cbiisc.c revision 1.24.16.1 1 /* $NetBSD: cbiisc.c,v 1.24.16.1 2007/09/03 16:47:09 jmcneill Exp $ */
2
3 /*
4 * Copyright (c) 1997 Michael L. Hitch
5 * Copyright (c) 1982, 1990 The Regents of the University of California.
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. All advertising materials mentioning features or use of this software
17 * must display the following acknowledgement:
18 * This product contains software written by Michael L. Hitch for
19 * the NetBSD project.
20 * 4. Neither the name of the University nor the names of its contributors
21 * may be used to endorse or promote products derived from this software
22 * without specific prior written permission.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 * SUCH DAMAGE.
35 *
36 */
37
38 #include <sys/cdefs.h>
39 __KERNEL_RCSID(0, "$NetBSD: cbiisc.c,v 1.24.16.1 2007/09/03 16:47:09 jmcneill Exp $");
40
41 #include <sys/types.h>
42 #include <sys/param.h>
43 #include <sys/systm.h>
44 #include <sys/kernel.h>
45 #include <sys/errno.h>
46 #include <sys/ioctl.h>
47 #include <sys/device.h>
48 #include <sys/buf.h>
49 #include <sys/proc.h>
50 #include <sys/user.h>
51 #include <sys/queue.h>
52
53 #include <uvm/uvm_extern.h>
54
55 #include <dev/scsipi/scsi_all.h>
56 #include <dev/scsipi/scsipi_all.h>
57 #include <dev/scsipi/scsiconf.h>
58 #include <dev/scsipi/scsi_message.h>
59
60 #include <machine/cpu.h>
61 #include <machine/param.h>
62
63 #include <dev/ic/ncr53c9xreg.h>
64 #include <dev/ic/ncr53c9xvar.h>
65
66 #include <amiga/amiga/isr.h>
67 #include <amiga/dev/cbiiscvar.h>
68 #include <amiga/dev/zbusvar.h>
69
70 #ifdef __powerpc__
71 #define badaddr(a) badaddr_read(a, 2, NULL)
72 #endif
73
74 void cbiiscattach(struct device *, struct device *, void *);
75 int cbiiscmatch(struct device *, struct cfdata *, void *);
76
77 /* Linkup to the rest of the kernel */
78 CFATTACH_DECL(cbiisc, sizeof(struct cbiisc_softc),
79 cbiiscmatch, cbiiscattach, NULL, NULL);
80
81 /*
82 * Functions and the switch for the MI code.
83 */
84 u_char cbiisc_read_reg(struct ncr53c9x_softc *, int);
85 void cbiisc_write_reg(struct ncr53c9x_softc *, int, u_char);
86 int cbiisc_dma_isintr(struct ncr53c9x_softc *);
87 void cbiisc_dma_reset(struct ncr53c9x_softc *);
88 int cbiisc_dma_intr(struct ncr53c9x_softc *);
89 int cbiisc_dma_setup(struct ncr53c9x_softc *, void **,
90 size_t *, int, size_t *);
91 void cbiisc_dma_go(struct ncr53c9x_softc *);
92 void cbiisc_dma_stop(struct ncr53c9x_softc *);
93 int cbiisc_dma_isactive(struct ncr53c9x_softc *);
94
95 struct ncr53c9x_glue cbiisc_glue = {
96 cbiisc_read_reg,
97 cbiisc_write_reg,
98 cbiisc_dma_isintr,
99 cbiisc_dma_reset,
100 cbiisc_dma_intr,
101 cbiisc_dma_setup,
102 cbiisc_dma_go,
103 cbiisc_dma_stop,
104 cbiisc_dma_isactive,
105 0,
106 };
107
108 /* Maximum DMA transfer length to reduce impact on high-speed serial input */
109 u_long cbiisc_max_dma = 1024;
110 extern int ser_open_speed;
111
112 u_long cbiisc_cnt_pio = 0; /* number of PIO transfers */
113 u_long cbiisc_cnt_dma = 0; /* number of DMA transfers */
114 u_long cbiisc_cnt_dma2 = 0; /* number of DMA transfers broken up */
115 u_long cbiisc_cnt_dma3 = 0; /* number of pages combined */
116
117 #ifdef DEBUG
118 struct {
119 u_char hardbits;
120 u_char status;
121 u_char xx;
122 u_char yy;
123 } cbiisc_trace[128];
124 int cbiisc_trace_ptr = 0;
125 int cbiisc_trace_enable = 1;
126 void cbiisc_dump(void);
127 #endif
128
129 /*
130 * if we are a Phase5 CyberSCSI II
131 */
132 int
133 cbiiscmatch(struct device *parent, struct cfdata *cf, void *aux)
134 {
135 struct zbus_args *zap;
136 volatile u_char *regs;
137
138 zap = aux;
139 if (zap->manid != 0x2140 || zap->prodid != 25)
140 return(0);
141 regs = &((volatile u_char *)zap->va)[0x1ff03];
142 if (badaddr((void *)__UNVOLATILE(regs)))
143 return(0);
144 regs[NCR_CFG1 * 4] = 0;
145 regs[NCR_CFG1 * 4] = NCRCFG1_PARENB | 7;
146 delay(5);
147 if (regs[NCR_CFG1 * 4] != (NCRCFG1_PARENB | 7))
148 return(0);
149 return(1);
150 }
151
152 /*
153 * Attach this instance, and then all the sub-devices
154 */
155 void
156 cbiiscattach(struct device *parent, struct device *self, void *aux)
157 {
158 struct cbiisc_softc *csc = (void *)self;
159 struct ncr53c9x_softc *sc = &csc->sc_ncr53c9x;
160 struct zbus_args *zap;
161 extern u_long scsi_nosync;
162 extern int shift_nosync;
163 extern int ncr53c9x_debug;
164
165 /*
166 * Set up the glue for MI code early; we use some of it here.
