devsd.c 31 KB

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  1. /*
  2. * Storage Device.
  3. */
  4. #include "u.h"
  5. #include "../port/lib.h"
  6. #include "mem.h"
  7. #include "dat.h"
  8. #include "fns.h"
  9. #include "io.h"
  10. #include "ureg.h"
  11. #include "../port/error.h"
  12. #include "../port/sd.h"
  13. extern Dev sddevtab;
  14. extern SDifc* sdifc[];
  15. static char devletters[] = "0123456789"
  16. "abcdefghijklmnopqrstuvwxyz"
  17. "ABCDEFGHIJKLMNOPQRSTUVWXYZ";
  18. static SDev *devs[sizeof devletters-1];
  19. static QLock devslock;
  20. enum {
  21. Rawcmd,
  22. Rawdata,
  23. Rawstatus,
  24. };
  25. enum {
  26. Qtopdir = 1, /* top level directory */
  27. Qtopbase,
  28. Qtopctl = Qtopbase,
  29. Qunitdir, /* directory per unit */
  30. Qunitbase,
  31. Qctl = Qunitbase,
  32. Qraw,
  33. Qpart,
  34. TypeLOG = 4,
  35. NType = (1<<TypeLOG),
  36. TypeMASK = (NType-1),
  37. TypeSHIFT = 0,
  38. PartLOG = 8,
  39. NPart = (1<<PartLOG),
  40. PartMASK = (NPart-1),
  41. PartSHIFT = TypeLOG,
  42. UnitLOG = 8,
  43. NUnit = (1<<UnitLOG),
  44. UnitMASK = (NUnit-1),
  45. UnitSHIFT = (PartLOG+TypeLOG),
  46. DevLOG = 8,
  47. NDev = (1 << DevLOG),
  48. DevMASK = (NDev-1),
  49. DevSHIFT = (UnitLOG+PartLOG+TypeLOG),
  50. Ncmd = 20,
  51. };
  52. #define TYPE(q) ((((ulong)(q).path)>>TypeSHIFT) & TypeMASK)
  53. #define PART(q) ((((ulong)(q).path)>>PartSHIFT) & PartMASK)
  54. #define UNIT(q) ((((ulong)(q).path)>>UnitSHIFT) & UnitMASK)
  55. #define DEV(q) ((((ulong)(q).path)>>DevSHIFT) & DevMASK)
  56. #define QID(d,u, p, t) (((d)<<DevSHIFT)|((u)<<UnitSHIFT)|\
  57. ((p)<<PartSHIFT)|((t)<<TypeSHIFT))
  58. void
  59. sdaddpart(SDunit* unit, char* name, uvlong start, uvlong end)
  60. {
  61. SDpart *pp;
  62. int i, partno;
  63. /*
  64. * Check name not already used
  65. * and look for a free slot.
  66. */
  67. if(unit->part != nil){
  68. partno = -1;
  69. for(i = 0; i < unit->npart; i++){
  70. pp = &unit->part[i];
  71. if(!pp->valid){
  72. if(partno == -1)
  73. partno = i;
  74. break;
  75. }
  76. if(strcmp(name, pp->name) == 0){
  77. if(pp->start == start && pp->end == end)
  78. return;
  79. error(Ebadctl);
  80. }
  81. }
  82. }
  83. else{
  84. if((unit->part = malloc(sizeof(SDpart)*SDnpart)) == nil)
  85. error(Enomem);
  86. unit->npart = SDnpart;
  87. partno = 0;
  88. }
  89. /*
  90. * If no free slot found then increase the
  91. * array size (can't get here with unit->part == nil).
  92. */
  93. if(partno == -1){
  94. if(unit->npart >= NPart)
  95. error(Enomem);
  96. if((pp = malloc(sizeof(SDpart)*(unit->npart+SDnpart))) == nil)
  97. error(Enomem);
  98. memmove(pp, unit->part, sizeof(SDpart)*unit->npart);
  99. free(unit->part);
  100. unit->part = pp;
  101. partno = unit->npart;
  102. unit->npart += SDnpart;
  103. }
  104. /*
  105. * Check size and extent are valid.
  106. */
  107. if(start > end || end > unit->sectors)
  108. error(Eio);
  109. pp = &unit->part[partno];
  110. pp->start = start;
  111. pp->end = end;
  112. kstrdup(&pp->name, name);
  113. kstrdup(&pp->user, eve);
  114. pp->perm = 0640;
  115. pp->valid = 1;
  116. }
  117. static void
  118. sddelpart(SDunit* unit, char* name)
  119. {
  120. int i;
  121. SDpart *pp;
  122. /*
  123. * Look for the partition to delete.
  124. * Can't delete if someone still has it open.
  125. */
  126. pp = unit->part;
  127. for(i = 0; i < unit->npart; i++){
  128. if(strcmp(name, pp->name) == 0)
  129. break;
  130. pp++;
  131. }
  132. if(i >= unit->npart)
  133. error(Ebadctl);
  134. if(strcmp(up->user, pp->user) && !iseve())
  135. error(Eperm);
  136. pp->valid = 0;
  137. pp->vers++;
  138. }
  139. static void
  140. sdincvers(SDunit *unit)
  141. {
  142. int i;
  143. unit->vers++;
  144. if(unit->part){
  145. for(i = 0; i < unit->npart; i++){
  146. unit->part[i].valid = 0;
  147. unit->part[i].vers++;
  148. }
  149. }
  150. }
  151. static int
  152. sdinitpart(SDunit* unit)
  153. {
  154. int nf;
  155. uvlong start, end;
  156. char *f[4], *p, *q, buf[10];
  157. if(unit->sectors > 0){
  158. unit->sectors = unit->secsize = 0;
  159. sdincvers(unit);
  160. }
  161. /* device must be connected or not; other values are trouble */
  162. if(unit->inquiry[0] & 0xC0) /* see SDinq0periphqual */
  163. return 0;
  164. switch(unit->inquiry[0] & SDinq0periphtype){
  165. case SDperdisk:
  166. case SDperworm:
  167. case SDpercd:
  168. case SDpermo:
  169. break;
  170. default:
  171. return 0;
  172. }
  173. if(unit->dev->ifc->online)
  174. unit->dev->ifc->online(unit);
  175. if(unit->sectors){
  176. sdincvers(unit);
  177. sdaddpart(unit, "data", 0, unit->sectors);
  178. /*
  179. * Use partitions passed from boot program,
  180. * e.g.
  181. * sdC0part=dos 63 123123/plan9 123123 456456
  182. * This happens before /boot sets hostname so the
  183. * partitions will have the null-string for user.
  184. * The gen functions patch it up.
