gdth_proc.c 34 KB

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  1. /* gdth_proc.c
  2. * $Id: gdth_proc.c,v 1.42 2004/03/05 15:50:20 achim Exp $
  3. */
  4. #include <linux/completion.h>
  5. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  6. int gdth_proc_info(struct Scsi_Host *host, char *buffer,char **start,off_t offset,int length,
  7. int inout)
  8. {
  9. int hanum,busnum;
  10. TRACE2(("gdth_proc_info() length %d offs %d inout %d\n",
  11. length,(int)offset,inout));
  12. hanum = NUMDATA(host)->hanum;
  13. busnum= NUMDATA(host)->busnum;
  14. if (inout)
  15. return(gdth_set_info(buffer,length,host,hanum,busnum));
  16. else
  17. return(gdth_get_info(buffer,start,offset,length,host,hanum,busnum));
  18. }
  19. #else
  20. int gdth_proc_info(char *buffer,char **start,off_t offset,int length,int hostno,
  21. int inout)
  22. {
  23. int hanum,busnum,i;
  24. TRACE2(("gdth_proc_info() length %d offs %d inout %d\n",
  25. length,(int)offset,inout));
  26. for (i = 0; i < gdth_ctr_vcount; ++i) {
  27. if (gdth_ctr_vtab[i]->host_no == hostno)
  28. break;
  29. }
  30. if (i == gdth_ctr_vcount)
  31. return(-EINVAL);
  32. hanum = NUMDATA(gdth_ctr_vtab[i])->hanum;
  33. busnum= NUMDATA(gdth_ctr_vtab[i])->busnum;
  34. if (inout)
  35. return(gdth_set_info(buffer,length,gdth_ctr_vtab[i],hanum,busnum));
  36. else
  37. return(gdth_get_info(buffer,start,offset,length,
  38. gdth_ctr_vtab[i],hanum,busnum));
  39. }
  40. #endif
  41. static int gdth_set_info(char *buffer,int length,struct Scsi_Host *host,
  42. int hanum,int busnum)
  43. {
  44. int ret_val = -EINVAL;
  45. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  46. Scsi_Request *scp;
  47. struct scsi_device *sdev;
  48. #else
  49. Scsi_Cmnd *scp;
  50. struct scsi_device *sdev;
  51. #endif
  52. TRACE2(("gdth_set_info() ha %d bus %d\n",hanum,busnum));
  53. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  54. sdev = scsi_get_host_dev(host);
  55. scp = scsi_allocate_request(sdev, GFP_KERNEL);
  56. if (!scp)
  57. return -ENOMEM;
  58. scp->sr_cmd_len = 12;
  59. scp->sr_use_sg = 0;
  60. #else
  61. sdev = scsi_get_host_dev(host);
  62. scp = scsi_allocate_device(sdev, 1, FALSE);
  63. if (!scp)
  64. return -ENOMEM;
  65. scp->cmd_len = 12;
  66. scp->use_sg = 0;
  67. #endif
  68. if (length >= 4) {
  69. if (strncmp(buffer,"gdth",4) == 0) {
  70. buffer += 5;
  71. length -= 5;
  72. ret_val = gdth_set_asc_info( buffer, length, hanum, scp );
  73. }
  74. }
  75. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  76. scsi_release_request(scp);
  77. scsi_free_host_dev(sdev);
  78. #else
  79. scsi_release_command(scp);
  80. scsi_free_host_dev(sdev);
  81. #endif
  82. return ret_val;
  83. }
  84. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  85. static int gdth_set_asc_info(char *buffer,int length,int hanum,Scsi_Request *scp)
  86. #else
  87. static int gdth_set_asc_info(char *buffer,int length,int hanum,Scsi_Cmnd *scp)
  88. #endif
  89. {
  90. int orig_length, drive, wb_mode;
  91. int i, found;
  92. gdth_ha_str *ha;
  93. gdth_cmd_str gdtcmd;
  94. gdth_cpar_str *pcpar;
  95. ulong64 paddr;
  96. char cmnd[MAX_COMMAND_SIZE];
  97. memset(cmnd, 0xff, 12);
  98. memset(&gdtcmd, 0, sizeof(gdth_cmd_str));
  99. TRACE2(("gdth_set_asc_info() ha %d\n",hanum));
  100. ha = HADATA(gdth_ctr_tab[hanum]);
  101. orig_length = length + 5;
  102. drive = -1;
  103. wb_mode = 0;
  104. found = FALSE;
  105. if (length >= 5 && strncmp(buffer,"flush",5)==0) {
  106. buffer += 6;
  107. length -= 6;
  108. if (length && *buffer>='0' && *buffer<='9') {
  109. drive = (int)(*buffer-'0');
  110. ++buffer; --length;
  111. if (length && *buffer>='0' && *buffer<='9') {
  112. drive = drive*10 + (int)(*buffer-'0');
  113. ++buffer; --length;
  114. }
  115. printk("GDT: Flushing host drive %d .. ",drive);
  116. } else {
  117. printk("GDT: Flushing all host drives .. ");
  118. }