167 */
168 sc->sc_glue = &cbiisc_glue;
169
170 /*
171 * Save the regs
172 */
173 zap = aux;
174 csc->sc_reg = &((volatile u_char *)zap->va)[0x1ff03];
175 csc->sc_dmabase = &csc->sc_reg[0x80];
176
177 sc->sc_freq = 40; /* Clocked at 40 MHz */
178
179 printf(": address %p", csc->sc_reg);
180
181 sc->sc_id = 7;
182
183 /*
184 * It is necessary to try to load the 2nd config register here,
185 * to find out what rev the FAS chip is, else the ncr53c9x_reset
186 * will not set up the defaults correctly.
187 */
188 sc->sc_cfg1 = sc->sc_id | NCRCFG1_PARENB;
189 sc->sc_cfg2 = NCRCFG2_SCSI2 | NCRCFG2_FE;
190 sc->sc_cfg3 = 0x08 /*FCLK*/ | NCRESPCFG3_FSCSI | NCRESPCFG3_CDB;
191 sc->sc_rev = NCR_VARIANT_FAS216;
192
193 /*
194 * This is the value used to start sync negotiations
195 * Note that the NCR register "SYNCTP" is programmed
196 * in "clocks per byte", and has a minimum value of 4.
197 * The SCSI period used in negotiation is one-fourth
198 * of the time (in nanoseconds) needed to transfer one byte.
199 * Since the chip's clock is given in MHz, we have the following
200 * formula: 4 * period = (1000 / freq) * 4
201 */
202 sc->sc_minsync = 1000 / sc->sc_freq;
203
204 /*
205 * get flags from -I argument and set cf_flags.
206 * NOTE: low 8 bits are to disable disconnect, and the next
207 * 8 bits are to disable sync.
208 */
209 device_cfdata(&sc->sc_dev)->cf_flags |= (scsi_nosync >> shift_nosync)
210 & 0xffff;
211 shift_nosync += 16;
212
213 /* Use next 16 bits of -I argument to set ncr53c9x_debug flags */
214 ncr53c9x_debug |= (scsi_nosync >> shift_nosync) & 0xffff;
215 shift_nosync += 16;
216
217 #if 1
218 if (((scsi_nosync >> shift_nosync) & 0xff00) == 0xff00)
219 sc->sc_minsync = 0;
220 #endif
221
222 /* Really no limit, but since we want to fit into the TCR... */
223 sc->sc_maxxfer = 64 * 1024;
224
225 /*
226 * Configure interrupts.
227 */
228 csc->sc_isr.isr_intr = ncr53c9x_intr;
229 csc->sc_isr.isr_arg = sc;
230 csc->sc_isr.isr_ipl = 2;
231 add_isr(&csc->sc_isr);
232
233 /*
234 * Now try to attach all the sub-devices
235 */
236 sc->sc_adapter.adapt_request = ncr53c9x_scsipi_request;
237 sc->sc_adapter.adapt_minphys = minphys;
238 ncr53c9x_attach(sc);
239 }
240
241 /*
242 * Glue functions.
