| OLD | NEW |
| 1 /* | 1 /* |
| 2 * Copyright (c) 2012 The WebM project authors. All Rights Reserved. | 2 * Copyright (c) 2012 The WebM project authors. All Rights Reserved. |
| 3 * | 3 * |
| 4 * Use of this source code is governed by a BSD-style license | 4 * Use of this source code is governed by a BSD-style license |
| 5 * that can be found in the LICENSE file in the root of the source | 5 * that can be found in the LICENSE file in the root of the source |
| 6 * tree. An additional intellectual property rights grant can be found | 6 * tree. An additional intellectual property rights grant can be found |
| 7 * in the file PATENTS. All contributing project authors may | 7 * in the file PATENTS. All contributing project authors may |
| 8 * be found in the AUTHORS file in the root of the source tree. | 8 * be found in the AUTHORS file in the root of the source tree. |
| 9 */ | 9 */ |
| 10 | |
| 11 | 10 |
| 12 #include <math.h> | 11 #include <math.h> |
| 13 #include <stddef.h> | |
| 14 #include <stdio.h> | |
| 15 #include <stdlib.h> | 12 #include <stdlib.h> |
| 16 #include <string.h> | 13 #include <string.h> |
| 17 #include <sys/types.h> | |
| 18 | 14 |
| 15 #include "third_party/googletest/src/include/gtest/gtest.h" |
| 19 | 16 |
| 20 extern "C" { | 17 extern "C" { |
| 21 #include "vpx_rtcd.h" | 18 #include "vp9_rtcd.h" |
| 22 } | 19 } |
| 23 | 20 |
| 24 #include "test/acm_random.h" | 21 #include "acm_random.h" |
| 25 #include "third_party/googletest/src/include/gtest/gtest.h" | |
| 26 #include "vpx/vpx_integer.h" | 22 #include "vpx/vpx_integer.h" |
| 27 | 23 |
| 24 using libvpx_test::ACMRandom; |
| 28 | 25 |
| 29 namespace { | 26 namespace { |
| 30 | 27 |
| 31 const int cospi8sqrt2minus1 = 20091; | 28 TEST(Vp9FdctTest, SignBiasCheck) { |
| 32 const int sinpi8sqrt2 = 35468; | |
| 33 | |
| 34 void reference_idct4x4(const int16_t *input, int16_t *output) { | |
| 35 const int16_t *ip = input; | |
| 36 int16_t *op = output; | |
| 37 | |
| 38 for (int i = 0; i < 4; ++i) { | |
| 39 const int a1 = ip[0] + ip[8]; | |
| 40 const int b1 = ip[0] - ip[8]; | |
| 41 const int temp1 = (ip[4] * sinpi8sqrt2) >> 16; | |
| 42 const int temp2 = ip[12] + ((ip[12] * cospi8sqrt2minus1) >> 16); | |
| 43 const int c1 = temp1 - temp2; | |
| 44 const int temp3 = ip[4] + ((ip[4] * cospi8sqrt2minus1) >> 16); | |
| 45 const int temp4 = (ip[12] * sinpi8sqrt2) >> 16; | |
| 46 const int d1 = temp3 + temp4; | |
| 47 op[0] = a1 + d1; | |
| 48 op[12] = a1 - d1; | |
| 49 op[4] = b1 + c1; | |
| 50 op[8] = b1 - c1; | |
| 51 ++ip; | |
| 52 ++op; | |
| 53 } | |
| 54 ip = output; | |
| 55 op = output; | |
| 56 for (int i = 0; i < 4; ++i) { | |
| 57 const int a1 = ip[0] + ip[2]; | |
| 58 const int b1 = ip[0] - ip[2]; | |
| 59 const int temp1 = (ip[1] * sinpi8sqrt2) >> 16; | |
| 60 const int temp2 = ip[3] + ((ip[3] * cospi8sqrt2minus1) >> 16); | |
| 61 const int c1 = temp1 - temp2; | |
| 62 const int temp3 = ip[1] + ((ip[1] * cospi8sqrt2minus1) >> 16); | |
| 63 const int temp4 = (ip[3] * sinpi8sqrt2) >> 16; | |
| 64 const int d1 = temp3 + temp4; | |
| 65 op[0] = (a1 + d1 + 4) >> 3; | |
| 66 op[3] = (a1 - d1 + 4) >> 3; | |
| 67 op[1] = (b1 + c1 + 4) >> 3; | |
| 68 op[2] = (b1 - c1 + 4) >> 3; | |
| 69 ip += 4; | |
| 70 op += 4; | |
| 71 } | |
| 72 } | |
| 73 | |
| 74 using libvpx_test::ACMRandom; | |
| 75 | |
| 76 TEST(Vp8FdctTest, SignBiasCheck) { | |
| 77 ACMRandom rnd(ACMRandom::DeterministicSeed()); | 29 ACMRandom rnd(ACMRandom::DeterministicSeed()); |
| 78 int16_t test_input_block[16]; | 30 int16_t test_input_block[16]; |
