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📄 aic7xxx_proc.c

📁 linux-2.6.15.6
💻 C
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/*+M************************************************************************* * Adaptec AIC7xxx device driver proc support for Linux. * * Copyright (c) 1995, 1996 Dean W. Gehnert * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2, or (at your option) * any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; see the file COPYING.  If not, write to * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. * * ---------------------------------------------------------------- *  o Modified from the EATA-DMA /proc support. *  o Additional support for device block statistics provided by *    Matthew Jacob. *  o Correction of overflow by Heinz Mauelshagen *  o Adittional corrections by Doug Ledford * *  Dean W. Gehnert, deang@teleport.com, 05/01/96 * *  $Id: aic7xxx_proc.c,v 4.1 1997/06/97 08:23:42 deang Exp $ *-M*************************************************************************/#include <linux/config.h>#define	BLS	(&aic7xxx_buffer[size])#define HDRB \"               0 - 4K   4 - 16K   16 - 64K  64 - 256K  256K - 1M        1M+"#ifdef PROC_DEBUGextern int vsprintf(char *, const char *, va_list);static voidproc_debug(const char *fmt, ...){  va_list ap;  char buf[256];  va_start(ap, fmt);  vsprintf(buf, fmt, ap);  printk(buf);  va_end(ap);}#else /* PROC_DEBUG */#  define proc_debug(fmt, args...)#endif /* PROC_DEBUG */static int aic7xxx_buffer_size = 0;static char *aic7xxx_buffer = NULL;/*+F************************************************************************* * Function: *   aic7xxx_set_info * * Description: *   Set parameters for the driver from the /proc filesystem. *-F*************************************************************************/static intaic7xxx_set_info(char *buffer, int length, struct Scsi_Host *HBAptr){  proc_debug("aic7xxx_set_info(): %s\n", buffer);  return (-ENOSYS);  /* Currently this is a no-op */}/*+F************************************************************************* * Function: *   aic7xxx_proc_info * * Description: *   Return information to handle /proc support for the driver. *-F*************************************************************************/intaic7xxx_proc_info ( struct Scsi_Host *HBAptr, char *buffer, char **start, off_t offset, int length,                     int inout){  struct aic7xxx_host *p;  struct aic_dev_data *aic_dev;  struct scsi_device *sdptr;  int    size = 0;  unsigned char i;  unsigned char tindex;  for(p=first_aic7xxx; p && p->host != HBAptr; p=p->next)    ;  if (!p)  {    size += sprintf(buffer, "Can't find adapter for host number %d\n", HBAptr->host_no);    if (size > length)    {      return (size);    }    else    {      return (length);    }  }  if (inout == TRUE) /* Has data been written to the file? */   {    return (aic7xxx_set_info(buffer, length, HBAptr));  }  p = (struct aic7xxx_host *) HBAptr->hostdata;  /*   * It takes roughly 1K of space to hold all relevant card info, not   * counting any proc stats, so we start out with a 1.5k buffer size and   * if proc_stats is defined, then we sweep the stats structure to see   * how many drives we will be printing out for and add 384 bytes per   * device with active stats.   *   * Hmmmm...that 1.5k seems to keep growing as items get added so they   * can be easily viewed for debugging purposes.  So, we bumped that   * 1.5k to 4k so we can quit having to bump it all the time.   */  size = 4096;  list_for_each_entry(aic_dev, &p->aic_devs, list)    size += 512;  if (aic7xxx_buffer_size != size)  {    if (aic7xxx_buffer != NULL)     {      kfree(aic7xxx_buffer);      aic7xxx_buffer_size = 0;    }    aic7xxx_buffer = kmalloc(size, GFP_KERNEL);  }  if (aic7xxx_buffer == NULL)  {    size = sprintf(buffer, "AIC7xxx - kmalloc error at line %d\n",        __LINE__);    return size;  }  aic7xxx_buffer_size = size;  size = 0;  size += sprintf(BLS, "Adaptec AIC7xxx driver version: ");  size += sprintf(BLS, "%s/", AIC7XXX_C_VERSION);  size += sprintf(BLS, "%s", AIC7XXX_H_VERSION);  size += sprintf(BLS, "\n");  size += sprintf(BLS, "Adapter Configuration:\n");  size += sprintf(BLS, "           SCSI Adapter: %s\n",      board_names[p->board_name_index]);  if (p->flags & AHC_TWIN)    size += sprintf(BLS, "                         Twin Channel Controller ");  else  {    char *channel = "";    char *ultra = "";    char *wide = "Narrow ";    if (p->flags & AHC_MULTI_CHANNEL)    {      channel = " Channel A";      if (p->flags & (AHC_CHNLB|AHC_CHNLC))        channel = (p->flags & AHC_CHNLB) ? " Channel B" : " Channel C";    }    if (p->features & AHC_WIDE)      wide = "Wide ";    if (p->features & AHC_ULTRA3)    {      switch(p->chip & AHC_CHIPID_MASK)      {        case AHC_AIC7892:        case AHC_AIC7899:          ultra = "Ultra-160/m LVD/SE ";          break;        default:          ultra = "Ultra-3 LVD/SE ";          break;      }    }    else if (p->features & AHC_ULTRA2)      ultra = "Ultra-2 LVD/SE ";    else if (p->features & AHC_ULTRA)      ultra = "Ultra ";    size += sprintf(BLS, "                           %s%sController%s ",      ultra, wide, channel);  }  switch(p->chip & ~AHC_CHIPID_MASK)  {    case AHC_VL:      size += sprintf(BLS, "at VLB slot %d\n", p->pci_device_fn);      break;    case AHC_EISA:      size += sprintf(BLS, "at EISA slot %d\n", p->pci_device_fn);      break;    default:      size += sprintf(BLS, "at PCI %d/%d/%d\n", p->pci_bus,        PCI_SLOT(p->pci_device_fn), PCI_FUNC(p->pci_device_fn));      break;  }  if( !(p->maddr) )  {    size += sprintf(BLS, "    Programmed I/O Base: %lx\n", p->base);  }  else  {    size += sprintf(BLS, "    PCI MMAPed I/O Base: 0x%lx\n", p->mbase);  }  if( (p->chip & (AHC_VL | AHC_EISA)) )  {    size += sprintf(BLS, "    BIOS Memory Address: 0x%08x\n", p->bios_address);  }  size += sprintf(BLS, " Adapter SEEPROM Config: %s\n",          (p->flags & AHC_SEEPROM_FOUND) ? "SEEPROM found and used." :         ((p->flags & AHC_USEDEFAULTS) ? "SEEPROM not found, using defaults." :           "SEEPROM not found, using leftover BIOS values.") );  size += sprintf(BLS, "      Adaptec SCSI BIOS: %s\n",          (p->flags & AHC_BIOS_ENABLED) ? "Enabled" : "Disabled");  size += sprintf(BLS, "                    IRQ: %d\n", HBAptr->irq);  size += sprintf(BLS, "                   SCBs: Active %d, Max Active %d,\n",            p->activescbs, p->max_activescbs);  size += sprintf(BLS, "                         Allocated %d, HW %d, "            "Page %d\n", p->scb_data->numscbs, p->scb_data->maxhscbs,            p->scb_data->maxscbs);  if (p->flags & AHC_EXTERNAL_SRAM)    size += sprintf(BLS, "                         Using External SCB SRAM\n");  size += sprintf(BLS, "             Interrupts: %ld", p->isr_count);  if (p->chip & AHC_EISA)  {    size += sprintf(BLS, " %s\n",        (p->pause & IRQMS) ? "(Level Sensitive)" : "(Edge Triggered)");  }  else  {    size += sprintf(BLS, "\n");  }  size += sprintf(BLS, "      BIOS Control Word: 0x%04x\n",            p->bios_control);  size += sprintf(BLS, "   Adapter Control Word: 0x%04x\n",            p->adapter_control);  size += sprintf(BLS, "   Extended Translation: %sabled\n",      (p->flags & AHC_EXTEND_TRANS_A) ? "En" : "Dis");  size += sprintf(BLS, "Disconnect Enable Flags: 0x%04x\n", p->discenable);  if (p->features & (AHC_ULTRA | AHC_ULTRA2))  {    size += sprintf(BLS, "     Ultra Enable Flags: 0x%04x\n", p->ultraenb);  }  size += sprintf(BLS, "Default Tag Queue Depth: %d\n", aic7xxx_default_queue_depth);  size += sprintf(BLS, "    Tagged Queue By Device array for aic7xxx host "                       "instance %d:\n", p->instance);  size += sprintf(BLS, "      {");  for(i=0; i < (MAX_TARGETS - 1); i++)    size += sprintf(BLS, "%d,",aic7xxx_tag_info[p->instance].tag_commands[i]);  size += sprintf(BLS, "%d}\n",aic7xxx_tag_info[p->instance].tag_commands[i]);  size += sprintf(BLS, "\n");  size += sprintf(BLS, "Statistics:\n\n");  list_for_each_entry(aic_dev, &p->aic_devs, list)  {    sdptr = aic_dev->SDptr;    tindex = sdptr->channel << 3 | sdptr->id;    size += sprintf(BLS, "(scsi%d:%d:%d:%d)\n",        p->host_no, sdptr->channel, sdptr->id, sdptr->lun);    size += sprintf(BLS, "  Device using %s/%s",          (aic_dev->cur.width == MSG_EXT_WDTR_BUS_16_BIT) ?          "Wide" : "Narrow",          (aic_dev->cur.offset != 0) ?          "Sync transfers at " : "Async transfers.\n" );    if (aic_dev->cur.offset != 0)    {      struct aic7xxx_syncrate *sync_rate;      unsigned char options = aic_dev->cur.options;      int period = aic_dev->cur.period;      int rate = (aic_dev->cur.width ==                  MSG_EXT_WDTR_BUS_16_BIT) ? 1 : 0;      sync_rate = aic7xxx_find_syncrate(p, &period, 0, &options);      if (sync_rate != NULL)      {        size += sprintf(BLS, "%s MByte/sec, offset %d\n",                        sync_rate->rate[rate],                        aic_dev->cur.offset );      }      else      {        size += sprintf(BLS, "3.3 MByte/sec, offset %d\n",                        aic_dev->cur.offset );      }    }    size += sprintf(BLS, "  Transinfo settings: ");    size += sprintf(BLS, "current(%d/%d/%d/%d), ",                    aic_dev->cur.period,                    aic_dev->cur.offset,                    aic_dev->cur.width,                    aic_dev->cur.options);    size += sprintf(BLS, "goal(%d/%d/%d/%d), ",                    aic_dev->goal.period,                    aic_dev->goal.offset,                    aic_dev->goal.width,                    aic_dev->goal.options);    size += sprintf(BLS, "user(%d/%d/%d/%d)\n",                    p->user[tindex].period,                    p->user[tindex].offset,                    p->user[tindex].width,                    p->user[tindex].options);    if(sdptr->simple_tags)    {      size += sprintf(BLS, "  Tagged Command Queueing Enabled, Ordered Tags %s, Depth %d/%d\n", sdptr->ordered_tags ? "Enabled" : "Disabled", sdptr->queue_depth, aic_dev->max_q_depth);    }    if(aic_dev->barrier_total)      size += sprintf(BLS, "  Total transfers %ld:\n    (%ld/%ld/%ld/%ld reads/writes/REQ_BARRIER/Ordered Tags)\n",        aic_dev->r_total+aic_dev->w_total, aic_dev->r_total, aic_dev->w_total,        aic_dev->barrier_total, aic_dev->ordered_total);    else      size += sprintf(BLS, "  Total transfers %ld:\n    (%ld/%ld reads/writes)\n",        aic_dev->r_total+aic_dev->w_total, aic_dev->r_total, aic_dev->w_total);    size += sprintf(BLS, "%s\n", HDRB);    size += sprintf(BLS, "   Reads:");    for (i = 0; i < ARRAY_SIZE(aic_dev->r_bins); i++)    {      size += sprintf(BLS, " %10ld", aic_dev->r_bins[i]);    }    size += sprintf(BLS, "\n");    size += sprintf(BLS, "  Writes:");    for (i = 0; i < ARRAY_SIZE(aic_dev->w_bins); i++)    {      size += sprintf(BLS, " %10ld", aic_dev->w_bins[i]);    }    size += sprintf(BLS, "\n");    size += sprintf(BLS, "\n\n");  }  if (size >= aic7xxx_buffer_size)  {    printk(KERN_WARNING "aic7xxx: Overflow in aic7xxx_proc.c\n");  }  if (offset > size - 1)  {    kfree(aic7xxx_buffer);    aic7xxx_buffer = NULL;    aic7xxx_buffer_size = length = 0;    *start = NULL;  }  else  {    *start = buffer;    length = min_t(int, length, size - offset);    memcpy(buffer, &aic7xxx_buffer[offset], length);  }  return (length);}/* * Overrides for Emacs so that we follow Linus's tabbing style. * Emacs will notice this stuff at the end of the file and automatically * adjust the settings for this buffer only.  This must remain at the end * of the file. * --------------------------------------------------------------------------- * Local variables: * c-indent-level: 2 * c-brace-imaginary-offset: 0 * c-brace-offset: -2 * c-argdecl-indent: 2 * c-label-offset: -2 * c-continued-statement-offset: 2 * c-continued-brace-offset: 0 * indent-tabs-mode: nil * tab-width: 8 * End: */

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