📄 mptbase.c
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/* (Bugzilla:fibrebugs, #513) * Bug fix (part 2)! 20010905 -sralston * Add additional "reason" check before call to GetLanConfigPages * (combined with GetIoUnitPage2 call). This prevents a somewhat * recursive scenario; GetLanConfigPages times out, timer expired * routine calls HardResetHandler, which calls into here again, * and we try GetLanConfigPages again... */ if ((ret == 0) && (reason == MPT_HOSTEVENT_IOC_BRINGUP)) { if ((int)ioc->chip_type <= (int)FC929) { /* * Pre-fetch FC port WWN and stuff... * (FCPortPage0_t stuff) */ for (ii=0; ii < ioc->facts.NumberOfPorts; ii++) { (void) GetFcPortPage0(ioc, ii); } if ((ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN) && (ioc->lan_cnfg_page0.Header.PageLength == 0)) { /* * Pre-fetch the ports LAN MAC address! * (LANPage1_t stuff) */ (void) GetLanConfigPages(ioc);#ifdef MPT_DEBUG { u8 *a = (u8*)&ioc->lan_cnfg_page1.HardwareAddressLow; dprintk((MYIOC_s_INFO_FMT "LanAddr = %02X:%02X:%02X:%02X:%02X:%02X\n", ioc->name, a[5], a[4], a[3], a[2], a[1], a[0] )); }#endif } } else { /* Get NVRAM and adapter maximums from SPP 0 and 2 */ mpt_GetScsiPortSettings(ioc, 0); /* Get version and length of SDP 1 */ mpt_readScsiDevicePageHeaders(ioc, 0); /* Find IM volumes */ if (ioc->facts.MsgVersion >= 0x0102) mpt_findImVolumes(ioc); /* Check, and possibly reset, the coalescing value */ mpt_read_ioc_pg_1(ioc); mpt_read_ioc_pg_4(ioc); } GetIoUnitPage2(ioc); } /* * Call each currently registered protocol IOC reset handler * with post-reset indication. * NOTE: If we're doing _IOC_BRINGUP, there can be no * MptResetHandlers[] registered yet. */ if (hard_reset_done) { r = handlers = 0; for (ii=MPT_MAX_PROTOCOL_DRIVERS-1; ii; ii--) { if ((ret == 0) && MptResetHandlers[ii]) { dprintk((MYIOC_s_INFO_FMT "Calling IOC post_reset handler #%d\n", ioc->name, ii)); r += (*(MptResetHandlers[ii]))(ioc, MPT_IOC_POST_RESET); handlers++; } if (alt_ioc_ready && MptResetHandlers[ii]) { dprintk((MYIOC_s_INFO_FMT "Calling alt-%s post_reset handler #%d\n", ioc->name, ioc->alt_ioc->name, ii)); r += (*(MptResetHandlers[ii]))(ioc->alt_ioc, MPT_IOC_POST_RESET); handlers++; } } /* FIXME? Examine results here? */ } return ret;}/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*//* * mpt_detect_bound_ports - Search for PCI bus/dev_function * which matches PCI bus/dev_function (+/-1) for newly discovered 929, * 929X, 1030 or 1035. * @ioc: Pointer to MPT adapter structure * @pdev: Pointer to (struct pci_dev) structure * * If match on PCI dev_function +/-1 is found, bind the two MPT adapters * using alt_ioc pointer fields in their %MPT_ADAPTER structures. */static voidmpt_detect_bound_ports(MPT_ADAPTER *ioc, struct pci_dev *pdev){ unsigned int match_lo, match_hi; MPT_ADAPTER *ioc_srch; match_lo = pdev->devfn-1; match_hi = pdev->devfn+1; dprintk((MYIOC_s_INFO_FMT "PCI bus/devfn=%x/%x, searching for devfn match on %x or %x\n", ioc->name, pdev->bus->number, pdev->devfn, match_lo, match_hi)); list_for_each_entry(ioc_srch, &ioc_list, list) { struct pci_dev *_pcidev = ioc_srch->pcidev; if ((_pcidev->device == pdev->device) && (_pcidev->bus->number == pdev->bus->number) && (_pcidev->devfn == match_lo || _pcidev->devfn == match_hi) ) { /* Paranoia checks */ if (ioc->alt_ioc != NULL) { printk(KERN_WARNING MYNAM ": Oops, already bound (%s <==> %s)!\n", ioc->name, ioc->alt_ioc->name); break; } else if (ioc_srch->alt_ioc != NULL) { printk(KERN_WARNING MYNAM ": Oops, already bound (%s <==> %s)!