[SCSI] tmscsim: remove long dead DMA_INT
DMA_INT code is disabled since 1998, remove it to prepare for further cleanup. Signed-off-by: G. Liakhovetski <g.liakhovetski@gmx.de> Signed-off-by: James Bottomley <James.Bottomley@SteelEye.com>
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860bfecf71
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@ -625,70 +625,6 @@ dc390_StartSCSI( struct dc390_acb* pACB, struct dc390_dcb* pDCB, struct dc390_sr
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return 0;
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}
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//#define DMA_INT EN_DMA_INT /*| EN_PAGE_INT*/
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#define DMA_INT 0
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#if DMA_INT
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/* This is similar to AM53C974.c ... */
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static u8
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dc390_dma_intr (struct dc390_acb* pACB)
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{
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struct dc390_srb* pSRB;
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u8 dstate;
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DEBUG0(u16 pstate; struct pci_dev *pdev = pACB->pdev);
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DEBUG0(pci_read_config_word(pdev, PCI_STATUS, &pstate));
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DEBUG0(if (pstate & (PCI_STATUS_SIG_SYSTEM_ERROR | PCI_STATUS_DETECTED_PARITY))\
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{ printk(KERN_WARNING "DC390: PCI state = %04x!\n", pstate); \
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pci_write_config_word(pdev, PCI_STATUS, (PCI_STATUS_SIG_SYSTEM_ERROR | PCI_STATUS_DETECTED_PARITY));});
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dstate = DC390_read8 (DMA_Status);
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if (! pACB->pActiveDCB || ! pACB->pActiveDCB->pActiveSRB) return dstate;
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else pSRB = pACB->pActiveDCB->pActiveSRB;
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if (dstate & (DMA_XFER_ABORT | DMA_XFER_ERROR | POWER_DOWN | PCI_MS_ABORT))
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{
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printk (KERN_ERR "DC390: DMA error (%02x)!\n", dstate);
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return dstate;
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}
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if (dstate & DMA_XFER_DONE)
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{
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u32 residual, xferCnt; int ctr = 6000000;
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if (! (DC390_read8 (DMA_Cmd) & READ_DIRECTION))
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{
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do
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{
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DEBUG1(printk (KERN_DEBUG "DC390: read residual bytes ... \n"));
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dstate = DC390_read8 (DMA_Status);
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residual = DC390_read8 (CtcReg_Low) | DC390_read8 (CtcReg_Mid) << 8 |
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DC390_read8 (CtcReg_High) << 16;
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residual += DC390_read8 (Current_Fifo) & 0x1f;
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} while (residual && ! (dstate & SCSI_INTERRUPT) && --ctr);
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if (!ctr) printk (KERN_CRIT "DC390: dma_intr: DMA aborted unfinished: %06x bytes remain!!\n", DC390_read32 (DMA_Wk_ByteCntr));
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/* residual = ... */
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}
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else
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residual = 0;
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/* ??? */
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xferCnt = pSRB->SGToBeXferLen - residual;
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pSRB->SGBusAddr += xferCnt;
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pSRB->TotalXferredLen += xferCnt;
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pSRB->SGToBeXferLen = residual;
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# ifdef DC390_DEBUG0
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printk (KERN_INFO "DC390: DMA: residual = %i, xfer = %i\n",
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(unsigned int)residual, (unsigned int)xferCnt);
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# endif
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DC390_write8 (DMA_Cmd, DMA_IDLE_CMD);
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}
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dc390_laststatus &= ~0xff000000; dc390_laststatus |= dstate << 24;
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return dstate;
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}
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#endif
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static void __inline__
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dc390_InvalidCmd(struct dc390_acb* pACB)
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@ -708,9 +644,6 @@ DC390_Interrupt(void *dev_id)
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u8 phase;
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void (*stateV)( struct dc390_acb*, struct dc390_srb*, u8 *);
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u8 istate, istatus;
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#if DMA_INT
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u8 dstatus;
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#endif
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sstatus = DC390_read8 (Scsi_Status);
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if( !(sstatus & INTERRUPT) )
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@ -718,22 +651,9 @@ DC390_Interrupt(void *dev_id)
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DEBUG1(printk (KERN_DEBUG "sstatus=%02x,", sstatus));
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#if DMA_INT
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spin_lock_irq(pACB->pScsiHost->host_lock);
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dstatus = dc390_dma_intr (pACB);
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spin_unlock_irq(pACB->pScsiHost->host_lock);
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DEBUG1(printk (KERN_DEBUG "dstatus=%02x,", dstatus));
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if (! (dstatus & SCSI_INTERRUPT))
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{