| 79 int16_t test_output_block[16]; | 31 int16_t test_output_block[16]; |
| 80 const int pitch = 8; | 32 const int pitch = 8; |
| 81 int count_sign_block[16][2]; | 33 int count_sign_block[16][2]; |
| 82 const int count_test_block = 1000000; | 34 const int count_test_block = 1000000; |
| 83 | 35 |
| 84 memset(count_sign_block, 0, sizeof(count_sign_block)); | 36 memset(count_sign_block, 0, sizeof(count_sign_block)); |
| 85 | 37 |
| 86 for (int i = 0; i < count_test_block; ++i) { | 38 for (int i = 0; i < count_test_block; ++i) { |
| 87 // Initialize a test block with input range [-255, 255]. | 39 // Initialize a test block with input range [-255, 255]. |
| 88 for (int j = 0; j < 16; ++j) | 40 for (int j = 0; j < 16; ++j) |
| 89 test_input_block[j] = rnd.Rand8() - rnd.Rand8(); | 41 test_input_block[j] = rnd.Rand8() - rnd.Rand8(); |
| 90 | 42 |
| 91 vp8_short_fdct4x4_c(test_input_block, test_output_block, pitch); | 43 // TODO(Yaowu): this should be converted to a parameterized test |
| 44 // to test optimized versions of this function. |
| 45 vp9_short_fdct4x4_c(test_input_block, test_output_block, pitch); |
| 92 | 46 |
| 93 for (int j = 0; j < 16; ++j) { | 47 for (int j = 0; j < 16; ++j) { |
| 94 if (test_output_block[j] < 0) | 48 if (test_output_block[j] < 0) |
| 95 ++count_sign_block[j][0]; | 49 ++count_sign_block[j][0]; |
| 96 else if (test_output_block[j] > 0) | 50 else if (test_output_block[j] > 0) |
| 97 ++count_sign_block[j][1]; | 51 ++count_sign_block[j][1]; |
| 98 } | 52 } |
| 99 } | 53 } |
| 100 | 54 |
| 101 bool bias_acceptable = true; | 55 for (int j = 0; j < 16; ++j) { |
| 102 for (int j = 0; j < 16; ++j) | 56 const bool bias_acceptable = (abs(count_sign_block[j][0] - |
| 103 bias_acceptable = bias_acceptable && | 57 count_sign_block[j][1]) < 10000); |
| 104 (abs(count_sign_block[j][0] - count_sign_block[j][1]) < 10000); | 58 EXPECT_TRUE(bias_acceptable) |
| 105 | 59 << "Error: 4x4 FDCT has a sign bias > 1%" |
| 106 EXPECT_EQ(true, bias_acceptable) | 60 << " for input range [-255, 255] at index " << j; |
| 107 << "Error: 4x4 FDCT has a sign bias > 1% for input range [-255, 255]"; | 61 } |
| 108 | 62 |
| 109 memset(count_sign_block, 0, sizeof(count_sign_block)); | 63 memset(count_sign_block, 0, sizeof(count_sign_block)); |
| 110 | 64 |
| 111 for (int i = 0; i < count_test_block; ++i) { | 65 for (int i = 0; i < count_test_block; ++i) { |
| 112 // Initialize a test block with input range [-15, 15]. | 66 // Initialize a test block with input range [-15, 15]. |
| 113 for (int j = 0; j < 16; ++j) | 67 for (int j = 0; j < 16; ++j) |
| 114 test_input_block[j] = (rnd.Rand8() >> 4) - (rnd.Rand8() >> 4); | 68 test_input_block[j] = (rnd.Rand8() >> 4) - (rnd.Rand8() >> 4); |
| 115 | 69 |
| 116 vp8_short_fdct4x4_c(test_input_block, test_output_block, pitch); | 70 // TODO(Yaowu): this should be converted to a parameterized test |
| 71 // to test optimized versions of this function. |
| 72 vp9_short_fdct4x4_c(test_input_block, test_output_block, pitch); |
| 117 | 73 |
| 118 for (int j = 0; j < 16; ++j) { | 74 for (int j = 0; j < 16; ++j) { |
| 119 if (test_output_block[j] < 0) | 75 if (test_output_block[j] < 0) |
| 120 ++count_sign_block[j][0]; | 76 ++count_sign_block[j][0]; |
| 121 else if (test_output_block[j] > 0) | 77 else if (test_output_block[j] > 0) |
| 122 ++count_sign_block[j][1]; | 78 ++count_sign_block[j][1]; |
| 123 } | 79 } |
| 124 } | 80 } |
| 125 | 81 |
| 126 bias_acceptable = true; | 82 for (int j = 0; j < 16; ++j) { |
