twe.c revision 1.69 1 1.69 drochner /* $NetBSD: twe.c,v 1.69 2005/08/25 18:35:39 drochner Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.55 thorpej * Copyright (c) 2000, 2001, 2002, 2003, 2004 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.42 thorpej * by Andrew Doran; and by Jason R. Thorpe of Wasabi Systems, Inc.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad * 3. All advertising materials mentioning features or use of this software
19 1.1 ad * must display the following acknowledgement:
20 1.1 ad * This product includes software developed by the NetBSD
21 1.1 ad * Foundation, Inc. and its contributors.
22 1.1 ad * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 ad * contributors may be used to endorse or promote products derived
24 1.1 ad * from this software without specific prior written permission.
25 1.1 ad *
26 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
37 1.1 ad */
38 1.1 ad
39 1.1 ad /*-
40 1.1 ad * Copyright (c) 2000 Michael Smith
41 1.1 ad * Copyright (c) 2000 BSDi
42 1.1 ad * All rights reserved.
43 1.1 ad *
44 1.1 ad * Redistribution and use in source and binary forms, with or without
45 1.1 ad * modification, are permitted provided that the following conditions
46 1.1 ad * are met:
47 1.1 ad * 1. Redistributions of source code must retain the above copyright
48 1.1 ad * notice, this list of conditions and the following disclaimer.
49 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
50 1.1 ad * notice, this list of conditions and the following disclaimer in the
51 1.1 ad * documentation and/or other materials provided with the distribution.
52 1.1 ad *
53 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
54 1.1 ad * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
55 1.1 ad * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
56 1.1 ad * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
57 1.1 ad * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
58 1.1 ad * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
59 1.1 ad * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
60 1.1 ad * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
61 1.1 ad * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
62 1.1 ad * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
63 1.1 ad * SUCH DAMAGE.
64 1.1 ad *
65 1.1 ad * from FreeBSD: twe.c,v 1.1 2000/05/24 23:35:23 msmith Exp
66 1.1 ad */
67 1.1 ad
68 1.1 ad /*
69 1.1 ad * Driver for the 3ware Escalade family of RAID controllers.
70 1.1 ad */
71 1.21 lukem
72 1.21 lukem #include <sys/cdefs.h>
73 1.69 drochner __KERNEL_RCSID(0, "$NetBSD: twe.c,v 1.69 2005/08/25 18:35:39 drochner Exp $");
74 1.1 ad
75 1.1 ad #include <sys/param.h>
76 1.1 ad #include <sys/systm.h>
77 1.1 ad #include <sys/kernel.h>
78 1.1 ad #include <sys/device.h>
79 1.1 ad #include <sys/queue.h>
80 1.1 ad #include <sys/proc.h>
81 1.1 ad #include <sys/buf.h>
82 1.1 ad #include <sys/endian.h>
83 1.1 ad #include <sys/malloc.h>
84 1.33 christos #include <sys/conf.h>
85 1.1 ad #include <sys/disk.h>
86 1.62 heas #include <sys/sysctl.h>
87 1.55 thorpej #include <sys/syslog.h>
88 1.1 ad
89 1.1 ad #include <uvm/uvm_extern.h>
90 1.1 ad
91 1.1 ad #include <machine/bswap.h>
92 1.1 ad #include <machine/bus.h>
93 1.1 ad
94 1.1 ad #include <dev/pci/pcireg.h>
95 1.1 ad #include <dev/pci/pcivar.h>
96 1.1 ad #include <dev/pci/pcidevs.h>
97 1.1 ad #include <dev/pci/twereg.h>
98 1.1 ad #include <dev/pci/twevar.h>
99 1.33 christos #include <dev/pci/tweio.h>
100 1.1 ad
101 1.59 drochner #include "locators.h"
102 1.59 drochner
103 1.1 ad #define PCI_CBIO 0x10
104 1.1 ad
105 1.47 thorpej static int twe_aen_get(struct twe_softc *, uint16_t *);
106 1.1 ad static void twe_aen_handler(struct twe_ccb *, int);
107 1.45 thorpej static void twe_aen_enqueue(struct twe_softc *sc, uint16_t, int);
108 1.45 thorpej static uint16_t twe_aen_dequeue(struct twe_softc *);
109 1.45 thorpej
110 1.1 ad static void twe_attach(struct device *, struct device *, void *);
111 1.1 ad static int twe_init_connection(struct twe_softc *);
112 1.1 ad static int twe_intr(void *);
113 1.1 ad static int twe_match(struct device *, struct cfdata *, void *);
114 1.33 christos static int twe_param_set(struct twe_softc *, int, int, size_t, void *);
115 1.1 ad static void twe_poll(struct twe_softc *);
116 1.1 ad static int twe_print(void *, const char *);
117 1.1 ad static int twe_reset(struct twe_softc *);
118 1.59 drochner static int twe_submatch(struct device *, struct cfdata *,
119 1.59 drochner const locdesc_t *, void *);
120 1.1 ad static int twe_status_check(struct twe_softc *, u_int);
121 1.1 ad static int twe_status_wait(struct twe_softc *, u_int, int);
122 1.38 jdolecek static void twe_describe_controller(struct twe_softc *);
123 1.64 erh static void twe_clear_pci_abort(struct twe_softc *sc);
124 1.64 erh static void twe_clear_pci_parity_error(struct twe_softc *sc);
125 1.1 ad
126 1.46 thorpej static int twe_add_unit(struct twe_softc *, int);
127 1.46 thorpej static int twe_del_unit(struct twe_softc *, int);
128 1.46 thorpej
129 1.22 ad static inline u_int32_t twe_inl(struct twe_softc *, int);
130 1.33 christos static inline void twe_outl(struct twe_softc *, int, u_int32_t);
131 1.33 christos
132 1.63 perry extern struct cfdriver twe_cd;
133 1.22 ad
134 1.30 thorpej CFATTACH_DECL(twe, sizeof(struct twe_softc),
135 1.31 thorpej twe_match, twe_attach, NULL, NULL);
136 1.1 ad
137 1.62 heas /* FreeBSD driver revision for sysctl expected by the 3ware cli */
138 1.62 heas const char twever[] = "1.50.01.002";
139 1.62 heas
140 1.40 thorpej /*
141 1.40 thorpej * Tables to convert numeric codes to strings.
142 1.40 thorpej */
143 1.40 thorpej const struct twe_code_table twe_table_status[] = {
144 1.40 thorpej { 0x00, "successful completion" },
145 1.40 thorpej
146 1.40 thorpej /* info */
147 1.40 thorpej { 0x42, "command in progress" },
148 1.40 thorpej { 0x6c, "retrying interface CRC error from UDMA command" },
149 1.40 thorpej
150 1.40 thorpej /* warning */
151 1.40 thorpej { 0x81, "redundant/inconsequential request ignored" },
152 1.40 thorpej { 0x8e, "failed to write zeroes to LBA 0" },
153 1.40 thorpej { 0x8f, "failed to profile TwinStor zones" },
154 1.40 thorpej
155 1.40 thorpej /* fatal */
156 1.40 thorpej { 0xc1, "aborted due to system command or reconfiguration" },
157 1.40 thorpej { 0xc4, "aborted" },
158 1.40 thorpej { 0xc5, "access error" },
159 1.40 thorpej { 0xc6, "access violation" },
160 1.40 thorpej { 0xc7, "device failure" }, /* high byte may be port # */
161 1.40 thorpej { 0xc8, "controller error" },
162 1.40 thorpej { 0xc9, "timed out" },
163 1.40 thorpej { 0xcb, "invalid unit number" },
164 1.40 thorpej { 0xcf, "unit not available" },
165 1.40 thorpej { 0xd2, "undefined opcode" },
166 1.40 thorpej { 0xdb, "request incompatible with unit" },
167 1.40 thorpej { 0xdc, "invalid request" },
168 1.40 thorpej { 0xff, "firmware error, reset requested" },
169 1.40 thorpej
170 1.40 thorpej { 0, NULL }
171 1.40 thorpej };
172 1.40 thorpej
173 1.40 thorpej const struct twe_code_table twe_table_unitstate[] = {
174 1.40 thorpej { TWE_PARAM_UNITSTATUS_Normal, "Normal" },
175 1.40 thorpej { TWE_PARAM_UNITSTATUS_Initialising, "Initializing" },
176 1.40 thorpej { TWE_PARAM_UNITSTATUS_Degraded, "Degraded" },
177 1.40 thorpej { TWE_PARAM_UNITSTATUS_Rebuilding, "Rebuilding" },
178 1.40 thorpej { TWE_PARAM_UNITSTATUS_Verifying, "Verifying" },
179 1.40 thorpej { TWE_PARAM_UNITSTATUS_Corrupt, "Corrupt" },
180 1.40 thorpej { TWE_PARAM_UNITSTATUS_Missing, "Missing" },
181 1.40 thorpej
182 1.40 thorpej { 0, NULL }
183 1.40 thorpej };
184 1.40 thorpej
185 1.40 thorpej const struct twe_code_table twe_table_unittype[] = {
186 1.40 thorpej /* array descriptor configuration */
187 1.40 thorpej { TWE_AD_CONFIG_RAID0, "RAID0" },
188 1.40 thorpej { TWE_AD_CONFIG_RAID1, "RAID1" },
189 1.40 thorpej { TWE_AD_CONFIG_TwinStor, "TwinStor" },
190 1.40 thorpej { TWE_AD_CONFIG_RAID5, "RAID5" },
191 1.40 thorpej { TWE_AD_CONFIG_RAID10, "RAID10" },
192 1.61 lukem { TWE_UD_CONFIG_JBOD, "JBOD" },
193 1.40 thorpej
194 1.40 thorpej { 0, NULL }
195 1.40 thorpej };
196 1.40 thorpej
197 1.40 thorpej const struct twe_code_table twe_table_stripedepth[] = {
198 1.40 thorpej { TWE_AD_STRIPE_4k, "4K" },
199 1.40 thorpej { TWE_AD_STRIPE_8k, "8K" },
200 1.40 thorpej { TWE_AD_STRIPE_16k, "16K" },
201 1.40 thorpej { TWE_AD_STRIPE_32k, "32K" },
202 1.40 thorpej { TWE_AD_STRIPE_64k, "64K" },
203 1.61 lukem { TWE_AD_STRIPE_128k, "128K" },
204 1.61 lukem { TWE_AD_STRIPE_256k, "256K" },
205 1.61 lukem { TWE_AD_STRIPE_512k, "512K" },
206 1.61 lukem { TWE_AD_STRIPE_1024k, "1024K" },
207 1.40 thorpej
208 1.40 thorpej { 0, NULL }
209 1.40 thorpej };
210 1.40 thorpej
211 1.45 thorpej /*
212 1.45 thorpej * Asynchronous event notification messages are qualified:
213 1.45 thorpej * a - not unit/port specific
214 1.45 thorpej * u - unit specific
215 1.45 thorpej * p - port specific
216 1.55 thorpej *
217 1.55 thorpej * They are further qualified with a severity:
218 1.55 thorpej * E - LOG_EMERG
219 1.55 thorpej * a - LOG_ALERT
220 1.55 thorpej * c - LOG_CRIT
221 1.55 thorpej * e - LOG_ERR
222 1.55 thorpej * w - LOG_WARNING
223 1.55 thorpej * n - LOG_NOTICE
224 1.55 thorpej * i - LOG_INFO
225 1.55 thorpej * d - LOG_DEBUG
226 1.55 thorpej * blank - just use printf
227 1.45 thorpej */
228 1.45 thorpej const struct twe_code_table twe_table_aen[] = {
229 1.55 thorpej { 0x00, "a queue empty" },
230 1.55 thorpej { 0x01, "a soft reset" },
231 1.55 thorpej { 0x02, "uc degraded mode" },
232 1.55 thorpej { 0x03, "aa controller error" },
233 1.55 thorpej { 0x04, "uE rebuild fail" },
234 1.55 thorpej { 0x05, "un rebuild done" },
235 1.55 thorpej { 0x06, "ue incomplete unit" },
236 1.55 thorpej { 0x07, "un initialization done" },
237 1.55 thorpej { 0x08, "uw unclean shutdown detected" },
238 1.55 thorpej { 0x09, "pe drive timeout" },
239 1.55 thorpej { 0x0a, "pc drive error" },
240 1.55 thorpej { 0x0b, "un rebuild started" },
241 1.55 thorpej { 0x0c, "un initialization started" },
242 1.55 thorpej { 0x0d, "ui logical unit deleted" },
243 1.55 thorpej { 0x0f, "pc SMART threshold exceeded" },
244 1.55 thorpej { 0x15, "a table undefined" }, /* XXX: Not in FreeBSD's table */
245 1.55 thorpej { 0x21, "pe ATA UDMA downgrade" },
246 1.55 thorpej { 0x22, "pi ATA UDMA upgrade" },
247 1.55 thorpej { 0x23, "pw sector repair occurred" },
248 1.55 thorpej { 0x24, "aa SBUF integrity check failure" },
249 1.55 thorpej { 0x25, "pa lost cached write" },
250 1.55 thorpej { 0x26, "pa drive ECC error detected" },
251 1.55 thorpej { 0x27, "pe DCB checksum error" },
252 1.55 thorpej { 0x28, "pn DCB unsupported version" },
253 1.55 thorpej { 0x29, "ui verify started" },
254 1.55 thorpej { 0x2a, "ua verify failed" },
255 1.55 thorpej { 0x2b, "ui verify complete" },
256 1.55 thorpej { 0x2c, "pw overwrote bad sector during rebuild" },
257 1.55 thorpej { 0x2d, "pa encountered bad sector during rebuild" },
258 1.55 thorpej { 0x2e, "pe replacement drive too small" },
259 1.55 thorpej { 0x2f, "ue array not previously initialized" },
260 1.55 thorpej { 0x30, "p drive not supported" },
261 1.55 thorpej { 0xff, "a aen queue full" },
262 1.45 thorpej
263 1.45 thorpej { 0, NULL },
264 1.45 thorpej };
265 1.45 thorpej
266 1.40 thorpej const char *
267 1.40 thorpej twe_describe_code(const struct twe_code_table *table, uint32_t code)
268 1.40 thorpej {
269 1.40 thorpej
270 1.40 thorpej for (; table->string != NULL; table++) {
271 1.40 thorpej if (table->code == code)
272 1.40 thorpej return (table->string);
273 1.40 thorpej }
274 1.40 thorpej return (NULL);
275 1.40 thorpej }
276 1.40 thorpej
277 1.22 ad static inline u_int32_t
278 1.22 ad twe_inl(struct twe_softc *sc, int off)
279 1.22 ad {
280 1.22 ad
281 1.22 ad bus_space_barrier(sc->sc_iot, sc->sc_ioh, off, 4,
282 1.22 ad BUS_SPACE_BARRIER_WRITE | BUS_SPACE_BARRIER_READ);
283 1.22 ad return (bus_space_read_4(sc->sc_iot, sc->sc_ioh, off));
284 1.22 ad }
285 1.22 ad
286 1.22 ad static inline void
287 1.22 ad twe_outl(struct twe_softc *sc, int off, u_int32_t val)
288 1.22 ad {
289 1.22 ad
290 1.22 ad bus_space_write_4(sc->sc_iot, sc->sc_ioh, off, val);
291 1.22 ad bus_space_barrier(sc->sc_iot, sc->sc_ioh, off, 4,
292 1.22 ad BUS_SPACE_BARRIER_WRITE);
293 1.22 ad }
294 1.22 ad
295 1.1 ad /*
296 1.1 ad * Match a supported board.