  119. for (i = 0; i < MAX_HDRIVES; ++i) {
  120. if (ha->hdr[i].present) {
  121. if (drive != -1 && i != drive)
  122. continue;
  123. found = TRUE;
  124. gdtcmd.Service = CACHESERVICE;
  125. gdtcmd.OpCode = GDT_FLUSH;
  126. if (ha->cache_feat & GDT_64BIT) {
  127. gdtcmd.u.cache64.DeviceNo = i;
  128. gdtcmd.u.cache64.BlockNo = 1;
  129. } else {
  130. gdtcmd.u.cache.DeviceNo = i;
  131. gdtcmd.u.cache.BlockNo = 1;
  132. }
  133. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  134. gdth_do_req(scp, &gdtcmd, cmnd, 30);
  135. #else
  136. gdth_do_cmd(scp, &gdtcmd, cmnd, 30);
  137. #endif
  138. }
  139. }
  140. if (!found)
  141. printk("\nNo host drive found !\n");
  142. else
  143. printk("Done.\n");
  144. return(orig_length);
  145. }
  146. if (length >= 7 && strncmp(buffer,"wbp_off",7)==0) {
  147. buffer += 8;
  148. length -= 8;
  149. printk("GDT: Disabling write back permanently .. ");
  150. wb_mode = 1;
  151. } else if (length >= 6 && strncmp(buffer,"wbp_on",6)==0) {
  152. buffer += 7;
  153. length -= 7;
  154. printk("GDT: Enabling write back permanently .. ");
  155. wb_mode = 2;
  156. } else if (length >= 6 && strncmp(buffer,"wb_off",6)==0) {
  157. buffer += 7;
  158. length -= 7;
  159. printk("GDT: Disabling write back commands .. ");
  160. if (ha->cache_feat & GDT_WR_THROUGH) {
  161. gdth_write_through = TRUE;
  162. printk("Done.\n");
  163. } else {
  164. printk("Not supported !\n");
  165. }
  166. return(orig_length);
  167. } else if (length >= 5 && strncmp(buffer,"wb_on",5)==0) {
  168. buffer += 6;
  169. length -= 6;
  170. printk("GDT: Enabling write back commands .. ");
  171. gdth_write_through = FALSE;
  172. printk("Done.\n");
  173. return(orig_length);
  174. }
  175. if (wb_mode) {
  176. if (!gdth_ioctl_alloc(hanum, sizeof(gdth_cpar_str), TRUE, &paddr))
  177. return(-EBUSY);
  178. pcpar = (gdth_cpar_str *)ha->pscratch;
  179. memcpy( pcpar, &ha->cpar, sizeof(gdth_cpar_str) );
  180. gdtcmd.Service = CACHESERVICE;
  181. gdtcmd.OpCode = GDT_IOCTL;
  182. gdtcmd.u.ioctl.p_param = paddr;
  183. gdtcmd.u.ioctl.param_size = sizeof(gdth_cpar_str);
  184. gdtcmd.u.ioctl.subfunc = CACHE_CONFIG;
  185. gdtcmd.u.ioctl.channel = INVALID_CHANNEL;
  186. pcpar->write_back = wb_mode==1 ? 0:1;
  187. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  188. gdth_do_req(scp, &gdtcmd, cmnd, 30);
  189. #else
  190. gdth_do_cmd(scp, &gdtcmd, cmnd, 30);
  191. #endif
  192. gdth_ioctl_free(hanum, GDTH_SCRATCH, ha->pscratch, paddr);
  193. printk("Done.\n");
  194. return(orig_length);
  195. }
  196. printk("GDT: Unknown command: %s Length: %d\n",buffer,length);
  197. return(-EINVAL);
  198. }
  199. static int gdth_get_info(char *buffer,char **start,off_t offset,int length,
  200. struct Scsi_Host *host,int hanum,int busnum)
  201. {
  202. int size = 0,len = 0;
  203. off_t begin = 0,pos = 0;
  204. gdth_ha_str *ha;
  205. int id, i, j, k, sec, flag;
  206. int no_mdrv = 0, drv_no, is_mirr;
  207. ulong32 cnt;
  208. ulong64 paddr;
  209. int rc = -ENOMEM;
  210. gdth_cmd_str *gdtcmd;
  211. gdth_evt_str *estr;
  212. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  213. Scsi_Request *scp;
  214. struct scsi_device *sdev;
  215. #else
  216. Scsi_Cmnd *scp;
  217. struct scsi_device *sdev;
  218. #endif
  219. char hrec[161];
  220. struct timeval tv;
  221. char *buf;
  222. gdth_dskstat_str *pds;
  223. gdth_diskinfo_str *pdi;
  224. gdth_arrayinf_str *pai;
  225. gdth_defcnt_str *pdef;
  226. gdth_cdrinfo_str *pcdi;
  227. gdth_hget_str *phg;
  228. char cmnd[MAX_COMMAND_SIZE];
  229. gdtcmd = kmalloc(sizeof(*gdtcmd), GFP_KERNEL);
  230. estr = kmalloc(sizeof(*estr), GFP_KERNEL);
  231. if (!gdtcmd || !estr)
  232. goto free_fail;
  233. memset(cmnd, 0xff, 12);
  234. memset(gdtcmd, 0, sizeof(gdth_cmd_str));
  235. TRACE2(("gdth_get_info() ha %d bus %d\n",hanum,busnum));
  236. ha = HADATA(gdth_ctr_tab[hanum]);
