mirror of
https://github.com/mackron/miniaudio.git
synced 2026-04-29 19:54:05 +02:00
Update reverb and vocoder examples.
This commit is contained in:
@@ -7,10 +7,10 @@
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#define DEVICE_CHANNELS 1 /* For this example, always set to 1. */
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#define DEVICE_CHANNELS 1 /* For this example, always set to 1. */
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#define DEVICE_SAMPLE_RATE 48000 /* Cannot be less than 22050 for this example. */
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#define DEVICE_SAMPLE_RATE 48000 /* Cannot be less than 22050 for this example. */
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static ma_audio_buffer_ref g_dataSupply; /* The underlying data source of the source node. */
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static ma_audio_ring_buffer g_dataSupply; /* The underlying data source of the source node. */
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static ma_data_source_node g_dataSupplyNode; /* The node that will sit at the root level. Will be reading data from g_dataSupply. */
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static ma_data_source_node g_dataSupplyNode; /* The node that will sit at the root level. Will be reading data from g_dataSupply. */
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static ma_reverb_node g_reverbNode; /* The reverb node. */
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static ma_reverb_node g_reverbNode; /* The reverb node. */
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static ma_node_graph g_nodeGraph; /* The main node graph that we'll be feeding data through. */
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static ma_node_graph g_nodeGraph; /* The main node graph that we'll be feeding data through. */
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void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uint32 frameCount)
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void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uint32 frameCount)
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{
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{
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@@ -28,7 +28,7 @@ void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uin
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the data source is our `pInput` buffer. We need to update the underlying data source so that it
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the data source is our `pInput` buffer. We need to update the underlying data source so that it
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read data from `pInput`.
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read data from `pInput`.
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*/
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*/
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ma_audio_buffer_ref_set_data(&g_dataSupply, pInput, frameCount);
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ma_audio_ring_buffer_write_pcm_frames(&g_dataSupply, pInput, frameCount, NULL);
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/* With the source buffer configured we can now read directly from the node graph. */
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/* With the source buffer configured we can now read directly from the node graph. */
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ma_node_graph_read_pcm_frames(&g_nodeGraph, pOutput, frameCount, NULL);
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ma_node_graph_read_pcm_frames(&g_nodeGraph, pOutput, frameCount, NULL);
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@@ -42,6 +42,7 @@ int main(int argc, char** argv)
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ma_node_graph_config nodeGraphConfig;
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ma_node_graph_config nodeGraphConfig;
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ma_reverb_node_config reverbNodeConfig;
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ma_reverb_node_config reverbNodeConfig;
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ma_data_source_node_config dataSupplyNodeConfig;
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ma_data_source_node_config dataSupplyNodeConfig;
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ma_audio_ring_buffer_config ringBufferConfig;
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deviceConfig = ma_device_config_init(ma_device_type_duplex);
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deviceConfig = ma_device_config_init(ma_device_type_duplex);
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deviceConfig.capture.pDeviceID = NULL;
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deviceConfig.capture.pDeviceID = NULL;
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@@ -82,7 +83,9 @@ int main(int argc, char** argv)
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/* Data supply. Attached to input bus 0 of the reverb node. */
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/* Data supply. Attached to input bus 0 of the reverb node. */
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result = ma_audio_buffer_ref_init(device.capture.format, device.capture.channels, device.sampleRate, NULL, 0, &g_dataSupply);
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ringBufferConfig = ma_audio_ring_buffer_config_init(device.capture.format, device.capture.channels, device.sampleRate, device.capture.internalPeriodSizeInFrames * 3);
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result = ma_audio_ring_buffer_init(&ringBufferConfig, &g_dataSupply);
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if (result != MA_SUCCESS) {
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if (result != MA_SUCCESS) {
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printf("Failed to initialize audio buffer for source.");
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printf("Failed to initialize audio buffer for source.");
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goto done2;