297 1.1 ad */
298 1.1 ad static int
299 1.1 ad twe_match(struct device *parent, struct cfdata *cfdata, void *aux)
300 1.1 ad {
301 1.1 ad struct pci_attach_args *pa;
302 1.1 ad
303 1.1 ad pa = aux;
304 1.1 ad
305 1.63 perry return (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_3WARE &&
306 1.10 ad (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_3WARE_ESCALADE ||
307 1.10 ad PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_3WARE_ESCALADE_ASIC));
308 1.1 ad }
309 1.1 ad
310 1.1 ad /*
311 1.1 ad * Attach a supported board.
312 1.1 ad *
313 1.1 ad * XXX This doesn't fail gracefully.
314 1.1 ad */
315 1.1 ad static void
316 1.1 ad twe_attach(struct device *parent, struct device *self, void *aux)
317 1.1 ad {
318 1.1 ad struct pci_attach_args *pa;
319 1.1 ad struct twe_softc *sc;
320 1.1 ad pci_chipset_tag_t pc;
321 1.1 ad pci_intr_handle_t ih;
322 1.1 ad pcireg_t csr;
323 1.1 ad const char *intrstr;
324 1.47 thorpej int s, size, i, rv, rseg;
325 1.23 christos size_t max_segs, max_xfer;
326 1.1 ad bus_dma_segment_t seg;
327 1.62 heas struct ctlname ctlnames[] = CTL_NAMES;
328 1.67 atatat const struct sysctlnode *node;
329 1.1 ad struct twe_cmd *tc;
330 1.1 ad struct twe_ccb *ccb;
331 1.1 ad
332 1.1 ad sc = (struct twe_softc *)self;
333 1.1 ad pa = aux;
334 1.1 ad pc = pa->pa_pc;
335 1.1 ad sc->sc_dmat = pa->pa_dmat;
336 1.1 ad SIMPLEQ_INIT(&sc->sc_ccb_queue);
337 1.1 ad SLIST_INIT(&sc->sc_ccb_freelist);
338 1.1 ad
339 1.40 thorpej aprint_naive(": RAID controller\n");
340 1.38 jdolecek aprint_normal(": 3ware Escalade\n");
341 1.1 ad
342 1.33 christos ccb = malloc(sizeof(*ccb) * TWE_MAX_QUEUECNT, M_DEVBUF, M_NOWAIT);
343 1.33 christos if (ccb == NULL) {
344 1.38 jdolecek aprint_error("%s: unable to allocate memory for ccbs\n",
345 1.33 christos sc->sc_dv.dv_xname);
346 1.33 christos return;
347 1.33 christos }
348 1.33 christos
349 1.1 ad if (pci_mapreg_map(pa, PCI_CBIO, PCI_MAPREG_TYPE_IO, 0,
350 1.1 ad &sc->sc_iot, &sc->sc_ioh, NULL, NULL)) {
351 1.38 jdolecek aprint_error("%s: can't map i/o space\n", sc->sc_dv.dv_xname);
352 1.1 ad return;
353 1.1 ad }
354 1.1 ad
355 1.1 ad /* Enable the device. */
356 1.1 ad csr = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
357 1.1 ad pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG,
358 1.1 ad csr | PCI_COMMAND_MASTER_ENABLE);
359 1.1 ad
360 1.1 ad /* Map and establish the interrupt. */
361 1.5 sommerfe if (pci_intr_map(pa, &ih)) {
362 1.38 jdolecek aprint_error("%s: can't map interrupt\n", sc->sc_dv.dv_xname);
363 1.1 ad return;
364 1.1 ad }
365 1.38 jdolecek
366 1.1 ad intrstr = pci_intr_string(pc, ih);
367 1.1 ad sc->sc_ih = pci_intr_establish(pc, ih, IPL_BIO, twe_intr, sc);
368 1.1 ad if (sc->sc_ih == NULL) {
369 1.38 jdolecek aprint_error("%s: can't establish interrupt%s%s\n",
370 1.38 jdolecek sc->sc_dv.dv_xname,
371 1.38 jdolecek (intrstr) ? " at " : "",
372 1.38 jdolecek (intrstr) ? intrstr : "");
373 1.1 ad return;
374 1.1 ad }
375 1.38 jdolecek
376 1.1 ad if (intrstr != NULL)
377 1.38 jdolecek aprint_normal("%s: interrupting at %s\n",
378 1.38 jdolecek sc->sc_dv.dv_xname, intrstr);
379 1.1 ad
380 1.1 ad /*
381 1.1 ad * Allocate and initialise the command blocks and CCBs.
382 1.1 ad */
383 1.7 ad size = sizeof(struct twe_cmd) * TWE_MAX_QUEUECNT;
384 1.1 ad
385 1.63 perry if ((rv = bus_dmamem_alloc(sc->sc_dmat, size, PAGE_SIZE, 0, &seg, 1,
386 1.1 ad &rseg, BUS_DMA_NOWAIT)) != 0) {
387 1.38 jdolecek aprint_error("%s: unable to allocate commands, rv = %d\n",
388 1.1 ad sc->sc_dv.dv_xname, rv);
389 1.1 ad return;
390 1.1 ad }
391 1.1 ad
392 1.63 perry if ((rv = bus_dmamem_map(sc->sc_dmat, &seg, rseg, size,
393 1.1 ad (caddr_t *)&sc->sc_cmds,
394 1.1 ad BUS_DMA_NOWAIT | BUS_DMA_COHERENT)) != 0) {
395 1.38 jdolecek aprint_error("%s: unable to map commands, rv = %d\n",
396 1.1 ad sc->sc_dv.dv_xname, rv);
397 1.1 ad return;
398 1.1 ad }
399 1.1 ad
400 1.63 perry if ((rv = bus_dmamap_create(sc->sc_dmat, size, size, 1, 0,
401 1.1 ad BUS_DMA_NOWAIT, &sc->sc_dmamap)) != 0) {
402 1.38 jdolecek aprint_error("%s: unable to create command DMA map, rv = %d\n",
403 1.1 ad sc->sc_dv.dv_xname, rv);
404 1.1 ad return;
405 1.1 ad }
406 1.1 ad
407 1.63 perry if ((rv = bus_dmamap_load(sc->sc_dmat, sc->sc_dmamap, sc->sc_cmds,
408 1.1 ad size, NULL, BUS_DMA_NOWAIT)) != 0) {
409 1.38 jdolecek aprint_error("%s: unable to load command DMA map, rv = %d\n",
410 1.1 ad sc->sc_dv.dv_xname, rv);
411 1.1 ad return;
412 1.1 ad }
413 1.1 ad
414 1.1 ad sc->sc_cmds_paddr = sc->sc_dmamap->dm_segs[0].ds_addr;
415 1.1 ad memset(sc->sc_cmds, 0, size);
416 1.1 ad
417 1.1 ad sc->sc_ccbs = ccb;
418 1.1 ad tc = (struct twe_cmd *)sc->sc_cmds;
419 1.24 christos max_segs = twe_get_maxsegs();
420 1.24 christos max_xfer = twe_get_maxxfer(max_segs);
421 1.1 ad
422 1.7 ad for (i = 0; i < TWE_MAX_QUEUECNT; i++, tc++, ccb++) {
423 1.1 ad ccb->ccb_cmd = tc;
424 1.1 ad ccb->ccb_cmdid = i;
425 1.1 ad ccb->ccb_flags = 0;
426 1.23 christos rv = bus_dmamap_create(sc->sc_dmat, max_xfer,
427 1.23 christos max_segs, PAGE_SIZE, 0,
428 1.4 thorpej BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW,
429 1.1 ad &ccb->ccb_dmamap_xfer);
430 1.7 ad if (rv != 0) {
431 1.38 jdolecek aprint_error("%s: can't create dmamap, rv = %d\n",
432 1.7 ad sc->sc_dv.dv_xname, rv);
433 1.7 ad return;
434 1.7 ad }
435 1.47 thorpej
436 1.47 thorpej /* Save the first CCB for AEN retrieval. */
437 1.3 ad if (i != 0)
438 1.3 ad SLIST_INSERT_HEAD(&sc->sc_ccb_freelist, ccb,
439 1.3 ad ccb_chain.slist);
440 1.3 ad }
441 1.1 ad
442 1.1 ad /* Wait for the controller to become ready. */
443 1.1 ad if (twe_status_wait(sc, TWE_STS_MICROCONTROLLER_READY, 6)) {
444 1.38 jdolecek aprint_error("%s: microcontroller not ready\n",
445 1.38 jdolecek sc->sc_dv.dv_xname);
446 1.1 ad return;
447 1.1 ad }
448 1.1 ad
449 1.22 ad twe_outl(sc, TWE_REG_CTL, TWE_CTL_DISABLE_INTRS);
450 1.1 ad
451 1.1 ad /* Reset the controller. */
452 1.47 thorpej s = splbio();
453 1.47 thorpej rv = twe_reset(sc);
454 1.47 thorpej splx(s);
455 1.47 thorpej if (rv) {
456 1.38 jdolecek aprint_error("%s: reset failed\n", sc->sc_dv.dv_xname);
457 1.1 ad return;
458 1.1 ad }
459 1.1 ad
460 1.46 thorpej /* Initialise connection with controller. */
461 1.46 thorpej twe_init_connection(sc);
462 1.46 thorpej
463 1.46 thorpej twe_describe_controller(sc);
464 1.46 thorpej
465 1.46 thorpej /* Find and attach RAID array units. */
466 1.46 thorpej sc->sc_nunits = 0;
467 1.46 thorpej for (i = 0; i < TWE_MAX_UNITS; i++)
468 1.46 thorpej (void) twe_add_unit(sc, i);
469 1.46 thorpej
470 1.46 thorpej /* ...and finally, enable interrupts. */
471 1.46 thorpej twe_outl(sc, TWE_REG_CTL, TWE_CTL_CLEAR_ATTN_INTR |
472 1.46 thorpej TWE_CTL_UNMASK_RESP_INTR |
473 1.46 thorpej TWE_CTL_ENABLE_INTRS);
474 1.62 heas
475 1.62 heas /* sysctl set-up for 3ware cli */
476 1.62 heas if (sysctl_createv(NULL, 0, NULL, NULL,
477 1.62 heas CTLFLAG_PERMANENT, CTLTYPE_NODE, "hw",
478 1.62 heas NULL, NULL, 0, NULL, 0,
479 1.62 heas CTL_HW, CTL_EOL) != 0) {
480 1.62 heas printf("%s: could not create %s sysctl node\n",
481 1.62 heas sc->sc_dv.dv_xname, ctlnames[CTL_HW].ctl_name);
482 1.62 heas return;
483 1.62 heas }
484 1.62 heas if (sysctl_createv(NULL, 0, NULL, &node,
485 1.62 heas 0, CTLTYPE_NODE, sc->sc_dv.dv_xname,
486 1.62 heas SYSCTL_DESCR("twe driver information"),
487 1.62 heas NULL, 0, NULL, 0,
488 1.62 heas CTL_HW, CTL_CREATE, CTL_EOL) != 0) {
489 1.62 heas printf("%s: could not create %s.%s sysctl node\n",
490 1.62 heas sc->sc_dv.dv_xname, ctlnames[CTL_HW].ctl_name,
491 1.62 heas sc->sc_dv.dv_xname);
492 1.62 heas return;
493 1.62 heas }
494 1.62 heas if ((i = sysctl_createv(NULL, 0, NULL, NULL,
495 1.62 heas 0, CTLTYPE_STRING, "driver_version",
496 1.62 heas SYSCTL_DESCR("twe0 driver version"),
497 1.62 heas NULL, 0, &twever, 0,
498 1.62 heas CTL_HW, node->sysctl_num, CTL_CREATE, CTL_EOL))
499 1.62 heas != 0) {
500 1.62 heas printf("%s: could not create %s.%s.driver_version sysctl\n",
501 1.62 heas sc->sc_dv.dv_xname, ctlnames[CTL_HW].ctl_name,
502 1.62 heas sc->sc_dv.dv_xname);
503 1.62 heas return;
504 1.62 heas }
505 1.46 thorpej }
506 1.46 thorpej
507 1.46 thorpej void
508 1.46 thorpej twe_register_callbacks(struct twe_softc *sc, int unit,
509 1.46 thorpej const struct twe_callbacks *tcb)
510 1.46 thorpej {
511 1.46 thorpej
512 1.46 thorpej sc->sc_units[unit].td_callbacks = tcb;
513 1.46 thorpej }
514 1.46 thorpej
515 1.46 thorpej static void
516 1.46 thorpej twe_recompute_openings(struct twe_softc *sc)
517 1.46 thorpej {
518 1.46 thorpej struct twe_drive *td;
519 1.46 thorpej int unit, openings;
520 1.46 thorpej
521 1.46 thorpej if (sc->sc_nunits != 0)
522 1.46 thorpej openings = (TWE_MAX_QUEUECNT - 1) / sc->sc_nunits;
523 1.46 thorpej else
524 1.46 thorpej openings = 0;
525 1.46 thorpej if (openings == sc->sc_openings)
526 1.46 thorpej return;
527 1.46 thorpej sc->sc_openings = openings;
