si_obio.c revision 1.39 1 1.39 tsutsui /* $NetBSD: si_obio.c,v 1.39 2024/12/20 23:52:00 tsutsui Exp $ */
2 1.1 gwr
3 1.7 gwr /*-
4 1.7 gwr * Copyright (c) 1996 The NetBSD Foundation, Inc.
5 1.1 gwr * All rights reserved.
6 1.1 gwr *
7 1.7 gwr * This code is derived from software contributed to The NetBSD Foundation
8 1.7 gwr * by Adam Glass, David Jones, and Gordon W. Ross.
9 1.7 gwr *
10 1.1 gwr * Redistribution and use in source and binary forms, with or without
11 1.1 gwr * modification, are permitted provided that the following conditions
12 1.1 gwr * are met:
13 1.1 gwr * 1. Redistributions of source code must retain the above copyright
14 1.1 gwr * notice, this list of conditions and the following disclaimer.
15 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 gwr * notice, this list of conditions and the following disclaimer in the
17 1.1 gwr * documentation and/or other materials provided with the distribution.
18 1.1 gwr *
19 1.7 gwr * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.7 gwr * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.7 gwr * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.9 gwr * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.9 gwr * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.7 gwr * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.7 gwr * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.7 gwr * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.7 gwr * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.7 gwr * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.7 gwr * POSSIBILITY OF SUCH DAMAGE.
30 1.1 gwr */
31 1.1 gwr
32 1.1 gwr /*
33 1.1 gwr * This file contains only the machine-dependent parts of the
34 1.1 gwr * Sun3 SCSI driver. (Autoconfig stuff and DMA functions.)
35 1.1 gwr * The machine-independent parts are in ncr5380sbc.c
36 1.1 gwr *
37 1.1 gwr * Supported hardware includes:
38 1.1 gwr * Sun SCSI-3 on OBIO (Sun3/50,Sun3/60)
39 1.1 gwr * Sun SCSI-3 on VME (Sun3/160,Sun3/260)
40 1.1 gwr *
41 1.1 gwr * Could be made to support the Sun3/E if someone wanted to.
42 1.1 gwr *
43 1.1 gwr * Note: Both supported variants of the Sun SCSI-3 adapter have
44 1.1 gwr * some really unusual "features" for this driver to deal with,
45 1.1 gwr * generally related to the DMA engine. The OBIO variant will
46 1.1 gwr * ignore any attempt to write the FIFO count register while the
47 1.1 gwr * SCSI bus is in DATA_IN or DATA_OUT phase. This is dealt with
48 1.1 gwr * by setting the FIFO count early in COMMAND or MSG_IN phase.
49 1.1 gwr *
50 1.1 gwr * The VME variant has a bit to enable or disable the DMA engine,
51 1.1 gwr * but that bit also gates the interrupt line from the NCR5380!
52 1.1 gwr * Therefore, in order to get any interrupt from the 5380, (i.e.
53 1.1 gwr * for reselect) one must clear the DMA engine transfer count and
54 1.1 gwr * then enable DMA. This has the further complication that you
55 1.1 gwr * CAN NOT touch the NCR5380 while the DMA enable bit is set, so
56 1.1 gwr * we have to turn DMA back off before we even look at the 5380.
57 1.1 gwr *
58 1.1 gwr * What wonderfully whacky hardware this is!
59 1.1 gwr *
60 1.1 gwr * Credits, history:
61 1.1 gwr *
62 1.1 gwr * David Jones wrote the initial version of this module, which
63 1.1 gwr * included support for the VME adapter only. (no reselection).
64 1.1 gwr *
65 1.1 gwr * Gordon Ross added support for the OBIO adapter, and re-worked
66 1.1 gwr * both the VME and OBIO code to support disconnect/reselect.
67 1.1 gwr * (Required figuring out the hardware "features" noted above.)
68 1.1 gwr *
69 1.1 gwr * The autoconfiguration boilerplate came from Adam Glass.
