mac68k5380.c revision 1.20 1 1.20 thorpej /* $NetBSD: mac68k5380.c,v 1.20 1996/03/17 01:33:29 thorpej Exp $ */
2 1.1 briggs
3 1.1 briggs /*
4 1.1 briggs * Copyright (c) 1995 Allen Briggs
5 1.1 briggs * All rights reserved.
6 1.1 briggs *
7 1.1 briggs * Redistribution and use in source and binary forms, with or without
8 1.1 briggs * modification, are permitted provided that the following conditions
9 1.1 briggs * are met:
10 1.1 briggs * 1. Redistributions of source code must retain the above copyright
11 1.1 briggs * notice, this list of conditions and the following disclaimer.
12 1.1 briggs * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 briggs * notice, this list of conditions and the following disclaimer in the
14 1.1 briggs * documentation and/or other materials provided with the distribution.
15 1.1 briggs * 3. All advertising materials mentioning features or use of this software
16 1.1 briggs * must display the following acknowledgement:
17 1.1 briggs * This product includes software developed by Allen Briggs
18 1.1 briggs * 4. The name of the author may not be used to endorse or promote products
19 1.1 briggs * derived from this software without specific prior written permission
20 1.1 briggs *
21 1.1 briggs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 briggs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 briggs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 briggs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 briggs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 briggs * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 briggs * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 briggs * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 briggs * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 briggs * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 briggs *
32 1.1 briggs * Derived from atari5380.c for the mac68k port of NetBSD.
33 1.1 briggs *
34 1.1 briggs */
35 1.1 briggs
36 1.1 briggs #include <sys/param.h>
37 1.1 briggs #include <sys/systm.h>
38 1.1 briggs #include <sys/kernel.h>
39 1.1 briggs #include <sys/device.h>
40 1.10 briggs #include <sys/dkstat.h>
41 1.1 briggs #include <sys/syslog.h>
42 1.1 briggs #include <sys/buf.h>
43 1.1 briggs #include <scsi/scsi_all.h>
44 1.1 briggs #include <scsi/scsi_message.h>
45 1.1 briggs #include <scsi/scsiconf.h>
46 1.1 briggs
47 1.1 briggs /*
48 1.1 briggs * Include the driver definitions
49 1.1 briggs */
50 1.5 briggs #include <mac68k/dev/ncr5380reg.h>
51 1.1 briggs
52 1.1 briggs #include <machine/stdarg.h>
53 1.1 briggs
54 1.1 briggs #include "../mac68k/via.h"
55 1.1 briggs
56 1.1 briggs /*
57 1.1 briggs * Set the various driver options
58 1.1 briggs */
59 1.1 briggs #define NREQ 18 /* Size of issue queue */
60 1.1 briggs #define AUTO_SENSE 1 /* Automatically issue a request-sense */
61 1.1 briggs
62 1.1 briggs #define DRNAME ncrscsi /* used in various prints */
63 1.1 briggs #undef DBG_SEL /* Show the selection process */
64 1.1 briggs #undef DBG_REQ /* Show enqueued/ready requests */
65 1.1 briggs #undef DBG_NOWRITE /* Do not allow writes to the targets */
66 1.1 briggs #undef DBG_PIO /* Show the polled-I/O process */
67 1.1 briggs #undef DBG_INF /* Show information transfer process */
