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1 /* | 1 /* |
2 * Copyright (c) 2010 The WebRTC project authors. All Rights Reserved. | 2 * Copyright (c) 2010 The WebRTC 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 | 10 |
11 #include "webrtc/media/base/videoadapter.h" | 11 #include "webrtc/media/base/videoadapter.h" |
12 | 12 |
13 #include <algorithm> | 13 #include <algorithm> |
14 #include <cmath> | |
14 #include <cstdlib> | 15 #include <cstdlib> |
15 #include <limits> | 16 #include <limits> |
16 | 17 |
18 #include "webrtc/base/arraysize.h" | |
17 #include "webrtc/base/checks.h" | 19 #include "webrtc/base/checks.h" |
18 #include "webrtc/base/logging.h" | 20 #include "webrtc/base/logging.h" |
21 #include "webrtc/base/optional.h" | |
19 #include "webrtc/media/base/mediaconstants.h" | 22 #include "webrtc/media/base/mediaconstants.h" |
20 #include "webrtc/media/base/videocommon.h" | 23 #include "webrtc/media/base/videocommon.h" |
21 | 24 |
22 namespace { | 25 namespace { |
23 | |
24 struct Fraction { | 26 struct Fraction { |
25 int numerator; | 27 int numerator; |
26 int denominator; | 28 int denominator; |
27 }; | 29 }; |
28 | 30 |
29 // Scale factors optimized for in libYUV that we accept. | 31 // Round |value_to_round| to a multiple of |multiple|. Prefer rounding upwards, |
30 // Must be sorted in decreasing scale factors for FindScaleLargerThan to work. | 32 // but never more than |max_value|. |
31 const Fraction kScaleFractions[] = { | 33 int roundUp(int value_to_round, int multiple, int max_value) { |
32 {1, 1}, | 34 const int rounded_value = |
33 {3, 4}, | 35 (value_to_round + multiple - 1) / multiple * multiple; |
34 {1, 2}, | 36 return rounded_value <= max_value ? rounded_value |
35 {3, 8}, | 37 : (max_value / multiple * multiple); |
36 {1, 4}, | |
37 {3, 16}, | |
38 }; | |
39 | |
40 // Round |valueToRound| to a multiple of |multiple|. Prefer rounding upwards, | |
41 // but never more than |maxValue|. | |
42 int roundUp(int valueToRound, int multiple, int maxValue) { | |
43 const int roundedValue = (valueToRound + multiple - 1) / multiple * multiple; | |
44 return roundedValue <= maxValue ? roundedValue | |
45 : (maxValue / multiple * multiple); | |
46 } | 38 } |
47 | 39 |
48 Fraction FindScaleLessThanOrEqual(int input_num_pixels, int target_num_pixels) { | 40 // Generates a scale factor that makes |input_num_pixels| smaller or |
49 float best_distance = std::numeric_limits<float>::max(); | 41 // larger than |target_num_pixels|, depending on the value of |step_up|. |
50 Fraction best_scale = {0, 1}; // Default to 0 if nothing matches. | 42 Fraction FindScale(int input_num_pixels, int target_num_pixels, bool step_up) { |
51 for (const auto& fraction : kScaleFractions) { | 43 Fraction best_scale = Fraction{1, 1}; |
52 const float scale = | 44 Fraction last_scale = Fraction{1, 1}; |
53 fraction.numerator / static_cast<float>(fraction.denominator); | 45 const float target_scale = |
54 float test_num_pixels = input_num_pixels * scale * scale; | 46 sqrt(target_num_pixels / static_cast<float>(input_num_pixels)); |
55 float diff = target_num_pixels - test_num_pixels; | 47 while (best_scale.numerator > (target_scale * best_scale.denominator)) { |
56 if (diff < 0) { | 48 last_scale = best_scale; |
57 continue; | 49 if (best_scale.numerator % 3 == 0 && best_scale.denominator % 2 == 0) { |
58 } | 50 // Multiply by 2/3 |
59 if (diff < best_distance) { | 51 best_scale.numerator /= 3; |
60 best_distance = diff; | 52 best_scale.denominator /= 2; |
61 best_scale = fraction; | 53 } else { |
62 if (best_distance == 0) { // Found exact match. | 54 // Multiply by 3/4 |
