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git://projects.qi-hardware.com/openwrt-xburst.git
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e1c9572b15
fonera mp3-hack git-svn-id: svn://svn.openwrt.org/openwrt/trunk@8509 3c298f89-4303-0410-b956-a3cf2f4a3e73
329 lines
7.4 KiB
C
329 lines
7.4 KiB
C
/*
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* a.lp_mp3 - VS1011B driver for Fonera
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* Copyright (c) 2007 phrozen.org - John Crispin <john@phrozen.org>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA02111-1307USA
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*
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* Feedback, Bugs.... mail john@phrozen.org
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*
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*/
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#include <linux/module.h>
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#include <linux/sched.h>
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#include <linux/slab.h>
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#include <linux/ioport.h>
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#include <linux/errno.h>
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#include <linux/kernel.h>
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#include <linux/fs.h>
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#include <linux/string.h>
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#include <linux/poll.h>
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#include <linux/init.h>
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#include <linux/interrupt.h>
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#include <linux/delay.h>
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#include <asm/io.h>
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#include <asm/system.h>
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#include <asm/irq.h>
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#include "ar531xlnx.h"
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#define AR5315_DSLBASE 0xB1000000
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#define AR5315_GPIO_DI (AR5315_DSLBASE + 0x0088)
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#define AR5315_GPIO_DO (AR5315_DSLBASE + 0x0090)
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#define AR5315_GPIO_CR (AR5315_DSLBASE + 0x0098)
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#define AR5315_GPIO_INT (AR5315_DSLBASE + 0x00a0)
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#define GPIO_0 1<<0
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#define GPIO_1 1<<1
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#define GPIO_2 1<<2
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#define GPIO_3 1<<3
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#define GPIO_4 1<<4
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#define GPIO_6 1<<6
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#define GPIO_7 1<<7
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#define DREQ ((unsigned int)GPIO_7)
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#define SCK ((unsigned int)GPIO_1)
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#define SI ((unsigned int)GPIO_4)
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#define BSYNC ((unsigned int)GPIO_3)
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#define CS ((unsigned int)GPIO_0)
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#define SO ((unsigned int)GPIO_6)
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#define RES ((unsigned int)GPIO_2)
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#define REG_MODE 0x0
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#define REG_STATUS 0x1
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#define REG_BASS 0x2
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#define REG_CLOCKF 0x3
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#define REG_DECODETIME 0x4
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#define REG_AUDATA 0x5
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#define REG_WRAM 0x6
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#define REG_WRAMADDR 0x7
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#define REG_HDAT0 0x8
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#define REG_HDAT1 0x9
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#define REG_A1ADDR 0xa
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#define REG_VOL 0xb
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#define REG_A1CTRL0 0xc
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#define REG_A1CTRL1 0xd
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#define REG_A1CTRL2 0xe
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#define VS1011_NEEDS_DATA spi_get_bit(DREQ)
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#define VS1011_NEEDS_NO_DATA (spi_get_bit(DREQ)== 0x00)
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#define VS1011_WHILE_NEEDS_NO_DATA while(spi_get_bit(DREQ)== 0x00){}
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#define VS_CS_LO spi_clear_bit(CS)
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#define VS_CS_HI spi_set_bit(CS)
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#define VS_BSYNC_LO spi_clear_bit(BSYNC)
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#define VS_BSYNC_HI spi_set_bit(BSYNC)
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#define VS_RESET_LO spi_clear_bit(RES)
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#define VS_RESET_HI spi_set_bit(RES)
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#define VS1011_READ SPI_io_vs1011b(0x03)
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#define VS1011_WRITE SPI_io_vs1011b(0x02)
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void msDelay(int ms) {
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int i,a;
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int delayvar=10;
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for (a=0;a<ms;a++) {
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for (i=0;i<33084;i++) {
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delayvar*=2;
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delayvar/=2;
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}
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}
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}
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int spi_get_bit(unsigned int pin){
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return ((sysRegRead(AR5315_GPIO_DI)&pin)?(1):(0));
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}
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void spi_set_bit(unsigned int pin){
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sysRegWrite(AR5315_GPIO_DO, (sysRegRead(AR5315_GPIO_DO) | pin));
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}
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void spi_clear_bit(unsigned int pin){
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sysRegWrite(AR5315_GPIO_DO, (sysRegRead(AR5315_GPIO_DO) & ~pin));
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}
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void SPI_clock_vs1011b(void){
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spi_clear_bit(SCK);
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spi_set_bit(SCK);
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}
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unsigned char SPI_io_vs1011b(unsigned char byte){
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int i;
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unsigned char this_bit;
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unsigned char byte_out = 0;
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for(i = 7; i>=0; i--){
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if(byte & (1<<i)){
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this_bit = 1;
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} else {
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this_bit = 0;
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}
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if(this_bit){
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spi_set_bit(SI);
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} else {
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spi_clear_bit(SI);
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}
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SPI_clock_vs1011b();
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byte_out += spi_get_bit(SO)<<i;
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}
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return byte_out;
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}
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void SPI_init_vs1011(void){
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sysRegWrite(AR5315_GPIO_CR, (sysRegRead(AR5315_GPIO_CR) | SI | SCK | CS | BSYNC | RES) & ~(SO|DREQ));
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spi_clear_bit(SCK);
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spi_clear_bit(SI);
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VS_CS_HI;
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VS_BSYNC_HI;
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}
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void VS1011_send_SCI(unsigned char reg, unsigned int data){
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VS_CS_LO;
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VS1011_WRITE;
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SPI_io_vs1011b(reg);
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SPI_io_vs1011b((data>>8)&0xff);
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SPI_io_vs1011b(data&0xff);
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VS_CS_HI;
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}
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unsigned int VS1011_read_SCI(unsigned char reg){
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unsigned int data;
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VS_CS_LO;
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VS1011_READ;
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SPI_io_vs1011b(reg);
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data = 0;
