master -> stable changelog manual merge

This commit is contained in:
Ross Owen
2016-03-09 15:18:04 +00:00
4 changed files with 26 additions and 21 deletions

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@@ -1,13 +1,16 @@
sc_usb_audio Change Log
=======================
6.14.2
6.15.1
------
- RESOLVED: DAC data mis-alignment issue in TDM slave mode
6.14.1
6.15.0
------
- RESOLVED: UAC 1.0 descriptors now support multi-channel volume control (previously were
- CHANGE: Removed 32kHz sample-rate support when PDM microphones enabled (lib_mic_array
currently does not support non-integer decimation factors)
- RESOLVED: UAC 1.0 descriptors now support multi-channel volume control (previously were
hard-coded as stereo)
6.14.0

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@@ -465,7 +465,7 @@
* @brief Device firmware version number in Binary Coded Decimal format: 0xJJMN where JJ: major, M: minor, N: sub-minor version number.
*/
#ifndef BCD_DEVICE_M
#define BCD_DEVICE_M 14
#define BCD_DEVICE_M 15
#endif
/**

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@@ -1,7 +1,6 @@
#ifndef MIC_ARRAY_CONF_H_
#define MIC_ARRAY_CONF_H_
#define FRAME_SIZE_LOG2 0
#define MAX_FRAME_SIZE_LOG2 0
#endif /* MIC_ARRAY_CONF_H_ */

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@@ -16,6 +16,8 @@
#include "fir_decimator.h"
#include "mic_array.h"
#define MAX_DECIMATION_FACTOR 12
/* Hardware resources */
in port p_pdm_clk = PORT_PDM_CLK;
in buffered port:32 p_pdm_mics = PORT_PDM_DATA;
@@ -26,12 +28,12 @@ clock pdmclk = on tile[PDM_TILE]: XS1_CLKBLK_3;
unsafe void user_pdm_process(frame_audio * unsafe audio, int output[]);
void user_pdm_init();
int data_0[4*COEFS_PER_PHASE*MAX_DECIMATION_FACTOR] = {0};
int data_1[4*COEFS_PER_PHASE*MAX_DECIMATION_FACTOR] = {0};
int data_0[4*THIRD_STAGE_COEFS_PER_STAGE * MAX_DECIMATION_FACTOR] = {0};
int data_1[4*THIRD_STAGE_COEFS_PER_STAGE * MAX_DECIMATION_FACTOR] = {0};
frame_audio mic_audio[2];
void pdm_process(streaming chanend c_ds_output_0, streaming chanend c_ds_output_1, chanend c_audio)
void pdm_process(streaming chanend c_ds_output[2], chanend c_audio)
{
unsigned buffer = 1; // Buffer index
memset(mic_audio, sizeof(frame_audio), 0);
@@ -45,21 +47,21 @@ void pdm_process(streaming chanend c_ds_output_0, streaming chanend c_ds_output_
c_audio :> samplerate;
unsigned decimationfactor = 48000/samplerate;
unsigned decimationfactor = 96000/samplerate;
unsafe
{
decimator_config_common dcc = {FRAME_SIZE_LOG2, 1, 0, 0, decimationfactor, fir_coefs[decimationfactor], 0};
decimator_config dc0 = {&dcc, data_0, {0, 0, 0, 0}};
decimator_config dc1 = {&dcc, data_1, {0, 0, 0, 0}};
decimator_configure(c_ds_output_0, c_ds_output_1, dc0, dc1);
}
const int * unsafe fir_coefs[7] = {0, g_third_stage_div_2_fir, g_third_stage_div_4_fir, g_third_stage_div_6_fir, g_third_stage_div_8_fir, 0, g_third_stage_div_12_fir};
decimator_init_audio_frame(c_ds_output_0, c_ds_output_1, buffer, mic_audio, DECIMATOR_NO_FRAME_OVERLAP);
decimator_config_common dcc = {MAX_FRAME_SIZE_LOG2, 1, 0, 0, decimationfactor, fir_coefs[decimationfactor/2], 0, 0, DECIMATOR_NO_FRAME_OVERLAP, 2};
decimator_config dc[2] = {{&dcc, data_0, {0, 0, 0, 0}, 4}, {&dcc, data_1, {0, 0, 0, 0}, 4}};
decimator_configure(c_ds_output, 2, dc);
decimator_init_audio_frame(c_ds_output, 2, buffer, mic_audio, dcc);
while(1)
{
frame_audio * unsafe current = decimator_get_next_audio_frame(c_ds_output_0, c_ds_output_1, buffer, mic_audio);
frame_audio * unsafe current = decimator_get_next_audio_frame(c_ds_output, 2, buffer, mic_audio, dcc);
unsafe
{
@@ -80,6 +82,7 @@ void pdm_process(streaming chanend c_ds_output_0, streaming chanend c_ds_output_
break;
}
}
}
}
}
}
@@ -91,7 +94,7 @@ void pdm_process(streaming chanend c_ds_output_0, streaming chanend c_ds_output_
void pcm_pdm_mic(chanend c_pcm_out)
{
streaming chan c_4x_pdm_mic_0, c_4x_pdm_mic_1;
streaming chan c_ds_output_0, c_ds_output_1;
streaming chan c_ds_output[2];
/* TODO, always run mics at 3MHz */
configure_clock_src_divide(pdmclk, p_mclk, 2);
@@ -102,9 +105,9 @@ void pcm_pdm_mic(chanend c_pcm_out)
par
{
pdm_rx(p_pdm_mics, c_4x_pdm_mic_0, c_4x_pdm_mic_1);
decimate_to_pcm_4ch(c_4x_pdm_mic_0, c_ds_output_0);
decimate_to_pcm_4ch(c_4x_pdm_mic_1, c_ds_output_1);
pdm_process(c_ds_output_0, c_ds_output_1, c_pcm_out);
decimate_to_pcm_4ch(c_4x_pdm_mic_0, c_ds_output[0]);
decimate_to_pcm_4ch(c_4x_pdm_mic_1, c_ds_output[1]);
pdm_process(c_ds_output, c_pcm_out);
}
}