63 break; | 55 best_scale.numerator *= 3; |
64 } | 56 best_scale.denominator *= 4; |
65 } | 57 } |
66 } | 58 } |
59 if (step_up) | |
60 return last_scale; | |
67 return best_scale; | 61 return best_scale; |
68 } | 62 } |
69 | |
70 Fraction FindScaleLargerThan(int input_num_pixels, | |
71 int target_num_pixels, | |
72 int* resulting_number_of_pixels) { | |
73 float best_distance = std::numeric_limits<float>::max(); | |
74 Fraction best_scale = {1, 1}; // Default to unscaled if nothing matches. | |
75 // Default to input number of pixels. | |
76 float best_number_of_pixels = input_num_pixels; | |
77 for (const auto& fraction : kScaleFractions) { | |
78 const float scale = | |
79 fraction.numerator / static_cast<float>(fraction.denominator); | |
80 float test_num_pixels = input_num_pixels * scale * scale; | |
81 float diff = test_num_pixels - target_num_pixels; | |
82 if (diff <= 0) { | |
83 break; | |
84 } | |
85 if (diff < best_distance) { | |
86 best_distance = diff; | |
87 best_scale = fraction; | |
88 best_number_of_pixels = test_num_pixels; | |
89 } | |
90 } | |
91 | |
92 *resulting_number_of_pixels = static_cast<int>(best_number_of_pixels + .5f); | |
93 return best_scale; | |
94 } | |
95 | |
96 Fraction FindScale(int input_num_pixels, | |
97 int max_pixel_count_step_up, | |
98 int max_pixel_count) { | |
99 // Try scale just above |max_pixel_count_step_up_|. | |
100 if (max_pixel_count_step_up > 0) { | |
101 int resulting_pixel_count; | |
102 const Fraction scale = FindScaleLargerThan( | |
103 input_num_pixels, max_pixel_count_step_up, &resulting_pixel_count); | |
104 if (resulting_pixel_count <= max_pixel_count) | |
105 return scale; | |
106 } | |
107 // Return largest scale below |max_pixel_count|. | |
108 return FindScaleLessThanOrEqual(input_num_pixels, max_pixel_count); | |
109 } | |
110 | |
111 } // namespace | 63 } // namespace |
112 | 64 |
113 namespace cricket { | 65 namespace cricket { |
114 | 66 |
115 VideoAdapter::VideoAdapter() | 67 VideoAdapter::VideoAdapter(int required_resolution_alignment) |
116 : frames_in_(0), | 68 : frames_in_(0), |
117 frames_out_(0), | 69 frames_out_(0), |
118 frames_scaled_(0), | 70 frames_scaled_(0), |
119 adaption_changes_(0), | 71 adaption_changes_(0), |
120 previous_width_(0), | 72 previous_width_(0), |
121 previous_height_(0), | 73 previous_height_(0), |
74 required_resolution_alignment_(required_resolution_alignment), | |
122 resolution_request_max_pixel_count_(std::numeric_limits<int>::max()), | 75 resolution_request_max_pixel_count_(std::numeric_limits<int>::max()), |
123 resolution_request_max_pixel_count_step_up_(0) {} | 76 resolution_request_max_pixel_count_step_up_(0) {} |
124 | 77 |
78 VideoAdapter::VideoAdapter() : VideoAdapter(1) {} | |
79 | |
125 VideoAdapter::~VideoAdapter() {} | 80 VideoAdapter::~VideoAdapter() {} |
126 | 81 |
127 bool VideoAdapter::KeepFrame(int64_t in_timestamp_ns) { | 82 bool VideoAdapter::KeepFrame(int64_t in_timestamp_ns) { |
128 rtc::CritScope cs(&critical_section_); | 83 rtc::CritScope cs(&critical_section_); |
129 if (!requested_format_ || requested_format_->interval == 0) | 84 if (!requested_format_ || requested_format_->interval == 0) |
130 return true; | 85 return true; |
131 | 86 |
132 if (next_frame_timestamp_ns_) { | 87 if (next_frame_timestamp_ns_) { |
133 // Time until next frame should be outputted. | 88 // Time until next frame should be outputted. |
134 const int64_t time_until_next_frame_ns = | 89 const int64_t time_until_next_frame_ns = |
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158 int64_t in_timestamp_ns, | 113 int64_t in_timestamp_ns, |