68 1.1 briggs #define DBG_NOSTATIC /* No static functions, all in DDB trace*/
69 1.18 briggs #define DBG_PID 25 /* Keep track of driver */
70 1.18 briggs #ifdef DBG_NOSTATIC
71 1.18 briggs # define static
72 1.18 briggs #endif
73 1.18 briggs #ifdef DBG_SEL
74 1.18 briggs # define DBG_SELPRINT(a,b) printf(a,b)
75 1.18 briggs #else
76 1.18 briggs # define DBG_SELPRINT(a,b)
77 1.18 briggs #endif
78 1.18 briggs #ifdef DBG_PIO
79 1.18 briggs # define DBG_PIOPRINT(a,b,c) printf(a,b,c)
80 1.18 briggs #else
81 1.18 briggs # define DBG_PIOPRINT(a,b,c)
82 1.18 briggs #endif
83 1.18 briggs #ifdef DBG_INF
84 1.18 briggs # define DBG_INFPRINT(a,b,c) a(b,c)
85 1.18 briggs #else
86 1.18 briggs # define DBG_INFPRINT(a,b,c)
87 1.18 briggs #endif
88 1.18 briggs #ifdef DBG_PID
89 1.18 briggs /* static char *last_hit = NULL, *olast_hit = NULL; */
90 1.18 briggs static char *last_hit[DBG_PID];
91 1.18 briggs # define PID(a) \
92 1.18 briggs { int i; \
93 1.18 briggs for (i=0; i< DBG_PID-1; i++) \
94 1.18 briggs last_hit[i] = last_hit[i+1]; \
95 1.18 briggs last_hit[DBG_PID-1] = a; }
96 1.18 briggs #else
97 1.18 briggs # define PID(a)
98 1.18 briggs #endif
99 1.18 briggs
100 1.1 briggs #undef REAL_DMA /* Use DMA if sensible */
101 1.19 briggs #define scsi_ipending() (GET_5380_REG(NCR5380_DMSTAT) & SC_IRQ_SET)
102 1.1 briggs #define fair_to_keep_dma() 1
103 1.1 briggs #define claimed_dma() 1
104 1.1 briggs #define reconsider_dma()
105 1.1 briggs #define USE_PDMA 1 /* Use special pdma-transfer function */
106 1.10 briggs #define MIN_PHYS 0x2000 /* pdma space w/ /DSACK is only 0x2000 */
107 1.1 briggs
108 1.1 briggs #define ENABLE_NCR5380(sc) cur_softc = sc;
109 1.1 briggs
110 1.1 briggs /*
111 1.1 briggs * softc of currently active controller (well, we only have one for now).
112 1.1 briggs */
113 1.1 briggs
114 1.1 briggs static struct ncr_softc *cur_softc;
115 1.1 briggs
116 1.1 briggs struct scsi_5380 {
117 1.1 briggs volatile u_char scsi_5380[8*16]; /* 8 regs, 1 every 16th byte. */
118 1.1 briggs };
119 1.1 briggs
120 1.1 briggs extern vm_offset_t SCSIBase;
121 1.1 briggs static volatile u_char *ncr = (volatile u_char *) 0x10000;
122 1.1 briggs static volatile u_char *ncr_5380_with_drq = (volatile u_char *) 0x6000;
123 1.1 briggs static volatile u_char *ncr_5380_without_drq = (volatile u_char *) 0x12000;
124 1.1 briggs
125 1.4 briggs static volatile u_char *scsi_enable = NULL;
126 1.4 briggs
127 1.1 briggs #define SCSI_5380 ((struct scsi_5380 *) ncr)
128 1.1 briggs #define GET_5380_REG(rnum) SCSI_5380->scsi_5380[((rnum)<<4)]
129 1.1 briggs #define SET_5380_REG(rnum,val) (SCSI_5380->scsi_5380[((rnum)<<4)] = (val))
130 1.1 briggs
131 1.6 briggs void ncr5380_irq_intr(void *);
132 1.6 briggs void ncr5380_drq_intr(void *);
133 1.4 briggs
134 1.1 briggs static __inline__ void
135 1.1 briggs scsi_clr_ipend()
136 1.1 briggs {
137 1.1 briggs int tmp;
138 1.1 briggs
139 1.1 briggs tmp = GET_5380_REG(NCR5380_IRCV);
140 1.1 briggs }
141 1.1 briggs
142 1.1 briggs extern __inline__ void
143 1.1 briggs scsi_ienable()
144 1.1 briggs {
145 1.1 briggs int s;
146 1.1 briggs
147 1.1 briggs s = splhigh();
148 1.4 briggs *scsi_enable = 0x80 | (V2IF_SCSIIRQ | V2IF_SCSIDRQ);
149 1.1 briggs splx(s);
150 1.1 briggs }
151 1.1 briggs
152 1.1 briggs extern __inline__ void
153 1.1 briggs scsi_idisable()