243 */
244
245 u_char
246 cbiisc_read_reg(struct ncr53c9x_softc *sc, int reg)
247 {
248 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
249
250 return csc->sc_reg[reg * 4];
251 }
252
253 void
254 cbiisc_write_reg(struct ncr53c9x_softc *sc, int reg, u_char val)
255 {
256 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
257 u_char v = val;
258
259 csc->sc_reg[reg * 4] = v;
260 #ifdef DEBUG
261 if (cbiisc_trace_enable/* && sc->sc_nexus && sc->sc_nexus->xs->xs_control & XS_CTL_POLL*/ &&
262 reg == NCR_CMD/* && csc->sc_active*/) {
263 cbiisc_trace[(cbiisc_trace_ptr - 1) & 127].yy = v;
264 /* printf(" cmd %x", v);*/
265 }
266 #endif
267 }
268
269 int
270 cbiisc_dma_isintr(struct ncr53c9x_softc *sc)
271 {
272 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
273
274 if ((csc->sc_reg[NCR_STAT * 4] & NCRSTAT_INT) == 0)
275 return 0;
276
277 if (sc->sc_state == NCR_CONNECTED)
278 csc->sc_reg[0x40] = CBIISC_PB_LED;
279 else
280 csc->sc_reg[0x40] = 0;
281
282 #ifdef DEBUG
283 if (/*sc->sc_nexus && sc->sc_nexus->xs->xs_control & XS_CTL_POLL &&*/ cbiisc_trace_enable) {
284 cbiisc_trace[cbiisc_trace_ptr].status = csc->sc_reg[NCR_STAT * 4];
285 cbiisc_trace[cbiisc_trace_ptr].xx = csc->sc_reg[NCR_CMD * 4];
286 cbiisc_trace[cbiisc_trace_ptr].yy = csc->sc_active;
287 cbiisc_trace_ptr = (cbiisc_trace_ptr + 1) & 127;
288 }
289 #endif
290 return 1;
291 }
292
293 void
294 cbiisc_dma_reset(struct ncr53c9x_softc *sc)
295 {
296 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
297
298 csc->sc_active = 0;
299 }
300
301 int
302 cbiisc_dma_intr(struct ncr53c9x_softc *sc)
303 {
304 register struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
305 register int cnt;
306
307 NCR_DMA(("cbiisc_dma_intr: cnt %d int %x stat %x fifo %d ",
308 csc->sc_dmasize, sc->sc_espintr, sc->sc_espstat,
309 csc->sc_reg[NCR_FFLAG * 4] & NCRFIFO_FF));
310 if (csc->sc_active == 0) {
311 printf("cbiisc_intr--inactive DMA\n");
312 return -1;
313 }
314
315 /* update sc_dmaaddr and sc_pdmalen */
316 cnt = csc->sc_reg[NCR_TCL * 4];
317 cnt += csc->sc_reg[NCR_TCM * 4] << 8;
318 cnt += csc->sc_reg[NCR_TCH * 4] << 16;
319 if (!csc->sc_datain) {
320 cnt += csc->sc_reg[NCR_FFLAG * 4] & NCRFIFO_FF;
321 csc->sc_reg[NCR_CMD * 4] = NCRCMD_FLUSH;
322 }
323 cnt = csc->sc_dmasize - cnt; /* number of bytes transferred */
324 NCR_DMA(("DMA xferred %d\n", cnt));
325 if (csc->sc_xfr_align) {
326 bcopy(csc->sc_alignbuf, *csc->sc_dmaaddr, cnt);
327 csc->sc_xfr_align = 0;
328 }
329 *csc->sc_dmaaddr += cnt;
330 *csc->sc_pdmalen -= cnt;
331 csc->sc_active = 0;
332 return 0;
333 }
334
335 int
336 cbiisc_dma_setup(struct ncr53c9x_softc *sc, void **addr, size_t *len,
337 int datain, size_t *dmasize)
338 {
339 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
340 paddr_t pa;
341 u_char *ptr;
342 size_t xfer;
343
344 csc->sc_dmaaddr = (char **)addr;
345 csc->sc_pdmalen = len;
346 csc->sc_datain = datain;
347 csc->sc_dmasize = *dmasize;
348 /*
349 * DMA can be nasty for high-speed serial input, so limit the
350 * size of this DMA operation if the serial port is running at
351 * a high speed (higher than 19200 for now - should be adjusted
352 * based on CPU type and speed?).
