1 /* $NetBSD: en.c,v 1.17 2009/10/26 19:16:57 cegger Exp $ */ 2 /* 3 * Copyright (c) 1996 Rolf Grossmann 4 * All rights reserved. 5 * 6 * Redistribution and use in source and binary forms, with or without 7 * modification, are permitted provided that the following conditions 8 * are met: 9 * 1. Redistributions of source code must retain the above copyright 10 * notice, this list of conditions and the following disclaimer. 11 * 2. Redistributions in binary form must reproduce the above copyright 12 * notice, this list of conditions and the following disclaimer in the 13 * documentation and/or other materials provided with the distribution. 14 * 3. All advertising materials mentioning features or use of this software 15 * must display the following acknowledgement: 16 * This product includes software developed by Rolf Grossmann. 17 * 4. The name of the author may not be used to endorse or promote products 18 * derived from this software without specific prior written permission 19 * 20 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 21 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 22 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 23 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 24 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 25 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 26 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 27 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 28 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 29 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 30 */ 31 32 #include <sys/param.h> 33 #include <sys/types.h> 34 #include <netinet/in.h> 35 #include <netinet/in_systm.h> 36 #include <next68k/dev/enreg.h> 37 #include <next68k/next68k/nextrom.h> 38 #include "enreg.h" 39 #include "dmareg.h" 40 41 #include <stand.h> 42 #include <netif.h> 43 #include <net.h> 44 #include <nfs.h> 45 46 #include <lib/libkern/libkern.h> 47 48 extern char *mg; 49 #define MON(type, off) (*(type *)((u_int) (mg) + off)) 50 51 #define PRINTF(x) printf x; 52 #ifdef EN_DEBUG 53 #define DPRINTF(x) printf x; 54 #else 55 #define DPRINTF(x) 56 #endif 57 58 #define EN_TIMEOUT 2000000 59 #define EN_RETRIES 10 60 61 int en_match(struct netif *, void *); 62 int en_probe(struct netif *, void *); 63 void en_init(struct iodesc *, void *); 64 int en_get(struct iodesc *, void *, size_t, saseconds_t); 65 int en_put(struct iodesc *, void *, size_t); 66 void en_end(struct netif *); 67 68 static int en_wait_for_intr(int); 69 70 struct netif_stats en_stats; 71 72 struct netif_dif en_ifs[] = { 73 /* dif_unit dif_nsel dif_stats dif_private */ 74 { 0, 1, &en_stats, NULL, }, 75 }; 76 77 struct netif_driver en_driver = { 78 "en", 79 en_match, en_probe, en_init, en_get, en_put, en_end, 80 en_ifs, sizeof(en_ifs) / sizeof(en_ifs[0]) 81 }; 82 83 extern int turbo; 84 85 /* ### int netdev_sock; 86 static int open_count; */ 87 88 char dma_buffer1[MAX_DMASIZE+DMA_ENDALIGNMENT], 89 dma_buffer2[MAX_DMASIZE+DMA_ENDALIGNMENT], 90 *dma_buffers[2]; 91 int next_dma_buffer; 92 93 94 int 95 en_match(struct netif *nif, void *machdep_hint) 96 { 97 /* we always match, because every NeXT has an ethernet interface 98 * and we've checked the unit numbers before we even started this 99 * search. 100 * ### now that open is generic, we should check the params! 