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359 lines
9.1 KiB
C
359 lines
9.1 KiB
C
/*
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io_mpcf.c based on
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compact_flash.c
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By chishm (Michael Chisholm)
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Hardware Routines for reading a compact flash card
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using the GBA Movie Player
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CF routines modified with help from Darkfader
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This software is completely free. No warranty is provided.
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If you use it, please give me credit and email me about your
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project at chishm@hotmail.com
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See gba_nds_fat.txt for help and license details.
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*/
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#include "io_mpcf.h"
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#ifdef SUPPORT_MPCF
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//---------------------------------------------------------------
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// DMA
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#ifdef _CF_USE_DMA
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#ifndef NDS
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#include "gba_dma.h"
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#else
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#include <nds/dma.h>
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#ifdef ARM9
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#include <nds/arm9/cache.h>
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#endif
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#endif
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#endif
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//---------------------------------------------------------------
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// CF Addresses & Commands
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#define GAME_PAK 0x08000000 // Game pack start address
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// GBAMP CF Addresses
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#define MP_REG_STS *(vu16*)(GAME_PAK + 0x018C0000) // Status of the CF Card / Device control
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#define MP_REG_CMD *(vu16*)(GAME_PAK + 0x010E0000) // Commands sent to control chip and status return
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#define MP_REG_ERR *(vu16*)(GAME_PAK + 0x01020000) // Errors / Features
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#define MP_REG_SEC *(vu16*)(GAME_PAK + 0x01040000) // Number of sector to transfer
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#define MP_REG_LBA1 *(vu16*)(GAME_PAK + 0x01060000) // 1st byte of sector address
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#define MP_REG_LBA2 *(vu16*)(GAME_PAK + 0x01080000) // 2nd byte of sector address
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#define MP_REG_LBA3 *(vu16*)(GAME_PAK + 0x010A0000) // 3rd byte of sector address
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#define MP_REG_LBA4 *(vu16*)(GAME_PAK + 0x010C0000) // last nibble of sector address | 0xE0
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#define MP_DATA (vu16*)(GAME_PAK + 0x01000000) // Pointer to buffer of CF data transered from card
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// CF Card status
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#define CF_STS_INSERTED 0x50
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#define CF_STS_REMOVED 0x00
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#define CF_STS_READY 0x58
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#define CF_STS_DRQ 0x08
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#define CF_STS_BUSY 0x80
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// CF Card commands
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#define CF_CMD_LBA 0xE0
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#define CF_CMD_READ 0x20
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#define CF_CMD_WRITE 0x30
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#define CARD_TIMEOUT 10000000 // Updated due to suggestion from SaTa, otherwise card will timeout sometimes on a write
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/*-----------------------------------------------------------------
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MPCF_IsInserted
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Is a compact flash card inserted?
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bool return OUT: true if a CF card is inserted
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-----------------------------------------------------------------*/
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bool MPCF_IsInserted (void)
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{
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// Change register, then check if value did change
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MP_REG_STS = CF_STS_INSERTED;
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return ((MP_REG_STS & 0xff) == CF_STS_INSERTED);
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}
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/*-----------------------------------------------------------------
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MPCF_ClearStatus
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Tries to make the CF card go back to idle mode
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bool return OUT: true if a CF card is idle
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-----------------------------------------------------------------*/
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bool MPCF_ClearStatus (void)
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{
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int i;
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// Wait until CF card is finished previous commands
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i=0;
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while ((MP_REG_CMD & CF_STS_BUSY) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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// Wait until card is ready for commands
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i = 0;
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while ((!(MP_REG_STS & CF_STS_INSERTED)) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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if (i >= CARD_TIMEOUT)
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return false;
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return true;
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}
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/*-----------------------------------------------------------------
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MPCF_ReadSectors
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Read 512 byte sector numbered "sector" into "buffer"
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u32 sector IN: address of first 512 byte sector on CF card to read
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u8 numSecs IN: number of 512 byte sectors to read,
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1 to 256 sectors can be read, 0 = 256
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void* buffer OUT: pointer to 512 byte buffer to store data in
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bool return OUT: true if successful