  237. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  238. sdev = scsi_get_host_dev(host);
  239. scp = scsi_allocate_request(sdev, GFP_KERNEL);
  240. if (!scp)
  241. goto free_fail;
  242. scp->sr_cmd_len = 12;
  243. scp->sr_use_sg = 0;
  244. #elif LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0)
  245. sdev = scsi_get_host_dev(host);
  246. scp = scsi_allocate_device(sdev, 1, FALSE);
  247. if (!scp)
  248. goto free_fail;
  249. scp->cmd_len = 12;
  250. scp->use_sg = 0;
  251. #else
  252. memset(&sdev,0,sizeof(struct scsi_device));
  253. memset(&scp, 0,sizeof(Scsi_Cmnd));
  254. sdev.host = scp.host = host;
  255. sdev.id = scp.target = sdev.host->this_id;
  256. scp.device = &sdev;
  257. #endif
  258. /* request is i.e. "cat /proc/scsi/gdth/0" */
  259. /* format: %-15s\t%-10s\t%-15s\t%s */
  260. /* driver parameters */
  261. size = sprintf(buffer+len,"Driver Parameters:\n");
  262. len += size; pos = begin + len;
  263. if (reserve_list[0] == 0xff)
  264. strcpy(hrec, "--");
  265. else {
  266. sprintf(hrec, "%d", reserve_list[0]);
  267. for (i = 1; i < MAX_RES_ARGS; i++) {
  268. if (reserve_list[i] == 0xff)
  269. break;
  270. sprintf(hrec,"%s,%d", hrec, reserve_list[i]);
  271. }
  272. }
  273. size = sprintf(buffer+len,
  274. " reserve_mode: \t%d \treserve_list: \t%s\n",
  275. reserve_mode, hrec);
  276. len += size; pos = begin + len;
  277. size = sprintf(buffer+len,
  278. " max_ids: \t%-3d \thdr_channel: \t%d\n",
  279. max_ids, hdr_channel);
  280. len += size; pos = begin + len;
  281. /* controller information */
  282. size = sprintf(buffer+len,"\nDisk Array Controller Information:\n");
  283. len += size; pos = begin + len;
  284. if (virt_ctr)
  285. sprintf(hrec, "%s (Bus %d)", ha->binfo.type_string, busnum);
  286. else
  287. strcpy(hrec, ha->binfo.type_string);
  288. size = sprintf(buffer+len,
  289. " Number: \t%d \tName: \t%s\n",
  290. hanum, hrec);
  291. len += size; pos = begin + len;
  292. if (ha->more_proc)
  293. sprintf(hrec, "%d.%02d.%02d-%c%03X",
  294. (unchar)(ha->binfo.upd_fw_ver>>24),
  295. (unchar)(ha->binfo.upd_fw_ver>>16),
  296. (unchar)(ha->binfo.upd_fw_ver),
  297. ha->bfeat.raid ? 'R':'N',
  298. ha->binfo.upd_revision);
  299. else
  300. sprintf(hrec, "%d.%02d", (unchar)(ha->cpar.version>>8),
  301. (unchar)(ha->cpar.version));
  302. size = sprintf(buffer+len,
  303. " Driver Ver.: \t%-10s\tFirmware Ver.: \t%s\n",
  304. GDTH_VERSION_STR, hrec);
  305. len += size; pos = begin + len;
  306. if (ha->more_proc) {
  307. /* more information: 1. about controller */
  308. size = sprintf(buffer+len,
  309. " Serial No.: \t0x%8X\tCache RAM size:\t%d KB\n",
  310. ha->binfo.ser_no, ha->binfo.memsize / 1024);
  311. len += size; pos = begin + len;
  312. }
  313. #ifdef GDTH_DMA_STATISTICS
  314. /* controller statistics */
  315. size = sprintf(buffer+len,"\nController Statistics:\n");
  316. len += size; pos = begin + len;
  317. size = sprintf(buffer+len,
  318. " 32-bit DMA buffer:\t%lu\t64-bit DMA buffer:\t%lu\n",
  319. ha->dma32_cnt, ha->dma64_cnt);
  320. len += size; pos = begin + len;
  321. #endif
  322. if (pos < offset) {
  323. len = 0;
  324. begin = pos;
  325. }
  326. if (pos > offset + length)
  327. goto stop_output;
  328. if (ha->more_proc) {
  329. /* more information: 2. about physical devices */
  330. size = sprintf(buffer+len,"\nPhysical Devices:");
  331. len += size; pos = begin + len;
  332. flag = FALSE;
  333. buf = gdth_ioctl_alloc(hanum, GDTH_SCRATCH, FALSE, &paddr);
  334. if (!buf)
  335. goto stop_output;
  336. for (i = 0; i < ha->bus_cnt; ++i) {
  337. /* 2.a statistics (and retries/reassigns) */
  338. TRACE2(("pdr_statistics() chn %d\n",i));
  339. pds = (gdth_dskstat_str *)(buf + GDTH_SCRATCH/4);
  340. gdtcmd->Service = CACHESERVICE;
  341. gdtcmd->OpCode = GDT_IOCTL;
  342. gdtcmd->u.ioctl.p_param = paddr + GDTH_SCRATCH/4;
  343. gdtcmd->u.ioctl.param_size = 3*GDTH_SCRATCH/4;