101 */ 102 return 1; 103 } 104 105 int 106 en_probe(struct netif *nif, void *machdep_hint) 107 { 108 /* we also always probe ok, see en_match. */ 109 return 0; 110 } 111 112 void 113 en_init(struct iodesc *desc, void *machdep_hint) 114 { 115 volatile struct en_regs *er; 116 volatile u_int *bmap_chip; 117 int i; 118 119 DPRINTF(("en_init\n")); 120 121 er = (struct en_regs *)P_ENET; 122 bmap_chip = (u_int *)P_BMAP; 123 124 dma_buffers[0] = DMA_ALIGN(char *, dma_buffer1); 125 dma_buffers[1] = DMA_ALIGN(char *, dma_buffer2); 126 127 er->reset = EN_RST_RESET; 128 /* if (turbo) */ 129 /* er->reset = 0; */ 130 131 er->txmask = 0; 132 er->txstat = 0xff; 133 if (turbo) 134 er->txmode = 0 | EN_TMD_COLLSHIFT; 135 else 136 er->txmode = EN_TMD_LB_DISABLE; 137 138 /* setup for bnc/tp */ 139 if (!turbo) { 140 DPRINTF (("en_media: %s\n", 141 (bmap_chip[13] & 0x20000000) ? "BNC" : "TP")); 142 if (!(bmap_chip[13] & 0x20000000)) { 143 bmap_chip[12] |= 0x90000000; 144 bmap_chip[13] |= (0x80000000|0x10000000); /* TP */ 145 } 146 } 147 148 /* if (turbo) { */ 149 /* er->txmode |= EN_TMD_COLLSHIFT; */ 150 /* } else { */ 151 /* er->txmode &= ~EN_TMD_LB_DISABLE; /\* ZZZ *\/ */ 152 /* } */ 153 154 er->rxmask = 0; 155 er->rxstat = 0xff; 156 if (turbo) 157 er->rxmode = EN_RMD_TEST | EN_RMD_RECV_NORMAL; 158 else 159 er->rxmode = EN_RMD_RECV_NORMAL; 160 for (i=0; i<6; i++) 161 er->addr[i] = desc->myea[i] = MON(char *,MG_clientetheraddr)[i]; 162 163 DPRINTF(("ethernet addr (%x:%x:%x:%x:%x:%x)\n", 164 desc->myea[0],desc->myea[1],desc->myea[2], 165 desc->myea[3],desc->myea[4],desc->myea[5])); 166 167 /* if (!turbo) */ 168 er->reset = 0; 169 } 170 171 #if 0 172 /* ### remove this when things work! */ 173 #define XCHR(x) hexdigits[(x) & 0xf] 174 void 175 dump_pkt(unsigned char *pkt, size_t len) 176 { 177 size_t i, j; 178 179 printf("0000: "); 180 for(i=0; i<len; i++) { 181 printf("%c%c ", XCHR(pkt[i]>>4), XCHR(pkt[i])); 182 if ((i+1) % 16 == 0) { 183 printf(" %c", '"'); 184 for(j=0; j<16; j++) 185 printf("%c", pkt[i-15+j]>=32 && pkt[i-15+j]<127?pkt[i-15+j]:'.'); 186 printf("%c\n%c%c%c%c: ", '"', XCHR((i+1)>>12), 187 XCHR((i+1)>>8), XCHR((i+1)>>4), XCHR(i+1)); 188 } 189 } 190 printf("\n"); 191 } 192 #endif 193 194 int 195 en_put(struct iodesc *desc, void *pkt, size_t len) 196 { 197 volatile struct en_regs *er; 198 volatile struct dma_dev *txdma; 199 int state, txs; 200 int retries; 201 202 DPRINTF(("en_put: %d bytes at 0x%lx\n", len, (unsigned long)pkt)); 203 #if 0 204 dump_pkt(pkt,len); 205 #endif 206 207 er = (struct en_regs *)P_ENET; 208 txdma = (struct dma_dev *)P_ENETX_CSR; 209 210 DPRINTF(("en_put: txdma->dd_csr = %x\n",txdma->dd_csr)); 211 212 if (len > 1600) { 213 errno = EINVAL; 214 return -1; 215 } 216 217 if (!turbo) { 218 while ((er->txstat & EN_TXS_READY) == 0) 219 printf("en: tx not ready\n"); 220 } 221 222 for (retries = 0; retries < EN_RETRIES; retries++) { 223 er->txstat = 0xff; 224 memcpy(dma_buffers[0], pkt, len); 225 txdma->dd_csr = (turbo ? DMACSR_INITBUFTURBO : DMACSR_INITBUF) | 226 DMACSR_RESET | DMACSR_WRITE; 227 txdma->dd_csr = 0; 228 txdma->dd_next/* _initbuf */ = dma_buffers[0]; 229 txdma->dd_start = (turbo ? dma_buffers[0] : 0); 230 txdma->dd_limit = ENDMA_ENDALIGN(char *, dma_buffers[0]+len); 231 txdma->dd_stop = 0; 232 txdma->dd_csr = DMACSR_SETENABLE; 233 if (turbo) 234 er->txmode |= 0x80; 235 236 while (1) { 237 if (en_wait_for_intr(ENETX_DMA_INTR)) { 238 printf("en_put: timed out\n"); 239 errno = EIO; 240 return -1; 241 } 242 243 state = txdma->dd_csr & 244 (DMACSR_BUSEXC | DMACSR_COMPLETE 245 | DMACSR_SUPDATE | DMACSR_ENABLE); 246 247 #if 01 248 DPRINTF(("en_put: DMA state = 0x%x.