devether.c 9.4 KB

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  1. #include "u.h"
  2. #include "../port/lib.h"
  3. #include "mem.h"
  4. #include "dat.h"
  5. #include "fns.h"
  6. #include "io.h"
  7. #include "ureg.h"
  8. #include "../port/error.h"
  9. #include "../port/netif.h"
  10. #include "etherif.h"
  11. static volatile Ether *etherxx[MaxEther];
  12. Chan*
  13. etherattach(char* spec)
  14. {
  15. ulong ctlrno;
  16. char *p;
  17. Chan *chan;
  18. ctlrno = 0;
  19. if(spec && *spec){
  20. ctlrno = strtoul(spec, &p, 0);
  21. if((ctlrno == 0 && p == spec) || *p || (ctlrno >= MaxEther))
  22. error(Ebadarg);
  23. }
  24. if(etherxx[ctlrno] == 0)
  25. error(Enodev);
  26. chan = devattach('l', spec);
  27. chan->dev = ctlrno;
  28. if(etherxx[ctlrno]->attach)
  29. etherxx[ctlrno]->attach(etherxx[ctlrno]);
  30. return chan;
  31. }
  32. static Walkqid*
  33. etherwalk(Chan* chan, Chan* nchan, char** name, int nname)
  34. {
  35. return netifwalk(etherxx[chan->dev], chan, nchan, name, nname);
  36. }
  37. static int
  38. etherstat(Chan* chan, uchar* dp, int n)
  39. {
  40. return netifstat(etherxx[chan->dev], chan, dp, n);
  41. }
  42. static Chan*
  43. etheropen(Chan* chan, int omode)
  44. {
  45. return netifopen(etherxx[chan->dev], chan, omode);
  46. }
  47. static void
  48. ethercreate(Chan*, char*, int, ulong)
  49. {
  50. }
  51. static void
  52. etherclose(Chan* chan)
  53. {
  54. netifclose(etherxx[chan->dev], chan);
  55. }
  56. static long
  57. etherread(Chan* chan, void* buf, long n, vlong off)
  58. {
  59. Ether *ether;
  60. ulong offset = off;
  61. ether = etherxx[chan->dev];
  62. if((chan->qid.type & QTDIR) == 0 && ether->ifstat){
  63. /*
  64. * With some controllers it is necessary to reach
  65. * into the chip to extract statistics.
  66. */
  67. if(NETTYPE(chan->qid.path) == Nifstatqid)
  68. return ether->ifstat(ether, buf, n, offset);
  69. else if(NETTYPE(chan->qid.path) == Nstatqid)
  70. ether->ifstat(ether, buf, 0, offset);
  71. }
  72. return netifread(ether, chan, buf, n, offset);
  73. }
  74. static Block*
  75. etherbread(Chan* chan, long n, ulong offset)
  76. {
  77. return netifbread(etherxx[chan->dev], chan, n, offset);
  78. }
  79. static int
  80. etherwstat(Chan* chan, uchar* dp, int n)
  81. {
  82. return netifwstat(etherxx[chan->dev], chan, dp, n);
  83. }
  84. static void
  85. etherrtrace(Netfile* f, Etherpkt* pkt, int len)
  86. {
  87. int i, n;
  88. Block *bp;
  89. if(qwindow(f->in) <= 0)
  90. return;
  91. if(len > 58)
  92. n = 58;
  93. else
  94. n = len;
  95. bp = iallocb(64);
  96. if(bp == nil)
  97. return;
  98. memmove(bp->wp, pkt->d, n);
  99. i = TK2MS(MACHP(0)->ticks);