70 1.1 gwr */
71 1.1 gwr
72 1.1 gwr /*****************************************************************
73 1.1 gwr * OBIO functions for DMA
74 1.1 gwr ****************************************************************/
75 1.27 lukem
76 1.27 lukem #include <sys/cdefs.h>
77 1.39 tsutsui __KERNEL_RCSID(0, "$NetBSD: si_obio.c,v 1.39 2024/12/20 23:52:00 tsutsui Exp $");
78 1.1 gwr
79 1.1 gwr #include <sys/param.h>
80 1.1 gwr #include <sys/systm.h>
81 1.1 gwr #include <sys/errno.h>
82 1.1 gwr #include <sys/kernel.h>
83 1.1 gwr #include <sys/device.h>
84 1.1 gwr #include <sys/buf.h>
85 1.1 gwr #include <sys/proc.h>
86 1.1 gwr
87 1.14 bouyer #include <dev/scsipi/scsi_all.h>
88 1.14 bouyer #include <dev/scsipi/scsipi_all.h>
89 1.14 bouyer #include <dev/scsipi/scsipi_debug.h>
90 1.14 bouyer #include <dev/scsipi/scsiconf.h>
91 1.1 gwr
92 1.1 gwr #include <machine/autoconf.h>
93 1.1 gwr #include <machine/dvma.h>
94 1.1 gwr
95 1.18 gwr /* #define DEBUG XXX */
96 1.1 gwr
97 1.1 gwr #include <dev/ic/ncr5380reg.h>
98 1.1 gwr #include <dev/ic/ncr5380var.h>
99 1.1 gwr
100 1.1 gwr #include "sireg.h"
101 1.1 gwr #include "sivar.h"
102 1.1 gwr #include "am9516.h"
103 1.1 gwr
104 1.1 gwr /*
105 1.1 gwr * How many uS. to delay after touching the am9516 UDC.
106 1.1 gwr */
107 1.1 gwr #define UDC_WAIT_USEC 5
108 1.1 gwr
109 1.29 chs void si_obio_dma_setup(struct ncr5380_softc *);
110 1.29 chs void si_obio_dma_start(struct ncr5380_softc *);
111 1.29 chs void si_obio_dma_eop(struct ncr5380_softc *);
112 1.29 chs void si_obio_dma_stop(struct ncr5380_softc *);
113 1.29 chs
114 1.29 chs static void si_obio_reset(struct ncr5380_softc *);
115 1.29 chs
116 1.31 perry static inline void si_obio_udc_write(volatile struct si_regs *, int, int);
117 1.31 perry static inline int si_obio_udc_read(volatile struct si_regs *, int);
118 1.8 gwr
119 1.8 gwr
120 1.1 gwr /*
121 1.1 gwr * New-style autoconfig attachment
122 1.1 gwr */
123 1.1 gwr
124 1.34 tsutsui static int si_obio_match(device_t, cfdata_t, void *);
125 1.34 tsutsui static void si_obio_attach(device_t, device_t, void *);
126 1.1 gwr
127 1.34 tsutsui CFATTACH_DECL_NEW(si_obio, sizeof(struct si_softc),
128 1.25 thorpej si_obio_match, si_obio_attach, NULL, NULL);
129 1.1 gwr
130 1.10 gwr /*
131 1.11 gwr * Options for disconnect/reselect, DMA, and interrupts.
132 1.11 gwr * By default, allow disconnect/reselect on targets 4-6.
133 1.11 gwr * Those are normally tapes that really need it enabled.