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goto done2;
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@@ -93,7 +96,7 @@ int main(int argc, char** argv)
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result = ma_data_source_node_init(&g_nodeGraph, &dataSupplyNodeConfig, NULL, &g_dataSupplyNode);
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result = ma_data_source_node_init(&g_nodeGraph, &dataSupplyNodeConfig, NULL, &g_dataSupplyNode);
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if (result != MA_SUCCESS) {
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if (result != MA_SUCCESS) {
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printf("Failed to initialize source node.");
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printf("Failed to initialize source node.");
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goto done2;
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goto done3;
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}
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}
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ma_node_attach_output_bus(&g_dataSupplyNode, 0, &g_reverbNode, 0);
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ma_node_attach_output_bus(&g_dataSupplyNode, 0, &g_reverbNode, 0);
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@@ -110,7 +113,8 @@ int main(int argc, char** argv)
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ma_device_stop(&device);
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ma_device_stop(&device);
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/*done3:*/ ma_data_source_node_uninit(&g_dataSupplyNode, NULL);
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/*done4:*/ ma_data_source_node_uninit(&g_dataSupplyNode, NULL);
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done3: ma_audio_ring_buffer_uninit(&g_dataSupply);
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done2: ma_reverb_node_uninit(&g_reverbNode, NULL);
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done2: ma_reverb_node_uninit(&g_reverbNode, NULL);
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done1: ma_node_graph_uninit(&g_nodeGraph);
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done1: ma_node_graph_uninit(&g_nodeGraph);
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done0: ma_device_uninit(&device);
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done0: ma_device_uninit(&device);
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@@ -11,15 +11,15 @@ effect.
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#include <stdio.h>
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#include <stdio.h>
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#define DEVICE_FORMAT ma_format_f32 /* Must always be f32 for this example because the node graph system only works with this. */
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#define DEVICE_FORMAT ma_format_f32 /* Must always be f32 for this example because the node graph system only works with this. */
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#define DEVICE_CHANNELS 1 /* For this example, always set to 1. */
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#define DEVICE_CHANNELS 1 /* For this example, always set to 1. */
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static ma_waveform g_sourceData; /* The underlying data source of the excite node. */
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static ma_waveform g_sourceData; /* The underlying data source of the excite node. */
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static ma_audio_buffer_ref g_exciteData; /* The underlying data source of the source node. */
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static ma_audio_ring_buffer g_exciteData; /* The underlying data source of the source node. */
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static ma_data_source_node g_sourceNode; /* A data source node containing the source data we'll be sending through to the vocoder. This will be routed into the first bus of the vocoder node. */
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static ma_data_source_node g_sourceNode; /* A data source node containing the source data we'll be sending through to the vocoder. This will be routed into the first bus of the vocoder node. */
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static ma_data_source_node g_exciteNode; /* A data source node containing the excite data we'll be sending through to the vocoder. This will be routed into the second bus of the vocoder node. */
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static ma_data_source_node g_exciteNode; /* A data source node containing the excite data we'll be sending through to the vocoder. This will be routed into the second bus of the vocoder node. */
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static ma_vocoder_node g_vocoderNode; /* The vocoder node. */
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static ma_vocoder_node g_vocoderNode; /* The vocoder node. */
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static ma_node_graph g_nodeGraph;
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static ma_node_graph g_nodeGraph;
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void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uint32 frameCount)
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void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uint32 frameCount)
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{
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{
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@@ -37,7 +37,7 @@ void data_callback(ma_device* pDevice, void* pOutput, const void* pInput, ma_uin
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the data source is our `pInput` buffer. We need to update the underlying data source so that it
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the data source is our `pInput` buffer. We need to update the underlying data source so that it
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read data from `pInput`.
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read data from `pInput`.
