X-Git-Url: http://ftp.safe.ca/?a=blobdiff_plain;f=drivers%2Fscsi%2Fdpt_i2o.c;h=2e2362d787ca54037ea0687da2df08526173317c;hb=797f49de3d95d964a360bcf0167cc20e249bb90b;hp=b1b704a42efdb8f24bd6ffb3c81f47d5587dd9da;hpb=910638ae7ed4be27d6af55f6c9b5bf54b838e78b;p=safe%2Fjmp%2Flinux-2.6 diff --git a/drivers/scsi/dpt_i2o.c b/drivers/scsi/dpt_i2o.c index b1b704a..2e2362d 100644 --- a/drivers/scsi/dpt_i2o.c +++ b/drivers/scsi/dpt_i2o.c @@ -46,7 +46,6 @@ MODULE_DESCRIPTION("Adaptec I2O RAID Driver"); #include #include /* for kmalloc() */ -#include /* for CONFIG_PCI */ #include /* for PCI support */ #include #include @@ -56,7 +55,6 @@ MODULE_DESCRIPTION("Adaptec I2O RAID Driver"); #include #include #include -#include #include #include @@ -117,7 +115,7 @@ static int sys_tbl_len = 0; static adpt_hba* hba_chain = NULL; static int hba_count = 0; -static struct file_operations adpt_fops = { +static const struct file_operations adpt_fops = { .ioctl = adpt_ioctl, .open = adpt_open, .release = adpt_close @@ -185,7 +183,7 @@ static int adpt_detect(struct scsi_host_template* sht) PINFO("Detecting Adaptec I2O RAID controllers...\n"); /* search for all Adatpec I2O RAID cards */ - while ((pDev = pci_find_device( PCI_DPT_VENDOR_ID, PCI_ANY_ID, pDev))) { + while ((pDev = pci_get_device( PCI_DPT_VENDOR_ID, PCI_ANY_ID, pDev))) { if(pDev->device == PCI_DPT_DEVICE_ID || pDev->device == PCI_DPT_RAPTOR_DEVICE_ID){ if(adpt_install_hba(sht, pDev) ){ @@ -193,6 +191,7 @@ static int adpt_detect(struct scsi_host_template* sht) PERROR("Will not try to detect others.\n"); return hba_count-1; } + pci_dev_get(pDev); } } @@ -295,7 +294,7 @@ static void adpt_inquiry(adpt_hba* pHba) s32 rcode; memset(msg, 0, sizeof(msg)); - buf = (u8*)kmalloc(80,GFP_KERNEL|ADDR32); + buf = kmalloc(80,GFP_KERNEL|ADDR32); if(!buf){ printk(KERN_ERR"%s: Could not allocate buffer\n",pHba->name); return; @@ -1009,7 +1008,7 @@ static int adpt_install_hba(struct scsi_host_template* sht, struct pci_dev* pDev printk(KERN_INFO" BAR1 %p - size= %x\n",msg_addr_virt,hba_map1_area_size); } - if (request_irq (pDev->irq, adpt_isr, SA_SHIRQ, pHba->name, pHba)) { + if (request_irq (pDev->irq, adpt_isr, IRQF_SHARED, pHba->name, pHba)) { printk(KERN_ERR"%s: Couldn't register IRQ %d\n", pHba->name, pDev->irq); adpt_i2o_delete_hba(pHba); return -EINVAL; @@ -1076,6 +1075,7 @@ static void adpt_i2o_delete_hba(adpt_hba* pHba) } } } + pci_dev_put(pHba->pDev); kfree(pHba); if(hba_count <= 0){ @@ -1308,13 +1308,12 @@ static s32 adpt_i2o_reset_hba(adpt_hba* pHba) schedule_timeout_uninterruptible(1); } while (m == EMPTY_QUEUE); - status = (u8*)kmalloc(4, GFP_KERNEL|ADDR32); + status = kzalloc(4, GFP_KERNEL|ADDR32); if(status == NULL) { adpt_send_nop(pHba, m); printk(KERN_ERR"IOP reset failed - no free memory.