[SCSI] qla4xxx: fix for timing issue for nvram accesses.
This patch fixes a timing issue related to nvram accesses in qla4xxx driver for some cpu/slot speed combination. Signed-off-by: David Somayajulu <david.somayajulu@qlogic.com> Signed-off-by: James Bottomley <James.Bottomley@SteelEye.com>
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@ -7,6 +7,13 @@
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#include "ql4_def.h"
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static inline void eeprom_cmd(uint32_t cmd, struct scsi_qla_host *ha)
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{
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writel(cmd, isp_nvram(ha));
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readl(isp_nvram(ha));
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udelay(1);
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}
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static inline int eeprom_size(struct scsi_qla_host *ha)
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{
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return is_qla4010(ha) ? FM93C66A_SIZE_16 : FM93C86A_SIZE_16;
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@ -28,8 +35,7 @@ static int fm93c56a_select(struct scsi_qla_host * ha)
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DEBUG5(printk(KERN_ERR "fm93c56a_select:\n"));
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ha->eeprom_cmd_data = AUBURN_EEPROM_CS_1 | 0x000f0000;
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writel(ha->eeprom_cmd_data, isp_nvram(ha));
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readl(isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data, ha);
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return 1;
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}
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@ -41,12 +47,13 @@ static int fm93c56a_cmd(struct scsi_qla_host * ha, int cmd, int addr)
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int previousBit;
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/* Clock in a zero, then do the start bit. */
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writel(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1, isp_nvram(ha));
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writel(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1 |
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AUBURN_EEPROM_CLK_RISE, isp_nvram(ha));
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writel(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1 |
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AUBURN_EEPROM_CLK_FALL, isp_nvram(ha));
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readl(isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1, ha);
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eeprom_cmd(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1 |
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AUBURN_EEPROM_CLK_RISE, ha);
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eeprom_cmd(ha->eeprom_cmd_data | AUBURN_EEPROM_DO_1 |
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AUBURN_EEPROM_CLK_FALL, ha);
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mask = 1 << (FM93C56A_CMD_BITS - 1);
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/* Force the previous data bit to be different. */
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@ -60,14 +67,14 @@ static int fm93c56a_cmd(struct scsi_qla_host * ha, int cmd, int addr)
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* If the bit changed, then change the DO state to
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* match.
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*/
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writel(ha->eeprom_cmd_data | dataBit, isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data | dataBit, ha);
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previousBit = dataBit;
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}
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writel(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_RISE, isp_nvram(ha));
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writel(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_FALL, isp_nvram(ha));
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readl(isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_RISE, ha);
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eeprom_cmd(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_FALL, ha);
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cmd = cmd << 1;
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}
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mask = 1 << (eeprom_no_addr_bits(ha) - 1);
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@ -82,14 +89,15 @@ static int fm93c56a_cmd(struct scsi_qla_host * ha, int cmd, int addr)
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* If the bit changed, then change the DO state to
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* match.
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*/
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writel(ha->eeprom_cmd_data | dataBit, isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data | dataBit, ha);
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previousBit = dataBit;
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}
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writel(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_RISE, isp_nvram(ha));
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writel(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_FALL, isp_nvram(ha));
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readl(isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_RISE, ha);
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eeprom_cmd(ha->eeprom_cmd_data | dataBit |
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AUBURN_EEPROM_CLK_FALL, ha);
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addr = addr << 1;
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}
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return 1;
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@ -98,8 +106,7 @@ static int fm93c56a_cmd(struct scsi_qla_host * ha, int cmd, int addr)
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static int fm93c56a_deselect(struct scsi_qla_host * ha)
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{
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ha->eeprom_cmd_data = AUBURN_EEPROM_CS_0 | 0x000f0000;
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writel(ha->eeprom_cmd_data, isp_nvram(ha));
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readl(isp_nvram(ha));
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eeprom_cmd(ha->eeprom_cmd_data, ha);
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return 1;
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}
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@ -112,12 +119,13 @@ static int fm93c56a_datain(struct scsi_qla_host * ha, unsigned short *value)
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/* Read the data bits
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* The first bit is a dummy. Clock right over it. */
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for (i = 0; i < eeprom_no_data_bits(ha); i++) {
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writel(ha->eeprom_cmd_data |
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AUBURN_EEPROM_CLK_RISE, isp_nvram(ha));
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writel(ha->eeprom_cmd_data |
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AUBURN_EEPROM_CLK_FALL, isp_nvram(ha));
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dataBit =
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(readw(isp_nvram(ha)) & AUBURN_EEPROM_DI_1) ? 1 : 0;
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eeprom_cmd(ha->eeprom_cmd_data |
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AUBURN_EEPROM_CLK_RISE, ha);
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eeprom_cmd(ha->eeprom_cmd_data |
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AUBURN_EEPROM_CLK_FALL, ha);
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dataBit = (readw(isp_nvram(ha)) & AUBURN_EEPROM_DI_1) ? 1 : 0;
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data = (data << 1) | dataBit;
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}
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