  185. */
  186. snprint(buf, sizeof buf, "%spart", unit->name);
  187. for(p = getconf(buf); p != nil; p = q){
  188. if(q = strchr(p, '/'))
  189. *q++ = '\0';
  190. nf = tokenize(p, f, nelem(f));
  191. if(nf < 3)
  192. continue;
  193. start = strtoull(f[1], 0, 0);
  194. end = strtoull(f[2], 0, 0);
  195. if(!waserror()){
  196. sdaddpart(unit, f[0], start, end);
  197. poperror();
  198. }
  199. }
  200. }
  201. return 1;
  202. }
  203. static int
  204. sdindex(int idno)
  205. {
  206. char *p;
  207. p = strchr(devletters, idno);
  208. if(p == nil)
  209. return -1;
  210. return p-devletters;
  211. }
  212. static SDev*
  213. sdgetdev(int idno)
  214. {
  215. SDev *sdev;
  216. int i;
  217. if((i = sdindex(idno)) < 0)
  218. return nil;
  219. qlock(&devslock);
  220. if(sdev = devs[i])
  221. incref(&sdev->r);
  222. qunlock(&devslock);
  223. return sdev;
  224. }
  225. static SDunit*
  226. sdgetunit(SDev* sdev, int subno)
  227. {
  228. SDunit *unit;
  229. char buf[32];
  230. /*
  231. * Associate a unit with a given device and sub-unit
  232. * number on that device.
  233. * The device will be probed if it has not already been
  234. * successfully accessed.
  235. */
  236. qlock(&sdev->unitlock);
  237. if(subno > sdev->nunit){
  238. qunlock(&sdev->unitlock);
  239. return nil;
  240. }
  241. unit = sdev->unit[subno];
  242. if(unit == nil){
  243. /*
  244. * Probe the unit only once. This decision
  245. * may be a little severe and reviewed later.
  246. */
  247. if(sdev->unitflg[subno]){
  248. qunlock(&sdev->unitlock);
  249. return nil;
  250. }
  251. if((unit = malloc(sizeof(SDunit))) == nil){
  252. qunlock(&sdev->unitlock);
  253. return nil;
  254. }
  255. sdev->unitflg[subno] = 1;
  256. snprint(buf, sizeof(buf), "%s%d", sdev->name, subno);
  257. kstrdup(&unit->name, buf);
  258. kstrdup(&unit->user, eve);
  259. unit->perm = 0555;
  260. unit->subno = subno;
  261. unit->dev = sdev;
  262. if(sdev->enabled == 0 && sdev->ifc->enable)
  263. sdev->ifc->enable(sdev);
  264. sdev->enabled = 1;
  265. /*
  266. * No need to lock anything here as this is only
  267. * called before the unit is made available in the
  268. * sdunit[] array.
  269. */
  270. if(unit->dev->ifc->verify(unit) == 0){
  271. qunlock(&sdev->unitlock);
  272. free(unit);
  273. return nil;
  274. }
  275. sdev->unit[subno] = unit;
  276. }
  277. qunlock(&sdev->unitlock);
  278. return unit;
  279. }
  280. static void
  281. sdreset(void)
  282. {
  283. int i;
  284. SDev *sdev;
  285. /*
  286. * Probe all known controller types and register any devices found.
  287. */
  288. for(i = 0; sdifc[i] != nil; i++){
  289. if(sdifc[i]->pnp == nil || (sdev = sdifc[i]->pnp()) == nil)
  290. continue;
  291. sdadddevs(sdev);
  292. }
  293. }
  294. void
  295. sdadddevs(SDev *sdev)
  296. {
  297. int i, j, id;
  298. SDev *next;
  299. for(; sdev; sdev=next){
  300. next = sdev->next;
  301. sdev->unit = (SDunit**)malloc(sdev->nunit * sizeof(SDunit*));
  302. sdev->unitflg = (int*)malloc(sdev->nunit * sizeof(int));
  303. if(sdev->unit == nil || sdev->unitflg == nil){
  304. print("sdadddevs: out of memory\n");
  305. giveup:
  306. free(sdev->unit);
  307. free(sdev->unitflg);
  308. if(sdev->ifc->clear)
  309. sdev->ifc->clear(sdev);
  310. free(sdev);
  311. continue;
  312. }
  313. id = sdindex(sdev->idno);
  314. if(id == -1){
  315. print("sdadddevs: bad id number %d (%C)\n", id, id);
  316. goto giveup;
  317. }
  318. qlock(&devslock);
  319. for(i=0; i<nelem(devs); i++){
  320. if(devs[j = (id+i)%nelem(devs)] == nil){
  321. sdev->idno = devletters[j];
  322. devs[j] = sdev;
  323. snprint(sdev->name, sizeof sdev->name, "sd%c", devletters[j]);
  324. break;
  325. }
  326. }
  327. qunlock(&devslock);
  328. if(i == nelem(devs)){
  329. print("sdadddevs: out of device letters\n");
  330. goto giveup;
  331. }
  332. }
  333. }
  334. // void
  335. // sdrmdevs(SDev *sdev)
  336. // {
  337. // char buf[2];
  338. //
  339. // snprint(buf, sizeof buf, "%c", sdev->idno);
  340. // unconfigure(buf);
  341. // }
  342. void
  343. sdaddallconfs(void (*addconf)(SDunit *))
  344. {
  345. int i, u;
  346. SDev *sdev;
  347. for(i = 0; i < nelem(devs); i++) /* each controller */
  348. for(sdev = devs[i]; sdev; sdev = sdev->next)
  349. for(u = 0; u < sdev->nunit; u++) /* each drive */
  350. (*addconf)(sdev->unit[u]);
  351. }
  352. static int
  353. sd2gen(Chan* c, int i, Dir* dp)
  354. {
  355. Qid q;
  356. uvlong l;
  357. SDpart *pp;
  358. SDperm *perm;