\n", ioc_srch->name, ioc_srch->alt_ioc->name); break; } dprintk((KERN_INFO MYNAM ": FOUND! binding %s <==> %s\n", ioc->name, ioc_srch->name)); ioc_srch->alt_ioc = ioc; ioc->alt_ioc = ioc_srch; break; } }}/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*//* * mpt_adapter_disable - Disable misbehaving MPT adapter. * @this: Pointer to MPT adapter structure * @free: Free up alloc'd reply, request, etc. */static voidmpt_adapter_disable(MPT_ADAPTER *this, int freeup){ if (this != NULL) { int sz=0; int ret; if (this->cached_fw != NULL) { ddlprintk((KERN_INFO MYNAM ": Pushing FW onto adapter\n")); if ((ret = mpt_downloadboot(this, NO_SLEEP)) < 0) { printk(KERN_WARNING MYNAM ": firmware downloadboot failure (%d)!\n", ret); } } /* Disable adapter interrupts! */ CHIPREG_WRITE32(&this->chip->IntMask, 0xFFFFFFFF); this->active = 0; /* Clear any lingering interrupt */ CHIPREG_WRITE32(&this->chip->IntStatus, 0); if (freeup && this->fifo_pool != NULL) { pci_free_consistent(this->pcidev, this->fifo_pool_sz, this->fifo_pool, this->fifo_pool_dma); this->reply_frames = NULL; this->reply_alloc = NULL; this->req_frames = NULL; this->req_alloc = NULL; this->chain_alloc = NULL; this->fifo_pool = NULL; this->alloc_total -= this->fifo_pool_sz; } if (freeup && this->sense_buf_pool != NULL) { sz = (this->req_depth * MPT_SENSE_BUFFER_ALLOC); pci_free_consistent(this->pcidev, sz, this->sense_buf_pool, this->sense_buf_pool_dma); this->sense_buf_pool = NULL; this->alloc_total -= sz; } if (freeup && this->events != NULL){ sz = MPTCTL_EVENT_LOG_SIZE * sizeof(MPT_IOCTL_EVENTS); kfree(this->events); this->events = NULL; this->alloc_total -= sz; } if (freeup && this->cached_fw != NULL) { sz = this->facts.FWImageSize; pci_free_consistent(this->pcidev, sz, this->cached_fw, this->cached_fw_dma); this->cached_fw = NULL; this->alloc_total -= sz; } if (freeup && this->spi_data.nvram != NULL) { kfree(this->spi_data.nvram); this->spi_data.nvram = NULL; } if (freeup && this->spi_data.pIocPg3 != NULL) { kfree(this->spi_data.pIocPg3); this->spi_data.pIocPg3 = NULL; } if (freeup && this->spi_data.pIocPg4 != NULL) { sz = this->spi_data.IocPg4Sz; pci_free_consistent(this->pcidev, sz, this->spi_data.pIocPg4, this->spi_data.IocPg4_dma); this->spi_data.pIocPg4 = NULL; this->alloc_total -= sz; } }}/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*//* * mpt_adapter_dispose - Free all resources associated with a MPT * adapter. * @this: Pointer to MPT adapter structure * * This routine unregisters h/w resources and frees all alloc'd memory * associated with a MPT adapter structure. */static voidmpt_adapter_dispose(MPT_ADAPTER *this){ if (this != NULL) { int sz_first, sz_last; sz_first = this->alloc_total; mpt_adapter_disable(this, 1); if (this->pci_irq != -1) { free_irq(this->pci_irq, this); this->pci_irq = -1; } if (this->memmap != NULL) iounmap((u8 *) this->memmap);#if defined(CONFIG_MTRR) && 0 if (this->mtrr_reg > 0) { mtrr_del(this->mtrr_reg, 0, 0); dprintk((KERN_INFO MYNAM ": %s: MTRR region de-registered\n", this->name)); }#endif /* Zap the adapter lookup ptr! */ list_del(&this->list); sz_last = this->alloc_total; dprintk((KERN_INFO MYNAM ": %s: free'd %d of %d bytes\n", this->name, sz_first-sz_last+(int)sizeof(*this), sz_first)); kfree(this); }}/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*//* * MptDisplayIocCapabilities - Disply IOC's capacilities. * @ioc: Pointer to MPT adapter structure */static voidMptDisplayIocCapabilities(MPT_ADAPTER *ioc){ int i = 0; printk(KERN_INFO "%s: ", ioc->name); if (ioc->prod_name && strlen(ioc->prod_name) > 3) printk("%s: ", ioc->prod_name+3); printk("Capabilities={"); if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_INITIATOR) { printk("Initiator"); i++; } if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_TARGET) { printk("%sTarget", i ? "," : ""); i++; } if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_LAN) { printk("%sLAN", i ? "," : ""); i++; }#if 0 /* * This would probably evoke more questions