  100. bp->wp[58] = len>>8;
  101. bp->wp[59] = len;
  102. bp->wp[60] = i>>24;
  103. bp->wp[61] = i>>16;
  104. bp->wp[62] = i>>8;
  105. bp->wp[63] = i;
  106. bp->wp += 64;
  107. qpass(f->in, bp);
  108. }
  109. Block*
  110. etheriq(Ether* ether, Block* bp, int fromwire)
  111. {
  112. Etherpkt *pkt;
  113. ushort type;
  114. int len, multi, tome, fromme;
  115. Netfile **ep, *f, **fp, *fx;
  116. Block *xbp;
  117. ether->inpackets++;
  118. pkt = (Etherpkt*)bp->rp;
  119. len = BLEN(bp);
  120. type = (pkt->type[0]<<8)|pkt->type[1];
  121. fx = 0;
  122. ep = &ether->f[Ntypes];
  123. multi = pkt->d[0] & 1;
  124. /* check for valid multcast addresses */
  125. if(multi && memcmp(pkt->d, ether->bcast, sizeof(pkt->d)) && ether->prom == 0){
  126. if(!activemulti(ether, pkt->d, sizeof(pkt->d))){
  127. if(fromwire){
  128. freeb(bp);
  129. bp = 0;
  130. }
  131. return bp;
  132. }
  133. }
  134. /* is it for me? */
  135. tome = memcmp(pkt->d, ether->ea, sizeof(pkt->d)) == 0;
  136. fromme = memcmp(pkt->s, ether->ea, sizeof(pkt->s)) == 0;
  137. /*
  138. * Multiplex the packet to all the connections which want it.
  139. * If the packet is not to be used subsequently (fromwire != 0),
  140. * attempt to simply pass it into one of the connections, thereby
  141. * saving a copy of the data (usual case hopefully).
  142. */
  143. for(fp = ether->f; fp < ep; fp++){
  144. if(f = *fp)
  145. if(f->type == type || f->type < 0)
  146. if(tome || multi || f->prom){
  147. /* Don't want to hear bridged packets */
  148. if(f->bridge && !fromwire && !fromme)
  149. continue;
  150. if(!f->headersonly){
  151. if(fromwire && fx == 0)
  152. fx = f;
  153. else if(xbp = iallocb(len)){
  154. memmove(xbp->wp, pkt, len);
  155. xbp->wp += len;
  156. if(qpass(f->in, xbp) < 0)
  157. ether->soverflows++;
  158. }
  159. else
  160. ether->soverflows++;
  161. }
  162. else
  163. etherrtrace(f, pkt, len);
  164. }
  165. }
  166. if(fx){
  167. if(qpass(fx->in, bp) < 0)
  168. ether->soverflows++;
  169. return 0;
  170. }
  171. if(fromwire){
  172. freeb(bp);
  173. return 0;
  174. }
  175. return bp;
  176. }
  177. static int
  178. etheroq(Ether* ether, Block* bp)
  179. {
  180. int len, loopback, s;
  181. Etherpkt *pkt;
  182. ether->outpackets++;
  183. /*
  184. * Check if the packet has to be placed back onto the input queue,
  185. * i.e. if it's a loopback or broadcast packet or the interface is
  186. * in promiscuous mode.
  187. * If it's a loopback packet indicate to etheriq that the data isn't
  188. * needed and return, etheriq will pass-on or free the block.
  189. * To enable bridging to work, only packets that were originated
  190. * by this interface are fed back.