134 1.10 gwr */
135 1.16 gwr int si_obio_options = 0x0f;
136 1.1 gwr
137 1.1 gwr
138 1.39 tsutsui static int
139 1.34 tsutsui si_obio_match(device_t parent, cfdata_t cf, void *aux)
140 1.1 gwr {
141 1.16 gwr struct confargs *ca = aux;
142 1.1 gwr
143 1.16 gwr /* Make sure something is there... */
144 1.5 gwr if (bus_peek(ca->ca_bustype, ca->ca_paddr + 1, 1) == -1)
145 1.34 tsutsui return 0;
146 1.1 gwr
147 1.5 gwr /* Default interrupt priority. */
148 1.5 gwr if (ca->ca_intpri == -1)
149 1.5 gwr ca->ca_intpri = 2;
150 1.1 gwr
151 1.34 tsutsui return 1;
152 1.1 gwr }
153 1.1 gwr
154 1.39 tsutsui static void
155 1.34 tsutsui si_obio_attach(device_t parent, device_t self, void *args)
156 1.1 gwr {
157 1.34 tsutsui struct si_softc *sc = device_private(self);
158 1.1 gwr struct ncr5380_softc *ncr_sc = &sc->ncr_sc;
159 1.32 thorpej struct cfdata *cf = device_cfdata(self);
160 1.1 gwr struct confargs *ca = args;
161 1.1 gwr
162 1.34 tsutsui ncr_sc->sc_dev = self;
163 1.33 tsutsui sc->sc_bst = ca->ca_bustag;
164 1.33 tsutsui sc->sc_dmat = ca->ca_dmatag;
165 1.33 tsutsui
166 1.33 tsutsui if (bus_space_map(sc->sc_bst, ca->ca_paddr, sizeof(struct si_regs), 0,
167 1.33 tsutsui &sc->sc_bsh) != 0) {
168 1.34 tsutsui aprint_error(": can't map register\n");
169 1.33 tsutsui return;
170 1.33 tsutsui }
171 1.33 tsutsui sc->sc_regs = bus_space_vaddr(sc->sc_bst, sc->sc_bsh);
172 1.33 tsutsui
173 1.33 tsutsui if (bus_dmamap_create(sc->sc_dmat, MAXPHYS, 1, MAXPHYS, 0,
174 1.33 tsutsui BUS_DMA_NOWAIT, &sc->sc_dmap) != 0) {
175 1.34 tsutsui aprint_error(": can't create DMA map\n");
176 1.33 tsutsui return;
177 1.33 tsutsui }
178 1.33 tsutsui
179 1.11 gwr /* Get options from config flags if specified. */
180 1.11 gwr if (cf->cf_flags)
181 1.11 gwr sc->sc_options = cf->cf_flags;
182 1.11 gwr else
183 1.11 gwr sc->sc_options = si_obio_options;
184 1.11 gwr
185 1.34 tsutsui aprint_normal(": options=0x%x\n", sc->sc_options);
186 1.1 gwr
187 1.1 gwr sc->sc_adapter_type = ca->ca_bustype;
188 1.1 gwr
189 1.1 gwr /*
190 1.1 gwr * MD function pointers used by the MI code.
191 1.1 gwr */
192 1.1 gwr ncr_sc->sc_pio_out = ncr5380_pio_out;
193 1.1 gwr ncr_sc->sc_pio_in = ncr5380_pio_in;
194 1.1 gwr ncr_sc->sc_dma_alloc = si_dma_alloc;
195 1.1 gwr ncr_sc->sc_dma_free = si_dma_free;
196 1.1 gwr ncr_sc->sc_dma_setup = si_obio_dma_setup;
197 1.1 gwr ncr_sc->sc_dma_start = si_obio_dma_start;
198 1.2 gwr ncr_sc->sc_dma_poll = si_dma_poll;
199 1.2 gwr ncr_sc->sc_dma_eop = si_obio_dma_eop;
200 1.1 gwr ncr_sc->sc_dma_stop = si_obio_dma_stop;
201 1.1 gwr ncr_sc->sc_intr_on = NULL;
202 1.1 gwr ncr_sc->sc_intr_off = NULL;
203 1.1 gwr
204 1.1 gwr /* Need DVMA-capable memory for the UDC command block. */
205 1.34 tsutsui sc->sc_dmacmd = dvma_malloc(sizeof(struct udc_table));
206 1.1 gwr
207 1.1 gwr /* Attach interrupt handler. */
208 1.5 gwr isr_add_autovect(si_intr, (void *)sc, ca->ca_intpri);
209 1.1 gwr
210 1.16 gwr /* Reset the hardware. */
211 1.16 gwr si_obio_reset(ncr_sc);
212 1.16 gwr
213 1.1 gwr /* Do the common attach stuff. */
214 1.1 gwr si_attach(sc);
215 1.1 gwr }
216 1.1 gwr
217 1.16 gwr static void
218 1.16 gwr si_obio_reset(struct ncr5380_softc *ncr_sc)
219 1.16 gwr {
220 1.16 gwr struct si_softc *sc = (struct si_softc *)ncr_sc;
221 1.16 gwr volatile struct si_regs *si = sc->sc_regs;
222 1.16 gwr
223 1.16 gwr #ifdef DEBUG
224 1.16 gwr if (si_debug) {
225 1.34 tsutsui printf("%s\n", __func__);
226 1.16 gwr }
227 1.16 gwr #endif
228 1.16 gwr
229 1.16 gwr /*
230 1.16 gwr * The SCSI3 controller has an 8K FIFO to buffer data between the
231 1.16 gwr * 5380 and the DMA. Make sure it starts out empty.