  359. SDunit *unit;
  360. SDev *sdev;
  361. int rv;
  362. sdev = sdgetdev(DEV(c->qid));
  363. assert(sdev);
  364. unit = sdev->unit[UNIT(c->qid)];
  365. rv = -1;
  366. switch(i){
  367. case Qctl:
  368. mkqid(&q, QID(DEV(c->qid), UNIT(c->qid), PART(c->qid), Qctl),
  369. unit->vers, QTFILE);
  370. perm = &unit->ctlperm;
  371. if(emptystr(perm->user)){
  372. kstrdup(&perm->user, eve);
  373. perm->perm = 0644; /* nothing secret in ctl */
  374. }
  375. devdir(c, q, "ctl", 0, perm->user, perm->perm, dp);
  376. rv = 1;
  377. break;
  378. case Qraw:
  379. mkqid(&q, QID(DEV(c->qid), UNIT(c->qid), PART(c->qid), Qraw),
  380. unit->vers, QTFILE);
  381. perm = &unit->rawperm;
  382. if(emptystr(perm->user)){
  383. kstrdup(&perm->user, eve);
  384. perm->perm = DMEXCL|0600;
  385. }
  386. devdir(c, q, "raw", 0, perm->user, perm->perm, dp);
  387. rv = 1;
  388. break;
  389. case Qpart:
  390. pp = &unit->part[PART(c->qid)];
  391. l = (pp->end - pp->start) * unit->secsize;
  392. mkqid(&q, QID(DEV(c->qid), UNIT(c->qid), PART(c->qid), Qpart),
  393. unit->vers+pp->vers, QTFILE);
  394. if(emptystr(pp->user))
  395. kstrdup(&pp->user, eve);
  396. devdir(c, q, pp->name, l, pp->user, pp->perm, dp);
  397. rv = 1;
  398. break;
  399. }
  400. decref(&sdev->r);
  401. return rv;
  402. }
  403. static int
  404. sd1gen(Chan* c, int i, Dir* dp)
  405. {
  406. Qid q;
  407. switch(i){
  408. case Qtopctl:
  409. mkqid(&q, QID(0, 0, 0, Qtopctl), 0, QTFILE);
  410. devdir(c, q, "sdctl", 0, eve, 0644, dp); /* no secrets */
  411. return 1;
  412. }
  413. return -1;
  414. }
  415. static int
  416. sdgen(Chan* c, char*, Dirtab*, int, int s, Dir* dp)
  417. {
  418. Qid q;
  419. uvlong l;
  420. int i, r;
  421. SDpart *pp;
  422. SDunit *unit;
  423. SDev *sdev;
  424. switch(TYPE(c->qid)){
  425. case Qtopdir:
  426. if(s == DEVDOTDOT){
  427. mkqid(&q, QID(0, 0, 0, Qtopdir), 0, QTDIR);
  428. snprint(up->genbuf, sizeof up->genbuf, "#%C",
  429. sddevtab.dc);
  430. devdir(c, q, up->genbuf, 0, eve, 0555, dp);
  431. return 1;
  432. }
  433. if(s+Qtopbase < Qunitdir)
  434. return sd1gen(c, s+Qtopbase, dp);
  435. s -= (Qunitdir-Qtopbase);
  436. qlock(&devslock);
  437. for(i=0; i<nelem(devs); i++){
  438. if(devs[i]){
  439. if(s < devs[i]->nunit)
  440. break;
  441. s -= devs[i]->nunit;
  442. }
  443. }
  444. if(i == nelem(devs)){
  445. /* Run off the end of the list */
  446. qunlock(&devslock);
  447. return -1;
  448. }
  449. if((sdev = devs[i]) == nil){
  450. qunlock(&devslock);
  451. return 0;
  452. }
  453. incref(&sdev->r);
  454. qunlock(&devslock);
  455. if((unit = sdev->unit[s]) == nil)
  456. if((unit = sdgetunit(sdev, s)) == nil){
  457. decref(&sdev->r);
  458. return 0;
  459. }
  460. mkqid(&q, QID(sdev->idno, s, 0, Qunitdir), 0, QTDIR);
  461. if(emptystr(unit->user))
  462. kstrdup(&unit->user, eve);
  463. devdir(c, q, unit->name, 0, unit->user, unit->perm, dp);
  464. decref(&sdev->r);
  465. return 1;
  466. case Qunitdir:
  467. if(s == DEVDOTDOT){
  468. mkqid(&q, QID(0, 0, 0, Qtopdir), 0, QTDIR);
  469. snprint(up->genbuf, sizeof up->genbuf, "#%C",
  470. sddevtab.dc);
  471. devdir(c, q, up->genbuf, 0, eve, 0555, dp);
  472. return 1;
  473. }
  474. if((sdev = sdgetdev(DEV(c->qid))) == nil){
  475. devdir(c, c->qid, "unavailable", 0, eve, 0, dp);
  476. return 1;
  477. }
  478. unit = sdev->unit[UNIT(c->qid)];
  479. qlock(&unit->ctl);
  480. /*
  481. * Check for media change.
  482. * If one has already been detected, sectors will be zero.
  483. * If there is one waiting to be detected, online
  484. * will return > 1.
  485. * Online is a bit of a large hammer but does the job.
  486. */
  487. if(unit->sectors == 0
  488. || (unit->dev->ifc->online && unit->dev->ifc->online(unit) > 1))
  489. sdinitpart(unit);
  490. i = s+Qunitbase;
  491. if(i < Qpart){
  492. r = sd2gen(c, i, dp);
  493. qunlock(&unit->ctl);
  494. decref(&sdev->r);
  495. return r;
  496. }
  497. i -= Qpart;
  498. if(unit->part == nil || i >= unit->npart){
  499. qunlock(&unit->ctl);
  500. decref(&sdev->r);
  501. break;
  502. }
  503. pp = &unit->part[i];
  504. if(!pp->valid){
  505. qunlock(&unit->ctl);
  506. decref(&sdev->r);
  507. return 0;
  508. }
  509. l = (pp->end - pp->start) * unit->secsize;
  510. mkqid(&q, QID(DEV(c->qid), UNIT(c->qid), i, Qpart),
  511. unit->vers+pp->vers, QTFILE);
  512. if(emptystr(pp->user))
  513. kstrdup(&pp->user, eve);
  514. devdir(c, q, pp->name, l, pp->user, pp->perm, dp);
  515. qunlock(&unit->ctl);
  516. decref(&sdev->r);
