forked from PAWPAW-Mirror/lib_xua
Merge pull request #392 from shuchitak/fix/alt_itf_out_chan_count
Fix/alt itf out chan count
This commit is contained in:
@@ -16,6 +16,8 @@ UNRELEASED
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* CHANGED: aud_to_host buffer size and the condition to come out of underflow
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* CHANGED: aud_to_host buffer size and the condition to come out of underflow
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in decoupler to fix buffer underflow seen in ADAT tests
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in decoupler to fix buffer underflow seen in ADAT tests
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* FIXED: Initialise SMUX based on DEFAULT_FREQ in clockgen
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* FIXED: Initialise SMUX based on DEFAULT_FREQ in clockgen
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* FIXED: Update g_numUsbChan_Out to the number of channels for the selected
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interface when receiving a set interface request over EP0
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4.0.0
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4.0.0
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-----
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-----
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@@ -155,27 +155,19 @@ unsigned unpackData = 0;
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unsigned packState = 0;
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unsigned packState = 0;
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unsigned packData = 0;
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unsigned packData = 0;
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static inline void SendSamples4(chanend c_mix_out)
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static inline void _send_sample_4(chanend c_mix_out, int ch)
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{
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{
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/* Doing this checking allows us to unroll */
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if(g_numUsbChan_Out == NUM_USB_CHAN_OUT)
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{
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/* Buffering not underflow condition send out some samples...*/
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#pragma loop unroll
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for(int i = 0; i < NUM_USB_CHAN_OUT; i++)
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{
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int sample;
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int sample;
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int mult;
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int h;
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unsigned l;
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read_via_xc_ptr(sample, g_aud_from_host_rdptr);
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read_via_xc_ptr(sample, g_aud_from_host_rdptr);
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g_aud_from_host_rdptr+=4;
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g_aud_from_host_rdptr+=4;
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#if (OUTPUT_VOLUME_CONTROL == 1) && (!OUT_VOLUME_IN_MIXER)
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#if (OUTPUT_VOLUME_CONTROL == 1) && (!OUT_VOLUME_IN_MIXER)
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int mult;
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int h;
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unsigned l;
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unsafe
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unsafe
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{
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{
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mult = multOutPtr[i];
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mult = multOutPtr[ch];
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}
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}
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{h, l} = macs(mult, sample, 0, 0);
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{h, l} = macs(mult, sample, 0, 0);
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h <<= 3;
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h <<= 3;
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@@ -187,36 +179,41 @@ static inline void SendSamples4(chanend c_mix_out)
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#else
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#else
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outuint(c_mix_out, sample);
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outuint(c_mix_out, sample);
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#endif
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#endif
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}
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static inline void SendSamples4(chanend c_mix_out)
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{
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/* Doing this allows us to unroll */
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if(g_numUsbChan_Out == HS_STREAM_FORMAT_OUTPUT_1_CHAN_COUNT)
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{
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#pragma loop unroll
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for(int i = 0; i < HS_STREAM_FORMAT_OUTPUT_1_CHAN_COUNT; i++)
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{
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_send_sample_4(c_mix_out, i);
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}
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}
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else if(g_numUsbChan_Out == HS_STREAM_FORMAT_OUTPUT_2_CHAN_COUNT)
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{
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#pragma loop unroll
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for(int i = 0; i < HS_STREAM_FORMAT_OUTPUT_2_CHAN_COUNT; i++)
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{
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_send_sample_4(c_mix_out, i);
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}
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}
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else if(g_numUsbChan_Out == HS_STREAM_FORMAT_OUTPUT_3_CHAN_COUNT)
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{
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#pragma loop unroll
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for(int i = 0; i < HS_STREAM_FORMAT_OUTPUT_3_CHAN_COUNT; i++)