528 1.46 thorpej
529 1.46 thorpej #ifdef TWE_DEBUG
530 1.46 thorpej printf("%s: %d array%s, %d openings per array\n",
531 1.46 thorpej sc->sc_dv.dv_xname, sc->sc_nunits,
532 1.46 thorpej sc->sc_nunits == 1 ? "" : "s", sc->sc_openings);
533 1.46 thorpej #endif
534 1.46 thorpej
535 1.46 thorpej for (unit = 0; unit < TWE_MAX_UNITS; unit++) {
536 1.46 thorpej td = &sc->sc_units[unit];
537 1.46 thorpej if (td->td_dev != NULL)
538 1.46 thorpej (*td->td_callbacks->tcb_openings)(td->td_dev,
539 1.46 thorpej sc->sc_openings);
540 1.46 thorpej }
541 1.46 thorpej }
542 1.46 thorpej
543 1.46 thorpej static int
544 1.46 thorpej twe_add_unit(struct twe_softc *sc, int unit)
545 1.46 thorpej {
546 1.46 thorpej struct twe_param *dtp, *atp;
547 1.46 thorpej struct twe_array_descriptor *ad;
548 1.46 thorpej struct twe_drive *td;
549 1.46 thorpej struct twe_attach_args twea;
550 1.46 thorpej uint32_t newsize;
551 1.46 thorpej int rv;
552 1.46 thorpej uint16_t dsize;
553 1.46 thorpej uint8_t newtype, newstripe;
554 1.69 drochner int locs[TWECF_NLOCS];
555 1.46 thorpej
556 1.46 thorpej if (unit < 0 || unit >= TWE_MAX_UNITS)
557 1.46 thorpej return (EINVAL);
558 1.46 thorpej
559 1.63 perry /* Find attached units. */
560 1.7 ad rv = twe_param_get(sc, TWE_PARAM_UNITSUMMARY,
561 1.38 jdolecek TWE_PARAM_UNITSUMMARY_Status, TWE_MAX_UNITS, NULL, &dtp);
562 1.7 ad if (rv != 0) {
563 1.46 thorpej aprint_error("%s: error %d fetching unit summary\n",
564 1.7 ad sc->sc_dv.dv_xname, rv);
565 1.46 thorpej return (rv);
566 1.1 ad }
567 1.1 ad
568 1.1 ad /* For each detected unit, collect size and store in an array. */
569 1.46 thorpej td = &sc->sc_units[unit];
570 1.42 thorpej
571 1.46 thorpej /* Unit present? */
572 1.46 thorpej if ((dtp->tp_data[unit] & TWE_PARAM_UNITSTATUS_Online) == 0) {
573 1.46 thorpej /*
574 1.46 thorpej * XXX Should we check to see if a device has been
575 1.46 thorpej * XXX attached at this index and detach it if it
576 1.46 thorpej * XXX has? ("rescan" semantics)
577 1.46 thorpej */
578 1.46 thorpej rv = 0;
579 1.46 thorpej goto out;
580 1.46 thorpej }
581 1.1 ad
582 1.46 thorpej rv = twe_param_get_2(sc, TWE_PARAM_UNITINFO + unit,
583 1.46 thorpej TWE_PARAM_UNITINFO_DescriptorSize, &dsize);
584 1.46 thorpej if (rv != 0) {
585 1.46 thorpej aprint_error("%s: error %d fetching descriptor size "
586 1.46 thorpej "for unit %d\n", sc->sc_dv.dv_xname, rv, unit);
587 1.46 thorpej goto out;
588 1.46 thorpej }
589 1.46 thorpej
590 1.46 thorpej rv = twe_param_get(sc, TWE_PARAM_UNITINFO + unit,
591 1.46 thorpej TWE_PARAM_UNITINFO_Descriptor, dsize - 3, NULL, &atp);
592 1.46 thorpej if (rv != 0) {
593 1.46 thorpej aprint_error("%s: error %d fetching array descriptor "
594 1.46 thorpej "for unit %d\n", sc->sc_dv.dv_xname, rv, unit);
595 1.46 thorpej goto out;
596 1.46 thorpej }
597 1.42 thorpej
598 1.46 thorpej ad = (struct twe_array_descriptor *)atp->tp_data;
599 1.46 thorpej newtype = ad->configuration;
600 1.46 thorpej newstripe = ad->stripe_size;
601 1.46 thorpej free(atp, M_DEVBUF);
602 1.42 thorpej
603 1.46 thorpej rv = twe_param_get_4(sc, TWE_PARAM_UNITINFO + unit,
604 1.46 thorpej TWE_PARAM_UNITINFO_Capacity, &newsize);
605 1.46 thorpej if (rv != 0) {
606 1.46 thorpej aprint_error(
607 1.46 thorpej "%s: error %d fetching capacity for unit %d\n",
608 1.46 thorpej sc->sc_dv.dv_xname, rv, unit);
609 1.46 thorpej goto out;
610 1.46 thorpej }
611 1.1 ad
612 1.46 thorpej /*
613 1.46 thorpej * Have a device, so we need to attach it. If there is currently
614 1.46 thorpej * something sitting at the slot, and the parameters are different,
615 1.46 thorpej * then we detach the old device before attaching the new one.
616 1.46 thorpej */
617 1.46 thorpej if (td->td_dev != NULL &&
618 1.46 thorpej td->td_size == newsize &&
619 1.46 thorpej td->td_type == newtype &&
620 1.46 thorpej td->td_stripe == newstripe) {
621 1.46 thorpej /* Same as the old device; just keep using it. */
622 1.46 thorpej rv = 0;
623 1.46 thorpej goto out;
624 1.46 thorpej } else if (td->td_dev != NULL) {
625 1.46 thorpej /* Detach the old device first. */
626 1.46 thorpej (void) config_detach(td->td_dev, DETACH_FORCE);
627 1.46 thorpej td->td_dev = NULL;
628 1.46 thorpej } else if (td->td_size == 0)
629 1.3 ad sc->sc_nunits++;
630 1.46 thorpej
631 1.46 thorpej /*
632 1.46 thorpej * Committed to the new array unit; assign its parameters and
633 1.46 thorpej * recompute the number of available command openings.
634 1.46 thorpej */
635 1.46 thorpej td->td_size = newsize;
636 1.46 thorpej td->td_type = newtype;
637 1.46 thorpej td->td_stripe = newstripe;
638 1.46 thorpej twe_recompute_openings(sc);
639 1.46 thorpej
640 1.46 thorpej twea.twea_unit = unit;
641 1.59 drochner
642 1.69 drochner locs[TWECF_UNIT] = unit;
643 1.59 drochner
644 1.69 drochner td->td_dev = config_found_sm_loc(&sc->sc_dv, "twe", locs, &twea,
645 1.59 drochner twe_print, twe_submatch);
646 1.46 thorpej
647 1.46 thorpej rv = 0;
648 1.46 thorpej out:
649 1.1 ad free(dtp, M_DEVBUF);
650 1.46 thorpej return (rv);
651 1.46 thorpej }
652 1.1 ad
653 1.46 thorpej static int
654 1.46 thorpej twe_del_unit(struct twe_softc *sc, int unit)
655 1.46 thorpej {
656 1.46 thorpej struct twe_drive *td;
657 1.1 ad
658 1.46 thorpej if (unit < 0 || unit >= TWE_MAX_UNITS)
659 1.46 thorpej return (EINVAL);
660 1.38 jdolecek
661 1.46 thorpej td = &sc->sc_units[unit];
662 1.46 thorpej if (td->td_size != 0)
663 1.46 thorpej sc->sc_nunits--;
664 1.46 thorpej td->td_size = 0;
665 1.46 thorpej td->td_type = 0;
666 1.46 thorpej td->td_stripe = 0;
667 1.46 thorpej if (td->td_dev != NULL) {
668 1.46 thorpej (void) config_detach(td->td_dev, DETACH_FORCE);
669 1.46 thorpej td->td_dev = NULL;
670 1.1 ad }
671 1.46 thorpej twe_recompute_openings(sc);
672 1.46 thorpej return (0);
673 1.1 ad }
674 1.1 ad
675 1.1 ad /*
676 1.47 thorpej * Reset the controller.
677 1.47 thorpej * MUST BE CALLED AT splbio()!
678 1.1 ad */
679 1.1 ad static int
680 1.1 ad twe_reset(struct twe_softc *sc)
681 1.1 ad {
682 1.41 thorpej uint16_t aen;
683 1.41 thorpej u_int status;
684 1.1 ad volatile u_int32_t junk;
685 1.7 ad int got, rv;
686 1.1 ad
687 1.1 ad /* Issue a soft reset. */
688 1.22 ad twe_outl(sc, TWE_REG_CTL, TWE_CTL_ISSUE_SOFT_RESET |
689 1.1 ad TWE_CTL_CLEAR_HOST_INTR |
690 1.1 ad TWE_CTL_CLEAR_ATTN_INTR |
691 1.1 ad TWE_CTL_MASK_CMD_INTR |
692 1.1 ad TWE_CTL_MASK_RESP_INTR |
693 1.1 ad TWE_CTL_CLEAR_ERROR_STS |
694 1.1 ad TWE_CTL_DISABLE_INTRS);
695 1.1 ad
696 1.45 thorpej /* Wait for attention... */
697 1.57 heas if (twe_status_wait(sc, TWE_STS_ATTN_INTR, 30)) {
698 1.57 heas printf("%s: timeout waiting for attention interrupt\n",
699 1.1 ad sc->sc_dv.dv_xname);
700 1.1 ad return (-1);
701 1.1 ad }
702 1.1 ad
703 1.45 thorpej /* ...and ACK it. */
704 1.45 thorpej twe_outl(sc, TWE_REG_CTL, TWE_CTL_CLEAR_ATTN_INTR);
705 1.45 thorpej
706 1.45 thorpej /*
707 1.45 thorpej * Pull AENs out of the controller; look for a soft reset AEN.
708 1.45 thorpej * Open code this, since we want to detect reset even if the
709 1.45 thorpej * queue for management tools is full.
710 1.48 thorpej *
711 1.48 thorpej * Note that since:
712 1.48 thorpej * - interrupts are blocked
713 1.48 thorpej * - we have reset the controller
714 1.48 thorpej * - acknowledged the pending ATTENTION
715 1.48 thorpej * that there is no way a pending asynchronous AEN fetch would
716 1.48 thorpej * finish, so clear the flag.
717 1.45 thorpej */
718 1.47 thorpej sc->sc_flags &= ~TWEF_AEN;
719 1.1 ad for (got = 0;;) {
720 1.47 thorpej rv = twe_aen_get(sc, &aen);
721 1.7 ad if (rv != 0)
722 1.45 thorpej printf("%s: error %d while draining event queue\n",
723 1.7 ad sc->sc_dv.dv_xname, rv);
724 1.41 thorpej if (TWE_AEN_CODE(aen) == TWE_AEN_QUEUE_EMPTY)
725 1.1 ad break;
726 1.41 thorpej if (TWE_AEN_CODE(aen) == TWE_AEN_SOFT_RESET)
727 1.1 ad got = 1;
728 1.45 thorpej twe_aen_enqueue(sc, aen, 1);
729 1.1 ad }
730 1.45 thorpej
731 1.1 ad if (!got) {
732 1.1 ad printf("%s: reset not reported\n", sc->sc_dv.dv_xname);
733 1.1 ad return (-1);
734 1.1 ad }
735 1.1 ad
736 1.1 ad /* Check controller status. */
737 1.22 ad status = twe_inl(sc, TWE_REG_STS);
738 1.1 ad if (twe_status_check(sc, status)) {
739 1.1 ad printf("%s: controller errors detected\n",
740 1.1 ad sc->sc_dv.dv_xname);
741 1.1 ad return (-1);
742 1.1 ad }
743 1.1 ad
744 1.1 ad /* Drain the response queue. */
745 1.1 ad for (;;) {
746 1.22 ad status = twe_inl(sc, TWE_REG_STS);
747 1.1 ad if (twe_status_check(sc, status) != 0) {
748 1.1 ad printf("%s: can't drain response queue\n",
749 1.1 ad sc->sc_dv.dv_xname);
750 1.1 ad return (-1);
751 1.1 ad }
752 1.1 ad if ((status & TWE_STS_RESP_QUEUE_EMPTY) != 0)
753 1.1 ad break;
754 1.22 ad junk = twe_inl(sc, TWE_REG_RESP_QUEUE);
755 1.1 ad }
756 1.1 ad
757 1.1 ad return (0);
758 1.1 ad }
759 1.1 ad
760 1.1 ad /*
761 1.1 ad * Print autoconfiguration message for a sub-device.