  517. return 1;
  518. case Qraw:
  519. case Qctl:
  520. case Qpart:
  521. if((sdev = sdgetdev(DEV(c->qid))) == nil){
  522. devdir(c, q, "unavailable", 0, eve, 0, dp);
  523. return 1;
  524. }
  525. unit = sdev->unit[UNIT(c->qid)];
  526. qlock(&unit->ctl);
  527. r = sd2gen(c, TYPE(c->qid), dp);
  528. qunlock(&unit->ctl);
  529. decref(&sdev->r);
  530. return r;
  531. case Qtopctl:
  532. return sd1gen(c, TYPE(c->qid), dp);
  533. default:
  534. break;
  535. }
  536. return -1;
  537. }
  538. static Chan*
  539. sdattach(char* spec)
  540. {
  541. Chan *c;
  542. char *p;
  543. SDev *sdev;
  544. int idno, subno;
  545. if(*spec == '\0'){
  546. c = devattach(sddevtab.dc, spec);
  547. mkqid(&c->qid, QID(0, 0, 0, Qtopdir), 0, QTDIR);
  548. return c;
  549. }
  550. if(spec[0] != 's' || spec[1] != 'd')
  551. error(Ebadspec);
  552. idno = spec[2];
  553. subno = strtol(&spec[3], &p, 0);
  554. if(p == &spec[3])
  555. error(Ebadspec);
  556. if((sdev=sdgetdev(idno)) == nil)
  557. error(Enonexist);
  558. if(sdgetunit(sdev, subno) == nil){
  559. decref(&sdev->r);
  560. error(Enonexist);
  561. }
  562. c = devattach(sddevtab.dc, spec);
  563. mkqid(&c->qid, QID(sdev->idno, subno, 0, Qunitdir), 0, QTDIR);
  564. c->dev = (sdev->idno << UnitLOG) + subno;
  565. decref(&sdev->r);
  566. return c;
  567. }
  568. static Walkqid*
  569. sdwalk(Chan* c, Chan* nc, char** name, int nname)
  570. {
  571. return devwalk(c, nc, name, nname, nil, 0, sdgen);
  572. }
  573. static int
  574. sdstat(Chan* c, uchar* db, int n)
  575. {
  576. return devstat(c, db, n, nil, 0, sdgen);
  577. }
  578. static Chan*
  579. sdopen(Chan* c, int omode)
  580. {
  581. SDpart *pp;
  582. SDunit *unit;
  583. SDev *sdev;
  584. uchar tp;
  585. c = devopen(c, omode, 0, 0, sdgen);
  586. if((tp = TYPE(c->qid)) != Qctl && tp != Qraw && tp != Qpart)
  587. return c;
  588. sdev = sdgetdev(DEV(c->qid));
  589. if(sdev == nil)
  590. error(Enonexist);
  591. unit = sdev->unit[UNIT(c->qid)];
  592. switch(TYPE(c->qid)){
  593. case Qctl:
  594. c->qid.vers = unit->vers;
  595. break;
  596. case Qraw:
  597. c->qid.vers = unit->vers;
  598. if(tas(&unit->rawinuse) != 0){
  599. c->flag &= ~COPEN;
  600. decref(&sdev->r);
  601. error(Einuse);
  602. }
  603. unit->state = Rawcmd;
  604. break;
  605. case Qpart:
  606. qlock(&unit->ctl);
  607. if(waserror()){
  608. qunlock(&unit->ctl);
  609. c->flag &= ~COPEN;
  610. decref(&sdev->r);
  611. nexterror();
  612. }
  613. pp = &unit->part[PART(c->qid)];
  614. c->qid.vers = unit->vers+pp->vers;
  615. qunlock(&unit->ctl);
  616. poperror();
  617. break;
  618. }
  619. decref(&sdev->r);
  620. return c;
  621. }
  622. static void
  623. sdclose(Chan* c)
  624. {
  625. SDunit *unit;
  626. SDev *sdev;
  627. if(c->qid.type & QTDIR)
  628. return;
  629. if(!(c->flag & COPEN))
  630. return;
  631. switch(TYPE(c->qid)){
  632. default:
  633. break;
  634. case Qraw:
  635. sdev = sdgetdev(DEV(c->qid));
  636. if(sdev){
  637. unit = sdev->unit[UNIT(c->qid)];
  638. unit->rawinuse = 0;
  639. decref(&sdev->r);
  640. }
  641. break;
  642. }
  643. }
  644. static long
  645. sdbio(Chan* c, int write, char* a, long len, uvlong off)
  646. {
  647. int nchange;
  648. long l;
  649. uchar *b;
  650. SDpart *pp;
  651. SDunit *unit;
  652. SDev *sdev;
  653. ulong max, nb, offset;
  654. uvlong bno;
  655. sdev = sdgetdev(DEV(c->qid));
  656. if(sdev == nil){
  657. decref(&sdev->r);
  658. error(Enonexist);
  659. }
  660. unit = sdev->unit[UNIT(c->qid)];
  661. if(unit == nil)
  662. error(Enonexist);
  663. nchange = 0;
  664. qlock(&unit->ctl);
  665. while(waserror()){
  666. /* notification of media change; go around again */
  667. if(strcmp(up->errstr, Eio) == 0 && unit->sectors == 0 && nchange++ == 0){
  668. sdinitpart(unit);
  669. continue;
  670. }
  671. /* other errors; give up */
  672. qunlock(&unit->ctl);
  673. decref(&sdev->r);
  674. nexterror();
  675. }
  676. pp = &unit->part[PART(c->qid)];
  677. if(unit->vers+pp->vers != c->qid.vers)
  678. error(Echange);
  679. /*
  680. * Check the request is within bounds.
  681. * Removeable drives are locked throughout the I/O
  682. * in case the media changes unexpectedly.
  683. * Non-removeable drives are not locked during the I/O
  684. * to allow the hardware to optimise if it can; this is
  685. * a little fast and loose.
  686. * It's assumed that non-removeable media parameters
  687. * (sectors, secsize) can't change once the drive has
  688. * been brought online.