than it's worth */ if (ioc->pfacts[0].ProtocolFlags & MPI_PORTFACTS_PROTOCOL_TARGET) { printk("%sLogBusAddr", i ? "," : ""); i++; }#endif printk("}\n");}/*=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=*//* * MakeIocReady - Get IOC to a READY state, using KickStart if needed. * @ioc: Pointer to MPT_ADAPTER structure * @force: Force hard KickStart of IOC * @sleepFlag: Specifies whether the process can sleep * * Returns: * 1 - DIAG reset and READY * 0 - READY initially OR soft reset and READY * -1 - Any failure on KickStart * -2 - Msg Unit Reset Failed * -3 - IO Unit Reset Failed * -4 - IOC owned by a PEER */static intMakeIocReady(MPT_ADAPTER *ioc, int force, int sleepFlag){ u32 ioc_state; int statefault = 0; int cntdn; int hard_reset_done = 0; int r; int ii; int whoinit; /* Get current [raw] IOC state */ ioc_state = mpt_GetIocState(ioc, 0); dhsprintk((KERN_INFO MYNAM "::MakeIocReady, %s [raw] state=%08x\n", ioc->name, ioc_state)); /* * Check to see if IOC got left/stuck in doorbell handshake * grip of death. If so, hard reset the IOC. */ if (ioc_state & MPI_DOORBELL_ACTIVE) { statefault = 1; printk(MYIOC_s_WARN_FMT "Unexpected doorbell active!\n", ioc->name); } /* Is it already READY? */ if (!statefault && (ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_READY) { if ((int)ioc->chip_type <= (int)FC929) return 0; else { return 0; /* Workaround from broken 1030 FW. * Force a diagnostic reset if fails. *//* if ((r = SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag)) == 0) return 0; else statefault = 4; */ } } /* * Check to see if IOC is in FAULT state. */ if ((ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_FAULT) { statefault = 2; printk(MYIOC_s_WARN_FMT "IOC is in FAULT state!!!\n", ioc->name); printk(KERN_WARNING " FAULT code = %04xh\n", ioc_state & MPI_DOORBELL_DATA_MASK); } /* * Hmmm... Did it get left operational? */ if ((ioc_state & MPI_IOC_STATE_MASK) == MPI_IOC_STATE_OPERATIONAL) { dinitprintk((MYIOC_s_WARN_FMT "IOC operational unexpected\n", ioc->name)); /* Check WhoInit. * If PCI Peer, exit. * Else, if no fault conditions are present, issue a MessageUnitReset * Else, fall through to KickStart case */ whoinit = (ioc_state & MPI_DOORBELL_WHO_INIT_MASK) >> MPI_DOORBELL_WHO_INIT_SHIFT; dprintk((KERN_WARNING MYNAM ": whoinit 0x%x\n statefault %d force %d\n", whoinit, statefault, force)); if (whoinit == MPI_WHOINIT_PCI_PEER) return -4; else { if ((statefault == 0 ) && (force == 0)) { if ((r = SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag)) == 0) return 0; } statefault = 3; } } hard_reset_done = KickStart(ioc, statefault||force, sleepFlag); if (hard_reset_done < 0) return -1; /* * Loop here waiting for IOC to come READY. */ ii = 0; cntdn = ((sleepFlag == CAN_SLEEP) ? HZ : 1000) * 15; /* 15 seconds */ while ((ioc_state = mpt_GetIocState(ioc, 1)) != MPI_IOC_STATE_READY) { if (ioc_state == MPI_IOC_STATE_OPERATIONAL) { /* * BIOS or previous driver load left IOC in OP state. * Reset messaging FIFOs. */ if ((r = SendIocReset(ioc, MPI_FUNCTION_IOC_MESSAGE_UNIT_RESET, sleepFlag)) != 0) { printk(MYIOC_s_ERR_FMT "IOC msg unit reset failed!\n", ioc->name); return -2; } } else if (ioc_state == MPI_IOC_STATE_RESET) { /* * Something is wrong. Try to get IOC back * to a known state. */ if ((r = SendIocReset(ioc, MPI_FUNCTION_IO_UNIT_RESET, sleepFlag)) != 0) { printk(MYIOC_s_ERR_FMT "IO unit reset failed!\n", ioc->name); return -3; } } ii++; cntdn--; if (!cntdn) { printk(MYIOC_s_ERR_FMT "Wait IOC_READY state timeout(%d)!\n", ioc->name, (ii+5)/HZ); return -ETIME; } if (sleepFlag == CAN_SLEEP) { set_current_state(TASK_INTERRUPTIBLE); schedule_timeout(1); } else { mdelay (1); /* 1 msec delay */ } } if (sta
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