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-----------------------------------------------------------------*/
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bool MPCF_ReadSectors (u32 sector, u8 numSecs, void* buffer)
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{
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int i;
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int j = (numSecs > 0 ? numSecs : 256);
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u16 *buff = (u16*)buffer;
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#ifdef _CF_ALLOW_UNALIGNED
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u8 *buff_u8 = (u8*)buffer;
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int temp;
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#endif
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#if (defined _CF_USE_DMA) && (defined NDS) && (defined ARM9)
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DC_FlushRange( buffer, j * BYTE_PER_READ);
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#endif
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// Wait until CF card is finished previous commands
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i=0;
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while ((MP_REG_CMD & CF_STS_BUSY) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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// Wait until card is ready for commands
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i = 0;
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while ((!(MP_REG_STS & CF_STS_INSERTED)) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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if (i >= CARD_TIMEOUT)
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return false;
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// Set number of sectors to read
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MP_REG_SEC = numSecs;
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// Set read sector
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MP_REG_LBA1 = sector & 0xFF; // 1st byte of sector number
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MP_REG_LBA2 = (sector >> 8) & 0xFF; // 2nd byte of sector number
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MP_REG_LBA3 = (sector >> 16) & 0xFF; // 3rd byte of sector number
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MP_REG_LBA4 = ((sector >> 24) & 0x0F )| CF_CMD_LBA; // last nibble of sector number
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// Set command to read
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MP_REG_CMD = CF_CMD_READ;
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while (j--)
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{
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// Wait until card is ready for reading
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i = 0;
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while (((MP_REG_STS & 0xff)!= CF_STS_READY) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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if (i >= CARD_TIMEOUT)
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return false;
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// Read data
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#ifdef _CF_USE_DMA
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#ifdef NDS
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DMA3_SRC = (u32)MP_DATA;
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DMA3_DEST = (u32)buff;
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DMA3_CR = 256 | DMA_COPY_HALFWORDS | DMA_SRC_FIX;
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#else
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DMA3COPY ( MP_DATA, buff, 256 | DMA16 | DMA_ENABLE | DMA_SRC_FIXED);
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#endif
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buff += BYTE_PER_READ / 2;
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#elif defined _CF_ALLOW_UNALIGNED
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i=256;
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if ((u32)buff_u8 & 0x01) {
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while(i--)
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{
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temp = *MP_DATA;
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*buff_u8++ = temp & 0xFF;
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*buff_u8++ = temp >> 8;
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}
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} else {
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while(i--)
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*buff++ = *MP_DATA;
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}
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#else
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i=256;
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while(i--)
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*buff++ = *MP_DATA;
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#endif
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}
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#if (defined _CF_USE_DMA) && (defined NDS)
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// Wait for end of transfer before returning
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while(DMA3_CR & DMA_BUSY);
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#endif
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return true;
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}
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/*-----------------------------------------------------------------
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MPCF_WriteSectors
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Write 512 byte sector numbered "sector" from "buffer"
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u32 sector IN: address of 512 byte sector on CF card to read
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u8 numSecs IN: number of 512 byte sectors to read,
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1 to 256 sectors can be read, 0 = 256
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void* buffer IN: pointer to 512 byte buffer to read data from
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bool return OUT: true if successful
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-----------------------------------------------------------------*/
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bool MPCF_WriteSectors (u32 sector, u8 numSecs, void* buffer)
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{
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int i;
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int j = (numSecs > 0 ? numSecs : 256);
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u16 *buff = (u16*)buffer;
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#ifdef _CF_ALLOW_UNALIGNED
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u8 *buff_u8 = (u8*)buffer;
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int temp;
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#endif
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#if defined _CF_USE_DMA && defined NDS && defined ARM9
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DC_FlushRange( buffer, j * BYTE_PER_READ);
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#endif
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// Wait until CF card is finished previous commands
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i=0;
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while ((MP_REG_CMD & CF_STS_BUSY) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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// Wait until card is ready for commands
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i = 0;
