esp_sbus.c revision 1.1 1 1.1 pk /* $NetBSD: esp_sbus.c,v 1.1 1998/08/29 20:32:10 pk Exp $ */
2 1.1 pk
3 1.1 pk /*-
4 1.1 pk * Copyright (c) 1997, 1998 The NetBSD Foundation, Inc.
5 1.1 pk * All rights reserved.
6 1.1 pk *
7 1.1 pk * This code is derived from software contributed to The NetBSD Foundation
8 1.1 pk * by Charles M. Hannum; Jason R. Thorpe of the Numerical Aerospace
9 1.1 pk * Simulation Facility, NASA Ames Research Center; Paul Kranenburg.
10 1.1 pk *
11 1.1 pk * Redistribution and use in source and binary forms, with or without
12 1.1 pk * modification, are permitted provided that the following conditions
13 1.1 pk * are met:
14 1.1 pk * 1. Redistributions of source code must retain the above copyright
15 1.1 pk * notice, this list of conditions and the following disclaimer.
16 1.1 pk * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 pk * notice, this list of conditions and the following disclaimer in the
18 1.1 pk * documentation and/or other materials provided with the distribution.
19 1.1 pk * 3. All advertising materials mentioning features or use of this software
20 1.1 pk * must display the following acknowledgement:
21 1.1 pk * This product includes software developed by the NetBSD
22 1.1 pk * Foundation, Inc. and its contributors.
23 1.1 pk * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.1 pk * contributors may be used to endorse or promote products derived
25 1.1 pk * from this software without specific prior written permission.
26 1.1 pk *
27 1.1 pk * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.1 pk * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.1 pk * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.1 pk * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.1 pk * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.1 pk * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.1 pk * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.1 pk * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.1 pk * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.1 pk * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.1 pk * POSSIBILITY OF SUCH DAMAGE.
38 1.1 pk */
39 1.1 pk
40 1.1 pk #include <sys/types.h>
41 1.1 pk #include <sys/param.h>
42 1.1 pk #include <sys/systm.h>
43 1.1 pk #include <sys/kernel.h>
44 1.1 pk #include <sys/errno.h>
45 1.1 pk #include <sys/device.h>
46 1.1 pk #include <sys/buf.h>
47 1.1 pk
48 1.1 pk #include <dev/scsipi/scsi_all.h>
49 1.1 pk #include <dev/scsipi/scsipi_all.h>
50 1.1 pk #include <dev/scsipi/scsiconf.h>
51 1.1 pk #include <dev/scsipi/scsi_message.h>
52 1.1 pk
53 1.1 pk #include <machine/bus.h>
54 1.1 pk #include <machine/autoconf.h>
55 1.1 pk #include <machine/cpu.h>
56 1.1 pk
57 1.1 pk #include <dev/ic/lsi64854reg.h>
58 1.1 pk #include <dev/ic/lsi64854var.h>
59 1.1 pk
60 1.1 pk #include <dev/ic/ncr53c9xreg.h>
61 1.1 pk #include <dev/ic/ncr53c9xvar.h>
62 1.1 pk
63 1.1 pk #include <dev/sbus/sbusvar.h>
64 1.1 pk
65 1.1 pk struct esp_softc {
66 1.1 pk struct ncr53c9x_softc sc_ncr53c9x; /* glue to MI code */
67 1.1 pk struct sbusdev sc_sd; /* sbus device */
68 1.1 pk
69 1.1 pk bus_space_tag_t sc_bustag;
70 1.1 pk bus_dma_tag_t sc_dmatag;
71 1.1 pk
72 1.1 pk bus_space_handle_t sc_reg; /* the registers */
73 1.1 pk struct lsi64854_softc *sc_dma; /* pointer to my dma */
74 1.1 pk
75 1.1 pk int sc_pri; /* SBUS priority */
76 1.1 pk };
77 1.1 pk
78 1.1 pk #define SAME_ESP(sc, bp, sa) \
79 1.1 pk (bp->val[0] == sa->sa_slot && bp->val[1] == sa->sa_offset)
80 1.1 pk
81 1.1 pk void espattach_sbus __P((struct device *, struct device *, void *));
