Staging: slicoss: remove WRITE_REG64 wrapper
It's not needed, so just call the function instead of using a define. Cc: Lior Dotan <liodot@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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28980a3c29
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@ -44,8 +44,6 @@
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#define WRITE_REG(reg, value, flush) \
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slic_reg32_write((®), (value), (flush))
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#define WRITE_REG64(a, reg, value, regh, valh, flush) \
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slic_reg64_write((a), (®), (value), (®h), (valh), (flush))
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#endif /* _SLIC_OS_SPECIFIC_H_ */
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@ -65,8 +65,6 @@ static void slic_config_pci(struct pci_dev *pcidev);
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static struct sk_buff *slic_rcvqueue_getnext(struct adapter *adapter);
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static inline void slic_reg32_write(void __iomem *reg, u32 value, uint flush);
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static inline void slic_reg64_write(struct adapter *adapter, void __iomem *reg,
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u32 value, void __iomem *regh, u32 paddrh, uint flush);
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#if SLIC_GET_STATS_ENABLED
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static struct net_device_stats *slic_get_stats(struct net_device *dev);
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@ -202,10 +202,9 @@ static inline void slic_reg32_write(void __iomem *reg, u32 value, uint flush)
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mb();
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}
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static inline void slic_reg64_write(struct adapter *adapter,
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void __iomem *reg,
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u32 value,
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void __iomem *regh, u32 paddrh, uint flush)
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static inline void slic_reg64_write(struct adapter *adapter, void __iomem *reg,
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u32 value, void __iomem *regh, u32 paddrh,
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bool flush)
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{
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spin_lock_irqsave(&adapter->bit64reglock.lock,
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adapter->bit64reglock.flags);
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@ -1004,11 +1003,10 @@ static int slic_xmit_start(struct sk_buff *skb, struct net_device *dev)
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WRITE_REG(adapter->slic_regs->slic_cbar,
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(hcmd->paddrl | hcmd->cmdsize), DONT_FLUSH);
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} else {
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WRITE_REG64(adapter,
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adapter->slic_regs->slic_cbar64,
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(hcmd->paddrl | hcmd->cmdsize),
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adapter->slic_regs->slic_addr_upper,
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hcmd->paddrh, DONT_FLUSH);
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slic_reg64_write(adapter, &adapter->slic_regs->slic_cbar64,
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(hcmd->paddrl | hcmd->cmdsize),
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&adapter->slic_regs->slic_addr_upper,
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hcmd->paddrh, DONT_FLUSH);
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}
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xmit_done:
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return 0;
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@ -2481,11 +2479,10 @@ static int slic_card_init(struct sliccard *card, struct adapter *adapter)
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if (adapter->pshmem->isr & ISR_UPC) {
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adapter->pshmem->isr = 0;
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WRITE_REG64(adapter,
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slic_regs->slic_isp,
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0,
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slic_regs->slic_addr_upper,
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0, FLUSH);
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slic_reg64_write(adapter,
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&slic_regs->slic_isp, 0,
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&slic_regs->slic_addr_upper,
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0, FLUSH);
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WRITE_REG(slic_regs->slic_isr, 0,
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FLUSH);
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@ -2506,10 +2503,10 @@ static int slic_card_init(struct sliccard *card, struct adapter *adapter)
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DBG_MSG("%s shmem[%p] shmem->isr[%x]\n",
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__func__, adapter->pshmem,
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adapter->pshmem->isr);
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WRITE_REG64(adapter,
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slic_regs->slic_isp, 0,
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slic_regs->slic_addr_upper,
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0, FLUSH);
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slic_reg64_write(adapter,
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&slic_regs->slic_isp, 0,
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&slic_regs->slic_addr_upper,
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0, FLUSH);
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return -EINVAL;
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}
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}
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@ -2594,9 +2591,9 @@ static int slic_card_init(struct sliccard *card, struct adapter *adapter)
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if ((!card->config.EepromValid) &&
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(adapter->reg_params.fail_on_bad_eeprom)) {
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WRITE_REG64(adapter,
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slic_regs->slic_isp,
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0, slic_regs->slic_addr_upper, 0, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_isp, 0,
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&slic_regs->slic_addr_upper,
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0, FLUSH);
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DBG_ERROR
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("unsupported CONFIGURATION EEPROM invalid\n");
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return -EINVAL;
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@ -3418,24 +3415,22 @@ static void slic_upr_start(struct adapter *adapter)
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if (upr->upr_data_h == 0) {
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WRITE_REG(slic_regs->slic_stats, upr->upr_data, FLUSH);
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} else {
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WRITE_REG64(adapter,
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slic_regs->slic_stats64,
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upr->upr_data,
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slic_regs->slic_addr_upper,
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upr->upr_data_h, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_stats64,
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upr->upr_data,
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&slic_regs->slic_addr_upper,
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upr->upr_data_h, FLUSH);
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}
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break;
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case SLIC_UPR_RLSR:
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WRITE_REG64(adapter,
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slic_regs->slic_rlsr,
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upr->upr_data,
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slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_rlsr, upr->upr_data,
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&slic_regs->slic_addr_upper, upr->upr_data_h,
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FLUSH);
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break;
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case SLIC_UPR_RCONFIG:
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DBG_MSG("%s SLIC_UPR_RCONFIG!!!!\n", __func__);
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DBG_MSG("WRITE_REG64 adapter[%p]\n"
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DBG_MSG("slic_reg64_write adapter[%p]\n"
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" a->slic_regs[%p] slic_regs[%p]\n"