  689. */
  690. bno = (off/unit->secsize) + pp->start;
  691. nb = ((off+len+unit->secsize-1)/unit->secsize) + pp->start - bno;
  692. max = SDmaxio/unit->secsize;
  693. if(nb > max)
  694. nb = max;
  695. if(bno+nb > pp->end)
  696. nb = pp->end - bno;
  697. if(bno >= pp->end || nb == 0){
  698. if(write)
  699. error(Eio);
  700. qunlock(&unit->ctl);
  701. decref(&sdev->r);
  702. poperror();
  703. return 0;
  704. }
  705. if(!(unit->inquiry[1] & SDinq1removable)){
  706. qunlock(&unit->ctl);
  707. poperror();
  708. }
  709. b = sdmalloc(nb*unit->secsize);
  710. if(b == nil)
  711. error(Enomem);
  712. if(waserror()){
  713. sdfree(b);
  714. if(!(unit->inquiry[1] & SDinq1removable))
  715. decref(&sdev->r); /* gadverdamme! */
  716. nexterror();
  717. }
  718. offset = off%unit->secsize;
  719. if(offset+len > nb*unit->secsize)
  720. len = nb*unit->secsize - offset;
  721. if(write){
  722. if(offset || (len%unit->secsize)){
  723. l = unit->dev->ifc->bio(unit, 0, 0, b, nb, bno);
  724. if(l < 0)
  725. error(Eio);
  726. if(l < (nb*unit->secsize)){
  727. nb = l/unit->secsize;
  728. l = nb*unit->secsize - offset;
  729. if(len > l)
  730. len = l;
  731. }
  732. }
  733. memmove(b+offset, a, len);
  734. l = unit->dev->ifc->bio(unit, 0, 1, b, nb, bno);
  735. if(l < 0)
  736. error(Eio);
  737. if(l < offset)
  738. len = 0;
  739. else if(len > l - offset)
  740. len = l - offset;
  741. }
  742. else{
  743. l = unit->dev->ifc->bio(unit, 0, 0, b, nb, bno);
  744. if(l < 0)
  745. error(Eio);
  746. if(l < offset)
  747. len = 0;
  748. else if(len > l - offset)
  749. len = l - offset;
  750. memmove(a, b+offset, len);
  751. }
  752. sdfree(b);
  753. poperror();
  754. if(unit->inquiry[1] & SDinq1removable){
  755. qunlock(&unit->ctl);
  756. poperror();
  757. }
  758. decref(&sdev->r);
  759. return len;
  760. }
  761. static long
  762. sdrio(SDreq* r, void* a, long n)
  763. {
  764. void *data;
  765. if(n >= SDmaxio || n < 0)
  766. error(Etoobig);
  767. data = nil;
  768. if(n){
  769. if((data = sdmalloc(n)) == nil)
  770. error(Enomem);
  771. if(r->write)
  772. memmove(data, a, n);
  773. }
  774. r->data = data;
  775. r->dlen = n;
  776. if(waserror()){
  777. sdfree(data);
  778. r->data = nil;
  779. nexterror();
  780. }
  781. if(r->unit->dev->ifc->rio(r) != SDok)
  782. error(Eio);
  783. if(!r->write && r->rlen > 0)
  784. memmove(a, data, r->rlen);
  785. sdfree(data);
  786. r->data = nil;
  787. poperror();
  788. return r->rlen;
  789. }
  790. /*
  791. * SCSI simulation for non-SCSI devices
  792. */
  793. int
  794. sdsetsense(SDreq *r, int status, int key, int asc, int ascq)
  795. {
  796. int len;
  797. SDunit *unit;
  798. unit = r->unit;
  799. unit->sense[2] = key;
  800. unit->sense[12] = asc;
  801. unit->sense[13] = ascq;
  802. r->status = status;
  803. if(status == SDcheck && !(r->flags & SDnosense)){
  804. /* request sense case from sdfakescsi */
  805. len = sizeof unit->sense;
  806. if(len > sizeof r->sense-1)
  807. len = sizeof r->sense-1;
  808. memmove(r->sense, unit->sense, len);
  809. unit->sense[2] = 0;
  810. unit->sense[12] = 0;
  811. unit->sense[13] = 0;
  812. r->flags |= SDvalidsense;
  813. return SDok;
  814. }
  815. return status;
  816. }
  817. int
  818. sdmodesense(SDreq *r, uchar *cmd, void *info, int ilen)
  819. {
  820. int len;
  821. uchar *data;
  822. /*
  823. * Fake a vendor-specific request with page code 0,
  824. * return the drive info.
  825. */
  826. if((cmd[2] & 0x3F) != 0 && (cmd[2] & 0x3F) != 0x3F)
  827. return sdsetsense(r, SDcheck, 0x05, 0x24, 0);
  828. len = (cmd[7]<<8)|cmd[8];
  829. if(len == 0)
  830. return SDok;
  831. if(len < 8+ilen)
  832. return sdsetsense(r, SDcheck, 0x05, 0x1A, 0);
  833. if(r->data == nil || r->dlen < len)
  834. return sdsetsense(r, SDcheck, 0x05, 0x20, 1);
  835. data = r->data;
  836. memset(data, 0, 8);
  837. data[0] = ilen>>8;
  838. data[1] = ilen;
  839. if(ilen)
  840. memmove(data+8, info, ilen);
  841. r->rlen = 8+ilen;
  842. return sdsetsense(r, SDok, 0, 0, 0);
  843. }
  844. int
  845. sdfakescsi(SDreq *r, void *info, int ilen)
  846. {
  847. uchar *cmd, *p;
  848. uvlong len;
  849. SDunit *unit;
  850. cmd = r->cmd;
  851. r->rlen = 0;
  852. unit = r->unit;
  853. /*
  854. * Rewrite read(6)/write(6) into read(10)/write(10).
  855. */
  856. switch(cmd[0]){
  857. case 0x08: /* read */
  858. case 0x0A: /* write */
  859. cmd[9] = 0;
  860. cmd[8] = cmd[4];
  861. cmd[7] = 0;
  862. cmd[6] = 0;
  863. cmd[5] = cmd[3];
  864. cmd[4] = cmd[2];
  865. cmd[3] = cmd[1] & 0x0F;
  866. cmd[2] = 0;
  867. cmd[1] &= 0xE0;
  868. cmd[0] |= 0x20;
  869. break;
  870. }
  871. /*
  872. * Map SCSI commands into ATA commands for discs.
  873. * Fail any command with a LUN except INQUIRY which
  874. * will return 'logical unit not supported'.
  875. */
  876. if((cmd[1]>>5) && cmd[0] != 0x12)
  877. return sdsetsense(r, SDcheck, 0x05, 0x25, 0);
  878. switch(cmd[0]){
  879. default:
  880. return sdsetsense(r, SDcheck, 0x05, 0x20, 0);
  881. case 0x00: /* test unit ready */
  882. return sdsetsense(r, SDok, 0, 0, 0);
  883. case 0x03: /* request sense */
  884. if(cmd[4] < sizeof unit->sense)
  885. len = cmd[4];
  886. else
  887. len = sizeof unit->sense;
  888. if(r->data && r->dlen >= len){
  889. memmove(r->data, unit->sense, len);
  890. r->rlen = len;
  891. }
  892. return sdsetsense(r, SDok, 0, 0, 0);
  893. case 0x12: /* inquiry */
  894. if(cmd[4] < sizeof unit->inquiry)
  895. len = cmd[4];
  896. else
  897. len = sizeof unit->inquiry;
  898. if(r->data && r->dlen >= len){
  899. memmove(r->data, unit->inquiry, len);
  900. r->rlen = len;
  901. }
  902. return sdsetsense(r, SDok, 0, 0, 0);
  903. case 0x1B: /* start/stop unit */
  904. /*
  905. * nop for now, can use power management later.
  906. */
  907. return sdsetsense(r, SDok, 0, 0, 0);
  908. case 0x25: /* read capacity */
  909. if((cmd[1] & 0x01) || cmd[2] || cmd[3])
  910. return sdsetsense(r, SDcheck, 0x05, 0x24, 0);
  911. if(r->data == nil || r->dlen < 8)
  912. return sdsetsense(r, SDcheck, 0x05, 0x20, 1);
  913. /*
  914. * Read capacity returns the LBA of the last sector.