82 1.1 pk void espattach_dma __P((struct device *, struct device *, void *));
83 1.1 pk int espmatch_sbus __P((struct device *, struct cfdata *, void *));
84 1.1 pk
85 1.1 pk static void espattach __P((struct esp_softc *));
86 1.1 pk
87 1.1 pk /* Linkup to the rest of the kernel */
88 1.1 pk struct cfattach esp_sbus_ca = {
89 1.1 pk sizeof(struct esp_softc), espmatch_sbus, espattach_sbus
90 1.1 pk };
91 1.1 pk struct cfattach esp_dma_ca = {
92 1.1 pk sizeof(struct esp_softc), espmatch_sbus, espattach_dma
93 1.1 pk };
94 1.1 pk
95 1.1 pk static struct scsipi_adapter esp_sbus_switch = {
96 1.1 pk ncr53c9x_scsi_cmd,
97 1.1 pk minphys, /* no max at this level; handled by DMA code */
98 1.1 pk NULL,
99 1.1 pk NULL,
100 1.1 pk };
101 1.1 pk
102 1.1 pk static struct scsipi_device esp_sbus_dev = {
103 1.1 pk NULL, /* Use default error handler */
104 1.1 pk NULL, /* have a queue, served by this */
105 1.1 pk NULL, /* have no async handler */
106 1.1 pk NULL, /* Use default 'done' routine */
107 1.1 pk };
108 1.1 pk
109 1.1 pk /*
110 1.1 pk * Functions and the switch for the MI code.
111 1.1 pk */
112 1.1 pk static u_char esp_read_reg __P((struct ncr53c9x_softc *, int));
113 1.1 pk static void esp_write_reg __P((struct ncr53c9x_softc *, int, u_char));
114 1.1 pk static int esp_dma_isintr __P((struct ncr53c9x_softc *));
115 1.1 pk static void esp_dma_reset __P((struct ncr53c9x_softc *));
116 1.1 pk static int esp_dma_intr __P((struct ncr53c9x_softc *));
117 1.1 pk static int esp_dma_setup __P((struct ncr53c9x_softc *, caddr_t *,
118 1.1 pk size_t *, int, size_t *));
119 1.1 pk static void esp_dma_go __P((struct ncr53c9x_softc *));
120 1.1 pk static void esp_dma_stop __P((struct ncr53c9x_softc *));
121 1.1 pk static int esp_dma_isactive __P((struct ncr53c9x_softc *));
122 1.1 pk
123 1.1 pk static struct ncr53c9x_glue esp_sbus_glue = {
124 1.1 pk esp_read_reg,
125 1.1 pk esp_write_reg,
126 1.1 pk esp_dma_isintr,
127 1.1 pk esp_dma_reset,
128 1.1 pk esp_dma_intr,
129 1.1 pk esp_dma_setup,
130 1.1 pk esp_dma_go,
131 1.1 pk esp_dma_stop,
132 1.1 pk esp_dma_isactive,
133 1.1 pk NULL, /* gl_clear_latched_intr */
134 1.1 pk };
135 1.1 pk
136 1.1 pk int
137 1.1 pk espmatch_sbus(parent, cf, aux)
138 1.1 pk struct device *parent;
139 1.1 pk struct cfdata *cf;
140 1.1 pk void *aux;
141 1.1 pk {
142 1.1 pk struct sbus_attach_args *sa = aux;
143 1.1 pk
144 1.1 pk return (strcmp(cf->cf_driver->cd_name, sa->sa_name) == 0);
145 1.1 pk }
146 1.1 pk
147 1.1 pk void
148 1.1 pk espattach_sbus(parent, self, aux)
149 1.1 pk struct device *parent, *self;
150 1.1 pk void *aux;
151 1.1 pk {
152 1.1 pk struct esp_softc *esc = (void *)self;
153 1.1 pk struct ncr53c9x_softc *sc = &esc->sc_ncr53c9x;
154 1.1 pk struct sbus_attach_args *sa = aux;
155 1.1 pk
156 1.1 pk esc->sc_bustag = sa->sa_bustag;
157 1.1 pk esc->sc_dmatag = sa->sa_dmatag;
158 1.1 pk
159 1.1 pk sc->sc_id = getpropint(sa->sa_node, "initiator-id", 7);
160 1.1 pk sc->sc_freq = getpropint(sa->sa_node, "clock-frequency", -1);
161 1.1 pk if (sc->sc_freq < 0)
162 1.1 pk sc->sc_freq = ((struct sbus_softc *)
163 1.1 pk sc->sc_dev.dv_parent)->sc_clockfreq;
164 1.1 pk
165 1.1 pk /*
166 1.1 pk * Find the DMA by poking around the dma device structures
167 1.1 pk *
168 1.1 pk * What happens here is that if the dma driver has not been
169 1.1 pk * configured, then this returns a NULL pointer. Then when the
170 1.1 pk * dma actually gets configured, it does the opposing test, and
171 1.1 pk * if the sc->sc_esp field in it's softc is NULL, then tries to
172 1.1 pk * find the matching esp driver.
