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Issue 10702050: Add SincResampler ported from WebKit. (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src
Patch Set: Remove unused variable. Created 8 years, 5 months ago
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1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4 //
5 // Input buffer layout, dividing the total buffer into regions (r0 - r5):
6 //
7 // |----------------|-----------------------------------------|----------------|
8 //
9 // kBlockSize + kKernelSize / 2
10 // <--------------------------------------------------------->
11 // r0
12 //
13 // kKernelSize / 2 kKernelSize / 2 kKernelSize / 2 kKernelSize / 2
14 // <---------------> <---------------> <---------------> <--------------->
15 // r1 r2 r3 r4
16 //
17 // kBlockSize
18 // <--------------------------------------->
Ami GONE FROM CHROMIUM 2012/07/10 03:23:00 I hope you have tests covering the boundary cases
DaleCurtis 2012/07/10 05:24:48 Did you have something particular in mind? These a
Ami GONE FROM CHROMIUM 2012/07/10 16:48:50 True, but they depend on the magic constants. My
DaleCurtis 2012/07/10 21:38:55 I think the current unit test covers this adequate
19 // r5
20 //
21 // The algorithm:
22 //
23 // 1) Consume input frames into r0 (r1 is zero-initialized).
24 // 2) Position kernel centered at start of r0 (r2) and generate output frames
25 // until kernel is centered at start of r4 or we've finished generating all
26 // the output frames.
27 // 3) Copy r3 to r1 and r4 to r2.
28 // 4) Consume input frames into r5 (zero-pad if we run out of input).
29 // 5) Goto (2) until all of input is consumed.
30 //
31 // Note: we're glossing over how the sub-sample handling works with
32 // |virtual_source_idx_|, etc.
33
34 // MSVC++ requires this to be set before any other includes to get M_PI.
35 #define _USE_MATH_DEFINES
36
37 #include "media/base/sinc_resampler.h"
38
39 #include <cmath>
40
41 #include "base/logging.h"
42
43 namespace media {
44
45 SincResampler::SincResampler(double io_sample_rate_ratio, const ReadCB& read_cb)
46 : io_sample_rate_ratio_(io_sample_rate_ratio),
47 virtual_source_idx_(0),
48 buffer_primed_(false),
49 read_cb_(read_cb),
50 // TODO(dalecurtis): When we switch to AVX/SSE optimization, we'll need to
51 // allocate with 32-byte alignment and ensure they're sized % 32 bytes.
52 kernel_storage_(new float[kKernelStorageSize]),
53 input_buffer_(new float[kBufferSize]) {
54 DCHECK_EQ(kKernelSize % 2, 0) << "kKernelSize must be even!";
55 DCHECK_GT(kBlockSize, kKernelSize)
56 << "kBlockSize must be greater than kKernelSize!";
57
58 memset(kernel_storage_.get(), 0,
59 sizeof(*kernel_storage_.get()) * kKernelStorageSize);
60 memset(input_buffer_.get(), 0, sizeof(*input_buffer_.get()) * kBufferSize);
61
62 InitializeKernel();
63 }
64
65 SincResampler::~SincResampler() {}
66
67 void SincResampler::InitializeKernel() {
68 // Blackman window parameters.
69 double alpha = 0.16;
Ami GONE FROM CHROMIUM 2012/07/10 03:23:00 static const this and the next three?
DaleCurtis 2012/07/10 21:38:55 Done.
70 double a0 = 0.5 * (1.0 - alpha);
71 double a1 = 0.5;
72 double a2 = 0.5 * alpha;
73
74 // |sinc_scale_factor| is basically the normalized cutoff frequency of the
75 // low-pass filter.
76 double sinc_scale_factor =
77 io_sample_rate_ratio_ > 1.0 ? 1.0 / io_sample_rate_ratio_ : 1.0;
78
79 // The sinc function is an idealized brick-wall filter, but since we're
80 // windowing it the transition from pass to stop does not happen right away.
81 // So we should adjust the lowpass filter cutoff slightly downward to avoid
82 // some aliasing at the very high-end.
83 // TODO(crogers): this value is empirical and to be more exact should vary
84 // depending on kKernelSize.
85 sinc_scale_factor *= 0.9;
86
87 // Generates a set of windowed sinc() kernels.
88 // We generate a range of sub-sample offsets from 0.0 to 1.0.
