aic7xxx.c revision 1.103 1 1.103 tls /* $NetBSD: aic7xxx.c,v 1.103 2003/04/23 00:55:17 tls Exp $ */
2 1.100 fvdl
3 1.1 mycroft /*
4 1.96 fvdl * Core routines and tables shareable across OS platforms.
5 1.1 mycroft *
6 1.96 fvdl * Copyright (c) 1994-2002 Justin T. Gibbs.
7 1.96 fvdl * Copyright (c) 2000-2002 Adaptec Inc.
8 1.6 mycroft * All rights reserved.
9 1.1 mycroft *
10 1.6 mycroft * Redistribution and use in source and binary forms, with or without
11 1.6 mycroft * modification, are permitted provided that the following conditions
12 1.6 mycroft * are met:
13 1.6 mycroft * 1. Redistributions of source code must retain the above copyright
14 1.42 fvdl * notice, this list of conditions, and the following disclaimer,
15 1.42 fvdl * without modification.
16 1.96 fvdl * 2. Redistributions in binary form must reproduce at minimum a disclaimer
17 1.96 fvdl * substantially similar to the "NO WARRANTY" disclaimer below
18 1.96 fvdl * ("Disclaimer") and any redistribution must be conditioned upon
19 1.96 fvdl * including a substantially similar Disclaimer requirement for further
20 1.96 fvdl * binary redistribution.
21 1.96 fvdl * 3. Neither the names of the above-listed copyright holders nor the names
22 1.96 fvdl * of any contributors may be used to endorse or promote products derived
23 1.96 fvdl * from this software without specific prior written permission.
24 1.1 mycroft *
25 1.42 fvdl * Alternatively, this software may be distributed under the terms of the
26 1.96 fvdl * GNU General Public License ("GPL") version 2 as published by the Free
27 1.96 fvdl * Software Foundation.
28 1.42 fvdl *
29 1.96 fvdl * NO WARRANTY
30 1.96 fvdl * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
31 1.96 fvdl * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
32 1.96 fvdl * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
33 1.96 fvdl * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
34 1.96 fvdl * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
35 1.6 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
36 1.6 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
37 1.96 fvdl * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
38 1.96 fvdl * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
39 1.96 fvdl * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
40 1.96 fvdl * POSSIBILITY OF SUCH DAMAGES.
41 1.96 fvdl *
42 1.103 tls * $Id: aic7xxx.c,v 1.103 2003/04/23 00:55:17 tls Exp $
43 1.9 explorer *
44 1.96 fvdl * //depot/aic7xxx/aic7xxx/aic7xxx.c#112 $
45 1.96 fvdl *
46 1.96 fvdl * $FreeBSD: /repoman/r/ncvs/src/sys/dev/aic7xxx/aic7xxx.c,v 1.88 2003/01/20 20:44:55 gibbs Exp $
47 1.1 mycroft */
48 1.1 mycroft /*
49 1.96 fvdl * Ported from FreeBSD by Pascal Renauld, Network Storage Solutions, Inc. - April 2003
50 1.1 mycroft */
51 1.83 lukem
52 1.96 fvdl #include <dev/ic/aic7xxx_osm.h>
53 1.96 fvdl #include <dev/ic/aic7xxx_inline.h>
54 1.96 fvdl #include <dev/ic/aic7xxx_cam.h>
55 1.1 mycroft
56 1.96 fvdl /****************************** Softc Data ************************************/
57 1.96 fvdl struct ahc_softc_tailq ahc_tailq = TAILQ_HEAD_INITIALIZER(ahc_tailq);
58 1.42 fvdl
59 1.96 fvdl /***************************** Lookup Tables **********************************/
60 1.96 fvdl char *ahc_chip_names[] =
61 1.42 fvdl {
62 1.42 fvdl "NONE",
63 1.42 fvdl "aic7770",
64 1.42 fvdl "aic7850",
65 1.42 fvdl "aic7855",
66 1.42 fvdl "aic7859",
67 1.42 fvdl "aic7860",
68 1.42 fvdl "aic7870",
69 1.42 fvdl "aic7880",
70 1.96 fvdl "aic7895",
71 1.96 fvdl "aic7895C",
72 1.42 fvdl "aic7890/91",
73 1.96 fvdl "aic7896/97",
74 1.42 fvdl "aic7892",
75 1.42 fvdl "aic7899"
76 1.42 fvdl };
77 1.1 mycroft
78 1.96 fvdl /*
79 1.96 fvdl * Hardware error codes.
80 1.96 fvdl */
81 1.96 fvdl struct ahc_hard_error_entry {
82 1.96 fvdl uint8_t errno;
83 1.96 fvdl char *errmesg;
84 1.42 fvdl };
85 1.28 leo
86 1.96 fvdl static struct ahc_hard_error_entry ahc_hard_errors[] = {
87 1.96 fvdl { ILLHADDR, "Illegal Host Access" },
88 1.96 fvdl { ILLSADDR, "Illegal Sequencer Address referrenced" },
89 1.96 fvdl { ILLOPCODE, "Illegal Opcode in sequencer program" },
90 1.96 fvdl { SQPARERR, "Sequencer Parity Error" },
91 1.96 fvdl { DPARERR, "Data-path Parity Error" },
92 1.96 fvdl { MPARERR, "Scratch or SCB Memory Parity Error" },
93 1.96 fvdl { PCIERRSTAT, "PCI Error detected" },
94 1.96 fvdl { CIOPARERR, "CIOBUS Parity Error" },
95 1.96 fvdl };
96 1.96 fvdl static const u_int num_errors = NUM_ELEMENTS(ahc_hard_errors);
97 1.1 mycroft
98 1.96 fvdl static struct ahc_phase_table_entry ahc_phase_table[] =
99 1.42 fvdl {
100 1.96 fvdl { P_DATAOUT, MSG_NOOP, "in Data-out phase" },
101 1.96 fvdl { P_DATAIN, MSG_INITIATOR_DET_ERR, "in Data-in phase" },
102 1.96 fvdl { P_DATAOUT_DT, MSG_NOOP, "in DT Data-out phase" },
103 1.96 fvdl { P_DATAIN_DT, MSG_INITIATOR_DET_ERR, "in DT Data-in phase" },
104 1.96 fvdl { P_COMMAND, MSG_NOOP, "in Command phase" },
105 1.96 fvdl { P_MESGOUT, MSG_NOOP, "in Message-out phase" },
106 1.96 fvdl { P_STATUS, MSG_INITIATOR_DET_ERR, "in Status phase" },
107 1.96 fvdl { P_MESGIN, MSG_PARITY_ERROR, "in Message-in phase" },
108 1.96 fvdl { P_BUSFREE, MSG_NOOP, "while idle" },
109 1.96 fvdl { 0, MSG_NOOP, "in unknown phase" }
110 1.96 fvdl };
111 1.1 mycroft
112 1.1 mycroft /*
113 1.96 fvdl * In most cases we only wish to itterate over real phases, so
114 1.96 fvdl * exclude the last element from the count.
115 1.1 mycroft */
116 1.96 fvdl static const u_int num_phases = NUM_ELEMENTS(ahc_phase_table) - 1;
117 1.1 mycroft
118 1.96 fvdl /*
119 1.96 fvdl * Valid SCSIRATE values. (p. 3-17)
120 1.96 fvdl * Provides a mapping of tranfer periods in ns to the proper value to
121 1.96 fvdl * stick in the scsixfer reg.
122 1.96 fvdl */
123 1.96 fvdl static struct ahc_syncrate ahc_syncrates[] =
124 1.42 fvdl {
125 1.96 fvdl /* ultra2 fast/ultra period rate */
126 1.96 fvdl { 0x42, 0x000, 9, "80.0" },
127 1.96 fvdl { 0x03, 0x000, 10, "40.0" },
128 1.96 fvdl { 0x04, 0x000, 11, "33.0" },
129 1.96 fvdl { 0x05, 0x100, 12, "20.0" },
130 1.96 fvdl { 0x06, 0x110, 15, "16.0" },
131 1.96 fvdl { 0x07, 0x120, 18, "13.4" },
132 1.96 fvdl { 0x08, 0x000, 25, "10.0" },
133 1.96 fvdl { 0x19, 0x010, 31, "8.0" },
134 1.96 fvdl { 0x1a, 0x020, 37, "6.67" },
135 1.96 fvdl { 0x1b, 0x030, 43, "5.7" },
136 1.96 fvdl { 0x1c, 0x040, 50, "5.0" },
137 1.96 fvdl { 0x00, 0x050, 56, "4.4" },
138 1.96 fvdl { 0x00, 0x060, 62, "4.0" },
139 1.96 fvdl { 0x00, 0x070, 68, "3.6" },
140 1.96 fvdl { 0x00, 0x000, 0, NULL }
141 1.96 fvdl };
142 1.1 mycroft
143 1.96 fvdl /* Our Sequencer Program */
144 1.96 fvdl #include <dev/microcode/aic7xxx/aic7xxx_seq.h>
145 1.1 mycroft
146 1.96 fvdl /**************************** Function Declarations ***************************/
147 1.96 fvdl static void ahc_force_renegotiation(struct ahc_softc *ahc);
148 1.96 fvdl static struct ahc_tmode_tstate*
149 1.96 fvdl ahc_alloc_tstate(struct ahc_softc *ahc,
150 1.96 fvdl u_int scsi_id, char channel);
151 1.96 fvdl #ifdef AHC_TARGET_MODE
152 1.96 fvdl static void ahc_free_tstate(struct ahc_softc *ahc,
153 1.96 fvdl u_int scsi_id, char channel, int force);
154 1.96 fvdl #endif
155 1.96 fvdl static struct ahc_syncrate*
156 1.96 fvdl ahc_devlimited_syncrate(struct ahc_softc *ahc,
157 1.96 fvdl struct ahc_initiator_tinfo *,
158 1.96 fvdl u_int *period,
159 1.96 fvdl u_int *ppr_options,
160 1.96 fvdl role_t role);
161 1.96 fvdl static void ahc_update_pending_scbs(struct ahc_softc *ahc);
162 1.96 fvdl static void ahc_fetch_devinfo(struct ahc_softc *ahc,
163 1.96 fvdl struct ahc_devinfo *devinfo);
164 1.96 fvdl static void ahc_scb_devinfo(struct ahc_softc *ahc,
165 1.96 fvdl struct ahc_devinfo *devinfo,
166 1.96 fvdl struct scb *scb);
167 1.96 fvdl static void ahc_assert_atn(struct ahc_softc *ahc);
168 1.96 fvdl static void ahc_setup_initiator_msgout(struct ahc_softc *ahc,
169 1.96 fvdl struct ahc_devinfo *devinfo,
170 1.96 fvdl struct scb *scb);
171 1.96 fvdl static void ahc_build_transfer_msg(struct ahc_softc *ahc,
172 1.96 fvdl struct ahc_devinfo *devinfo);
173 1.96 fvdl static void ahc_construct_sdtr(struct ahc_softc *ahc,
174 1.96 fvdl struct ahc_devinfo *devinfo,
175 1.96 fvdl u_int period, u_int offset);
176 1.96 fvdl static void ahc_construct_wdtr(struct ahc_softc *ahc,
177 1.96 fvdl struct ahc_devinfo *devinfo,
178 1.96 fvdl u_int bus_width);
179 1.96 fvdl static void ahc_construct_ppr(struct ahc_softc *ahc,
180 1.96 fvdl struct ahc_devinfo *devinfo,
181 1.96 fvdl u_int period, u_int offset,
182 1.96 fvdl u_int bus_width, u_int ppr_options);
183 1.96 fvdl static void ahc_clear_msg_state(struct ahc_softc *ahc);
184 1.96 fvdl static void ahc_handle_proto_violation(struct ahc_softc *ahc);
185 1.96 fvdl static void ahc_handle_message_phase(struct ahc_softc *ahc);
186 1.96 fvdl typedef enum {
187 1.96 fvdl AHCMSG_1B,
188 1.96 fvdl AHCMSG_2B,
189 1.96 fvdl AHCMSG_EXT
190 1.96 fvdl } ahc_msgtype;
191 1.96 fvdl static int ahc_sent_msg(struct ahc_softc *ahc, ahc_msgtype type,
192 1.96 fvdl u_int msgval, int full);
193 1.96 fvdl static int ahc_parse_msg(struct ahc_softc *ahc,
194 1.96 fvdl struct ahc_devinfo *devinfo);
195 1.96 fvdl static int ahc_handle_msg_reject(struct ahc_softc *ahc,
196 1.96 fvdl struct ahc_devinfo *devinfo);
197 1.96 fvdl static void ahc_handle_ign_wide_residue(struct ahc_softc *ahc,
198 1.96 fvdl struct ahc_devinfo *devinfo);
199 1.96 fvdl static void ahc_reinitialize_dataptrs(struct ahc_softc *ahc);
200 1.96 fvdl static void ahc_handle_devreset(struct ahc_softc *ahc,
201 1.96 fvdl struct ahc_devinfo *devinfo,
202 1.96 fvdl cam_status status, char *message,
203 1.96 fvdl int verbose_level);
204 1.96 fvdl #if AHC_TARGET_MODE
205 1.96 fvdl static void ahc_setup_target_msgin(struct ahc_softc *ahc,
206 1.96 fvdl struct ahc_devinfo *devinfo,
207 1.96 fvdl struct scb *scb);
208 1.96 fvdl #endif
209 1.96 fvdl
210 1.96 fvdl //static bus_dmamap_callback_t ahc_dmamap_cb;
211 1.96 fvdl static void ahc_build_free_scb_list(struct ahc_softc *ahc);
212 1.96 fvdl static int ahc_init_scbdata(struct ahc_softc *ahc);
213 1.96 fvdl static void ahc_fini_scbdata(struct ahc_softc *ahc);
214 1.96 fvdl static void ahc_qinfifo_requeue(struct ahc_softc *ahc,
215 1.96 fvdl struct scb *prev_scb,
216 1.96 fvdl struct scb *scb);
217 1.96 fvdl static int ahc_qinfifo_count(struct ahc_softc *ahc);
218 1.96 fvdl static u_int ahc_rem_scb_from_disc_list(struct ahc_softc *ahc,
219 1.96 fvdl u_int prev, u_int scbptr);
220 1.96 fvdl static void ahc_add_curscb_to_free_list(struct ahc_softc *ahc);
221 1.96 fvdl static u_int ahc_rem_wscb(struct ahc_softc *ahc,
222 1.96 fvdl u_int scbpos, u_int prev);
223 1.96 fvdl static void ahc_reset_current_bus(struct ahc_softc *ahc);
224 1.96 fvdl #ifdef AHC_DUMP_SEQ
225 1.96 fvdl static void ahc_dumpseq(struct ahc_softc *ahc);
226 1.96 fvdl #endif
227 1.96 fvdl static void ahc_loadseq(struct ahc_softc *ahc);
228 1.96 fvdl static int ahc_check_patch(struct ahc_softc *ahc,
229 1.96 fvdl struct patch **start_patch,
230 1.96 fvdl u_int start_instr, u_int *skip_addr);
231 1.96 fvdl static void ahc_download_instr(struct ahc_softc *ahc,
232 1.96 fvdl u_int instrptr, uint8_t *dconsts);
233 1.96 fvdl #ifdef AHC_TARGET_MODE
234 1.96 fvdl static void ahc_queue_lstate_event(struct ahc_softc *ahc,
235 1.96 fvdl struct ahc_tmode_lstate *lstate,
236 1.96 fvdl u_int initiator_id,
237 1.96 fvdl u_int event_type,
238 1.96 fvdl u_int event_arg);
239 1.96 fvdl static void ahc_update_scsiid(struct ahc_softc *ahc,
240 1.96 fvdl u_int targid_mask);
241 1.96 fvdl static int ahc_handle_target_cmd(struct ahc_softc *ahc,
242 1.96 fvdl struct target_cmd *cmd);
243 1.96 fvdl #endif
244 1.96 fvdl
245 1.96 fvdl /************************** Added for porting to NetBSD ***********************/
246 1.96 fvdl static int ahc_createdmamem(bus_dma_tag_t tag,
247 1.96 fvdl int size,
248 1.96 fvdl int flags,
249 1.96 fvdl bus_dmamap_t *mapp,
250 1.96 fvdl caddr_t *vaddr,
251 1.96 fvdl bus_addr_t *baddr,
252 1.96 fvdl bus_dma_segment_t *seg,
253 1.96 fvdl int *nseg,
254 1.96 fvdl const char *myname, const char *what);
255 1.96 fvdl static void ahc_freedmamem(bus_dma_tag_t tag,
256 1.96 fvdl int size,
257 1.96 fvdl bus_dmamap_t map,
258 1.96 fvdl caddr_t vaddr,
259 1.96 fvdl bus_dma_segment_t *seg,
260 1.96 fvdl int nseg);
261 1.1 mycroft
262 1.96 fvdl /************************* Sequencer Execution Control ************************/
263 1.1 mycroft /*
264 1.42 fvdl * Restart the sequencer program from address zero
265 1.1 mycroft */
266 1.96 fvdl void
267 1.96 fvdl ahc_restart(struct ahc_softc *ahc)
268 1.42 fvdl {
269 1.1 mycroft
270 1.96 fvdl ahc_pause(ahc);
271 1.96 fvdl
272 1.96 fvdl /* No more pending messages. */
273 1.96 fvdl ahc_clear_msg_state(ahc);
274 1.96 fvdl
275 1.96 fvdl ahc_outb(ahc, SCSISIGO, 0); /* De-assert BSY */
276 1.96 fvdl ahc_outb(ahc, MSG_OUT, MSG_NOOP); /* No message to send */
277 1.96 fvdl ahc_outb(ahc, SXFRCTL1, ahc_inb(ahc, SXFRCTL1) & ~BITBUCKET);
278 1.96 fvdl ahc_outb(ahc, LASTPHASE, P_BUSFREE);
279 1.96 fvdl ahc_outb(ahc, SAVED_SCSIID, 0xFF);
280 1.96 fvdl ahc_outb(ahc, SAVED_LUN, 0xFF);
281 1.1 mycroft
282 1.6 mycroft /*
283 1.96 fvdl * Ensure that the sequencer's idea of TQINPOS
284 1.96 fvdl * matches our own. The sequencer increments TQINPOS
285 1.96 fvdl * only after it sees a DMA complete and a reset could
286 1.96 fvdl * occur before the increment leaving the kernel to believe
287 1.96 fvdl * the command arrived but the sequencer to not.
288 1.6 mycroft */
289 1.96 fvdl ahc_outb(ahc, TQINPOS, ahc->tqinfifonext);
290 1.1 mycroft
291 1.96 fvdl /* Always allow reselection */
292 1.96 fvdl ahc_outb(ahc, SCSISEQ,
293 1.96 fvdl ahc_inb(ahc, SCSISEQ_TEMPLATE) & (ENSELI|ENRSELI|ENAUTOATNP));
294 1.96 fvdl if ((ahc->features & AHC_CMD_CHAN) != 0) {
295 1.96 fvdl /* Ensure that no DMA operations are in progress */
296 1.96 fvdl ahc_outb(ahc, CCSCBCNT, 0);
297 1.96 fvdl ahc_outb(ahc, CCSGCTL, 0);
298 1.96 fvdl ahc_outb(ahc, CCSCBCTL, 0);
299 1.14 gibbs }
300 1.18 thorpej /*
301 1.96 fvdl * If we were in the process of DMA'ing SCB data into
302 1.96 fvdl * an SCB, replace that SCB on the free list. This prevents
303 1.96 fvdl * an SCB leak.
304 1.18 thorpej */
305 1.96 fvdl if ((ahc_inb(ahc, SEQ_FLAGS2) & SCB_DMA) != 0) {
306 1.96 fvdl ahc_add_curscb_to_free_list(ahc);
307 1.96 fvdl ahc_outb(ahc, SEQ_FLAGS2,
308 1.96 fvdl ahc_inb(ahc, SEQ_FLAGS2) & ~SCB_DMA);
309 1.96 fvdl }
310 1.96 fvdl ahc_outb(ahc, MWI_RESIDUAL, 0);
311 1.96 fvdl ahc_outb(ahc, SEQCTL, FASTMODE);
312 1.96 fvdl ahc_outb(ahc, SEQADDR0, 0);
313 1.96 fvdl ahc_outb(ahc, SEQADDR1, 0);
314 1.96 fvdl ahc_unpause(ahc);
315 1.42 fvdl }
316 1.18 thorpej
317 1.96 fvdl /************************* Input/Output Queues ********************************/
318 1.96 fvdl void
319 1.42 fvdl ahc_run_qoutfifo(struct ahc_softc *ahc)
320 1.42 fvdl {
321 1.42 fvdl struct scb *scb;
322 1.42 fvdl u_int scb_index;
323 1.32 thorpej
324 1.96 fvdl ahc_sync_qoutfifo(ahc, BUS_DMASYNC_POSTREAD);
325 1.96 fvdl while (ahc->qoutfifo[ahc->qoutfifonext] != SCB_LIST_NULL) {
326 1.32 thorpej
327 1.42 fvdl scb_index = ahc->qoutfifo[ahc->qoutfifonext];
328 1.96 fvdl if ((ahc->qoutfifonext & 0x03) == 0x03) {
329 1.96 fvdl u_int modnext;
330 1.96 fvdl
331 1.96 fvdl /*
332 1.96 fvdl * Clear 32bits of QOUTFIFO at a time
333 1.96 fvdl * so that we don't clobber an incoming
334 1.96 fvdl * byte DMA to the array on architectures
335 1.96 fvdl * that only support 32bit load and store
336 1.96 fvdl * operations.
337 1.96 fvdl */
338 1.96 fvdl modnext = ahc->qoutfifonext & ~0x3;
339 1.96 fvdl *((uint32_t *)(&ahc->qoutfifo[modnext])) = 0xFFFFFFFFUL;
340 1.96 fvdl ahc_dmamap_sync(ahc, ahc->parent_dmat /*shared_data_dmat*/,
341 1.96 fvdl ahc->shared_data_dmamap,
342 1.96 fvdl /*offset*/modnext, /*len*/4,
343 1.96 fvdl BUS_DMASYNC_PREREAD);
344 1.96 fvdl }
345 1.96 fvdl ahc->qoutfifonext++;
346 1.42 fvdl
347 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
348 1.96 fvdl if (scb == NULL) {
349 1.42 fvdl printf("%s: WARNING no command for scb %d "
350 1.42 fvdl "(cmdcmplt)\nQOUTPOS = %d\n",
351 1.42 fvdl ahc_name(ahc), scb_index,
352 1.96 fvdl (ahc->qoutfifonext - 1) & 0xFF);
353 1.42 fvdl continue;
354 1.42 fvdl }
355 1.6 mycroft
356 1.6 mycroft /*
357 1.42 fvdl * Save off the residual
358 1.42 fvdl * if there is one.
359 1.6 mycroft */
360 1.96 fvdl ahc_update_residual(ahc, scb);
361 1.42 fvdl ahc_done(ahc, scb);
362 1.1 mycroft }
363 1.1 mycroft }
364 1.1 mycroft
365 1.96 fvdl void
366 1.96 fvdl ahc_run_untagged_queues(struct ahc_softc *ahc)
367 1.59 pk {
368 1.96 fvdl int i;
369 1.42 fvdl
370 1.96 fvdl for (i = 0; i < 16; i++)
371 1.96 fvdl ahc_run_untagged_queue(ahc, &ahc->untagged_queues[i]);
372 1.96 fvdl }
373 1.42 fvdl
374 1.96 fvdl void
375 1.96 fvdl ahc_run_untagged_queue(struct ahc_softc *ahc, struct scb_tailq *queue)
376 1.96 fvdl {
377 1.96 fvdl struct scb *scb;
378 1.28 leo
379 1.96 fvdl if (ahc->untagged_queue_lock != 0)
380 1.96 fvdl return;
381 1.6 mycroft
382 1.96 fvdl if ((scb = TAILQ_FIRST(queue)) != NULL
383 1.96 fvdl && (scb->flags & SCB_ACTIVE) == 0) {
384 1.96 fvdl scb->flags |= SCB_ACTIVE;
385 1.96 fvdl ahc_queue_scb(ahc, scb);
386 1.42 fvdl }
387 1.96 fvdl }
388 1.6 mycroft
389 1.96 fvdl /************************* Interrupt Handling *********************************/
390 1.96 fvdl void
391 1.96 fvdl ahc_handle_brkadrint(struct ahc_softc *ahc)
392 1.96 fvdl {
393 1.96 fvdl /*
394 1.96 fvdl * We upset the sequencer :-(
395 1.96 fvdl * Lookup the error message
396 1.96 fvdl */
397 1.96 fvdl int i;
398 1.96 fvdl int error;
399 1.6 mycroft
400 1.96 fvdl error = ahc_inb(ahc, ERROR);
401 1.96 fvdl for (i = 0; error != 1 && i < num_errors; i++)
402 1.96 fvdl error >>= 1;
403 1.96 fvdl printf("%s: brkadrint, %s at seqaddr = 0x%x\n",
404 1.96 fvdl ahc_name(ahc), ahc_hard_errors[i].errmesg,
405 1.96 fvdl ahc_inb(ahc, SEQADDR0) |
406 1.96 fvdl (ahc_inb(ahc, SEQADDR1) << 8));
407 1.96 fvdl
408 1.96 fvdl ahc_dump_card_state(ahc);
409 1.96 fvdl
410 1.96 fvdl /* Tell everyone that this HBA is no longer availible */
411 1.96 fvdl ahc_abort_scbs(ahc, CAM_TARGET_WILDCARD, ALL_CHANNELS,
412 1.96 fvdl CAM_LUN_WILDCARD, SCB_LIST_NULL, ROLE_UNKNOWN,
413 1.96 fvdl CAM_NO_HBA);
414 1.29 leo
415 1.96 fvdl /* Disable all interrupt sources by resetting the controller */
416 1.96 fvdl ahc_shutdown(ahc);
417 1.6 mycroft }
418 1.6 mycroft
419 1.96 fvdl void
420 1.96 fvdl ahc_handle_seqint(struct ahc_softc *ahc, u_int intstat)
421 1.42 fvdl {
422 1.96 fvdl struct scb *scb;
423 1.96 fvdl struct ahc_devinfo devinfo;
424 1.96 fvdl
425 1.96 fvdl ahc_fetch_devinfo(ahc, &devinfo);
426 1.96 fvdl
427 1.96 fvdl /*
428 1.96 fvdl * Clear the upper byte that holds SEQINT status
429 1.96 fvdl * codes and clear the SEQINT bit. We will unpause
430 1.96 fvdl * the sequencer, if appropriate, after servicing
431 1.96 fvdl * the request.
432 1.96 fvdl */
433 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSEQINT);
434 1.96 fvdl switch (intstat & SEQINT_MASK) {
435 1.96 fvdl case BAD_STATUS:
436 1.96 fvdl {
437 1.96 fvdl u_int scb_index;
438 1.96 fvdl struct hardware_scb *hscb;
439 1.42 fvdl
440 1.96 fvdl /*
441 1.96 fvdl * Set the default return value to 0 (don't
442 1.96 fvdl * send sense). The sense code will change
443 1.96 fvdl * this if needed.
444 1.96 fvdl */
445 1.96 fvdl ahc_outb(ahc, RETURN_1, 0);
446 1.96 fvdl
447 1.96 fvdl /*
448 1.96 fvdl * The sequencer will notify us when a command
449 1.96 fvdl * has an error that would be of interest to
450 1.96 fvdl * the kernel. This allows us to leave the sequencer
451 1.96 fvdl * running in the common case of command completes
452 1.96 fvdl * without error. The sequencer will already have
453 1.96 fvdl * dma'd the SCB back up to us, so we can reference
454 1.96 fvdl * the in kernel copy directly.