173 1.1 pk */
174 1.1 pk esc->sc_dma = (struct lsi64854_softc *)
175 1.1 pk getdevunit("dma", sc->sc_dev.dv_unit);
176 1.1 pk
177 1.1 pk /*
178 1.1 pk * and a back pointer to us, for DMA
179 1.1 pk */
180 1.1 pk if (esc->sc_dma)
181 1.1 pk esc->sc_dma->sc_ncr53c9x = sc;
182 1.1 pk else {
183 1.1 pk printf("\n");
184 1.1 pk panic("espattach: no dma found");
185 1.1 pk }
186 1.1 pk
187 1.1 pk /*
188 1.1 pk * Map my registers in, if they aren't already in virtual
189 1.1 pk * address space.
190 1.1 pk */
191 1.1 pk if (sa->sa_npromvaddrs)
192 1.1 pk esc->sc_reg = (bus_space_handle_t)sa->sa_promvaddrs[0];
193 1.1 pk else {
194 1.1 pk bus_space_handle_t bh;
195 1.1 pk if (sbus_bus_map(sa->sa_bustag, sa->sa_slot,
196 1.1 pk sa->sa_offset,
197 1.1 pk sa->sa_size,
198 1.1 pk BUS_SPACE_MAP_LINEAR,
199 1.1 pk 0, &bh) != 0) {
200 1.1 pk printf("%s @ sbus: cannot map registers\n",
201 1.1 pk self->dv_xname);
202 1.1 pk return;
203 1.1 pk }
204 1.1 pk esc->sc_reg = bh;
205 1.1 pk }
206 1.1 pk
207 1.1 pk esc->sc_pri = sa->sa_pri;
208 1.1 pk
209 1.1 pk /* add me to the sbus structures */
210 1.1 pk esc->sc_sd.sd_reset = (void *) ncr53c9x_reset;
211 1.1 pk sbus_establish(&esc->sc_sd, &sc->sc_dev);
212 1.1 pk
213 1.1 pk if (sa->sa_bp != NULL && strcmp(sa->sa_bp->name, "esp") == 0 &&
214 1.1 pk SAME_ESP(sc, sa->sa_bp, sa))
215 1.1 pk bootpath_store(1, sa->sa_bp + 1);
216 1.1 pk
217 1.1 pk espattach(esc);
218 1.1 pk }
219 1.1 pk
220 1.1 pk void
221 1.1 pk espattach_dma(parent, self, aux)
222 1.1 pk struct device *parent, *self;
223 1.1 pk void *aux;
224 1.1 pk {
225 1.1 pk struct esp_softc *esc = (void *)self;
226 1.1 pk struct ncr53c9x_softc *sc = &esc->sc_ncr53c9x;
227 1.1 pk struct sbus_attach_args *sa = aux;
228 1.1 pk
229 1.1 pk esc->sc_bustag = sa->sa_bustag;
230 1.1 pk esc->sc_dmatag = sa->sa_dmatag;
231 1.1 pk
232 1.1 pk sc->sc_id = getpropint(sa->sa_node, "initiator-id", 7);
233 1.1 pk sc->sc_freq = getpropint(sa->sa_node, "clock-frequency", -1);
234 1.1 pk
235 1.1 pk esc->sc_dma = (struct lsi64854_softc *)parent;
236 1.1 pk esc->sc_dma->sc_ncr53c9x = sc;
237 1.1 pk
238 1.1 pk /*
239 1.1 pk * Map my registers in, if they aren't already in virtual
240 1.1 pk * address space.