232 1.16 gwr *
233 1.16 gwr * The reset bits in the CSR are active low.
234 1.16 gwr */
235 1.16 gwr si->si_csr = 0;
236 1.16 gwr delay(10);
237 1.16 gwr si->si_csr = SI_CSR_FIFO_RES | SI_CSR_SCSI_RES | SI_CSR_INTR_EN;
238 1.16 gwr delay(10);
239 1.16 gwr si->fifo_count = 0;
240 1.16 gwr }
241 1.1 gwr
242 1.39 tsutsui static inline void
243 1.29 chs si_obio_udc_write(volatile struct si_regs *si, int regnum, int value)
244 1.1 gwr {
245 1.34 tsutsui
246 1.1 gwr si->udc_addr = regnum;
247 1.1 gwr delay(UDC_WAIT_USEC);
248 1.1 gwr si->udc_data = value;
249 1.1 gwr delay(UDC_WAIT_USEC);
250 1.1 gwr }
251 1.1 gwr
252 1.39 tsutsui static inline int
253 1.29 chs si_obio_udc_read(volatile struct si_regs *si, int regnum)
254 1.1 gwr {
255 1.1 gwr int value;
256 1.1 gwr
257 1.1 gwr si->udc_addr = regnum;
258 1.1 gwr delay(UDC_WAIT_USEC);
259 1.1 gwr value = si->udc_data;
260 1.1 gwr delay(UDC_WAIT_USEC);
261 1.1 gwr
262 1.34 tsutsui return value;
263 1.1 gwr }
264 1.1 gwr
265 1.1 gwr
266 1.1 gwr /*
267 1.1 gwr * This function is called during the COMMAND or MSG_IN phase
268 1.22 wiz * that precedes a DATA_IN or DATA_OUT phase, in case we need
269 1.1 gwr * to setup the DMA engine before the bus enters a DATA phase.
270 1.1 gwr *
271 1.1 gwr * The OBIO "si" IGNORES any attempt to set the FIFO count
272 1.1 gwr * register after the SCSI bus goes into any DATA phase, so
273 1.1 gwr * this function has to setup the evil FIFO logic.
274 1.1 gwr */
275 1.39 tsutsui void
276 1.29 chs si_obio_dma_setup(struct ncr5380_softc *ncr_sc)
277 1.1 gwr {
278 1.1 gwr struct si_softc *sc = (struct si_softc *)ncr_sc;
279 1.2 gwr struct sci_req *sr = ncr_sc->sc_current;
280 1.2 gwr struct si_dma_handle *dh = sr->sr_dma_hand;
281 1.1 gwr volatile struct si_regs *si = sc->sc_regs;
282 1.2 gwr struct udc_table *cmd;
283 1.2 gwr long data_pa, cmd_pa;
284 1.2 gwr int xlen;
285 1.2 gwr
286 1.2 gwr /*
287 1.2 gwr * Get the DVMA mapping for this segment.
288 1.2 gwr * XXX - Should separate allocation and mapin.