\n", state)); 249 #endif 250 if (state & (DMACSR_COMPLETE|DMACSR_BUSEXC)) 251 txdma->dd_csr = DMACSR_RESET | DMACSR_CLRCOMPLETE; 252 break; 253 } 254 255 txs = er->txstat; 256 257 #if 01 258 DPRINTF(("en_put: done txstat=%x.\n", txs)); 259 #endif 260 261 #define EN_TXS_ERROR (EN_TXS_SHORTED | EN_TXS_UNDERFLOW | EN_TXS_PARERR) 262 if ((state & DMACSR_COMPLETE) == 0 || 263 (txs & EN_TXS_ERROR) != 0) { 264 errno = EIO; 265 return -1; 266 } 267 if ((txs & EN_TXS_COLLERR) == 0) 268 return len; /* success */ 269 } 270 271 errno = EIO; /* too many retries */ 272 return -1; 273 } 274 275 int 276 en_get(struct iodesc *desc, void *pkt, size_t len, saseconds_t timeout) 277 { 278 volatile struct en_regs *er; 279 volatile struct dma_dev *rxdma; 280 volatile struct dma_dev *txdma; 281 int state, rxs; 282 size_t rlen; 283 char *gotpkt; 284 285 rxdma = (struct dma_dev *)P_ENETR_CSR; 286 txdma = (struct dma_dev *)P_ENETX_CSR; 287 er = (struct en_regs *)P_ENET; 288 289 DPRINTF(("en_get: rxdma->dd_csr = %x\n",rxdma->dd_csr)); 290 291 er->rxstat = 0xff; 292 293 /* this is mouse's code now ... still doesn't work :( */ 294 /* The previous comment is now a lie, this does work 295 * Darrin B Jewell <jewell@mit.edu> Sat Jan 24 21:44:56 1998 296 */ 297 298 rxdma->dd_csr = 0; 299 rxdma->dd_csr = (turbo ? DMACSR_INITBUFTURBO : DMACSR_INITBUF) | 300 DMACSR_READ | DMACSR_RESET; 301 302 if (!turbo) { 303 rxdma->dd_saved_next = 0; 304 rxdma->dd_saved_limit = 0; 305 rxdma->dd_saved_start = 0; 306 rxdma->dd_saved_stop = 0; 307 } else { 308 rxdma->dd_saved_next = dma_buffers[0]; 309 } 310 311 rxdma->dd_next = dma_buffers[0]; 312 rxdma->dd_limit = DMA_ENDALIGN(char *, dma_buffers[0]+MAX_DMASIZE); 313 #if 0 314 if (turbo) { 315 /* !!! not a typo: txdma */ 316 txdma->dd_stop = dma_buffers[0]; 317 } 318 #endif 319 rxdma->dd_start = 0; 320 rxdma->dd_stop = 0; 321 rxdma->dd_csr = DMACSR_SETENABLE | DMACSR_READ; 322 if (turbo) 323 er->rxmode = EN_RMD_TEST | EN_RMD_RECV_NORMAL; 324 else 325 er->rxmode = EN_RMD_RECV_NORMAL; 326 327 #if 01 328 DPRINTF(("en_get: blocking on rcv DMA\n")); 329 #endif 330 331 while (1) { 332 if (en_wait_for_intr(ENETR_DMA_INTR)) /* ### use timeout? */ 333 return 0; 334 335 state = rxdma->dd_csr & 336 (DMACSR_BUSEXC | DMACSR_COMPLETE 337 | DMACSR_SUPDATE | DMACSR_ENABLE); 338 DPRINTF(("en_get: DMA state = 0x%x.\n", state)); 339 if ((state & DMACSR_ENABLE) == 0) { 340 rxdma->dd_csr = DMACSR_RESET | DMACSR_CLRCOMPLETE; 341 break; 342 } 343 344 if (state & DMACSR_COMPLETE) { 345 PRINTF(("en_get: ending DMA sequence\n")); 346 rxdma->dd_csr = DMACSR_CLRCOMPLETE; 347 } 348 } 349 350 rxs = er->rxstat; 351 352 if ((state & DMACSR_COMPLETE) == 0 || 353 (rxs & EN_RX_OK) == 0) { 354 errno = EIO; 355 return -1; /* receive failed */ 356 } 357 358 if (turbo) { 359 gotpkt = rxdma->dd_saved_next; 360 rlen = rxdma->dd_next - rxdma->dd_saved_next; 361 } else { 362 gotpkt = rxdma->dd_saved_next; 363 rlen = rxdma->dd_next - rxdma->dd_saved_next; 364 } 365 366 if (gotpkt != dma_buffers[0]) { 367 printf("Unexpected received packet location\n"); 368 printf("DEBUG: rxstat=%x.