  344. gdtcmd->u.ioctl.subfunc = DSK_STATISTICS | L_CTRL_PATTERN;
  345. gdtcmd->u.ioctl.channel = ha->raw[i].address | INVALID_CHANNEL;
  346. pds->bid = ha->raw[i].local_no;
  347. pds->first = 0;
  348. pds->entries = ha->raw[i].pdev_cnt;
  349. cnt = (3*GDTH_SCRATCH/4 - 5 * sizeof(ulong32)) /
  350. sizeof(pds->list[0]);
  351. if (pds->entries > cnt)
  352. pds->entries = cnt;
  353. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  354. gdth_do_req(scp, gdtcmd, cmnd, 30);
  355. if (scp->sr_command->SCp.Status != S_OK)
  356. #else
  357. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  358. if (scp->SCp.Status != S_OK)
  359. #endif
  360. {
  361. pds->count = 0;
  362. }
  363. /* other IOCTLs must fit into area GDTH_SCRATCH/4 */
  364. for (j = 0; j < ha->raw[i].pdev_cnt; ++j) {
  365. /* 2.b drive info */
  366. TRACE2(("scsi_drv_info() chn %d dev %d\n",
  367. i, ha->raw[i].id_list[j]));
  368. pdi = (gdth_diskinfo_str *)buf;
  369. gdtcmd->Service = CACHESERVICE;
  370. gdtcmd->OpCode = GDT_IOCTL;
  371. gdtcmd->u.ioctl.p_param = paddr;
  372. gdtcmd->u.ioctl.param_size = sizeof(gdth_diskinfo_str);
  373. gdtcmd->u.ioctl.subfunc = SCSI_DR_INFO | L_CTRL_PATTERN;
  374. gdtcmd->u.ioctl.channel =
  375. ha->raw[i].address | ha->raw[i].id_list[j];
  376. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  377. gdth_do_req(scp, gdtcmd, cmnd, 30);
  378. if (scp->sr_command->SCp.Status == S_OK)
  379. #else
  380. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  381. if (scp->SCp.Status == S_OK)
  382. #endif
  383. {
  384. strncpy(hrec,pdi->vendor,8);
  385. strncpy(hrec+8,pdi->product,16);
  386. strncpy(hrec+24,pdi->revision,4);
  387. hrec[28] = 0;
  388. size = sprintf(buffer+len,
  389. "\n Chn/ID/LUN: \t%c/%02d/%d \tName: \t%s\n",
  390. 'A'+i,pdi->target_id,pdi->lun,hrec);
  391. len += size; pos = begin + len;
  392. flag = TRUE;
  393. pdi->no_ldrive &= 0xffff;
  394. if (pdi->no_ldrive == 0xffff)
  395. strcpy(hrec,"--");
  396. else
  397. sprintf(hrec,"%d",pdi->no_ldrive);
  398. size = sprintf(buffer+len,
  399. " Capacity [MB]:\t%-6d \tTo Log. Drive: \t%s\n",
  400. pdi->blkcnt/(1024*1024/pdi->blksize),
  401. hrec);
  402. len += size; pos = begin + len;
  403. } else {
  404. pdi->devtype = 0xff;
  405. }
  406. if (pdi->devtype == 0) {
  407. /* search retries/reassigns */
  408. for (k = 0; k < pds->count; ++k) {
  409. if (pds->list[k].tid == pdi->target_id &&
  410. pds->list[k].lun == pdi->lun) {
  411. size = sprintf(buffer+len,
  412. " Retries: \t%-6d \tReassigns: \t%d\n",
  413. pds->list[k].retries,
  414. pds->list[k].reassigns);
  415. len += size; pos = begin + len;
  416. break;
  417. }
  418. }
  419. /* 2.c grown defects */
  420. TRACE2(("scsi_drv_defcnt() chn %d dev %d\n",
  421. i, ha->raw[i].id_list[j]));
  422. pdef = (gdth_defcnt_str *)buf;
  423. gdtcmd->Service = CACHESERVICE;
  424. gdtcmd->OpCode = GDT_IOCTL;
  425. gdtcmd->u.ioctl.p_param = paddr;
  426. gdtcmd->u.ioctl.param_size = sizeof(gdth_defcnt_str);
  427. gdtcmd->u.ioctl.subfunc = SCSI_DEF_CNT | L_CTRL_PATTERN;
  428. gdtcmd->u.ioctl.channel =
  429. ha->raw[i].address | ha->raw[i].id_list[j];
  430. pdef->sddc_type = 0x08;
  431. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  432. gdth_do_req(scp, gdtcmd, cmnd, 30);
  433. if (scp->sr_command->SCp.Status == S_OK)
  434. #else
  435. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  436. if (scp->SCp.Status == S_OK)
  437. #endif
  438. {
  439. size = sprintf(buffer+len,
  440. " Grown Defects:\t%d\n",
  441. pdef->sddc_cnt);
  442. len += size; pos = begin + len;
  443. }
  444. }
  445. if (pos < offset) {
  446. len = 0;
  447. begin = pos;
  448. }
  449. if (pos > offset + length)
  450. goto stop_output;
  451. }
  452. }
  453. gdth_ioctl_free(hanum, GDTH_SCRATCH, buf, paddr);
  454. if (!flag) {
  455. size = sprintf(buffer+len, "\n --\n");
  456. len += size; pos = begin + len;
  457. }