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data = SPI_io_vs1011b(0x00);
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data <<= 8;
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data += SPI_io_vs1011b(0x00);
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VS_CS_HI;
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return data;
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}
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void VS1011_send_SDI(unsigned char byte){
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int i;
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VS_BSYNC_LO;
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for(i = 7; i>=0; i--){
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if(byte & (1<<i)){
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spi_set_bit(SI);
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} else {
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spi_clear_bit(SI);
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}
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spi_clear_bit(SCK);
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spi_set_bit(SCK);
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}
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VS_BSYNC_HI;
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}
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void VS1011_send_SDI_32(unsigned char* data){
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int i;
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VS1011_WHILE_NEEDS_NO_DATA;
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for(i=0; i<32; i++){
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VS1011_send_SDI(data[i]);
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}
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}
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void VS1011_send_zeros(unsigned char count){
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do{
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VS1011_send_SDI(0x0);
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count--;
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}while(count);
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}
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void VS1011_set_volume(unsigned int vol){
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VS1011_send_SCI(REG_VOL, vol);
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}
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void VS1011_SW_reset(unsigned int _crystal_freq){
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unsigned int regval = 0x0804;
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unsigned long int i = 0;
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msDelay(100);
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VS1011_send_zeros(32);
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VS1011_send_SCI(REG_MODE, regval);
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msDelay(10);
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while((VS1011_NEEDS_NO_DATA) && (i++<0xffff)){};
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VS1011_send_SCI(REG_CLOCKF, _crystal_freq);
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VS1011_send_zeros(16);
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VS1011_set_volume(0x00);
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}
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void VS1011_HW_reset(void){
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VS_RESET_LO;
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msDelay(1);
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VS_RESET_HI;
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msDelay(1);
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}
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void VS1011_init(unsigned int _crystal_freq, unsigned char hw){
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if(hw){
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SPI_init_vs1011();
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}
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printk("mp3_drv.ko : Init start\n");
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if(hw){
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VS1011_HW_reset();
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}
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VS1011_SW_reset(_crystal_freq);
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printk("mp3_drv.ko : init_ok\n");
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}
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void VS1011_sine(unsigned char state, unsigned char freq){
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VS1011_send_zeros(16);
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if(state == 0x01){
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VS1011_send_SDI(0x53);
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VS1011_send_SDI(0xEF);
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VS1011_send_SDI(0x6E);
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VS1011_send_SDI(freq);
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VS1011_send_zeros(0x04);
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} else {
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VS1011_send_SDI(0x45);
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VS1011_send_SDI(0x78);
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VS1011_send_SDI(0x69);
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VS1011_send_SDI(0x74);
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VS1011_send_zeros(0x04);
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}
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}
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unsigned int VS1011_get_volume(void){
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return VS1011_read_SCI(REG_VOL);
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}
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unsigned int VS1011_get_decode_time(void){
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return VS1011_read_SCI(REG_DECODETIME);
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}
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const unsigned int sample_rate_values[] = {0, 44100, 48000, 32000, 22050, 24000, 16000, 11025, 12000, 8000};
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void VS1011_get_audio_data(AUDIO_DATA* audio){
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unsigned int audata = VS1011_read_SCI(REG_AUDATA);
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audio->sample_rate = sample_rate_values[(audata&0x1E00)>>9];
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audio->bitrate = audata&0x1FF;
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audio->is_stereo = (audata&0x8000)>>15;
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}
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void VS1011_print_registers(void){
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unsigned char i;
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for(i = 0; i< 14; i++){
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unsigned int regval = VS1011_read_SCI(i);
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printk("mp3_drv.ko : %d \n", regval);
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}
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}
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void VS1011_volume(unsigned char left, unsigned char right){
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unsigned int regval = left;
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regval <<=8;
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regval += right;
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VS1011_send_SCI(REG_VOL, regval);
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}
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void VS1011_set_bass(unsigned int regval){
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VS1011_send_SCI(REG_BASS, regval);
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}
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void VS1011_set_reg(unsigned int reg, unsigned int regval){
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VS1011_send_SCI(reg, regval);
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}
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/*
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int vs_test(void) {
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SPI_init_vs1011();
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printk("%u\n", *R_GEN_CONFIG);
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VS1001_init(_crystal_freq);
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VS1001_print_registers();
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VS1001_volume(0x30, 0x30);
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msDelay(1000);
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VS1001_sine(1, 0x30);
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msDelay(1000);
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VS1001_sine(0, 0);
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VS1001_send_zeros(0x20);
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msDelay(1000);
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VS1001_sine(1, 0x30);
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msDelay(1000);
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VS1001_sine(0, 0);
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VS1001_send_zeros(0x20);
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msDelay(1000);
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VS1001_sine(1, 0x30);
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msDelay(1000);
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VS1001_sine(0, 0);
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AUDIO_DATA a;
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VS1001_get_audio_data(&a);
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printk("mp3_drv.ko : rate : %d, bit : %d, stereo : %d \n", a.sample_rate, a.bitrate, a.is_stereo);
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VS1001_SW_reset(_crystal_freq);
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return 0;
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}*/
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