455 1.96 fvdl */
456 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
457 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
458 1.96 fvdl if (scb == NULL) {
459 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
460 1.96 fvdl printf("ahc_intr - referenced scb "
461 1.96 fvdl "not valid during seqint 0x%x scb(%d)\n",
462 1.96 fvdl intstat, scb_index);
463 1.96 fvdl ahc_dump_card_state(ahc);
464 1.96 fvdl panic("for safety");
465 1.96 fvdl goto unpause;
466 1.96 fvdl }
467 1.42 fvdl
468 1.96 fvdl hscb = scb->hscb;
469 1.42 fvdl
470 1.96 fvdl /* Don't want to clobber the original sense code */
471 1.96 fvdl if ((scb->flags & SCB_SENSE) != 0) {
472 1.96 fvdl /*
473 1.96 fvdl * Clear the SCB_SENSE Flag and have
474 1.96 fvdl * the sequencer do a normal command
475 1.96 fvdl * complete.
476 1.96 fvdl */
477 1.96 fvdl scb->flags &= ~SCB_SENSE;
478 1.96 fvdl break;
479 1.96 fvdl }
480 1.96 fvdl /* Freeze the queue until the client sees the error. */
481 1.96 fvdl ahc_freeze_devq(ahc, scb);
482 1.96 fvdl ahc_freeze_scb(scb);
483 1.96 fvdl ahc_set_scsi_status(scb, hscb->shared_data.status.scsi_status);
484 1.96 fvdl switch (hscb->shared_data.status.scsi_status) {
485 1.96 fvdl case SCSI_STATUS_OK:
486 1.101 fvdl printf("%s: Interrupted for status of 0 (?)\n",
487 1.96 fvdl ahc_name(ahc));
488 1.96 fvdl break;
489 1.96 fvdl case SCSI_STATUS_CMD_TERMINATED:
490 1.96 fvdl case SCSI_STATUS_CHECK_COND:
491 1.96 fvdl {
492 1.96 fvdl struct ahc_dma_seg *sg;
493 1.96 fvdl struct scsipi_sense *sc;
494 1.96 fvdl struct ahc_initiator_tinfo *targ_info;
495 1.96 fvdl struct ahc_tmode_tstate *tstate;
496 1.96 fvdl struct ahc_transinfo *tinfo;
497 1.42 fvdl #ifdef AHC_DEBUG
498 1.96 fvdl if (ahc_debug & AHC_SHOW_SENSE) {
499 1.96 fvdl ahc_print_path(ahc, scb);
500 1.96 fvdl printf("SCB %d: requests Check Status\n",
501 1.96 fvdl scb->hscb->tag);
502 1.96 fvdl }
503 1.42 fvdl #endif
504 1.42 fvdl
505 1.96 fvdl if (ahc_perform_autosense(scb) == 0)
506 1.96 fvdl break;
507 1.42 fvdl
508 1.96 fvdl targ_info = ahc_fetch_transinfo(ahc,
509 1.96 fvdl devinfo.channel,
510 1.96 fvdl devinfo.our_scsiid,
511 1.96 fvdl devinfo.target,
512 1.96 fvdl &tstate);
513 1.96 fvdl tinfo = &targ_info->curr;
514 1.96 fvdl sg = scb->sg_list;
515 1.96 fvdl sc = (struct scsipi_sense *)(&hscb->shared_data.cdb);
516 1.96 fvdl /*
517 1.96 fvdl * Save off the residual if there is one.
518 1.96 fvdl */
519 1.96 fvdl ahc_update_residual(ahc, scb);
520 1.96 fvdl #ifdef AHC_DEBUG
521 1.96 fvdl if (ahc_debug & AHC_SHOW_SENSE) {
522 1.96 fvdl ahc_print_path(ahc, scb);
523 1.96 fvdl printf("Sending Sense\n");
524 1.96 fvdl }
525 1.96 fvdl #endif
526 1.96 fvdl sg->addr = ahc_get_sense_bufaddr(ahc, scb);
527 1.96 fvdl sg->len = ahc_get_sense_bufsize(ahc, scb);
528 1.96 fvdl sg->len |= AHC_DMA_LAST_SEG;
529 1.96 fvdl
530 1.96 fvdl /* Fixup byte order */
531 1.96 fvdl sg->addr = ahc_htole32(sg->addr);
532 1.96 fvdl sg->len = ahc_htole32(sg->len);
533 1.96 fvdl
534 1.96 fvdl sc->opcode = REQUEST_SENSE;
535 1.96 fvdl sc->byte2 = 0;
536 1.96 fvdl if (tinfo->protocol_version <= SCSI_REV_2
537 1.96 fvdl && SCB_GET_LUN(scb) < 8)
538 1.96 fvdl sc->byte2 = SCB_GET_LUN(scb) << 5;
539 1.96 fvdl sc->unused[0] = 0;
540 1.96 fvdl sc->unused[1] = 0;
541 1.96 fvdl sc->length = sg->len;
542 1.96 fvdl sc->control = 0;
543 1.42 fvdl
544 1.96 fvdl /*
545 1.96 fvdl * We can't allow the target to disconnect.
546 1.96 fvdl * This will be an untagged transaction and
547 1.96 fvdl * having the target disconnect will make this
548 1.96 fvdl * transaction indestinguishable from outstanding
549 1.96 fvdl * tagged transactions.
550 1.96 fvdl */
551 1.96 fvdl hscb->control = 0;
552 1.42 fvdl
553 1.96 fvdl /*
554 1.96 fvdl * This request sense could be because the
555 1.96 fvdl * the device lost power or in some other
556 1.96 fvdl * way has lost our transfer negotiations.
557 1.96 fvdl * Renegotiate if appropriate. Unit attention
558 1.96 fvdl * errors will be reported before any data
559 1.96 fvdl * phases occur.
560 1.96 fvdl */
561 1.96 fvdl if (ahc_get_residual(scb)
562 1.96 fvdl == ahc_get_transfer_length(scb)) {
563 1.96 fvdl ahc_update_neg_request(ahc, &devinfo,
564 1.96 fvdl tstate, targ_info,
565 1.96 fvdl AHC_NEG_IF_NON_ASYNC);
566 1.96 fvdl }
567 1.96 fvdl if (tstate->auto_negotiate & devinfo.target_mask) {
568 1.96 fvdl hscb->control |= MK_MESSAGE;
569 1.96 fvdl scb->flags &= ~SCB_NEGOTIATE;
570 1.96 fvdl scb->flags |= SCB_AUTO_NEGOTIATE;
571 1.96 fvdl }
572 1.96 fvdl hscb->cdb_len = sizeof(*sc);
573 1.96 fvdl hscb->dataptr = sg->addr;
574 1.96 fvdl hscb->datacnt = sg->len;
575 1.96 fvdl hscb->sgptr = scb->sg_list_phys | SG_FULL_RESID;
576 1.96 fvdl hscb->sgptr = ahc_htole32(hscb->sgptr);
577 1.96 fvdl scb->sg_count = 1;
578 1.96 fvdl scb->flags |= SCB_SENSE;
579 1.96 fvdl ahc_qinfifo_requeue_tail(ahc, scb);
580 1.96 fvdl ahc_outb(ahc, RETURN_1, SEND_SENSE);
581 1.96 fvdl /*
582 1.96 fvdl * Ensure we have enough time to actually
583 1.96 fvdl * retrieve the sense.
584 1.96 fvdl */
585 1.96 fvdl ahc_scb_timer_reset(scb, 5 * 1000000);
586 1.96 fvdl break;
587 1.96 fvdl }
588 1.96 fvdl default:
589 1.96 fvdl break;
590 1.96 fvdl }
591 1.96 fvdl break;
592 1.96 fvdl }
593 1.96 fvdl case NO_MATCH:
594 1.96 fvdl {
595 1.96 fvdl /* Ensure we don't leave the selection hardware on */
596 1.96 fvdl ahc_outb(ahc, SCSISEQ,
597 1.96 fvdl ahc_inb(ahc, SCSISEQ) & (ENSELI|ENRSELI|ENAUTOATNP));
598 1.96 fvdl
599 1.96 fvdl printf("%s:%c:%d: no active SCB for reconnecting "
600 1.96 fvdl "target - issuing BUS DEVICE RESET\n",
601 1.96 fvdl ahc_name(ahc), devinfo.channel, devinfo.target);
602 1.96 fvdl printf("SAVED_SCSIID == 0x%x, SAVED_LUN == 0x%x, "
603 1.96 fvdl "ARG_1 == 0x%x ACCUM = 0x%x\n",
604 1.96 fvdl ahc_inb(ahc, SAVED_SCSIID), ahc_inb(ahc, SAVED_LUN),
605 1.96 fvdl ahc_inb(ahc, ARG_1), ahc_inb(ahc, ACCUM));
606 1.96 fvdl printf("SEQ_FLAGS == 0x%x, SCBPTR == 0x%x, BTT == 0x%x, "
607 1.96 fvdl "SINDEX == 0x%x\n",
608 1.96 fvdl ahc_inb(ahc, SEQ_FLAGS), ahc_inb(ahc, SCBPTR),
609 1.96 fvdl ahc_index_busy_tcl(ahc,
610 1.96 fvdl BUILD_TCL(ahc_inb(ahc, SAVED_SCSIID),
611 1.96 fvdl ahc_inb(ahc, SAVED_LUN))),
612 1.96 fvdl ahc_inb(ahc, SINDEX));
613 1.96 fvdl printf("SCSIID == 0x%x, SCB_SCSIID == 0x%x, SCB_LUN == 0x%x, "
614 1.96 fvdl "SCB_TAG == 0x%x, SCB_CONTROL == 0x%x\n",
615 1.96 fvdl ahc_inb(ahc, SCSIID), ahc_inb(ahc, SCB_SCSIID),
616 1.96 fvdl ahc_inb(ahc, SCB_LUN), ahc_inb(ahc, SCB_TAG),
617 1.96 fvdl ahc_inb(ahc, SCB_CONTROL));
618 1.96 fvdl printf("SCSIBUSL == 0x%x, SCSISIGI == 0x%x\n",
619 1.96 fvdl ahc_inb(ahc, SCSIBUSL), ahc_inb(ahc, SCSISIGI));
620 1.96 fvdl printf("SXFRCTL0 == 0x%x\n", ahc_inb(ahc, SXFRCTL0));
621 1.96 fvdl printf("SEQCTL == 0x%x\n", ahc_inb(ahc, SEQCTL));
622 1.96 fvdl ahc_dump_card_state(ahc);
623 1.96 fvdl ahc->msgout_buf[0] = MSG_BUS_DEV_RESET;
624 1.96 fvdl ahc->msgout_len = 1;
625 1.96 fvdl ahc->msgout_index = 0;
626 1.96 fvdl ahc->msg_type = MSG_TYPE_INITIATOR_MSGOUT;
627 1.96 fvdl ahc_outb(ahc, MSG_OUT, HOST_MSG);
628 1.96 fvdl ahc_assert_atn(ahc);
629 1.96 fvdl break;
630 1.96 fvdl }
631 1.96 fvdl case SEND_REJECT:
632 1.96 fvdl {
633 1.96 fvdl u_int rejbyte = ahc_inb(ahc, ACCUM);
634 1.96 fvdl printf("%s:%c:%d: Warning - unknown message received from "
635 1.96 fvdl "target (0x%x). Rejecting\n",
636 1.96 fvdl ahc_name(ahc), devinfo.channel, devinfo.target, rejbyte);
637 1.96 fvdl break;
638 1.96 fvdl }
639 1.96 fvdl case PROTO_VIOLATION:
640 1.96 fvdl {
641 1.96 fvdl ahc_handle_proto_violation(ahc);
642 1.96 fvdl break;
643 1.96 fvdl }
644 1.96 fvdl case IGN_WIDE_RES:
645 1.96 fvdl ahc_handle_ign_wide_residue(ahc, &devinfo);
646 1.96 fvdl break;
647 1.96 fvdl case PDATA_REINIT:
648 1.96 fvdl ahc_reinitialize_dataptrs(ahc);
649 1.96 fvdl break;
650 1.96 fvdl case BAD_PHASE:
651 1.96 fvdl {
652 1.96 fvdl u_int lastphase;
653 1.96 fvdl
654 1.96 fvdl lastphase = ahc_inb(ahc, LASTPHASE);
655 1.96 fvdl printf("%s:%c:%d: unknown scsi bus phase %x, "
656 1.96 fvdl "lastphase = 0x%x. Attempting to continue\n",
657 1.96 fvdl ahc_name(ahc), devinfo.channel, devinfo.target,
658 1.96 fvdl lastphase, ahc_inb(ahc, SCSISIGI));
659 1.96 fvdl break;
660 1.96 fvdl }
661 1.96 fvdl case MISSED_BUSFREE:
662 1.96 fvdl {
663 1.96 fvdl u_int lastphase;
664 1.96 fvdl
665 1.96 fvdl lastphase = ahc_inb(ahc, LASTPHASE);
666 1.96 fvdl printf("%s:%c:%d: Missed busfree. "
667 1.96 fvdl "Lastphase = 0x%x, Curphase = 0x%x\n",
668 1.96 fvdl ahc_name(ahc), devinfo.channel, devinfo.target,
669 1.96 fvdl lastphase, ahc_inb(ahc, SCSISIGI));
670 1.96 fvdl ahc_restart(ahc);
671 1.96 fvdl return;
672 1.96 fvdl }
673 1.96 fvdl case HOST_MSG_LOOP:
674 1.96 fvdl {
675 1.96 fvdl /*
676 1.96 fvdl * The sequencer has encountered a message phase
677 1.96 fvdl * that requires host assistance for completion.
678 1.96 fvdl * While handling the message phase(s), we will be
679 1.96 fvdl * notified by the sequencer after each byte is
680 1.96 fvdl * transfered so we can track bus phase changes.
681 1.96 fvdl *
682 1.96 fvdl * If this is the first time we've seen a HOST_MSG_LOOP
683 1.96 fvdl * interrupt, initialize the state of the host message
684 1.96 fvdl * loop.
685 1.96 fvdl */
686 1.96 fvdl if (ahc->msg_type == MSG_TYPE_NONE) {
687 1.96 fvdl struct scb *scb;
688 1.96 fvdl u_int scb_index;
689 1.96 fvdl u_int bus_phase;
690 1.96 fvdl
691 1.96 fvdl bus_phase = ahc_inb(ahc, SCSISIGI) & PHASE_MASK;
692 1.96 fvdl if (bus_phase != P_MESGIN
693 1.96 fvdl && bus_phase != P_MESGOUT) {
694 1.96 fvdl printf("ahc_intr: HOST_MSG_LOOP bad "
695 1.96 fvdl "phase 0x%x\n",
696 1.96 fvdl bus_phase);
697 1.96 fvdl /*
698 1.96 fvdl * Probably transitioned to bus free before
699 1.96 fvdl * we got here. Just punt the message.
700 1.96 fvdl */
701 1.96 fvdl ahc_clear_intstat(ahc);
702 1.96 fvdl ahc_restart(ahc);
703 1.96 fvdl return;
704 1.96 fvdl }
705 1.96 fvdl
706 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
707 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
708 1.96 fvdl if (devinfo.role == ROLE_INITIATOR) {
709 1.96 fvdl if (scb == NULL)
710 1.96 fvdl panic("HOST_MSG_LOOP with "
711 1.96 fvdl "invalid SCB %x\n", scb_index);
712 1.96 fvdl
713 1.96 fvdl if (bus_phase == P_MESGOUT)
714 1.96 fvdl ahc_setup_initiator_msgout(ahc,
715 1.96 fvdl &devinfo,
716 1.96 fvdl scb);
717 1.96 fvdl else {
718 1.96 fvdl ahc->msg_type =
719 1.96 fvdl MSG_TYPE_INITIATOR_MSGIN;
720 1.96 fvdl ahc->msgin_index = 0;
721 1.96 fvdl }
722 1.96 fvdl }
723 1.96 fvdl #if AHC_TARGET_MODE
724 1.96 fvdl else {
725 1.96 fvdl if (bus_phase == P_MESGOUT) {
726 1.96 fvdl ahc->msg_type =
727 1.96 fvdl MSG_TYPE_TARGET_MSGOUT;
728 1.96 fvdl ahc->msgin_index = 0;
729 1.96 fvdl }
730 1.96 fvdl else
731 1.96 fvdl ahc_setup_target_msgin(ahc,
732 1.96 fvdl &devinfo,
733 1.96 fvdl scb);
734 1.96 fvdl }
735 1.96 fvdl #endif
736 1.96 fvdl }
737 1.96 fvdl
738 1.96 fvdl ahc_handle_message_phase(ahc);
739 1.96 fvdl break;
740 1.96 fvdl }
741 1.96 fvdl case PERR_DETECTED:
742 1.96 fvdl {
743 1.96 fvdl /*
744 1.96 fvdl * If we've cleared the parity error interrupt
745 1.96 fvdl * but the sequencer still believes that SCSIPERR
746 1.96 fvdl * is true, it must be that the parity error is
747 1.96 fvdl * for the currently presented byte on the bus,
748 1.96 fvdl * and we are not in a phase (data-in) where we will
749 1.96 fvdl * eventually ack this byte. Ack the byte and
750 1.96 fvdl * throw it away in the hope that the target will
751 1.96 fvdl * take us to message out to deliver the appropriate
752 1.96 fvdl * error message.
753 1.96 fvdl */
754 1.96 fvdl if ((intstat & SCSIINT) == 0
755 1.96 fvdl && (ahc_inb(ahc, SSTAT1) & SCSIPERR) != 0) {
756 1.96 fvdl
757 1.96 fvdl if ((ahc->features & AHC_DT) == 0) {
758 1.96 fvdl u_int curphase;
759 1.96 fvdl
760 1.96 fvdl /*
761 1.96 fvdl * The hardware will only let you ack bytes
762 1.96 fvdl * if the expected phase in SCSISIGO matches
763 1.96 fvdl * the current phase. Make sure this is
764 1.96 fvdl * currently the case.
765 1.96 fvdl */
766 1.96 fvdl curphase = ahc_inb(ahc, SCSISIGI) & PHASE_MASK;
767 1.96 fvdl ahc_outb(ahc, LASTPHASE, curphase);
768 1.96 fvdl ahc_outb(ahc, SCSISIGO, curphase);
769 1.96 fvdl }
770 1.96 fvdl if ((ahc_inb(ahc, SCSISIGI) & (CDI|MSGI)) == 0) {
771 1.96 fvdl int wait;
772 1.96 fvdl
773 1.96 fvdl /*
774 1.96 fvdl * In a data phase. Faster to bitbucket
775 1.96 fvdl * the data than to individually ack each
776 1.96 fvdl * byte. This is also the only strategy
777 1.96 fvdl * that will work with AUTOACK enabled.
778 1.96 fvdl */
779 1.96 fvdl ahc_outb(ahc, SXFRCTL1,
780 1.96 fvdl ahc_inb(ahc, SXFRCTL1) | BITBUCKET);
781 1.96 fvdl wait = 5000;
782 1.96 fvdl while (--wait != 0) {
783 1.96 fvdl if ((ahc_inb(ahc, SCSISIGI)
784 1.96 fvdl & (CDI|MSGI)) != 0)
785 1.96 fvdl break;
786 1.96 fvdl ahc_delay(100);
787 1.96 fvdl }
788 1.96 fvdl ahc_outb(ahc, SXFRCTL1,
789 1.96 fvdl ahc_inb(ahc, SXFRCTL1) & ~BITBUCKET);
790 1.96 fvdl if (wait == 0) {
791 1.96 fvdl struct scb *scb;
792 1.96 fvdl u_int scb_index;
793 1.96 fvdl
794 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
795 1.96 fvdl printf("Unable to clear parity error. "
796 1.96 fvdl "Resetting bus.\n");
797 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
798 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
799 1.96 fvdl if (scb != NULL)
800 1.96 fvdl ahc_set_transaction_status(scb,
801 1.96 fvdl CAM_UNCOR_PARITY);
802 1.96 fvdl ahc_reset_channel(ahc, devinfo.channel,
803 1.96 fvdl /*init reset*/TRUE);
804 1.96 fvdl }
805 1.96 fvdl } else {
806 1.96 fvdl ahc_inb(ahc, SCSIDATL);
807 1.96 fvdl }
808 1.96 fvdl }
809 1.96 fvdl break;
810 1.96 fvdl }
811 1.96 fvdl case DATA_OVERRUN:
812 1.96 fvdl {
813 1.96 fvdl /*
814 1.96 fvdl * When the sequencer detects an overrun, it
815 1.96 fvdl * places the controller in "BITBUCKET" mode
816 1.96 fvdl * and allows the target to complete its transfer.
817 1.96 fvdl * Unfortunately, none of the counters get updated
818 1.96 fvdl * when the controller is in this mode, so we have
819 1.96 fvdl * no way of knowing how large the overrun was.
820 1.96 fvdl */
821 1.96 fvdl u_int scbindex = ahc_inb(ahc, SCB_TAG);
822 1.96 fvdl u_int lastphase = ahc_inb(ahc, LASTPHASE);
823 1.96 fvdl u_int i;
824 1.96 fvdl
825 1.96 fvdl scb = ahc_lookup_scb(ahc, scbindex);
826 1.96 fvdl for (i = 0; i < num_phases; i++) {
827 1.96 fvdl if (lastphase == ahc_phase_table[i].phase)
828 1.96 fvdl break;
829 1.96 fvdl }
830 1.96 fvdl ahc_print_path(ahc, scb);
831 1.96 fvdl printf("data overrun detected %s."
832 1.96 fvdl " Tag == 0x%x.\n",
833 1.96 fvdl ahc_phase_table[i].phasemsg,
834 1.96 fvdl scb->hscb->tag);
835 1.96 fvdl ahc_print_path(ahc, scb);
836 1.96 fvdl printf("%s seen Data Phase. Length = %ld. NumSGs = %d.\n",
837 1.96 fvdl ahc_inb(ahc, SEQ_FLAGS) & DPHASE ? "Have" : "Haven't",
838 1.96 fvdl ahc_get_transfer_length(scb), scb->sg_count);
839 1.96 fvdl if (scb->sg_count > 0) {
840 1.96 fvdl for (i = 0; i < scb->sg_count; i++) {
841 1.96 fvdl
842 1.96 fvdl printf("sg[%d] - Addr 0x%x%x : Length %d\n",
843 1.96 fvdl i,
844 1.96 fvdl (ahc_le32toh(scb->sg_list[i].len) >> 24
845 1.96 fvdl & SG_HIGH_ADDR_BITS),
846 1.96 fvdl ahc_le32toh(scb->sg_list[i].addr),
847 1.96 fvdl ahc_le32toh(scb->sg_list[i].len)
848 1.96 fvdl & AHC_SG_LEN_MASK);
849 1.96 fvdl }
850 1.96 fvdl }
851 1.96 fvdl /*
852 1.96 fvdl * Set this and it will take effect when the
853 1.96 fvdl * target does a command complete.
854 1.96 fvdl */
855 1.96 fvdl ahc_freeze_devq(ahc, scb);
856 1.96 fvdl if ((scb->flags & SCB_SENSE) == 0) {
857 1.96 fvdl ahc_set_transaction_status(scb, CAM_DATA_RUN_ERR);
858 1.96 fvdl } else {
859 1.96 fvdl scb->flags &= ~SCB_SENSE;
860 1.96 fvdl ahc_set_transaction_status(scb, CAM_AUTOSENSE_FAIL);
861 1.96 fvdl }
862 1.96 fvdl ahc_freeze_scb(scb);
863 1.96 fvdl
864 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
865 1.96 fvdl /*
866 1.96 fvdl * Clear the channel in case we return
867 1.96 fvdl * to data phase later.
868 1.96 fvdl */
869 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
870 1.96 fvdl ahc_inb(ahc, SXFRCTL0) | CLRSTCNT|CLRCHN);
871 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
872 1.96 fvdl ahc_inb(ahc, SXFRCTL0) | CLRSTCNT|CLRCHN);
873 1.96 fvdl }
874 1.96 fvdl if ((ahc->flags & AHC_39BIT_ADDRESSING) != 0) {
875 1.96 fvdl u_int dscommand1;
876 1.96 fvdl
877 1.96 fvdl /* Ensure HHADDR is 0 for future DMA operations. */
878 1.96 fvdl dscommand1 = ahc_inb(ahc, DSCOMMAND1);
879 1.96 fvdl ahc_outb(ahc, DSCOMMAND1, dscommand1 | HADDLDSEL0);
880 1.96 fvdl ahc_outb(ahc, HADDR, 0);
881 1.96 fvdl ahc_outb(ahc, DSCOMMAND1, dscommand1);
882 1.96 fvdl }
883 1.96 fvdl break;
884 1.96 fvdl }
885 1.96 fvdl case MKMSG_FAILED:
886 1.96 fvdl {
887 1.96 fvdl u_int scbindex;
888 1.96 fvdl
889 1.96 fvdl printf("%s:%c:%d:%d: Attempt to issue message failed\n",
890 1.96 fvdl ahc_name(ahc), devinfo.channel, devinfo.target,
891 1.96 fvdl devinfo.lun);
892 1.96 fvdl scbindex = ahc_inb(ahc, SCB_TAG);
893 1.96 fvdl scb = ahc_lookup_scb(ahc, scbindex);
894 1.96 fvdl if (scb != NULL
895 1.96 fvdl && (scb->flags & SCB_RECOVERY_SCB) != 0)
896 1.96 fvdl /*
897 1.96 fvdl * Ensure that we didn't put a second instance of this
898 1.96 fvdl * SCB into the QINFIFO.
899 1.96 fvdl */
900 1.96 fvdl ahc_search_qinfifo(ahc, SCB_GET_TARGET(ahc, scb),
901 1.96 fvdl SCB_GET_CHANNEL(ahc, scb),
902 1.96 fvdl SCB_GET_LUN(scb), scb->hscb->tag,
903 1.96 fvdl ROLE_INITIATOR, /*status*/0,
904 1.96 fvdl SEARCH_REMOVE);
905 1.96 fvdl break;
906 1.96 fvdl }
907 1.96 fvdl case NO_FREE_SCB:
908 1.96 fvdl {
909 1.96 fvdl printf("%s: No free or disconnected SCBs\n", ahc_name(ahc));
910 1.96 fvdl ahc_dump_card_state(ahc);
911 1.96 fvdl panic("for safety");
912 1.96 fvdl break;
913 1.96 fvdl }
914 1.96 fvdl case SCB_MISMATCH:
915 1.96 fvdl {
916 1.96 fvdl u_int scbptr;
917 1.96 fvdl
918 1.96 fvdl scbptr = ahc_inb(ahc, SCBPTR);
919 1.96 fvdl printf("Bogus TAG after DMA. SCBPTR %d, tag %d, our tag %d\n",
920 1.96 fvdl scbptr, ahc_inb(ahc, ARG_1),
921 1.96 fvdl ahc->scb_data->hscbs[scbptr].tag);
922 1.96 fvdl ahc_dump_card_state(ahc);
923 1.96 fvdl panic("for saftey");
924 1.96 fvdl break;
925 1.96 fvdl }
926 1.96 fvdl case OUT_OF_RANGE:
927 1.96 fvdl {
928 1.96 fvdl printf("%s: BTT calculation out of range\n", ahc_name(ahc));
929 1.96 fvdl printf("SAVED_SCSIID == 0x%x, SAVED_LUN == 0x%x, "
930 1.96 fvdl "ARG_1 == 0x%x ACCUM = 0x%x\n",
931 1.96 fvdl ahc_inb(ahc, SAVED_SCSIID), ahc_inb(ahc, SAVED_LUN),
932 1.96 fvdl ahc_inb(ahc, ARG_1), ahc_inb(ahc, ACCUM));
933 1.96 fvdl printf("SEQ_FLAGS == 0x%x, SCBPTR == 0x%x, BTT == 0x%x, "
934 1.96 fvdl "SINDEX == 0x%x\n, A == 0x%x\n",
935 1.96 fvdl ahc_inb(ahc, SEQ_FLAGS), ahc_inb(ahc, SCBPTR),
936 1.96 fvdl ahc_index_busy_tcl(ahc,
937 1.96 fvdl BUILD_TCL(ahc_inb(ahc, SAVED_SCSIID),
938 1.96 fvdl ahc_inb(ahc, SAVED_LUN))),
939 1.96 fvdl ahc_inb(ahc, SINDEX),
940 1.96 fvdl ahc_inb(ahc, ACCUM));
941 1.96 fvdl printf("SCSIID == 0x%x, SCB_SCSIID == 0x%x, SCB_LUN == 0x%x, "
942 1.96 fvdl "SCB_TAG == 0x%x, SCB_CONTROL == 0x%x\n",
943 1.96 fvdl ahc_inb(ahc, SCSIID), ahc_inb(ahc, SCB_SCSIID),
944 1.96 fvdl ahc_inb(ahc, SCB_LUN), ahc_inb(ahc, SCB_TAG),
945 1.96 fvdl ahc_inb(ahc, SCB_CONTROL));
946 1.96 fvdl printf("SCSIBUSL == 0x%x, SCSISIGI == 0x%x\n",
947 1.96 fvdl ahc_inb(ahc, SCSIBUSL), ahc_inb(ahc, SCSISIGI));
948 1.96 fvdl ahc_dump_card_state(ahc);
949 1.96 fvdl panic("for safety");
950 1.96 fvdl break;
951 1.96 fvdl }
952 1.96 fvdl default:
953 1.96 fvdl printf("ahc_intr: seqint, "
954 1.96 fvdl "intstat == 0x%x, scsisigi = 0x%x\n",
955 1.96 fvdl intstat, ahc_inb(ahc, SCSISIGI));
956 1.96 fvdl break;
957 1.96 fvdl }
958 1.96 fvdl unpause:
959 1.96 fvdl /*
960 1.96 fvdl * The sequencer is paused immediately on
961 1.96 fvdl * a SEQINT, so we should restart it when
962 1.96 fvdl * we're done.