289 1.2 gwr */
290 1.33 tsutsui data_pa = dh->dh_dmaaddr;
291 1.2 gwr if (data_pa & 1)
292 1.34 tsutsui panic("%s: bad pa=0x%lx", __func__, data_pa);
293 1.33 tsutsui xlen = dh->dh_dmalen;
294 1.2 gwr sc->sc_reqlen = xlen; /* XXX: or less? */
295 1.1 gwr
296 1.1 gwr #ifdef DEBUG
297 1.2 gwr if (si_debug & 2) {
298 1.34 tsutsui printf("%s: dh=%p, pa=0x%lx, xlen=0x%x\n",
299 1.34 tsutsui __func__, dh, data_pa, xlen);
300 1.1 gwr }
301 1.1 gwr #endif
302 1.1 gwr
303 1.1 gwr /* Reset the UDC. (In case not already reset?) */
304 1.1 gwr si_obio_udc_write(si, UDC_ADR_COMMAND, UDC_CMD_RESET);
305 1.1 gwr
306 1.1 gwr /* Reset the FIFO */
307 1.1 gwr si->si_csr &= ~SI_CSR_FIFO_RES; /* active low */
308 1.1 gwr si->si_csr |= SI_CSR_FIFO_RES;
309 1.1 gwr
310 1.1 gwr /* Set direction (send/recv) */
311 1.2 gwr if (dh->dh_flags & SIDH_OUT) {
312 1.1 gwr si->si_csr |= SI_CSR_SEND;
313 1.1 gwr } else {
314 1.1 gwr si->si_csr &= ~SI_CSR_SEND;
315 1.1 gwr }
316 1.1 gwr
317 1.1 gwr /* Set the FIFO counter. */
318 1.1 gwr si->fifo_count = xlen;
319 1.1 gwr
320 1.2 gwr /* Reset the UDC. */
321 1.2 gwr si_obio_udc_write(si, UDC_ADR_COMMAND, UDC_CMD_RESET);
322 1.2 gwr
323 1.1 gwr /*
324 1.2 gwr * XXX: Reset the FIFO again! Comment from Sprite:
325 1.28 wiz * Go through reset again because of the bug on the 3/50
326 1.1 gwr * where bytes occasionally linger in the DMA fifo.
327 1.1 gwr */
328 1.1 gwr si->si_csr &= ~SI_CSR_FIFO_RES; /* active low */
329 1.1 gwr si->si_csr |= SI_CSR_FIFO_RES;
330 1.1 gwr
331 1.1 gwr #ifdef DEBUG
332 1.2 gwr /* Make sure the extra FIFO reset did not hit the count. */
333 1.2 gwr if (si->fifo_count != xlen) {
334 1.34 tsutsui printf("%s: fifo_count=0x%x, xlen=0x%x\n",
335 1.34 tsutsui __func__, si->fifo_count, xlen);
336 1.1 gwr Debugger();
337 1.1 gwr }
338 1.1 gwr #endif
339 1.1 gwr
340 1.1 gwr /*
341 1.2 gwr * Set up the DMA controller. The DMA controller on
342 1.2 gwr * OBIO needs a command block in DVMA space.