  191. */
  192. pkt = (Etherpkt*)bp->rp;
  193. len = BLEN(bp);
  194. loopback = memcmp(pkt->d, ether->ea, sizeof(pkt->d)) == 0;
  195. if(loopback || memcmp(pkt->d, ether->bcast, sizeof(pkt->d)) == 0 || ether->prom){
  196. s = splhi();
  197. etheriq(ether, bp, 0);
  198. splx(s);
  199. }
  200. if(!loopback){
  201. qbwrite(ether->oq, bp);
  202. ether->transmit(ether);
  203. } else
  204. freeb(bp);
  205. return len;
  206. }
  207. static long
  208. etherwrite(Chan* chan, void* buf, long n, vlong)
  209. {
  210. Ether *ether;
  211. Block *bp;
  212. int nn;
  213. ether = etherxx[chan->dev];
  214. if(NETTYPE(chan->qid.path) != Ndataqid) {
  215. nn = netifwrite(ether, chan, buf, n);
  216. if(nn >= 0)
  217. return nn;
  218. if(n == sizeof("nonblocking")-1 && strncmp((char*)buf, "nonblocking", n) == 0){
  219. qnoblock(ether->oq, 1);
  220. return n;
  221. }
  222. if(ether->ctl!=nil)
  223. return ether->ctl(ether,buf,n);
  224. error(Ebadctl);
  225. }
  226. if(n > ether->maxmtu)
  227. error(Etoobig);
  228. if(n < ether->minmtu)
  229. error(Etoosmall);
  230. bp = allocb(n);
  231. if(waserror()){
  232. freeb(bp);
  233. nexterror();
  234. }
  235. memmove(bp->rp, buf, n);
  236. memmove(bp->rp+Eaddrlen, ether->ea, Eaddrlen);
  237. poperror();
  238. bp->wp += n;
  239. return etheroq(ether, bp);
  240. }
  241. static long
  242. etherbwrite(Chan* chan, Block* bp, ulong)
  243. {
  244. Ether *ether;
  245. long n;
  246. n = BLEN(bp);
  247. if(NETTYPE(chan->qid.path) != Ndataqid){
  248. if(waserror()) {
  249. freeb(bp);
  250. nexterror();
  251. }
  252. n = etherwrite(chan, bp->rp, n, 0);
  253. poperror();
  254. freeb(bp);
  255. return n;
  256. }
  257. ether = etherxx[chan->dev];
  258. if(n > ether->maxmtu){
  259. freeb(bp);
  260. error(Etoobig);
  261. }
  262. if(n < ether->minmtu){
  263. freeb(bp);
  264. error(Etoosmall);
  265. }
  266. return etheroq(ether, bp);
  267. }
  268. static struct {
  269. char* type;
  270. int (*reset)(Ether*);
  271. } cards[MaxEther+1];
  272. void
  273. addethercard(char* t, int (*r)(Ether*))
  274. {
  275. static int ncard;
  276. if(ncard == MaxEther)
  277. panic("too many ether cards");
  278. cards[ncard].type = t;
  279. cards[ncard].reset = r;
  280. ncard++;
  281. }
  282. int
  283. parseether(uchar *to, char *from)
  284. {
  285. char nip[4];
  286. char *p;
  287. int i;
  288. p = from;
  289. for(i = 0; i < Eaddrlen; i++){
  290. if(*p == 0)
  291. return -1;
  292. nip[0] = *p++;
  293. if(*p == 0)
  294. return -1;
  295. nip[1] = *p++;
  296. nip[2] = 0;
  297. to[i] = strtoul(nip, 0, 16);
  298. if(*p == ':')
  299. p++;
  300. }
  301. return 0;
  302. }
  303. static void
  304. etherreset(void)
  305. {
  306. Ether *ether;
  307. int i, n, ctlrno;
  308. char name[32], buf[256];
  309. for(ether = 0, ctlrno = 0; ctlrno < MaxEther; ctlrno++){
  310. if(ether == 0)
  311. ether = malloc(sizeof(Ether));
  312. memset(ether, 0, sizeof(Ether));
  313. ether->ctlrno = ctlrno;
  314. ether->tbdf = BUSUNKNOWN;
  315. ether->mbps = 10;
  316. ether->minmtu = ETHERMINTU;
  317. ether->maxmtu = ETHERMAXTU;
  318. if(isaconfig("ether", ctlrno, ether) == 0)
  319. continue;
  320. for(n = 0; cards[n].type; n++){
  321. if(cistrcmp(cards[n].type, ether->type))
  322. continue;
  323. for(i = 0; i < ether->nopt; i++){
  324. if(strncmp(ether->opt[i], "ea=", 3))
  325. continue;
  326. if(parseether(ether->ea, &ether->opt[i][3]))
  327. memset(ether->ea, 0, Eaddrlen);
  328. }
  329. if(cards[n].reset(ether))
  330. break;
  331. /*
  332. * IRQ2 doesn't really exist, it's used to gang the interrupt
  333. * controllers together. A device set to IRQ2 will appear on
  334. * the second interrupt controller as IRQ9.