762 1.1 ad */
763 1.1 ad static int
764 1.1 ad twe_print(void *aux, const char *pnp)
765 1.1 ad {
766 1.1 ad struct twe_attach_args *twea;
767 1.1 ad
768 1.1 ad twea = aux;
769 1.1 ad
770 1.1 ad if (pnp != NULL)
771 1.35 thorpej aprint_normal("block device at %s", pnp);
772 1.35 thorpej aprint_normal(" unit %d", twea->twea_unit);
773 1.1 ad return (UNCONF);
774 1.1 ad }
775 1.1 ad
776 1.1 ad /*
777 1.1 ad * Match a sub-device.
778 1.1 ad */
779 1.1 ad static int
780 1.59 drochner twe_submatch(struct device *parent, struct cfdata *cf,
781 1.69 drochner const locdesc_t *locs, void *aux)
782 1.1 ad {
783 1.1 ad
784 1.59 drochner if (cf->cf_loc[TWECF_UNIT] != TWECF_UNIT_DEFAULT &&
785 1.69 drochner cf->cf_loc[TWECF_UNIT] != locs[TWECF_UNIT])
786 1.1 ad return (0);
787 1.1 ad
788 1.28 thorpej return (config_match(parent, cf, aux));
789 1.1 ad }
790 1.1 ad
791 1.1 ad /*
792 1.1 ad * Interrupt service routine.
793 1.1 ad */
794 1.1 ad static int
795 1.1 ad twe_intr(void *arg)
796 1.1 ad {
797 1.1 ad struct twe_softc *sc;
798 1.1 ad u_int status;
799 1.7 ad int caught, rv;
800 1.1 ad
801 1.1 ad sc = arg;
802 1.1 ad caught = 0;
803 1.22 ad status = twe_inl(sc, TWE_REG_STS);
804 1.1 ad twe_status_check(sc, status);
805 1.1 ad
806 1.1 ad /* Host interrupts - purpose unknown. */
807 1.1 ad if ((status & TWE_STS_HOST_INTR) != 0) {
808 1.38 jdolecek #ifdef DEBUG
809 1.1 ad printf("%s: host interrupt\n", sc->sc_dv.dv_xname);
810 1.1 ad #endif
811 1.22 ad twe_outl(sc, TWE_REG_CTL, TWE_CTL_CLEAR_HOST_INTR);
812 1.1 ad caught = 1;
813 1.1 ad }
814 1.1 ad
815 1.1 ad /*
816 1.1 ad * Attention interrupts, signalled when a controller or child device
817 1.18 wiz * state change has occurred.
818 1.1 ad */
819 1.1 ad if ((status & TWE_STS_ATTN_INTR) != 0) {
820 1.47 thorpej rv = twe_aen_get(sc, NULL);
821 1.45 thorpej if (rv != 0)
822 1.45 thorpej printf("%s: unable to retrieve AEN (%d)\n",
823 1.45 thorpej sc->sc_dv.dv_xname, rv);
824 1.45 thorpej else
825 1.45 thorpej twe_outl(sc, TWE_REG_CTL, TWE_CTL_CLEAR_ATTN_INTR);
826 1.1 ad caught = 1;
827 1.1 ad }
828 1.1 ad
829 1.1 ad /*
830 1.1 ad * Command interrupts, signalled when the controller can accept more
831 1.1 ad * commands. We don't use this; instead, we try to submit commands
832 1.63 perry * when we receive them, and when other commands have completed.
833 1.1 ad * Mask it so we don't get another one.
834 1.1 ad */
835 1.1 ad if ((status & TWE_STS_CMD_INTR) != 0) {
836 1.38 jdolecek #ifdef DEBUG
837 1.1 ad printf("%s: command interrupt\n", sc->sc_dv.dv_xname);
838 1.1 ad #endif
839 1.22 ad twe_outl(sc, TWE_REG_CTL, TWE_CTL_MASK_CMD_INTR);
840 1.1 ad caught = 1;
841 1.1 ad }
842 1.1 ad
843 1.1 ad if ((status & TWE_STS_RESP_INTR) != 0) {
844 1.1 ad twe_poll(sc);
845 1.1 ad caught = 1;
846 1.1 ad }
847 1.1 ad
848 1.1 ad return (caught);
849 1.1 ad }
850 1.1 ad
851 1.1 ad /*
852 1.47 thorpej * Fetch an AEN. Even though this is really like parameter
853 1.47 thorpej * retrieval, we handle this specially, because we issue this
854 1.47 thorpej * AEN retrieval command from interrupt context, and thus
855 1.47 thorpej * reserve a CCB for it to avoid resource shortage.
856 1.47 thorpej *
857 1.47 thorpej * XXX There are still potential resource shortages we could
858 1.47 thorpej * XXX encounter. Consider pre-allocating all AEN-related
859 1.47 thorpej * XXX resources.
860 1.47 thorpej *
861 1.47 thorpej * MUST BE CALLED AT splbio()!
862 1.47 thorpej */
863 1.47 thorpej static int
864 1.47 thorpej twe_aen_get(struct twe_softc *sc, uint16_t *aenp)
865 1.47 thorpej {
866 1.47 thorpej struct twe_ccb *ccb;
867 1.47 thorpej struct twe_cmd *tc;
868 1.47 thorpej struct twe_param *tp;
869 1.47 thorpej int rv;
870 1.47 thorpej
871 1.47 thorpej /*
872 1.47 thorpej * If we're already retrieving an AEN, just wait; another
873 1.47 thorpej * retrieval will be chained after the current one completes.
874 1.47 thorpej */
875 1.47 thorpej if (sc->sc_flags & TWEF_AEN) {
876 1.47 thorpej /*
877 1.47 thorpej * It is a fatal software programming error to attempt
878 1.47 thorpej * to fetch an AEN synchronously when an AEN fetch is
879 1.47 thorpej * already pending.
880 1.47 thorpej */
881 1.47 thorpej KASSERT(aenp == NULL);
882 1.47 thorpej return (0);
883 1.47 thorpej }
884 1.47 thorpej
885 1.47 thorpej tp = malloc(TWE_SECTOR_SIZE, M_DEVBUF, M_NOWAIT);
886 1.47 thorpej if (tp == NULL)
887 1.47 thorpej return (ENOMEM);
888 1.47 thorpej
889 1.49 thorpej ccb = twe_ccb_alloc(sc,
890 1.47 thorpej TWE_CCB_AEN | TWE_CCB_DATA_IN | TWE_CCB_DATA_OUT);
891 1.49 thorpej KASSERT(ccb != NULL);
892 1.47 thorpej
893 1.47 thorpej ccb->ccb_data = tp;
894 1.47 thorpej ccb->ccb_datasize = TWE_SECTOR_SIZE;
895 1.47 thorpej ccb->ccb_tx.tx_handler = (aenp == NULL) ? twe_aen_handler : NULL;
896 1.47 thorpej ccb->ccb_tx.tx_context = tp;
897 1.47 thorpej ccb->ccb_tx.tx_dv = &sc->sc_dv;
898 1.47 thorpej
899 1.47 thorpej tc = ccb->ccb_cmd;
900 1.47 thorpej tc->tc_size = 2;
901 1.47 thorpej tc->tc_opcode = TWE_OP_GET_PARAM | (tc->tc_size << 5);
902 1.47 thorpej tc->tc_unit = 0;
903 1.47 thorpej tc->tc_count = htole16(1);
904 1.47 thorpej
905 1.47 thorpej /* Fill in the outbound parameter data. */
906 1.47 thorpej tp->tp_table_id = htole16(TWE_PARAM_AEN);
907 1.47 thorpej tp->tp_param_id = TWE_PARAM_AEN_UnitCode;
908 1.47 thorpej tp->tp_param_size = 2;
909 1.47 thorpej
910 1.47 thorpej /* Map the transfer. */
911 1.47 thorpej if ((rv = twe_ccb_map(sc, ccb)) != 0) {
912 1.47 thorpej twe_ccb_free(sc, ccb);
913 1.47 thorpej goto done;
914 1.47 thorpej }
915 1.47 thorpej
916 1.47 thorpej /* Enqueue the command and wait. */
917 1.47 thorpej if (aenp != NULL) {
918 1.47 thorpej rv = twe_ccb_poll(sc, ccb, 5);
919 1.47 thorpej twe_ccb_unmap(sc, ccb);
920 1.47 thorpej twe_ccb_free(sc, ccb);
921 1.47 thorpej if (rv == 0)
922 1.47 thorpej *aenp = le16toh(*(uint16_t *)tp->tp_data);
923 1.47 thorpej free(tp, M_DEVBUF);
924 1.47 thorpej } else {
925 1.47 thorpej sc->sc_flags |= TWEF_AEN;
926 1.47 thorpej twe_ccb_enqueue(sc, ccb);
927 1.47 thorpej rv = 0;
928 1.47 thorpej }
929 1.47 thorpej
930 1.47 thorpej done:
931 1.47 thorpej return (rv);
932 1.47 thorpej }
933 1.47 thorpej
934 1.47 thorpej /*
935 1.1 ad * Handle an AEN returned by the controller.
936 1.47 thorpej * MUST BE CALLED AT splbio()!
937 1.1 ad */
938 1.1 ad static void
939 1.1 ad twe_aen_handler(struct twe_ccb *ccb, int error)
940 1.1 ad {
941 1.1 ad struct twe_softc *sc;
942 1.1 ad struct twe_param *tp;
943 1.45 thorpej uint16_t aen;
944 1.45 thorpej int rv;
945 1.1 ad
946 1.1 ad sc = (struct twe_softc *)ccb->ccb_tx.tx_dv;
947 1.1 ad tp = ccb->ccb_tx.tx_context;
948 1.1 ad twe_ccb_unmap(sc, ccb);
949 1.1 ad
950 1.47 thorpej sc->sc_flags &= ~TWEF_AEN;
951 1.47 thorpej
952 1.3 ad if (error) {
953 1.1 ad printf("%s: error retrieving AEN\n", sc->sc_dv.dv_xname);
954 1.3 ad aen = TWE_AEN_QUEUE_EMPTY;
955 1.3 ad } else
956 1.1 ad aen = le16toh(*(u_int16_t *)tp->tp_data);
957 1.3 ad free(tp, M_DEVBUF);
958 1.3 ad twe_ccb_free(sc, ccb);
959 1.3 ad
960 1.7 ad if (TWE_AEN_CODE(aen) == TWE_AEN_QUEUE_EMPTY) {
961 1.22 ad twe_outl(sc, TWE_REG_CTL, TWE_CTL_CLEAR_ATTN_INTR);
962 1.7 ad return;
963 1.7 ad }
964 1.7 ad
965 1.45 thorpej twe_aen_enqueue(sc, aen, 0);
966 1.3 ad
967 1.7 ad /*
968 1.7 ad * Chain another retrieval in case interrupts have been
969 1.7 ad * coalesced.
970 1.7 ad */
971 1.47 thorpej rv = twe_aen_get(sc, NULL);
972 1.7 ad if (rv != 0)
973 1.7 ad printf("%s: unable to retrieve AEN (%d)\n",
974 1.7 ad sc->sc_dv.dv_xname, rv);
975 1.1 ad }
976 1.1 ad
977 1.45 thorpej static void
978 1.45 thorpej twe_aen_enqueue(struct twe_softc *sc, uint16_t aen, int quiet)
979 1.45 thorpej {
980 1.45 thorpej const char *str, *msg;
981 1.55 thorpej int s, next, nextnext, level;
982 1.45 thorpej
983 1.45 thorpej /*
984 1.45 thorpej * First report the AEN on the console. Maybe.
985 1.45 thorpej */
986 1.45 thorpej if (! quiet) {
987 1.45 thorpej str = twe_describe_code(twe_table_aen, TWE_AEN_CODE(aen));
988 1.45 thorpej if (str == NULL) {
989 1.45 thorpej printf("%s: unknown AEN 0x%04x\n",
990 1.45 thorpej sc->sc_dv.dv_xname, aen);
991 1.45 thorpej } else {
992 1.55 thorpej msg = str + 3;
993 1.55 thorpej switch (str[1]) {
994 1.55 thorpej case 'E': level = LOG_EMERG; break;
995 1.55 thorpej case 'a': level = LOG_ALERT; break;
996 1.55 thorpej case 'c': level = LOG_CRIT; break;
997 1.55 thorpej case 'e': level = LOG_ERR; break;
998 1.55 thorpej case 'w': level = LOG_WARNING; break;
999 1.55 thorpej case 'n': level = LOG_NOTICE; break;
1000 1.55 thorpej case 'i': level = LOG_INFO; break;
1001 1.55 thorpej case 'd': level = LOG_DEBUG; break;
1002 1.55 thorpej default:
1003 1.55 thorpej /* Don't use syslog. */
1004 1.55 thorpej level = -1;
1005 1.55 thorpej }
1006 1.45 thorpej
1007 1.55 thorpej if (level < 0) {
1008 1.55 thorpej switch (str[0]) {
1009 1.55 thorpej case 'u':
1010 1.55 thorpej case 'p':
1011 1.55 thorpej printf("%s: %s %d: %s\n",
1012 1.55 thorpej sc->sc_dv.dv_xname,
1013 1.55 thorpej str[0] == 'u' ? "unit" : "port",
1014 1.55 thorpej TWE_AEN_UNIT(aen), msg);
1015 1.55 thorpej break;
1016 1.55 thorpej
1017 1.55 thorpej default:
1018 1.55 thorpej printf("%s: %s\n",
1019 1.55 thorpej sc->sc_dv.dv_xname, msg);
1020 1.55 thorpej }
1021 1.55 thorpej } else {
1022 1.55 thorpej switch (str[0]) {
1023 1.55 thorpej case 'u':
1024 1.55 thorpej case 'p':
1025 1.55 thorpej log(level, "%s: %s %d: %s\n",
1026 1.55 thorpej sc->sc_dv.dv_xname,
1027 1.55 thorpej str[0] == 'u' ? "unit" : "port",
1028 1.55 thorpej TWE_AEN_UNIT(aen), msg);
1029 1.55 thorpej break;
1030 1.55 thorpej
1031 1.55 thorpej default:
1032 1.55 thorpej log(level, "%s: %s\n",
1033 1.55 thorpej sc->sc_dv.dv_xname, msg);
1034 1.55 thorpej }
1035 1.45 thorpej }
1036 1.45 thorpej }
1037 1.45 thorpej }
1038 1.45 thorpej
1039 1.45 thorpej /* Now enqueue the AEN for mangement tools. */
1040 1.45 thorpej s = splbio();
1041 1.45 thorpej
1042 1.45 thorpej next = (sc->sc_aen_head + 1) % TWE_AEN_Q_LENGTH;
1043 1.45 thorpej nextnext = (sc->sc_aen_head + 2) % TWE_AEN_Q_LENGTH;
1044 1.45 thorpej
1045 1.45 thorpej /*
1046 1.45 thorpej * If this is the last free slot, then queue up a "queue
1047 1.45 thorpej * full" message.