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" &slic_rconfig[%p] &slic_addr_upper[%p]\n"
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" upr[%p]\n"
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@ -3443,43 +3438,21 @@ static void slic_upr_start(struct adapter *adapter)
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adapter, adapter->slic_regs, slic_regs,
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&slic_regs->slic_rconfig, &slic_regs->slic_addr_upper,
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upr, upr->upr_data, upr->upr_data_h);
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WRITE_REG64(adapter,
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slic_regs->slic_rconfig,
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upr->upr_data,
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slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_rconfig,
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upr->upr_data, &slic_regs->slic_addr_upper,
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upr->upr_data_h, FLUSH);
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break;
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#if SLIC_DUMP_ENABLED
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case SLIC_UPR_DUMP:
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#if 0
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DBG_MSG("%s SLIC_UPR_DUMP!!!!\n", __func__);
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DBG_MSG("WRITE_REG64 adapter[%p]\n"
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" upr_buffer[%x] upr_bufferh[%x]\n"
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" upr_data[%x] upr_datah[%x]\n"
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" cmdbuff[%p] cmdbuffP[%p]\n"
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" dumpbuff[%p] dumpbuffP[%p]\n",
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adapter, upr->upr_buffer, upr->upr_buffer_h,
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upr->upr_data, upr->upr_data_h,
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adapter->card->cmdbuffer,
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(void *)adapter->card->cmdbuffer_phys,
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adapter->card->dumpbuffer, (
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void *)adapter->card->dumpbuffer_phys);
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ptr1 = (char *)slic_regs;
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ptr2 = (char *)(&slic_regs->slic_dump_cmd);
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cmdoffset = ptr2 - ptr1;
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DBG_MSG("slic_dump_cmd register offset [%x]\n", cmdoffset);
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#endif
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if (upr->upr_buffer || upr->upr_buffer_h) {
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WRITE_REG64(adapter,
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slic_regs->slic_dump_data,
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upr->upr_buffer,
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slic_regs->slic_addr_upper,
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upr->upr_buffer_h, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_dump_data,
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upr->upr_buffer,
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&slic_regs->slic_addr_upper,
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upr->upr_buffer_h, FLUSH);
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}
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WRITE_REG64(adapter,
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slic_regs->slic_dump_cmd,
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upr->upr_data,
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slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_dump_cmd,
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upr->upr_data, slic_regs->slic_addr_upper,
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upr->upr_data_h, FLUSH);
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break;
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#endif
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case SLIC_UPR_PING:
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@ -3749,11 +3722,10 @@ static int slic_rspqueue_init(struct adapter *adapter)
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(rspq->paddr[i] | SLIC_RSPQ_BUFSINPAGE),
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DONT_FLUSH);
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} else {
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WRITE_REG64(adapter,
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slic_regs->slic_rbar64,
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(rspq->paddr[i] | SLIC_RSPQ_BUFSINPAGE),
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slic_regs->slic_addr_upper,
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paddrh, DONT_FLUSH);
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slic_reg64_write(adapter, &slic_regs->slic_rbar64,
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(rspq->paddr[i] | SLIC_RSPQ_BUFSINPAGE),
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&slic_regs->slic_addr_upper,
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paddrh, DONT_FLUSH);
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}
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}
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rspq->offset = 0;
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@ -3829,11 +3801,9 @@ static struct slic_rspbuf *slic_rspqueue_getnext(struct adapter *adapter)
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#endif
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} else {
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ASSERT(rspq->offset == SLIC_RSPQ_BUFSINPAGE);
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WRITE_REG64(adapter,
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adapter->slic_regs->slic_rbar64,
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(rspq->
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paddr[rspq->pageindex] | SLIC_RSPQ_BUFSINPAGE),
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adapter->slic_regs->slic_addr_upper, 0, DONT_FLUSH);
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slic_reg64_write(adapter, &adapter->slic_regs->slic_rbar64,
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(rspq->paddr[rspq->pageindex] | SLIC_RSPQ_BUFSINPAGE),
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&adapter->slic_regs->slic_addr_upper, 0, DONT_FLUSH);
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rspq->pageindex = (++rspq->pageindex) % rspq->num_pages;
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rspq->offset = 0;
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rspq->rspbuf = (struct slic_rspbuf *)
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@ -4295,11 +4265,11 @@ retry_rcvqfill:
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WRITE_REG(adapter->slic_regs->slic_hbar,
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(u32) paddrl, DONT_FLUSH);
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} else {
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WRITE_REG64(adapter,
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adapter->slic_regs->slic_hbar64,
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(u32) paddrl,
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adapter->slic_regs->slic_addr_upper,
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(u32) paddrh, DONT_FLUSH);
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slic_reg64_write(adapter,
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&adapter->slic_regs->slic_hbar64,
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paddrl,
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&adapter->slic_regs->slic_addr_upper,
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paddrh, DONT_FLUSH);
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}
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if (rcvq->head)
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rcvq->tail->next = skb;
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@ -4353,11 +4323,9 @@ static u32 slic_rcvqueue_reinsert(struct adapter *adapter, struct sk_buff *skb)
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WRITE_REG(adapter->slic_regs->slic_hbar, (u32) paddrl,
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DONT_FLUSH);
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} else {
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WRITE_REG64(adapter,
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adapter->slic_regs->slic_hbar64,
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paddrl,
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adapter->slic_regs->slic_addr_upper,
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paddrh, DONT_FLUSH);
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slic_reg64_write(adapter, &adapter->slic_regs->slic_hbar64,
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paddrl, &adapter->slic_regs->slic_addr_upper,
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paddrh, DONT_FLUSH);
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}
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if (rcvq->head)
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rcvq->tail->next = skb;
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