159 int* cropped_width, | 114 int* cropped_width, |
160 int* cropped_height, | 115 int* cropped_height, |
161 int* out_width, | 116 int* out_width, |
162 int* out_height) { | 117 int* out_height) { |
163 rtc::CritScope cs(&critical_section_); | 118 rtc::CritScope cs(&critical_section_); |
164 ++frames_in_; | 119 ++frames_in_; |
165 | 120 |
166 // The max output pixel count is the minimum of the requests from | 121 // The max output pixel count is the minimum of the requests from |
167 // OnOutputFormatRequest and OnResolutionRequest. | 122 // OnOutputFormatRequest and OnResolutionRequest. |
123 const bool step_up = resolution_request_max_pixel_count_step_up_; | |
168 int max_pixel_count = resolution_request_max_pixel_count_; | 124 int max_pixel_count = resolution_request_max_pixel_count_; |
169 if (requested_format_) { | 125 if (requested_format_) { |
126 // TODO(kthelgason): remove the - |step_up| hack when we change how | |
magjed_webrtc
2016/12/08 13:45:32
Explain also how this logic works, i.e. we are not
| |
127 // resolution is requested from VideoSourceProxy. | |
170 max_pixel_count = std::min( | 128 max_pixel_count = std::min( |
171 max_pixel_count, requested_format_->width * requested_format_->height); | 129 max_pixel_count, |
130 requested_format_->width * requested_format_->height - step_up); | |
172 } | 131 } |
173 | 132 |
174 // Drop the input frame if necessary. | 133 // Drop the input frame if necessary. |
175 if (max_pixel_count == 0 || !KeepFrame(in_timestamp_ns)) { | 134 if (max_pixel_count == 0 || !KeepFrame(in_timestamp_ns)) { |
176 // Show VAdapt log every 90 frames dropped. (3 seconds) | 135 // Show VAdapt log every 90 frames dropped. (3 seconds) |
177 if ((frames_in_ - frames_out_) % 90 == 0) { | 136 if ((frames_in_ - frames_out_) % 90 == 0) { |
178 // TODO(fbarchard): Reduce to LS_VERBOSE when adapter info is not needed | 137 // TODO(fbarchard): Reduce to LS_VERBOSE when adapter info is not needed |
179 // in default calls. | 138 // in default calls. |
180 LOG(LS_INFO) << "VAdapt Drop Frame: scaled " << frames_scaled_ | 139 LOG(LS_INFO) << "VAdapt Drop Frame: scaled " << frames_scaled_ |
181 << " / out " << frames_out_ | 140 << " / out " << frames_out_ |
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204 std::swap(requested_format_->width, requested_format_->height); | 163 std::swap(requested_format_->width, requested_format_->height); |
205 } | 164 } |
206 const float requested_aspect = | 165 const float requested_aspect = |
207 requested_format_->width / | 166 requested_format_->width / |
208 static_cast<float>(requested_format_->height); | 167 static_cast<float>(requested_format_->height); |
209 *cropped_width = | 168 *cropped_width = |
210 std::min(in_width, static_cast<int>(in_height * requested_aspect)); | 169 std::min(in_width, static_cast<int>(in_height * requested_aspect)); |
211 *cropped_height = | 170 *cropped_height = |
212 std::min(in_height, static_cast<int>(in_width / requested_aspect)); | 171 std::min(in_height, static_cast<int>(in_width / requested_aspect)); |
213 } | 172 } |
214 | |
215 // Find best scale factor. | |
216 const Fraction scale = | 173 const Fraction scale = |
217 FindScale(*cropped_width * *cropped_height, | 174 FindScale(*cropped_width * *cropped_height, max_pixel_count, step_up); |
218 resolution_request_max_pixel_count_step_up_, max_pixel_count); | |
219 | |
220 // Adjust cropping slightly to get even integer output size and a perfect | 175 // Adjust cropping slightly to get even integer output size and a perfect |
221 // scale factor. | 176 // scale factor. Make sure the resulting dimensions are aligned correctly |