154 1.1 briggs {
155 1.1 briggs int s;
156 1.1 briggs
157 1.1 briggs s = splhigh();
158 1.4 briggs *scsi_enable = V2IF_SCSIIRQ | V2IF_SCSIDRQ;
159 1.1 briggs splx(s);
160 1.1 briggs }
161 1.1 briggs
162 1.1 briggs static void
163 1.1 briggs scsi_mach_init(sc)
164 1.1 briggs struct ncr_softc *sc;
165 1.1 briggs {
166 1.1 briggs static int initted = 0;
167 1.1 briggs
168 1.1 briggs if (initted++)
169 1.1 briggs panic("scsi_mach_init called again.\n");
170 1.1 briggs
171 1.1 briggs ncr = (volatile u_char *)
172 1.1 briggs (SCSIBase + (u_long) ncr);
173 1.1 briggs ncr_5380_with_drq = (volatile u_char *)
174 1.1 briggs (SCSIBase + (u_int) ncr_5380_with_drq);
175 1.1 briggs ncr_5380_without_drq = (volatile u_char *)
176 1.1 briggs (SCSIBase + (u_int) ncr_5380_without_drq);
177 1.4 briggs
178 1.4 briggs if (VIA2 == VIA2OFF)
179 1.4 briggs scsi_enable = Via1Base + VIA2 * 0x2000 + vIER;
180 1.4 briggs else
181 1.4 briggs scsi_enable = Via1Base + VIA2 * 0x2000 + rIER;
182 1.4 briggs
183 1.6 briggs mac68k_register_scsi_irq(ncr5380_irq_intr, sc);
184 1.6 briggs mac68k_register_scsi_drq(ncr5380_drq_intr, sc);
185 1.1 briggs }
186 1.1 briggs
187 1.1 briggs static int
188 1.20 thorpej machine_match(pdp, match, auxp, cd)
189 1.1 briggs struct device *pdp;
190 1.20 thorpej void *match, *auxp;
191 1.1 briggs struct cfdriver *cd;
192 1.1 briggs {
193 1.20 thorpej struct cfdata *cdp = match;
194 1.20 thorpej
195 1.1 briggs if (matchbyname(pdp, cdp, auxp) == 0)
196 1.1 briggs return 0;
197 1.1 briggs if (!mac68k_machine.scsi80)
198 1.1 briggs return 0;
199 1.1 briggs if (cdp->cf_unit != 0)
200 1.1 briggs return 0;
201 1.1 briggs return 1;
202 1.1 briggs }
203 1.1 briggs
204 1.1 briggs #if USE_PDMA
205 1.4 briggs int pdma_5380_dir = 0;
206 1.1 briggs
207 1.4 briggs u_char *pending_5380_data;
208 1.4 briggs u_long pending_5380_count;
209 1.1 briggs
210 1.17 briggs #define NCR5380_PDMA_DEBUG 1 /* Maybe we try with this off eventually. */
211 1.10 briggs
212 1.17 briggs #if NCR5380_PDMA_DEBUG
213 1.1 briggs int pdma_5380_sends = 0;
214 1.2 briggs int pdma_5380_bytes = 0;
215 1.1 briggs
216 1.1 briggs void
217 1.1 briggs pdma_stat()
218 1.1 briggs {
219 1.10 briggs printf("PDMA SCSI: %d xfers completed for %d bytes.\n",
220 1.4 briggs pdma_5380_sends, pdma_5380_bytes);
221 1.17 briggs printf("pdma_5380_dir = %d\t",
222 1.4 briggs pdma_5380_dir);
223 1.1 briggs printf("datap = 0x%x, remainder = %d.\n",
224 1.1 briggs pending_5380_data, pending_5380_count);
225 1.17 briggs scsi_show();
226 1.1 briggs }
227 1.1 briggs #endif
228 1.1 briggs
229 1.1 briggs void
230 1.2 briggs pdma_cleanup(void)
231 1.2 briggs {
232 1.2 briggs SC_REQ *reqp = connected;
233 1.2 briggs int bytes, s;
234 1.2 briggs
235 1.2 briggs s = splbio();
236 1.18 briggs PID("pdma_cleanup0");
237 1.2 briggs
238 1.4 briggs pdma_5380_dir = 0;
239 1.2 briggs
240 1.17 briggs #if NCR5380_PDMA_DEBUG
241 1.2 briggs pdma_5380_sends++;
242 1.2 briggs pdma_5380_bytes+=(reqp->xdata_len - pending_5380_count);
243 1.2 briggs #endif
244 1.2 briggs
245 1.2 briggs /*
246 1.2 briggs * Update pointers.
247 1.2 briggs */
248 1.2 briggs reqp->xdata_ptr += reqp->xdata_len - pending_5380_count;
249 1.2 briggs reqp->xdata_len = pending_5380_count;
250 1.2 briggs
251 1.2 briggs /*
252 1.2 briggs * Reset DMA mode.
