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{ av1_idct64_new, NULL },
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#endif
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};
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// the maximum stage number of fwd/inv 1d dct/adst txfm is 12
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const int8_t cos_bit[12] = { 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13 };
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const int8_t range_bit[12] = { 32, 32, 32, 32, 32, 32, 32, 32, 32, 32, 32, 32 };
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const int8_t cos_bit = 13;
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const int8_t range_bit[12] = { 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20 };
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void reference_idct_1d_int(const int32_t *in, int32_t *out, int size) {
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double input[64];
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@ -54,8 +50,11 @@ void reference_idct_1d_int(const int32_t *in, int32_t *out, int size) {
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double output[64];
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libaom_test::reference_idct_1d(input, output, size);
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for (int i = 0; i < size; ++i)
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for (int i = 0; i < size; ++i) {
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ASSERT_GE(output[i], INT32_MIN);
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ASSERT_LE(output[i], INT32_MAX);
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out[i] = static_cast<int32_t>(round(output[i]));
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}
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}
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void random_matrix(int32_t *dst, int len, ACMRandom *rnd) {
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@ -73,24 +72,32 @@ void random_matrix(int32_t *dst, int len, ACMRandom *rnd) {
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TEST(av1_inv_txfm1d, InvAccuracyCheck) {
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ACMRandom rnd(ACMRandom::DeterministicSeed());
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const int count_test_block = 20000;
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const int max_error[] = { 6, 10, 19, 28 };
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const int max_error[] = { 6, 10, 19, 31, 40 };
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ASSERT_EQ(NELEMENTS(max_error), TX_SIZES);
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ASSERT_EQ(NELEMENTS(inv_txfm_func_ls), TX_SIZES);
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for (int k = 0; k < count_test_block; ++k) {
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// choose a random transform to test
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const int txfm_type = rnd.Rand8() % NELEMENTS(inv_txfm_func_ls);
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const int txfm_size = txfm_size_ls[txfm_type];
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const TxfmFunc txfm_func = inv_txfm_func_ls[txfm_type][0];
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const TX_SIZE tx_size = static_cast<TX_SIZE>(rnd.Rand8() % TX_SIZES);
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const int tx_size_pix = txfm_size_ls[tx_size];
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const TxfmFunc inv_txfm_func = inv_txfm_func_ls[tx_size][0];
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int32_t input[64];
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random_matrix(input, txfm_size, &rnd);
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random_matrix(input, tx_size_pix, &rnd);
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// 64x64 transform assumes last 32 values are zero.
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memset(input + 32, 0, 32 * sizeof(input[0]));
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int32_t ref_output[64];
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reference_idct_1d_int(input, ref_output, txfm_size);
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reference_idct_1d_int(input, ref_output, tx_size_pix);
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int32_t output[64];
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txfm_func(input, output, cos_bit, range_bit);
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inv_txfm_func(input, output, cos_bit, range_bit);
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for (int i = 0; i < txfm_size; ++i) {
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EXPECT_LE(abs(output[i] - ref_output[i]), max_error[txfm_type]);
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for (int i = 0; i < tx_size_pix; ++i) {
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EXPECT_LE(abs(output[i] - ref_output[i]), max_error[tx_size])
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<< "tx_size = " << tx_size << ", i = " << i
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<< ", output[i] = " << output[i]
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<< ", ref_output[i] = " << ref_output[i];
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}
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}
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}
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