📄 eesox.c
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static voideesoxscsi_dma_pseudo(struct Scsi_Host *host, Scsi_Pointer *SCp, fasdmadir_t dir, int transfer_size){ unsigned int base = host->io_port; if (dir == DMA_IN) { eesoxscsi_buffer_in(SCp->ptr, SCp->this_residual, base); } else { eesoxscsi_buffer_out(SCp->ptr, SCp->this_residual, base); }}/* Prototype: int eesoxscsi_dma_stop(host, SCpnt) * Purpose : stops DMA/PIO * Params : host - host * SCpnt - command */static voideesoxscsi_dma_stop(struct Scsi_Host *host, Scsi_Pointer *SCp){ if (host->dma_channel != NO_DMA) disable_dma(host->dma_channel);}/* Prototype: const char *eesoxscsi_info(struct Scsi_Host * host) * Purpose : returns a descriptive string about this interface, * Params : host - driver host structure to return info for. * Returns : pointer to a static buffer containing null terminated string. */const char *eesoxscsi_info(struct Scsi_Host *host){ struct eesoxscsi_info *info = (struct eesoxscsi_info *)host->hostdata; static char string[150]; sprintf(string, "%s (%s) in slot %d v%s terminators o%s", host->hostt->name, info->info.scsi.type, info->ec->slot_no, VERSION, info->control & EESOX_TERM_ENABLE ? "n" : "ff"); return string;}/* Prototype: int eesoxscsi_set_proc_info(struct Scsi_Host *host, char *buffer, int length) * Purpose : Set a driver specific function * Params : host - host to setup * : buffer - buffer containing string describing operation * : length - length of string * Returns : -EINVAL, or 0 */static inteesoxscsi_set_proc_info(struct Scsi_Host *host, char *buffer, int length){ int ret = length; if (length >= 9 && strncmp(buffer, "EESOXSCSI", 9) == 0) { buffer += 9; length -= 9; if (length >= 5 && strncmp(buffer, "term=", 5) == 0) { if (buffer[5] == '1') eesoxscsi_terminator_ctl(host, 1); else if (buffer[5] == '0') eesoxscsi_terminator_ctl(host, 0); else ret = -EINVAL; } else ret = -EINVAL; } else ret = -EINVAL; return ret;}/* Prototype: int eesoxscsi_proc_info(char *buffer, char **start, off_t offset, * int length, int host_no, int inout) * Purpose : Return information about the driver to a user process accessing * the /proc filesystem. * Params : buffer - a buffer to write information to * start - a pointer into this buffer set by this routine to the start * of the required information. * offset - offset into information that we have read upto. * length - length of buffer * host_no - host number to return information for * inout - 0 for reading, 1 for writing. * Returns : length of data written to buffer. */int eesoxscsi_proc_info(char *buffer, char **start, off_t offset, int length, int host_no, int inout){ int pos, begin; struct Scsi_Host *host; struct eesoxscsi_info *info; Scsi_Device *scd; host = scsi_host_hn_get(host_no); if (!host) return 0; if (inout == 1) return eesoxscsi_set_proc_info(host, buffer, length); info = (struct eesoxscsi_info *)host->hostdata; begin = 0; pos = sprintf(buffer, "EESOX SCSI driver v%s\n", VERSION); pos += fas216_print_host(&info->info, buffer + pos); pos += sprintf(buffer + pos, "Term : o%s\n", info->control & EESOX_TERM_ENABLE ? "n" : "ff"); pos += fas216_print_stats(&info->info, buffer + pos); pos += sprintf(buffer+pos, "\nAttached devices:\n"); for (scd = host->host_queue; scd; scd = scd->next) { int len; proc_print_scsidevice(scd, buffer, &len, pos); pos += len; pos += sprintf(buffer+pos, "Extensions: "); if (scd->tagged_supported) pos += sprintf(buffer+pos, "TAG %sabled [%d] ", scd->tagged_queue ? "en" : "dis", scd->current_tag); pos += sprintf (buffer+pos, "\n"); if (pos + begin < offset) { begin += pos; pos = 0; } } *start = buffer + (offset - begin); pos -= offset - begin; if (pos > length) pos = length; return pos;}static int eesoxscsi_probe(struct expansion_card *ec);/* Prototype: int eesoxscsi_detect(Scsi_Host_Template * tpnt) * Purpose : initialises EESOX SCSI driver * Params : tpnt - template for this SCSI adapter * Returns : >0 if host found, 0 otherwise. */static int eesoxscsi_detect(Scsi_Host_Template *tpnt){ static const card_ids eesoxscsi_cids[] = { EESOXSCSI_LIST, { 0xffff, 0xffff} }; struct expansion_card *ec; int count = 0, ret; ecard_startfind(); while(1) { ec = ecard_find(0, eesoxscsi_cids); if (!ec) break; ecard_claim(ec); ret = eesoxscsi_probe(ec); if (ret) { ecard_release(ec); break; } ++count; } return count;}static void eesoxscsi_remove(struct Scsi_Host *host);/* Prototype: int eesoxscsi_release(struct Scsi_Host * host) * Purpose : releases all resources used by this adapter * Params : host - driver host structure to return info for. */static int eesoxscsi_release(struct Scsi_Host *host){ eesoxscsi_remove(host); return 0;}static Scsi_Host_Template eesox_template = { .module = THIS_MODULE, .proc_info = eesoxscsi_proc_info, .name = "EESOX SCSI", .detect = eesoxscsi_detect, .release = eesoxscsi_release, .info = eesoxscsi_info, .bios_param = scsicam_bios_param, .command = fas216_command, .queuecommand = fas216_queue_command, .eh_host_reset_handler = fas216_eh_host_reset, .eh_bus_reset_handler = fas216_eh_bus_reset, .eh_device_reset_handler = fas216_eh_device_reset, .eh_abort_handler = fas216_eh_abort, .use_new_eh_code = 1, .can_queue = 1, .this_id = 7, .sg_tablesize = SG_ALL, .cmd_per_lun = 1, .use_clustering = DISABLE_CLUSTERING, .proc_name = "eesox",};static inteesoxscsi_probe(struct expansion_card *ec){ struct Scsi_Host *host; struct eesoxscsi_info *info; unsigned long base; int ret; base = ecard_address(ec, ECARD_IOC, ECARD_FAST); if (!request_region(base + EESOX_FAS216_OFFSET, 16 << EESOX_FAS216_SHIFT, "eesox2-fas")) { ret = -EBUSY; goto out; } host = scsi_register(&eesox_template, sizeof(struct eesoxscsi_info)); if (!host) { ret = -ENOMEM; goto out_region; } host->io_port = base; host->irq = ec->irq; host->dma_channel = ec->dma; info = (struct eesoxscsi_info *)host->hostdata; info->ec = ec; info->ctl_port = base + EESOX_CONTROL; info->control = term[ec->slot_no] ? EESOX_TERM_ENABLE : 0; outb(info->control, info->ctl_port); ec->irqaddr = (unsigned char *)ioaddr(base + EESOX_DMASTAT); ec->irqmask = EESOX_STAT_INTR; ec->irq_data = info; ec->ops = (expansioncard_ops_t *)&eesoxscsi_ops; info->info.scsi.io_port = base + EESOX_FAS216_OFFSET; info->info.scsi.io_shift = EESOX_FAS216_SHIFT; info->info.scsi.irq = host->irq; info->info.ifcfg.clockrate = 40; /* MHz */ info->info.ifcfg.select_timeout = 255; info->info.ifcfg.asyncperiod = 200; /* ns */ info->info.ifcfg.sync_max_depth = 7; info->info.ifcfg.cntl3 = CNTL3_FASTSCSI | CNTL3_FASTCLK; info->info.ifcfg.disconnect_ok = 1; info->info.ifcfg.wide_max_size = 0; info->info.ifcfg.capabilities = FASCAP_PSEUDODMA; info->info.dma.setup = eesoxscsi_dma_setup; info->info.dma.pseudo = eesoxscsi_dma_pseudo; info->info.dma.stop = eesoxscsi_dma_stop; ret = fas216_init(host); if (ret) goto out_free; ret = request_irq(host->irq, eesoxscsi_intr, 0, "eesox", &info->info); if (ret) { printk("scsi%d: IRQ%d not free: %d\n", host->host_no, host->irq, ret); goto out_remove; } if (host->dma_channel != NO_DMA) { if (request_dma(host->dma_channel, "eesox")) { printk("scsi%d: DMA%d not free, DMA disabled\n", host->host_no, host->dma_channel); host->dma_channel = NO_DMA; } else { set_dma_speed(host->dma_channel, 180); info->info.ifcfg.capabilities |= FASCAP_DMA; info->info.ifcfg.cntl3 |= CNTL3_BS8; } } ret = fas216_add(host); if (ret == 0) goto out; if (host->dma_channel != NO_DMA) free_dma(host->dma_channel); free_irq(host->irq, host); out_remove: fas216_remove(host); out_free: scsi_unregister(host); out_region: release_region(base + EESOX_FAS216_OFFSET, 16 << EESOX_FAS216_SHIFT); out: return ret;}static void eesoxscsi_remove(struct Scsi_Host *host){ struct eesoxscsi_info *info = (struct eesoxscsi_info *)host->hostdata; fas216_remove(host); if (host->dma_channel != NO_DMA) free_dma(host->dma_channel); free_irq(host->irq, host); release_region(host->io_port + EESOX_FAS216_OFFSET, 16 << EESOX_FAS216_SHIFT); fas216_release(host); ecard_release(info->ec);}static int __init eesox_init(void){ scsi_register_module(MODULE_SCSI_HA, &eesox_template); if (eesox_template.present) return 0; scsi_unregister_module(MODULE_SCSI_HA, &eesox_template); return -ENODEV;}static void __exit eesox_exit(void){ scsi_unregister_module(MODULE_SCSI_HA, &eesox_template);}module_init(eesox_init);module_exit(eesox_exit);MODULE_AUTHOR("Russell King");MODULE_DESCRIPTION("EESOX 'Fast' SCSI driver for Acorn machines");MODULE_PARM(term, "1-8i");MODULE_PARM_DESC(term, "SCSI bus termination");MODULE_LICENSE("GPL");EXPORT_NO_SYMBOLS;
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