1048 1.45 thorpej */
1049 1.45 thorpej if (nextnext == sc->sc_aen_tail)
1050 1.45 thorpej aen = TWE_AEN_QUEUE_FULL;
1051 1.45 thorpej
1052 1.45 thorpej if (next != sc->sc_aen_tail) {
1053 1.45 thorpej sc->sc_aen_queue[sc->sc_aen_head] = aen;
1054 1.45 thorpej sc->sc_aen_head = next;
1055 1.45 thorpej }
1056 1.45 thorpej
1057 1.45 thorpej if (sc->sc_flags & TWEF_AENQ_WAIT) {
1058 1.45 thorpej sc->sc_flags &= ~TWEF_AENQ_WAIT;
1059 1.45 thorpej wakeup(&sc->sc_aen_queue);
1060 1.45 thorpej }
1061 1.45 thorpej
1062 1.45 thorpej splx(s);
1063 1.45 thorpej }
1064 1.45 thorpej
1065 1.45 thorpej /* NOTE: Must be called at splbio(). */
1066 1.45 thorpej static uint16_t
1067 1.45 thorpej twe_aen_dequeue(struct twe_softc *sc)
1068 1.45 thorpej {
1069 1.45 thorpej uint16_t aen;
1070 1.45 thorpej
1071 1.45 thorpej if (sc->sc_aen_tail == sc->sc_aen_head)
1072 1.45 thorpej aen = TWE_AEN_QUEUE_EMPTY;
1073 1.45 thorpej else {
1074 1.45 thorpej aen = sc->sc_aen_queue[sc->sc_aen_tail];
1075 1.60 heas sc->sc_aen_tail = (sc->sc_aen_tail + 1) % TWE_AEN_Q_LENGTH;
1076 1.45 thorpej }
1077 1.45 thorpej
1078 1.45 thorpej return (aen);
1079 1.45 thorpej }
1080 1.45 thorpej
1081 1.1 ad /*
1082 1.41 thorpej * These are short-hand functions that execute TWE_OP_GET_PARAM to
1083 1.41 thorpej * fetch 1, 2, and 4 byte parameter values, respectively.
1084 1.41 thorpej */
1085 1.43 thorpej int
1086 1.41 thorpej twe_param_get_1(struct twe_softc *sc, int table_id, int param_id,
1087 1.41 thorpej uint8_t *valp)
1088 1.41 thorpej {
1089 1.41 thorpej struct twe_param *tp;
1090 1.41 thorpej int rv;
1091 1.41 thorpej
1092 1.41 thorpej rv = twe_param_get(sc, table_id, param_id, 1, NULL, &tp);
1093 1.41 thorpej if (rv != 0)
1094 1.41 thorpej return (rv);
1095 1.41 thorpej *valp = *(uint8_t *)tp->tp_data;
1096 1.41 thorpej free(tp, M_DEVBUF);
1097 1.41 thorpej return (0);
1098 1.41 thorpej }
1099 1.41 thorpej
1100 1.43 thorpej int
1101 1.41 thorpej twe_param_get_2(struct twe_softc *sc, int table_id, int param_id,
1102 1.41 thorpej uint16_t *valp)
1103 1.41 thorpej {
1104 1.41 thorpej struct twe_param *tp;
1105 1.41 thorpej int rv;
1106 1.41 thorpej
1107 1.41 thorpej rv = twe_param_get(sc, table_id, param_id, 2, NULL, &tp);
1108 1.41 thorpej if (rv != 0)
1109 1.41 thorpej return (rv);
1110 1.41 thorpej *valp = le16toh(*(uint16_t *)tp->tp_data);
1111 1.41 thorpej free(tp, M_DEVBUF);
1112 1.41 thorpej return (0);
1113 1.41 thorpej }
1114 1.41 thorpej
1115 1.43 thorpej int
1116 1.41 thorpej twe_param_get_4(struct twe_softc *sc, int table_id, int param_id,
1117 1.41 thorpej uint32_t *valp)
1118 1.41 thorpej {
1119 1.41 thorpej struct twe_param *tp;
1120 1.41 thorpej int rv;
1121 1.41 thorpej
1122 1.41 thorpej rv = twe_param_get(sc, table_id, param_id, 4, NULL, &tp);
1123 1.41 thorpej if (rv != 0)
1124 1.41 thorpej return (rv);
1125 1.41 thorpej *valp = le32toh(*(uint32_t *)tp->tp_data);
1126 1.41 thorpej free(tp, M_DEVBUF);
1127 1.41 thorpej return (0);
1128 1.41 thorpej }
1129 1.41 thorpej
1130 1.41 thorpej /*
1131 1.1 ad * Execute a TWE_OP_GET_PARAM command. If a callback function is provided,
1132 1.63 perry * it will be called with generated context when the command has completed.
1133 1.1 ad * If no callback is provided, the command will be executed synchronously
1134 1.3 ad * and a pointer to a buffer containing the data returned.
1135 1.1 ad *
1136 1.3 ad * The caller or callback is responsible for freeing the buffer.
1137 1.49 thorpej *
1138 1.49 thorpej * NOTE: We assume we can sleep here to wait for a CCB to become available.
1139 1.1 ad */
1140 1.43 thorpej int
1141 1.1 ad twe_param_get(struct twe_softc *sc, int table_id, int param_id, size_t size,
1142 1.38 jdolecek void (*func)(struct twe_ccb *, int), struct twe_param **pbuf)
1143 1.1 ad {
1144 1.1 ad struct twe_ccb *ccb;
1145 1.1 ad struct twe_cmd *tc;
1146 1.1 ad struct twe_param *tp;
1147 1.1 ad int rv, s;
1148 1.1 ad
1149 1.33 christos tp = malloc(TWE_SECTOR_SIZE, M_DEVBUF, M_NOWAIT);
1150 1.33 christos if (tp == NULL)
1151 1.33 christos return ENOMEM;
1152 1.33 christos
1153 1.49 thorpej ccb = twe_ccb_alloc_wait(sc, TWE_CCB_DATA_IN | TWE_CCB_DATA_OUT);
1154 1.49 thorpej KASSERT(ccb != NULL);
1155 1.1 ad
1156 1.1 ad ccb->ccb_data = tp;
1157 1.1 ad ccb->ccb_datasize = TWE_SECTOR_SIZE;
1158 1.1 ad ccb->ccb_tx.tx_handler = func;
1159 1.1 ad ccb->ccb_tx.tx_context = tp;
1160 1.1 ad ccb->ccb_tx.tx_dv = &sc->sc_dv;
1161 1.1 ad
1162 1.1 ad tc = ccb->ccb_cmd;
1163 1.1 ad tc->tc_size = 2;
1164 1.1 ad tc->tc_opcode = TWE_OP_GET_PARAM | (tc->tc_size << 5);
1165 1.1 ad tc->tc_unit = 0;
1166 1.1 ad tc->tc_count = htole16(1);
1167 1.1 ad
1168 1.1 ad /* Fill in the outbound parameter data. */
1169 1.1 ad tp->tp_table_id = htole16(table_id);
1170 1.1 ad tp->tp_param_id = param_id;
1171 1.1 ad tp->tp_param_size = size;
1172 1.1 ad
1173 1.1 ad /* Map the transfer. */
1174 1.7 ad if ((rv = twe_ccb_map(sc, ccb)) != 0) {
1175 1.2 ad twe_ccb_free(sc, ccb);
1176 1.33 christos goto done;
1177 1.1 ad }
1178 1.1 ad
1179 1.1 ad /* Submit the command and either wait or let the callback handle it. */
1180 1.1 ad if (func == NULL) {
1181 1.1 ad s = splbio();
1182 1.7 ad rv = twe_ccb_poll(sc, ccb, 5);
1183 1.1 ad twe_ccb_unmap(sc, ccb);
1184 1.2 ad twe_ccb_free(sc, ccb);
1185 1.1 ad splx(s);
1186 1.1 ad } else {
1187 1.38 jdolecek #ifdef DEBUG
1188 1.33 christos if (pbuf != NULL)
1189 1.33 christos panic("both func and pbuf defined");
1190 1.33 christos #endif
1191 1.1 ad twe_ccb_enqueue(sc, ccb);
1192 1.33 christos return 0;
1193 1.33 christos }
1194 1.33 christos
1195 1.33 christos done:
1196 1.33 christos if (pbuf == NULL || rv != 0)
1197 1.33 christos free(tp, M_DEVBUF);
1198 1.33 christos else if (pbuf != NULL && rv == 0)
1199 1.33 christos *pbuf = tp;
1200 1.33 christos return rv;
1201 1.33 christos }
1202 1.33 christos
1203 1.33 christos /*
1204 1.33 christos * Execute a TWE_OP_SET_PARAM command.
1205 1.49 thorpej *
1206 1.49 thorpej * NOTE: We assume we can sleep here to wait for a CCB to become available.
1207 1.33 christos */
1208 1.33 christos static int
1209 1.33 christos twe_param_set(struct twe_softc *sc, int table_id, int param_id, size_t size,
1210 1.66 christos void *sbuf)
1211 1.33 christos {
1212 1.33 christos struct twe_ccb *ccb;
1213 1.33 christos struct twe_cmd *tc;
1214 1.33 christos struct twe_param *tp;
1215 1.33 christos int rv, s;
1216 1.33 christos
1217 1.33 christos tp = malloc(TWE_SECTOR_SIZE, M_DEVBUF, M_NOWAIT);
1218 1.33 christos if (tp == NULL)
1219 1.33 christos return ENOMEM;
1220 1.33 christos
1221 1.49 thorpej ccb = twe_ccb_alloc_wait(sc, TWE_CCB_DATA_IN | TWE_CCB_DATA_OUT);
1222 1.49 thorpej KASSERT(ccb != NULL);
1223 1.33 christos
1224 1.33 christos ccb->ccb_data = tp;
1225 1.33 christos ccb->ccb_datasize = TWE_SECTOR_SIZE;
1226 1.33 christos ccb->ccb_tx.tx_handler = 0;
1227 1.33 christos ccb->ccb_tx.tx_context = tp;
1228 1.33 christos ccb->ccb_tx.tx_dv = &sc->sc_dv;
1229 1.33 christos
1230 1.33 christos tc = ccb->ccb_cmd;
1231 1.33 christos tc->tc_size = 2;
1232 1.33 christos tc->tc_opcode = TWE_OP_SET_PARAM | (tc->tc_size << 5);
1233 1.33 christos tc->tc_unit = 0;
1234 1.33 christos tc->tc_count = htole16(1);
1235 1.33 christos
1236 1.33 christos /* Fill in the outbound parameter data. */
1237 1.33 christos tp->tp_table_id = htole16(table_id);
1238 1.33 christos tp->tp_param_id = param_id;
1239 1.33 christos tp->tp_param_size = size;
1240 1.66 christos memcpy(tp->tp_data, sbuf, size);
1241 1.33 christos
1242 1.33 christos /* Map the transfer. */
1243 1.33 christos if ((rv = twe_ccb_map(sc, ccb)) != 0) {
1244 1.33 christos twe_ccb_free(sc, ccb);
1245 1.33 christos goto done;
1246 1.1 ad }
1247 1.1 ad
1248 1.33 christos /* Submit the command and wait. */
1249 1.33 christos s = splbio();
1250 1.33 christos rv = twe_ccb_poll(sc, ccb, 5);
1251 1.33 christos twe_ccb_unmap(sc, ccb);
1252 1.33 christos twe_ccb_free(sc, ccb);
1253 1.33 christos splx(s);
1254 1.33 christos done:
1255 1.33 christos free(tp, M_DEVBUF);
1256 1.7 ad return (rv);
1257 1.1 ad }
1258 1.1 ad
1259 1.1 ad /*
1260 1.63 perry * Execute a TWE_OP_INIT_CONNECTION command. Return non-zero on error.
1261 1.1 ad * Must be called with interrupts blocked.
1262 1.1 ad */
1263 1.1 ad static int
1264 1.1 ad twe_init_connection(struct twe_softc *sc)
1265 1.33 christos /*###762 [cc] warning: `twe_init_connection' was used with no prototype before its definition%%%*/
1266 1.33 christos /*###762 [cc] warning: `twe_init_connection' was declared implicitly `extern' and later `static'%%%*/
1267 1.1 ad {
1268 1.1 ad struct twe_ccb *ccb;
1269 1.1 ad struct twe_cmd *tc;
1270 1.1 ad int rv;
1271 1.1 ad
1272 1.49 thorpej if ((ccb = twe_ccb_alloc(sc, 0)) == NULL)
1273 1.49 thorpej return (EAGAIN);
1274 1.1 ad
1275 1.1 ad /* Build the command. */
1276 1.1 ad tc = ccb->ccb_cmd;
1277 1.1 ad tc->tc_size = 3;
1278 1.1 ad tc->tc_opcode = TWE_OP_INIT_CONNECTION;
1279 1.1 ad tc->tc_unit = 0;
1280 1.3 ad tc->tc_count = htole16(TWE_MAX_CMDS);
1281 1.1 ad tc->tc_args.init_connection.response_queue_pointer = 0;
1282 1.1 ad
1283 1.1 ad /* Submit the command for immediate execution. */
1284 1.7 ad rv = twe_ccb_poll(sc, ccb, 5);
1285 1.2 ad twe_ccb_free(sc, ccb);
1286 1.1 ad return (rv);
1287 1.1 ad }
1288 1.1 ad
1289 1.1 ad /*
1290 1.1 ad * Poll the controller for completed commands. Must be called with
1291 1.1 ad * interrupts blocked.