963 1.96 fvdl */
964 1.96 fvdl ahc_unpause(ahc);
965 1.96 fvdl }
966 1.96 fvdl
967 1.96 fvdl void
968 1.96 fvdl ahc_handle_scsiint(struct ahc_softc *ahc, u_int intstat)
969 1.96 fvdl {
970 1.96 fvdl u_int scb_index;
971 1.96 fvdl u_int status0;
972 1.96 fvdl u_int status;
973 1.96 fvdl struct scb *scb;
974 1.96 fvdl char cur_channel;
975 1.96 fvdl char intr_channel;
976 1.96 fvdl
977 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0
978 1.96 fvdl && ((ahc_inb(ahc, SBLKCTL) & SELBUSB) != 0))
979 1.96 fvdl cur_channel = 'B';
980 1.96 fvdl else
981 1.96 fvdl cur_channel = 'A';
982 1.96 fvdl intr_channel = cur_channel;
983 1.96 fvdl
984 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
985 1.96 fvdl status0 = ahc_inb(ahc, SSTAT0) & IOERR;
986 1.96 fvdl else
987 1.96 fvdl status0 = 0;
988 1.96 fvdl status = ahc_inb(ahc, SSTAT1) & (SELTO|SCSIRSTI|BUSFREE|SCSIPERR);
989 1.96 fvdl if (status == 0 && status0 == 0) {
990 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0) {
991 1.96 fvdl /* Try the other channel */
992 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) ^ SELBUSB);
993 1.96 fvdl status = ahc_inb(ahc, SSTAT1)
994 1.96 fvdl & (SELTO|SCSIRSTI|BUSFREE|SCSIPERR);
995 1.96 fvdl intr_channel = (cur_channel == 'A') ? 'B' : 'A';
996 1.96 fvdl }
997 1.96 fvdl if (status == 0) {
998 1.96 fvdl printf("%s: Spurious SCSI interrupt\n", ahc_name(ahc));
999 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1000 1.96 fvdl ahc_unpause(ahc);
1001 1.96 fvdl return;
1002 1.96 fvdl }
1003 1.96 fvdl }
1004 1.96 fvdl
1005 1.96 fvdl /* Make sure the sequencer is in a safe location. */
1006 1.96 fvdl ahc_clear_critical_section(ahc);
1007 1.96 fvdl
1008 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
1009 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
1010 1.96 fvdl if (scb != NULL
1011 1.96 fvdl && (ahc_inb(ahc, SEQ_FLAGS) & NOT_IDENTIFIED) != 0)
1012 1.96 fvdl scb = NULL;
1013 1.96 fvdl
1014 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0
1015 1.96 fvdl && (status0 & IOERR) != 0) {
1016 1.96 fvdl int now_lvd;
1017 1.96 fvdl
1018 1.96 fvdl now_lvd = ahc_inb(ahc, SBLKCTL) & ENAB40;
1019 1.96 fvdl printf("%s: Transceiver State Has Changed to %s mode\n",
1020 1.96 fvdl ahc_name(ahc), now_lvd ? "LVD" : "SE");
1021 1.96 fvdl ahc_outb(ahc, CLRSINT0, CLRIOERR);
1022 1.96 fvdl /*
1023 1.96 fvdl * When transitioning to SE mode, the reset line
1024 1.96 fvdl * glitches, triggering an arbitration bug in some
1025 1.96 fvdl * Ultra2 controllers. This bug is cleared when we
1026 1.96 fvdl * assert the reset line. Since a reset glitch has
1027 1.96 fvdl * already occurred with this transition and a
1028 1.96 fvdl * transceiver state change is handled just like
1029 1.96 fvdl * a bus reset anyway, asserting the reset line
1030 1.96 fvdl * ourselves is safe.
1031 1.96 fvdl */
1032 1.96 fvdl ahc_reset_channel(ahc, intr_channel,
1033 1.96 fvdl /*Initiate Reset*/now_lvd == 0);
1034 1.96 fvdl } else if ((status & SCSIRSTI) != 0) {
1035 1.96 fvdl printf("%s: Someone reset channel %c\n",
1036 1.96 fvdl ahc_name(ahc), intr_channel);
1037 1.96 fvdl if (intr_channel != cur_channel)
1038 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) ^ SELBUSB);
1039 1.96 fvdl ahc_reset_channel(ahc, intr_channel, /*Initiate Reset*/FALSE);
1040 1.96 fvdl } else if ((status & SCSIPERR) != 0) {
1041 1.96 fvdl /*
1042 1.96 fvdl * Determine the bus phase and queue an appropriate message.
1043 1.96 fvdl * SCSIPERR is latched true as soon as a parity error
1044 1.96 fvdl * occurs. If the sequencer acked the transfer that
1045 1.96 fvdl * caused the parity error and the currently presented
1046 1.96 fvdl * transfer on the bus has correct parity, SCSIPERR will
1047 1.96 fvdl * be cleared by CLRSCSIPERR. Use this to determine if
1048 1.96 fvdl * we should look at the last phase the sequencer recorded,
1049 1.96 fvdl * or the current phase presented on the bus.
1050 1.96 fvdl */
1051 1.96 fvdl u_int mesg_out;
1052 1.96 fvdl u_int curphase;
1053 1.96 fvdl u_int errorphase;
1054 1.96 fvdl u_int lastphase;
1055 1.96 fvdl u_int scsirate;
1056 1.96 fvdl u_int i;
1057 1.96 fvdl u_int sstat2;
1058 1.96 fvdl int silent;
1059 1.96 fvdl
1060 1.96 fvdl lastphase = ahc_inb(ahc, LASTPHASE);
1061 1.96 fvdl curphase = ahc_inb(ahc, SCSISIGI) & PHASE_MASK;
1062 1.96 fvdl sstat2 = ahc_inb(ahc, SSTAT2);
1063 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRSCSIPERR);
1064 1.96 fvdl /*
1065 1.96 fvdl * For all phases save DATA, the sequencer won't
1066 1.96 fvdl * automatically ack a byte that has a parity error
1067 1.96 fvdl * in it. So the only way that the current phase
1068 1.96 fvdl * could be 'data-in' is if the parity error is for
1069 1.96 fvdl * an already acked byte in the data phase. During
1070 1.96 fvdl * synchronous data-in transfers, we may actually
1071 1.96 fvdl * ack bytes before latching the current phase in
1072 1.96 fvdl * LASTPHASE, leading to the discrepancy between
1073 1.96 fvdl * curphase and lastphase.
1074 1.96 fvdl */
1075 1.96 fvdl if ((ahc_inb(ahc, SSTAT1) & SCSIPERR) != 0
1076 1.96 fvdl || curphase == P_DATAIN || curphase == P_DATAIN_DT)
1077 1.96 fvdl errorphase = curphase;
1078 1.96 fvdl else
1079 1.96 fvdl errorphase = lastphase;
1080 1.96 fvdl
1081 1.96 fvdl for (i = 0; i < num_phases; i++) {
1082 1.96 fvdl if (errorphase == ahc_phase_table[i].phase)
1083 1.96 fvdl break;
1084 1.96 fvdl }
1085 1.96 fvdl mesg_out = ahc_phase_table[i].mesg_out;
1086 1.96 fvdl silent = FALSE;
1087 1.96 fvdl if (scb != NULL) {
1088 1.96 fvdl if (SCB_IS_SILENT(scb))
1089 1.96 fvdl silent = TRUE;
1090 1.96 fvdl else
1091 1.96 fvdl ahc_print_path(ahc, scb);
1092 1.96 fvdl scb->flags |= SCB_TRANSMISSION_ERROR;
1093 1.96 fvdl } else
1094 1.96 fvdl printf("%s:%c:%d: ", ahc_name(ahc), intr_channel,
1095 1.96 fvdl SCSIID_TARGET(ahc, ahc_inb(ahc, SAVED_SCSIID)));
1096 1.96 fvdl scsirate = ahc_inb(ahc, SCSIRATE);
1097 1.96 fvdl if (silent == FALSE) {
1098 1.96 fvdl printf("parity error detected %s. "
1099 1.96 fvdl "SEQADDR(0x%x) SCSIRATE(0x%x)\n",
1100 1.96 fvdl ahc_phase_table[i].phasemsg,
1101 1.96 fvdl ahc_inw(ahc, SEQADDR0),
1102 1.96 fvdl scsirate);
1103 1.96 fvdl if ((ahc->features & AHC_DT) != 0) {
1104 1.96 fvdl if ((sstat2 & CRCVALERR) != 0)
1105 1.96 fvdl printf("\tCRC Value Mismatch\n");
1106 1.96 fvdl if ((sstat2 & CRCENDERR) != 0)
1107 1.96 fvdl printf("\tNo terminal CRC packet "
1108 1.96 fvdl "recevied\n");
1109 1.96 fvdl if ((sstat2 & CRCREQERR) != 0)
1110 1.96 fvdl printf("\tIllegal CRC packet "
1111 1.96 fvdl "request\n");
1112 1.96 fvdl if ((sstat2 & DUAL_EDGE_ERR) != 0)
1113 1.96 fvdl printf("\tUnexpected %sDT Data Phase\n",
1114 1.96 fvdl (scsirate & SINGLE_EDGE)
1115 1.96 fvdl ? "" : "non-");
1116 1.96 fvdl }
1117 1.96 fvdl }
1118 1.96 fvdl
1119 1.96 fvdl if ((ahc->features & AHC_DT) != 0
1120 1.96 fvdl && (sstat2 & DUAL_EDGE_ERR) != 0) {
1121 1.96 fvdl /*
1122 1.96 fvdl * This error applies regardless of
1123 1.96 fvdl * data direction, so ignore the value
1124 1.96 fvdl * in the phase table.
1125 1.96 fvdl */
1126 1.96 fvdl mesg_out = MSG_INITIATOR_DET_ERR;
1127 1.96 fvdl }
1128 1.96 fvdl
1129 1.96 fvdl /*
1130 1.96 fvdl * We've set the hardware to assert ATN if we
1131 1.96 fvdl * get a parity error on "in" phases, so all we
1132 1.96 fvdl * need to do is stuff the message buffer with
1133 1.96 fvdl * the appropriate message. "In" phases have set
1134 1.96 fvdl * mesg_out to something other than MSG_NOP.
1135 1.96 fvdl */
1136 1.96 fvdl if (mesg_out != MSG_NOOP) {
1137 1.96 fvdl if (ahc->msg_type != MSG_TYPE_NONE)
1138 1.96 fvdl ahc->send_msg_perror = TRUE;
1139 1.96 fvdl else
1140 1.96 fvdl ahc_outb(ahc, MSG_OUT, mesg_out);
1141 1.96 fvdl }
1142 1.96 fvdl /*
1143 1.96 fvdl * Force a renegotiation with this target just in
1144 1.96 fvdl * case we are out of sync for some external reason
1145 1.96 fvdl * unknown (or unreported) by the target.
1146 1.96 fvdl */
1147 1.96 fvdl ahc_force_renegotiation(ahc);
1148 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1149 1.96 fvdl ahc_unpause(ahc);
1150 1.96 fvdl } else if ((status & SELTO) != 0) {
1151 1.96 fvdl u_int scbptr;
1152 1.96 fvdl
1153 1.96 fvdl /* Stop the selection */
1154 1.96 fvdl ahc_outb(ahc, SCSISEQ, 0);
1155 1.96 fvdl
1156 1.96 fvdl /* No more pending messages */
1157 1.96 fvdl ahc_clear_msg_state(ahc);
1158 1.96 fvdl
1159 1.96 fvdl /* Clear interrupt state */
1160 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc_inb(ahc, SIMODE1) & ~ENBUSFREE);
1161 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRSELTIMEO|CLRBUSFREE|CLRSCSIPERR);
1162 1.96 fvdl
1163 1.96 fvdl /*
1164 1.96 fvdl * Although the driver does not care about the
1165 1.96 fvdl * 'Selection in Progress' status bit, the busy
1166 1.96 fvdl * LED does. SELINGO is only cleared by a sucessfull
1167 1.96 fvdl * selection, so we must manually clear it to insure
1168 1.96 fvdl * the LED turns off just incase no future successful
1169 1.96 fvdl * selections occur (e.g. no devices on the bus).
1170 1.96 fvdl */
1171 1.96 fvdl ahc_outb(ahc, CLRSINT0, CLRSELINGO);
1172 1.96 fvdl
1173 1.96 fvdl scbptr = ahc_inb(ahc, WAITING_SCBH);
1174 1.96 fvdl ahc_outb(ahc, SCBPTR, scbptr);
1175 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
1176 1.96 fvdl
1177 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
1178 1.96 fvdl if (scb == NULL) {
1179 1.96 fvdl printf("%s: ahc_intr - referenced scb not "
1180 1.96 fvdl "valid during SELTO scb(%d, %d)\n",
1181 1.96 fvdl ahc_name(ahc), scbptr, scb_index);
1182 1.96 fvdl ahc_dump_card_state(ahc);
1183 1.96 fvdl } else {
1184 1.96 fvdl #ifdef AHC_DEBUG
1185 1.96 fvdl if ((ahc_debug & AHC_SHOW_SELTO) != 0) {
1186 1.96 fvdl ahc_print_path(ahc, scb);
1187 1.96 fvdl printf("Saw Selection Timeout for SCB 0x%x\n",
1188 1.96 fvdl scb_index);
1189 1.96 fvdl }
1190 1.96 fvdl #endif
1191 1.96 fvdl /*
1192 1.96 fvdl * Force a renegotiation with this target just in
1193 1.96 fvdl * case the cable was pulled and will later be
1194 1.96 fvdl * re-attached. The target may forget its negotiation
1195 1.96 fvdl * settings with us should it attempt to reselect
1196 1.96 fvdl * during the interruption. The target will not issue
1197 1.96 fvdl * a unit attention in this case, so we must always
1198 1.96 fvdl * renegotiate.
1199 1.96 fvdl */
1200 1.96 fvdl ahc_force_renegotiation(ahc);
1201 1.96 fvdl ahc_set_transaction_status(scb, CAM_SEL_TIMEOUT);
1202 1.96 fvdl ahc_freeze_devq(ahc, scb);
1203 1.96 fvdl }
1204 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1205 1.96 fvdl ahc_restart(ahc);
1206 1.96 fvdl } else if ((status & BUSFREE) != 0
1207 1.96 fvdl && (ahc_inb(ahc, SIMODE1) & ENBUSFREE) != 0) {
1208 1.96 fvdl u_int lastphase;
1209 1.96 fvdl u_int saved_scsiid;
1210 1.96 fvdl u_int saved_lun;
1211 1.96 fvdl u_int target;
1212 1.96 fvdl u_int initiator_role_id;
1213 1.96 fvdl char channel;
1214 1.96 fvdl int printerror;
1215 1.96 fvdl
1216 1.96 fvdl /*
1217 1.96 fvdl * Clear our selection hardware as soon as possible.
1218 1.96 fvdl * We may have an entry in the waiting Q for this target,
1219 1.96 fvdl * that is affected by this busfree and we don't want to
1220 1.96 fvdl * go about selecting the target while we handle the event.
1221 1.96 fvdl */
1222 1.96 fvdl ahc_outb(ahc, SCSISEQ,
1223 1.96 fvdl ahc_inb(ahc, SCSISEQ) & (ENSELI|ENRSELI|ENAUTOATNP));
1224 1.96 fvdl
1225 1.96 fvdl /*
1226 1.96 fvdl * Disable busfree interrupts and clear the busfree
1227 1.96 fvdl * interrupt status. We do this here so that several
1228 1.96 fvdl * bus transactions occur prior to clearing the SCSIINT
1229 1.96 fvdl * latch. It can take a bit for the clearing to take effect.
1230 1.96 fvdl */
1231 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc_inb(ahc, SIMODE1) & ~ENBUSFREE);
1232 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRBUSFREE|CLRSCSIPERR);
1233 1.96 fvdl
1234 1.96 fvdl /*
1235 1.96 fvdl * Look at what phase we were last in.
1236 1.96 fvdl * If its message out, chances are pretty good
1237 1.96 fvdl * that the busfree was in response to one of
1238 1.96 fvdl * our abort requests.
1239 1.96 fvdl */
1240 1.96 fvdl lastphase = ahc_inb(ahc, LASTPHASE);
1241 1.96 fvdl saved_scsiid = ahc_inb(ahc, SAVED_SCSIID);
1242 1.96 fvdl saved_lun = ahc_inb(ahc, SAVED_LUN);
1243 1.96 fvdl target = SCSIID_TARGET(ahc, saved_scsiid);
1244 1.96 fvdl initiator_role_id = SCSIID_OUR_ID(saved_scsiid);
1245 1.96 fvdl channel = SCSIID_CHANNEL(ahc, saved_scsiid);
1246 1.96 fvdl printerror = 1;
1247 1.96 fvdl
1248 1.96 fvdl if (lastphase == P_MESGOUT) {
1249 1.96 fvdl struct ahc_devinfo devinfo;
1250 1.96 fvdl u_int tag;
1251 1.96 fvdl
1252 1.96 fvdl ahc_fetch_devinfo(ahc, &devinfo);
1253 1.96 fvdl tag = SCB_LIST_NULL;
1254 1.96 fvdl if (ahc_sent_msg(ahc, AHCMSG_1B, MSG_ABORT_TAG, TRUE)
1255 1.96 fvdl || ahc_sent_msg(ahc, AHCMSG_1B, MSG_ABORT, TRUE)) {
1256 1.96 fvdl if (ahc->msgout_buf[ahc->msgout_index - 1]
1257 1.96 fvdl == MSG_ABORT_TAG)
1258 1.96 fvdl tag = scb->hscb->tag;
1259 1.96 fvdl ahc_print_path(ahc, scb);
1260 1.96 fvdl printf("SCB %d - Abort%s Completed.\n",
1261 1.96 fvdl scb->hscb->tag, tag == SCB_LIST_NULL ?
1262 1.96 fvdl "" : " Tag");
1263 1.96 fvdl ahc_abort_scbs(ahc, target, channel,
1264 1.96 fvdl saved_lun, tag,
1265 1.96 fvdl ROLE_INITIATOR,
1266 1.96 fvdl CAM_REQ_ABORTED);
1267 1.96 fvdl printerror = 0;
1268 1.96 fvdl } else if (ahc_sent_msg(ahc, AHCMSG_1B,
1269 1.96 fvdl MSG_BUS_DEV_RESET, TRUE)) {
1270 1.96 fvdl #ifdef __FreeBSD__
1271 1.96 fvdl /*
1272 1.96 fvdl * Don't mark the user's request for this BDR
1273 1.96 fvdl * as completing with CAM_BDR_SENT. CAM3
1274 1.96 fvdl * specifies CAM_REQ_CMP.
1275 1.96 fvdl */
1276 1.96 fvdl if (scb != NULL
1277 1.96 fvdl && scb->io_ctx->ccb_h.func_code== XPT_RESET_DEV
1278 1.96 fvdl && ahc_match_scb(ahc, scb, target, channel,
1279 1.96 fvdl CAM_LUN_WILDCARD,
1280 1.96 fvdl SCB_LIST_NULL,
1281 1.96 fvdl ROLE_INITIATOR)) {
1282 1.96 fvdl ahc_set_transaction_status(scb, CAM_REQ_CMP);
1283 1.96 fvdl }
1284 1.96 fvdl #endif
1285 1.96 fvdl ahc_compile_devinfo(&devinfo,
1286 1.96 fvdl initiator_role_id,
1287 1.96 fvdl target,
1288 1.96 fvdl CAM_LUN_WILDCARD,
1289 1.96 fvdl channel,
1290 1.96 fvdl ROLE_INITIATOR);
1291 1.96 fvdl ahc_handle_devreset(ahc, &devinfo,
1292 1.96 fvdl CAM_BDR_SENT,
1293 1.96 fvdl "Bus Device Reset",
1294 1.96 fvdl /*verbose_level*/0);
1295 1.96 fvdl printerror = 0;
1296 1.96 fvdl } else if (ahc_sent_msg(ahc, AHCMSG_EXT,
1297 1.96 fvdl MSG_EXT_PPR, FALSE)) {
1298 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
1299 1.96 fvdl struct ahc_tmode_tstate *tstate;
1300 1.96 fvdl
1301 1.96 fvdl /*
1302 1.96 fvdl * PPR Rejected. Try non-ppr negotiation
1303 1.96 fvdl * and retry command.
1304 1.96 fvdl */
1305 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc,
1306 1.96 fvdl devinfo.channel,
1307 1.96 fvdl devinfo.our_scsiid,
1308 1.96 fvdl devinfo.target,
1309 1.96 fvdl &tstate);
1310 1.96 fvdl tinfo->curr.transport_version = 2;
1311 1.96 fvdl tinfo->goal.transport_version = 2;
1312 1.96 fvdl tinfo->goal.ppr_options = 0;
1313 1.96 fvdl ahc_qinfifo_requeue_tail(ahc, scb);
1314 1.96 fvdl printerror = 0;
1315 1.96 fvdl } else if (ahc_sent_msg(ahc, AHCMSG_EXT,
1316 1.96 fvdl MSG_EXT_WDTR, FALSE)
1317 1.96 fvdl || ahc_sent_msg(ahc, AHCMSG_EXT,
1318 1.96 fvdl MSG_EXT_SDTR, FALSE)) {
1319 1.96 fvdl /*
1320 1.96 fvdl * Negotiation Rejected. Go-async and
1321 1.96 fvdl * retry command.
1322 1.96 fvdl */
1323 1.96 fvdl ahc_set_width(ahc, &devinfo,
1324 1.96 fvdl MSG_EXT_WDTR_BUS_8_BIT,
1325 1.96 fvdl AHC_TRANS_CUR|AHC_TRANS_GOAL,
1326 1.96 fvdl /*paused*/TRUE);
1327 1.96 fvdl ahc_set_syncrate(ahc, &devinfo,
1328 1.96 fvdl /*syncrate*/NULL,
1329 1.96 fvdl /*period*/0, /*offset*/0,
1330 1.96 fvdl /*ppr_options*/0,
1331 1.96 fvdl AHC_TRANS_CUR|AHC_TRANS_GOAL,
1332 1.96 fvdl /*paused*/TRUE);
1333 1.96 fvdl ahc_qinfifo_requeue_tail(ahc, scb);
1334 1.96 fvdl printerror = 0;
1335 1.96 fvdl }
1336 1.96 fvdl }
1337 1.96 fvdl if (printerror != 0) {
1338 1.96 fvdl u_int i;
1339 1.96 fvdl
1340 1.96 fvdl if (scb != NULL) {
1341 1.96 fvdl u_int tag;
1342 1.96 fvdl
1343 1.96 fvdl if ((scb->hscb->control & TAG_ENB) != 0)
1344 1.96 fvdl tag = scb->hscb->tag;
1345 1.96 fvdl else
1346 1.96 fvdl tag = SCB_LIST_NULL;
1347 1.96 fvdl ahc_print_path(ahc, scb);
1348 1.96 fvdl ahc_abort_scbs(ahc, target, channel,
1349 1.96 fvdl SCB_GET_LUN(scb), tag,
1350 1.96 fvdl ROLE_INITIATOR,
1351 1.96 fvdl CAM_UNEXP_BUSFREE);
1352 1.96 fvdl } else {
1353 1.96 fvdl /*
1354 1.96 fvdl * We had not fully identified this connection,
1355 1.96 fvdl * so we cannot abort anything.
1356 1.96 fvdl */
1357 1.96 fvdl printf("%s: ", ahc_name(ahc));
1358 1.96 fvdl }
1359 1.96 fvdl for (i = 0; i < num_phases; i++) {
1360 1.96 fvdl if (lastphase == ahc_phase_table[i].phase)
1361 1.96 fvdl break;
1362 1.96 fvdl }
1363 1.96 fvdl /*
1364 1.96 fvdl * Renegotiate with this device at the
1365 1.96 fvdl * next oportunity just in case this busfree
1366 1.96 fvdl * is due to a negotiation mismatch with the
1367 1.96 fvdl * device.
1368 1.96 fvdl */
1369 1.96 fvdl ahc_force_renegotiation(ahc);
1370 1.96 fvdl printf("Unexpected busfree %s\n"
1371 1.96 fvdl "SEQADDR == 0x%x\n",
1372 1.96 fvdl ahc_phase_table[i].phasemsg,
1373 1.96 fvdl ahc_inb(ahc, SEQADDR0)
1374 1.96 fvdl | (ahc_inb(ahc, SEQADDR1) << 8));
1375 1.96 fvdl }
1376 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1377 1.96 fvdl ahc_restart(ahc);
1378 1.96 fvdl } else {
1379 1.96 fvdl printf("%s: Missing case in ahc_handle_scsiint. status = %x\n",
1380 1.96 fvdl ahc_name(ahc), status);
1381 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1382 1.96 fvdl }
1383 1.96 fvdl }
1384 1.96 fvdl
1385 1.96 fvdl /*
1386 1.96 fvdl * Force renegotiation to occur the next time we initiate
1387 1.96 fvdl * a command to the current device.