  458. /* 3. about logical drives */
  459. size = sprintf(buffer+len,"\nLogical Drives:");
  460. len += size; pos = begin + len;
  461. flag = FALSE;
  462. buf = gdth_ioctl_alloc(hanum, GDTH_SCRATCH, FALSE, &paddr);
  463. if (!buf)
  464. goto stop_output;
  465. for (i = 0; i < MAX_LDRIVES; ++i) {
  466. if (!ha->hdr[i].is_logdrv)
  467. continue;
  468. drv_no = i;
  469. j = k = 0;
  470. is_mirr = FALSE;
  471. do {
  472. /* 3.a log. drive info */
  473. TRACE2(("cache_drv_info() drive no %d\n",drv_no));
  474. pcdi = (gdth_cdrinfo_str *)buf;
  475. gdtcmd->Service = CACHESERVICE;
  476. gdtcmd->OpCode = GDT_IOCTL;
  477. gdtcmd->u.ioctl.p_param = paddr;
  478. gdtcmd->u.ioctl.param_size = sizeof(gdth_cdrinfo_str);
  479. gdtcmd->u.ioctl.subfunc = CACHE_DRV_INFO;
  480. gdtcmd->u.ioctl.channel = drv_no;
  481. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  482. gdth_do_req(scp, gdtcmd, cmnd, 30);
  483. if (scp->sr_command->SCp.Status != S_OK)
  484. #else
  485. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  486. if (scp->SCp.Status != S_OK)
  487. #endif
  488. {
  489. break;
  490. }
  491. pcdi->ld_dtype >>= 16;
  492. j++;
  493. if (pcdi->ld_dtype > 2) {
  494. strcpy(hrec, "missing");
  495. } else if (pcdi->ld_error & 1) {
  496. strcpy(hrec, "fault");
  497. } else if (pcdi->ld_error & 2) {
  498. strcpy(hrec, "invalid");
  499. k++; j--;
  500. } else {
  501. strcpy(hrec, "ok");
  502. }
  503. if (drv_no == i) {
  504. size = sprintf(buffer+len,
  505. "\n Number: \t%-2d \tStatus: \t%s\n",
  506. drv_no, hrec);
  507. len += size; pos = begin + len;
  508. flag = TRUE;
  509. no_mdrv = pcdi->cd_ldcnt;
  510. if (no_mdrv > 1 || pcdi->ld_slave != -1) {
  511. is_mirr = TRUE;
  512. strcpy(hrec, "RAID-1");
  513. } else if (pcdi->ld_dtype == 0) {
  514. strcpy(hrec, "Disk");
  515. } else if (pcdi->ld_dtype == 1) {
  516. strcpy(hrec, "RAID-0");
  517. } else if (pcdi->ld_dtype == 2) {
  518. strcpy(hrec, "Chain");
  519. } else {
  520. strcpy(hrec, "???");
  521. }
  522. size = sprintf(buffer+len,
  523. " Capacity [MB]:\t%-6d \tType: \t%s\n",
  524. pcdi->ld_blkcnt/(1024*1024/pcdi->ld_blksize),
  525. hrec);
  526. len += size; pos = begin + len;
  527. } else {
  528. size = sprintf(buffer+len,
  529. " Slave Number: \t%-2d \tStatus: \t%s\n",
  530. drv_no & 0x7fff, hrec);
  531. len += size; pos = begin + len;
  532. }
  533. drv_no = pcdi->ld_slave;
  534. if (pos < offset) {
  535. len = 0;
  536. begin = pos;
  537. }
  538. if (pos > offset + length)
  539. goto stop_output;
  540. } while (drv_no != -1);
  541. if (is_mirr) {
  542. size = sprintf(buffer+len,
  543. " Missing Drv.: \t%-2d \tInvalid Drv.: \t%d\n",
  544. no_mdrv - j - k, k);
  545. len += size; pos = begin + len;
  546. }
  547. if (!ha->hdr[i].is_arraydrv)
  548. strcpy(hrec, "--");
  549. else
  550. sprintf(hrec, "%d", ha->hdr[i].master_no);
  551. size = sprintf(buffer+len,
  552. " To Array Drv.:\t%s\n", hrec);
  553. len += size; pos = begin + len;
  554. if (pos < offset) {
  555. len = 0;
  556. begin = pos;
  557. }
  558. if (pos > offset + length)
  559. goto stop_output;
  560. }
  561. gdth_ioctl_free(hanum, GDTH_SCRATCH, buf, paddr);
  562. if (!flag) {
  563. size = sprintf(buffer+len, "\n --\n");
  564. len += size; pos = begin + len;
  565. }
  566. /* 4. about array drives */
  567. size = sprintf(buffer+len,"\nArray Drives:");
  568. len += size; pos = begin + len;
  569. flag = FALSE;
  570. buf = gdth_ioctl_alloc(hanum, GDTH_SCRATCH, FALSE, &paddr);
  571. if (!buf)
  572. goto stop_output;
  573. for (i = 0; i < MAX_LDRIVES; ++i) {
  574. if (!(ha->hdr[i].is_arraydrv && ha->hdr[i].is_master))
  575. continue;
  576. /* 4.a array drive info */
  577. TRACE2(("array_info() drive no %d\n",i));
  578. pai = (gdth_arrayinf_str *)buf;
  579. gdtcmd->Service = CACHESERVICE;
  580. gdtcmd->OpCode = GDT_IOCTL;
  581. gdtcmd->u.ioctl.p_param = paddr;