253 1.2 briggs */
254 1.2 briggs SET_5380_REG(NCR5380_MODE, GET_5380_REG(NCR5380_MODE) & ~SC_M_DMA);
255 1.2 briggs
256 1.2 briggs /*
257 1.10 briggs * Clear any pending interrupts.
258 1.10 briggs */
259 1.10 briggs scsi_clr_ipend();
260 1.10 briggs
261 1.10 briggs /*
262 1.2 briggs * Tell interrupt functions that DMA has ended.
263 1.2 briggs */
264 1.2 briggs reqp->dr_flag &= ~DRIVER_IN_DMA;
265 1.2 briggs
266 1.2 briggs SET_5380_REG(NCR5380_MODE, IMODE_BASE);
267 1.2 briggs SET_5380_REG(NCR5380_ICOM, 0);
268 1.2 briggs
269 1.2 briggs splx(s);
270 1.2 briggs
271 1.2 briggs /*
272 1.2 briggs * Back for more punishment.
273 1.2 briggs */
274 1.18 briggs PID("pdma_cleanup1");
275 1.2 briggs run_main(cur_softc);
276 1.18 briggs PID("pdma_cleanup2");
277 1.2 briggs }
278 1.11 briggs #endif
279 1.2 briggs
280 1.4 briggs static __inline__ int
281 1.8 briggs pdma_ready()
282 1.1 briggs {
283 1.11 briggs #if USE_PDMA
284 1.11 briggs SC_REQ *reqp = connected;
285 1.11 briggs int dmstat, idstat;
286 1.11 briggs extern u_char ncr5380_no_parchk;
287 1.11 briggs
288 1.18 briggs PID("pdma_ready0");
289 1.4 briggs if (pdma_5380_dir) {
290 1.18 briggs PID("pdma_ready1.")
291 1.1 briggs /*
292 1.1 briggs * If Mr. IRQ isn't set one might wonder how we got
293 1.1 briggs * here. It does happen, though.
294 1.1 briggs */
295 1.11 briggs dmstat = GET_5380_REG(NCR5380_DMSTAT);
296 1.11 briggs if (!(dmstat & SC_IRQ_SET)) {
297 1.18 briggs PID("pdma_ready2");
298 1.3 briggs return 0;
299 1.1 briggs }
300 1.1 briggs /*
301 1.1 briggs * For a phase mis-match, ATN is a "don't care," IRQ is 1 and
302 1.1 briggs * all other bits in the Bus & Status Register are 0. Also,
303 1.1 briggs * the current SCSI Bus Status Register has a 1 for BSY and
304 1.1 briggs * REQ. Since we're just checking that this interrupt isn't a
305 1.1 briggs * reselection or a reset, we just check for either.
306 1.1 briggs */
307 1.11 briggs idstat = GET_5380_REG(NCR5380_IDSTAT);
308 1.11 briggs if ( ((dmstat & (0xff & ~SC_ATN_STAT)) == SC_IRQ_SET)
309 1.11 briggs && ((idstat & (SC_S_BSY|SC_S_REQ))
310 1.11 briggs == (SC_S_BSY | SC_S_REQ)) ) {
311 1.18 briggs PID("pdma_ready3");
312 1.11 briggs pdma_cleanup();
313 1.11 briggs return 1;
314 1.11 briggs } else if (PH_IN(reqp->phase) && (dmstat & SC_PAR_ERR)) {
315 1.11 briggs if (!(ncr5380_no_parchk & (1 << reqp->targ_id)))
316 1.11 briggs /* XXX: Should be parity error ???? */
317 1.11 briggs reqp->xs->error = XS_DRIVER_STUFFUP;
318 1.18 briggs PID("pdma_ready4");
319 1.11 briggs /* XXX: is this the right reaction? */
320 1.11 briggs pdma_cleanup();
321 1.11 briggs return 1;
322 1.11 briggs } else if ( !(idstat & SC_S_REQ)
323 1.11 briggs || (((idstat>>2) & 7) != reqp->phase)) {
324 1.11 briggs #ifdef DIAGNOSTIC
325 1.11 briggs /* XXX: is this the right reaction? Can this happen? */
326 1.11 briggs scsi_show();
327 1.11 briggs printf("Unexpected phase change.\n");
328 1.11 briggs #endif
329 1.11 briggs reqp->xs->error = XS_DRIVER_STUFFUP;
330 1.2 briggs pdma_cleanup();
331 1.3 briggs return 1;
332 1.2 briggs } else {
333 1.2 briggs scsi_show();
334 1.2 briggs panic("Spurious interrupt during PDMA xfer.\n");
335 1.1 briggs }
336 1.18 briggs } else
337 1.18 briggs PID("pdma_ready5");
338 1.11 briggs #endif
339 1.3 briggs return 0;