1388 1.96 fvdl */
1389 1.96 fvdl static void
1390 1.96 fvdl ahc_force_renegotiation(struct ahc_softc *ahc)
1391 1.96 fvdl {
1392 1.96 fvdl struct ahc_devinfo devinfo;
1393 1.96 fvdl struct ahc_initiator_tinfo *targ_info;
1394 1.96 fvdl struct ahc_tmode_tstate *tstate;
1395 1.96 fvdl
1396 1.96 fvdl ahc_fetch_devinfo(ahc, &devinfo);
1397 1.96 fvdl targ_info = ahc_fetch_transinfo(ahc,
1398 1.96 fvdl devinfo.channel,
1399 1.96 fvdl devinfo.our_scsiid,
1400 1.96 fvdl devinfo.target,
1401 1.96 fvdl &tstate);
1402 1.96 fvdl ahc_update_neg_request(ahc, &devinfo, tstate,
1403 1.96 fvdl targ_info, AHC_NEG_IF_NON_ASYNC);
1404 1.96 fvdl }
1405 1.96 fvdl
1406 1.96 fvdl #define AHC_MAX_STEPS 2000
1407 1.96 fvdl void
1408 1.96 fvdl ahc_clear_critical_section(struct ahc_softc *ahc)
1409 1.96 fvdl {
1410 1.96 fvdl int stepping;
1411 1.96 fvdl int steps;
1412 1.96 fvdl u_int simode0;
1413 1.96 fvdl u_int simode1;
1414 1.96 fvdl
1415 1.96 fvdl if (ahc->num_critical_sections == 0)
1416 1.96 fvdl return;
1417 1.96 fvdl
1418 1.96 fvdl stepping = FALSE;
1419 1.96 fvdl steps = 0;
1420 1.96 fvdl simode0 = 0;
1421 1.96 fvdl simode1 = 0;
1422 1.96 fvdl for (;;) {
1423 1.96 fvdl struct cs *cs;
1424 1.96 fvdl u_int seqaddr;
1425 1.96 fvdl u_int i;
1426 1.96 fvdl
1427 1.96 fvdl seqaddr = ahc_inb(ahc, SEQADDR0)
1428 1.96 fvdl | (ahc_inb(ahc, SEQADDR1) << 8);
1429 1.96 fvdl
1430 1.96 fvdl /*
1431 1.96 fvdl * Seqaddr represents the next instruction to execute,
1432 1.96 fvdl * so we are really executing the instruction just
1433 1.96 fvdl * before it.
1434 1.96 fvdl */
1435 1.96 fvdl if (seqaddr != 0)
1436 1.96 fvdl seqaddr -= 1;
1437 1.96 fvdl cs = ahc->critical_sections;
1438 1.96 fvdl for (i = 0; i < ahc->num_critical_sections; i++, cs++) {
1439 1.96 fvdl
1440 1.96 fvdl if (cs->begin < seqaddr && cs->end >= seqaddr)
1441 1.96 fvdl break;
1442 1.96 fvdl }
1443 1.96 fvdl
1444 1.96 fvdl if (i == ahc->num_critical_sections)
1445 1.96 fvdl break;
1446 1.96 fvdl
1447 1.96 fvdl if (steps > AHC_MAX_STEPS) {
1448 1.96 fvdl printf("%s: Infinite loop in critical section\n",
1449 1.96 fvdl ahc_name(ahc));
1450 1.96 fvdl ahc_dump_card_state(ahc);
1451 1.96 fvdl panic("critical section loop");
1452 1.96 fvdl }
1453 1.96 fvdl
1454 1.96 fvdl steps++;
1455 1.96 fvdl if (stepping == FALSE) {
1456 1.96 fvdl
1457 1.96 fvdl /*
1458 1.96 fvdl * Disable all interrupt sources so that the
1459 1.96 fvdl * sequencer will not be stuck by a pausing
1460 1.96 fvdl * interrupt condition while we attempt to
1461 1.96 fvdl * leave a critical section.
1462 1.96 fvdl */
1463 1.96 fvdl simode0 = ahc_inb(ahc, SIMODE0);
1464 1.96 fvdl ahc_outb(ahc, SIMODE0, 0);
1465 1.96 fvdl simode1 = ahc_inb(ahc, SIMODE1);
1466 1.96 fvdl if ((ahc->features & AHC_DT) != 0)
1467 1.96 fvdl /*
1468 1.96 fvdl * On DT class controllers, we
1469 1.96 fvdl * use the enhanced busfree logic.
1470 1.96 fvdl * Unfortunately we cannot re-enable
1471 1.96 fvdl * busfree detection within the
1472 1.96 fvdl * current connection, so we must
1473 1.96 fvdl * leave it on while single stepping.
1474 1.96 fvdl */
1475 1.96 fvdl ahc_outb(ahc, SIMODE1, ENBUSFREE);
1476 1.96 fvdl else
1477 1.96 fvdl ahc_outb(ahc, SIMODE1, 0);
1478 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1479 1.96 fvdl ahc_outb(ahc, SEQCTL, ahc_inb(ahc, SEQCTL) | STEP);
1480 1.96 fvdl stepping = TRUE;
1481 1.96 fvdl }
1482 1.96 fvdl if ((ahc->features & AHC_DT) != 0) {
1483 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRBUSFREE);
1484 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1485 1.96 fvdl }
1486 1.96 fvdl ahc_outb(ahc, HCNTRL, ahc->unpause);
1487 1.96 fvdl while (!ahc_is_paused(ahc))
1488 1.96 fvdl ahc_delay(200);
1489 1.96 fvdl }
1490 1.96 fvdl if (stepping) {
1491 1.96 fvdl ahc_outb(ahc, SIMODE0, simode0);
1492 1.96 fvdl ahc_outb(ahc, SIMODE1, simode1);
1493 1.96 fvdl ahc_outb(ahc, SEQCTL, ahc_inb(ahc, SEQCTL) & ~STEP);
1494 1.96 fvdl }
1495 1.96 fvdl }
1496 1.96 fvdl
1497 1.96 fvdl /*
1498 1.96 fvdl * Clear any pending interrupt status.
1499 1.96 fvdl */
1500 1.96 fvdl void
1501 1.96 fvdl ahc_clear_intstat(struct ahc_softc *ahc)
1502 1.96 fvdl {
1503 1.96 fvdl /* Clear any interrupt conditions this may have caused */
1504 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRSELTIMEO|CLRATNO|CLRSCSIRSTI
1505 1.96 fvdl |CLRBUSFREE|CLRSCSIPERR|CLRPHASECHG|
1506 1.96 fvdl CLRREQINIT);
1507 1.96 fvdl ahc_flush_device_writes(ahc);
1508 1.96 fvdl ahc_outb(ahc, CLRSINT0, CLRSELDO|CLRSELDI|CLRSELINGO);
1509 1.96 fvdl ahc_flush_device_writes(ahc);
1510 1.96 fvdl ahc_outb(ahc, CLRINT, CLRSCSIINT);
1511 1.96 fvdl ahc_flush_device_writes(ahc);
1512 1.96 fvdl }
1513 1.96 fvdl
1514 1.96 fvdl /**************************** Debugging Routines ******************************/
1515 1.96 fvdl #ifdef AHC_DEBUG
1516 1.96 fvdl uint32_t ahc_debug = 0; /* AHC_SHOW_MISC|AHC_SHOW_SENSE|AHC_DEBUG_OPTS;*/
1517 1.96 fvdl #endif
1518 1.96 fvdl
1519 1.96 fvdl void
1520 1.96 fvdl ahc_print_scb(struct scb *scb)
1521 1.96 fvdl {
1522 1.96 fvdl int i;
1523 1.96 fvdl
1524 1.96 fvdl struct hardware_scb *hscb = scb->hscb;
1525 1.96 fvdl
1526 1.96 fvdl printf("scb:%p control:0x%x scsiid:0x%x lun:%d cdb_len:%d\n",
1527 1.96 fvdl (void *)scb,
1528 1.96 fvdl hscb->control,
1529 1.96 fvdl hscb->scsiid,
1530 1.96 fvdl hscb->lun,
1531 1.96 fvdl hscb->cdb_len);
1532 1.96 fvdl printf("Shared Data: ");
1533 1.96 fvdl for (i = 0; i < sizeof(hscb->shared_data.cdb); i++)
1534 1.96 fvdl printf("%#02x", hscb->shared_data.cdb[i]);
1535 1.96 fvdl printf(" dataptr:%#x datacnt:%#x sgptr:%#x tag:%#x\n",
1536 1.96 fvdl ahc_le32toh(hscb->dataptr),
1537 1.96 fvdl ahc_le32toh(hscb->datacnt),
1538 1.96 fvdl ahc_le32toh(hscb->sgptr),
1539 1.96 fvdl hscb->tag);
1540 1.96 fvdl if (scb->sg_count > 0) {
1541 1.96 fvdl for (i = 0; i < scb->sg_count; i++) {
1542 1.96 fvdl printf("sg[%d] - Addr 0x%x%x : Length %d\n",
1543 1.96 fvdl i,
1544 1.96 fvdl (ahc_le32toh(scb->sg_list[i].len) >> 24
1545 1.96 fvdl & SG_HIGH_ADDR_BITS),
1546 1.96 fvdl ahc_le32toh(scb->sg_list[i].addr),
1547 1.96 fvdl ahc_le32toh(scb->sg_list[i].len));
1548 1.96 fvdl }
1549 1.96 fvdl }
1550 1.96 fvdl }
1551 1.96 fvdl
1552 1.96 fvdl /************************* Transfer Negotiation *******************************/
1553 1.96 fvdl /*
1554 1.96 fvdl * Allocate per target mode instance (ID we respond to as a target)
1555 1.96 fvdl * transfer negotiation data structures.
1556 1.96 fvdl */
1557 1.96 fvdl static struct ahc_tmode_tstate *
1558 1.96 fvdl ahc_alloc_tstate(struct ahc_softc *ahc, u_int scsi_id, char channel)
1559 1.96 fvdl {
1560 1.96 fvdl struct ahc_tmode_tstate *master_tstate;
1561 1.96 fvdl struct ahc_tmode_tstate *tstate;
1562 1.96 fvdl int i;
1563 1.96 fvdl
1564 1.96 fvdl master_tstate = ahc->enabled_targets[ahc->our_id];
1565 1.96 fvdl if (channel == 'B') {
1566 1.96 fvdl scsi_id += 8;
1567 1.96 fvdl master_tstate = ahc->enabled_targets[ahc->our_id_b + 8];
1568 1.96 fvdl }
1569 1.96 fvdl if (ahc->enabled_targets[scsi_id] != NULL
1570 1.96 fvdl && ahc->enabled_targets[scsi_id] != master_tstate)
1571 1.96 fvdl panic("%s: ahc_alloc_tstate - Target already allocated",
1572 1.96 fvdl ahc_name(ahc));
1573 1.96 fvdl tstate = (struct ahc_tmode_tstate*)malloc(sizeof(*tstate),
1574 1.96 fvdl M_DEVBUF, M_NOWAIT);
1575 1.96 fvdl if (tstate == NULL)
1576 1.96 fvdl return (NULL);
1577 1.96 fvdl
1578 1.96 fvdl /*
1579 1.96 fvdl * If we have allocated a master tstate, copy user settings from
1580 1.96 fvdl * the master tstate (taken from SRAM or the EEPROM) for this
1581 1.96 fvdl * channel, but reset our current and goal settings to async/narrow
1582 1.96 fvdl * until an initiator talks to us.
1583 1.96 fvdl */
1584 1.96 fvdl if (master_tstate != NULL) {
1585 1.96 fvdl memcpy(tstate, master_tstate, sizeof(*tstate));
1586 1.96 fvdl memset(tstate->enabled_luns, 0, sizeof(tstate->enabled_luns));
1587 1.96 fvdl tstate->ultraenb = 0;
1588 1.96 fvdl for (i = 0; i < AHC_NUM_TARGETS; i++) {
1589 1.96 fvdl memset(&tstate->transinfo[i].curr, 0,
1590 1.96 fvdl sizeof(tstate->transinfo[i].curr));
1591 1.96 fvdl memset(&tstate->transinfo[i].goal, 0,
1592 1.96 fvdl sizeof(tstate->transinfo[i].goal));
1593 1.96 fvdl }
1594 1.96 fvdl } else
1595 1.96 fvdl memset(tstate, 0, sizeof(*tstate));
1596 1.96 fvdl ahc->enabled_targets[scsi_id] = tstate;
1597 1.96 fvdl return (tstate);
1598 1.96 fvdl }
1599 1.96 fvdl
1600 1.96 fvdl #ifdef AHC_TARGET_MODE
1601 1.96 fvdl /*
1602 1.96 fvdl * Free per target mode instance (ID we respond to as a target)
1603 1.96 fvdl * transfer negotiation data structures.
1604 1.96 fvdl */
1605 1.96 fvdl static void
1606 1.96 fvdl ahc_free_tstate(struct ahc_softc *ahc, u_int scsi_id, char channel, int force)
1607 1.96 fvdl {
1608 1.96 fvdl struct ahc_tmode_tstate *tstate;
1609 1.96 fvdl
1610 1.96 fvdl /*
1611 1.96 fvdl * Don't clean up our "master" tstate.
1612 1.96 fvdl * It has our default user settings.
1613 1.96 fvdl */
1614 1.96 fvdl if (((channel == 'B' && scsi_id == ahc->our_id_b)
1615 1.96 fvdl || (channel == 'A' && scsi_id == ahc->our_id))
1616 1.96 fvdl && force == FALSE)
1617 1.96 fvdl return;
1618 1.96 fvdl
1619 1.96 fvdl if (channel == 'B')
1620 1.96 fvdl scsi_id += 8;
1621 1.96 fvdl tstate = ahc->enabled_targets[scsi_id];
1622 1.96 fvdl if (tstate != NULL)
1623 1.96 fvdl free(tstate, M_DEVBUF);
1624 1.96 fvdl ahc->enabled_targets[scsi_id] = NULL;
1625 1.96 fvdl }
1626 1.96 fvdl #endif
1627 1.96 fvdl
1628 1.96 fvdl /*
1629 1.96 fvdl * Called when we have an active connection to a target on the bus,
1630 1.96 fvdl * this function finds the nearest syncrate to the input period limited
1631 1.96 fvdl * by the capabilities of the bus connectivity of and sync settings for
1632 1.96 fvdl * the target.
1633 1.96 fvdl */
1634 1.96 fvdl struct ahc_syncrate *
1635 1.96 fvdl ahc_devlimited_syncrate(struct ahc_softc *ahc,
1636 1.96 fvdl struct ahc_initiator_tinfo *tinfo,
1637 1.96 fvdl u_int *period, u_int *ppr_options, role_t role)
1638 1.96 fvdl {
1639 1.96 fvdl struct ahc_transinfo *transinfo;
1640 1.96 fvdl u_int maxsync;
1641 1.96 fvdl
1642 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
1643 1.96 fvdl if ((ahc_inb(ahc, SBLKCTL) & ENAB40) != 0
1644 1.96 fvdl && (ahc_inb(ahc, SSTAT2) & EXP_ACTIVE) == 0) {
1645 1.96 fvdl maxsync = AHC_SYNCRATE_DT;
1646 1.96 fvdl } else {
1647 1.96 fvdl maxsync = AHC_SYNCRATE_ULTRA;
1648 1.96 fvdl /* Can't do DT on an SE bus */
1649 1.96 fvdl *ppr_options &= ~MSG_EXT_PPR_DT_REQ;
1650 1.96 fvdl }
1651 1.96 fvdl } else if ((ahc->features & AHC_ULTRA) != 0) {
1652 1.96 fvdl maxsync = AHC_SYNCRATE_ULTRA;
1653 1.96 fvdl } else {
1654 1.96 fvdl maxsync = AHC_SYNCRATE_FAST;
1655 1.96 fvdl }
1656 1.96 fvdl /*
1657 1.96 fvdl * Never allow a value higher than our current goal
1658 1.96 fvdl * period otherwise we may allow a target initiated
1659 1.96 fvdl * negotiation to go above the limit as set by the
1660 1.96 fvdl * user. In the case of an initiator initiated
1661 1.96 fvdl * sync negotiation, we limit based on the user
1662 1.96 fvdl * setting. This allows the system to still accept
1663 1.96 fvdl * incoming negotiations even if target initiated
1664 1.96 fvdl * negotiation is not performed.
1665 1.96 fvdl */
1666 1.96 fvdl if (role == ROLE_TARGET)
1667 1.96 fvdl transinfo = &tinfo->user;
1668 1.96 fvdl else
1669 1.96 fvdl transinfo = &tinfo->goal;
1670 1.96 fvdl *ppr_options &= transinfo->ppr_options;
1671 1.96 fvdl if (transinfo->width == MSG_EXT_WDTR_BUS_8_BIT) {
1672 1.96 fvdl maxsync = MAX(maxsync, AHC_SYNCRATE_ULTRA2);
1673 1.96 fvdl *ppr_options &= ~MSG_EXT_PPR_DT_REQ;
1674 1.96 fvdl }
1675 1.96 fvdl if (transinfo->period == 0) {
1676 1.96 fvdl *period = 0;
1677 1.96 fvdl *ppr_options = 0;
1678 1.96 fvdl return (NULL);
1679 1.96 fvdl }
1680 1.96 fvdl *period = MAX(*period, transinfo->period);
1681 1.96 fvdl return (ahc_find_syncrate(ahc, period, ppr_options, maxsync));
1682 1.96 fvdl }
1683 1.96 fvdl
1684 1.96 fvdl /*
1685 1.96 fvdl * Look up the valid period to SCSIRATE conversion in our table.
1686 1.96 fvdl * Return the period and offset that should be sent to the target
1687 1.96 fvdl * if this was the beginning of an SDTR.
1688 1.96 fvdl */
1689 1.96 fvdl struct ahc_syncrate *
1690 1.96 fvdl ahc_find_syncrate(struct ahc_softc *ahc, u_int *period,
1691 1.96 fvdl u_int *ppr_options, u_int maxsync)
1692 1.96 fvdl {
1693 1.96 fvdl struct ahc_syncrate *syncrate;
1694 1.96 fvdl
1695 1.96 fvdl if ((ahc->features & AHC_DT) == 0)
1696 1.96 fvdl *ppr_options &= ~MSG_EXT_PPR_DT_REQ;
1697 1.96 fvdl
1698 1.96 fvdl /* Skip all DT only entries if DT is not available */
1699 1.96 fvdl if ((*ppr_options & MSG_EXT_PPR_DT_REQ) == 0
1700 1.96 fvdl && maxsync < AHC_SYNCRATE_ULTRA2)
1701 1.96 fvdl maxsync = AHC_SYNCRATE_ULTRA2;
1702 1.96 fvdl
1703 1.96 fvdl for (syncrate = &ahc_syncrates[maxsync];
1704 1.96 fvdl syncrate->rate != NULL;
1705 1.96 fvdl syncrate++) {
1706 1.96 fvdl
1707 1.96 fvdl /*
1708 1.96 fvdl * The Ultra2 table doesn't go as low
1709 1.96 fvdl * as for the Fast/Ultra cards.
1710 1.96 fvdl */
1711 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0
1712 1.96 fvdl && (syncrate->sxfr_u2 == 0))
1713 1.96 fvdl break;
1714 1.96 fvdl
1715 1.96 fvdl if (*period <= syncrate->period) {
1716 1.96 fvdl /*
1717 1.96 fvdl * When responding to a target that requests
1718 1.96 fvdl * sync, the requested rate may fall between
1719 1.96 fvdl * two rates that we can output, but still be
1720 1.96 fvdl * a rate that we can receive. Because of this,
1721 1.96 fvdl * we want to respond to the target with
1722 1.96 fvdl * the same rate that it sent to us even
1723 1.96 fvdl * if the period we use to send data to it
1724 1.96 fvdl * is lower. Only lower the response period
1725 1.96 fvdl * if we must.
1726 1.96 fvdl */
1727 1.96 fvdl if (syncrate == &ahc_syncrates[maxsync])
1728 1.96 fvdl *period = syncrate->period;
1729 1.96 fvdl
1730 1.96 fvdl /*
1731 1.96 fvdl * At some speeds, we only support
1732 1.96 fvdl * ST transfers.
1733 1.96 fvdl */
1734 1.96 fvdl if ((syncrate->sxfr_u2 & ST_SXFR) != 0)
1735 1.96 fvdl *ppr_options &= ~MSG_EXT_PPR_DT_REQ;
1736 1.96 fvdl break;
1737 1.96 fvdl }
1738 1.96 fvdl }
1739 1.96 fvdl
1740 1.96 fvdl if ((*period == 0)
1741 1.96 fvdl || (syncrate->rate == NULL)
1742 1.96 fvdl || ((ahc->features & AHC_ULTRA2) != 0
1743 1.96 fvdl && (syncrate->sxfr_u2 == 0))) {
1744 1.96 fvdl /* Use asynchronous transfers. */
1745 1.96 fvdl *period = 0;
1746 1.96 fvdl syncrate = NULL;
1747 1.96 fvdl *ppr_options &= ~MSG_EXT_PPR_DT_REQ;
1748 1.96 fvdl }
1749 1.96 fvdl return (syncrate);
1750 1.96 fvdl }
1751 1.96 fvdl
1752 1.96 fvdl /*
1753 1.96 fvdl * Convert from an entry in our syncrate table to the SCSI equivalent
1754 1.96 fvdl * sync "period" factor.
1755 1.96 fvdl */
1756 1.96 fvdl u_int
1757 1.96 fvdl ahc_find_period(struct ahc_softc *ahc, u_int scsirate, u_int maxsync)
1758 1.96 fvdl {
1759 1.96 fvdl struct ahc_syncrate *syncrate;
1760 1.96 fvdl
1761 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
1762 1.96 fvdl scsirate &= SXFR_ULTRA2;
1763 1.96 fvdl else
1764 1.96 fvdl scsirate &= SXFR;
1765 1.96 fvdl
1766 1.96 fvdl syncrate = &ahc_syncrates[maxsync];
1767 1.96 fvdl while (syncrate->rate != NULL) {
1768 1.96 fvdl
1769 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
1770 1.96 fvdl if (syncrate->sxfr_u2 == 0)
1771 1.96 fvdl break;
1772 1.96 fvdl else if (scsirate == (syncrate->sxfr_u2 & SXFR_ULTRA2))
1773 1.96 fvdl return (syncrate->period);
1774 1.96 fvdl } else if (scsirate == (syncrate->sxfr & SXFR)) {
1775 1.96 fvdl return (syncrate->period);
1776 1.96 fvdl }
1777 1.96 fvdl syncrate++;
1778 1.96 fvdl }
1779 1.96 fvdl return (0); /* async */
1780 1.96 fvdl }
1781 1.96 fvdl
1782 1.96 fvdl /*
1783 1.96 fvdl * Truncate the given synchronous offset to a value the
1784 1.96 fvdl * current adapter type and syncrate are capable of.
1785 1.96 fvdl */
1786 1.96 fvdl void
1787 1.96 fvdl ahc_validate_offset(struct ahc_softc *ahc,
1788 1.96 fvdl struct ahc_initiator_tinfo *tinfo,
1789 1.96 fvdl struct ahc_syncrate *syncrate,
1790 1.96 fvdl u_int *offset, int wide, role_t role)
1791 1.96 fvdl {
1792 1.96 fvdl u_int maxoffset;
1793 1.96 fvdl
1794 1.96 fvdl /* Limit offset to what we can do */
1795 1.96 fvdl if (syncrate == NULL) {
1796 1.96 fvdl maxoffset = 0;
1797 1.96 fvdl } else if ((ahc->features & AHC_ULTRA2) != 0) {
1798 1.96 fvdl maxoffset = MAX_OFFSET_ULTRA2;
1799 1.96 fvdl } else {
1800 1.96 fvdl if (wide)
1801 1.96 fvdl maxoffset = MAX_OFFSET_16BIT;
1802 1.96 fvdl else
1803 1.96 fvdl maxoffset = MAX_OFFSET_8BIT;
1804 1.96 fvdl }
1805 1.96 fvdl *offset = MIN(*offset, maxoffset);
1806 1.96 fvdl if (tinfo != NULL) {
1807 1.96 fvdl if (role == ROLE_TARGET)
1808 1.96 fvdl *offset = MIN(*offset, tinfo->user.offset);
1809 1.96 fvdl else
1810 1.96 fvdl *offset = MIN(*offset, tinfo->goal.offset);
1811 1.96 fvdl }
1812 1.96 fvdl }
1813 1.96 fvdl
1814 1.96 fvdl /*
1815 1.96 fvdl * Truncate the given transfer width parameter to a value the
1816 1.96 fvdl * current adapter type is capable of.
1817 1.96 fvdl */
1818 1.96 fvdl void
1819 1.96 fvdl ahc_validate_width(struct ahc_softc *ahc, struct ahc_initiator_tinfo *tinfo,
1820 1.96 fvdl u_int *bus_width, role_t role)
1821 1.96 fvdl {
1822 1.96 fvdl switch (*bus_width) {
1823 1.96 fvdl default:
1824 1.96 fvdl if (ahc->features & AHC_WIDE) {
1825 1.96 fvdl /* Respond Wide */
1826 1.96 fvdl *bus_width = MSG_EXT_WDTR_BUS_16_BIT;
1827 1.96 fvdl break;
1828 1.96 fvdl }
1829 1.96 fvdl /* FALLTHROUGH */
1830 1.96 fvdl case MSG_EXT_WDTR_BUS_8_BIT:
1831 1.96 fvdl *bus_width = MSG_EXT_WDTR_BUS_8_BIT;
1832 1.96 fvdl break;
1833 1.96 fvdl }
1834 1.96 fvdl if (tinfo != NULL) {
1835 1.96 fvdl if (role == ROLE_TARGET)
1836 1.96 fvdl *bus_width = MIN(tinfo->user.width, *bus_width);
1837 1.96 fvdl else
1838 1.96 fvdl *bus_width = MIN(tinfo->goal.width, *bus_width);
1839 1.96 fvdl }
1840 1.96 fvdl }
1841 1.96 fvdl
1842 1.96 fvdl /*
1843 1.96 fvdl * Update the bitmask of targets for which the controller should
1844 1.96 fvdl * negotiate with at the next convenient oportunity. This currently
1845 1.96 fvdl * means the next time we send the initial identify messages for
1846 1.96 fvdl * a new transaction.
1847 1.96 fvdl */
1848 1.96 fvdl int
1849 1.96 fvdl ahc_update_neg_request(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
1850 1.96 fvdl struct ahc_tmode_tstate *tstate,
1851 1.96 fvdl struct ahc_initiator_tinfo *tinfo, ahc_neg_type neg_type)
1852 1.96 fvdl {
1853 1.96 fvdl u_int auto_negotiate_orig;
1854 1.96 fvdl
1855 1.96 fvdl auto_negotiate_orig = tstate->auto_negotiate;
1856 1.96 fvdl if (neg_type == AHC_NEG_ALWAYS) {
1857 1.96 fvdl /*
1858 1.96 fvdl * Force our "current" settings to be
1859 1.96 fvdl * unknown so that unless a bus reset
1860 1.96 fvdl * occurs the need to renegotiate is
1861 1.96 fvdl * recorded persistently.
1862 1.96 fvdl */
1863 1.96 fvdl if ((ahc->features & AHC_WIDE) != 0)
1864 1.96 fvdl tinfo->curr.width = AHC_WIDTH_UNKNOWN;
1865 1.96 fvdl tinfo->curr.period = AHC_PERIOD_UNKNOWN;
1866 1.96 fvdl tinfo->curr.offset = AHC_OFFSET_UNKNOWN;
1867 1.96 fvdl }
1868 1.96 fvdl if (tinfo->curr.period != tinfo->goal.period
1869 1.96 fvdl || tinfo->curr.width != tinfo->goal.width
1870 1.96 fvdl || tinfo->curr.offset != tinfo->goal.offset
1871 1.96 fvdl || tinfo->curr.ppr_options != tinfo->goal.ppr_options
1872 1.96 fvdl || (neg_type == AHC_NEG_IF_NON_ASYNC
1873 1.96 fvdl && (tinfo->goal.offset != 0
1874 1.96 fvdl || tinfo->goal.width != MSG_EXT_WDTR_BUS_8_BIT
1875 1.96 fvdl || tinfo->goal.ppr_options != 0)))
1876 1.96 fvdl tstate->auto_negotiate |= devinfo->target_mask;
1877 1.96 fvdl else
1878 1.96 fvdl tstate->auto_negotiate &= ~devinfo->target_mask;
1879 1.96 fvdl
1880 1.96 fvdl return (auto_negotiate_orig != tstate->auto_negotiate);
1881 1.96 fvdl }
1882 1.96 fvdl
1883 1.96 fvdl /*
1884 1.96 fvdl * Update the user/goal/curr tables of synchronous negotiation
1885 1.96 fvdl * parameters as well as, in the case of a current or active update,
1886 1.96 fvdl * any data structures on the host controller. In the case of an
1887 1.96 fvdl * active update, the specified target is currently talking to us on
1888 1.96 fvdl * the bus, so the transfer parameter update must take effect
1889 1.96 fvdl * immediately.
