xref: /netbsd-src/sys/arch/next68k/stand/boot/en.c (revision 181254a7b1bdde6873432bffef2d2decc4b5c22f)
1 /*      $NetBSD: en.c,v 1.19 2018/03/08 03:12:02 mrg 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 
256 		txs = er->txstat;
257 
258 #if 01
259 		DPRINTF(("en_put: done txstat=%x.\n", txs));
260 #endif
261 
262 #define EN_TXS_ERROR (EN_TXS_SHORTED | EN_TXS_UNDERFLOW | EN_TXS_PARERR)
263 		if ((state & DMACSR_COMPLETE) == 0 ||
264 		    (txs & EN_TXS_ERROR) != 0) {
265 			errno = EIO;
266 			return -1;
267 		}
268 		if ((txs & EN_TXS_COLLERR) == 0)
269 			return len;		/* success */
270 	}
271 
272 	errno = EIO;		/* too many retries */
273 	return -1;
274 }
275 
276 int
277 en_get(struct iodesc *desc, void *pkt, size_t len, saseconds_t timeout)
278 {
279 	volatile struct en_regs *er;
280 	volatile struct dma_dev *rxdma;
281 #if 0
282 	volatile struct dma_dev *txdma;
283 #endif
284 	int state, rxs;
285 	size_t rlen;
286 	char *gotpkt;
287 
288 	rxdma = (struct dma_dev *)P_ENETR_CSR;
289 #if 0
290 	txdma = (struct dma_dev *)P_ENETX_CSR;
291 #endif
292 	er = (struct en_regs *)P_ENET;
293 
294 	DPRINTF(("en_get: rxdma->dd_csr = %x\n",rxdma->dd_csr));
295 
296 	er->rxstat = 0xff;
297 
298 	/* this is mouse's code now ... still doesn't work :( */
299 	/* The previous comment is now a lie, this does work
300 	 * Darrin B Jewell <jewell@mit.edu>  Sat Jan 24 21:44:56 1998
301 	 */
302 
303 	rxdma->dd_csr = 0;
304 	rxdma->dd_csr = (turbo ? DMACSR_INITBUFTURBO : DMACSR_INITBUF) |
305 		DMACSR_READ | DMACSR_RESET;
306 
307 	if (!turbo) {
308 		rxdma->dd_saved_next = 0;
309 		rxdma->dd_saved_limit = 0;
310 		rxdma->dd_saved_start = 0;
311 		rxdma->dd_saved_stop = 0;
312 	} else {
313 		rxdma->dd_saved_next = dma_buffers[0];
314 	}
315 
316 	rxdma->dd_next = dma_buffers[0];
317 	rxdma->dd_limit = DMA_ENDALIGN(char *, dma_buffers[0]+MAX_DMASIZE);
318 #if 0
319 	if (turbo) {
320 		/* !!! not a typo: txdma */
321 		txdma->dd_stop = dma_buffers[0];
322 	}
323 #endif
324 	rxdma->dd_start = 0;
325 	rxdma->dd_stop = 0;
326 	rxdma->dd_csr = DMACSR_SETENABLE | DMACSR_READ;
327 	if (turbo)
328 		er->rxmode = EN_RMD_TEST | EN_RMD_RECV_NORMAL;
329 	else
330 		er->rxmode = EN_RMD_RECV_NORMAL;
331 
332 #if 01
333 	DPRINTF(("en_get: blocking on rcv DMA\n"));
334 #endif
335 
336 	while (1) {
337 		if (en_wait_for_intr(ENETR_DMA_INTR))	/* ### use timeout? */
338 			return 0;
339 
340 		state = rxdma->dd_csr &
341 			(DMACSR_BUSEXC | DMACSR_COMPLETE
342 			 | DMACSR_SUPDATE | DMACSR_ENABLE);
343 		DPRINTF(("en_get: DMA state = 0x%x.\n", state));
344 		if ((state & DMACSR_ENABLE) == 0) {
345 			rxdma->dd_csr = DMACSR_RESET | DMACSR_CLRCOMPLETE;
346 			break;
347 		}
348 
349 		if (state & DMACSR_COMPLETE) {
350 			PRINTF(("en_get: ending DMA sequence\n"));
351 			rxdma->dd_csr = DMACSR_CLRCOMPLETE;
352 		}
353 	}
354 
355 	rxs = er->rxstat;
356 
357 	if ((state & DMACSR_COMPLETE) == 0 ||
358 	    (rxs & EN_RX_OK) == 0) {
359 		errno = EIO;
360 		return -1;	/* receive failed */
361 	}
362 
363 	if (turbo) {
364 		gotpkt = rxdma->dd_saved_next;
365 		rlen = rxdma->dd_next - rxdma->dd_saved_next;
366 	} else {
367 		gotpkt = rxdma->dd_saved_next;
368 		rlen = rxdma->dd_next - rxdma->dd_saved_next;
369 	}
370 
371 	if (gotpkt != dma_buffers[0]) {
372 		printf("Unexpected received packet location\n");
373 		printf("DEBUG: rxstat=%x.\n", rxs);
374 		printf("DEBUG: gotpkt = 0x%lx, rlen = %d, len = %d\n",(u_long)gotpkt,rlen,len);
375 		printf("DEBUG: rxdma->dd_csr = 0x%lx\n",(u_long)rxdma->dd_csr);
376 		printf("DEBUG: rxdma->dd_saved_next = 0x%lx\n",(u_long)rxdma->dd_saved_next);