  582. gdtcmd->u.ioctl.param_size = sizeof(gdth_arrayinf_str);
  583. gdtcmd->u.ioctl.subfunc = ARRAY_INFO | LA_CTRL_PATTERN;
  584. gdtcmd->u.ioctl.channel = i;
  585. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  586. gdth_do_req(scp, gdtcmd, cmnd, 30);
  587. if (scp->sr_command->SCp.Status == S_OK)
  588. #else
  589. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  590. if (scp->SCp.Status == S_OK)
  591. #endif
  592. {
  593. if (pai->ai_state == 0)
  594. strcpy(hrec, "idle");
  595. else if (pai->ai_state == 2)
  596. strcpy(hrec, "build");
  597. else if (pai->ai_state == 4)
  598. strcpy(hrec, "ready");
  599. else if (pai->ai_state == 6)
  600. strcpy(hrec, "fail");
  601. else if (pai->ai_state == 8 || pai->ai_state == 10)
  602. strcpy(hrec, "rebuild");
  603. else
  604. strcpy(hrec, "error");
  605. if (pai->ai_ext_state & 0x10)
  606. strcat(hrec, "/expand");
  607. else if (pai->ai_ext_state & 0x1)
  608. strcat(hrec, "/patch");
  609. size = sprintf(buffer+len,
  610. "\n Number: \t%-2d \tStatus: \t%s\n",
  611. i,hrec);
  612. len += size; pos = begin + len;
  613. flag = TRUE;
  614. if (pai->ai_type == 0)
  615. strcpy(hrec, "RAID-0");
  616. else if (pai->ai_type == 4)
  617. strcpy(hrec, "RAID-4");
  618. else if (pai->ai_type == 5)
  619. strcpy(hrec, "RAID-5");
  620. else
  621. strcpy(hrec, "RAID-10");
  622. size = sprintf(buffer+len,
  623. " Capacity [MB]:\t%-6d \tType: \t%s\n",
  624. pai->ai_size/(1024*1024/pai->ai_secsize),
  625. hrec);
  626. len += size; pos = begin + len;
  627. if (pos < offset) {
  628. len = 0;
  629. begin = pos;
  630. }
  631. if (pos > offset + length)
  632. goto stop_output;
  633. }
  634. }
  635. gdth_ioctl_free(hanum, GDTH_SCRATCH, buf, paddr);
  636. if (!flag) {
  637. size = sprintf(buffer+len, "\n --\n");
  638. len += size; pos = begin + len;
  639. }
  640. /* 5. about host drives */
  641. size = sprintf(buffer+len,"\nHost Drives:");
  642. len += size; pos = begin + len;
  643. flag = FALSE;
  644. buf = gdth_ioctl_alloc(hanum, sizeof(gdth_hget_str), FALSE, &paddr);
  645. if (!buf)
  646. goto stop_output;
  647. for (i = 0; i < MAX_LDRIVES; ++i) {
  648. if (!ha->hdr[i].is_logdrv ||
  649. (ha->hdr[i].is_arraydrv && !ha->hdr[i].is_master))
  650. continue;
  651. /* 5.a get host drive list */
  652. TRACE2(("host_get() drv_no %d\n",i));
  653. phg = (gdth_hget_str *)buf;
  654. gdtcmd->Service = CACHESERVICE;
  655. gdtcmd->OpCode = GDT_IOCTL;
  656. gdtcmd->u.ioctl.p_param = paddr;
  657. gdtcmd->u.ioctl.param_size = sizeof(gdth_hget_str);
  658. gdtcmd->u.ioctl.subfunc = HOST_GET | LA_CTRL_PATTERN;
  659. gdtcmd->u.ioctl.channel = i;
  660. phg->entries = MAX_HDRIVES;
  661. phg->offset = GDTOFFSOF(gdth_hget_str, entry[0]);
  662. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  663. gdth_do_req(scp, gdtcmd, cmnd, 30);
  664. if (scp->sr_command->SCp.Status != S_OK)
  665. #else
  666. gdth_do_cmd(scp, gdtcmd, cmnd, 30);
  667. if (scp->SCp.Status != S_OK)
  668. #endif
  669. {
  670. ha->hdr[i].ldr_no = i;
  671. ha->hdr[i].rw_attribs = 0;
  672. ha->hdr[i].start_sec = 0;
  673. } else {
  674. for (j = 0; j < phg->entries; ++j) {
  675. k = phg->entry[j].host_drive;
  676. if (k >= MAX_LDRIVES)
  677. continue;
  678. ha->hdr[k].ldr_no = phg->entry[j].log_drive;
  679. ha->hdr[k].rw_attribs = phg->entry[j].rw_attribs;
  680. ha->hdr[k].start_sec = phg->entry[j].start_sec;
  681. }
  682. }
  683. }
  684. gdth_ioctl_free(hanum, sizeof(gdth_hget_str), buf, paddr);
  685. for (i = 0; i < MAX_HDRIVES; ++i) {
  686. if (!(ha->hdr[i].present))
  687. continue;
  688. size = sprintf(buffer+len,
  689. "\n Number: \t%-2d \tArr/Log. Drive:\t%d\n",
  690. i, ha->hdr[i].ldr_no);
  691. len += size; pos = begin + len;
  692. flag = TRUE;
  693. size = sprintf(buffer+len,
  694. " Capacity [MB]:\t%-6d \tStart Sector: \t%d\n",
  695. (ulong32)(ha->hdr[i].size/2048), ha->hdr[i].start_sec);