1890 1.96 fvdl */
1891 1.96 fvdl void
1892 1.96 fvdl ahc_set_syncrate(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
1893 1.96 fvdl struct ahc_syncrate *syncrate, u_int period,
1894 1.96 fvdl u_int offset, u_int ppr_options, u_int type, int paused)
1895 1.96 fvdl {
1896 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
1897 1.96 fvdl struct ahc_tmode_tstate *tstate;
1898 1.96 fvdl u_int old_period;
1899 1.96 fvdl u_int old_offset;
1900 1.96 fvdl u_int old_ppr;
1901 1.96 fvdl int active;
1902 1.96 fvdl int update_needed;
1903 1.96 fvdl
1904 1.96 fvdl active = (type & AHC_TRANS_ACTIVE) == AHC_TRANS_ACTIVE;
1905 1.96 fvdl update_needed = 0;
1906 1.96 fvdl
1907 1.96 fvdl if (syncrate == NULL) {
1908 1.96 fvdl period = 0;
1909 1.96 fvdl offset = 0;
1910 1.96 fvdl }
1911 1.96 fvdl
1912 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo->channel, devinfo->our_scsiid,
1913 1.96 fvdl devinfo->target, &tstate);
1914 1.96 fvdl
1915 1.96 fvdl if ((type & AHC_TRANS_USER) != 0) {
1916 1.96 fvdl tinfo->user.period = period;
1917 1.96 fvdl tinfo->user.offset = offset;
1918 1.96 fvdl tinfo->user.ppr_options = ppr_options;
1919 1.96 fvdl }
1920 1.96 fvdl
1921 1.96 fvdl if ((type & AHC_TRANS_GOAL) != 0) {
1922 1.96 fvdl tinfo->goal.period = period;
1923 1.96 fvdl tinfo->goal.offset = offset;
1924 1.96 fvdl tinfo->goal.ppr_options = ppr_options;
1925 1.96 fvdl }
1926 1.96 fvdl
1927 1.96 fvdl old_period = tinfo->curr.period;
1928 1.96 fvdl old_offset = tinfo->curr.offset;
1929 1.96 fvdl old_ppr = tinfo->curr.ppr_options;
1930 1.96 fvdl
1931 1.96 fvdl if ((type & AHC_TRANS_CUR) != 0
1932 1.96 fvdl && (old_period != period
1933 1.96 fvdl || old_offset != offset
1934 1.96 fvdl || old_ppr != ppr_options)) {
1935 1.96 fvdl u_int scsirate;
1936 1.96 fvdl
1937 1.96 fvdl update_needed++;
1938 1.96 fvdl scsirate = tinfo->scsirate;
1939 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
1940 1.96 fvdl
1941 1.96 fvdl scsirate &= ~(SXFR_ULTRA2|SINGLE_EDGE|ENABLE_CRC);
1942 1.96 fvdl if (syncrate != NULL) {
1943 1.96 fvdl scsirate |= syncrate->sxfr_u2;
1944 1.96 fvdl if ((ppr_options & MSG_EXT_PPR_DT_REQ) != 0)
1945 1.96 fvdl scsirate |= ENABLE_CRC;
1946 1.96 fvdl else
1947 1.96 fvdl scsirate |= SINGLE_EDGE;
1948 1.96 fvdl }
1949 1.96 fvdl } else {
1950 1.96 fvdl
1951 1.96 fvdl scsirate &= ~(SXFR|SOFS);
1952 1.96 fvdl /*
1953 1.96 fvdl * Ensure Ultra mode is set properly for
1954 1.96 fvdl * this target.
1955 1.96 fvdl */
1956 1.96 fvdl tstate->ultraenb &= ~devinfo->target_mask;
1957 1.96 fvdl if (syncrate != NULL) {
1958 1.96 fvdl if (syncrate->sxfr & ULTRA_SXFR) {
1959 1.96 fvdl tstate->ultraenb |=
1960 1.96 fvdl devinfo->target_mask;
1961 1.96 fvdl }
1962 1.96 fvdl scsirate |= syncrate->sxfr & SXFR;
1963 1.96 fvdl scsirate |= offset & SOFS;
1964 1.96 fvdl }
1965 1.96 fvdl if (active) {
1966 1.96 fvdl u_int sxfrctl0;
1967 1.96 fvdl
1968 1.96 fvdl sxfrctl0 = ahc_inb(ahc, SXFRCTL0);
1969 1.96 fvdl sxfrctl0 &= ~FAST20;
1970 1.96 fvdl if (tstate->ultraenb & devinfo->target_mask)
1971 1.96 fvdl sxfrctl0 |= FAST20;
1972 1.96 fvdl ahc_outb(ahc, SXFRCTL0, sxfrctl0);
1973 1.96 fvdl }
1974 1.96 fvdl }
1975 1.96 fvdl if (active) {
1976 1.96 fvdl ahc_outb(ahc, SCSIRATE, scsirate);
1977 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
1978 1.96 fvdl ahc_outb(ahc, SCSIOFFSET, offset);
1979 1.96 fvdl }
1980 1.96 fvdl
1981 1.96 fvdl tinfo->scsirate = scsirate;
1982 1.96 fvdl tinfo->curr.period = period;
1983 1.96 fvdl tinfo->curr.offset = offset;
1984 1.96 fvdl tinfo->curr.ppr_options = ppr_options;
1985 1.96 fvdl
1986 1.96 fvdl ahc_send_async(ahc, devinfo->channel, devinfo->target,
1987 1.96 fvdl CAM_LUN_WILDCARD, AC_TRANSFER_NEG, NULL);
1988 1.96 fvdl if (bootverbose) {
1989 1.96 fvdl if (offset != 0) {
1990 1.96 fvdl printf("%s: target %d synchronous at %sMHz%s, "
1991 1.96 fvdl "offset = 0x%x\n", ahc_name(ahc),
1992 1.96 fvdl devinfo->target, syncrate->rate,
1993 1.96 fvdl (ppr_options & MSG_EXT_PPR_DT_REQ)
1994 1.96 fvdl ? " DT" : "", offset);
1995 1.96 fvdl } else {
1996 1.96 fvdl printf("%s: target %d using "
1997 1.96 fvdl "asynchronous transfers\n",
1998 1.96 fvdl ahc_name(ahc), devinfo->target);
1999 1.96 fvdl }
2000 1.96 fvdl }
2001 1.96 fvdl }
2002 1.96 fvdl
2003 1.96 fvdl update_needed += ahc_update_neg_request(ahc, devinfo, tstate,
2004 1.96 fvdl tinfo, AHC_NEG_TO_GOAL);
2005 1.96 fvdl
2006 1.96 fvdl if (update_needed)
2007 1.96 fvdl ahc_update_pending_scbs(ahc);
2008 1.96 fvdl }
2009 1.96 fvdl
2010 1.96 fvdl /*
2011 1.96 fvdl * Update the user/goal/curr tables of wide negotiation
2012 1.96 fvdl * parameters as well as, in the case of a current or active update,
2013 1.96 fvdl * any data structures on the host controller. In the case of an
2014 1.96 fvdl * active update, the specified target is currently talking to us on
2015 1.96 fvdl * the bus, so the transfer parameter update must take effect
2016 1.96 fvdl * immediately.
2017 1.96 fvdl */
2018 1.96 fvdl void
2019 1.96 fvdl ahc_set_width(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2020 1.96 fvdl u_int width, u_int type, int paused)
2021 1.96 fvdl {
2022 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
2023 1.96 fvdl struct ahc_tmode_tstate *tstate;
2024 1.96 fvdl u_int oldwidth;
2025 1.96 fvdl int active;
2026 1.96 fvdl int update_needed;
2027 1.96 fvdl
2028 1.96 fvdl active = (type & AHC_TRANS_ACTIVE) == AHC_TRANS_ACTIVE;
2029 1.96 fvdl update_needed = 0;
2030 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo->channel, devinfo->our_scsiid,
2031 1.96 fvdl devinfo->target, &tstate);
2032 1.96 fvdl
2033 1.96 fvdl if ((type & AHC_TRANS_USER) != 0)
2034 1.96 fvdl tinfo->user.width = width;
2035 1.96 fvdl
2036 1.96 fvdl if ((type & AHC_TRANS_GOAL) != 0)
2037 1.96 fvdl tinfo->goal.width = width;
2038 1.96 fvdl
2039 1.96 fvdl oldwidth = tinfo->curr.width;
2040 1.96 fvdl if ((type & AHC_TRANS_CUR) != 0 && oldwidth != width) {
2041 1.96 fvdl u_int scsirate;
2042 1.96 fvdl
2043 1.96 fvdl update_needed++;
2044 1.96 fvdl scsirate = tinfo->scsirate;
2045 1.96 fvdl scsirate &= ~WIDEXFER;
2046 1.96 fvdl if (width == MSG_EXT_WDTR_BUS_16_BIT)
2047 1.96 fvdl scsirate |= WIDEXFER;
2048 1.96 fvdl
2049 1.96 fvdl tinfo->scsirate = scsirate;
2050 1.96 fvdl
2051 1.96 fvdl if (active)
2052 1.96 fvdl ahc_outb(ahc, SCSIRATE, scsirate);
2053 1.96 fvdl
2054 1.96 fvdl tinfo->curr.width = width;
2055 1.96 fvdl
2056 1.96 fvdl ahc_send_async(ahc, devinfo->channel, devinfo->target,
2057 1.96 fvdl CAM_LUN_WILDCARD, AC_TRANSFER_NEG, NULL);
2058 1.96 fvdl if (bootverbose) {
2059 1.96 fvdl printf("%s: target %d using %dbit transfers\n",
2060 1.96 fvdl ahc_name(ahc), devinfo->target,
2061 1.96 fvdl 8 * (0x01 << width));
2062 1.96 fvdl }
2063 1.96 fvdl }
2064 1.96 fvdl
2065 1.96 fvdl update_needed += ahc_update_neg_request(ahc, devinfo, tstate,
2066 1.96 fvdl tinfo, AHC_NEG_TO_GOAL);
2067 1.96 fvdl if (update_needed)
2068 1.96 fvdl ahc_update_pending_scbs(ahc);
2069 1.96 fvdl }
2070 1.96 fvdl
2071 1.96 fvdl /*
2072 1.96 fvdl * Update the current state of tagged queuing for a given target.
2073 1.96 fvdl */
2074 1.96 fvdl void
2075 1.96 fvdl ahc_set_tags(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2076 1.96 fvdl ahc_queue_alg alg)
2077 1.96 fvdl {
2078 1.96 fvdl ahc_platform_set_tags(ahc, devinfo, alg);
2079 1.96 fvdl }
2080 1.96 fvdl
2081 1.96 fvdl /*
2082 1.96 fvdl * When the transfer settings for a connection change, update any
2083 1.96 fvdl * in-transit SCBs to contain the new data so the hardware will
2084 1.96 fvdl * be set correctly during future (re)selections.
2085 1.96 fvdl */
2086 1.96 fvdl static void
2087 1.96 fvdl ahc_update_pending_scbs(struct ahc_softc *ahc)
2088 1.96 fvdl {
2089 1.96 fvdl struct scb *pending_scb;
2090 1.96 fvdl int pending_scb_count;
2091 1.96 fvdl int i;
2092 1.96 fvdl int paused;
2093 1.96 fvdl u_int saved_scbptr;
2094 1.96 fvdl
2095 1.96 fvdl /*
2096 1.96 fvdl * Traverse the pending SCB list and ensure that all of the
2097 1.96 fvdl * SCBs there have the proper settings.
2098 1.96 fvdl */
2099 1.96 fvdl pending_scb_count = 0;
2100 1.96 fvdl LIST_FOREACH(pending_scb, &ahc->pending_scbs, pending_links) {
2101 1.96 fvdl struct ahc_devinfo devinfo;
2102 1.96 fvdl struct hardware_scb *pending_hscb;
2103 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
2104 1.96 fvdl struct ahc_tmode_tstate *tstate;
2105 1.96 fvdl
2106 1.96 fvdl ahc_scb_devinfo(ahc, &devinfo, pending_scb);
2107 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo.channel,
2108 1.96 fvdl devinfo.our_scsiid,
2109 1.96 fvdl devinfo.target, &tstate);
2110 1.96 fvdl pending_hscb = pending_scb->hscb;
2111 1.96 fvdl pending_hscb->control &= ~ULTRAENB;
2112 1.96 fvdl if ((tstate->ultraenb & devinfo.target_mask) != 0)
2113 1.96 fvdl pending_hscb->control |= ULTRAENB;
2114 1.96 fvdl pending_hscb->scsirate = tinfo->scsirate;
2115 1.96 fvdl pending_hscb->scsioffset = tinfo->curr.offset;
2116 1.96 fvdl if ((tstate->auto_negotiate & devinfo.target_mask) == 0
2117 1.96 fvdl && (pending_scb->flags & SCB_AUTO_NEGOTIATE) != 0) {
2118 1.96 fvdl pending_scb->flags &= ~SCB_AUTO_NEGOTIATE;
2119 1.96 fvdl pending_hscb->control &= ~MK_MESSAGE;
2120 1.96 fvdl }
2121 1.96 fvdl ahc_sync_scb(ahc, pending_scb,
2122 1.96 fvdl BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
2123 1.96 fvdl pending_scb_count++;
2124 1.96 fvdl }
2125 1.96 fvdl
2126 1.96 fvdl if (pending_scb_count == 0)
2127 1.96 fvdl return;
2128 1.96 fvdl
2129 1.96 fvdl if (ahc_is_paused(ahc)) {
2130 1.96 fvdl paused = 1;
2131 1.96 fvdl } else {
2132 1.96 fvdl paused = 0;
2133 1.96 fvdl ahc_pause(ahc);
2134 1.96 fvdl }
2135 1.96 fvdl
2136 1.96 fvdl saved_scbptr = ahc_inb(ahc, SCBPTR);
2137 1.96 fvdl /* Ensure that the hscbs down on the card match the new information */
2138 1.96 fvdl for (i = 0; i < ahc->scb_data->maxhscbs; i++) {
2139 1.96 fvdl struct hardware_scb *pending_hscb;
2140 1.96 fvdl u_int control;
2141 1.96 fvdl u_int scb_tag;
2142 1.96 fvdl
2143 1.96 fvdl ahc_outb(ahc, SCBPTR, i);
2144 1.96 fvdl scb_tag = ahc_inb(ahc, SCB_TAG);
2145 1.96 fvdl pending_scb = ahc_lookup_scb(ahc, scb_tag);
2146 1.96 fvdl if (pending_scb == NULL)
2147 1.96 fvdl continue;
2148 1.96 fvdl
2149 1.96 fvdl pending_hscb = pending_scb->hscb;
2150 1.96 fvdl control = ahc_inb(ahc, SCB_CONTROL);
2151 1.96 fvdl control &= ~(ULTRAENB|MK_MESSAGE);
2152 1.96 fvdl control |= pending_hscb->control & (ULTRAENB|MK_MESSAGE);
2153 1.96 fvdl ahc_outb(ahc, SCB_CONTROL, control);
2154 1.96 fvdl ahc_outb(ahc, SCB_SCSIRATE, pending_hscb->scsirate);
2155 1.96 fvdl ahc_outb(ahc, SCB_SCSIOFFSET, pending_hscb->scsioffset);
2156 1.96 fvdl }
2157 1.96 fvdl ahc_outb(ahc, SCBPTR, saved_scbptr);
2158 1.96 fvdl
2159 1.96 fvdl if (paused == 0)
2160 1.96 fvdl ahc_unpause(ahc);
2161 1.96 fvdl }
2162 1.96 fvdl
2163 1.96 fvdl /**************************** Pathing Information *****************************/
2164 1.96 fvdl static void
2165 1.96 fvdl ahc_fetch_devinfo(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
2166 1.96 fvdl {
2167 1.96 fvdl u_int saved_scsiid;
2168 1.96 fvdl role_t role;
2169 1.96 fvdl int our_id;
2170 1.96 fvdl
2171 1.96 fvdl if (ahc_inb(ahc, SSTAT0) & TARGET)
2172 1.96 fvdl role = ROLE_TARGET;
2173 1.96 fvdl else
2174 1.96 fvdl role = ROLE_INITIATOR;
2175 1.96 fvdl
2176 1.96 fvdl if (role == ROLE_TARGET
2177 1.96 fvdl && (ahc->features & AHC_MULTI_TID) != 0
2178 1.96 fvdl && (ahc_inb(ahc, SEQ_FLAGS)
2179 1.96 fvdl & (CMDPHASE_PENDING|TARG_CMD_PENDING|NO_DISCONNECT)) != 0) {
2180 1.96 fvdl /* We were selected, so pull our id from TARGIDIN */
2181 1.96 fvdl our_id = ahc_inb(ahc, TARGIDIN) & OID;
2182 1.96 fvdl } else if ((ahc->features & AHC_ULTRA2) != 0)
2183 1.96 fvdl our_id = ahc_inb(ahc, SCSIID_ULTRA2) & OID;
2184 1.96 fvdl else
2185 1.96 fvdl our_id = ahc_inb(ahc, SCSIID) & OID;
2186 1.96 fvdl
2187 1.96 fvdl saved_scsiid = ahc_inb(ahc, SAVED_SCSIID);
2188 1.96 fvdl ahc_compile_devinfo(devinfo,
2189 1.96 fvdl our_id,
2190 1.96 fvdl SCSIID_TARGET(ahc, saved_scsiid),
2191 1.96 fvdl ahc_inb(ahc, SAVED_LUN),
2192 1.96 fvdl SCSIID_CHANNEL(ahc, saved_scsiid),
2193 1.96 fvdl role);
2194 1.96 fvdl }
2195 1.96 fvdl
2196 1.96 fvdl struct ahc_phase_table_entry*
2197 1.96 fvdl ahc_lookup_phase_entry(int phase)
2198 1.96 fvdl {
2199 1.96 fvdl struct ahc_phase_table_entry *entry;
2200 1.96 fvdl struct ahc_phase_table_entry *last_entry;
2201 1.96 fvdl
2202 1.96 fvdl /*
2203 1.96 fvdl * num_phases doesn't include the default entry which
2204 1.96 fvdl * will be returned if the phase doesn't match.
2205 1.96 fvdl */
2206 1.96 fvdl last_entry = &ahc_phase_table[num_phases];
2207 1.96 fvdl for (entry = ahc_phase_table; entry < last_entry; entry++) {
2208 1.96 fvdl if (phase == entry->phase)
2209 1.96 fvdl break;
2210 1.96 fvdl }
2211 1.96 fvdl return (entry);
2212 1.96 fvdl }
2213 1.96 fvdl
2214 1.96 fvdl void
2215 1.96 fvdl ahc_compile_devinfo(struct ahc_devinfo *devinfo, u_int our_id, u_int target,
2216 1.96 fvdl u_int lun, char channel, role_t role)
2217 1.96 fvdl {
2218 1.96 fvdl devinfo->our_scsiid = our_id;
2219 1.96 fvdl devinfo->target = target;
2220 1.96 fvdl devinfo->lun = lun;
2221 1.96 fvdl devinfo->target_offset = target;
2222 1.96 fvdl devinfo->channel = channel;
2223 1.96 fvdl devinfo->role = role;
2224 1.96 fvdl if (channel == 'B')
2225 1.96 fvdl devinfo->target_offset += 8;
2226 1.96 fvdl devinfo->target_mask = (0x01 << devinfo->target_offset);
2227 1.96 fvdl }
2228 1.96 fvdl
2229 1.96 fvdl void
2230 1.96 fvdl ahc_print_devinfo(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
2231 1.96 fvdl {
2232 1.96 fvdl printf("%s:%c:%d:%d: ", ahc_name(ahc), devinfo->channel,
2233 1.96 fvdl devinfo->target, devinfo->lun);
2234 1.96 fvdl }
2235 1.96 fvdl
2236 1.96 fvdl static void
2237 1.96 fvdl ahc_scb_devinfo(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2238 1.96 fvdl struct scb *scb)
2239 1.96 fvdl {
2240 1.96 fvdl role_t role;
2241 1.96 fvdl int our_id;
2242 1.96 fvdl
2243 1.96 fvdl our_id = SCSIID_OUR_ID(scb->hscb->scsiid);
2244 1.96 fvdl role = ROLE_INITIATOR;
2245 1.96 fvdl if ((scb->flags & SCB_TARGET_SCB) != 0)
2246 1.96 fvdl role = ROLE_TARGET;
2247 1.96 fvdl ahc_compile_devinfo(devinfo, our_id, SCB_GET_TARGET(ahc, scb),
2248 1.96 fvdl SCB_GET_LUN(scb), SCB_GET_CHANNEL(ahc, scb), role);
2249 1.96 fvdl }
2250 1.96 fvdl
2251 1.96 fvdl
2252 1.96 fvdl /************************ Message Phase Processing ****************************/
2253 1.96 fvdl static void
2254 1.96 fvdl ahc_assert_atn(struct ahc_softc *ahc)
2255 1.96 fvdl {
2256 1.96 fvdl u_int scsisigo;
2257 1.96 fvdl
2258 1.96 fvdl scsisigo = ATNO;
2259 1.96 fvdl if ((ahc->features & AHC_DT) == 0)
2260 1.96 fvdl scsisigo |= ahc_inb(ahc, SCSISIGI);
2261 1.96 fvdl ahc_outb(ahc, SCSISIGO, scsisigo);
2262 1.96 fvdl }
2263 1.96 fvdl
2264 1.96 fvdl /*
2265 1.96 fvdl * When an initiator transaction with the MK_MESSAGE flag either reconnects
2266 1.96 fvdl * or enters the initial message out phase, we are interrupted. Fill our
2267 1.96 fvdl * outgoing message buffer with the appropriate message and beging handing
2268 1.96 fvdl * the message phase(s) manually.
2269 1.96 fvdl */
2270 1.96 fvdl static void
2271 1.96 fvdl ahc_setup_initiator_msgout(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2272 1.96 fvdl struct scb *scb)
2273 1.96 fvdl {
2274 1.96 fvdl /*
2275 1.96 fvdl * To facilitate adding multiple messages together,
2276 1.96 fvdl * each routine should increment the index and len
2277 1.96 fvdl * variables instead of setting them explicitly.
2278 1.96 fvdl */
2279 1.96 fvdl ahc->msgout_index = 0;
2280 1.96 fvdl ahc->msgout_len = 0;
2281 1.96 fvdl
2282 1.96 fvdl if ((scb->flags & SCB_DEVICE_RESET) == 0
2283 1.96 fvdl && ahc_inb(ahc, MSG_OUT) == MSG_IDENTIFYFLAG) {
2284 1.96 fvdl u_int identify_msg;
2285 1.96 fvdl
2286 1.96 fvdl identify_msg = MSG_IDENTIFYFLAG | SCB_GET_LUN(scb);
2287 1.96 fvdl if ((scb->hscb->control & DISCENB) != 0)
2288 1.96 fvdl identify_msg |= MSG_IDENTIFY_DISCFLAG;
2289 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = identify_msg;
2290 1.96 fvdl ahc->msgout_len++;
2291 1.96 fvdl
2292 1.96 fvdl if ((scb->hscb->control & TAG_ENB) != 0) {
2293 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] =
2294 1.96 fvdl scb->hscb->control & (TAG_ENB|SCB_TAG_TYPE);
2295 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = scb->hscb->tag;
2296 1.96 fvdl ahc->msgout_len += 2;
2297 1.96 fvdl }
2298 1.96 fvdl }
2299 1.96 fvdl
2300 1.96 fvdl if (scb->flags & SCB_DEVICE_RESET) {
2301 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_BUS_DEV_RESET;
2302 1.96 fvdl ahc->msgout_len++;
2303 1.96 fvdl ahc_print_path(ahc, scb);
2304 1.96 fvdl printf("Bus Device Reset Message Sent\n");
2305 1.96 fvdl /*
2306 1.96 fvdl * Clear our selection hardware in advance of
2307 1.96 fvdl * the busfree. We may have an entry in the waiting
2308 1.96 fvdl * Q for this target, and we don't want to go about
2309 1.96 fvdl * selecting while we handle the busfree and blow it
2310 1.96 fvdl * away.
2311 1.96 fvdl */
2312 1.96 fvdl ahc_outb(ahc, SCSISEQ, (ahc_inb(ahc, SCSISEQ) & ~ENSELO));
2313 1.96 fvdl } else if ((scb->flags & SCB_ABORT) != 0) {
2314 1.96 fvdl if ((scb->hscb->control & TAG_ENB) != 0)
2315 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_ABORT_TAG;
2316 1.96 fvdl else
2317 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_ABORT;
2318 1.96 fvdl ahc->msgout_len++;
2319 1.96 fvdl ahc_print_path(ahc, scb);
2320 1.96 fvdl printf("Abort%s Message Sent\n",
2321 1.96 fvdl (scb->hscb->control & TAG_ENB) != 0 ? " Tag" : "");
2322 1.96 fvdl /*
2323 1.96 fvdl * Clear our selection hardware in advance of
2324 1.96 fvdl * the busfree. We may have an entry in the waiting
2325 1.96 fvdl * Q for this target, and we don't want to go about
2326 1.96 fvdl * selecting while we handle the busfree and blow it
2327 1.96 fvdl * away.
2328 1.96 fvdl */
2329 1.96 fvdl ahc_outb(ahc, SCSISEQ, (ahc_inb(ahc, SCSISEQ) & ~ENSELO));
2330 1.96 fvdl } else if ((scb->flags & (SCB_AUTO_NEGOTIATE|SCB_NEGOTIATE)) != 0) {
2331 1.96 fvdl ahc_build_transfer_msg(ahc, devinfo);
2332 1.96 fvdl } else {
2333 1.96 fvdl printf("ahc_intr: AWAITING_MSG for an SCB that "
2334 1.96 fvdl "does not have a waiting message\n");
2335 1.96 fvdl printf("SCSIID = %x, target_mask = %x\n", scb->hscb->scsiid,
2336 1.96 fvdl devinfo->target_mask);
2337 1.96 fvdl panic("SCB = %d, SCB Control = %x, MSG_OUT = %x "
2338 1.96 fvdl "SCB flags = %x", scb->hscb->tag, scb->hscb->control,
2339 1.96 fvdl ahc_inb(ahc, MSG_OUT), scb->flags);
2340 1.96 fvdl }
2341 1.96 fvdl
2342 1.96 fvdl /*
2343 1.96 fvdl * Clear the MK_MESSAGE flag from the SCB so we aren't
2344 1.96 fvdl * asked to send this message again.
2345 1.96 fvdl */
2346 1.96 fvdl ahc_outb(ahc, SCB_CONTROL, ahc_inb(ahc, SCB_CONTROL) & ~MK_MESSAGE);
2347 1.96 fvdl scb->hscb->control &= ~MK_MESSAGE;
2348 1.96 fvdl ahc->msgout_index = 0;
2349 1.96 fvdl ahc->msg_type = MSG_TYPE_INITIATOR_MSGOUT;
2350 1.96 fvdl }
2351 1.96 fvdl
2352 1.96 fvdl /*
2353 1.96 fvdl * Build an appropriate transfer negotiation message for the
2354 1.96 fvdl * currently active target.