  915. */
  916. len = unit->sectors - 1;
  917. p = r->data;
  918. *p++ = len>>24;
  919. *p++ = len>>16;
  920. *p++ = len>>8;
  921. *p++ = len;
  922. len = 512;
  923. *p++ = len>>24;
  924. *p++ = len>>16;
  925. *p++ = len>>8;
  926. *p++ = len;
  927. r->rlen = p - (uchar*)r->data;
  928. return sdsetsense(r, SDok, 0, 0, 0);
  929. case 0x9E: /* long read capacity */
  930. if((cmd[1] & 0x01) || cmd[2] || cmd[3])
  931. return sdsetsense(r, SDcheck, 0x05, 0x24, 0);
  932. if(r->data == nil || r->dlen < 8)
  933. return sdsetsense(r, SDcheck, 0x05, 0x20, 1);
  934. /*
  935. * Read capcity returns the LBA of the last sector.
  936. */
  937. len = unit->sectors - 1;
  938. p = r->data;
  939. *p++ = len>>56;
  940. *p++ = len>>48;
  941. *p++ = len>>40;
  942. *p++ = len>>32;
  943. *p++ = len>>24;
  944. *p++ = len>>16;
  945. *p++ = len>>8;
  946. *p++ = len;
  947. len = 512;
  948. *p++ = len>>24;
  949. *p++ = len>>16;
  950. *p++ = len>>8;
  951. *p++ = len;
  952. r->rlen = p - (uchar*)r->data;
  953. return sdsetsense(r, SDok, 0, 0, 0);
  954. case 0x5A: /* mode sense */
  955. return sdmodesense(r, cmd, info, ilen);
  956. case 0x28: /* read */
  957. case 0x2A: /* write */
  958. case 0x88: /* read16 */
  959. case 0x8a: /* write16 */
  960. return SDnostatus;
  961. }
  962. }
  963. static long
  964. sdread(Chan *c, void *a, long n, vlong off)
  965. {
  966. char *p, *e, *buf;
  967. SDpart *pp;
  968. SDunit *unit;
  969. SDev *sdev;
  970. ulong offset;
  971. int i, l, m, status;
  972. offset = off;
  973. switch(TYPE(c->qid)){
  974. default:
  975. error(Eperm);
  976. case Qtopctl:
  977. m = 64*1024; /* room for register dumps */
  978. p = buf = malloc(m);
  979. if(p == nil)
  980. error(Enomem);
  981. e = p + m;
  982. qlock(&devslock);
  983. for(i = 0; i < nelem(devs); i++){
  984. sdev = devs[i];
  985. if(sdev && sdev->ifc->rtopctl)
  986. p = sdev->ifc->rtopctl(sdev, p, e);
  987. }
  988. qunlock(&devslock);
  989. n = readstr(off, a, n, buf);
  990. free(buf);
  991. return n;
  992. case Qtopdir:
  993. case Qunitdir:
  994. return devdirread(c, a, n, 0, 0, sdgen);
  995. case Qctl:
  996. sdev = sdgetdev(DEV(c->qid));
  997. if(sdev == nil)
  998. error(Enonexist);
  999. unit = sdev->unit[UNIT(c->qid)];
  1000. m = 16*1024; /* room for register dumps */
  1001. p = malloc(m);
  1002. if(p == nil)
  1003. error(Enomem);
  1004. l = snprint(p, m, "inquiry %.48s\n",
  1005. (char*)unit->inquiry+8);
  1006. qlock(&unit->ctl);
  1007. /*
  1008. * If there's a device specific routine it must
  1009. * provide all information pertaining to night geometry
  1010. * and the garscadden trains.
  1011. */
  1012. if(unit->dev->ifc->rctl)
  1013. l += unit->dev->ifc->rctl(unit, p+l, m-l);
  1014. if(unit->sectors == 0)
  1015. sdinitpart(unit);
  1016. if(unit->sectors){
  1017. if(unit->dev->ifc->rctl == nil)
  1018. l += snprint(p+l, m-l,
  1019. "geometry %llud %lud\n",
  1020. unit->sectors, unit->secsize);
  1021. pp = unit->part;
  1022. for(i = 0; i < unit->npart; i++){
  1023. if(pp->valid)
  1024. l += snprint(p+l, m-l,
  1025. "part %s %llud %llud\n",
  1026. pp->name, pp->start, pp->end);
  1027. pp++;
  1028. }
  1029. }
  1030. qunlock(&unit->ctl);
  1031. decref(&sdev->r);
  1032. l = readstr(offset, a, n, p);
  1033. free(p);
  1034. return l;
  1035. case Qraw:
  1036. sdev = sdgetdev(DEV(c->qid));
  1037. if(sdev == nil)
  1038. error(Enonexist);
  1039. unit = sdev->unit[UNIT(c->qid)];
  1040. qlock(&unit->raw);
  1041. if(waserror()){
  1042. qunlock(&unit->raw);
  1043. decref(&sdev->r);
  1044. nexterror();
  1045. }
  1046. if(unit->state == Rawdata){
  1047. unit->state = Rawstatus;
  1048. i = sdrio(unit->req, a, n);
  1049. }
  1050. else if(unit->state == Rawstatus){
  1051. status = unit->req->status;
  1052. unit->state = Rawcmd;
  1053. free(unit->req);
  1054. unit->req = nil;
  1055. i = readnum(0, a, n, status, NUMSIZE);
  1056. } else
  1057. i = 0;
  1058. qunlock(&unit->raw);
  1059. decref(&sdev->r);
  1060. poperror();
  1061. return i;
  1062. case Qpart:
  1063. return sdbio(c, 0, a, n, off);
  1064. }
  1065. }
  1066. static void legacytopctl(Cmdbuf*);
  1067. static long
  1068. sdwrite(Chan* c, void* a, long n, vlong off)
  1069. {
  1070. char *f0;
  1071. int i;
  1072. uvlong end, start;
  1073. Cmdbuf *cb;
  1074. SDifc *ifc;
  1075. SDreq *req;
  1076. SDunit *unit;
  1077. SDev *sdev;
  1078. switch(TYPE(c->qid)){
  1079. default:
  1080. error(Eperm);
  1081. case Qtopctl:
  1082. cb = parsecmd(a, n);
  1083. if(waserror()){
  1084. free(cb);
  1085. nexterror();
  1086. }
  1087. if(cb->nf == 0)
  1088. error("empty control message");
  1089. f0 = cb->f[0];
  1090. cb->f++;
  1091. cb->nf--;
  1092. if(strcmp(f0, "config") == 0){
  1093. /* wormhole into ugly legacy interface */
  1094. legacytopctl(cb);
  1095. poperror();
  1096. free(cb);
  1097. break;
  1098. }
  1099. /*
  1100. * "ata arg..." invokes sdifc[i]->wtopctl(nil, cb),
  1101. * where sdifc[i]->name=="ata" and cb contains the args.