340 1.3 briggs }
341 1.3 briggs
342 1.3 briggs void
343 1.6 briggs ncr5380_irq_intr(p)
344 1.6 briggs void *p;
345 1.3 briggs {
346 1.6 briggs struct ncr_softc *sc = p;
347 1.6 briggs
348 1.18 briggs PID("irq");
349 1.11 briggs #if USE_PDMA
350 1.8 briggs if (pdma_ready()) {
351 1.3 briggs return;
352 1.1 briggs }
353 1.11 briggs #endif
354 1.1 briggs if (GET_5380_REG(NCR5380_DMSTAT) & SC_IRQ_SET) {
355 1.1 briggs scsi_idisable();
356 1.1 briggs ncr_ctrl_intr(cur_softc);
357 1.1 briggs }
358 1.1 briggs }
359 1.1 briggs
360 1.4 briggs /*
361 1.10 briggs * This is the meat of the PDMA transfer.
362 1.10 briggs * When we get here, we shove data as fast as the mac can take it.
363 1.10 briggs * We depend on several things:
364 1.10 briggs * * All macs after the Mac Plus that have a 5380 chip should have a general
365 1.10 briggs * logic IC that handshakes data for blind transfers.
366 1.10 briggs * * If the SCSI controller finishes sending/receiving data before we do,
367 1.10 briggs * the same general logic IC will generate a /BERR for us in short order.
368 1.10 briggs * * The fault address for said /BERR minus the base address for the
369 1.10 briggs * transfer will be the amount of data that was actually written.
370 1.10 briggs *
371 1.10 briggs * We use the nofault flag and the setjmp/longjmp in locore.s so we can
372 1.10 briggs * detect and handle the bus error for early termination of a command.
373 1.10 briggs * This is usually caused by a disconnecting target.
374 1.4 briggs */
375 1.1 briggs void
376 1.6 briggs ncr5380_drq_intr(p)
377 1.6 briggs void *p;
378 1.1 briggs {
379 1.10 briggs #if USE_PDMA
380 1.10 briggs extern int *nofault, mac68k_buserr_addr;
381 1.6 briggs struct ncr_softc *sc = p;
382 1.10 briggs label_t faultbuf;
383 1.10 briggs register int count;
384 1.10 briggs volatile u_int32_t *long_drq;
385 1.10 briggs u_int32_t *long_data;
386 1.10 briggs volatile u_int8_t *drq;
387 1.10 briggs u_int8_t *data;
388 1.10 briggs
389 1.10 briggs /*
390 1.10 briggs * If we're not ready to xfer data, just return.
391 1.10 briggs */
392 1.10 briggs if ( !(GET_5380_REG(NCR5380_DMSTAT) & SC_DMA_REQ)
393 1.17 briggs || !pdma_5380_dir) {
394 1.18 briggs PID("drq0");
395 1.17 briggs return;
396 1.17 briggs }
397 1.17 briggs
398 1.17 briggs /*
399 1.17 briggs * I don't think this should be necessary, but it is
400 1.17 briggs * for writes--at least to some devices. They don't
401 1.17 briggs * let go of PH_DATAOUT until we do pdma_cleanup().
402 1.17 briggs */
403 1.17 briggs if (pending_5380_count == 0) {
404 1.18 briggs #if DBG_PID
405 1.18 briggs if (pdma_5380_dir == 2) {
406 1.18 briggs PID("drq1 (in)");
407 1.18 briggs } else {
408 1.18 briggs PID("drq1 (out)");
409 1.18 briggs }
410 1.17 briggs #endif
411 1.17 briggs pdma_cleanup();
412 1.10 briggs return;
413 1.17 briggs }
414 1.4 briggs
415 1.18 briggs #if DBG_PID
416 1.18 briggs if (pdma_5380_dir == 2) {
417 1.18 briggs PID("drq (in)");
418 1.18 briggs } else {
419 1.18 briggs PID("drq (out)");
420 1.18 briggs }
421 1.1 briggs #endif
422 1.10 briggs
423 1.10 briggs /*
424 1.10 briggs * Setup for a possible bus error caused by SCSI controller
425 1.10 briggs * switching out of DATA-IN/OUT before we're done with the
426 1.10 briggs * current transfer.