2355 1.96 fvdl */
2356 1.96 fvdl static void
2357 1.96 fvdl ahc_build_transfer_msg(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
2358 1.96 fvdl {
2359 1.96 fvdl /*
2360 1.96 fvdl * We need to initiate transfer negotiations.
2361 1.96 fvdl * If our current and goal settings are identical,
2362 1.96 fvdl * we want to renegotiate due to a check condition.
2363 1.96 fvdl */
2364 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
2365 1.96 fvdl struct ahc_tmode_tstate *tstate;
2366 1.96 fvdl struct ahc_syncrate *rate;
2367 1.96 fvdl int dowide;
2368 1.96 fvdl int dosync;
2369 1.96 fvdl int doppr;
2370 1.96 fvdl u_int period;
2371 1.96 fvdl u_int ppr_options;
2372 1.96 fvdl u_int offset;
2373 1.96 fvdl
2374 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo->channel, devinfo->our_scsiid,
2375 1.96 fvdl devinfo->target, &tstate);
2376 1.96 fvdl /*
2377 1.96 fvdl * Filter our period based on the current connection.
2378 1.96 fvdl * If we can't perform DT transfers on this segment (not in LVD
2379 1.96 fvdl * mode for instance), then our decision to issue a PPR message
2380 1.96 fvdl * may change.
2381 1.96 fvdl */
2382 1.96 fvdl period = tinfo->goal.period;
2383 1.96 fvdl ppr_options = tinfo->goal.ppr_options;
2384 1.96 fvdl /* Target initiated PPR is not allowed in the SCSI spec */
2385 1.96 fvdl if (devinfo->role == ROLE_TARGET)
2386 1.96 fvdl ppr_options = 0;
2387 1.96 fvdl rate = ahc_devlimited_syncrate(ahc, tinfo, &period,
2388 1.96 fvdl &ppr_options, devinfo->role);
2389 1.96 fvdl dowide = tinfo->curr.width != tinfo->goal.width;
2390 1.96 fvdl dosync = tinfo->curr.period != period;
2391 1.96 fvdl /*
2392 1.96 fvdl * Only use PPR if we have options that need it, even if the device
2393 1.96 fvdl * claims to support it. There might be an expander in the way
2394 1.96 fvdl * that doesn't.
2395 1.96 fvdl */
2396 1.96 fvdl doppr = ppr_options != 0;
2397 1.96 fvdl
2398 1.96 fvdl if (!dowide && !dosync && !doppr) {
2399 1.96 fvdl dowide = tinfo->goal.width != MSG_EXT_WDTR_BUS_8_BIT;
2400 1.96 fvdl dosync = tinfo->goal.offset != 0;
2401 1.96 fvdl }
2402 1.96 fvdl
2403 1.96 fvdl if (!dowide && !dosync && !doppr) {
2404 1.96 fvdl /*
2405 1.96 fvdl * Force async with a WDTR message if we have a wide bus,
2406 1.96 fvdl * or just issue an SDTR with a 0 offset.
2407 1.96 fvdl */
2408 1.96 fvdl if ((ahc->features & AHC_WIDE) != 0)
2409 1.96 fvdl dowide = 1;
2410 1.96 fvdl else
2411 1.96 fvdl dosync = 1;
2412 1.96 fvdl
2413 1.96 fvdl if (bootverbose) {
2414 1.96 fvdl ahc_print_devinfo(ahc, devinfo);
2415 1.96 fvdl printf("Ensuring async\n");
2416 1.96 fvdl }
2417 1.96 fvdl }
2418 1.96 fvdl
2419 1.96 fvdl /* Target initiated PPR is not allowed in the SCSI spec */
2420 1.96 fvdl if (devinfo->role == ROLE_TARGET)
2421 1.96 fvdl doppr = 0;
2422 1.96 fvdl
2423 1.96 fvdl /*
2424 1.96 fvdl * Both the PPR message and SDTR message require the
2425 1.96 fvdl * goal syncrate to be limited to what the target device
2426 1.96 fvdl * is capable of handling (based on whether an LVD->SE
2427 1.96 fvdl * expander is on the bus), so combine these two cases.
2428 1.96 fvdl * Regardless, guarantee that if we are using WDTR and SDTR
2429 1.96 fvdl * messages that WDTR comes first.
2430 1.96 fvdl */
2431 1.96 fvdl if (doppr || (dosync && !dowide)) {
2432 1.96 fvdl
2433 1.96 fvdl offset = tinfo->goal.offset;
2434 1.96 fvdl ahc_validate_offset(ahc, tinfo, rate, &offset,
2435 1.96 fvdl doppr ? tinfo->goal.width
2436 1.96 fvdl : tinfo->curr.width,
2437 1.96 fvdl devinfo->role);
2438 1.96 fvdl if (doppr) {
2439 1.96 fvdl ahc_construct_ppr(ahc, devinfo, period, offset,
2440 1.96 fvdl tinfo->goal.width, ppr_options);
2441 1.96 fvdl } else {
2442 1.96 fvdl ahc_construct_sdtr(ahc, devinfo, period, offset);
2443 1.96 fvdl }
2444 1.96 fvdl } else {
2445 1.96 fvdl ahc_construct_wdtr(ahc, devinfo, tinfo->goal.width);
2446 1.96 fvdl }
2447 1.96 fvdl }
2448 1.96 fvdl
2449 1.96 fvdl /*
2450 1.96 fvdl * Build a synchronous negotiation message in our message
2451 1.96 fvdl * buffer based on the input parameters.
2452 1.96 fvdl */
2453 1.96 fvdl static void
2454 1.96 fvdl ahc_construct_sdtr(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2455 1.96 fvdl u_int period, u_int offset)
2456 1.96 fvdl {
2457 1.96 fvdl if (offset == 0)
2458 1.96 fvdl period = AHC_ASYNC_XFER_PERIOD;
2459 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXTENDED;
2460 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_SDTR_LEN;
2461 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_SDTR;
2462 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = period;
2463 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = offset;
2464 1.96 fvdl ahc->msgout_len += 5;
2465 1.96 fvdl if (bootverbose) {
2466 1.96 fvdl printf("(%s:%c:%d:%d): Sending SDTR period %x, offset %x\n",
2467 1.96 fvdl ahc_name(ahc), devinfo->channel, devinfo->target,
2468 1.96 fvdl devinfo->lun, period, offset);
2469 1.96 fvdl }
2470 1.96 fvdl }
2471 1.96 fvdl
2472 1.96 fvdl /*
2473 1.96 fvdl * Build a wide negotiation message in our message
2474 1.96 fvdl * buffer based on the input parameters.
2475 1.96 fvdl */
2476 1.96 fvdl static void
2477 1.96 fvdl ahc_construct_wdtr(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2478 1.96 fvdl u_int bus_width)
2479 1.96 fvdl {
2480 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXTENDED;
2481 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_WDTR_LEN;
2482 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_WDTR;
2483 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = bus_width;
2484 1.96 fvdl ahc->msgout_len += 4;
2485 1.96 fvdl if (bootverbose) {
2486 1.96 fvdl printf("(%s:%c:%d:%d): Sending WDTR %x\n",
2487 1.96 fvdl ahc_name(ahc), devinfo->channel, devinfo->target,
2488 1.96 fvdl devinfo->lun, bus_width);
2489 1.96 fvdl }
2490 1.96 fvdl }
2491 1.96 fvdl
2492 1.96 fvdl /*
2493 1.96 fvdl * Build a parallel protocol request message in our message
2494 1.96 fvdl * buffer based on the input parameters.
2495 1.96 fvdl */
2496 1.96 fvdl static void
2497 1.96 fvdl ahc_construct_ppr(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
2498 1.96 fvdl u_int period, u_int offset, u_int bus_width,
2499 1.96 fvdl u_int ppr_options)
2500 1.96 fvdl {
2501 1.96 fvdl if (offset == 0)
2502 1.96 fvdl period = AHC_ASYNC_XFER_PERIOD;
2503 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXTENDED;
2504 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_PPR_LEN;
2505 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = MSG_EXT_PPR;
2506 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = period;
2507 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = 0;
2508 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = offset;
2509 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = bus_width;
2510 1.96 fvdl ahc->msgout_buf[ahc->msgout_index++] = ppr_options;
2511 1.96 fvdl ahc->msgout_len += 8;
2512 1.96 fvdl if (bootverbose) {
2513 1.96 fvdl printf("(%s:%c:%d:%d): Sending PPR bus_width %x, period %x, "
2514 1.96 fvdl "offset %x, ppr_options %x\n", ahc_name(ahc),
2515 1.96 fvdl devinfo->channel, devinfo->target, devinfo->lun,
2516 1.96 fvdl bus_width, period, offset, ppr_options);
2517 1.96 fvdl }
2518 1.96 fvdl }
2519 1.96 fvdl
2520 1.96 fvdl /*
2521 1.96 fvdl * Clear any active message state.
2522 1.96 fvdl */
2523 1.96 fvdl static void
2524 1.96 fvdl ahc_clear_msg_state(struct ahc_softc *ahc)
2525 1.96 fvdl {
2526 1.96 fvdl ahc->msgout_len = 0;
2527 1.96 fvdl ahc->msgin_index = 0;
2528 1.96 fvdl ahc->msg_type = MSG_TYPE_NONE;
2529 1.96 fvdl if ((ahc_inb(ahc, SCSISIGI) & ATNI) != 0) {
2530 1.96 fvdl /*
2531 1.96 fvdl * The target didn't care to respond to our
2532 1.96 fvdl * message request, so clear ATN.
2533 1.96 fvdl */
2534 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRATNO);
2535 1.96 fvdl }
2536 1.96 fvdl ahc_outb(ahc, MSG_OUT, MSG_NOOP);
2537 1.96 fvdl ahc_outb(ahc, SEQ_FLAGS2,
2538 1.96 fvdl ahc_inb(ahc, SEQ_FLAGS2) & ~TARGET_MSG_PENDING);
2539 1.96 fvdl }
2540 1.96 fvdl
2541 1.96 fvdl static void
2542 1.96 fvdl ahc_handle_proto_violation(struct ahc_softc *ahc)
2543 1.96 fvdl {
2544 1.96 fvdl struct ahc_devinfo devinfo;
2545 1.96 fvdl struct scb *scb;
2546 1.96 fvdl u_int scbid;
2547 1.96 fvdl u_int seq_flags;
2548 1.96 fvdl u_int curphase;
2549 1.96 fvdl u_int lastphase;
2550 1.96 fvdl int found;
2551 1.96 fvdl
2552 1.96 fvdl ahc_fetch_devinfo(ahc, &devinfo);
2553 1.96 fvdl scbid = ahc_inb(ahc, SCB_TAG);
2554 1.96 fvdl scb = ahc_lookup_scb(ahc, scbid);
2555 1.96 fvdl seq_flags = ahc_inb(ahc, SEQ_FLAGS);
2556 1.96 fvdl curphase = ahc_inb(ahc, SCSISIGI) & PHASE_MASK;
2557 1.96 fvdl lastphase = ahc_inb(ahc, LASTPHASE);
2558 1.96 fvdl if ((seq_flags & NOT_IDENTIFIED) != 0) {
2559 1.96 fvdl
2560 1.96 fvdl /*
2561 1.96 fvdl * The reconnecting target either did not send an
2562 1.96 fvdl * identify message, or did, but we didn't find an SCB
2563 1.96 fvdl * to match.
2564 1.96 fvdl */
2565 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2566 1.96 fvdl printf("Target did not send an IDENTIFY message. "
2567 1.96 fvdl "LASTPHASE = 0x%x.\n", lastphase);
2568 1.96 fvdl scb = NULL;
2569 1.96 fvdl } else if (scb == NULL) {
2570 1.96 fvdl /*
2571 1.96 fvdl * We don't seem to have an SCB active for this
2572 1.96 fvdl * transaction. Print an error and reset the bus.
2573 1.96 fvdl */
2574 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2575 1.96 fvdl printf("No SCB found during protocol violation\n");
2576 1.96 fvdl goto proto_violation_reset;
2577 1.96 fvdl } else {
2578 1.96 fvdl ahc_set_transaction_status(scb, CAM_SEQUENCE_FAIL);
2579 1.96 fvdl if ((seq_flags & NO_CDB_SENT) != 0) {
2580 1.96 fvdl ahc_print_path(ahc, scb);
2581 1.96 fvdl printf("No or incomplete CDB sent to device.\n");
2582 1.96 fvdl } else if ((ahc_inb(ahc, SCB_CONTROL) & STATUS_RCVD) == 0) {
2583 1.96 fvdl /*
2584 1.96 fvdl * The target never bothered to provide status to
2585 1.96 fvdl * us prior to completing the command. Since we don't
2586 1.96 fvdl * know the disposition of this command, we must attempt
2587 1.96 fvdl * to abort it. Assert ATN and prepare to send an abort
2588 1.96 fvdl * message.
2589 1.96 fvdl */
2590 1.96 fvdl ahc_print_path(ahc, scb);
2591 1.96 fvdl printf("Completed command without status.\n");
2592 1.96 fvdl } else {
2593 1.96 fvdl ahc_print_path(ahc, scb);
2594 1.96 fvdl printf("Unknown protocol violation.\n");
2595 1.96 fvdl ahc_dump_card_state(ahc);
2596 1.96 fvdl }
2597 1.96 fvdl }
2598 1.96 fvdl if ((lastphase & ~P_DATAIN_DT) == 0
2599 1.96 fvdl || lastphase == P_COMMAND) {
2600 1.96 fvdl proto_violation_reset:
2601 1.96 fvdl /*
2602 1.96 fvdl * Target either went directly to data/command
2603 1.96 fvdl * phase or didn't respond to our ATN.
2604 1.96 fvdl * The only safe thing to do is to blow
2605 1.96 fvdl * it away with a bus reset.
2606 1.96 fvdl */
2607 1.96 fvdl found = ahc_reset_channel(ahc, 'A', TRUE);
2608 1.96 fvdl printf("%s: Issued Channel %c Bus Reset. "
2609 1.96 fvdl "%d SCBs aborted\n", ahc_name(ahc), 'A', found);
2610 1.96 fvdl } else {
2611 1.96 fvdl /*
2612 1.96 fvdl * Leave the selection hardware off in case
2613 1.96 fvdl * this abort attempt will affect yet to
2614 1.96 fvdl * be sent commands.
2615 1.96 fvdl */
2616 1.96 fvdl ahc_outb(ahc, SCSISEQ,
2617 1.96 fvdl ahc_inb(ahc, SCSISEQ) & ~ENSELO);
2618 1.96 fvdl ahc_assert_atn(ahc);
2619 1.96 fvdl ahc_outb(ahc, MSG_OUT, HOST_MSG);
2620 1.96 fvdl if (scb == NULL) {
2621 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2622 1.96 fvdl ahc->msgout_buf[0] = MSG_ABORT_TASK;
2623 1.96 fvdl ahc->msgout_len = 1;
2624 1.96 fvdl ahc->msgout_index = 0;
2625 1.96 fvdl ahc->msg_type = MSG_TYPE_INITIATOR_MSGOUT;
2626 1.96 fvdl } else {
2627 1.96 fvdl ahc_print_path(ahc, scb);
2628 1.96 fvdl scb->flags |= SCB_ABORT;
2629 1.96 fvdl }
2630 1.96 fvdl printf("Protocol violation %s. Attempting to abort.\n",
2631 1.96 fvdl ahc_lookup_phase_entry(curphase)->phasemsg);
2632 1.96 fvdl }
2633 1.96 fvdl }
2634 1.96 fvdl
2635 1.96 fvdl /*
2636 1.96 fvdl * Manual message loop handler.
2637 1.96 fvdl */
2638 1.96 fvdl static void
2639 1.96 fvdl ahc_handle_message_phase(struct ahc_softc *ahc)
2640 1.96 fvdl {
2641 1.96 fvdl struct ahc_devinfo devinfo;
2642 1.96 fvdl u_int bus_phase;
2643 1.96 fvdl int end_session;
2644 1.96 fvdl
2645 1.96 fvdl ahc_fetch_devinfo(ahc, &devinfo);
2646 1.96 fvdl end_session = FALSE;
2647 1.96 fvdl bus_phase = ahc_inb(ahc, SCSISIGI) & PHASE_MASK;
2648 1.96 fvdl
2649 1.96 fvdl reswitch:
2650 1.96 fvdl switch (ahc->msg_type) {
2651 1.96 fvdl case MSG_TYPE_INITIATOR_MSGOUT:
2652 1.96 fvdl {
2653 1.96 fvdl int lastbyte;
2654 1.96 fvdl int phasemis;
2655 1.96 fvdl int msgdone;
2656 1.96 fvdl
2657 1.96 fvdl if (ahc->msgout_len == 0)
2658 1.96 fvdl panic("HOST_MSG_LOOP interrupt with no active message");
2659 1.96 fvdl
2660 1.96 fvdl #ifdef AHC_DEBUG
2661 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0) {
2662 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2663 1.96 fvdl printf("INITIATOR_MSG_OUT");
2664 1.96 fvdl }
2665 1.96 fvdl #endif
2666 1.96 fvdl phasemis = bus_phase != P_MESGOUT;
2667 1.96 fvdl if (phasemis) {
2668 1.96 fvdl #ifdef AHC_DEBUG
2669 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0) {
2670 1.96 fvdl printf(" PHASEMIS %s\n",
2671 1.96 fvdl ahc_lookup_phase_entry(bus_phase)
2672 1.96 fvdl ->phasemsg);
2673 1.96 fvdl }
2674 1.96 fvdl #endif
2675 1.96 fvdl if (bus_phase == P_MESGIN) {
2676 1.96 fvdl /*
2677 1.96 fvdl * Change gears and see if
2678 1.96 fvdl * this messages is of interest to
2679 1.96 fvdl * us or should be passed back to
2680 1.96 fvdl * the sequencer.
2681 1.96 fvdl */
2682 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRATNO);
2683 1.96 fvdl ahc->send_msg_perror = FALSE;
2684 1.96 fvdl ahc->msg_type = MSG_TYPE_INITIATOR_MSGIN;
2685 1.96 fvdl ahc->msgin_index = 0;
2686 1.96 fvdl goto reswitch;
2687 1.96 fvdl }
2688 1.96 fvdl end_session = TRUE;
2689 1.96 fvdl break;
2690 1.96 fvdl }
2691 1.96 fvdl
2692 1.96 fvdl if (ahc->send_msg_perror) {
2693 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRATNO);
2694 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRREQINIT);
2695 1.96 fvdl #ifdef AHC_DEBUG
2696 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0)
2697 1.96 fvdl printf(" byte 0x%x\n", ahc->send_msg_perror);
2698 1.96 fvdl #endif
2699 1.96 fvdl ahc_outb(ahc, SCSIDATL, MSG_PARITY_ERROR);
2700 1.96 fvdl break;
2701 1.96 fvdl }
2702 1.96 fvdl
2703 1.96 fvdl msgdone = ahc->msgout_index == ahc->msgout_len;
2704 1.96 fvdl if (msgdone) {
2705 1.96 fvdl /*
2706 1.96 fvdl * The target has requested a retry.
2707 1.96 fvdl * Re-assert ATN, reset our message index to
2708 1.96 fvdl * 0, and try again.
2709 1.96 fvdl */
2710 1.96 fvdl ahc->msgout_index = 0;
2711 1.96 fvdl ahc_assert_atn(ahc);
2712 1.96 fvdl }
2713 1.96 fvdl
2714 1.96 fvdl lastbyte = ahc->msgout_index == (ahc->msgout_len - 1);
2715 1.96 fvdl if (lastbyte) {
2716 1.96 fvdl /* Last byte is signified by dropping ATN */
2717 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRATNO);
2718 1.96 fvdl }
2719 1.96 fvdl
2720 1.96 fvdl /*
2721 1.96 fvdl * Clear our interrupt status and present
2722 1.96 fvdl * the next byte on the bus.
2723 1.96 fvdl */
2724 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRREQINIT);
2725 1.96 fvdl #ifdef AHC_DEBUG
2726 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0)
2727 1.96 fvdl printf(" byte 0x%x\n",
2728 1.96 fvdl ahc->msgout_buf[ahc->msgout_index]);
2729 1.96 fvdl #endif
2730 1.96 fvdl ahc_outb(ahc, SCSIDATL, ahc->msgout_buf[ahc->msgout_index++]);
2731 1.96 fvdl break;
2732 1.42 fvdl }
2733 1.96 fvdl case MSG_TYPE_INITIATOR_MSGIN:
2734 1.96 fvdl {
2735 1.96 fvdl int phasemis;
2736 1.96 fvdl int message_done;
2737 1.96 fvdl
2738 1.96 fvdl #ifdef AHC_DEBUG
2739 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0) {
2740 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2741 1.96 fvdl printf("INITIATOR_MSG_IN");
2742 1.96 fvdl }
2743 1.96 fvdl #endif
2744 1.96 fvdl phasemis = bus_phase != P_MESGIN;
2745 1.96 fvdl if (phasemis) {
2746 1.96 fvdl #ifdef AHC_DEBUG
2747 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0) {
2748 1.96 fvdl printf(" PHASEMIS %s\n",
2749 1.96 fvdl ahc_lookup_phase_entry(bus_phase)
2750 1.96 fvdl ->phasemsg);
2751 1.96 fvdl }
2752 1.96 fvdl #endif
2753 1.96 fvdl ahc->msgin_index = 0;
2754 1.96 fvdl if (bus_phase == P_MESGOUT
2755 1.96 fvdl && (ahc->send_msg_perror == TRUE
2756 1.96 fvdl || (ahc->msgout_len != 0
2757 1.96 fvdl && ahc->msgout_index == 0))) {
2758 1.96 fvdl ahc->msg_type = MSG_TYPE_INITIATOR_MSGOUT;
2759 1.96 fvdl goto reswitch;
2760 1.96 fvdl }
2761 1.96 fvdl end_session = TRUE;
2762 1.96 fvdl break;
2763 1.96 fvdl }
2764 1.42 fvdl
2765 1.96 fvdl /* Pull the byte in without acking it */
2766 1.96 fvdl ahc->msgin_buf[ahc->msgin_index] = ahc_inb(ahc, SCSIBUSL);
2767 1.96 fvdl #ifdef AHC_DEBUG
2768 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0)
2769 1.96 fvdl printf(" byte 0x%x\n",
2770 1.96 fvdl ahc->msgin_buf[ahc->msgin_index]);
2771 1.96 fvdl #endif
2772 1.42 fvdl
2773 1.96 fvdl message_done = ahc_parse_msg(ahc, &devinfo);
2774 1.42 fvdl
2775 1.96 fvdl if (message_done) {
2776 1.96 fvdl /*
2777 1.96 fvdl * Clear our incoming message buffer in case there
2778 1.96 fvdl * is another message following this one.
2779 1.96 fvdl */
2780 1.96 fvdl ahc->msgin_index = 0;
2781 1.42 fvdl
2782 1.96 fvdl /*
2783 1.96 fvdl * If this message illicited a response,
2784 1.96 fvdl * assert ATN so the target takes us to the
2785 1.96 fvdl * message out phase.
2786 1.96 fvdl */
2787 1.96 fvdl if (ahc->msgout_len != 0) {
2788 1.42 fvdl #ifdef AHC_DEBUG
2789 1.96 fvdl if ((ahc_debug & AHC_SHOW_MESSAGES) != 0) {
2790 1.96 fvdl ahc_print_devinfo(ahc, &devinfo);
2791 1.96 fvdl printf("Asserting ATN for response\n");
2792 1.96 fvdl }
2793 1.42 fvdl #endif
2794 1.96 fvdl ahc_assert_atn(ahc);
2795 1.96 fvdl }
2796 1.96 fvdl } else
2797 1.96 fvdl ahc->msgin_index++;
2798 1.42 fvdl
2799 1.96 fvdl if (message_done == MSGLOOP_TERMINATED) {
2800 1.96 fvdl end_session = TRUE;
2801 1.96 fvdl } else {
2802 1.96 fvdl /* Ack the byte */
2803 1.96 fvdl ahc_outb(ahc, CLRSINT1, CLRREQINIT);
2804 1.96 fvdl ahc_inb(ahc, SCSIDATL);
2805 1.96 fvdl }
2806 1.42 fvdl break;
2807 1.42 fvdl }
2808 1.96 fvdl case MSG_TYPE_TARGET_MSGIN:
2809 1.96 fvdl {
2810 1.96 fvdl int msgdone;
2811 1.96 fvdl int msgout_request;
2812 1.42 fvdl
2813 1.96 fvdl if (ahc->msgout_len == 0)
2814 1.96 fvdl panic("Target MSGIN with no active message");
2815 1.42 fvdl
2816 1.96 fvdl /*
2817 1.96 fvdl * If we interrupted a mesgout session, the initiator
2818 1.96 fvdl * will not know this until our first REQ. So, we
2819 1.96 fvdl * only honor mesgout requests after we've sent our
2820 1.96 fvdl * first byte.
2821 1.96 fvdl */
2822 1.96 fvdl if ((ahc_inb(ahc, SCSISIGI) & ATNI) != 0
2823 1.96 fvdl && ahc->msgout_index > 0)
2824 1.96 fvdl msgout_request = TRUE;
2825 1.96 fvdl else
2826 1.96 fvdl msgout_request = FALSE;
2827 1.42 fvdl
2828 1.96 fvdl if (msgout_request) {
2829 1.42 fvdl
2830 1.96 fvdl /*
2831 1.96 fvdl * Change gears and see if
2832 1.96 fvdl * this messages is of interest to
2833 1.96 fvdl * us or should be passed back to
2834 1.96 fvdl * the sequencer.
2835 1.96 fvdl */
2836 1.96 fvdl ahc->msg_type = MSG_TYPE_TARGET_MSGOUT;
2837 1.96 fvdl ahc_outb(ahc, SCSISIGO, P_MESGOUT | BSYO);
2838 1.96 fvdl ahc->msgin_index = 0;
2839 1.96 fvdl /* Dummy read to REQ for first byte */
2840 1.96 fvdl ahc_inb(ahc, SCSIDATL);
2841 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
2842 1.96 fvdl ahc_inb(ahc, SXFRCTL0) | SPIOEN);
2843 1.96 fvdl break;
2844 1.96 fvdl }
2845 1.42 fvdl
2846 1.96 fvdl msgdone = ahc->msgout_index == ahc->msgout_len;
2847 1.96 fvdl if (msgdone) {
2848 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
2849 1.96 fvdl ahc_inb(ahc, SXFRCTL0) & ~SPIOEN);
2850 1.96 fvdl end_session = TRUE;
2851 1.96 fvdl break;
2852 1.96 fvdl }
2853 1.42 fvdl
2854 1.96 fvdl /*
2855 1.96 fvdl * Present the next byte on the bus.
2856 1.96 fvdl */
2857 1.96 fvdl ahc_outb(ahc, SXFRCTL0, ahc_inb(ahc, SXFRCTL0) | SPIOEN);
2858 1.96 fvdl ahc_outb(ahc, SCSIDATL, ahc->msgout_buf[ahc->msgout_index++]);
2859 1.96 fvdl break;
2860 1.96 fvdl }
2861 1.96 fvdl case MSG_TYPE_TARGET_MSGOUT:
2862 1.96 fvdl {
2863 1.96 fvdl int lastbyte;
2864 1.96 fvdl int msgdone;
2865 1.42 fvdl
2866 1.96 fvdl /*
2867 1.96 fvdl * The initiator signals that this is
2868 1.96 fvdl * the last byte by dropping ATN.
2869 1.96 fvdl */
2870 1.96 fvdl lastbyte = (ahc_inb(ahc, SCSISIGI) & ATNI) == 0;
2871 1.42 fvdl
2872 1.96 fvdl /*
2873 1.96 fvdl * Read the latched byte, but turn off SPIOEN first
2874 1.96 fvdl * so that we don't inadvertently cause a REQ for the
2875 1.96 fvdl * next byte.