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while ((!(MP_REG_STS & CF_STS_INSERTED)) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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if (i >= CARD_TIMEOUT)
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return false;
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// Set number of sectors to write
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MP_REG_SEC = numSecs;
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// Set write sector
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MP_REG_LBA1 = sector & 0xFF; // 1st byte of sector number
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MP_REG_LBA2 = (sector >> 8) & 0xFF; // 2nd byte of sector number
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MP_REG_LBA3 = (sector >> 16) & 0xFF; // 3rd byte of sector number
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MP_REG_LBA4 = ((sector >> 24) & 0x0F )| CF_CMD_LBA; // last nibble of sector number
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// Set command to write
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MP_REG_CMD = CF_CMD_WRITE;
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while (j--)
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{
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// Wait until card is ready for writing
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i = 0;
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while (((MP_REG_STS & 0xff) != CF_STS_READY) && (i < CARD_TIMEOUT))
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{
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i++;
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}
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if (i >= CARD_TIMEOUT)
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return false;
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// Write data
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#ifdef _CF_USE_DMA
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#ifdef NDS
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DMA3_SRC = (u32)buff;
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DMA3_DEST = (u32)MP_DATA;
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DMA3_CR = 256 | DMA_COPY_HALFWORDS | DMA_DST_FIX;
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#else
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DMA3COPY( buff, MP_DATA, 256 | DMA16 | DMA_ENABLE | DMA_DST_FIXED);
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#endif
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buff += BYTE_PER_READ / 2;
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#elif defined _CF_ALLOW_UNALIGNED
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i=256;
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if ((u32)buff_u8 & 0x01) {
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while(i--)
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{
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temp = *buff_u8++;
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temp |= *buff_u8++ << 8;
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*MP_DATA = temp;
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}
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} else {
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while(i--)
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*MP_DATA = *buff++;
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}
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#else
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i=256;
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while(i--)
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*MP_DATA = *buff++;
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#endif
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}
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#if defined _CF_USE_DMA && defined NDS
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// Wait for end of transfer before returning
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while(DMA3_CR & DMA_BUSY);
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#endif
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return true;
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}
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/*-----------------------------------------------------------------
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MPCF_Shutdown
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unload the GBAMP CF interface
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-----------------------------------------------------------------*/
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bool MPCF_Shutdown(void)
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{
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return MPCF_ClearStatus() ;
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}
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/*-----------------------------------------------------------------
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MPCF_StartUp
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initializes the CF interface, returns true if successful,
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otherwise returns false
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-----------------------------------------------------------------*/
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bool MPCF_StartUp(void)
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{
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u8 temp = MP_REG_LBA1;
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MP_REG_LBA1 = (~temp & 0xFF);
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temp = (~temp & 0xFF);
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// NDM: Added GBA ROM header check so that this doesn't detect a Max Media Dock!
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return (MP_REG_LBA1 == temp) && ( *((u8 *) (0x080000B2)) == 0x96);
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}
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/*-----------------------------------------------------------------
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the actual interface structure
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-----------------------------------------------------------------*/
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IO_INTERFACE io_mpcf = {
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DEVICE_TYPE_MPCF,
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FEATURE_MEDIUM_CANREAD | FEATURE_MEDIUM_CANWRITE | FEATURE_SLOT_GBA,
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(FN_MEDIUM_STARTUP)&MPCF_StartUp,
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(FN_MEDIUM_ISINSERTED)&MPCF_IsInserted,
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(FN_MEDIUM_READSECTORS)&MPCF_ReadSectors,
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(FN_MEDIUM_WRITESECTORS)&MPCF_WriteSectors,
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(FN_MEDIUM_CLEARSTATUS)&MPCF_ClearStatus,
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(FN_MEDIUM_SHUTDOWN)&MPCF_Shutdown
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} ;
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/*-----------------------------------------------------------------
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MPCF_GetInterface
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returns the interface structure to host
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-----------------------------------------------------------------*/
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LPIO_INTERFACE MPCF_GetInterface(void) {
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return &io_mpcf ;
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} ;
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#endif // SUPPORT_MPCF
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