Mercurial > hg > svcore
comparison data/model/AggregateWaveModel.cpp @ 1096:4d9816ba0ebe simple-fft-model
Rework audio file reader API to prefer using std containers
author | Chris Cannam |
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date | Mon, 15 Jun 2015 12:19:47 +0100 |
parents | 9f4505ac9072 |
children | 5cbf71022679 |
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1095:b66734b5f806 | 1096:4d9816ba0ebe |
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17 | 17 |
18 #include <iostream> | 18 #include <iostream> |
19 | 19 |
20 #include <QTextStream> | 20 #include <QTextStream> |
21 | 21 |
22 using namespace std; | |
23 | |
22 PowerOfSqrtTwoZoomConstraint | 24 PowerOfSqrtTwoZoomConstraint |
23 AggregateWaveModel::m_zoomConstraint; | 25 AggregateWaveModel::m_zoomConstraint; |
24 | 26 |
25 AggregateWaveModel::AggregateWaveModel(ChannelSpecList channelSpecs) : | 27 AggregateWaveModel::AggregateWaveModel(ChannelSpecList channelSpecs) : |
26 m_components(channelSpecs) | 28 m_components(channelSpecs) |
90 { | 92 { |
91 if (m_components.empty()) return 0; | 93 if (m_components.empty()) return 0; |
92 return m_components.begin()->model->getSampleRate(); | 94 return m_components.begin()->model->getSampleRate(); |
93 } | 95 } |
94 | 96 |
95 sv_frame_t | 97 vector<float> |
96 AggregateWaveModel::getData(int channel, sv_frame_t start, sv_frame_t count, | 98 AggregateWaveModel::getData(int channel, sv_frame_t start, sv_frame_t count) const |
97 float *buffer) const | |
98 { | 99 { |
99 int ch0 = channel, ch1 = channel; | 100 int ch0 = channel, ch1 = channel; |
100 bool mixing = false; | |
101 if (channel == -1) { | 101 if (channel == -1) { |
102 ch0 = 0; | 102 ch0 = 0; |
103 ch1 = getChannelCount()-1; | 103 ch1 = getChannelCount()-1; |
104 mixing = true; | 104 } |
105 } | 105 |
106 | 106 vector<float> result(count, 0.f); |
107 float *readbuf = buffer; | |
108 if (mixing) { | |
109 readbuf = new float[count]; | |
110 for (sv_frame_t i = 0; i < count; ++i) { | |
111 buffer[i] = 0.f; | |
112 } | |
113 } | |
114 | 107 |
115 sv_frame_t longest = 0; | 108 sv_frame_t longest = 0; |
116 | 109 |
117 for (int c = ch0; c <= ch1; ++c) { | 110 for (int c = ch0; c <= ch1; ++c) { |
118 sv_frame_t here = | 111 |
119 m_components[c].model->getData(m_components[c].channel, | 112 auto here = m_components[c].model->getData(m_components[c].channel, |
120 start, count, | 113 start, count); |
121 readbuf); | 114 if (here.size() > longest) { |
122 if (here > longest) { | 115 longest = here.size(); |
123 longest = here; | 116 } |
124 } | 117 for (sv_frame_t i = 0; in_range_for(here, i); ++i) { |
125 if (here < count) { | 118 result[i] += here[i]; |
126 for (sv_frame_t i = here; i < count; ++i) { | 119 } |
127 readbuf[i] = 0.f; | 120 } |
128 } | 121 |
129 } | 122 result.resize(longest); |
130 if (mixing) { | 123 return result; |
131 for (sv_frame_t i = 0; i < count; ++i) { | 124 } |
132 buffer[i] += readbuf[i]; | 125 |
133 } | 126 vector<vector<float>> |
134 } | |
135 } | |
136 | |
137 if (mixing) delete[] readbuf; | |
138 return longest; | |
139 } | |
140 | |
141 sv_frame_t | |
142 AggregateWaveModel::getMultiChannelData(int fromchannel, int tochannel, | 127 AggregateWaveModel::getMultiChannelData(int fromchannel, int tochannel, |
143 sv_frame_t start, sv_frame_t count, | 128 sv_frame_t start, sv_frame_t count) const |
144 float **buffer) const | |
145 { | 129 { |
146 sv_frame_t min = count; | 130 sv_frame_t min = count; |
147 | 131 |
132 vector<vector<float>> result; | |
133 | |
148 for (int c = fromchannel; c <= tochannel; ++c) { | 134 for (int c = fromchannel; c <= tochannel; ++c) { |
149 sv_frame_t here = getData(c, start, count, buffer[c - fromchannel]); | 135 auto here = getData(c, start, count); |
150 if (here < min) min = here; | 136 if (here.size() < min) min = here.size(); |
137 result.push_back(here); | |
138 } | |
139 | |
140 if (min < count) { | |
141 for (auto &v : result) v.resize(min); | |
151 } | 142 } |
152 | 143 |
153 return min; | 144 return result; |
154 } | 145 } |
155 | 146 |
156 int | 147 int |
157 AggregateWaveModel::getSummaryBlockSize(int desired) const | 148 AggregateWaveModel::getSummaryBlockSize(int desired) const |
158 { | 149 { |