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@@ -84,25 +84,23 @@ static void onenand_writew(unsigned short value, void __iomem *addr)
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/**
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* onenand_block_address - [DEFAULT] Get block address
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- * @param device the device id
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+ * @param this onenand chip data structure
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* @param block the block
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* @return translated block address if DDP, otherwise same
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*
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* Setup Start Address 1 Register (F100h)
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*/
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-static int onenand_block_address(int device, int block)
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+static int onenand_block_address(struct onenand_chip *this, int block)
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{
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- if (device & ONENAND_DEVICE_IS_DDP) {
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+ if (this->device_id & ONENAND_DEVICE_IS_DDP) {
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/* Device Flash Core select, NAND Flash Block Address */
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- int dfs = 0, density, mask;
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+ int dfs = 0;
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- density = device >> ONENAND_DEVICE_DENSITY_SHIFT;
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- mask = (1 << (density + 6));
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-
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- if (block & mask)
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+ if (block & this->density_mask)
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dfs = 1;
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- return (dfs << ONENAND_DDP_SHIFT) | (block & (mask - 1));
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+ return (dfs << ONENAND_DDP_SHIFT) |
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+ (block & (this->density_mask - 1));
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}
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return block;
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@@ -110,22 +108,19 @@ static int onenand_block_address(int device, int block)
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/**
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* onenand_bufferram_address - [DEFAULT] Get bufferram address
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- * @param device the device id
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+ * @param this onenand chip data structure
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* @param block the block
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* @return set DBS value if DDP, otherwise 0
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*
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* Setup Start Address 2 Register (F101h) for DDP
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*/
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-static int onenand_bufferram_address(int device, int block)
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+static int onenand_bufferram_address(struct onenand_chip *this, int block)
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{
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- if (device & ONENAND_DEVICE_IS_DDP) {
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+ if (this->device_id & ONENAND_DEVICE_IS_DDP) {
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/* Device BufferRAM Select */
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- int dbs = 0, density, mask;
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-
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- density = device >> ONENAND_DEVICE_DENSITY_SHIFT;
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- mask = (1 << (density + 6));
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+ int dbs = 0;
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- if (block & mask)
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+ if (block & this->density_mask)
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dbs = 1;
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return (dbs << ONENAND_DDP_SHIFT);
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@@ -223,7 +218,7 @@ static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t le
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/* NOTE: The setting order of the registers is very important! */
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if (cmd == ONENAND_CMD_BUFFERRAM) {
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/* Select DataRAM for DDP */
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- value = onenand_bufferram_address(this->device_id, block);
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+ value = onenand_bufferram_address(this, block);
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this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
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/* Switch to the next data buffer */
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@@ -234,7 +229,7 @@ static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t le
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if (block != -1) {
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/* Write 'DFS, FBA' of Flash */
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- value = onenand_block_address(this->device_id, block);
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+ value = onenand_block_address(this, block);
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this->write_word(value, this->base + ONENAND_REG_START_ADDRESS1);
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}
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@@ -263,7 +258,7 @@ static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t le
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if (readcmd) {
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/* Select DataRAM for DDP */
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- value = onenand_bufferram_address(this->device_id, block);
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+ value = onenand_bufferram_address(this, block);
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this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
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}
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}
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@@ -1313,7 +1308,7 @@ static int onenand_unlock(struct mtd_info *mtd, loff_t ofs, size_t len)
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continue;
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/* Set block address for read block status */
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- value = onenand_block_address(this->device_id, block);
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+ value = onenand_block_address(this, block);
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this->write_word(value, this->base + ONENAND_REG_START_ADDRESS1);
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/* Check lock status */
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@@ -1415,6 +1410,8 @@ static int onenand_probe(struct mtd_info *mtd)
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density = dev_id >> ONENAND_DEVICE_DENSITY_SHIFT;
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this->chipsize = (16 << density) << 20;
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+ /* Set density mask. it is used for DDP */
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+ this->density_mask = (1 << (density + 6));
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/* OneNAND page size & block size */
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/* The data buffer size is equal to page size */
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