241 1.1 pk */
242 1.1 pk if (sa->sa_npromvaddrs)
243 1.1 pk esc->sc_reg = (bus_space_handle_t)sa->sa_promvaddrs[0];
244 1.1 pk else {
245 1.1 pk bus_space_handle_t bh;
246 1.1 pk if (bus_space_map2(sa->sa_bustag,
247 1.1 pk sa->sa_slot,
248 1.1 pk sa->sa_offset,
249 1.1 pk sa->sa_size,
250 1.1 pk BUS_SPACE_MAP_LINEAR,
251 1.1 pk 0, &bh) != 0) {
252 1.1 pk printf("%s @ dma: cannot map registers\n",
253 1.1 pk self->dv_xname);
254 1.1 pk return;
255 1.1 pk }
256 1.1 pk esc->sc_reg = bh;
257 1.1 pk }
258 1.1 pk
259 1.1 pk /* Establish interrupt handler */
260 1.1 pk esc->sc_pri = sa->sa_pri;
261 1.1 pk
262 1.1 pk /* Assume SBus is grandparent */
263 1.1 pk esc->sc_sd.sd_reset = (void *) ncr53c9x_reset;
264 1.1 pk sbus_establish(&esc->sc_sd, parent);
265 1.1 pk
266 1.1 pk if (sa->sa_bp != NULL && strcmp(sa->sa_bp->name, "esp") == 0 &&
267 1.1 pk SAME_ESP(sc, sa->sa_bp, sa))
268 1.1 pk bootpath_store(1, sa->sa_bp + 1);
269 1.1 pk
270 1.1 pk espattach(esc);
271 1.1 pk }
272 1.1 pk
273 1.1 pk
274 1.1 pk /*
275 1.1 pk * Attach this instance, and then all the sub-devices
276 1.1 pk */
277 1.1 pk void
278 1.1 pk espattach(esc)
279 1.1 pk struct esp_softc *esc;
280 1.1 pk {
281 1.1 pk struct ncr53c9x_softc *sc = &esc->sc_ncr53c9x;
282 1.1 pk void *icookie;
283 1.1 pk
284 1.1 pk /*
285 1.1 pk * Set up glue for MI code early; we use some of it here.
286 1.1 pk */
287 1.1 pk sc->sc_glue = &esp_sbus_glue;
288 1.1 pk
289 1.1 pk /* gimme Mhz */
290 1.1 pk sc->sc_freq /= 1000000;
291 1.1 pk
292 1.1 pk /*
293 1.1 pk * XXX More of this should be in ncr53c9x_attach(), but
294 1.1 pk * XXX should we really poke around the chip that much in
295 1.1 pk * XXX the MI code? Think about this more...
296 1.1 pk */
297 1.1 pk
298 1.1 pk /*
299 1.1 pk * It is necessary to try to load the 2nd config register here,
300 1.1 pk * to find out what rev the esp chip is, else the ncr53c9x_reset
301 1.1 pk * will not set up the defaults correctly.