89 for (int offset_idx = 0; offset_idx <= kKernelOffsetCount; ++offset_idx) {
90 double subsample_offset =
91 static_cast<double>(offset_idx) / kKernelOffsetCount;
92
93 for (int i = 0; i < kKernelSize; ++i) {
94 // Compute the sinc with offset.
95 double s =
96 sinc_scale_factor * M_PI * (i - kKernelSize / 2 - subsample_offset);
97 double sinc = (!s ? 1.0 : sin(s) / s) * sinc_scale_factor;
98
99 // Compute Blackman window, matching the offset of the sinc().
100 double x = (i - subsample_offset) / kKernelSize;
101 double window = a0 - a1 * cos(2.0 * M_PI * x) + a2 * cos(4.0 * M_PI * x);
102
103 // Window the sinc() function and store at the correct offset.
104 kernel_storage_[i + offset_idx * kKernelSize] = sinc * window;
105 }
106 }
107 }
108
109 void SincResampler::Resample(float* destination, int frames) {
110 int remaining_frames = frames;
111
112 // Setup various region pointers in the buffer (see diagram above).
113 float* r0 = input_buffer_.get() + kKernelSize / 2;
114 float* r1 = input_buffer_.get();
115 float* r2 = r0;
116 float* r3 = r0 + kBlockSize - kKernelSize / 2;
117 float* r4 = r0 + kBlockSize;
118 float* r5 = r0 + kKernelSize / 2;
119
120 // Step (1) -- Prime the input buffer at the start of the input stream.
121 if (!buffer_primed_) {
122 read_cb_.Run(r0, kBlockSize + kKernelSize / 2);
123 buffer_primed_ = true;
124 }
125
126 // Step (2) -- Resample!
127 while (remaining_frames) {
128 while (virtual_source_idx_ < kBlockSize) {
129 // |virtual_source_idx_| lies in between two kernel offsets so figure out
130 // what they are.
131 int source_idx = static_cast<int>(virtual_source_idx_);
132 double subsample_remainder = virtual_source_idx_ - source_idx;
133
134 double virtual_offset_idx = subsample_remainder * kKernelOffsetCount;
135 int offset_idx = static_cast<int>(virtual_offset_idx);
136
137 float* k1 = kernel_storage_.get() + offset_idx * kKernelSize;
138 float* k2 = k1 + kKernelSize;
139
140 // Initialize input pointer based on quantized |virtual_source_idx_|.
141 float* input_ptr = r1 + source_idx;
142
143 // We'll compute "convolutions" for the two kernels which straddle
144 // |virtual_source_idx_|.
145 float sum1 = 0;
146 float sum2 = 0;
147
148 // Figure out how much to weight each kernel's "convolution".
149 double kernel_interpolation_factor = virtual_offset_idx - offset_idx;
150
151 // Generate a single output sample.
152 int n = kKernelSize;
153 float input;
154 // TODO(dalecurtis): For initial commit, I've ripped out all the SSE
155 // optimizations, these definitely need to go back in before release.
156 while (n--) {
157 input = *input_ptr++;
158 sum1 += input * *k1++;
159 sum2 += input * *k2++;
160 }
161
162 // Linearly interpolate the two "convolutions".
163 double result = (1.0 - kernel_interpolation_factor) * sum1
164 + kernel_interpolation_factor * sum2;
165
166 *destination++ = result;
167
168 // Advance the virtual index.
169 virtual_source_idx_ += io_sample_rate_ratio_;
170
171 if (!--remaining_frames)
172 return;
Ami GONE FROM CHROMIUM 2012/07/10 16:48:50 What happens if virtual_source_idx_ just passed kB
Chris Rogers 2012/07/10 17:37:11 I think this should be OK because the next time Re
DaleCurtis 2012/07/10 21:38:55 Yes, as Chris noted the state will fall through to
173 }
174
175 // Wrap back around to the start.
176 virtual_source_idx_ -= kBlockSize;
177
178 // Step (3) Copy r3 to r1 and r4 to r2.
179 // This wraps the last input frames back to the start of the buffer.
180 memcpy(r1, r3, sizeof(*input_buffer_.get()) * (kKernelSize / 2));
181 memcpy(r2, r4, sizeof(*input_buffer_.get()) * (kKernelSize / 2));
182
183 // Step (4)
184 // Refresh the buffer with more input.
185 read_cb_.Run(r5, kBlockSize);
186 }
187 }
188
189 int SincResampler::ChunkSize() {
190 return kBlockSize / io_sample_rate_ratio_;
191 }
192
193 } // namespace media
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