Mercurial > yaffs-ecoscentric-gpl
view direct/yaffs_norif1.c @ 423:29b309f8db6a
yaffs Add another test script
Signed-off-by: Charles Manning <cdhmanning@gmail.com>
| author | Charles Manning <cdhmanning@gmail.com> |
|---|---|
| date | Fri, 07 May 2010 15:24:51 +1200 |
| parents | b5309c9b6d7f |
| children |
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/* * YAFFS: Yet Another Flash File System. A NAND-flash specific file system. * * Copyright (C) 2002-2010 Aleph One Ltd. * for Toby Churchill Ltd and Brightstar Engineering * * Created by Charles Manning <charles@aleph1.co.uk> * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. */ /* * This is an interface module for handling NOR in yaffs1 mode. */ /* First set up for M18 with 1k chunks and 16-byte spares. * * NB We're using the oddball M18 modes of operation here * The chip is 64MB based at 0x0000, but YAFFS only going to use the top half * ie. YAFFS will be from 32MB to 64MB. * * The M18 has two ways of writing data. Every Programming Region (1kbytes) * can be programmed in two modes: * * Object Mode 1024 bytes of write once data. * * Control Mode: 512bytes of bit-writeable data. * This is arranged as 32 * (16 bytes of bit-writable followed by 16 bytes of "dont touch") * * The block size is 256kB, making 128 blocks in the 32MB YAFFS area. * Each block comprises: * Offset 0k: 248 x 1k data pages * Offset 248k: 248 x 32-byte spare areas implemented as 16 bytes of spare followed by 16 bytes untouched) * Offset 248k + (248 * 32): Format marker * */ const char *yaffs_norif1_c_version = "$Id: yaffs_norif1.c,v 1.6 2010-02-18 01:18:04 charles Exp $"; #include "yaffs_norif1.h" #include "yportenv.h" #include "yaffs_trace.h" #include "yaffs_flashif.h" #include "yaffs_guts.h" #include "devextras.h" #define SPARE_BYTES_PER_CHUNK 16 #define M18_SKIP 16 #define PROG_REGION_SIZE 1024 #define BLOCK_SIZE_IN_BYTES (256*1024) #define CHUNKS_PER_BLOCK 248 #define SPARE_AREA_OFFSET (CHUNKS_PER_BLOCK * PROG_REGION_SIZE) #define FORMAT_OFFSET (SPARE_AREA_OFFSET + CHUNKS_PER_BLOCK * (SPARE_BYTES_PER_CHUNK + M18_SKIP)) #define FORMAT_VALUE 0x1234 #define DATA_BYTES_PER_CHUNK 1024 #define BLOCKS_IN_DEVICE (8*1024/256) #define YNOR_PREMARKER (0xF6) #define YNOR_POSTMARKER (0xF0) #if 1 /* Compile this for a simulation */ #include "ynorsim.h" #define ynorif1_FlashInit() ynorsim_Initialise() #define ynorif1_FlashDeinit() ynorsim_Shutdown() #define ynorif1_FlashWrite32(addr,buf,nwords) ynorsim_Write32(addr,buf,nwords) #define ynorif1_FlashRead32(addr,buf,nwords) ynorsim_Read32(addr,buf,nwords) #define ynorif1_FlashEraseBlock(addr) ynorsim_EraseBlock(addr) #define DEVICE_BASE ynorsim_GetBase() #else /* Compile this for running on blob, hacked for yaffs access */ #include "../blob/yflashrw.h" #define ynorif1_FlashInit() do{} while(0) #define ynorif1_FlashDeinit() do {} while(0) #define ynorif1_FlashWrite32(addr,buf,nwords) Y_FlashWrite(addr,buf,nwords) #define ynorif1_FlashRead32(addr,buf,nwords) Y_FlashRead(addr,buf,nwords) #define ynorif1_FlashEraseBlock(addr) Y_FlashErase(addr,BLOCK_SIZE_IN_BYTES) #define DEVICE_BASE (32 * 1024 * 1024) #endif __u32 *Block2Addr(yaffs_Device *dev, int blockNumber) { __u32 addr; addr = (__u32) DEVICE_BASE; addr += blockNumber * BLOCK_SIZE_IN_BYTES; return (__u32 *) addr; } __u32 *Block2FormatAddr(yaffs_Device *dev,int blockNumber) { __u32 addr; addr = (__u32) Block2Addr(dev,blockNumber); addr += FORMAT_OFFSET; return (__u32 *)addr; } __u32 *Chunk2DataAddr(yaffs_Device *dev,int chunkId) { unsigned block; unsigned chunkInBlock; __u32 addr; block = chunkId/dev->param.nChunksPerBlock; chunkInBlock = chunkId % dev->param.nChunksPerBlock; addr = (__u32) Block2Addr(dev,block); addr += chunkInBlock * DATA_BYTES_PER_CHUNK; return (__u32 *)addr; } __u32 *Chunk2SpareAddr(yaffs_Device *dev,int chunkId) { unsigned block; unsigned chunkInBlock; __u32 addr; block = chunkId/dev->param.nChunksPerBlock; chunkInBlock = chunkId % dev->param.nChunksPerBlock; addr = (__u32) Block2Addr(dev,block); addr += SPARE_AREA_OFFSET; addr += chunkInBlock * (SPARE_BYTES_PER_CHUNK + M18_SKIP); return (__u32 *)addr; } void ynorif1_AndBytes(__u8*target, const __u8 *src, int nbytes) { while(nbytes > 0){ *target &= *src; target++; src++; nbytes--; } } int ynorif1_WriteChunkToNAND(yaffs_Device *dev,int chunkInNAND,const __u8 *data, const yaffs_Spare *spare) { __u32 *dataAddr = Chunk2DataAddr(dev,chunkInNAND); __u32 *spareAddr = Chunk2SpareAddr(dev,chunkInNAND); yaffs_Spare tmpSpare; /* We should only be getting called for one of 3 reasons: * Writing a chunk: data and spare will not be NULL * Writing a deletion marker: data will be NULL, spare not NULL * Writing a bad block marker: data will be NULL, spare not NULL */ if(sizeof(yaffs_Spare) != 16) YBUG(); if(data && spare) { if(spare->pageStatus != 0xff) YBUG(); /* Write a pre-marker */ memset(&tmpSpare,0xff,sizeof(tmpSpare)); tmpSpare.pageStatus = YNOR_PREMARKER; ynorif1_FlashWrite32(spareAddr,(__u32 *)&tmpSpare,sizeof(yaffs_Spare)/4); /* Write the data */ ynorif1_FlashWrite32(dataAddr,(__u32 *)data,dev->param.totalBytesPerChunk / 4); memcpy(&tmpSpare,spare,sizeof(yaffs_Spare)); /* Write the real tags, but override the premarker*/ tmpSpare.pageStatus = YNOR_PREMARKER; ynorif1_FlashWrite32(spareAddr,(__u32 *)&tmpSpare,sizeof(yaffs_Spare)/4); /* Write a post-marker */ tmpSpare.pageStatus = YNOR_POSTMARKER; ynorif1_FlashWrite32(spareAddr,(__u32 *)&tmpSpare,sizeof(tmpSpare)/4); } else if(spare){ /* This has to be a read-modify-write operation to handle NOR-ness */ ynorif1_FlashRead32(spareAddr,(__u32 *)&tmpSpare,16/ 4); ynorif1_AndBytes((__u8 *)&tmpSpare,(__u8 *)spare,sizeof(yaffs_Spare)); ynorif1_FlashWrite32(spareAddr,(__u32 *)&tmpSpare,16/ 4); } else { YBUG(); } return YAFFS_OK; } int ynorif1_ReadChunkFromNAND(yaffs_Device *dev,int chunkInNAND, __u8 *data, yaffs_Spare *spare) { __u32 *dataAddr = Chunk2DataAddr(dev,chunkInNAND); __u32 *spareAddr = Chunk2SpareAddr(dev,chunkInNAND); if(data) { ynorif1_FlashRead32(dataAddr,(__u32 *)data,dev->param.totalBytesPerChunk / 4); } if(spare) { ynorif1_FlashRead32(spareAddr,(__u32 *)spare,16/ 4); /* If the page status is YNOR_POSTMARKER then it was written properly * so change that to 0xFF so that the rest of yaffs is happy. */ if(spare->pageStatus == YNOR_POSTMARKER) spare->pageStatus = 0xFF; else if(spare->pageStatus != 0xff && (spare->pageStatus | YNOR_PREMARKER) != 0xff) spare->pageStatus = YNOR_PREMARKER; } return YAFFS_OK; } static int ynorif1_FormatBlock(yaffs_Device *dev, int blockNumber) { __u32 *blockAddr = Block2Addr(dev,blockNumber); __u32 *formatAddr = Block2FormatAddr(dev,blockNumber); __u32 formatValue = FORMAT_VALUE; ynorif1_FlashEraseBlock(blockAddr); ynorif1_FlashWrite32(formatAddr,&formatValue,1); return YAFFS_OK; } static int ynorif1_UnformatBlock(yaffs_Device *dev, int blockNumber) { __u32 *formatAddr = Block2FormatAddr(dev,blockNumber); __u32 formatValue = 0; ynorif1_FlashWrite32(formatAddr,&formatValue,1); return YAFFS_OK; } static int ynorif1_IsBlockFormatted(yaffs_Device *dev, int blockNumber) { __u32 *formatAddr = Block2FormatAddr(dev,blockNumber); __u32 formatValue; ynorif1_FlashRead32(formatAddr,&formatValue,1); return (formatValue == FORMAT_VALUE); } int ynorif1_EraseBlockInNAND(yaffs_Device *dev, int blockNumber) { if(blockNumber < 0 || blockNumber >= BLOCKS_IN_DEVICE) { T(YAFFS_TRACE_ALWAYS,("Attempt to erase non-existant block %d\n",blockNumber)); return YAFFS_FAIL; } else { ynorif1_UnformatBlock(dev,blockNumber); ynorif1_FormatBlock(dev,blockNumber); return YAFFS_OK; } } int ynorif1_InitialiseNAND(yaffs_Device *dev) { int i; ynorif1_FlashInit(); /* Go through the blocks formatting them if they are not formatted */ for(i = dev->param.startBlock; i <= dev->param.endBlock; i++){ if(!ynorif1_IsBlockFormatted(dev,i)){ ynorif1_FormatBlock(dev,i); } } return YAFFS_OK; } int ynorif1_DeinitialiseNAND(yaffs_Device *dev) { ynorif1_FlashDeinit(); return YAFFS_OK; }