427 1.10 briggs */
428 1.10 briggs nofault = (int *) &faultbuf;
429 1.10 briggs
430 1.10 briggs if (setjmp((label_t *) nofault)) {
431 1.18 briggs PID("drq berr");
432 1.10 briggs nofault = (int *) 0;
433 1.10 briggs count = ( (u_long) mac68k_buserr_addr
434 1.10 briggs - (u_long) ncr_5380_with_drq);
435 1.10 briggs if ((count < 0) || (count > pending_5380_count)) {
436 1.15 briggs printf("pdma %s: count = %d (0x%x) (pending "
437 1.15 briggs "count %d)\n",
438 1.15 briggs (pdma_5380_dir == 2) ? "in" : "out",
439 1.15 briggs count, count, pending_5380_count);
440 1.10 briggs panic("something is wrong");
441 1.10 briggs }
442 1.10 briggs
443 1.10 briggs pending_5380_data += count;
444 1.10 briggs pending_5380_count -= count;
445 1.10 briggs
446 1.18 briggs PID("end drq early");
447 1.10 briggs mac68k_buserr_addr = 0;
448 1.10 briggs return;
449 1.10 briggs }
450 1.10 briggs
451 1.4 briggs if (pdma_5380_dir == 2) { /* Data In */
452 1.10 briggs int resid;
453 1.10 briggs
454 1.10 briggs /*
455 1.10 briggs * Get the dest address aligned.
456 1.10 briggs */
457 1.17 briggs resid = count = min(pending_5380_count,
458 1.17 briggs 4 - (((int) pending_5380_data) & 0x3));
459 1.17 briggs if (count && (count < 4)) {
460 1.10 briggs data = (u_int8_t *) pending_5380_data;
461 1.10 briggs drq = (u_int8_t *) ncr_5380_with_drq;
462 1.10 briggs while (count) {
463 1.10 briggs #define R1 *data++ = *drq++
464 1.10 briggs R1; count--;
465 1.10 briggs #undef R1
466 1.10 briggs }
467 1.10 briggs pending_5380_data += resid;
468 1.10 briggs pending_5380_count -= resid;
469 1.10 briggs }
470 1.10 briggs
471 1.4 briggs /*
472 1.10 briggs * Get ready to start the transfer.
473 1.4 briggs */
474 1.11 briggs while (pending_5380_count) {
475 1.11 briggs int dcount;
476 1.11 briggs
477 1.11 briggs dcount = count = min(pending_5380_count, MIN_PHYS);
478 1.10 briggs long_drq = (volatile u_int32_t *) ncr_5380_with_drq;
479 1.13 briggs long_data = (u_int32_t *) pending_5380_data;
480 1.10 briggs
481 1.10 briggs #define R4 *long_data++ = *long_drq++
482 1.10 briggs while ( count >= 512 ) {
483 1.10 briggs if (!(GET_5380_REG(NCR5380_DMSTAT) & SC_DMA_REQ)) {
484 1.10 briggs nofault = (int *) 0;
485 1.10 briggs
486 1.14 briggs pending_5380_data += (dcount - count);
487 1.14 briggs pending_5380_count -= (dcount - count);
488 1.4 briggs return;
489 1.4 briggs }
490 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
491 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4; /* 64 */
492 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
493 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4; /* 128 */
494 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
495 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
496 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
497 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4; /* 256 */
498 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
499 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
500 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
501 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
502 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
503 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
504 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4;
505 1.10 briggs R4; R4; R4; R4; R4; R4; R4; R4; /* 512 */
506 1.10 briggs count -= 512;
507 1.10 briggs }
508 1.10 briggs while (count >= 4) {
509 1.10 briggs R4; count -= 4;
510 1.10 briggs }
511 1.10 briggs #undef R4
512 1.10 briggs data = (u_int8_t *) long_data;
513 1.10 briggs drq = (u_int8_t *) long_drq;
514 1.10 briggs while (count) {
515 1.10 briggs #define R1 *data++ = *drq++
516 1.10 briggs R1; count--;
517 1.10 briggs #undef R1
518 1.10 briggs }
519 1.11 briggs pending_5380_count -= dcount;
520 1.13 briggs pending_5380_data += dcount;
521 1.11 briggs }
522 1.10 briggs } else {
523 1.10 briggs int resid;
524 1.10 briggs
525 1.10 briggs /*
526 1.10 briggs * Get the source address aligned.