302 1.1 pk */
303 1.1 pk sc->sc_cfg1 = sc->sc_id | NCRCFG1_PARENB;
304 1.1 pk sc->sc_cfg2 = NCRCFG2_SCSI2 | NCRCFG2_RPE;
305 1.1 pk sc->sc_cfg3 = NCRCFG3_CDB;
306 1.1 pk NCR_WRITE_REG(sc, NCR_CFG2, sc->sc_cfg2);
307 1.1 pk
308 1.1 pk if ((NCR_READ_REG(sc, NCR_CFG2) & ~NCRCFG2_RSVD) !=
309 1.1 pk (NCRCFG2_SCSI2 | NCRCFG2_RPE)) {
310 1.1 pk sc->sc_rev = NCR_VARIANT_ESP100;
311 1.1 pk } else {
312 1.1 pk sc->sc_cfg2 = NCRCFG2_SCSI2;
313 1.1 pk NCR_WRITE_REG(sc, NCR_CFG2, sc->sc_cfg2);
314 1.1 pk sc->sc_cfg3 = 0;
315 1.1 pk NCR_WRITE_REG(sc, NCR_CFG3, sc->sc_cfg3);
316 1.1 pk sc->sc_cfg3 = (NCRCFG3_CDB | NCRCFG3_FCLK);
317 1.1 pk NCR_WRITE_REG(sc, NCR_CFG3, sc->sc_cfg3);
318 1.1 pk if (NCR_READ_REG(sc, NCR_CFG3) !=
319 1.1 pk (NCRCFG3_CDB | NCRCFG3_FCLK)) {
320 1.1 pk sc->sc_rev = NCR_VARIANT_ESP100A;
321 1.1 pk } else {
322 1.1 pk /* NCRCFG2_FE enables > 64K transfers */
323 1.1 pk sc->sc_cfg2 |= NCRCFG2_FE;
324 1.1 pk sc->sc_cfg3 = 0;
325 1.1 pk NCR_WRITE_REG(sc, NCR_CFG3, sc->sc_cfg3);
326 1.1 pk sc->sc_rev = NCR_VARIANT_ESP200;
327 1.1 pk }
328 1.1 pk }
329 1.1 pk
330 1.1 pk /*
331 1.1 pk * XXX minsync and maxxfer _should_ be set up in MI code,
332 1.1 pk * XXX but it appears to have some dependency on what sort
333 1.1 pk * XXX of DMA we're hooked up to, etc.
334 1.1 pk */
335 1.1 pk
336 1.1 pk /*
337 1.1 pk * This is the value used to start sync negotiations
338 1.1 pk * Note that the NCR register "SYNCTP" is programmed
339 1.1 pk * in "clocks per byte", and has a minimum value of 4.
340 1.1 pk * The SCSI period used in negotiation is one-fourth
341 1.1 pk * of the time (in nanoseconds) needed to transfer one byte.
342 1.1 pk * Since the chip's clock is given in MHz, we have the following
343 1.1 pk * formula: 4 * period = (1000 / freq) * 4
344 1.1 pk */
345 1.1 pk sc->sc_minsync = 1000 / sc->sc_freq;
346 1.1 pk
347 1.1 pk /*
348 1.1 pk * Alas, we must now modify the value a bit, because it's
349 1.1 pk * only valid when can switch on FASTCLK and FASTSCSI bits
350 1.1 pk * in config register 3...
351 1.1 pk */
352 1.1 pk switch (sc->sc_rev) {
353 1.1 pk case NCR_VARIANT_ESP100:
354 1.1 pk sc->sc_maxxfer = 64 * 1024;
355 1.1 pk sc->sc_minsync = 0; /* No synch on old chip? */
356 1.1 pk break;
357 1.1 pk
358 1.1 pk case NCR_VARIANT_ESP100A:
359 1.1 pk sc->sc_maxxfer = 64 * 1024;
360 1.1 pk /* Min clocks/byte is 5 */
361 1.1 pk sc->sc_minsync = ncr53c9x_cpb2stp(sc, 5);
362 1.1 pk break;
363 1.1 pk
364 1.1 pk case NCR_VARIANT_ESP200:
365 1.1 pk sc->sc_maxxfer = 16 * 1024 * 1024;
366 1.1 pk /* XXX - do actually set FAST* bits */
367 1.1 pk break;
368 1.1 pk }
369 1.1 pk
370 1.1 pk /* Establish interrupt channel */
371 1.1 pk icookie = bus_intr_establish(esc->sc_bustag,
372 1.1 pk esc->sc_pri, 0,
373 1.1 pk (int(*)__P((void*)))ncr53c9x_intr, sc);
374 1.1 pk
375 1.1 pk /* register interrupt stats */
376 1.1 pk evcnt_attach(&sc->sc_dev, "intr", &sc->sc_intrcnt);
377 1.1 pk
378 1.1 pk /* Do the common parts of attachment. */
379 1.1 pk ncr53c9x_attach(sc, &esp_sbus_switch, &esp_sbus_dev);
380 1.1 pk
381 1.1 pk /* Turn on target selection using the `dma' method */
382 1.1 pk ncr53c9x_dmaselect = 1;
383 1.1 pk
384 1.1 pk bootpath_store(1, NULL);
385 1.1 pk }
386 1.1 pk
387 1.1 pk /*
388 1.1 pk * Glue functions.