1292 1.1 ad */
1293 1.1 ad static void
1294 1.1 ad twe_poll(struct twe_softc *sc)
1295 1.1 ad {
1296 1.1 ad struct twe_ccb *ccb;
1297 1.1 ad int found;
1298 1.1 ad u_int status, cmdid;
1299 1.1 ad
1300 1.1 ad found = 0;
1301 1.1 ad
1302 1.1 ad for (;;) {
1303 1.22 ad status = twe_inl(sc, TWE_REG_STS);
1304 1.1 ad twe_status_check(sc, status);
1305 1.1 ad
1306 1.1 ad if ((status & TWE_STS_RESP_QUEUE_EMPTY))
1307 1.1 ad break;
1308 1.1 ad
1309 1.1 ad found = 1;
1310 1.22 ad cmdid = twe_inl(sc, TWE_REG_RESP_QUEUE);
1311 1.1 ad cmdid = (cmdid & TWE_RESP_MASK) >> TWE_RESP_SHIFT;
1312 1.7 ad if (cmdid >= TWE_MAX_QUEUECNT) {
1313 1.50 thorpej printf("%s: bad cmdid %d\n", sc->sc_dv.dv_xname, cmdid);
1314 1.1 ad continue;
1315 1.1 ad }
1316 1.1 ad
1317 1.1 ad ccb = sc->sc_ccbs + cmdid;
1318 1.1 ad if ((ccb->ccb_flags & TWE_CCB_ACTIVE) == 0) {
1319 1.50 thorpej printf("%s: CCB for cmdid %d not active\n",
1320 1.50 thorpej sc->sc_dv.dv_xname, cmdid);
1321 1.1 ad continue;
1322 1.1 ad }
1323 1.1 ad ccb->ccb_flags ^= TWE_CCB_COMPLETE | TWE_CCB_ACTIVE;
1324 1.1 ad
1325 1.1 ad bus_dmamap_sync(sc->sc_dmat, sc->sc_dmamap,
1326 1.1 ad (caddr_t)ccb->ccb_cmd - sc->sc_cmds,
1327 1.1 ad sizeof(struct twe_cmd),
1328 1.1 ad BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1329 1.1 ad
1330 1.1 ad /* Pass notification to upper layers. */
1331 1.1 ad if (ccb->ccb_tx.tx_handler != NULL)
1332 1.1 ad (*ccb->ccb_tx.tx_handler)(ccb,
1333 1.1 ad ccb->ccb_cmd->tc_status != 0 ? EIO : 0);
1334 1.1 ad }
1335 1.1 ad
1336 1.1 ad /* If any commands have completed, run the software queue. */
1337 1.1 ad if (found)
1338 1.1 ad twe_ccb_enqueue(sc, NULL);
1339 1.1 ad }
1340 1.1 ad
1341 1.1 ad /*
1342 1.1 ad * Wait for `status' to be set in the controller status register. Return
1343 1.1 ad * zero if found, non-zero if the operation timed out.
1344 1.1 ad */
1345 1.1 ad static int
1346 1.1 ad twe_status_wait(struct twe_softc *sc, u_int32_t status, int timo)
1347 1.1 ad {
1348 1.1 ad
1349 1.11 ad for (timo *= 10; timo != 0; timo--) {
1350 1.22 ad if ((twe_inl(sc, TWE_REG_STS) & status) == status)
1351 1.1 ad break;
1352 1.1 ad delay(100000);
1353 1.1 ad }
1354 1.1 ad
1355 1.1 ad return (timo == 0);
1356 1.1 ad }
1357 1.1 ad
1358 1.1 ad /*
1359 1.64 erh * Clear a PCI parity error.
1360 1.64 erh */
1361 1.64 erh static void
1362 1.64 erh twe_clear_pci_parity_error(struct twe_softc *sc)
1363 1.64 erh {
1364 1.64 erh bus_space_write_4(sc->sc_iot, sc->sc_ioh, 0x0, TWE_CTL_CLEAR_PARITY_ERROR);
1365 1.64 erh
1366 1.64 erh //FreeBSD: pci_write_config(sc->twe_dev, PCIR_STATUS, TWE_PCI_CLEAR_PARITY_ERROR, 2);
1367 1.64 erh }
1368 1.64 erh
1369 1.64 erh
1370 1.64 erh /*
1371 1.64 erh * Clear a PCI abort.
1372 1.64 erh */
1373 1.64 erh static void
1374 1.64 erh twe_clear_pci_abort(struct twe_softc *sc)
1375 1.64 erh {
1376 1.64 erh bus_space_write_4(sc->sc_iot, sc->sc_ioh, 0x0, TWE_CTL_CLEAR_PCI_ABORT);
1377 1.64 erh
1378 1.64 erh //FreeBSD: pci_write_config(sc->twe_dev, PCIR_STATUS, TWE_PCI_CLEAR_PCI_ABORT, 2);
1379 1.64 erh }
1380 1.64 erh
1381 1.64 erh /*
1382 1.1 ad * Complain if the status bits aren't what we expect.
1383 1.1 ad */
1384 1.1 ad static int
1385 1.1 ad twe_status_check(struct twe_softc *sc, u_int status)
1386 1.1 ad {
1387 1.1 ad int rv;
1388 1.1 ad
1389 1.1 ad rv = 0;
1390 1.1 ad
1391 1.1 ad if ((status & TWE_STS_EXPECTED_BITS) != TWE_STS_EXPECTED_BITS) {
1392 1.1 ad printf("%s: missing status bits: 0x%08x\n", sc->sc_dv.dv_xname,
1393 1.1 ad status & ~TWE_STS_EXPECTED_BITS);
1394 1.1 ad rv = -1;
1395 1.1 ad }
1396 1.1 ad
1397 1.1 ad if ((status & TWE_STS_UNEXPECTED_BITS) != 0) {
1398 1.1 ad printf("%s: unexpected status bits: 0x%08x\n",
1399 1.1 ad sc->sc_dv.dv_xname, status & TWE_STS_UNEXPECTED_BITS);
1400 1.1 ad rv = -1;
1401 1.64 erh if (status & TWE_STS_PCI_PARITY_ERROR) {
1402 1.64 erh printf("%s: PCI parity error: Reseat card, move card "
1403 1.64 erh "or buggy device present.\n",
1404 1.64 erh sc->sc_dv.dv_xname);
1405 1.64 erh twe_clear_pci_parity_error(sc);
1406 1.64 erh }
1407 1.64 erh if (status & TWE_STS_PCI_ABORT) {
1408 1.64 erh printf("%s: PCI abort, clearing.\n",
1409 1.64 erh sc->sc_dv.dv_xname);
1410 1.64 erh twe_clear_pci_abort(sc);
1411 1.64 erh }
1412 1.1 ad }
1413 1.1 ad
1414 1.1 ad return (rv);
1415 1.1 ad }
1416 1.1 ad
1417 1.1 ad /*
1418 1.1 ad * Allocate and initialise a CCB.
1419 1.1 ad */
1420 1.49 thorpej static __inline void
1421 1.49 thorpej twe_ccb_init(struct twe_softc *sc, struct twe_ccb *ccb, int flags)
1422 1.1 ad {
1423 1.1 ad struct twe_cmd *tc;
1424 1.49 thorpej
1425 1.49 thorpej ccb->ccb_tx.tx_handler = NULL;
1426 1.49 thorpej ccb->ccb_flags = flags;
1427 1.49 thorpej tc = ccb->ccb_cmd;
1428 1.49 thorpej tc->tc_status = 0;
1429 1.49 thorpej tc->tc_flags = 0;
1430 1.49 thorpej tc->tc_cmdid = ccb->ccb_cmdid;
1431 1.49 thorpej }
1432 1.49 thorpej
1433 1.49 thorpej struct twe_ccb *
1434 1.49 thorpej twe_ccb_alloc(struct twe_softc *sc, int flags)
1435 1.49 thorpej {
1436 1.1 ad struct twe_ccb *ccb;
1437 1.1 ad int s;
1438 1.1 ad
1439 1.63 perry s = splbio();
1440 1.49 thorpej if (__predict_false((flags & TWE_CCB_AEN) != 0)) {
1441 1.47 thorpej /* Use the reserved CCB. */
1442 1.3 ad ccb = sc->sc_ccbs;
1443 1.47 thorpej } else {
1444 1.3 ad /* Allocate a CCB and command block. */
1445 1.49 thorpej if (__predict_false((ccb =
1446 1.49 thorpej SLIST_FIRST(&sc->sc_ccb_freelist)) == NULL)) {
1447 1.1 ad splx(s);
1448 1.49 thorpej return (NULL);
1449 1.1 ad }
1450 1.3 ad SLIST_REMOVE_HEAD(&sc->sc_ccb_freelist, ccb_chain.slist);
1451 1.1 ad }
1452 1.3 ad #ifdef DIAGNOSTIC
1453 1.50 thorpej if ((long)(ccb - sc->sc_ccbs) == 0 && (flags & TWE_CCB_AEN) == 0)
1454 1.50 thorpej panic("twe_ccb_alloc: got reserved CCB for non-AEN");
1455 1.3 ad if ((ccb->ccb_flags & TWE_CCB_ALLOCED) != 0)
1456 1.50 thorpej panic("twe_ccb_alloc: CCB %ld already allocated",
1457 1.50 thorpej (long)(ccb - sc->sc_ccbs));
1458 1.3 ad flags |= TWE_CCB_ALLOCED;
1459 1.3 ad #endif
1460 1.7 ad splx(s);
1461 1.1 ad
1462 1.49 thorpej twe_ccb_init(sc, ccb, flags);
1463 1.49 thorpej return (ccb);
1464 1.49 thorpej }
1465 1.49 thorpej
1466 1.49 thorpej struct twe_ccb *
1467 1.49 thorpej twe_ccb_alloc_wait(struct twe_softc *sc, int flags)
1468 1.49 thorpej {
1469 1.49 thorpej struct twe_ccb *ccb;
1470 1.49 thorpej int s;
1471 1.49 thorpej
1472 1.49 thorpej KASSERT((flags & TWE_CCB_AEN) == 0);
1473 1.49 thorpej
1474 1.49 thorpej s = splbio();
1475 1.49 thorpej while (__predict_false((ccb =
1476 1.49 thorpej SLIST_FIRST(&sc->sc_ccb_freelist)) == NULL)) {
1477 1.49 thorpej sc->sc_flags |= TWEF_WAIT_CCB;
1478 1.49 thorpej (void) tsleep(&sc->sc_ccb_freelist, PRIBIO, "tweccb", 0);
1479 1.49 thorpej }
1480 1.49 thorpej SLIST_REMOVE_HEAD(&sc->sc_ccb_freelist, ccb_chain.slist);
1481 1.49 thorpej #ifdef DIAGNOSTIC
1482 1.49 thorpej if ((ccb->ccb_flags & TWE_CCB_ALLOCED) != 0)
1483 1.50 thorpej panic("twe_ccb_alloc_wait: CCB %ld already allocated",
1484 1.50 thorpej (long)(ccb - sc->sc_ccbs));
1485 1.49 thorpej flags |= TWE_CCB_ALLOCED;
1486 1.49 thorpej #endif
1487 1.49 thorpej splx(s);
1488 1.1 ad
1489 1.49 thorpej twe_ccb_init(sc, ccb, flags);
1490 1.49 thorpej return (ccb);
1491 1.1 ad }
1492 1.1 ad
1493 1.1 ad /*
1494 1.3 ad * Free a CCB.
1495 1.1 ad */
1496 1.1 ad void
1497 1.2 ad twe_ccb_free(struct twe_softc *sc, struct twe_ccb *ccb)
1498 1.1 ad {
1499 1.1 ad int s;
1500 1.1 ad
1501 1.3 ad s = splbio();
1502 1.49 thorpej if ((ccb->ccb_flags & TWE_CCB_AEN) == 0) {
1503 1.3 ad SLIST_INSERT_HEAD(&sc->sc_ccb_freelist, ccb, ccb_chain.slist);
1504 1.49 thorpej if (__predict_false((sc->sc_flags & TWEF_WAIT_CCB) != 0)) {
1505 1.49 thorpej sc->sc_flags &= ~TWEF_WAIT_CCB;
1506 1.49 thorpej wakeup(&sc->sc_ccb_freelist);
1507 1.49 thorpej }
1508 1.49 thorpej }
1509 1.50 thorpej ccb->ccb_flags = 0;
1510 1.1 ad splx(s);
1511 1.1 ad }
1512 1.1 ad
1513 1.1 ad /*
1514 1.1 ad * Map the specified CCB's command block and data buffer (if any) into
1515 1.1 ad * controller visible space. Perform DMA synchronisation.
1516 1.1 ad */
1517 1.1 ad int
1518 1.1 ad twe_ccb_map(struct twe_softc *sc, struct twe_ccb *ccb)
1519 1.1 ad {
1520 1.1 ad struct twe_cmd *tc;
1521 1.20 ad int flags, nsegs, i, s, rv;
1522 1.1 ad void *data;
1523 1.1 ad
1524 1.7 ad /*
1525 1.7 ad * The data as a whole must be 512-byte aligned.