343 1.1 gwr */
344 1.1 gwr cmd = sc->sc_dmacmd;
345 1.1 gwr cmd->addrh = ((data_pa & 0xFF0000) >> 8) | UDC_ADDR_INFO;
346 1.1 gwr cmd->addrl = data_pa & 0xFFFF;
347 1.1 gwr cmd->count = xlen / 2; /* bytes -> words */
348 1.1 gwr cmd->cmrh = UDC_CMR_HIGH;
349 1.1 gwr if (dh->dh_flags & SIDH_OUT) {
350 1.2 gwr if (xlen & 1)
351 1.2 gwr cmd->count++;
352 1.1 gwr cmd->cmrl = UDC_CMR_LSEND;
353 1.1 gwr cmd->rsel = UDC_RSEL_SEND;
354 1.1 gwr } else {
355 1.1 gwr cmd->cmrl = UDC_CMR_LRECV;
356 1.1 gwr cmd->rsel = UDC_RSEL_RECV;
357 1.1 gwr }
358 1.1 gwr
359 1.1 gwr /* Tell the DMA chip where the control block is. */
360 1.17 gwr cmd_pa = dvma_kvtopa(cmd, BUS_OBIO);
361 1.34 tsutsui si_obio_udc_write(si, UDC_ADR_CAR_HIGH, (cmd_pa & 0xff0000) >> 8);
362 1.34 tsutsui si_obio_udc_write(si, UDC_ADR_CAR_LOW, (cmd_pa & 0xffff));
363 1.1 gwr
364 1.1 gwr /* Tell the chip to be a DMA master. */
365 1.1 gwr si_obio_udc_write(si, UDC_ADR_MODE, UDC_MODE);
366 1.1 gwr
367 1.1 gwr /* Tell the chip to interrupt on error. */
368 1.1 gwr si_obio_udc_write(si, UDC_ADR_COMMAND, UDC_CMD_CIE);
369 1.1 gwr
370 1.2 gwr /* Will do "start chain" command in _dma_start. */
371 1.2 gwr }
372 1.2 gwr
373 1.2 gwr
374 1.39 tsutsui void
375 1.29 chs si_obio_dma_start(struct ncr5380_softc *ncr_sc)
376 1.2 gwr {
377 1.2 gwr struct si_softc *sc = (struct si_softc *)ncr_sc;
378 1.2 gwr struct sci_req *sr = ncr_sc->sc_current;
379 1.2 gwr struct si_dma_handle *dh = sr->sr_dma_hand;
380 1.2 gwr volatile struct si_regs *si = sc->sc_regs;
381 1.2 gwr int s;
382 1.2 gwr
383 1.2 gwr #ifdef DEBUG
384 1.2 gwr if (si_debug & 2) {
385 1.34 tsutsui printf("%s: sr=%p\n", __func__, sr);
386 1.2 gwr }
387 1.2 gwr #endif
388 1.2 gwr
389 1.2 gwr /* This MAY be time critical (not sure). */
390 1.2 gwr s = splhigh();
391 1.1 gwr
392 1.1 gwr /* Finally, give the UDC a "start chain" command. */
393 1.1 gwr si_obio_udc_write(si, UDC_ADR_COMMAND, UDC_CMD_STRT_CHN);
394 1.1 gwr
395 1.1 gwr /*
396 1.1 gwr * Acknowledge the phase change. (After DMA setup!)
397 1.1 gwr * Put the SBIC into DMA mode, and start the transfer.
398 1.1 gwr */
399 1.1 gwr if (dh->dh_flags & SIDH_OUT) {
400 1.1 gwr *ncr_sc->sci_tcmd = PHASE_DATA_OUT;
401 1.1 gwr SCI_CLR_INTR(ncr_sc);
402 1.1 gwr *ncr_sc->sci_icmd = SCI_ICMD_DATA;
403 1.1 gwr *ncr_sc->sci_mode |= (SCI_MODE_DMA | SCI_MODE_DMA_IE);
404 1.1 gwr *ncr_sc->sci_dma_send = 0; /* start it */
405 1.1 gwr } else {
406 1.1 gwr *ncr_sc->sci_tcmd = PHASE_DATA_IN;
407 1.1 gwr SCI_CLR_INTR(ncr_sc);
408 1.1 gwr *ncr_sc->sci_icmd = 0;
409 1.1 gwr *ncr_sc->sci_mode |= (SCI_MODE_DMA | SCI_MODE_DMA_IE);
410 1.1 gwr *ncr_sc->sci_irecv = 0; /* start it */
411 1.1 gwr }
412 1.1 gwr
413 1.2 gwr splx(s);