  1102. */
  1103. ifc = nil;
  1104. sdev = nil;
  1105. for(i=0; sdifc[i]; i++){
  1106. if(strcmp(sdifc[i]->name, f0) == 0){
  1107. ifc = sdifc[i];
  1108. sdev = nil;
  1109. goto subtopctl;
  1110. }
  1111. }
  1112. /*
  1113. * "sd1 arg..." invokes sdifc[i]->wtopctl(sdev, cb),
  1114. * where sdifc[i] and sdev match controller letter "1",
  1115. * and cb contains the args.
  1116. */
  1117. if(f0[0]=='s' && f0[1]=='d' && f0[2] && f0[3] == 0){
  1118. if((sdev = sdgetdev(f0[2])) != nil){
  1119. ifc = sdev->ifc;
  1120. goto subtopctl;
  1121. }
  1122. }
  1123. error("unknown interface");
  1124. subtopctl:
  1125. if(waserror()){
  1126. if(sdev)
  1127. decref(&sdev->r);
  1128. nexterror();
  1129. }
  1130. if(ifc->wtopctl)
  1131. ifc->wtopctl(sdev, cb);
  1132. else
  1133. error(Ebadctl);
  1134. poperror();
  1135. poperror();
  1136. if (sdev)
  1137. decref(&sdev->r);
  1138. free(cb);
  1139. break;
  1140. case Qctl:
  1141. cb = parsecmd(a, n);
  1142. sdev = sdgetdev(DEV(c->qid));
  1143. if(sdev == nil)
  1144. error(Enonexist);
  1145. unit = sdev->unit[UNIT(c->qid)];
  1146. qlock(&unit->ctl);
  1147. if(waserror()){
  1148. qunlock(&unit->ctl);
  1149. decref(&sdev->r);
  1150. free(cb);
  1151. nexterror();
  1152. }
  1153. if(unit->vers != c->qid.vers)
  1154. error(Echange);
  1155. if(cb->nf < 1)
  1156. error(Ebadctl);
  1157. if(strcmp(cb->f[0], "part") == 0){
  1158. if(cb->nf != 4)
  1159. error(Ebadctl);
  1160. if(unit->sectors == 0 && !sdinitpart(unit))
  1161. error(Eio);
  1162. start = strtoull(cb->f[2], 0, 0);
  1163. end = strtoull(cb->f[3], 0, 0);
  1164. sdaddpart(unit, cb->f[1], start, end);
  1165. }
  1166. else if(strcmp(cb->f[0], "delpart") == 0){
  1167. if(cb->nf != 2 || unit->part == nil)
  1168. error(Ebadctl);
  1169. sddelpart(unit, cb->f[1]);
  1170. }
  1171. else if(unit->dev->ifc->wctl)
  1172. unit->dev->ifc->wctl(unit, cb);
  1173. else
  1174. error(Ebadctl);
  1175. qunlock(&unit->ctl);
  1176. decref(&sdev->r);
  1177. poperror();
  1178. free(cb);
  1179. break;
  1180. case Qraw:
  1181. sdev = sdgetdev(DEV(c->qid));
  1182. if(sdev == nil)
  1183. error(Enonexist);
  1184. unit = sdev->unit[UNIT(c->qid)];
  1185. qlock(&unit->raw);
  1186. if(waserror()){
  1187. qunlock(&unit->raw);
  1188. decref(&sdev->r);
  1189. nexterror();
  1190. }
  1191. switch(unit->state){
  1192. case Rawcmd:
  1193. if(n < 6 || n > sizeof(req->cmd))
  1194. error(Ebadarg);
  1195. if((req = malloc(sizeof(SDreq))) == nil)
  1196. error(Enomem);
  1197. req->unit = unit;
  1198. memmove(req->cmd, a, n);
  1199. req->clen = n;
  1200. req->flags = SDnosense;
  1201. req->status = ~0;
  1202. unit->req = req;
  1203. unit->state = Rawdata;
  1204. break;
  1205. case Rawstatus:
  1206. unit->state = Rawcmd;
  1207. free(unit->req);
  1208. unit->req = nil;
  1209. error(Ebadusefd);
  1210. case Rawdata:
  1211. unit->state = Rawstatus;
  1212. unit->req->write = 1;
  1213. n = sdrio(unit->req, a, n);
  1214. }
  1215. qunlock(&unit->raw);
  1216. decref(&sdev->r);
  1217. poperror();
  1218. break;
  1219. case Qpart:
  1220. return sdbio(c, 1, a, n, off);
  1221. }
  1222. return n;
  1223. }
  1224. static int
  1225. sdwstat(Chan* c, uchar* dp, int n)
  1226. {
  1227. Dir *d;
  1228. SDpart *pp;
  1229. SDperm *perm;
  1230. SDunit *unit;
  1231. SDev *sdev;
  1232. if(c->qid.type & QTDIR)
  1233. error(Eperm);
  1234. sdev = sdgetdev(DEV(c->qid));
  1235. if(sdev == nil)
  1236. error(Enonexist);
  1237. unit = sdev->unit[UNIT(c->qid)];
  1238. qlock(&unit->ctl);
  1239. d = nil;
  1240. if(waserror()){
  1241. free(d);
  1242. qunlock(&unit->ctl);
  1243. decref(&sdev->r);
  1244. nexterror();
  1245. }
  1246. switch(TYPE(c->qid)){
  1247. default:
  1248. error(Eperm);
  1249. case Qctl:
  1250. perm = &unit->ctlperm;
  1251. break;
  1252. case Qraw:
  1253. perm = &unit->rawperm;
  1254. break;
  1255. case Qpart:
  1256. pp = &unit->part[PART(c->qid)];
  1257. if(unit->vers+pp->vers != c->qid.vers)
  1258. error(Enonexist);
  1259. perm = &pp->SDperm;
  1260. break;
  1261. }
  1262. if(strcmp(up->user, perm->user) && !iseve())
  1263. error(Eperm);
  1264. d = smalloc(sizeof(Dir)+n);
  1265. n = convM2D(dp, n, &d[0], (char*)&d[1]);
  1266. if(n == 0)
  1267. error(Eshortstat);
  1268. if(!emptystr(d[0].uid))
  1269. kstrdup(&perm->user, d[0].uid);
  1270. if(d[0].mode != ~0UL)
  1271. perm->perm = (perm->perm & ~0777) | (d[0].mode & 0777);
  1272. free(d);
  1273. qunlock(&unit->ctl);
  1274. decref(&sdev->r);
  1275. poperror();
  1276. return n;
  1277. }
  1278. static int
  1279. configure(char* spec, DevConf* cf)
  1280. {
  1281. SDev *s, *sdev;
  1282. char *p;
  1283. int i;
  1284. if(sdindex(*spec) < 0)
  1285. error("bad sd spec");
  1286. if((p = strchr(cf->type, '/')) != nil)
  1287. *p++ = '\0';
  1288. for(i = 0; sdifc[i] != nil; i++)
  1289. if(strcmp(sdifc[i]->name, cf->type) == 0)
  1290. break;
  1291. if(sdifc[i] == nil)