222 *cropped_width = roundUp(*cropped_width, scale.denominator, in_width); | 177 // to be nice to hardware encoders. |
223 *cropped_height = roundUp(*cropped_height, scale.denominator, in_height); | 178 *cropped_width = |
179 roundUp(*cropped_width, | |
180 scale.denominator * required_resolution_alignment_, in_width); | |
181 *cropped_height = | |
182 roundUp(*cropped_height, | |
183 scale.denominator * required_resolution_alignment_, in_height); | |
224 RTC_DCHECK_EQ(0, *cropped_width % scale.denominator); | 184 RTC_DCHECK_EQ(0, *cropped_width % scale.denominator); |
225 RTC_DCHECK_EQ(0, *cropped_height % scale.denominator); | 185 RTC_DCHECK_EQ(0, *cropped_height % scale.denominator); |
226 | 186 |
227 // Calculate final output size. | 187 // Calculate final output size. |
228 *out_width = *cropped_width / scale.denominator * scale.numerator; | 188 *out_width = *cropped_width / scale.denominator * scale.numerator; |
229 *out_height = *cropped_height / scale.denominator * scale.numerator; | 189 *out_height = *cropped_height / scale.denominator * scale.numerator; |
190 RTC_DCHECK_EQ(0, *out_height % required_resolution_alignment_); | |
191 RTC_DCHECK_EQ(0, *out_height % required_resolution_alignment_); | |
230 | 192 |
231 ++frames_out_; | 193 ++frames_out_; |
232 if (scale.numerator != scale.denominator) | 194 if (scale.numerator != scale.denominator) |
233 ++frames_scaled_; | 195 ++frames_scaled_; |
234 | 196 |
235 if (previous_width_ && (previous_width_ != *out_width || | 197 if (previous_width_ && (previous_width_ != *out_width || |
236 previous_height_ != *out_height)) { | 198 previous_height_ != *out_height)) { |
237 ++adaption_changes_; | 199 ++adaption_changes_; |
238 LOG(LS_INFO) << "Frame size changed: scaled " << frames_scaled_ << " / out " | 200 LOG(LS_INFO) << "Frame size changed: scaled " << frames_scaled_ << " / out " |
239 << frames_out_ << " / in " << frames_in_ | 201 << frames_out_ << " / in " << frames_in_ |
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253 void VideoAdapter::OnOutputFormatRequest(const VideoFormat& format) { | 215 void VideoAdapter::OnOutputFormatRequest(const VideoFormat& format) { |
254 rtc::CritScope cs(&critical_section_); | 216 rtc::CritScope cs(&critical_section_); |
255 requested_format_ = rtc::Optional<VideoFormat>(format); | 217 requested_format_ = rtc::Optional<VideoFormat>(format); |
256 next_frame_timestamp_ns_ = rtc::Optional<int64_t>(); | 218 next_frame_timestamp_ns_ = rtc::Optional<int64_t>(); |
257 } | 219 } |
258 | 220 |
259 void VideoAdapter::OnResolutionRequest( | 221 void VideoAdapter::OnResolutionRequest( |
260 rtc::Optional<int> max_pixel_count, | 222 rtc::Optional<int> max_pixel_count, |
261 rtc::Optional<int> max_pixel_count_step_up) { | 223 rtc::Optional<int> max_pixel_count_step_up) { |
262 rtc::CritScope cs(&critical_section_); | 224 rtc::CritScope cs(&critical_section_); |
263 resolution_request_max_pixel_count_ = | 225 resolution_request_max_pixel_count_ = max_pixel_count.value_or( |
264 max_pixel_count.value_or(std::numeric_limits<int>::max()); | 226 max_pixel_count_step_up.value_or(std::numeric_limits<int>::max())); |
265 resolution_request_max_pixel_count_step_up_ = | 227 resolution_request_max_pixel_count_step_up_ = |
magjed_webrtc
2016/12/08 13:45:32
Store |scale_up| instead of |resolution_request_ma
| |
266 max_pixel_count_step_up.value_or(0); | 228 max_pixel_count_step_up.value_or(0); |
267 } | 229 } |
268 | 230 |
269 } // namespace cricket | 231 } // namespace cricket |
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