\n"); return -ENOMEM; } - memset(status,0,4); msg[0]=EIGHT_WORD_MSG_SIZE|SGL_OFFSET_0; msg[1]=I2O_CMD_ADAPTER_RESET<<24|HOST_TID<<12|ADAPTER_TID; @@ -1441,7 +1440,7 @@ static int adpt_i2o_parse_lct(adpt_hba* pHba) } continue; } - d = (struct i2o_device *)kmalloc(sizeof(struct i2o_device), GFP_KERNEL); + d = kmalloc(sizeof(struct i2o_device), GFP_KERNEL); if(d==NULL) { printk(KERN_CRIT"%s: Out of memory for I2O device data.\n",pHba->name); @@ -1504,21 +1503,19 @@ static int adpt_i2o_parse_lct(adpt_hba* pHba) continue; } if( pHba->channel[bus_no].device[scsi_id] == NULL){ - pDev = kmalloc(sizeof(struct adpt_device),GFP_KERNEL); + pDev = kzalloc(sizeof(struct adpt_device),GFP_KERNEL); if(pDev == NULL) { return -ENOMEM; } pHba->channel[bus_no].device[scsi_id] = pDev; - memset(pDev,0,sizeof(struct adpt_device)); } else { for( pDev = pHba->channel[bus_no].device[scsi_id]; pDev->next_lun; pDev = pDev->next_lun){ } - pDev->next_lun = kmalloc(sizeof(struct adpt_device),GFP_KERNEL); + pDev->next_lun = kzalloc(sizeof(struct adpt_device),GFP_KERNEL); if(pDev->next_lun == NULL) { return -ENOMEM; } - memset(pDev->next_lun,0,sizeof(struct adpt_device)); pDev = pDev->next_lun; } pDev->tid = tid; @@ -1667,12 +1664,11 @@ static int adpt_i2o_passthru(adpt_hba* pHba, u32 __user *arg) reply_size = REPLY_FRAME_SIZE; } reply_size *= 4; - reply = kmalloc(REPLY_FRAME_SIZE*4, GFP_KERNEL); + reply = kzalloc(REPLY_FRAME_SIZE*4, GFP_KERNEL); if(reply == NULL) { printk(KERN_WARNING"%s: Could not allocate reply buffer\n",pHba->name); return -ENOMEM; } - memset(reply,0,REPLY_FRAME_SIZE*4); sg_offset = (msg[0]>>4)&0xf; msg[2] = 0x40000000; // IOCTL context msg[3] = (u32)reply; @@ -1986,7 +1982,7 @@ static int adpt_ioctl(struct inode *inode, struct file *file, uint cmd, } -static irqreturn_t adpt_isr(int irq, void *dev_id, struct pt_regs *regs) +static irqreturn_t adpt_isr(int irq, void *dev_id) { struct scsi_cmnd* cmd; adpt_hba* pHba = dev_id; @@ -2082,12 +2078,13 @@ static s32 adpt_scsi_to_i2o(adpt_hba* pHba, struct scsi_cmnd* cmd, struct adpt_d u32 *lenptr; int direction; int scsidir; + int nseg; u32 len; u32 reqlen; s32 rcode; memset(msg, 0 , sizeof(msg)); - len = cmd->request_bufflen; + len = scsi_bufflen(cmd); direction = 0x00000000; scsidir = 0x00000000; // DATA NO XFER @@ -2144,21 +2141,21 @@ static s32 adpt_scsi_to_i2o(adpt_hba* pHba, struct scsi_cmnd* cmd, struct adpt_d lenptr=mptr++; /* Remember me - fill in when we know */ reqlen = 14; // SINGLE SGE /* Now fill in the SGList and command */ - if(cmd->use_sg) { - struct scatterlist *sg = (struct scatterlist *)cmd->request_buffer; - int sg_count = pci_map_sg(pHba->pDev, sg, cmd->use_sg, - cmd->sc_data_direction); + nseg = scsi_dma_map(cmd); + BUG_ON(nseg < 0); + if (nseg) { + struct scatterlist *sg; len = 0; - for(i = 0 ; i < sg_count; i++) { + scsi_for_each_sg(cmd, sg, nseg, i) { *mptr++ = direction|0x10000000|sg_dma_len(sg); len+=sg_dma_len(sg); *mptr++ = sg_dma_address(sg); - sg++; + /* Make this an end of list */ + if (i == nseg - 1) + mptr[-2] = direction|0xD0000000|sg_dma_len(sg); } - /* Make this an end of list */ - mptr[-2] = direction|0xD0000000|sg_dma_len(sg-1); reqlen = mptr - msg; *lenptr = len; @@ -2167,16 +2164,8 @@ static s32 adpt_scsi_to_i2o(adpt_hba* pHba, struct scsi_cmnd* cmd, struct adpt_d len, cmd->underflow); } } else { - *lenptr = len = cmd->request_bufflen; - if(len == 0) { - reqlen = 12; - } else { - *mptr++ = 0xD0000000|direction|cmd->request_bufflen; - *mptr++ = pci_map_single(pHba->pDev, - cmd->request_buffer, - cmd->request_bufflen, - cmd->sc_data_direction); - } + *lenptr = len = 0; + reqlen = 12; } /* Stick the headers on */ @@ -2209,7 +2198,7 @@ static s32 adpt_scsi_register(adpt_hba* pHba,struct scsi_host_template * sht) */ host->io_port = 0; host->n_io_port = 0; - /* see comments in hosts.h */ + /* see comments in scsi_host.h */ host->max_id = 16; host->max_lun = 256; host->max_channel = pHba->top_scsi_channel + 1; @@ -2236,7 +2225,7 @@ static s32 adpt_i2o_to_scsi(void __iomem *reply, struct scsi_cmnd* cmd) hba_status = detailed_status >> 8; // calculate resid for sg - cmd->resid = cmd->request_bufflen - readl(reply+5); + scsi_set_resid(cmd, scsi_bufflen(cmd) - readl(reply+5)); pHba = (adpt_hba*) cmd->device->host->hostdata[0]; @@ -2422,7 +2411,7 @@ static s32 adpt_i2o_reparse_lct(adpt_hba* pHba) pDev = pDev->next_lun; } if(!pDev ) { // Something new add it - d = (struct i2o_device *)kmalloc(sizeof(struct i2o_device), GFP_KERNEL); + d = kmalloc(sizeof(struct i2o_device), GFP_KERNEL); if(d==NULL) { printk(KERN_CRIT "Out of memory for I2O device data.\n"); @@ -2444,7 +2433,7 @@ static s32 adpt_i2o_reparse_lct(adpt_hba* pHba) } pDev = pHba->channel[bus_no].device[scsi_id]; if( pDev == NULL){ - pDev = kmalloc(sizeof(struct adpt_device),GFP_KERNEL); + pDev = kzalloc(sizeof(struct adpt_device),GFP_KERNEL); if(pDev == NULL) { return -ENOMEM; } @@ -2453,12 +2442,11 @@ static s32 adpt_i2o_reparse_lct(adpt_hba* pHba) while (pDev->next_lun) { pDev = pDev->next_lun; } - pDev = pDev->next_lun = kmalloc(sizeof(struct adpt_device),GFP_KERNEL); + pDev = pDev->next_lun = kzalloc(sizeof(struct adpt_device),GFP_KERNEL); if(pDev == NULL) { return -ENOMEM; } } - memset(pDev,0,sizeof(struct adpt_device)); pDev->tid = d->lct_data.tid; pDev->scsi_channel = bus_no; pDev->scsi_id = scsi_id; @@ -2725,7 +2713,7 @@ static s32 adpt_i2o_init_outbound_q(adpt_hba* pHba) kfree(pHba->reply_pool); - pHba->reply_pool = (u32*)kmalloc(pHba->reply_fifo_size * REPLY_FRAME_SIZE * 4, GFP_KERNEL|ADDR32); + pHba->reply_pool = kmalloc(pHba->reply_fifo_size * REPLY_FRAME_SIZE * 4, GFP_KERNEL|ADDR32); if(!pHba->reply_pool){ printk(KERN_ERR"%s: Could not allocate reply pool\n",pHba->name); return -1;