527 1.10 briggs */
528 1.17 briggs resid = count = min(pending_5380_count,
529 1.17 briggs 4 - (((int) pending_5380_data) & 0x3));
530 1.17 briggs if (count && (count < 4)) {
531 1.10 briggs data = (u_int8_t *) pending_5380_data;
532 1.10 briggs drq = (u_int8_t *) ncr_5380_with_drq;
533 1.10 briggs while (count) {
534 1.10 briggs #define W1 *drq++ = *data++
535 1.10 briggs W1; count--;
536 1.10 briggs #undef W1
537 1.10 briggs }
538 1.10 briggs pending_5380_data += resid;
539 1.10 briggs pending_5380_count -= resid;
540 1.10 briggs }
541 1.10 briggs
542 1.4 briggs /*
543 1.10 briggs * Get ready to start the transfer.
544 1.4 briggs */
545 1.11 briggs while (pending_5380_count) {
546 1.11 briggs int dcount;
547 1.11 briggs
548 1.11 briggs dcount = count = min(pending_5380_count, MIN_PHYS);
549 1.10 briggs long_drq = (volatile u_int32_t *) ncr_5380_with_drq;
550 1.13 briggs long_data = (u_int32_t *) pending_5380_data;
551 1.10 briggs
552 1.10 briggs #define W4 *long_drq++ = *long_data++
553 1.10 briggs while ( count >= 64 ) {
554 1.10 briggs W4; W4; W4; W4; W4; W4; W4; W4;
555 1.11 briggs W4; W4; W4; W4; W4; W4; W4; W4; /* 64 */
556 1.10 briggs count -= 64;
557 1.10 briggs }
558 1.10 briggs while (count >= 4) {
559 1.10 briggs W4; count -= 4;
560 1.10 briggs }
561 1.10 briggs #undef W4
562 1.10 briggs data = (u_int8_t *) long_data;
563 1.10 briggs drq = (u_int8_t *) long_drq;
564 1.10 briggs while (count) {
565 1.10 briggs #define W1 *drq++ = *data++
566 1.10 briggs W1; count--;
567 1.11 briggs #undef W1
568 1.11 briggs }
569 1.11 briggs pending_5380_count -= dcount;
570 1.13 briggs pending_5380_data += dcount;
571 1.4 briggs }
572 1.10 briggs }
573 1.10 briggs
574 1.10 briggs /*
575 1.10 briggs * OK. No bus error occurred above. Clear the nofault flag
576 1.10 briggs * so we no longer short-circuit bus errors.
577 1.10 briggs */
578 1.10 briggs nofault = (int *) 0;
579 1.10 briggs
580 1.18 briggs PID("end drq");
581 1.4 briggs #endif /* if USE_PDMA */
582 1.1 briggs }
583 1.1 briggs
584 1.4 briggs #if USE_PDMA
585 1.4 briggs
586 1.1 briggs #define SCSI_TIMEOUT_VAL 10000000
587 1.1 briggs
588 1.1 briggs static int
589 1.1 briggs transfer_pdma(phasep, data, count)
590 1.1 briggs u_char *phasep;
591 1.1 briggs u_char *data;
592 1.1 briggs u_long *count;
593 1.1 briggs {
594 1.1 briggs SC_REQ *reqp = connected;
595 1.1 briggs int len = *count, i, scsi_timeout = SCSI_TIMEOUT_VAL;
596 1.1 briggs int s, err;
597 1.1 briggs
598 1.4 briggs if (pdma_5380_dir) {
599 1.1 briggs panic("ncrscsi: transfer_pdma called when operation already "
600 1.1 briggs "pending.\n");
601 1.1 briggs }
602 1.18 briggs PID("transfer_pdma0")
603 1.1 briggs
604 1.2 briggs /*
605 1.10 briggs * Don't bother with PDMA if we can't sleep or for small transfers.
606 1.2 briggs */
607 1.9 briggs if (reqp->dr_flag & DRIVER_NOINT) {
608 1.18 briggs PID("pdma, falling back to transfer_pio.")