  696. len += size; pos = begin + len;
  697. if (pos < offset) {
  698. len = 0;
  699. begin = pos;
  700. }
  701. if (pos > offset + length)
  702. goto stop_output;
  703. }
  704. if (!flag) {
  705. size = sprintf(buffer+len, "\n --\n");
  706. len += size; pos = begin + len;
  707. }
  708. }
  709. /* controller events */
  710. size = sprintf(buffer+len,"\nController Events:\n");
  711. len += size; pos = begin + len;
  712. for (id = -1;;) {
  713. id = gdth_read_event(ha, id, estr);
  714. if (estr->event_source == 0)
  715. break;
  716. if (estr->event_data.eu.driver.ionode == hanum &&
  717. estr->event_source == ES_ASYNC) {
  718. gdth_log_event(&estr->event_data, hrec);
  719. do_gettimeofday(&tv);
  720. sec = (int)(tv.tv_sec - estr->first_stamp);
  721. if (sec < 0) sec = 0;
  722. size = sprintf(buffer+len," date- %02d:%02d:%02d\t%s\n",
  723. sec/3600, sec%3600/60, sec%60, hrec);
  724. len += size; pos = begin + len;
  725. if (pos < offset) {
  726. len = 0;
  727. begin = pos;
  728. }
  729. if (pos > offset + length)
  730. goto stop_output;
  731. }
  732. if (id == -1)
  733. break;
  734. }
  735. stop_output:
  736. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  737. scsi_release_request(scp);
  738. scsi_free_host_dev(sdev);
  739. #else
  740. scsi_release_command(scp);
  741. scsi_free_host_dev(sdev);
  742. #endif
  743. *start = buffer +(offset-begin);
  744. len -= (offset-begin);
  745. if (len > length)
  746. len = length;
  747. TRACE2(("get_info() len %d pos %d begin %d offset %d length %d size %d\n",
  748. len,(int)pos,(int)begin,(int)offset,length,size));
  749. rc = len;
  750. free_fail:
  751. kfree(gdtcmd);
  752. kfree(estr);
  753. return rc;
  754. }
  755. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  756. static void gdth_do_req(Scsi_Request *scp, gdth_cmd_str *gdtcmd,
  757. char *cmnd, int timeout)
  758. {
  759. unsigned bufflen;
  760. DECLARE_COMPLETION(wait);
  761. TRACE2(("gdth_do_req()\n"));
  762. if (gdtcmd != NULL) {
  763. bufflen = sizeof(gdth_cmd_str);
  764. } else {
  765. bufflen = 0;
  766. }
  767. scp->sr_request->rq_status = RQ_SCSI_BUSY;
  768. scp->sr_request->waiting = &wait;
  769. scsi_do_req(scp, cmnd, gdtcmd, bufflen, gdth_scsi_done, timeout*HZ, 1);
  770. wait_for_completion(&wait);
  771. }
  772. #else
  773. static void gdth_do_cmd(Scsi_Cmnd *scp, gdth_cmd_str *gdtcmd,
  774. char *cmnd, int timeout)
  775. {
  776. unsigned bufflen;
  777. DECLARE_COMPLETION(wait);
  778. TRACE2(("gdth_do_cmd()\n"));
  779. if (gdtcmd != NULL) {
  780. scp->SCp.this_residual = IOCTL_PRI;
  781. bufflen = sizeof(gdth_cmd_str);
  782. } else {
  783. scp->SCp.this_residual = DEFAULT_PRI;
  784. bufflen = 0;
  785. }
  786. scp->request.rq_status = RQ_SCSI_BUSY;
  787. scp->request.waiting = &wait;
  788. scsi_do_cmd(scp, cmnd, gdtcmd, bufflen, gdth_scsi_done, timeout*HZ, 1);
  789. wait_for_completion(&wait);
  790. }
  791. #endif
  792. void gdth_scsi_done(Scsi_Cmnd *scp)
  793. {
  794. TRACE2(("gdth_scsi_done()\n"));
  795. #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0)
  796. scp->request->rq_status = RQ_SCSI_DONE;
  797. if (scp->request->waiting != NULL)
  798. complete(scp->request->waiting);
  799. #else
  800. scp->request.rq_status = RQ_SCSI_DONE;
  801. if (scp->request.waiting != NULL)
  802. complete(scp->request.waiting);
  803. #endif
  804. }
  805. static char *gdth_ioctl_alloc(int hanum, int size, int scratch,
  806. ulong64 *paddr)
  807. {
  808. gdth_ha_str *ha;
  809. ulong flags;
  810. char *ret_val;
  811. if (size == 0)
  812. return NULL;
  813. ha = HADATA(gdth_ctr_tab[hanum]);
  814. spin_lock_irqsave(&ha->smp_lock, flags);
  815. if (!ha->scratch_busy && size <= GDTH_SCRATCH) {
  816. ha->scratch_busy = TRUE;
  817. ret_val = ha->pscratch;
  818. *paddr = ha->scratch_phys;
  819. } else if (scratch) {
  820. ret_val = NULL;
  821. } else {
  822. dma_addr_t dma_addr;