1526 1.7 ad */
1527 1.1 ad if (((u_long)ccb->ccb_data & (TWE_ALIGNMENT - 1)) != 0) {
1528 1.20 ad s = splvm();
1529 1.20 ad /* XXX */
1530 1.65 yamt ccb->ccb_abuf = uvm_km_alloc(kmem_map,
1531 1.65 yamt ccb->ccb_datasize, 0, UVM_KMF_NOWAIT|UVM_KMF_WIRED);
1532 1.20 ad splx(s);
1533 1.20 ad data = (void *)ccb->ccb_abuf;
1534 1.2 ad if ((ccb->ccb_flags & TWE_CCB_DATA_OUT) != 0)
1535 1.2 ad memcpy(data, ccb->ccb_data, ccb->ccb_datasize);
1536 1.1 ad } else {
1537 1.20 ad ccb->ccb_abuf = (vaddr_t)0;
1538 1.1 ad data = ccb->ccb_data;
1539 1.1 ad }
1540 1.1 ad
1541 1.7 ad /*
1542 1.7 ad * Map the data buffer into bus space and build the S/G list.
1543 1.7 ad */
1544 1.7 ad rv = bus_dmamap_load(sc->sc_dmat, ccb->ccb_dmamap_xfer, data,
1545 1.16 thorpej ccb->ccb_datasize, NULL, BUS_DMA_NOWAIT | BUS_DMA_STREAMING |
1546 1.16 thorpej ((ccb->ccb_flags & TWE_CCB_DATA_IN) ?
1547 1.22 ad BUS_DMA_READ : BUS_DMA_WRITE));
1548 1.7 ad if (rv != 0) {
1549 1.20 ad if (ccb->ccb_abuf != (vaddr_t)0) {
1550 1.20 ad s = splvm();
1551 1.20 ad /* XXX */
1552 1.20 ad uvm_km_free(kmem_map, ccb->ccb_abuf,
1553 1.65 yamt ccb->ccb_datasize, UVM_KMF_WIRED);
1554 1.20 ad splx(s);
1555 1.7 ad }
1556 1.7 ad return (rv);
1557 1.7 ad }
1558 1.1 ad
1559 1.1 ad nsegs = ccb->ccb_dmamap_xfer->dm_nsegs;
1560 1.1 ad tc = ccb->ccb_cmd;
1561 1.1 ad tc->tc_size += 2 * nsegs;
1562 1.1 ad
1563 1.1 ad /* The location of the S/G list is dependant upon command type. */
1564 1.1 ad switch (tc->tc_opcode >> 5) {
1565 1.1 ad case 2:
1566 1.1 ad for (i = 0; i < nsegs; i++) {
1567 1.1 ad tc->tc_args.param.sgl[i].tsg_address =
1568 1.1 ad htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_addr);
1569 1.1 ad tc->tc_args.param.sgl[i].tsg_length =
1570 1.1 ad htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_len);
1571 1.1 ad }
1572 1.1 ad /* XXX Needed? */
1573 1.1 ad for (; i < TWE_SG_SIZE; i++) {
1574 1.1 ad tc->tc_args.param.sgl[i].tsg_address = 0;
1575 1.1 ad tc->tc_args.param.sgl[i].tsg_length = 0;
1576 1.1 ad }
1577 1.1 ad break;
1578 1.1 ad case 3:
1579 1.1 ad for (i = 0; i < nsegs; i++) {
1580 1.1 ad tc->tc_args.io.sgl[i].tsg_address =
1581 1.1 ad htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_addr);
1582 1.1 ad tc->tc_args.io.sgl[i].tsg_length =
1583 1.1 ad htole32(ccb->ccb_dmamap_xfer->dm_segs[i].ds_len);
1584 1.1 ad }
1585 1.1 ad /* XXX Needed? */
1586 1.1 ad for (; i < TWE_SG_SIZE; i++) {
1587 1.1 ad tc->tc_args.io.sgl[i].tsg_address = 0;
1588 1.1 ad tc->tc_args.io.sgl[i].tsg_length = 0;
1589 1.1 ad }
1590 1.1 ad break;
1591 1.1 ad default:
1592 1.58 thorpej /*
1593 1.58 thorpej * In all likelihood, this is a command passed from
1594 1.58 thorpej * management tools in userspace where no S/G list is
1595 1.58 thorpej * necessary because no data is being passed.
1596 1.58 thorpej */
1597 1.58 thorpej break;
1598 1.1 ad }
1599 1.1 ad
1600 1.1 ad if ((ccb->ccb_flags & TWE_CCB_DATA_IN) != 0)
1601 1.1 ad flags = BUS_DMASYNC_PREREAD;
1602 1.1 ad else
1603 1.1 ad flags = 0;
1604 1.1 ad if ((ccb->ccb_flags & TWE_CCB_DATA_OUT) != 0)
1605 1.1 ad flags |= BUS_DMASYNC_PREWRITE;
1606 1.1 ad
1607 1.1 ad bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap_xfer, 0,
1608 1.1 ad ccb->ccb_datasize, flags);
1609 1.1 ad return (0);
1610 1.1 ad }
1611 1.1 ad
1612 1.1 ad /*
1613 1.1 ad * Unmap the specified CCB's command block and data buffer (if any) and
1614 1.1 ad * perform DMA synchronisation.
1615 1.1 ad */
1616 1.1 ad void
1617 1.1 ad twe_ccb_unmap(struct twe_softc *sc, struct twe_ccb *ccb)
1618 1.1 ad {
1619 1.20 ad int flags, s;
1620 1.1 ad
1621 1.1 ad if ((ccb->ccb_flags & TWE_CCB_DATA_IN) != 0)
1622 1.1 ad flags = BUS_DMASYNC_POSTREAD;
1623 1.1 ad else
1624 1.1 ad flags = 0;
1625 1.1 ad if ((ccb->ccb_flags & TWE_CCB_DATA_OUT) != 0)
1626 1.1 ad flags |= BUS_DMASYNC_POSTWRITE;
1627 1.1 ad
1628 1.1 ad bus_dmamap_sync(sc->sc_dmat, ccb->ccb_dmamap_xfer, 0,
1629 1.1 ad ccb->ccb_datasize, flags);
1630 1.1 ad bus_dmamap_unload(sc->sc_dmat, ccb->ccb_dmamap_xfer);
1631 1.1 ad
1632 1.20 ad if (ccb->ccb_abuf != (vaddr_t)0) {
1633 1.2 ad if ((ccb->ccb_flags & TWE_CCB_DATA_IN) != 0)
1634 1.20 ad memcpy(ccb->ccb_data, (void *)ccb->ccb_abuf,
1635 1.2 ad ccb->ccb_datasize);
1636 1.20 ad s = splvm();
1637 1.20 ad /* XXX */
1638 1.65 yamt uvm_km_free(kmem_map, ccb->ccb_abuf, ccb->ccb_datasize,
1639 1.65 yamt UVM_KMF_WIRED);
1640 1.20 ad splx(s);
1641 1.1 ad }
1642 1.1 ad }
1643 1.1 ad
1644 1.1 ad /*
1645 1.7 ad * Submit a command to the controller and poll on completion. Return
1646 1.7 ad * non-zero on timeout (but don't check status, as some command types don't
1647 1.7 ad * return status). Must be called with interrupts blocked.
1648 1.1 ad */
1649 1.1 ad int
1650 1.1 ad twe_ccb_poll(struct twe_softc *sc, struct twe_ccb *ccb, int timo)
1651 1.1 ad {
1652 1.7 ad int rv;
1653 1.7 ad
1654 1.7 ad if ((rv = twe_ccb_submit(sc, ccb)) != 0)
1655 1.7 ad return (rv);
1656 1.1 ad
1657 1.15 ad for (timo *= 1000; timo != 0; timo--) {
1658 1.1 ad twe_poll(sc);
1659 1.1 ad if ((ccb->ccb_flags & TWE_CCB_COMPLETE) != 0)
1660 1.1 ad break;
1661 1.15 ad DELAY(100);
1662 1.1 ad }
1663 1.1 ad
1664 1.1 ad return (timo == 0);
1665 1.1 ad }
1666 1.1 ad
1667 1.1 ad /*
1668 1.1 ad * If a CCB is specified, enqueue it. Pull CCBs off the software queue in
1669 1.1 ad * the order that they were enqueued and try to submit their command blocks
1670 1.1 ad * to the controller for execution.
1671 1.1 ad */
1672 1.1 ad void
1673 1.1 ad twe_ccb_enqueue(struct twe_softc *sc, struct twe_ccb *ccb)
1674 1.1 ad {
1675 1.1 ad int s;
1676 1.1 ad
1677 1.1 ad s = splbio();
1678 1.1 ad
1679 1.1 ad if (ccb != NULL)
1680 1.1 ad SIMPLEQ_INSERT_TAIL(&sc->sc_ccb_queue, ccb, ccb_chain.simpleq);
1681 1.1 ad
1682 1.1 ad while ((ccb = SIMPLEQ_FIRST(&sc->sc_ccb_queue)) != NULL) {
1683 1.1 ad if (twe_ccb_submit(sc, ccb))
1684 1.1 ad break;
1685 1.25 lukem SIMPLEQ_REMOVE_HEAD(&sc->sc_ccb_queue, ccb_chain.simpleq);
1686 1.1 ad }
1687 1.1 ad
1688 1.1 ad splx(s);
1689 1.1 ad }
1690 1.1 ad
1691 1.1 ad /*
1692 1.1 ad * Submit the command block associated with the specified CCB to the
1693 1.1 ad * controller for execution. Must be called with interrupts blocked.
1694 1.1 ad */
1695 1.1 ad int
1696 1.1 ad twe_ccb_submit(struct twe_softc *sc, struct twe_ccb *ccb)
1697 1.1 ad {
1698 1.1 ad bus_addr_t pa;
1699 1.1 ad int rv;
1700 1.1 ad u_int status;
1701 1.1 ad
1702 1.1 ad /* Check to see if we can post a command. */
1703 1.22 ad status = twe_inl(sc, TWE_REG_STS);
1704 1.1 ad twe_status_check(sc, status);
1705 1.1 ad
1706 1.1 ad if ((status & TWE_STS_CMD_QUEUE_FULL) == 0) {
1707 1.1 ad bus_dmamap_sync(sc->sc_dmat, sc->sc_dmamap,
1708 1.1 ad (caddr_t)ccb->ccb_cmd - sc->sc_cmds, sizeof(struct twe_cmd),
1709 1.1 ad BUS_DMASYNC_PREWRITE | BUS_DMASYNC_PREREAD);
1710 1.50 thorpej #ifdef DIAGNOSTIC
1711 1.50 thorpej if ((ccb->ccb_flags & TWE_CCB_ALLOCED) == 0)
1712 1.50 thorpej panic("%s: CCB %ld not ALLOCED\n",
1713 1.50 thorpej sc->sc_dv.dv_xname, (long)(ccb - sc->sc_ccbs));
1714 1.50 thorpej #endif
1715 1.1 ad ccb->ccb_flags |= TWE_CCB_ACTIVE;
1716 1.1 ad pa = sc->sc_cmds_paddr +
1717 1.1 ad ccb->ccb_cmdid * sizeof(struct twe_cmd);
1718 1.22 ad twe_outl(sc, TWE_REG_CMD_QUEUE, (u_int32_t)pa);
1719 1.1 ad rv = 0;
1720 1.1 ad } else
1721 1.1 ad rv = EBUSY;
1722 1.1 ad
1723 1.1 ad return (rv);
1724 1.33 christos }
1725 1.33 christos
1726 1.33 christos
1727 1.33 christos /*
1728 1.33 christos * Accept an open operation on the control device.
1729 1.33 christos */
1730 1.68 thorpej static int
1731 1.37 fvdl tweopen(dev_t dev, int flag, int mode, struct proc *p)
1732 1.33 christos {
1733 1.33 christos struct twe_softc *twe;
1734 1.33 christos
1735 1.33 christos if ((twe = device_lookup(&twe_cd, minor(dev))) == NULL)
1736 1.33 christos return (ENXIO);
1737 1.33 christos if ((twe->sc_flags & TWEF_OPEN) != 0)
1738 1.33 christos return (EBUSY);
1739 1.33 christos
1740 1.33 christos twe->sc_flags |= TWEF_OPEN;
1741 1.33 christos return (0);
1742 1.33 christos }
1743 1.33 christos
1744 1.33 christos /*
1745 1.33 christos * Accept the last close on the control device.
1746 1.33 christos */
1747 1.68 thorpej static int
1748 1.37 fvdl tweclose(dev_t dev, int flag, int mode, struct proc *p)
1749 1.33 christos {
1750 1.33 christos struct twe_softc *twe;
1751 1.33 christos
1752 1.33 christos twe = device_lookup(&twe_cd, minor(dev));
1753 1.33 christos twe->sc_flags &= ~TWEF_OPEN;
1754 1.33 christos return (0);
1755 1.33 christos }
1756 1.33 christos
1757 1.56 thorpej void
1758 1.56 thorpej twe_ccb_wait_handler(struct twe_ccb *ccb, int error)
1759 1.54 thorpej {
1760 1.54 thorpej
1761 1.54 thorpej /* Just wake up the sleeper. */
1762 1.54 thorpej wakeup(ccb);
1763 1.54 thorpej }
1764 1.54 thorpej
1765 1.33 christos /*
1766 1.33 christos * Handle control operations.