| 127 for (int j = 0; j < 16; ++j) | 83 const bool bias_acceptable = (abs(count_sign_block[j][0] - |
| 128 bias_acceptable = bias_acceptable && | 84 count_sign_block[j][1]) < 100000); |
| 129 (abs(count_sign_block[j][0] - count_sign_block[j][1]) < 100000); | 85 EXPECT_TRUE(bias_acceptable) |
| 130 | 86 << "Error: 4x4 FDCT has a sign bias > 10%" |
| 131 EXPECT_EQ(true, bias_acceptable) | 87 << " for input range [-15, 15] at index " << j; |
| 132 << "Error: 4x4 FDCT has a sign bias > 10% for input range [-15, 15]"; | 88 } |
| 133 }; | 89 }; |
| 134 | 90 |
| 135 TEST(Vp8FdctTest, RoundTripErrorCheck) { | 91 TEST(Vp9FdctTest, RoundTripErrorCheck) { |
| 136 ACMRandom rnd(ACMRandom::DeterministicSeed()); | 92 ACMRandom rnd(ACMRandom::DeterministicSeed()); |
| 137 int max_error = 0; | 93 int max_error = 0; |
| 138 double total_error = 0; | 94 double total_error = 0; |
| 139 const int count_test_block = 1000000; | 95 const int count_test_block = 1000000; |
| 140 for (int i = 0; i < count_test_block; ++i) { | 96 for (int i = 0; i < count_test_block; ++i) { |
| 141 int16_t test_input_block[16]; | 97 int16_t test_input_block[16]; |
| 142 int16_t test_temp_block[16]; | 98 int16_t test_temp_block[16]; |
| 143 int16_t test_output_block[16]; | 99 int16_t test_output_block[16]; |
| 144 | 100 |
| 145 // Initialize a test block with input range [-255, 255]. | 101 // Initialize a test block with input range [-255, 255]. |
| 146 for (int j = 0; j < 16; ++j) | 102 for (int j = 0; j < 16; ++j) |
| 147 test_input_block[j] = rnd.Rand8() - rnd.Rand8(); | 103 test_input_block[j] = rnd.Rand8() - rnd.Rand8(); |
| 148 | 104 |
| 105 // TODO(Yaowu): this should be converted to a parameterized test |
| 106 // to test optimized versions of this function. |
| 149 const int pitch = 8; | 107 const int pitch = 8; |
| 150 vp8_short_fdct4x4_c(test_input_block, test_temp_block, pitch); | 108 vp9_short_fdct4x4_c(test_input_block, test_temp_block, pitch); |
| 151 reference_idct4x4(test_temp_block, test_output_block); | 109 |
| 110 for (int j = 0; j < 16; ++j) { |
| 111 if(test_temp_block[j] > 0) { |
| 112 test_temp_block[j] += 2; |
| 113 test_temp_block[j] /= 4; |
| 114 test_temp_block[j] *= 4; |
| 115 } else { |
| 116 test_temp_block[j] -= 2; |
| 117 test_temp_block[j] /= 4; |
| 118 test_temp_block[j] *= 4; |
| 119 } |
| 120 } |
| 121 |
| 122 // Because the bitstream is not frozen yet, use the idct in the codebase. |
| 123 vp9_short_idct4x4llm_c(test_temp_block, test_output_block, pitch); |
| 152 | 124 |
| 153 for (int j = 0; j < 16; ++j) { | 125 for (int j = 0; j < 16; ++j) { |
| 154 const int diff = test_input_block[j] - test_output_block[j]; | 126 const int diff = test_input_block[j] - test_output_block[j]; |
| 155 const int error = diff * diff; | 127 const int error = diff * diff; |
| 156 if (max_error < error) | 128 if (max_error < error) |
| 157 max_error = error; | 129 max_error = error; |
| 158 total_error += error; | 130 total_error += error; |
| 159 } | 131 } |
| 160 } | 132 } |
| 161 | 133 EXPECT_GE(1, max_error) |
| 162 EXPECT_GE(1, max_error ) | 134 << "Error: FDCT/IDCT has an individual roundtrip error > 1"; |
| 163 << "Error: FDCT/IDCT has an individual roundtrip error > 1"; | |
| 164 | 135 |
| 165 EXPECT_GE(count_test_block, total_error) | 136 EXPECT_GE(count_test_block, total_error) |
| 166 << "Error: FDCT/IDCT has average roundtrip error > 1 per block"; | 137 << "Error: FDCT/IDCT has average roundtrip error > 1 per block"; |
| 167 }; | 138 }; |
| 168 | 139 |
| 169 } // namespace | 140 } // namespace |
| OLD | NEW |