609 1.7 briggs transfer_pio(phasep, data, count, 0);
610 1.2 briggs return -1;
611 1.1 briggs }
612 1.1 briggs
613 1.1 briggs /*
614 1.10 briggs * We are probably already at spl2(), so this is likely a no-op.
615 1.10 briggs * Paranoia.
616 1.1 briggs */
617 1.10 briggs s = splbio();
618 1.10 briggs
619 1.10 briggs scsi_idisable();
620 1.2 briggs
621 1.2 briggs /*
622 1.10 briggs * Match phases with target.
623 1.2 briggs */
624 1.10 briggs SET_5380_REG(NCR5380_TCOM, *phasep);
625 1.2 briggs
626 1.2 briggs /*
627 1.2 briggs * Clear pending interrupts.
628 1.2 briggs */
629 1.1 briggs scsi_clr_ipend();
630 1.1 briggs
631 1.1 briggs /*
632 1.1 briggs * Wait until target asserts BSY.
633 1.1 briggs */
634 1.10 briggs while ( ((GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY) == 0)
635 1.10 briggs && (--scsi_timeout) );
636 1.1 briggs if (!scsi_timeout) {
637 1.1 briggs #if DIAGNOSTIC
638 1.1 briggs printf("scsi timeout: waiting for BSY in %s.\n",
639 1.10 briggs (*phasep == PH_DATAOUT) ? "pdma_out" : "pdma_in");
640 1.1 briggs #endif
641 1.1 briggs goto scsi_timeout_error;
642 1.1 briggs }
643 1.1 briggs
644 1.1 briggs /*
645 1.2 briggs * Tell the driver that we're in DMA mode.
646 1.2 briggs */
647 1.2 briggs reqp->dr_flag |= DRIVER_IN_DMA;
648 1.2 briggs
649 1.2 briggs /*
650 1.4 briggs * Load transfer values for DRQ interrupt handlers.
651 1.1 briggs */
652 1.4 briggs pending_5380_data = data;
653 1.1 briggs pending_5380_count = len;
654 1.1 briggs
655 1.1 briggs /*
656 1.1 briggs * Set the transfer function to be called on DRQ interrupts.
657 1.2 briggs * And note that we're waiting.
658 1.1 briggs */
659 1.4 briggs switch (*phasep) {
660 1.4 briggs default:
661 1.4 briggs panic("Unexpected phase in transfer_pdma.\n");
662 1.4 briggs case PH_DATAOUT:
663 1.4 briggs pdma_5380_dir = 1;
664 1.17 briggs SET_5380_REG(NCR5380_ICOM, GET_5380_REG(NCR5380_ICOM)|SC_ADTB);
665 1.17 briggs SET_5380_REG(NCR5380_MODE, GET_5380_REG(NCR5380_MODE)|SC_M_DMA);
666 1.10 briggs SET_5380_REG(NCR5380_DMSTAT, 0);
667 1.4 briggs break;
668 1.4 briggs case PH_DATAIN:
669 1.4 briggs pdma_5380_dir = 2;
670 1.17 briggs SET_5380_REG(NCR5380_ICOM, 0);
671 1.17 briggs SET_5380_REG(NCR5380_MODE, GET_5380_REG(NCR5380_MODE)|SC_M_DMA);
672 1.10 briggs SET_5380_REG(NCR5380_IRCV, 0);
673 1.4 briggs break;
674 1.1 briggs }
675 1.17 briggs
676 1.18 briggs PID("waiting for interrupt.")
677 1.1 briggs
678 1.1 briggs /*
679 1.1 briggs * Now that we're set up, enable interrupts and drop processor
680 1.2 briggs * priority back down.
681 1.1 briggs */
682 1.1 briggs scsi_ienable();
683 1.1 briggs splx(s);
684 1.2 briggs return 0;
685 1.1 briggs
686 1.1 briggs scsi_timeout_error:
687 1.1 briggs /*
688 1.1 briggs * Clear the DMA mode.
689 1.1 briggs */
690 1.1 briggs SET_5380_REG(NCR5380_MODE, GET_5380_REG(NCR5380_MODE) & ~SC_M_DMA);
691 1.1 briggs return -1;
692 1.1 briggs }
693 1.1 briggs #endif /* if USE_PDMA */
694 1.1 briggs
695 1.1 briggs /* Include general routines. */
696 1.5 briggs #include <mac68k/dev/ncr5380.c>
697