2876 1.96 fvdl */
2877 1.96 fvdl ahc_outb(ahc, SXFRCTL0, ahc_inb(ahc, SXFRCTL0) & ~SPIOEN);
2878 1.96 fvdl ahc->msgin_buf[ahc->msgin_index] = ahc_inb(ahc, SCSIDATL);
2879 1.96 fvdl msgdone = ahc_parse_msg(ahc, &devinfo);
2880 1.96 fvdl if (msgdone == MSGLOOP_TERMINATED) {
2881 1.96 fvdl /*
2882 1.96 fvdl * The message is *really* done in that it caused
2883 1.96 fvdl * us to go to bus free. The sequencer has already
2884 1.96 fvdl * been reset at this point, so pull the ejection
2885 1.96 fvdl * handle.
2886 1.96 fvdl */
2887 1.96 fvdl return;
2888 1.96 fvdl }
2889 1.96 fvdl
2890 1.96 fvdl ahc->msgin_index++;
2891 1.42 fvdl
2892 1.96 fvdl /*
2893 1.96 fvdl * XXX Read spec about initiator dropping ATN too soon
2894 1.96 fvdl * and use msgdone to detect it.
2895 1.96 fvdl */
2896 1.96 fvdl if (msgdone == MSGLOOP_MSGCOMPLETE) {
2897 1.96 fvdl ahc->msgin_index = 0;
2898 1.42 fvdl
2899 1.96 fvdl /*
2900 1.96 fvdl * If this message illicited a response, transition
2901 1.96 fvdl * to the Message in phase and send it.
2902 1.96 fvdl */
2903 1.96 fvdl if (ahc->msgout_len != 0) {
2904 1.96 fvdl ahc_outb(ahc, SCSISIGO, P_MESGIN | BSYO);
2905 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
2906 1.96 fvdl ahc_inb(ahc, SXFRCTL0) | SPIOEN);
2907 1.96 fvdl ahc->msg_type = MSG_TYPE_TARGET_MSGIN;
2908 1.96 fvdl ahc->msgin_index = 0;
2909 1.96 fvdl break;
2910 1.96 fvdl }
2911 1.96 fvdl }
2912 1.42 fvdl
2913 1.96 fvdl if (lastbyte)
2914 1.96 fvdl end_session = TRUE;
2915 1.96 fvdl else {
2916 1.96 fvdl /* Ask for the next byte. */
2917 1.96 fvdl ahc_outb(ahc, SXFRCTL0,
2918 1.96 fvdl ahc_inb(ahc, SXFRCTL0) | SPIOEN);
2919 1.96 fvdl }
2920 1.42 fvdl
2921 1.96 fvdl break;
2922 1.96 fvdl }
2923 1.96 fvdl default:
2924 1.96 fvdl panic("Unknown REQINIT message type");
2925 1.96 fvdl }
2926 1.42 fvdl
2927 1.96 fvdl if (end_session) {
2928 1.96 fvdl ahc_clear_msg_state(ahc);
2929 1.96 fvdl ahc_outb(ahc, RETURN_1, EXIT_MSG_LOOP);
2930 1.96 fvdl } else
2931 1.96 fvdl ahc_outb(ahc, RETURN_1, CONT_MSG_LOOP);
2932 1.42 fvdl }
2933 1.42 fvdl
2934 1.96 fvdl /*
2935 1.96 fvdl * See if we sent a particular extended message to the target.
2936 1.96 fvdl * If "full" is true, return true only if the target saw the full
2937 1.96 fvdl * message. If "full" is false, return true if the target saw at
2938 1.96 fvdl * least the first byte of the message.
2939 1.96 fvdl */
2940 1.42 fvdl static int
2941 1.96 fvdl ahc_sent_msg(struct ahc_softc *ahc, ahc_msgtype type, u_int msgval, int full)
2942 1.42 fvdl {
2943 1.96 fvdl int found;
2944 1.96 fvdl u_int index;
2945 1.42 fvdl
2946 1.96 fvdl found = FALSE;
2947 1.96 fvdl index = 0;
2948 1.42 fvdl
2949 1.96 fvdl while (index < ahc->msgout_len) {
2950 1.96 fvdl if (ahc->msgout_buf[index] == MSG_EXTENDED) {
2951 1.96 fvdl u_int end_index;
2952 1.42 fvdl
2953 1.96 fvdl end_index = index + 1 + ahc->msgout_buf[index + 1];
2954 1.96 fvdl if (ahc->msgout_buf[index+2] == msgval
2955 1.96 fvdl && type == AHCMSG_EXT) {
2956 1.42 fvdl
2957 1.96 fvdl if (full) {
2958 1.96 fvdl if (ahc->msgout_index > end_index)
2959 1.96 fvdl found = TRUE;
2960 1.96 fvdl } else if (ahc->msgout_index > index)
2961 1.96 fvdl found = TRUE;
2962 1.96 fvdl }
2963 1.96 fvdl index = end_index;
2964 1.96 fvdl } else if (ahc->msgout_buf[index] >= MSG_SIMPLE_TASK
2965 1.96 fvdl && ahc->msgout_buf[index] <= MSG_IGN_WIDE_RESIDUE) {
2966 1.42 fvdl
2967 1.96 fvdl /* Skip tag type and tag id or residue param*/
2968 1.96 fvdl index += 2;
2969 1.96 fvdl } else {
2970 1.96 fvdl /* Single byte message */
2971 1.96 fvdl if (type == AHCMSG_1B
2972 1.96 fvdl && ahc->msgout_buf[index] == msgval
2973 1.96 fvdl && ahc->msgout_index > index)
2974 1.96 fvdl found = TRUE;
2975 1.96 fvdl index++;
2976 1.96 fvdl }
2977 1.42 fvdl
2978 1.96 fvdl if (found)
2979 1.96 fvdl break;
2980 1.42 fvdl }
2981 1.96 fvdl return (found);
2982 1.96 fvdl }
2983 1.42 fvdl
2984 1.96 fvdl /*
2985 1.96 fvdl * Wait for a complete incoming message, parse it, and respond accordingly.
2986 1.96 fvdl */
2987 1.96 fvdl static int
2988 1.96 fvdl ahc_parse_msg(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
2989 1.96 fvdl {
2990 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
2991 1.96 fvdl struct ahc_tmode_tstate *tstate;
2992 1.96 fvdl int reject;
2993 1.96 fvdl int done;
2994 1.96 fvdl int response;
2995 1.96 fvdl u_int targ_scsirate;
2996 1.42 fvdl
2997 1.96 fvdl done = MSGLOOP_IN_PROG;
2998 1.96 fvdl response = FALSE;
2999 1.96 fvdl reject = FALSE;
3000 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo->channel, devinfo->our_scsiid,
3001 1.96 fvdl devinfo->target, &tstate);
3002 1.96 fvdl targ_scsirate = tinfo->scsirate;
3003 1.42 fvdl
3004 1.42 fvdl /*
3005 1.96 fvdl * Parse as much of the message as is availible,
3006 1.96 fvdl * rejecting it if we don't support it. When
3007 1.96 fvdl * the entire message is availible and has been
3008 1.96 fvdl * handled, return MSGLOOP_MSGCOMPLETE, indicating
3009 1.96 fvdl * that we have parsed an entire message.
3010 1.42 fvdl *
3011 1.96 fvdl * In the case of extended messages, we accept the length
3012 1.96 fvdl * byte outright and perform more checking once we know the
3013 1.96 fvdl * extended message type.
3014 1.42 fvdl */
3015 1.96 fvdl switch (ahc->msgin_buf[0]) {
3016 1.96 fvdl case MSG_DISCONNECT:
3017 1.96 fvdl case MSG_SAVEDATAPOINTER:
3018 1.96 fvdl case MSG_CMDCOMPLETE:
3019 1.96 fvdl case MSG_RESTOREPOINTERS:
3020 1.96 fvdl case MSG_IGN_WIDE_RESIDUE:
3021 1.96 fvdl /*
3022 1.96 fvdl * End our message loop as these are messages
3023 1.96 fvdl * the sequencer handles on its own.
3024 1.96 fvdl */
3025 1.96 fvdl done = MSGLOOP_TERMINATED;
3026 1.96 fvdl break;
3027 1.96 fvdl case MSG_MESSAGE_REJECT:
3028 1.96 fvdl response = ahc_handle_msg_reject(ahc, devinfo);
3029 1.96 fvdl /* FALLTHROUGH */
3030 1.96 fvdl case MSG_NOOP:
3031 1.96 fvdl done = MSGLOOP_MSGCOMPLETE;
3032 1.96 fvdl break;
3033 1.96 fvdl case MSG_EXTENDED:
3034 1.96 fvdl {
3035 1.96 fvdl /* Wait for enough of the message to begin validation */
3036 1.96 fvdl if (ahc->msgin_index < 2)
3037 1.96 fvdl break;
3038 1.96 fvdl switch (ahc->msgin_buf[2]) {
3039 1.96 fvdl case MSG_EXT_SDTR:
3040 1.96 fvdl {
3041 1.96 fvdl struct ahc_syncrate *syncrate;
3042 1.96 fvdl u_int period;
3043 1.96 fvdl u_int ppr_options;
3044 1.96 fvdl u_int offset;
3045 1.96 fvdl u_int saved_offset;
3046 1.96 fvdl
3047 1.96 fvdl if (ahc->msgin_buf[1] != MSG_EXT_SDTR_LEN) {
3048 1.96 fvdl reject = TRUE;
3049 1.96 fvdl break;
3050 1.96 fvdl }
3051 1.42 fvdl
3052 1.96 fvdl /*
3053 1.96 fvdl * Wait until we have both args before validating
3054 1.96 fvdl * and acting on this message.
3055 1.96 fvdl *
3056 1.96 fvdl * Add one to MSG_EXT_SDTR_LEN to account for
3057 1.96 fvdl * the extended message preamble.
3058 1.96 fvdl */
3059 1.96 fvdl if (ahc->msgin_index < (MSG_EXT_SDTR_LEN + 1))
3060 1.96 fvdl break;
3061 1.42 fvdl
3062 1.96 fvdl period = ahc->msgin_buf[3];
3063 1.96 fvdl ppr_options = 0;
3064 1.96 fvdl saved_offset = offset = ahc->msgin_buf[4];
3065 1.96 fvdl syncrate = ahc_devlimited_syncrate(ahc, tinfo, &period,
3066 1.96 fvdl &ppr_options,
3067 1.96 fvdl devinfo->role);
3068 1.96 fvdl ahc_validate_offset(ahc, tinfo, syncrate, &offset,
3069 1.96 fvdl targ_scsirate & WIDEXFER,
3070 1.96 fvdl devinfo->role);
3071 1.96 fvdl if (bootverbose) {
3072 1.96 fvdl printf("(%s:%c:%d:%d): Received "
3073 1.96 fvdl "SDTR period %x, offset %x\n\t"
3074 1.96 fvdl "Filtered to period %x, offset %x\n",
3075 1.96 fvdl ahc_name(ahc), devinfo->channel,
3076 1.96 fvdl devinfo->target, devinfo->lun,
3077 1.96 fvdl ahc->msgin_buf[3], saved_offset,
3078 1.96 fvdl period, offset);
3079 1.96 fvdl }
3080 1.96 fvdl ahc_set_syncrate(ahc, devinfo,
3081 1.96 fvdl syncrate, period,
3082 1.96 fvdl offset, ppr_options,
3083 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3084 1.96 fvdl /*paused*/TRUE);
3085 1.42 fvdl
3086 1.96 fvdl /*
3087 1.96 fvdl * See if we initiated Sync Negotiation
3088 1.96 fvdl * and didn't have to fall down to async
3089 1.96 fvdl * transfers.
3090 1.96 fvdl */
3091 1.96 fvdl if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_SDTR, TRUE)) {
3092 1.96 fvdl /* We started it */
3093 1.96 fvdl if (saved_offset != offset) {
3094 1.96 fvdl /* Went too low - force async */
3095 1.96 fvdl reject = TRUE;
3096 1.96 fvdl }
3097 1.96 fvdl } else {
3098 1.96 fvdl /*
3099 1.96 fvdl * Send our own SDTR in reply
3100 1.96 fvdl */
3101 1.96 fvdl if (bootverbose
3102 1.96 fvdl && devinfo->role == ROLE_INITIATOR) {
3103 1.96 fvdl printf("(%s:%c:%d:%d): Target "
3104 1.96 fvdl "Initiated SDTR\n",
3105 1.96 fvdl ahc_name(ahc), devinfo->channel,
3106 1.96 fvdl devinfo->target, devinfo->lun);
3107 1.96 fvdl }
3108 1.96 fvdl ahc->msgout_index = 0;
3109 1.96 fvdl ahc->msgout_len = 0;
3110 1.96 fvdl ahc_construct_sdtr(ahc, devinfo,
3111 1.96 fvdl period, offset);
3112 1.96 fvdl ahc->msgout_index = 0;
3113 1.96 fvdl response = TRUE;
3114 1.96 fvdl }
3115 1.96 fvdl done = MSGLOOP_MSGCOMPLETE;
3116 1.96 fvdl break;
3117 1.96 fvdl }
3118 1.96 fvdl case MSG_EXT_WDTR:
3119 1.96 fvdl {
3120 1.96 fvdl u_int bus_width;
3121 1.96 fvdl u_int saved_width;
3122 1.96 fvdl u_int sending_reply;
3123 1.42 fvdl
3124 1.96 fvdl sending_reply = FALSE;
3125 1.96 fvdl if (ahc->msgin_buf[1] != MSG_EXT_WDTR_LEN) {
3126 1.96 fvdl reject = TRUE;
3127 1.96 fvdl break;
3128 1.96 fvdl }
3129 1.42 fvdl
3130 1.96 fvdl /*
3131 1.96 fvdl * Wait until we have our arg before validating
3132 1.96 fvdl * and acting on this message.
3133 1.96 fvdl *
3134 1.96 fvdl * Add one to MSG_EXT_WDTR_LEN to account for
3135 1.96 fvdl * the extended message preamble.
3136 1.96 fvdl */
3137 1.96 fvdl if (ahc->msgin_index < (MSG_EXT_WDTR_LEN + 1))
3138 1.96 fvdl break;
3139 1.42 fvdl
3140 1.96 fvdl bus_width = ahc->msgin_buf[3];
3141 1.96 fvdl saved_width = bus_width;
3142 1.96 fvdl ahc_validate_width(ahc, tinfo, &bus_width,
3143 1.96 fvdl devinfo->role);
3144 1.96 fvdl if (bootverbose) {
3145 1.96 fvdl printf("(%s:%c:%d:%d): Received WDTR "
3146 1.96 fvdl "%x filtered to %x\n",
3147 1.96 fvdl ahc_name(ahc), devinfo->channel,
3148 1.96 fvdl devinfo->target, devinfo->lun,
3149 1.96 fvdl saved_width, bus_width);
3150 1.96 fvdl }
3151 1.42 fvdl
3152 1.96 fvdl if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_WDTR, TRUE)) {
3153 1.96 fvdl /*
3154 1.96 fvdl * Don't send a WDTR back to the
3155 1.96 fvdl * target, since we asked first.
3156 1.96 fvdl * If the width went higher than our
3157 1.96 fvdl * request, reject it.
3158 1.96 fvdl */
3159 1.96 fvdl if (saved_width > bus_width) {
3160 1.96 fvdl reject = TRUE;
3161 1.96 fvdl printf("(%s:%c:%d:%d): requested %dBit "
3162 1.96 fvdl "transfers. Rejecting...\n",
3163 1.96 fvdl ahc_name(ahc), devinfo->channel,
3164 1.96 fvdl devinfo->target, devinfo->lun,
3165 1.96 fvdl 8 * (0x01 << bus_width));
3166 1.96 fvdl bus_width = 0;
3167 1.96 fvdl }
3168 1.96 fvdl } else {
3169 1.96 fvdl /*
3170 1.96 fvdl * Send our own WDTR in reply
3171 1.96 fvdl */
3172 1.96 fvdl if (bootverbose
3173 1.96 fvdl && devinfo->role == ROLE_INITIATOR) {
3174 1.96 fvdl printf("(%s:%c:%d:%d): Target "
3175 1.96 fvdl "Initiated WDTR\n",
3176 1.96 fvdl ahc_name(ahc), devinfo->channel,
3177 1.96 fvdl devinfo->target, devinfo->lun);
3178 1.96 fvdl }
3179 1.96 fvdl ahc->msgout_index = 0;
3180 1.96 fvdl ahc->msgout_len = 0;
3181 1.96 fvdl ahc_construct_wdtr(ahc, devinfo, bus_width);
3182 1.96 fvdl ahc->msgout_index = 0;
3183 1.96 fvdl response = TRUE;
3184 1.96 fvdl sending_reply = TRUE;
3185 1.96 fvdl }
3186 1.96 fvdl ahc_set_width(ahc, devinfo, bus_width,
3187 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3188 1.96 fvdl /*paused*/TRUE);
3189 1.96 fvdl /* After a wide message, we are async */
3190 1.96 fvdl ahc_set_syncrate(ahc, devinfo,
3191 1.96 fvdl /*syncrate*/NULL, /*period*/0,
3192 1.96 fvdl /*offset*/0, /*ppr_options*/0,
3193 1.96 fvdl AHC_TRANS_ACTIVE, /*paused*/TRUE);
3194 1.96 fvdl if (sending_reply == FALSE && reject == FALSE) {
3195 1.42 fvdl
3196 1.96 fvdl if (tinfo->goal.offset) {
3197 1.96 fvdl ahc->msgout_index = 0;
3198 1.96 fvdl ahc->msgout_len = 0;
3199 1.96 fvdl ahc_build_transfer_msg(ahc, devinfo);
3200 1.96 fvdl ahc->msgout_index = 0;
3201 1.96 fvdl response = TRUE;
3202 1.96 fvdl }
3203 1.96 fvdl }
3204 1.96 fvdl done = MSGLOOP_MSGCOMPLETE;
3205 1.96 fvdl break;
3206 1.96 fvdl }
3207 1.96 fvdl case MSG_EXT_PPR:
3208 1.96 fvdl {
3209 1.96 fvdl struct ahc_syncrate *syncrate;
3210 1.96 fvdl u_int period;
3211 1.96 fvdl u_int offset;
3212 1.96 fvdl u_int bus_width;
3213 1.96 fvdl u_int ppr_options;
3214 1.96 fvdl u_int saved_width;
3215 1.96 fvdl u_int saved_offset;
3216 1.96 fvdl u_int saved_ppr_options;
3217 1.42 fvdl
3218 1.96 fvdl if (ahc->msgin_buf[1] != MSG_EXT_PPR_LEN) {
3219 1.96 fvdl reject = TRUE;
3220 1.96 fvdl break;
3221 1.96 fvdl }
3222 1.42 fvdl
3223 1.96 fvdl /*
3224 1.96 fvdl * Wait until we have all args before validating
3225 1.96 fvdl * and acting on this message.
3226 1.96 fvdl *
3227 1.96 fvdl * Add one to MSG_EXT_PPR_LEN to account for
3228 1.96 fvdl * the extended message preamble.
3229 1.96 fvdl */
3230 1.96 fvdl if (ahc->msgin_index < (MSG_EXT_PPR_LEN + 1))
3231 1.96 fvdl break;
3232 1.42 fvdl
3233 1.96 fvdl period = ahc->msgin_buf[3];
3234 1.96 fvdl offset = ahc->msgin_buf[5];
3235 1.96 fvdl bus_width = ahc->msgin_buf[6];
3236 1.96 fvdl saved_width = bus_width;
3237 1.96 fvdl ppr_options = ahc->msgin_buf[7];
3238 1.96 fvdl /*
3239 1.96 fvdl * According to the spec, a DT only
3240 1.96 fvdl * period factor with no DT option
3241 1.96 fvdl * set implies async.
3242 1.96 fvdl */
3243 1.96 fvdl if ((ppr_options & MSG_EXT_PPR_DT_REQ) == 0
3244 1.96 fvdl && period == 9)
3245 1.96 fvdl offset = 0;
3246 1.96 fvdl saved_ppr_options = ppr_options;
3247 1.96 fvdl saved_offset = offset;
3248 1.42 fvdl
3249 1.96 fvdl /*
3250 1.96 fvdl * Mask out any options we don't support
3251 1.96 fvdl * on any controller. Transfer options are
3252 1.96 fvdl * only available if we are negotiating wide.
3253 1.96 fvdl */
3254 1.96 fvdl ppr_options &= MSG_EXT_PPR_DT_REQ;
3255 1.96 fvdl if (bus_width == 0)
3256 1.96 fvdl ppr_options = 0;
3257 1.96 fvdl
3258 1.96 fvdl ahc_validate_width(ahc, tinfo, &bus_width,
3259 1.96 fvdl devinfo->role);
3260 1.96 fvdl syncrate = ahc_devlimited_syncrate(ahc, tinfo, &period,
3261 1.96 fvdl &ppr_options,
3262 1.96 fvdl devinfo->role);
3263 1.96 fvdl ahc_validate_offset(ahc, tinfo, syncrate,
3264 1.96 fvdl &offset, bus_width,
3265 1.96 fvdl devinfo->role);
3266 1.42 fvdl
3267 1.96 fvdl if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_PPR, TRUE)) {
3268 1.96 fvdl /*
3269 1.96 fvdl * If we are unable to do any of the
3270 1.96 fvdl * requested options (we went too low),
3271 1.96 fvdl * then we'll have to reject the message.
3272 1.96 fvdl */
3273 1.96 fvdl if (saved_width > bus_width
3274 1.96 fvdl || saved_offset != offset
3275 1.96 fvdl || saved_ppr_options != ppr_options) {
3276 1.96 fvdl reject = TRUE;
3277 1.96 fvdl period = 0;
3278 1.96 fvdl offset = 0;
3279 1.96 fvdl bus_width = 0;
3280 1.96 fvdl ppr_options = 0;
3281 1.96 fvdl syncrate = NULL;
3282 1.96 fvdl }
3283 1.96 fvdl } else {
3284 1.96 fvdl if (devinfo->role != ROLE_TARGET)
3285 1.96 fvdl printf("(%s:%c:%d:%d): Target "
3286 1.96 fvdl "Initiated PPR\n",
3287 1.96 fvdl ahc_name(ahc), devinfo->channel,
3288 1.96 fvdl devinfo->target, devinfo->lun);
3289 1.96 fvdl else
3290 1.96 fvdl printf("(%s:%c:%d:%d): Initiator "
3291 1.96 fvdl "Initiated PPR\n",
3292 1.96 fvdl ahc_name(ahc), devinfo->channel,
3293 1.96 fvdl devinfo->target, devinfo->lun);
3294 1.96 fvdl ahc->msgout_index = 0;
3295 1.96 fvdl ahc->msgout_len = 0;
3296 1.96 fvdl ahc_construct_ppr(ahc, devinfo, period, offset,
3297 1.96 fvdl bus_width, ppr_options);
3298 1.96 fvdl ahc->msgout_index = 0;
3299 1.96 fvdl response = TRUE;
3300 1.96 fvdl }
3301 1.96 fvdl if (bootverbose) {
3302 1.96 fvdl printf("(%s:%c:%d:%d): Received PPR width %x, "
3303 1.96 fvdl "period %x, offset %x,options %x\n"
3304 1.96 fvdl "\tFiltered to width %x, period %x, "
3305 1.96 fvdl "offset %x, options %x\n",
3306 1.96 fvdl ahc_name(ahc), devinfo->channel,
3307 1.96 fvdl devinfo->target, devinfo->lun,
3308 1.96 fvdl saved_width, ahc->msgin_buf[3],
3309 1.96 fvdl saved_offset, saved_ppr_options,
3310 1.96 fvdl bus_width, period, offset, ppr_options);
3311 1.96 fvdl }
3312 1.96 fvdl ahc_set_width(ahc, devinfo, bus_width,
3313 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3314 1.96 fvdl /*paused*/TRUE);
3315 1.96 fvdl ahc_set_syncrate(ahc, devinfo,
3316 1.96 fvdl syncrate, period,
3317 1.96 fvdl offset, ppr_options,
3318 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3319 1.96 fvdl /*paused*/TRUE);
3320 1.96 fvdl done = MSGLOOP_MSGCOMPLETE;
3321 1.96 fvdl break;
3322 1.96 fvdl }
3323 1.96 fvdl default:
3324 1.96 fvdl /* Unknown extended message. Reject it. */
3325 1.96 fvdl reject = TRUE;
3326 1.96 fvdl break;
3327 1.96 fvdl }
3328 1.96 fvdl break;
3329 1.96 fvdl }
3330 1.96 fvdl #ifdef AHC_TARGET_MODE
3331 1.96 fvdl case MSG_BUS_DEV_RESET:
3332 1.96 fvdl ahc_handle_devreset(ahc, devinfo,
3333 1.96 fvdl CAM_BDR_SENT,
3334 1.96 fvdl "Bus Device Reset Received",
3335 1.96 fvdl /*verbose_level*/0);
3336 1.96 fvdl ahc_restart(ahc);
3337 1.96 fvdl done = MSGLOOP_TERMINATED;
3338 1.96 fvdl break;
3339 1.96 fvdl case MSG_ABORT_TAG:
3340 1.96 fvdl case MSG_ABORT:
3341 1.96 fvdl case MSG_CLEAR_QUEUE:
3342 1.42 fvdl {
3343 1.96 fvdl int tag;
3344 1.42 fvdl
3345 1.96 fvdl /* Target mode messages */
3346 1.96 fvdl if (devinfo->role != ROLE_TARGET) {
3347 1.96 fvdl reject = TRUE;
3348 1.96 fvdl break;
3349 1.42 fvdl }
3350 1.96 fvdl tag = SCB_LIST_NULL;
3351 1.96 fvdl if (ahc->msgin_buf[0] == MSG_ABORT_TAG)
3352 1.96 fvdl tag = ahc_inb(ahc, INITIATOR_TAG);
3353 1.96 fvdl ahc_abort_scbs(ahc, devinfo->target, devinfo->channel,
3354 1.96 fvdl devinfo->lun, tag, ROLE_TARGET,
3355 1.96 fvdl CAM_REQ_ABORTED);
3356 1.42 fvdl
3357 1.96 fvdl tstate = ahc->enabled_targets[devinfo->our_scsiid];
3358 1.96 fvdl if (tstate != NULL) {
3359 1.96 fvdl struct ahc_tmode_lstate* lstate;
3360 1.42 fvdl
3361 1.96 fvdl lstate = tstate->enabled_luns[devinfo->lun];
3362 1.96 fvdl if (lstate != NULL) {
3363 1.96 fvdl ahc_queue_lstate_event(ahc, lstate,
3364 1.96 fvdl devinfo->our_scsiid,
3365 1.96 fvdl ahc->msgin_buf[0],
3366 1.96 fvdl /*arg*/tag);
3367 1.96 fvdl ahc_send_lstate_events(ahc, lstate);
3368 1.96 fvdl }
3369 1.96 fvdl }
3370 1.96 fvdl ahc_restart(ahc);
3371 1.96 fvdl done = MSGLOOP_TERMINATED;
3372 1.42 fvdl break;
3373 1.96 fvdl }
3374 1.96 fvdl #endif
3375 1.96 fvdl case MSG_TERM_IO_PROC:
3376 1.96 fvdl default:
3377 1.96 fvdl reject = TRUE;
3378 1.42 fvdl break;
3379 1.42 fvdl }
3380 1.42 fvdl
3381 1.96 fvdl if (reject) {
3382 1.96 fvdl /*
3383 1.96 fvdl * Setup to reject the message.