353 * XXX - add serial speed check XXX
354 */
355 if (ser_open_speed > 19200 && cbiisc_max_dma != 0 &&
356 csc->sc_dmasize > cbiisc_max_dma)
357 csc->sc_dmasize = cbiisc_max_dma;
358 ptr = *addr; /* Kernel virtual address */
359 pa = kvtop(ptr); /* Physical address of DMA */
360 xfer = min(csc->sc_dmasize, PAGE_SIZE - (pa & (PAGE_SIZE - 1)));
361 csc->sc_xfr_align = 0;
362 /*
363 * If output and unaligned, stuff odd byte into FIFO
364 */
365 if (datain == 0 && (int)ptr & 1) {
366 NCR_DMA(("cbiisc_dma_setup: align byte written to fifo\n"));
367 pa++;
368 xfer--; /* XXXX CHECK THIS !!!! XXXX */
369 csc->sc_reg[NCR_FIFO * 4] = *ptr++;
370 }
371 /*
372 * If unaligned address, read unaligned bytes into alignment buffer
373 */
374 else if ((int)ptr & 1) {
375 pa = kvtop((void *)&csc->sc_alignbuf);
376 xfer = csc->sc_dmasize = min(xfer, sizeof (csc->sc_alignbuf));
377 NCR_DMA(("cbiisc_dma_setup: align read by %d bytes\n", xfer));
378 csc->sc_xfr_align = 1;
379 }
380 ++cbiisc_cnt_dma; /* number of DMA operations */
381
382 while (xfer < csc->sc_dmasize) {
383 if ((pa + xfer) != kvtop((char*)*addr + xfer))
384 break;
385 if ((csc->sc_dmasize - xfer) < PAGE_SIZE)
386 xfer = csc->sc_dmasize;
387 else
388 xfer += PAGE_SIZE;
389 ++cbiisc_cnt_dma3;
390 }
391 if (xfer != *len)
392 ++cbiisc_cnt_dma2;
393
394 csc->sc_dmasize = xfer;
395 *dmasize = csc->sc_dmasize;
396 csc->sc_pa = pa;
397 #if defined(M68040) || defined(M68060)
398 if (mmutype == MMU_68040) {
399 if (csc->sc_xfr_align) {
400 dma_cachectl(csc->sc_alignbuf,
401 sizeof(csc->sc_alignbuf));
402 }
403 else
404 dma_cachectl(*csc->sc_dmaaddr, csc->sc_dmasize);
405 }
406 #endif
407
408 if (csc->sc_datain)
409 pa &= ~1;
410 else
411 pa |= 1;
412 csc->sc_dmabase[0] = (u_int8_t)(pa >> 24);
413 csc->sc_dmabase[4] = (u_int8_t)(pa >> 16);
414 csc->sc_dmabase[8] = (u_int8_t)(pa >> 8);
415 csc->sc_dmabase[12] = (u_int8_t)(pa);
416 csc->sc_active = 1;
417 return 0;
418 }
419
420 void
421 cbiisc_dma_go(struct ncr53c9x_softc *sc)
422 {
423 }
424
425 void
426 cbiisc_dma_stop(struct ncr53c9x_softc *sc)
427 {
428 }
429
430 int
431 cbiisc_dma_isactive(struct ncr53c9x_softc *sc)
432 {
433 struct cbiisc_softc *csc = (struct cbiisc_softc *)sc;
434
435 return csc->sc_active;
436 }
437
438 #ifdef DEBUG
439 void
440 cbiisc_dump(void)
441 {
442 int i;
443
444 i = cbiisc_trace_ptr;
445 printf("cbiisc_trace dump: ptr %x\n", cbiisc_trace_ptr);
446 do {
447 if (cbiisc_trace[i].hardbits == 0) {
448 i = (i + 1) & 127;
449 continue;
450 }
451 printf("%02x%02x%02x%02x(", cbiisc_trace[i].hardbits,
452 cbiisc_trace[i].status, cbiisc_trace[i].xx, cbiisc_trace[i].yy);
453 if (cbiisc_trace[i].status & NCRSTAT_INT)
454 printf("NCRINT/");
455 if (cbiisc_trace[i].status & NCRSTAT_TC)
456 printf("NCRTC/");
457 switch(cbiisc_trace[i].status & NCRSTAT_PHASE) {
458 case 0:
459 printf("dataout"); break;
460 case 1:
461 printf("datain"); break;
462 case 2:
463 printf("cmdout"); break;
464 case 3:
465 printf("status"); break;
466 case 6:
467 printf("msgout"); break;
468 case 7:
469 printf("msgin"); break;
470 default:
471 printf("phase%d?", cbiisc_trace[i].status & NCRSTAT_PHASE);
472 }
473 printf(") ");
474 i = (i + 1) & 127;
475 } while (i != cbiisc_trace_ptr);
476 printf("\n");
477 }
478 #endif
479