f504153857
- cache IRAM and DRAM - map IRAM just next to DRAM to remove the need for -mlong-calls and reduce binsize - tweak delays in Fuze button code - tweak delays in Clip button code (down button sometimes doesn't respond anyway : an alternate driver is being worked on) Before reporting any problem, please check your filesystem or format your player from the OF git-svn-id: svn://svn.rockbox.org/rockbox/trunk@21228 a1c6a512-1295-4272-9138-f99709370657
222 lines
4.9 KiB
C
222 lines
4.9 KiB
C
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Copyright © 2008 Rafaël Carré
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#include "system.h"
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#include "audio.h"
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#include "string.h"
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#include "as3525.h"
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#include "pl081.h"
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#include "dma-target.h"
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#include "clock-target.h"
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#include "panic.h"
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#include "as3514.h"
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#include "audiohw.h"
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#include "mmu-arm.h"
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#define MAX_TRANSFER (4*((1<<11)-1)) /* maximum data we can transfer via DMA
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* i.e. 32 bits at once (size of I2SO_DATA)
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* and the number of 32bits words has to
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* fit in 11 bits of DMA register */
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static unsigned char *dma_start_addr;
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static size_t dma_size; /* in 4*32 bits */
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static void dma_callback(void);
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static int locked = 0;
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/* Mask the DMA interrupt */
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void pcm_play_lock(void)
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{
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if(++locked == 1)
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VIC_INT_EN_CLEAR = INTERRUPT_DMAC;
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}
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/* Unmask the DMA interrupt if enabled */
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void pcm_play_unlock(void)
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{
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if(--locked == 0)
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VIC_INT_ENABLE |= INTERRUPT_DMAC;
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}
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static void play_start_pcm(void)
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{
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const unsigned char* addr = dma_start_addr;
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size_t size = dma_size;
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if(size > MAX_TRANSFER)
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size = MAX_TRANSFER;
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if((unsigned int)dma_start_addr & 3)
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panicf("unaligned pointer!");
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dma_size -= size;
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dma_start_addr += size;
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CGU_PERI |= CGU_I2SOUT_APB_CLOCK_ENABLE;
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CGU_AUDIO |= (1<<11);
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clean_dcache_range((void*)addr, size); /* force write back */
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dma_enable_channel(1, (void*)addr, (void*)I2SOUT_DATA, DMA_PERI_I2SOUT,
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DMAC_FLOWCTRL_DMAC_MEM_TO_PERI, true, false, size >> 2, DMA_S1,
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dma_callback);
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}
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static void dma_callback(void)
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{
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if(!dma_size)
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{
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register pcm_more_callback_type get_more = pcm_callback_for_more;
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if(get_more)
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get_more(&dma_start_addr, &dma_size);
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}
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if(!dma_size)
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{
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pcm_play_dma_stop();
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pcm_play_dma_stopped_callback();
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}
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else
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play_start_pcm();
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}
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void pcm_play_dma_start(const void *addr, size_t size)
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{
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dma_size = size;
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dma_start_addr = (unsigned char*)addr;
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dma_retain();
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play_start_pcm();
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}
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void pcm_play_dma_stop(void)
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{
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dma_disable_channel(1);
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dma_size = 0;
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dma_release();
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CGU_PERI &= ~CGU_I2SOUT_APB_CLOCK_ENABLE;
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CGU_AUDIO &= ~(1<<11);
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}
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void pcm_play_dma_pause(bool pause)
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{
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if(pause)
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dma_disable_channel(1);
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else
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play_start_pcm();
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}
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void pcm_play_dma_init(void)
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{
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CGU_PERI |= CGU_I2SOUT_APB_CLOCK_ENABLE;
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/* clock source PLLA, minimal frequency */
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CGU_AUDIO |= (511<<2) | (1<<0);
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I2SOUT_CONTROL |= (1<<6) ; /* enable dma */
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I2SOUT_CONTROL |= (1<<3) ; /* stereo */
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I2SOUT_CONTROL &= ~(1<<2); /* 16 bit samples */
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audiohw_preinit();
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}
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void pcm_postinit(void)
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{
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audiohw_postinit();
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}
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void pcm_dma_apply_settings(void)
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{
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unsigned long frequency = pcm_sampr;
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const int divider = (((AS3525_PLLA_FREQ/128) + (frequency/2)) / frequency) - 1;
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if(divider < 0 || divider > 511)
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panicf("unsupported frequency %ld", frequency);
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CGU_AUDIO &= ~(((511 ^ divider) << 2) /* I2SOUT */
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/*| ((511 ^ divider) << 14) */ /* I2SIN */
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);
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}
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size_t pcm_get_bytes_waiting(void)
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{
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return dma_size;
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}
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const void * pcm_play_dma_get_peak_buffer(int *count)
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{
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*count = dma_size >> 2;
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return (const void*)dma_start_addr;
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}
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#ifdef HAVE_PCM_DMA_ADDRESS
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void * pcm_dma_addr(void *addr)
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{
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if (addr != NULL)
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addr = UNCACHED_ADDR(addr);
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return addr;
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}
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#endif
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/****************************************************************************
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** Recording DMA transfer
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**/
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#ifdef HAVE_RECORDING
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void pcm_rec_lock(void)
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{
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}
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void pcm_rec_unlock(void)
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{
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}
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void pcm_record_more(void *start, size_t size)
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{
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(void)start;
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(void)size;
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}
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void pcm_rec_dma_stop(void)
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{
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}
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void pcm_rec_dma_start(void *addr, size_t size)
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{
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(void)addr;
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(void)size;
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}
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void pcm_rec_dma_close(void)
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{
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}
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void pcm_rec_dma_init(void)
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{
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}
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const void * pcm_rec_dma_get_peak_buffer(int *count)
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{
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(void)count;
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}
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#endif /* HAVE_RECORDING */
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