389 1.1 pk */
390 1.1 pk
391 1.1 pk u_char
392 1.1 pk esp_read_reg(sc, reg)
393 1.1 pk struct ncr53c9x_softc *sc;
394 1.1 pk int reg;
395 1.1 pk {
396 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
397 1.1 pk
398 1.1 pk return (bus_space_read_1(esc->sc_bustag, esc->sc_reg, reg * 4));
399 1.1 pk }
400 1.1 pk
401 1.1 pk void
402 1.1 pk esp_write_reg(sc, reg, v)
403 1.1 pk struct ncr53c9x_softc *sc;
404 1.1 pk int reg;
405 1.1 pk u_char v;
406 1.1 pk {
407 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
408 1.1 pk
409 1.1 pk bus_space_write_1(esc->sc_bustag, esc->sc_reg, reg * 4, v);
410 1.1 pk }
411 1.1 pk
412 1.1 pk int
413 1.1 pk esp_dma_isintr(sc)
414 1.1 pk struct ncr53c9x_softc *sc;
415 1.1 pk {
416 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
417 1.1 pk
418 1.1 pk return (DMA_ISINTR(esc->sc_dma));
419 1.1 pk }
420 1.1 pk
421 1.1 pk void
422 1.1 pk esp_dma_reset(sc)
423 1.1 pk struct ncr53c9x_softc *sc;
424 1.1 pk {
425 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
426 1.1 pk
427 1.1 pk DMA_RESET(esc->sc_dma);
428 1.1 pk }
429 1.1 pk
430 1.1 pk int
431 1.1 pk esp_dma_intr(sc)
432 1.1 pk struct ncr53c9x_softc *sc;
433 1.1 pk {
434 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
435 1.1 pk
436 1.1 pk return (DMA_INTR(esc->sc_dma));
437 1.1 pk }
438 1.1 pk
439 1.1 pk int
440 1.1 pk esp_dma_setup(sc, addr, len, datain, dmasize)
441 1.1 pk struct ncr53c9x_softc *sc;
442 1.1 pk caddr_t *addr;
443 1.1 pk size_t *len;
444 1.1 pk int datain;
445 1.1 pk size_t *dmasize;
446 1.1 pk {
447 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
448 1.1 pk
449 1.1 pk return (DMA_SETUP(esc->sc_dma, addr, len, datain, dmasize));
450 1.1 pk }
451 1.1 pk
452 1.1 pk void
453 1.1 pk esp_dma_go(sc)
454 1.1 pk struct ncr53c9x_softc *sc;
455 1.1 pk {
456 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
457 1.1 pk
458 1.1 pk DMA_GO(esc->sc_dma);
459 1.1 pk }
460 1.1 pk
461 1.1 pk void
462 1.1 pk esp_dma_stop(sc)
463 1.1 pk struct ncr53c9x_softc *sc;
464 1.1 pk {
465 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
466 1.1 pk u_int32_t csr;
467 1.1 pk
468 1.1 pk csr = L64854_GCSR(esc->sc_dma);
469 1.1 pk csr &= ~D_EN_DMA;
470 1.1 pk L64854_SCSR(esc->sc_dma, csr);
471 1.1 pk }
472 1.1 pk
473 1.1 pk int
474 1.1 pk esp_dma_isactive(sc)
475 1.1 pk struct ncr53c9x_softc *sc;
476 1.1 pk {
477 1.1 pk struct esp_softc *esc = (struct esp_softc *)sc;
478 1.1 pk
479 1.1 pk return (DMA_ISACTIVE(esc->sc_dma));
480 1.1 pk }
481