1767 1.33 christos */
1768 1.68 thorpej static int
1769 1.37 fvdl tweioctl(dev_t dev, u_long cmd, caddr_t data, int flag, struct proc *p)
1770 1.33 christos {
1771 1.33 christos struct twe_softc *twe;
1772 1.33 christos struct twe_ccb *ccb;
1773 1.33 christos struct twe_param *param;
1774 1.33 christos struct twe_usercommand *tu;
1775 1.33 christos struct twe_paramcommand *tp;
1776 1.50 thorpej struct twe_drivecommand *td;
1777 1.33 christos void *pdata = NULL;
1778 1.51 thorpej int s, error = 0;
1779 1.33 christos u_int8_t cmdid;
1780 1.33 christos
1781 1.33 christos if (securelevel >= 2)
1782 1.33 christos return (EPERM);
1783 1.33 christos
1784 1.33 christos twe = device_lookup(&twe_cd, minor(dev));
1785 1.33 christos tu = (struct twe_usercommand *)data;
1786 1.33 christos tp = (struct twe_paramcommand *)data;
1787 1.50 thorpej td = (struct twe_drivecommand *)data;
1788 1.33 christos
1789 1.51 thorpej /* This is intended to be compatible with the FreeBSD interface. */
1790 1.33 christos switch (cmd) {
1791 1.33 christos case TWEIO_COMMAND:
1792 1.54 thorpej /* XXX mutex */
1793 1.33 christos if (tu->tu_size > 0) {
1794 1.51 thorpej /*
1795 1.51 thorpej * XXX Handle > TWE_SECTOR_SIZE? Let's see if
1796 1.51 thorpej * it's really necessary, first.
1797 1.51 thorpej */
1798 1.51 thorpej if (tu->tu_size > TWE_SECTOR_SIZE) {
1799 1.51 thorpej #ifdef TWE_DEBUG
1800 1.51 thorpej printf("%s: TWEIO_COMMAND: tu_size = %d\n",
1801 1.51 thorpej twe->sc_dv.dv_xname, tu->tu_size);
1802 1.51 thorpej #endif
1803 1.33 christos return EINVAL;
1804 1.51 thorpej }
1805 1.53 thorpej pdata = malloc(TWE_SECTOR_SIZE, M_DEVBUF, M_WAITOK);
1806 1.33 christos error = copyin(tu->tu_data, pdata, tu->tu_size);
1807 1.33 christos if (error != 0)
1808 1.33 christos goto done;
1809 1.51 thorpej ccb = twe_ccb_alloc_wait(twe,
1810 1.33 christos TWE_CCB_DATA_IN | TWE_CCB_DATA_OUT);
1811 1.51 thorpej KASSERT(ccb != NULL);
1812 1.33 christos ccb->ccb_data = pdata;
1813 1.33 christos ccb->ccb_datasize = TWE_SECTOR_SIZE;
1814 1.51 thorpej } else {
1815 1.51 thorpej ccb = twe_ccb_alloc_wait(twe, 0);
1816 1.51 thorpej KASSERT(ccb != NULL);
1817 1.33 christos }
1818 1.54 thorpej
1819 1.56 thorpej ccb->ccb_tx.tx_handler = twe_ccb_wait_handler;
1820 1.54 thorpej ccb->ccb_tx.tx_context = NULL;
1821 1.54 thorpej ccb->ccb_tx.tx_dv = &twe->sc_dv;
1822 1.54 thorpej
1823 1.51 thorpej cmdid = ccb->ccb_cmdid;
1824 1.51 thorpej memcpy(ccb->ccb_cmd, &tu->tu_cmd, sizeof(struct twe_cmd));
1825 1.51 thorpej ccb->ccb_cmd->tc_cmdid = cmdid;
1826 1.51 thorpej
1827 1.33 christos /* Map the transfer. */
1828 1.33 christos if ((error = twe_ccb_map(twe, ccb)) != 0) {
1829 1.33 christos twe_ccb_free(twe, ccb);
1830 1.33 christos goto done;
1831 1.33 christos }
1832 1.33 christos
1833 1.54 thorpej /* Submit the command and wait up to 1 minute. */
1834 1.54 thorpej error = 0;
1835 1.54 thorpej twe_ccb_enqueue(twe, ccb);
1836 1.33 christos s = splbio();
1837 1.54 thorpej while ((ccb->ccb_flags & TWE_CCB_COMPLETE) == 0)
1838 1.54 thorpej if ((error = tsleep(ccb, PRIBIO, "tweioctl",
1839 1.54 thorpej 60 * hz)) != 0)
1840 1.54 thorpej break;
1841 1.51 thorpej splx(s);
1842 1.51 thorpej
1843 1.51 thorpej /* Copy the command back to the ioctl argument. */
1844 1.51 thorpej memcpy(&tu->tu_cmd, ccb->ccb_cmd, sizeof(struct twe_cmd));
1845 1.51 thorpej #ifdef TWE_DEBUG
1846 1.51 thorpej printf("%s: TWEIO_COMMAND: tc_opcode = 0x%02x, "
1847 1.51 thorpej "tc_status = 0x%02x\n", twe->sc_dv.dv_xname,
1848 1.51 thorpej tu->tu_cmd.tc_opcode, tu->tu_cmd.tc_status);
1849 1.51 thorpej #endif
1850 1.51 thorpej
1851 1.51 thorpej s = splbio();
1852 1.33 christos twe_ccb_free(twe, ccb);
1853 1.33 christos splx(s);
1854 1.33 christos
1855 1.33 christos if (tu->tu_size > 0)
1856 1.33 christos error = copyout(pdata, tu->tu_data, tu->tu_size);
1857 1.33 christos goto done;
1858 1.33 christos
1859 1.33 christos case TWEIO_STATS:
1860 1.33 christos return (ENOENT);
1861 1.33 christos
1862 1.33 christos case TWEIO_AEN_POLL:
1863 1.45 thorpej s = splbio();
1864 1.45 thorpej *(u_int *)data = twe_aen_dequeue(twe);
1865 1.45 thorpej splx(s);
1866 1.33 christos return (0);
1867 1.33 christos
1868 1.33 christos case TWEIO_AEN_WAIT:
1869 1.33 christos s = splbio();
1870 1.45 thorpej while ((*(u_int *)data =
1871 1.45 thorpej twe_aen_dequeue(twe)) == TWE_AEN_QUEUE_EMPTY) {
1872 1.45 thorpej twe->sc_flags |= TWEF_AENQ_WAIT;
1873 1.45 thorpej error = tsleep(&twe->sc_aen_queue, PRIBIO | PCATCH,
1874 1.45 thorpej "tweaen", 0);
1875 1.45 thorpej if (error == EINTR) {
1876 1.45 thorpej splx(s);
1877 1.45 thorpej return (error);
1878 1.45 thorpej }
1879 1.33 christos }
1880 1.33 christos splx(s);
1881 1.33 christos return (0);
1882 1.33 christos
1883 1.33 christos case TWEIO_GET_PARAM:
1884 1.33 christos error = twe_param_get(twe, tp->tp_table_id, tp->tp_param_id,
1885 1.39 jdolecek tp->tp_size, 0, ¶m);
1886 1.33 christos if (error != 0)
1887 1.33 christos return (error);
1888 1.33 christos if (param->tp_param_size > tp->tp_size) {
1889 1.33 christos error = EFAULT;
1890 1.33 christos goto done;
1891 1.33 christos }
1892 1.63 perry error = copyout(param->tp_data, tp->tp_data,
1893 1.33 christos param->tp_param_size);
1894 1.33 christos goto done;
1895 1.33 christos
1896 1.33 christos case TWEIO_SET_PARAM:
1897 1.33 christos pdata = malloc(tp->tp_size, M_DEVBUF, M_WAITOK);
1898 1.33 christos if ((error = copyin(tp->tp_data, pdata, tp->tp_size)) != 0)
1899 1.33 christos goto done;
1900 1.33 christos error = twe_param_set(twe, tp->tp_table_id, tp->tp_param_id,
1901 1.33 christos tp->tp_size, pdata);
1902 1.33 christos goto done;
1903 1.33 christos
1904 1.33 christos case TWEIO_RESET:
1905 1.47 thorpej s = splbio();
1906 1.33 christos twe_reset(twe);
1907 1.47 thorpej splx(s);
1908 1.33 christos return (0);
1909 1.46 thorpej
1910 1.46 thorpej case TWEIO_ADD_UNIT:
1911 1.46 thorpej /* XXX mutex */
1912 1.50 thorpej return (twe_add_unit(twe, td->td_unit));
1913 1.46 thorpej
1914 1.46 thorpej case TWEIO_DEL_UNIT:
1915 1.46 thorpej /* XXX mutex */
1916 1.50 thorpej return (twe_del_unit(twe, td->td_unit));
1917 1.33 christos
1918 1.33 christos default:
1919 1.33 christos return EINVAL;
1920 1.33 christos }
1921 1.33 christos done:
1922 1.33 christos if (pdata)
1923 1.33 christos free(pdata, M_DEVBUF);
1924 1.33 christos return error;
1925 1.38 jdolecek }
1926 1.38 jdolecek
1927 1.68 thorpej const struct cdevsw twe_cdevsw = {
1928 1.68 thorpej tweopen, tweclose, noread, nowrite, tweioctl,
1929 1.68 thorpej nostop, notty, nopoll, nommap,
1930 1.68 thorpej };
1931 1.68 thorpej
1932 1.38 jdolecek /*
1933 1.38 jdolecek * Print some information about the controller
1934 1.38 jdolecek */
1935 1.38 jdolecek static void
1936 1.38 jdolecek twe_describe_controller(struct twe_softc *sc)
1937 1.38 jdolecek {
1938 1.41 thorpej struct twe_param *p[6];
1939 1.44 thorpej int i, rv = 0;
1940 1.44 thorpej uint32_t dsize;
1941 1.41 thorpej uint8_t ports;
1942 1.41 thorpej
1943 1.38 jdolecek /* get the port count */
1944 1.41 thorpej rv |= twe_param_get_1(sc, TWE_PARAM_CONTROLLER,
1945 1.41 thorpej TWE_PARAM_CONTROLLER_PortCount, &ports);
1946 1.38 jdolecek
1947 1.38 jdolecek /* get version strings */
1948 1.38 jdolecek rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_Mon,
1949 1.41 thorpej 16, NULL, &p[0]);
1950 1.41 thorpej rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_FW,
1951 1.38 jdolecek 16, NULL, &p[1]);
1952 1.41 thorpej rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_BIOS,
1953 1.38 jdolecek 16, NULL, &p[2]);
1954 1.38 jdolecek rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_PCB,
1955 1.41 thorpej 8, NULL, &p[3]);
1956 1.41 thorpej rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_ATA,
1957 1.38 jdolecek 8, NULL, &p[4]);
1958 1.41 thorpej rv |= twe_param_get(sc, TWE_PARAM_VERSION, TWE_PARAM_VERSION_PCI,
1959 1.38 jdolecek 8, NULL, &p[5]);
1960 1.38 jdolecek
1961 1.38 jdolecek if (rv) {
1962 1.38 jdolecek /* some error occurred */
1963 1.38 jdolecek aprint_error("%s: failed to fetch version information\n",
1964 1.38 jdolecek sc->sc_dv.dv_xname);
1965 1.38 jdolecek return;
1966 1.38 jdolecek }
1967 1.38 jdolecek
1968 1.38 jdolecek aprint_normal("%s: %d ports, Firmware %.16s, BIOS %.16s\n",
1969 1.41 thorpej sc->sc_dv.dv_xname, ports,
1970 1.41 thorpej p[1]->tp_data, p[2]->tp_data);
1971 1.38 jdolecek
1972 1.38 jdolecek aprint_verbose("%s: Monitor %.16s, PCB %.8s, Achip %.8s, Pchip %.8s\n",
1973 1.38 jdolecek sc->sc_dv.dv_xname,
1974 1.41 thorpej p[0]->tp_data, p[3]->tp_data,
1975 1.41 thorpej p[4]->tp_data, p[5]->tp_data);
1976 1.38 jdolecek
1977 1.38 jdolecek free(p[0], M_DEVBUF);
1978 1.38 jdolecek free(p[1], M_DEVBUF);
1979 1.38 jdolecek free(p[2], M_DEVBUF);
1980 1.38 jdolecek free(p[3], M_DEVBUF);
1981 1.38 jdolecek free(p[4], M_DEVBUF);
1982 1.38 jdolecek free(p[5], M_DEVBUF);
1983 1.44 thorpej
1984 1.44 thorpej rv = twe_param_get(sc, TWE_PARAM_DRIVESUMMARY,
1985 1.44 thorpej TWE_PARAM_DRIVESUMMARY_Status, 16, NULL, &p[0]);
1986 1.44 thorpej if (rv) {
1987 1.44 thorpej aprint_error("%s: failed to get drive status summary\n",
1988 1.44 thorpej sc->sc_dv.dv_xname);
1989 1.44 thorpej return;
1990 1.44 thorpej }
1991 1.44 thorpej for (i = 0; i < ports; i++) {
1992 1.44 thorpej if (p[0]->tp_data[i] != TWE_PARAM_DRIVESTATUS_Present)
1993 1.44 thorpej continue;
1994 1.44 thorpej rv = twe_param_get_4(sc, TWE_PARAM_DRIVEINFO + i,
1995 1.44 thorpej TWE_PARAM_DRIVEINFO_Size, &dsize);
1996 1.44 thorpej if (rv) {
1997 1.44 thorpej aprint_error(
1998 1.44 thorpej "%s: unable to get drive size for port %d\n",
1999 1.44 thorpej sc->sc_dv.dv_xname, i);
2000 1.44 thorpej continue;
2001 1.44 thorpej }
2002 1.44 thorpej rv = twe_param_get(sc, TWE_PARAM_DRIVEINFO + i,
2003 1.44 thorpej TWE_PARAM_DRIVEINFO_Model, 40, NULL, &p[1]);
2004 1.44 thorpej if (rv) {
2005 1.44 thorpej aprint_error(
2006 1.44 thorpej "%s: unable to get drive model for port %d\n",
2007 1.44 thorpej sc->sc_dv.dv_xname, i);
2008 1.44 thorpej continue;
2009 1.44 thorpej }
2010 1.44 thorpej aprint_verbose("%s: port %d: %.40s %d MB\n", sc->sc_dv.dv_xname,
2011 1.44 thorpej i, p[1]->tp_data, dsize / 2048);
2012 1.44 thorpej free(p[1], M_DEVBUF);
2013 1.44 thorpej }
2014 1.44 thorpej free(p[0], M_DEVBUF);
2015 1.1 ad }
2016