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{
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_send_sample_4(c_mix_out, i);
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}
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}
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}
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}
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else
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else
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{
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{
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#pragma loop unroll
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#pragma loop unroll
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for(int i = 0; i < NUM_USB_CHAN_OUT_FS; i++)
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for(int i = 0; i < NUM_USB_CHAN_OUT_FS; i++)
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{
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{
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int sample;
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_send_sample_4(c_mix_out, i);
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int mult;
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int h;
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unsigned l;
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read_via_xc_ptr(sample, g_aud_from_host_rdptr);
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g_aud_from_host_rdptr+=4;
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#if (OUTPUT_VOLUME_CONTROL == 1) && (!OUT_VOLUME_IN_MIXER)
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unsafe
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{
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mult = multOutPtr[i];
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}
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{h, l} = macs(mult, sample, 0, 0);
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h <<= 3;
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#if (STREAM_FORMAT_OUTPUT_RESOLUTION_32BIT_USED == 1)
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h |= (l >>29) & 0x7; // Note: This step is not required if we assume sample depth is 24bit (rather than 32bit)
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// Note: We need all 32bits for Native DSD
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#endif
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outuint(c_mix_out, h);
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#else
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outuint(c_mix_out, sample);
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#endif
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}
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}
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}
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}
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}
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}
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@@ -245,7 +245,6 @@ const unsigned g_dataFormat_In[INPUT_FORMAT_COUNT] = {STREAM_FORMAT_INPUT_1
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};
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};
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/* Channel count */
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/* Channel count */
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/* Note, currently only input changes.. */
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const unsigned g_chanCount_In_HS[INPUT_FORMAT_COUNT] = {HS_STREAM_FORMAT_INPUT_1_CHAN_COUNT,
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const unsigned g_chanCount_In_HS[INPUT_FORMAT_COUNT] = {HS_STREAM_FORMAT_INPUT_1_CHAN_COUNT,
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#if(INPUT_FORMAT_COUNT > 1)
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#if(INPUT_FORMAT_COUNT > 1)
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HS_STREAM_FORMAT_INPUT_2_CHAN_COUNT,
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HS_STREAM_FORMAT_INPUT_2_CHAN_COUNT,
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@@ -255,6 +254,15 @@ const unsigned g_chanCount_In_HS[INPUT_FORMAT_COUNT] = {HS_STREAM_FORMAT_I
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#endif
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#endif
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};
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};
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const unsigned g_chanCount_Out_HS[OUTPUT_FORMAT_COUNT] = {HS_STREAM_FORMAT_OUTPUT_1_CHAN_COUNT,
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#if(OUTPUT_FORMAT_COUNT > 1)
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HS_STREAM_FORMAT_OUTPUT_2_CHAN_COUNT,
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#endif
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#if(OUTPUT_FORMAT_COUNT > 2)
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HS_STREAM_FORMAT_OUTPUT_3_CHAN_COUNT
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#endif
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};
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XUD_ep ep0_out;
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XUD_ep ep0_out;
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XUD_ep ep0_in;
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XUD_ep ep0_in;
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@@ -580,7 +588,7 @@ void XUA_Endpoint0_loop(XUD_Result_t result, USB_SetupPacket_t sp, chanend c_ep0
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if(g_curUsbSpeed == XUD_SPEED_HS)
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if(g_curUsbSpeed == XUD_SPEED_HS)
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{
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{
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outuint(c_audioControl, NUM_USB_CHAN_OUT); /* Channel count */
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outuint(c_audioControl, g_chanCount_Out_HS[sp.wValue-1]); /* Channel count */
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outuint(c_audioControl, g_subSlot_Out_HS[sp.wValue-1]); /* Subslot */
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outuint(c_audioControl, g_subSlot_Out_HS[sp.wValue-1]); /* Subslot */
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outuint(c_audioControl, g_sampRes_Out_HS[sp.wValue-1]); /* Resolution */
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outuint(c_audioControl, g_sampRes_Out_HS[sp.wValue-1]); /* Resolution */
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}
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}
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