  823. ret_val = pci_alloc_consistent(ha->pdev, size, &dma_addr);
  824. *paddr = dma_addr;
  825. }
  826. spin_unlock_irqrestore(&ha->smp_lock, flags);
  827. return ret_val;
  828. }
  829. static void gdth_ioctl_free(int hanum, int size, char *buf, ulong64 paddr)
  830. {
  831. gdth_ha_str *ha;
  832. ulong flags;
  833. ha = HADATA(gdth_ctr_tab[hanum]);
  834. spin_lock_irqsave(&ha->smp_lock, flags);
  835. if (buf == ha->pscratch) {
  836. ha->scratch_busy = FALSE;
  837. } else {
  838. pci_free_consistent(ha->pdev, size, buf, paddr);
  839. }
  840. spin_unlock_irqrestore(&ha->smp_lock, flags);
  841. }
  842. #ifdef GDTH_IOCTL_PROC
  843. static int gdth_ioctl_check_bin(int hanum, ushort size)
  844. {
  845. gdth_ha_str *ha;
  846. ulong flags;
  847. int ret_val;
  848. ha = HADATA(gdth_ctr_tab[hanum]);
  849. spin_lock_irqsave(&ha->smp_lock, flags);
  850. ret_val = FALSE;
  851. if (ha->scratch_busy) {
  852. if (((gdth_iord_str *)ha->pscratch)->size == (ulong32)size)
  853. ret_val = TRUE;
  854. }
  855. spin_unlock_irqrestore(&ha->smp_lock, flags);
  856. return ret_val;
  857. }
  858. #endif
  859. static void gdth_wait_completion(int hanum, int busnum, int id)
  860. {
  861. gdth_ha_str *ha;
  862. ulong flags;
  863. int i;
  864. Scsi_Cmnd *scp;
  865. unchar b, t;
  866. ha = HADATA(gdth_ctr_tab[hanum]);
  867. spin_lock_irqsave(&ha->smp_lock, flags);
  868. for (i = 0; i < GDTH_MAXCMDS; ++i) {
  869. scp = ha->cmd_tab[i].cmnd;
  870. b = virt_ctr ? NUMDATA(scp->device->host)->busnum : scp->device->channel;
  871. t = scp->device->id;
  872. if (!SPECIAL_SCP(scp) && t == (unchar)id &&
  873. b == (unchar)busnum) {
  874. scp->SCp.have_data_in = 0;
  875. spin_unlock_irqrestore(&ha->smp_lock, flags);
  876. while (!scp->SCp.have_data_in)
  877. barrier();
  878. spin_lock_irqsave(&ha->smp_lock, flags);
  879. }
  880. }
  881. spin_unlock_irqrestore(&ha->smp_lock, flags);
  882. }
  883. static void gdth_stop_timeout(int hanum, int busnum, int id)
  884. {
  885. gdth_ha_str *ha;
  886. ulong flags;
  887. Scsi_Cmnd *scp;
  888. unchar b, t;
  889. ha = HADATA(gdth_ctr_tab[hanum]);
  890. spin_lock_irqsave(&ha->smp_lock, flags);
  891. for (scp = ha->req_first; scp; scp = (Scsi_Cmnd *)scp->SCp.ptr) {
  892. b = virt_ctr ? NUMDATA(scp->device->host)->busnum : scp->device->channel;
  893. t = scp->device->id;
  894. if (t == (unchar)id && b == (unchar)busnum) {
  895. TRACE2(("gdth_stop_timeout(): update_timeout()\n"));
  896. scp->SCp.buffers_residual = gdth_update_timeout(hanum, scp, 0);
  897. }
  898. }
  899. spin_unlock_irqrestore(&ha->smp_lock, flags);
  900. }
  901. static void gdth_start_timeout(int hanum, int busnum, int id)
  902. {
  903. gdth_ha_str *ha;
  904. ulong flags;
  905. Scsi_Cmnd *scp;
  906. unchar b, t;
  907. ha = HADATA(gdth_ctr_tab[hanum]);
  908. spin_lock_irqsave(&ha->smp_lock, flags);
  909. for (scp = ha->req_first; scp; scp = (Scsi_Cmnd *)scp->SCp.ptr) {
  910. b = virt_ctr ? NUMDATA(scp->device->host)->busnum : scp->device->channel;
  911. t = scp->device->id;
  912. if (t == (unchar)id && b == (unchar)busnum) {
  913. TRACE2(("gdth_start_timeout(): update_timeout()\n"));
  914. gdth_update_timeout(hanum, scp, scp->SCp.buffers_residual);
  915. }
  916. }
  917. spin_unlock_irqrestore(&ha->smp_lock, flags);
  918. }
  919. static int gdth_update_timeout(int hanum, Scsi_Cmnd *scp, int timeout)
  920. {
  921. int oldto;
  922. oldto = scp->timeout_per_command;
  923. scp->timeout_per_command = timeout;
  924. if (timeout == 0) {
  925. del_timer(&scp->eh_timeout);
  926. scp->eh_timeout.data = (unsigned long) NULL;
  927. scp->eh_timeout.expires = 0;
  928. } else {
  929. if (scp->eh_timeout.data != (unsigned long) NULL)
  930. del_timer(&scp->eh_timeout);
  931. scp->eh_timeout.data = (unsigned long) scp;
  932. scp->eh_timeout.expires = jiffies + timeout;
  933. add_timer(&scp->eh_timeout);
  934. }
  935. return oldto;
  936. }