377 		printf("DEBUG: rxdma->dd_saved_limit = 0x%lx\n",(u_long)rxdma->dd_saved_limit);
378 		printf("DEBUG: rxdma->dd_saved_start = 0x%lx\n",(u_long)rxdma->dd_saved_start);
379 		printf("DEBUG: rxdma->dd_saved_stop = 0x%lx\n",(u_long)rxdma->dd_saved_stop);
380 		printf("DEBUG: rxdma->dd_next = 0x%lx\n",(u_long)rxdma->dd_next);
381 		printf("DEBUG: rxdma->dd_limit = 0x%lx\n",(u_long)rxdma->dd_limit);
382 		printf("DEBUG: rxdma->dd_start = 0x%lx\n",(u_long)rxdma->dd_start);
383 		printf("DEBUG: rxdma->dd_stop = 0x%lx\n",(u_long)rxdma->dd_stop);
384 		printf("DEBUG: rxdma->dd_next_initbuf = 0x%lx\n",(u_long)rxdma->dd_next_initbuf);
385 	}
386 
387 #if 0
388 dump_pkt(gotpkt, rlen < 255 ? rlen : 128);
389 #endif
390 
391 	DPRINTF(("en_get: done rxstat=%x.\n", rxs));
392 
393 	if (rlen > len) {
394 		DPRINTF(("en_get: buffer too small. want %d, got %d\n",
395 			 len, rlen));
396 		rlen = len;
397 	}
398 
399 	memcpy(pkt, gotpkt, rlen);
400 
401 #if 0
402 	printf("DEBUG: gotpkt = 0x%lx, pkt = 0x%lx, rlen = %d\n",
403 			(u_long)gotpkt,(u_long)pkt,rlen);
404 	dump_pkt(gotpkt, rlen < 255 ? rlen : 128);
405 	dump_pkt(pkt, rlen < 255 ? rlen : 128);
406 #endif
407 
408 	return rlen;
409 }
410 
411 
412 void
413 en_end(struct netif *a)
414 {
415 	DPRINTF(("en_end: WARNING not doing anything\n"));
416 }
417 
418 #if 0
419 
420 #define MKPANIC(ret,name,args) \
421 	ret name args { panic(#name ## ": not implemented.\n"); }
422 
423 MKPANIC(void, en_end, (struct netif *a));
424 
425 /* device functions */
426 
427 int
428 enopen(struct open_file *f, char count, char lun, char part)
429 {
430 	int error;
431 
432 	DPRINTF(("open: en(%d,%d,%d)\n", count, lun, part));
433 
434 	if (count != 0 || lun != 0 || part != 0)
435 		return EUNIT;	/* there can be exactly one ethernet */
436 
437 	if (open_count == 0) {
438 		/* Find network interface. */
439 		if ((netdev_sock = netif_open(NULL)) < 0)
440 			return errno;
441 		if ((error = mountroot(netdev_sock)) != 0) {
442 			if (open_count == 0)
443 				netif_close(netdev_sock);
444 			return error;
445 		}
446 	}
447 	open_count++;
448 	f->f_devdata = NULL; /* ### nfs_root_node ?! */
449 	return 0;
450 }
451 
452 int
453 enclose(struct open_file *f)
454 {
455 	if (open_count > 0)
456 		if (--open_count == 0)
457 			netif_close(netdev_sock);
458 	f->f_devdata = NULL;
459 	return 0;
460 }
461 
462 int
463 enstrategy(void *devdata, int rw, daddr_t dblk,
464 	   size_t size, void *buf, size_t *rsize)
465 {
466 	return ENXIO;		/* wrong access method */
467 }
468 
469 /* private function */
470 
471 static int
472 mountroot(int sock)
473 {
474 	/* Mount the root directory from a boot server */
475 #if 0
476 	struct in_addr in = {
477 		0xc2793418
478 	};
479 	u_char *res;
480 
481 	res = arpwhohas(socktodesc(sock), in);
482 	panic("arpwhohas returned %s", res);
483 #endif
484 	/* 1. use bootp. This does most of the work for us. */
485 	bootp(sock);
486 
487 	if (myip.s_addr == 0 || rootip.s_addr == 0 || rootpath[0] == '\0')
488 		return ETIMEDOUT;
489 
490 	printf("Using IP address: %s\n", inet_ntoa(myip));
491 	printf("root addr=%s path=%s\n", inet_ntoa(rootip), rootpath);
492 
493 	/* 2. mount. */
494 	if (nfs_mount(sock, rootip, rootpath) < 0)
495 		return errno;
496 
497 	return 0;
498 }
499 #endif
500 
501 static int
502 en_wait_for_intr(int flag)
503 {
504 	volatile int *intrstat = MON(volatile int *, MG_intrstat);
505 
506 	int count;
507 
508 	for (count = 0; count < EN_TIMEOUT; count++)
509 		if (*intrstat & flag)
510 			return 0;
511 
512 	return -1;
513 }
514