414 1.1 gwr ncr_sc->sc_state |= NCR_DOINGDMA;
415 1.1 gwr
416 1.1 gwr #ifdef DEBUG
417 1.1 gwr if (si_debug & 2) {
418 1.34 tsutsui printf("%s: started, flags=0x%x\n",
419 1.34 tsutsui __func__, ncr_sc->sc_state);
420 1.1 gwr }
421 1.1 gwr #endif
422 1.1 gwr }
423 1.1 gwr
424 1.1 gwr
425 1.39 tsutsui void
426 1.29 chs si_obio_dma_eop(struct ncr5380_softc *ncr_sc)
427 1.1 gwr {
428 1.1 gwr
429 1.1 gwr /* Not needed - DMA was stopped prior to examining sci_csr */
430 1.1 gwr }
431 1.1 gwr
432 1.1 gwr
433 1.39 tsutsui void
434 1.29 chs si_obio_dma_stop(struct ncr5380_softc *ncr_sc)
435 1.1 gwr {
436 1.1 gwr struct si_softc *sc = (struct si_softc *)ncr_sc;
437 1.1 gwr struct sci_req *sr = ncr_sc->sc_current;
438 1.1 gwr struct si_dma_handle *dh = sr->sr_dma_hand;
439 1.1 gwr volatile struct si_regs *si = sc->sc_regs;
440 1.1 gwr int resid, ntrans, tmo, udc_cnt;
441 1.1 gwr
442 1.1 gwr if ((ncr_sc->sc_state & NCR_DOINGDMA) == 0) {
443 1.1 gwr #ifdef DEBUG
444 1.34 tsutsui printf("%s: DMA not running\n", __func__);
445 1.1 gwr #endif
446 1.1 gwr return;
447 1.1 gwr }
448 1.1 gwr ncr_sc->sc_state &= ~NCR_DOINGDMA;
449 1.1 gwr
450 1.2 gwr NCR_TRACE("si_dma_stop: top, csr=0x%x\n", si->si_csr);
451 1.2 gwr
452 1.2 gwr /* OK, have either phase mis-match or end of DMA. */
453 1.2 gwr /* Set an impossible phase to prevent data movement? */
454 1.2 gwr *ncr_sc->sci_tcmd = PHASE_INVALID;
455 1.2 gwr
456 1.2 gwr /* Check for DMA errors. */
457 1.1 gwr if (si->si_csr & (SI_CSR_DMA_CONFLICT | SI_CSR_DMA_BUS_ERR)) {
458 1.4 christos printf("si: DMA error, csr=0x%x, reset\n", si->si_csr);
459 1.1 gwr sr->sr_xs->error = XS_DRIVER_STUFFUP;
460 1.1 gwr ncr_sc->sc_state |= NCR_ABORTING;
461 1.16 gwr si_obio_reset(ncr_sc);
462 1.2 gwr goto out;
463 1.1 gwr }
464 1.1 gwr
465 1.1 gwr /* Note that timeout may have set the error flag. */
466 1.1 gwr if (ncr_sc->sc_state & NCR_ABORTING)
467 1.1 gwr goto out;
468 1.1 gwr
469 1.1 gwr /*
470 1.1 gwr * After a read, wait for the FIFO to empty.
471 1.1 gwr * Note: this only works on the OBIO version.
472 1.1 gwr */
473 1.1 gwr if ((dh->dh_flags & SIDH_OUT) == 0) {
474 1.1 gwr tmo = 200000; /* X10 = 2 sec. */
475 1.1 gwr for (;;) {
476 1.1 gwr if (si->si_csr & SI_CSR_FIFO_EMPTY)
477 1.1 gwr break;
478 1.1 gwr if (--tmo <= 0) {
479 1.26 wiz printf("si: DMA FIFO did not empty, reset\n");
480 1.1 gwr ncr_sc->sc_state |= NCR_ABORTING;
481 1.16 gwr /* si_obio_reset(ncr_sc); */
482 1.1 gwr goto out;
483 1.1 gwr }
484 1.1 gwr delay(10);
485 1.1 gwr }
486 1.1 gwr }
487 1.1 gwr
488 1.1 gwr /*
489 1.15 gwr * Now try to figure out how much actually transferred.
490 1.1 gwr * The fifo_count might not reflect how many bytes were
491 1.2 gwr * actually transferred.