\n", rxs); 369 printf("DEBUG: gotpkt = 0x%lx, rlen = %d, len = %d\n",(u_long)gotpkt,rlen,len); 370 printf("DEBUG: rxdma->dd_csr = 0x%lx\n",(u_long)rxdma->dd_csr); 371 printf("DEBUG: rxdma->dd_saved_next = 0x%lx\n",(u_long)rxdma->dd_saved_next); 372 printf("DEBUG: rxdma->dd_saved_limit = 0x%lx\n",(u_long)rxdma->dd_saved_limit); 373 printf("DEBUG: rxdma->dd_saved_start = 0x%lx\n",(u_long)rxdma->dd_saved_start); 374 printf("DEBUG: rxdma->dd_saved_stop = 0x%lx\n",(u_long)rxdma->dd_saved_stop); 375 printf("DEBUG: rxdma->dd_next = 0x%lx\n",(u_long)rxdma->dd_next); 376 printf("DEBUG: rxdma->dd_limit = 0x%lx\n",(u_long)rxdma->dd_limit); 377 printf("DEBUG: rxdma->dd_start = 0x%lx\n",(u_long)rxdma->dd_start); 378 printf("DEBUG: rxdma->dd_stop = 0x%lx\n",(u_long)rxdma->dd_stop); 379 printf("DEBUG: rxdma->dd_next_initbuf = 0x%lx\n",(u_long)rxdma->dd_next_initbuf); 380 } 381 382 #if 0 383 dump_pkt(gotpkt, rlen < 255 ? rlen : 128); 384 #endif 385 386 DPRINTF(("en_get: done rxstat=%x.\n", rxs)); 387 388 if (rlen > len) { 389 DPRINTF(("en_get: buffer too small. want %d, got %d\n", 390 len, rlen)); 391 rlen = len; 392 } 393 394 memcpy(pkt, gotpkt, rlen); 395 396 #if 0 397 printf("DEBUG: gotpkt = 0x%lx, pkt = 0x%lx, rlen = %d\n", 398 (u_long)gotpkt,(u_long)pkt,rlen); 399 dump_pkt(gotpkt, rlen < 255 ? rlen : 128); 400 dump_pkt(pkt, rlen < 255 ? rlen : 128); 401 #endif 402 403 return rlen; 404 } 405 406 407 void 408 en_end(struct netif *a) 409 { 410 DPRINTF(("en_end: WARNING not doing anything\n")); 411 } 412 413 #if 0 414 415 #define MKPANIC(ret,name,args) \ 416 ret name args { panic(#name ## ": not implemented.\n"); } 417 418 MKPANIC(void, en_end, (struct netif *a)); 419 420 /* device functions */ 421 422 int 423 enopen(struct open_file *f, char count, char lun, char part) 424 { 425 int error; 426 427 DPRINTF(("open: en(%d,%d,%d)\n", count, lun, part)); 428 429 if (count != 0 || lun != 0 || part != 0) 430 return EUNIT; /* there can be exactly one ethernet */ 431 432 if (open_count == 0) { 433 /* Find network interface. */ 434 if ((netdev_sock = netif_open(NULL)) < 0) 435 return errno; 436 if ((error = mountroot(netdev_sock)) != 0) { 437 if (open_count == 0) 438 netif_close(netdev_sock); 439 return error; 440 } 441 } 442 open_count++; 443 f->f_devdata = NULL; /* ### nfs_root_node ?! */ 444 return 0; 445 } 446 447 int 448 enclose(struct open_file *f) 449 { 450 if (open_count > 0) 451 if (--open_count == 0) 452 netif_close(netdev_sock); 453 f->f_devdata = NULL; 454 return 0; 455 } 456 457 int 458 enstrategy(void *devdata, int rw, daddr_t dblk, 459 size_t size, void *buf, size_t *rsize) 460 { 461 return ENXIO; /* wrong access method */ 462 } 463 464 /* private function */ 465 466 static int 467 mountroot(int sock) 468 { 469 /* Mount the root directory from a boot server */ 470 #if 0 471 struct in_addr in = { 472 0xc2793418 473 }; 474 u_char *res; 475 476 res = arpwhohas(socktodesc(sock), in); 477 panic("arpwhohas returned %s", res); 478 #endif 479 /* 1. use bootp. This does most of the work for us. */ 480 bootp(sock); 481 482 if (myip.s_addr == 0 || rootip.s_addr == 0 || rootpath[0] == '\0') 483 return ETIMEDOUT; 484 485 printf("Using IP address: %s\n", inet_ntoa(myip)); 486 printf("root addr=%s path=%s\n", inet_ntoa(rootip), rootpath); 487 488 /* 2. mount. */ 489 if (nfs_mount(sock, rootip, rootpath) < 0) 490 return errno; 491 492 return 0; 493 } 494 #endif 495 496 static int 497 en_wait_for_intr(int flag) 498 { 499 volatile int *intrstat = MON(volatile int *, MG_intrstat); 500 501 int count; 502 503 for (count = 0; count < EN_TIMEOUT; count++) 504 if (*intrstat & flag) 505 return 0; 506 507 return -1; 508 } 509