  1292. error("sd type not found");
  1293. if(p)
  1294. *(p-1) = '/';
  1295. if(sdifc[i]->probe == nil)
  1296. error("sd type cannot probe");
  1297. sdev = sdifc[i]->probe(cf);
  1298. for(s=sdev; s; s=s->next)
  1299. s->idno = *spec;
  1300. sdadddevs(sdev);
  1301. return 0;
  1302. }
  1303. static int
  1304. unconfigure(char* spec)
  1305. {
  1306. int i;
  1307. SDev *sdev;
  1308. SDunit *unit;
  1309. if((i = sdindex(*spec)) < 0)
  1310. error(Enonexist);
  1311. qlock(&devslock);
  1312. if((sdev = devs[i]) == nil){
  1313. qunlock(&devslock);
  1314. error(Enonexist);
  1315. }
  1316. if(sdev->r.ref){
  1317. qunlock(&devslock);
  1318. error(Einuse);
  1319. }
  1320. devs[i] = nil;
  1321. qunlock(&devslock);
  1322. /* make sure no interrupts arrive anymore before removing resources */
  1323. if(sdev->enabled && sdev->ifc->disable)
  1324. sdev->ifc->disable(sdev);
  1325. for(i = 0; i != sdev->nunit; i++){
  1326. if(unit = sdev->unit[i]){
  1327. free(unit->name);
  1328. free(unit->user);
  1329. free(unit);
  1330. }
  1331. }
  1332. if(sdev->ifc->clear)
  1333. sdev->ifc->clear(sdev);
  1334. free(sdev);
  1335. return 0;
  1336. }
  1337. static int
  1338. sdconfig(int on, char* spec, DevConf* cf)
  1339. {
  1340. if(on)
  1341. return configure(spec, cf);
  1342. return unconfigure(spec);
  1343. }
  1344. Dev sddevtab = {
  1345. 'S',
  1346. "sd",
  1347. sdreset,
  1348. devinit,
  1349. devshutdown,
  1350. sdattach,
  1351. sdwalk,
  1352. sdstat,
  1353. sdopen,
  1354. devcreate,
  1355. sdclose,
  1356. sdread,
  1357. devbread,
  1358. sdwrite,
  1359. devbwrite,
  1360. devremove,
  1361. sdwstat,
  1362. devpower,
  1363. sdconfig, /* probe; only called for pcmcia-like devices */
  1364. };
  1365. /*
  1366. * This is wrong for so many reasons. This code must go.
  1367. */
  1368. typedef struct Confdata Confdata;
  1369. struct Confdata {
  1370. int on;
  1371. char* spec;
  1372. DevConf cf;
  1373. };
  1374. static void
  1375. parseswitch(Confdata* cd, char* option)
  1376. {
  1377. if(!strcmp("on", option))
  1378. cd->on = 1;
  1379. else if(!strcmp("off", option))
  1380. cd->on = 0;
  1381. else
  1382. error(Ebadarg);
  1383. }
  1384. static void
  1385. parsespec(Confdata* cd, char* option)
  1386. {
  1387. if(strlen(option) > 1)
  1388. error(Ebadarg);
  1389. cd->spec = option;
  1390. }
  1391. static Devport*
  1392. getnewport(DevConf* dc)
  1393. {
  1394. Devport *p;
  1395. p = (Devport *)malloc((dc->nports + 1) * sizeof(Devport));
  1396. if(p == nil)
  1397. error(Enomem);
  1398. if(dc->nports > 0){
  1399. memmove(p, dc->ports, dc->nports * sizeof(Devport));
  1400. free(dc->ports);
  1401. }
  1402. dc->ports = p;
  1403. p = &dc->ports[dc->nports++];
  1404. p->size = -1;
  1405. p->port = (ulong)-1;
  1406. return p;
  1407. }
  1408. static void
  1409. parseport(Confdata* cd, char* option)
  1410. {
  1411. char *e;
  1412. Devport *p;
  1413. if(cd->cf.nports == 0 || cd->cf.ports[cd->cf.nports-1].port != (ulong)-1)
  1414. p = getnewport(&cd->cf);
  1415. else
  1416. p = &cd->cf.ports[cd->cf.nports-1];
  1417. p->port = strtol(option, &e, 0);
  1418. if(e == nil || *e != '\0')
  1419. error(Ebadarg);
  1420. }
  1421. static void
  1422. parsesize(Confdata* cd, char* option)
  1423. {
  1424. char *e;
  1425. Devport *p;
  1426. if(cd->cf.nports == 0 || cd->cf.ports[cd->cf.nports-1].size != -1)
  1427. p = getnewport(&cd->cf);
  1428. else
  1429. p = &cd->cf.ports[cd->cf.nports-1];
  1430. p->size = (int)strtol(option, &e, 0);
  1431. if(e == nil || *e != '\0')
  1432. error(Ebadarg);
  1433. }
  1434. static void
  1435. parseirq(Confdata* cd, char* option)
  1436. {
  1437. char *e;
  1438. cd->cf.intnum = strtoul(option, &e, 0);
  1439. if(e == nil || *e != '\0')
  1440. error(Ebadarg);
  1441. }
  1442. static void
  1443. parsetype(Confdata* cd, char* option)
  1444. {
  1445. cd->cf.type = option;
  1446. }
  1447. static struct {
  1448. char *name;
  1449. void (*parse)(Confdata*, char*);
  1450. } options[] = {
  1451. "switch", parseswitch,
  1452. "spec", parsespec,
  1453. "port", parseport,
  1454. "size", parsesize,
  1455. "irq", parseirq,
  1456. "type", parsetype,
  1457. };
  1458. static void
  1459. legacytopctl(Cmdbuf *cb)
  1460. {
  1461. char *opt;
  1462. int i, j;
  1463. Confdata cd;
  1464. memset(&cd, 0, sizeof cd);
  1465. cd.on = -1;
  1466. for(i=0; i<cb->nf; i+=2){
  1467. if(i+2 > cb->nf)
  1468. error(Ebadarg);
  1469. opt = cb->f[i];
  1470. for(j=0; j<nelem(options); j++)
  1471. if(strcmp(opt, options[j].name) == 0){
  1472. options[j].parse(&cd, cb->f[i+1]);
  1473. break;
  1474. }
  1475. if(j == nelem(options))
  1476. error(Ebadarg);
  1477. }
  1478. /* this has been rewritten to accomodate sdaoe */
  1479. if(cd.on < 0 || cd.spec == 0)
  1480. error(Ebadarg);
  1481. if(cd.on && cd.cf.type == nil)
  1482. error(Ebadarg);
  1483. sdconfig(cd.on, cd.spec, &cd.cf);
  1484. }