492 1.1 gwr */
493 1.1 gwr resid = si->fifo_count & 0xFFFF;
494 1.1 gwr ntrans = sc->sc_reqlen - resid;
495 1.1 gwr
496 1.1 gwr #ifdef DEBUG
497 1.1 gwr if (si_debug & 2) {
498 1.34 tsutsui printf("%s: resid=0x%x ntrans=0x%x\n",
499 1.34 tsutsui __func__, resid, ntrans);
500 1.1 gwr }
501 1.1 gwr #endif
502 1.1 gwr
503 1.1 gwr /* XXX: Treat (ntrans==0) as a special, non-error case? */
504 1.1 gwr if (ntrans < MIN_DMA_LEN) {
505 1.4 christos printf("si: fifo count: 0x%x\n", resid);
506 1.1 gwr ncr_sc->sc_state |= NCR_ABORTING;
507 1.1 gwr goto out;
508 1.1 gwr }
509 1.1 gwr if (ntrans > ncr_sc->sc_datalen)
510 1.34 tsutsui panic("%s: excess transfer", __func__);
511 1.1 gwr
512 1.1 gwr /* Adjust data pointer */
513 1.1 gwr ncr_sc->sc_dataptr += ntrans;
514 1.1 gwr ncr_sc->sc_datalen -= ntrans;
515 1.1 gwr
516 1.1 gwr /*
517 1.1 gwr * After a read, we may need to clean-up
518 1.1 gwr * "Left-over bytes" (yuck!)
519 1.1 gwr */
520 1.1 gwr if ((dh->dh_flags & SIDH_OUT) == 0) {
521 1.1 gwr /* If odd transfer count, grab last byte by hand. */
522 1.1 gwr if (ntrans & 1) {
523 1.1 gwr NCR_TRACE("si_dma_stop: leftover 1 at 0x%x\n",
524 1.1 gwr (int) ncr_sc->sc_dataptr - 1);
525 1.1 gwr ncr_sc->sc_dataptr[-1] =
526 1.1 gwr (si->fifo_data & 0xff00) >> 8;
527 1.1 gwr goto out;
528 1.1 gwr }
529 1.37 msaitoh /* UDC might not have transferred the last word. */
530 1.1 gwr udc_cnt = si_obio_udc_read(si, UDC_ADR_COUNT);
531 1.1 gwr if (((udc_cnt * 2) - resid) == 2) {
532 1.1 gwr NCR_TRACE("si_dma_stop: leftover 2 at 0x%x\n",
533 1.1 gwr (int) ncr_sc->sc_dataptr - 2);
534 1.1 gwr ncr_sc->sc_dataptr[-2] =
535 1.1 gwr (si->fifo_data & 0xff00) >> 8;
536 1.1 gwr ncr_sc->sc_dataptr[-1] =
537 1.1 gwr (si->fifo_data & 0x00ff);
538 1.1 gwr }
539 1.1 gwr }
540 1.1 gwr
541 1.1 gwr out:
542 1.1 gwr /* Reset the UDC. */
543 1.1 gwr si_obio_udc_write(si, UDC_ADR_COMMAND, UDC_CMD_RESET);
544 1.1 gwr si->fifo_count = 0;
545 1.1 gwr si->si_csr &= ~SI_CSR_SEND;
546 1.1 gwr
547 1.2 gwr /* Reset the FIFO */
548 1.2 gwr si->si_csr &= ~SI_CSR_FIFO_RES; /* active low */
549 1.2 gwr si->si_csr |= SI_CSR_FIFO_RES;
550 1.1 gwr
551 1.1 gwr /* Put SBIC back in PIO mode. */
552 1.2 gwr /* XXX: set tcmd to PHASE_INVALID? */
553 1.1 gwr *ncr_sc->sci_mode &= ~(SCI_MODE_DMA | SCI_MODE_DMA_IE);
554 1.1 gwr *ncr_sc->sci_icmd = 0;
555 1.1 gwr }
556 1.1 gwr
557