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DEBUG0(printk (KERN_WARNING "DC390 Int w/o SCSI actions (only DMA?)\n"));
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return IRQ_NONE;
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}
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#else
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//DC390_write32 (DMA_ScsiBusCtrl, WRT_ERASE_DMA_STAT | EN_INT_ON_PCI_ABORT);
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//dstatus = DC390_read8 (DMA_Status);
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//DC390_write32 (DMA_ScsiBusCtrl, EN_INT_ON_PCI_ABORT);
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#endif
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spin_lock_irq(pACB->pScsiHost->host_lock);
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@ -879,7 +799,7 @@ dc390_DataOut_0( struct dc390_acb* pACB, struct dc390_srb* pSRB, u8 *psstatus)
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}
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if ((*psstatus & 7) != SCSI_DATA_OUT)
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{
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DC390_write8 (DMA_Cmd, WRITE_DIRECTION+DMA_IDLE_CMD); /* | DMA_INT */
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DC390_write8 (DMA_Cmd, WRITE_DIRECTION+DMA_IDLE_CMD);
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DC390_write8 (ScsiCmd, CLEAR_FIFO_CMD);
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}
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}
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@ -924,7 +844,7 @@ dc390_DataIn_0( struct dc390_acb* pACB, struct dc390_srb* pSRB, u8 *psstatus)
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+ ((unsigned long) DC390_read8 (CtcReg_Low)));
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DEBUG1(printk (KERN_DEBUG "Count_2_Zero (ResidCnt=%i,ToBeXfer=%li),", ResidCnt, pSRB->SGToBeXferLen));
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DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD); /* | DMA_INT */
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DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD);
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pSRB->TotalXferredLen += pSRB->SGToBeXferLen;
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pSRB->SGIndex++;
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@ -973,7 +893,7 @@ din_1:
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}
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/* It seems a DMA Blast abort isn't that bad ... */
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if (!i) printk (KERN_ERR "DC390: DMA Blast aborted unfinished!\n");
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//DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD); /* | DMA_INT */
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//DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD);
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dc390_laststatus &= ~0xff000000; dc390_laststatus |= bval << 24;
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DEBUG1(printk (KERN_DEBUG "Blast: Read %i times DMA_Status %02x", 0xa000-i, bval));
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@ -1013,7 +933,7 @@ din_1:
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if ((*psstatus & 7) != SCSI_DATA_IN)
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{
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DC390_write8 (ScsiCmd, CLEAR_FIFO_CMD);
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DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD); /* | DMA_INT */
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DC390_write8 (DMA_Cmd, READ_DIRECTION+DMA_IDLE_CMD);
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}
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}
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@ -1391,7 +1311,7 @@ dc390_DataIO_Comm( struct dc390_acb* pACB, struct dc390_srb* pSRB, u8 ioDir)
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if( pSRB->SGIndex < pSRB->SGcount )
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{
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DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir /* | DMA_INT */);
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DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir);
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if( !pSRB->SGToBeXferLen )
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{
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psgl = pSRB->pSegmentList;
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@ -1410,12 +1330,12 @@ dc390_DataIO_Comm( struct dc390_acb* pACB, struct dc390_srb* pSRB, u8 ioDir)
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DC390_write32 (DMA_XferCnt, pSRB->SGToBeXferLen);
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DC390_write32 (DMA_XferAddr, pSRB->SGBusAddr);
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//DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir); /* | DMA_INT; */
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//DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir);
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pSRB->SRBState = SRB_DATA_XFER;
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DC390_write8 (ScsiCmd, DMA_COMMAND+INFO_XFER_CMD);
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DC390_write8 (DMA_Cmd, DMA_START_CMD | ioDir | DMA_INT);
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DC390_write8 (DMA_Cmd, DMA_START_CMD | ioDir);
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//DEBUG1(DC390_write32 (DMA_ScsiBusCtrl, WRT_ERASE_DMA_STAT | EN_INT_ON_PCI_ABORT));
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//DEBUG1(printk (KERN_DEBUG "DC390: DMA_Status: %02x\n", DC390_read8 (DMA_Status)));
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//DEBUG1(DC390_write32 (DMA_ScsiBusCtrl, EN_INT_ON_PCI_ABORT));
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@ -1436,8 +1356,8 @@ dc390_DataIO_Comm( struct dc390_acb* pACB, struct dc390_srb* pSRB, u8 ioDir)
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pSRB->SRBState |= SRB_XFERPAD;
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DC390_write8 (ScsiCmd, DMA_COMMAND+XFER_PAD_BYTE);
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/*
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DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir); // | DMA_INT;
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DC390_write8 (DMA_Cmd, DMA_START_CMD | ioDir | DMA_INT);
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DC390_write8 (DMA_Cmd, DMA_IDLE_CMD | ioDir);
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DC390_write8 (DMA_Cmd, DMA_START_CMD | ioDir);
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*/
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}
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}
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