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*/
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*/
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ma_audio_buffer_ref_set_data(&g_exciteData, pInput, frameCount);
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ma_audio_ring_buffer_write_pcm_frames(&g_exciteData, pInput, frameCount, NULL);
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/* With the source buffer configured we can now read directly from the node graph. */
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/* With the source buffer configured we can now read directly from the node graph. */
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ma_node_graph_read_pcm_frames(&g_nodeGraph, pOutput, frameCount, NULL);
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ma_node_graph_read_pcm_frames(&g_nodeGraph, pOutput, frameCount, NULL);
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@@ -53,6 +53,7 @@ int main(int argc, char** argv)
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ma_data_source_node_config sourceNodeConfig;
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ma_data_source_node_config sourceNodeConfig;
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ma_data_source_node_config exciteNodeConfig;
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ma_data_source_node_config exciteNodeConfig;
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ma_waveform_config waveformConfig;
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ma_waveform_config waveformConfig;
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ma_audio_ring_buffer_config ringBufferConfig;
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deviceConfig = ma_device_config_init(ma_device_type_duplex);
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deviceConfig = ma_device_config_init(ma_device_type_duplex);
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deviceConfig.capture.pDeviceID = NULL;
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deviceConfig.capture.pDeviceID = NULL;
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@@ -100,7 +101,7 @@ int main(int argc, char** argv)
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result = ma_waveform_init(&waveformConfig, &g_sourceData);
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result = ma_waveform_init(&waveformConfig, &g_sourceData);
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if (result != MA_SUCCESS) {
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if (result != MA_SUCCESS) {
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printf("Failed to initialize waveform for excite node.");
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printf("Failed to initialize waveform for excite node.");
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goto done3;
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goto done2;
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}
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}
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sourceNodeConfig = ma_data_source_node_config_init(&g_sourceData);
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sourceNodeConfig = ma_data_source_node_config_init(&g_sourceData);
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@@ -115,10 +116,12 @@ int main(int argc, char** argv)
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/* Excite/modulator. Attached to input bus 1 of the vocoder node. */
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/* Excite/modulator. Attached to input bus 1 of the vocoder node. */
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result = ma_audio_buffer_ref_init(device.capture.format, device.capture.channels, device.sampleRate, NULL, 0, &g_exciteData);
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ringBufferConfig = ma_audio_ring_buffer_config_init(device.capture.format, device.capture.channels, device.sampleRate, device.capture.internalPeriodSizeInFrames * 3);
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result = ma_audio_ring_buffer_init(&ringBufferConfig, &g_exciteData);
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if (result != MA_SUCCESS) {
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if (result != MA_SUCCESS) {
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printf("Failed to initialize audio buffer for source.");
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printf("Failed to initialize audio buffer for source.");
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goto done2;
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goto done4;
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}
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}
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exciteNodeConfig = ma_data_source_node_config_init(&g_exciteData);
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exciteNodeConfig = ma_data_source_node_config_init(&g_exciteData);
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@@ -126,7 +129,7 @@ int main(int argc, char** argv)
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result = ma_data_source_node_init(&g_nodeGraph, &exciteNodeConfig, NULL, &g_exciteNode);
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result = ma_data_source_node_init(&g_nodeGraph, &exciteNodeConfig, NULL, &g_exciteNode);
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if (result != MA_SUCCESS) {
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if (result != MA_SUCCESS) {
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printf("Failed to initialize source node.");
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printf("Failed to initialize source node.");
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goto done2;
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goto done5;
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}
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}
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ma_node_attach_output_bus(&g_exciteNode, 0, &g_vocoderNode, 1);
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ma_node_attach_output_bus(&g_exciteNode, 0, &g_vocoderNode, 1);
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@@ -140,8 +143,10 @@ int main(int argc, char** argv)
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/* It's important that we stop the device first or else we'll uninitialize the graph from under the device. */
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/* It's important that we stop the device first or else we'll uninitialize the graph from under the device. */
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ma_device_stop(&device);
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ma_device_stop(&device);
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/*done4:*/ ma_data_source_node_uninit(&g_exciteNode, NULL);
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/*done6:*/ ma_data_source_node_uninit(&g_exciteNode, NULL);
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done3: ma_data_source_node_uninit(&g_sourceNode, NULL);
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done5: ma_audio_ring_buffer_uninit(&g_exciteData);
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done4: ma_data_source_node_uninit(&g_sourceNode, NULL);
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done3: ma_waveform_uninit(&g_sourceData);
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done2: ma_vocoder_node_uninit(&g_vocoderNode, NULL);
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done2: ma_vocoder_node_uninit(&g_vocoderNode, NULL);
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done1: ma_node_graph_uninit(&g_nodeGraph);
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done1: ma_node_graph_uninit(&g_nodeGraph);
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done0: ma_device_uninit(&device);
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done0: ma_device_uninit(&device);
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