  335. */
  336. if(ether->irq == 2 && BUSTYPE(ether->tbdf) != BusPCI)
  337. ether->irq = 9;
  338. snprint(name, sizeof(name), "ether%d", ctlrno);
  339. /*
  340. * If ether->irq is 0, it is a hack to indicate no
  341. * interrupt used by ethersink.
  342. */
  343. if(ether->irq > 0)
  344. intrenable(ether->irq, ether->interrupt,
  345. ether, ether->tbdf, name);
  346. i = sprint(buf, "#l%d (%s): %s: %dMbps port 0x%luX irq %lud",
  347. ctlrno, name, ether->type, ether->mbps,
  348. ether->port, ether->irq);
  349. if(ether->mem)
  350. i += sprint(buf+i, " addr 0x%luX", PADDR(ether->mem));
  351. if(ether->size)
  352. i += sprint(buf+i, " size 0x%luX", ether->size);
  353. i += sprint(buf+i, ": %2.2uX%2.2uX%2.2uX%2.2uX%2.2uX%2.2uX",
  354. ether->ea[0], ether->ea[1], ether->ea[2],
  355. ether->ea[3], ether->ea[4], ether->ea[5]);
  356. sprint(buf+i, "\n");
  357. print(buf);
  358. if(ether->mbps == 100){
  359. netifinit(ether, name, Ntypes, 256*1024);
  360. if(ether->oq == 0)
  361. ether->oq = qopen(256*1024, Qmsg, 0, 0);
  362. }
  363. else{
  364. netifinit(ether, name, Ntypes, 65*1024);
  365. if(ether->oq == 0)
  366. ether->oq = qopen(65*1024, Qmsg, 0, 0);
  367. }
  368. if(ether->oq == 0)
  369. panic("etherreset %s", name);
  370. ether->alen = Eaddrlen;
  371. memmove(ether->addr, ether->ea, Eaddrlen);
  372. memset(ether->bcast, 0xFF, Eaddrlen);
  373. etherxx[ctlrno] = ether;
  374. ether = 0;
  375. break;
  376. }
  377. }
  378. if(ether)
  379. free(ether);
  380. }
  381. /* imported from ../pc; not ready for use yet */
  382. static void
  383. ethershutdown(void)
  384. {
  385. Ether *ether;
  386. int i;
  387. for(i = 0; i < MaxEther; i++){
  388. ether = etherxx[i];
  389. if(ether == nil)
  390. continue;
  391. if(ether->shutdown == nil) {
  392. print("#l%d: no shutdown fuction\n", i);
  393. continue;
  394. }
  395. (*ether->shutdown)(ether);
  396. }
  397. }
  398. #define POLY 0xedb88320
  399. /* really slow 32 bit crc for ethers */
  400. ulong
  401. ethercrc(uchar *p, int len)
  402. {
  403. int i, j;
  404. ulong crc, b;
  405. crc = 0xffffffff;
  406. for(i = 0; i < len; i++){
  407. b = *p++;
  408. for(j = 0; j < 8; j++){
  409. crc = (crc>>1) ^ (((crc^b) & 1) ? POLY : 0);
  410. b >>= 1;
  411. }
  412. }
  413. return crc;
  414. }
  415. Dev etherdevtab = {
  416. 'l',
  417. "ether",
  418. etherreset,
  419. devinit,
  420. devshutdown,
  421. etherattach,
  422. etherwalk,
  423. etherstat,
  424. etheropen,
  425. ethercreate,
  426. etherclose,
  427. etherread,
  428. etherbread,
  429. etherwrite,
  430. etherbwrite,
  431. devremove,
  432. etherwstat,
  433. };