3384 1.96 fvdl */
3385 1.96 fvdl ahc->msgout_index = 0;
3386 1.96 fvdl ahc->msgout_len = 1;
3387 1.96 fvdl ahc->msgout_buf[0] = MSG_MESSAGE_REJECT;
3388 1.96 fvdl done = MSGLOOP_MSGCOMPLETE;
3389 1.96 fvdl response = TRUE;
3390 1.96 fvdl }
3391 1.42 fvdl
3392 1.96 fvdl if (done != MSGLOOP_IN_PROG && !response)
3393 1.96 fvdl /* Clear the outgoing message buffer */
3394 1.96 fvdl ahc->msgout_len = 0;
3395 1.42 fvdl
3396 1.96 fvdl return (done);
3397 1.42 fvdl }
3398 1.42 fvdl
3399 1.42 fvdl /*
3400 1.96 fvdl * Process a message reject message.
3401 1.42 fvdl */
3402 1.96 fvdl static int
3403 1.96 fvdl ahc_handle_msg_reject(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
3404 1.42 fvdl {
3405 1.96 fvdl /*
3406 1.96 fvdl * What we care about here is if we had an
3407 1.96 fvdl * outstanding SDTR or WDTR message for this
3408 1.96 fvdl * target. If we did, this is a signal that
3409 1.96 fvdl * the target is refusing negotiation.
3410 1.96 fvdl */
3411 1.96 fvdl struct scb *scb;
3412 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
3413 1.96 fvdl struct ahc_tmode_tstate *tstate;
3414 1.96 fvdl u_int scb_index;
3415 1.96 fvdl u_int last_msg;
3416 1.96 fvdl int response = 0;
3417 1.42 fvdl
3418 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
3419 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
3420 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, devinfo->channel,
3421 1.96 fvdl devinfo->our_scsiid,
3422 1.96 fvdl devinfo->target, &tstate);
3423 1.96 fvdl /* Might be necessary */
3424 1.96 fvdl last_msg = ahc_inb(ahc, LAST_MSG);
3425 1.42 fvdl
3426 1.96 fvdl if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_PPR, /*full*/FALSE)) {
3427 1.96 fvdl /*
3428 1.96 fvdl * Target does not support the PPR message.
3429 1.96 fvdl * Attempt to negotiate SPI-2 style.
3430 1.96 fvdl */
3431 1.96 fvdl if (bootverbose) {
3432 1.96 fvdl printf("(%s:%c:%d:%d): PPR Rejected. "
3433 1.96 fvdl "Trying WDTR/SDTR\n",
3434 1.96 fvdl ahc_name(ahc), devinfo->channel,
3435 1.96 fvdl devinfo->target, devinfo->lun);
3436 1.96 fvdl }
3437 1.96 fvdl tinfo->goal.ppr_options = 0;
3438 1.96 fvdl tinfo->curr.transport_version = 2;
3439 1.96 fvdl tinfo->goal.transport_version = 2;
3440 1.96 fvdl ahc->msgout_index = 0;
3441 1.96 fvdl ahc->msgout_len = 0;
3442 1.96 fvdl ahc_build_transfer_msg(ahc, devinfo);
3443 1.96 fvdl ahc->msgout_index = 0;
3444 1.96 fvdl response = 1;
3445 1.96 fvdl } else if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_WDTR, /*full*/FALSE)) {
3446 1.42 fvdl
3447 1.96 fvdl /* note 8bit xfers */
3448 1.96 fvdl if (bootverbose)
3449 1.96 fvdl printf("(%s:%c:%d:%d): refuses WIDE negotiation. Using "
3450 1.96 fvdl "8bit transfers\n", ahc_name(ahc),
3451 1.96 fvdl devinfo->channel, devinfo->target, devinfo->lun);
3452 1.96 fvdl ahc_set_width(ahc, devinfo, MSG_EXT_WDTR_BUS_8_BIT,
3453 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3454 1.96 fvdl /*paused*/TRUE);
3455 1.96 fvdl /*
3456 1.96 fvdl * No need to clear the sync rate. If the target
3457 1.96 fvdl * did not accept the command, our syncrate is
3458 1.96 fvdl * unaffected. If the target started the negotiation,
3459 1.96 fvdl * but rejected our response, we already cleared the
3460 1.96 fvdl * sync rate before sending our WDTR.
3461 1.96 fvdl */
3462 1.96 fvdl if (tinfo->goal.offset != tinfo->curr.offset) {
3463 1.42 fvdl
3464 1.96 fvdl /* Start the sync negotiation */
3465 1.96 fvdl ahc->msgout_index = 0;
3466 1.96 fvdl ahc->msgout_len = 0;
3467 1.96 fvdl ahc_build_transfer_msg(ahc, devinfo);
3468 1.96 fvdl ahc->msgout_index = 0;
3469 1.96 fvdl response = 1;
3470 1.96 fvdl }
3471 1.96 fvdl } else if (ahc_sent_msg(ahc, AHCMSG_EXT, MSG_EXT_SDTR, /*full*/FALSE)) {
3472 1.96 fvdl /* note asynch xfers and clear flag */
3473 1.96 fvdl ahc_set_syncrate(ahc, devinfo, /*syncrate*/NULL, /*period*/0,
3474 1.96 fvdl /*offset*/0, /*ppr_options*/0,
3475 1.96 fvdl AHC_TRANS_ACTIVE|AHC_TRANS_GOAL,
3476 1.96 fvdl /*paused*/TRUE);
3477 1.96 fvdl if (bootverbose)
3478 1.96 fvdl printf("(%s:%c:%d:%d): refuses synchronous negotiation."
3479 1.96 fvdl " Using asynchronous transfers\n",
3480 1.96 fvdl ahc_name(ahc), devinfo->channel,
3481 1.96 fvdl devinfo->target, devinfo->lun);
3482 1.96 fvdl } else if ((scb->hscb->control & MSG_SIMPLE_TASK) != 0) {
3483 1.96 fvdl int tag_type;
3484 1.96 fvdl int mask;
3485 1.96 fvdl
3486 1.96 fvdl tag_type = (scb->hscb->control & MSG_SIMPLE_TASK);
3487 1.96 fvdl
3488 1.96 fvdl if (tag_type == MSG_SIMPLE_TASK) {
3489 1.96 fvdl if (bootverbose)
3490 1.96 fvdl printf("(%s:%c:%d:%d): refuses tagged commands."
3491 1.96 fvdl " Performing non-tagged I/O\n",
3492 1.96 fvdl ahc_name(ahc), devinfo->channel,
3493 1.96 fvdl devinfo->target, devinfo->lun);
3494 1.96 fvdl ahc_set_tags(ahc, devinfo, AHC_QUEUE_NONE);
3495 1.96 fvdl mask = ~0x23;
3496 1.96 fvdl } else {
3497 1.96 fvdl if (bootverbose)
3498 1.96 fvdl printf("(%s:%c:%d:%d): refuses %s tagged "
3499 1.96 fvdl "commands. Performing simple queue "
3500 1.96 fvdl "tagged I/O only\n",
3501 1.96 fvdl ahc_name(ahc), devinfo->channel,
3502 1.96 fvdl devinfo->target, devinfo->lun,
3503 1.96 fvdl tag_type == MSG_ORDERED_TASK
3504 1.96 fvdl ? "ordered" : "head of queue");
3505 1.96 fvdl ahc_set_tags(ahc, devinfo, AHC_QUEUE_BASIC);
3506 1.96 fvdl mask = ~0x03;
3507 1.96 fvdl }
3508 1.42 fvdl
3509 1.96 fvdl /*
3510 1.96 fvdl * Resend the identify for this CCB as the target
3511 1.96 fvdl * may believe that the selection is invalid otherwise.
3512 1.96 fvdl */
3513 1.96 fvdl ahc_outb(ahc, SCB_CONTROL,
3514 1.96 fvdl ahc_inb(ahc, SCB_CONTROL) & mask);
3515 1.96 fvdl scb->hscb->control &= mask;
3516 1.96 fvdl ahc_set_transaction_tag(scb, /*enabled*/FALSE,
3517 1.96 fvdl /*type*/MSG_SIMPLE_TASK);
3518 1.96 fvdl ahc_outb(ahc, MSG_OUT, MSG_IDENTIFYFLAG);
3519 1.96 fvdl ahc_assert_atn(ahc);
3520 1.42 fvdl
3521 1.96 fvdl /*
3522 1.96 fvdl * This transaction is now at the head of
3523 1.96 fvdl * the untagged queue for this target.
3524 1.96 fvdl */
3525 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) == 0) {
3526 1.96 fvdl struct scb_tailq *untagged_q;
3527 1.42 fvdl
3528 1.96 fvdl untagged_q =
3529 1.96 fvdl &(ahc->untagged_queues[devinfo->target_offset]);
3530 1.96 fvdl TAILQ_INSERT_HEAD(untagged_q, scb, links.tqe);
3531 1.96 fvdl scb->flags |= SCB_UNTAGGEDQ;
3532 1.42 fvdl }
3533 1.96 fvdl ahc_busy_tcl(ahc, BUILD_TCL(scb->hscb->scsiid, devinfo->lun),
3534 1.96 fvdl scb->hscb->tag);
3535 1.96 fvdl
3536 1.96 fvdl /*
3537 1.96 fvdl * Requeue all tagged commands for this target
3538 1.96 fvdl * currently in our posession so they can be
3539 1.96 fvdl * converted to untagged commands.
3540 1.96 fvdl */
3541 1.96 fvdl ahc_search_qinfifo(ahc, SCB_GET_TARGET(ahc, scb),
3542 1.96 fvdl SCB_GET_CHANNEL(ahc, scb),
3543 1.96 fvdl SCB_GET_LUN(scb), /*tag*/SCB_LIST_NULL,
3544 1.96 fvdl ROLE_INITIATOR, CAM_REQUEUE_REQ,
3545 1.96 fvdl SEARCH_COMPLETE);
3546 1.96 fvdl } else {
3547 1.96 fvdl /*
3548 1.96 fvdl * Otherwise, we ignore it.
3549 1.96 fvdl */
3550 1.96 fvdl if (bootverbose)
3551 1.96 fvdl printf("%s:%c:%d: Message reject for %x -- ignored\n",
3552 1.96 fvdl ahc_name(ahc), devinfo->channel, devinfo->target,
3553 1.96 fvdl last_msg);
3554 1.42 fvdl }
3555 1.96 fvdl return (response);
3556 1.42 fvdl }
3557 1.42 fvdl
3558 1.96 fvdl /*
3559 1.96 fvdl * Process an ingnore wide residue message.
3560 1.96 fvdl */
3561 1.42 fvdl static void
3562 1.96 fvdl ahc_handle_ign_wide_residue(struct ahc_softc *ahc, struct ahc_devinfo *devinfo)
3563 1.42 fvdl {
3564 1.96 fvdl u_int scb_index;
3565 1.96 fvdl struct scb *scb;
3566 1.42 fvdl
3567 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
3568 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
3569 1.96 fvdl /*
3570 1.96 fvdl * XXX Actually check data direction in the sequencer?
3571 1.96 fvdl * Perhaps add datadir to some spare bits in the hscb?
3572 1.96 fvdl */
3573 1.96 fvdl if ((ahc_inb(ahc, SEQ_FLAGS) & DPHASE) == 0
3574 1.96 fvdl || ahc_get_transfer_dir(scb) != CAM_DIR_IN) {
3575 1.96 fvdl /*
3576 1.96 fvdl * Ignore the message if we haven't
3577 1.96 fvdl * seen an appropriate data phase yet.
3578 1.96 fvdl */
3579 1.42 fvdl } else {
3580 1.96 fvdl /*
3581 1.96 fvdl * If the residual occurred on the last
3582 1.96 fvdl * transfer and the transfer request was
3583 1.96 fvdl * expected to end on an odd count, do
3584 1.96 fvdl * nothing. Otherwise, subtract a byte
3585 1.96 fvdl * and update the residual count accordingly.
3586 1.96 fvdl */
3587 1.96 fvdl uint32_t sgptr;
3588 1.42 fvdl
3589 1.96 fvdl sgptr = ahc_inb(ahc, SCB_RESIDUAL_SGPTR);
3590 1.96 fvdl if ((sgptr & SG_LIST_NULL) != 0
3591 1.96 fvdl && ahc_inb(ahc, DATA_COUNT_ODD) == 1) {
3592 1.96 fvdl /*
3593 1.96 fvdl * If the residual occurred on the last
3594 1.96 fvdl * transfer and the transfer request was
3595 1.96 fvdl * expected to end on an odd count, do
3596 1.96 fvdl * nothing.
3597 1.96 fvdl */
3598 1.42 fvdl } else {
3599 1.96 fvdl struct ahc_dma_seg *sg;
3600 1.96 fvdl uint32_t data_cnt;
3601 1.96 fvdl uint32_t data_addr;
3602 1.96 fvdl uint32_t sglen;
3603 1.96 fvdl
3604 1.96 fvdl /* Pull in the rest of the sgptr */
3605 1.96 fvdl sgptr |= (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 3) << 24)
3606 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 2) << 16)
3607 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 1) << 8);
3608 1.96 fvdl sgptr &= SG_PTR_MASK;
3609 1.96 fvdl data_cnt = (ahc_inb(ahc, SCB_RESIDUAL_DATACNT+3) << 24)
3610 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_DATACNT+2) << 16)
3611 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_DATACNT+1) << 8)
3612 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_DATACNT));
3613 1.42 fvdl
3614 1.96 fvdl data_addr = (ahc_inb(ahc, SHADDR + 3) << 24)
3615 1.96 fvdl | (ahc_inb(ahc, SHADDR + 2) << 16)
3616 1.96 fvdl | (ahc_inb(ahc, SHADDR + 1) << 8)
3617 1.96 fvdl | (ahc_inb(ahc, SHADDR));
3618 1.42 fvdl
3619 1.96 fvdl data_cnt += 1;
3620 1.96 fvdl data_addr -= 1;
3621 1.42 fvdl
3622 1.96 fvdl sg = ahc_sg_bus_to_virt(scb, sgptr);
3623 1.42 fvdl /*
3624 1.96 fvdl * The residual sg ptr points to the next S/G
3625 1.96 fvdl * to load so we must go back one.
3626 1.42 fvdl */
3627 1.96 fvdl sg--;
3628 1.96 fvdl sglen = ahc_le32toh(sg->len) & AHC_SG_LEN_MASK;
3629 1.96 fvdl if (sg != scb->sg_list
3630 1.96 fvdl && sglen < (data_cnt & AHC_SG_LEN_MASK)) {
3631 1.96 fvdl
3632 1.96 fvdl sg--;
3633 1.96 fvdl sglen = ahc_le32toh(sg->len);
3634 1.96 fvdl /*
3635 1.96 fvdl * Preserve High Address and SG_LIST bits
3636 1.96 fvdl * while setting the count to 1.
3637 1.96 fvdl */
3638 1.96 fvdl data_cnt = 1 | (sglen & (~AHC_SG_LEN_MASK));
3639 1.96 fvdl data_addr = ahc_le32toh(sg->addr)
3640 1.96 fvdl + (sglen & AHC_SG_LEN_MASK) - 1;
3641 1.96 fvdl
3642 1.96 fvdl /*
3643 1.96 fvdl * Increment sg so it points to the
3644 1.96 fvdl * "next" sg.
3645 1.96 fvdl */
3646 1.96 fvdl sg++;
3647 1.96 fvdl sgptr = ahc_sg_virt_to_bus(scb, sg);
3648 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_SGPTR + 3,
3649 1.96 fvdl sgptr >> 24);
3650 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_SGPTR + 2,
3651 1.96 fvdl sgptr >> 16);
3652 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_SGPTR + 1,
3653 1.96 fvdl sgptr >> 8);
3654 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_SGPTR, sgptr);
3655 1.42 fvdl }
3656 1.42 fvdl
3657 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_DATACNT + 3, data_cnt >> 24);
3658 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_DATACNT + 2, data_cnt >> 16);
3659 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_DATACNT + 1, data_cnt >> 8);
3660 1.96 fvdl ahc_outb(ahc, SCB_RESIDUAL_DATACNT, data_cnt);
3661 1.42 fvdl }
3662 1.96 fvdl }
3663 1.96 fvdl }
3664 1.42 fvdl
3665 1.42 fvdl
3666 1.96 fvdl /*
3667 1.96 fvdl * Reinitialize the data pointers for the active transfer
3668 1.96 fvdl * based on its current residual.
3669 1.96 fvdl */
3670 1.96 fvdl static void
3671 1.96 fvdl ahc_reinitialize_dataptrs(struct ahc_softc *ahc)
3672 1.96 fvdl {
3673 1.96 fvdl struct scb *scb;
3674 1.96 fvdl struct ahc_dma_seg *sg;
3675 1.96 fvdl u_int scb_index;
3676 1.96 fvdl uint32_t sgptr;
3677 1.96 fvdl uint32_t resid;
3678 1.96 fvdl uint32_t dataptr;
3679 1.42 fvdl
3680 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
3681 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
3682 1.96 fvdl sgptr = (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 3) << 24)
3683 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 2) << 16)
3684 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_SGPTR + 1) << 8)
3685 1.96 fvdl | ahc_inb(ahc, SCB_RESIDUAL_SGPTR);
3686 1.96 fvdl
3687 1.96 fvdl sgptr &= SG_PTR_MASK;
3688 1.96 fvdl sg = ahc_sg_bus_to_virt(scb, sgptr);
3689 1.96 fvdl
3690 1.96 fvdl /* The residual sg_ptr always points to the next sg */
3691 1.96 fvdl sg--;
3692 1.96 fvdl
3693 1.96 fvdl resid = (ahc_inb(ahc, SCB_RESIDUAL_DATACNT + 2) << 16)
3694 1.96 fvdl | (ahc_inb(ahc, SCB_RESIDUAL_DATACNT + 1) << 8)
3695 1.96 fvdl | ahc_inb(ahc, SCB_RESIDUAL_DATACNT);
3696 1.96 fvdl
3697 1.96 fvdl dataptr = ahc_le32toh(sg->addr)
3698 1.96 fvdl + (ahc_le32toh(sg->len) & AHC_SG_LEN_MASK)
3699 1.96 fvdl - resid;
3700 1.96 fvdl if ((ahc->flags & AHC_39BIT_ADDRESSING) != 0) {
3701 1.96 fvdl u_int dscommand1;
3702 1.96 fvdl
3703 1.96 fvdl dscommand1 = ahc_inb(ahc, DSCOMMAND1);
3704 1.96 fvdl ahc_outb(ahc, DSCOMMAND1, dscommand1 | HADDLDSEL0);
3705 1.96 fvdl ahc_outb(ahc, HADDR,
3706 1.96 fvdl (ahc_le32toh(sg->len) >> 24) & SG_HIGH_ADDR_BITS);
3707 1.96 fvdl ahc_outb(ahc, DSCOMMAND1, dscommand1);
3708 1.96 fvdl }
3709 1.96 fvdl ahc_outb(ahc, HADDR + 3, dataptr >> 24);
3710 1.96 fvdl ahc_outb(ahc, HADDR + 2, dataptr >> 16);
3711 1.96 fvdl ahc_outb(ahc, HADDR + 1, dataptr >> 8);
3712 1.96 fvdl ahc_outb(ahc, HADDR, dataptr);
3713 1.96 fvdl ahc_outb(ahc, HCNT + 2, resid >> 16);
3714 1.96 fvdl ahc_outb(ahc, HCNT + 1, resid >> 8);
3715 1.96 fvdl ahc_outb(ahc, HCNT, resid);
3716 1.96 fvdl if ((ahc->features & AHC_ULTRA2) == 0) {
3717 1.96 fvdl ahc_outb(ahc, STCNT + 2, resid >> 16);
3718 1.96 fvdl ahc_outb(ahc, STCNT + 1, resid >> 8);
3719 1.96 fvdl ahc_outb(ahc, STCNT, resid);
3720 1.42 fvdl }
3721 1.42 fvdl }
3722 1.42 fvdl
3723 1.96 fvdl /*
3724 1.96 fvdl * Handle the effects of issuing a bus device reset message.
3725 1.96 fvdl */
3726 1.42 fvdl static void
3727 1.96 fvdl ahc_handle_devreset(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
3728 1.96 fvdl cam_status status, char *message, int verbose_level)
3729 1.42 fvdl {
3730 1.96 fvdl #ifdef AHC_TARGET_MODE
3731 1.96 fvdl struct ahc_tmode_tstate* tstate;
3732 1.96 fvdl u_int lun;
3733 1.96 fvdl #endif
3734 1.96 fvdl int found;
3735 1.42 fvdl
3736 1.96 fvdl found = ahc_abort_scbs(ahc, devinfo->target, devinfo->channel,
3737 1.96 fvdl CAM_LUN_WILDCARD, SCB_LIST_NULL, devinfo->role,
3738 1.96 fvdl status);
3739 1.42 fvdl
3740 1.96 fvdl #ifdef AHC_TARGET_MODE
3741 1.96 fvdl /*
3742 1.96 fvdl * Send an immediate notify ccb to all target mord peripheral
3743 1.96 fvdl * drivers affected by this action.
3744 1.96 fvdl */
3745 1.96 fvdl tstate = ahc->enabled_targets[devinfo->our_scsiid];
3746 1.96 fvdl if (tstate != NULL) {
3747 1.96 fvdl for (lun = 0; lun < AHC_NUM_LUNS; lun++) {
3748 1.96 fvdl struct ahc_tmode_lstate* lstate;
3749 1.42 fvdl
3750 1.96 fvdl lstate = tstate->enabled_luns[lun];
3751 1.96 fvdl if (lstate == NULL)
3752 1.96 fvdl continue;
3753 1.42 fvdl
3754 1.96 fvdl ahc_queue_lstate_event(ahc, lstate, devinfo->our_scsiid,
3755 1.96 fvdl MSG_BUS_DEV_RESET, /*arg*/0);
3756 1.96 fvdl ahc_send_lstate_events(ahc, lstate);
3757 1.96 fvdl }
3758 1.42 fvdl }
3759 1.96 fvdl #endif
3760 1.42 fvdl
3761 1.96 fvdl /*
3762 1.96 fvdl * Go back to async/narrow transfers and renegotiate.
3763 1.96 fvdl */
3764 1.96 fvdl ahc_set_width(ahc, devinfo, MSG_EXT_WDTR_BUS_8_BIT,
3765 1.96 fvdl AHC_TRANS_CUR, /*paused*/TRUE);
3766 1.96 fvdl ahc_set_syncrate(ahc, devinfo, /*syncrate*/NULL,
3767 1.96 fvdl /*period*/0, /*offset*/0, /*ppr_options*/0,
3768 1.96 fvdl AHC_TRANS_CUR, /*paused*/TRUE);
3769 1.96 fvdl
3770 1.96 fvdl ahc_send_async(ahc, devinfo->channel, devinfo->target,
3771 1.96 fvdl CAM_LUN_WILDCARD, AC_SENT_BDR, NULL);
3772 1.42 fvdl
3773 1.96 fvdl if (message != NULL
3774 1.96 fvdl && (verbose_level <= bootverbose))
3775 1.96 fvdl printf("%s: %s on %c:%d. %d SCBs aborted\n", ahc_name(ahc),
3776 1.96 fvdl message, devinfo->channel, devinfo->target, found);
3777 1.42 fvdl }
3778 1.42 fvdl
3779 1.96 fvdl #ifdef AHC_TARGET_MODE
3780 1.42 fvdl static void
3781 1.96 fvdl ahc_setup_target_msgin(struct ahc_softc *ahc, struct ahc_devinfo *devinfo,
3782 1.96 fvdl struct scb *scb)
3783 1.42 fvdl {
3784 1.42 fvdl
3785 1.96 fvdl /*
3786 1.96 fvdl * To facilitate adding multiple messages together,
3787 1.96 fvdl * each routine should increment the index and len
3788 1.96 fvdl * variables instead of setting them explicitly.
3789 1.96 fvdl */
3790 1.96 fvdl ahc->msgout_index = 0;
3791 1.96 fvdl ahc->msgout_len = 0;
3792 1.96 fvdl
3793 1.96 fvdl if (scb != NULL && (scb->flags & SCB_AUTO_NEGOTIATE) != 0)
3794 1.96 fvdl ahc_build_transfer_msg(ahc, devinfo);
3795 1.96 fvdl else
3796 1.96 fvdl panic("ahc_intr: AWAITING target message with no message");
3797 1.96 fvdl
3798 1.96 fvdl ahc->msgout_index = 0;
3799 1.96 fvdl ahc->msg_type = MSG_TYPE_TARGET_MSGIN;
3800 1.96 fvdl }
3801 1.96 fvdl #endif
3802 1.96 fvdl
3803 1.96 fvdl int
3804 1.96 fvdl ahc_softc_init(struct ahc_softc *ahc)
3805 1.96 fvdl {
3806 1.42 fvdl
3807 1.96 fvdl /* The IRQMS bit is only valid on VL and EISA chips */
3808 1.96 fvdl if ((ahc->chip & AHC_PCI) == 0)
3809 1.96 fvdl ahc->unpause = ahc_inb(ahc, HCNTRL) & IRQMS;
3810 1.96 fvdl else
3811 1.96 fvdl ahc->unpause = 0;
3812 1.96 fvdl ahc->pause = ahc->unpause | PAUSE;
3813 1.96 fvdl /* XXX The shared scb data stuff should be deprecated */
3814 1.96 fvdl if (ahc->scb_data == NULL) {
3815 1.96 fvdl ahc->scb_data = malloc(sizeof(*ahc->scb_data),
3816 1.96 fvdl M_DEVBUF, M_NOWAIT);
3817 1.96 fvdl if (ahc->scb_data == NULL)
3818 1.96 fvdl return (ENOMEM);
3819 1.96 fvdl memset(ahc->scb_data, 0, sizeof(*ahc->scb_data));
3820 1.49 fvdl }
3821 1.96 fvdl
3822 1.96 fvdl return (0);
3823 1.42 fvdl }
3824 1.42 fvdl
3825 1.96 fvdl void
3826 1.96 fvdl ahc_softc_insert(struct ahc_softc *ahc)
3827 1.71 bouyer {
3828 1.96 fvdl struct ahc_softc *list_ahc;
3829 1.71 bouyer
3830 1.96 fvdl #if AHC_PCI_CONFIG > 0
3831 1.96 fvdl /*
3832 1.96 fvdl * Second Function PCI devices need to inherit some
3833 1.96 fvdl * settings from function 0.
3834 1.96 fvdl */
3835 1.96 fvdl if ((ahc->chip & AHC_BUS_MASK) == AHC_PCI
3836 1.96 fvdl && (ahc->features & AHC_MULTI_FUNC) != 0) {
3837 1.96 fvdl TAILQ_FOREACH(list_ahc, &ahc_tailq, links) {
3838 1.96 fvdl ahc_dev_softc_t list_pci;
3839 1.96 fvdl ahc_dev_softc_t pci;
3840 1.96 fvdl
3841 1.96 fvdl list_pci = list_ahc->dev_softc;
3842 1.96 fvdl pci = ahc->dev_softc;
3843 1.96 fvdl if (ahc_get_pci_slot(list_pci) == ahc_get_pci_slot(pci)
3844 1.96 fvdl && ahc_get_pci_bus(list_pci) == ahc_get_pci_bus(pci)) {
3845 1.96 fvdl struct ahc_softc *master;
3846 1.96 fvdl struct ahc_softc *slave;
3847 1.96 fvdl
3848 1.96 fvdl if (ahc_get_pci_function(list_pci) == 0) {
3849 1.96 fvdl master = list_ahc;
3850 1.96 fvdl slave = ahc;
3851 1.96 fvdl } else {
3852 1.96 fvdl master = ahc;
3853 1.96 fvdl slave = list_ahc;
3854 1.96 fvdl }
3855 1.96 fvdl slave->flags &= ~AHC_BIOS_ENABLED;
3856 1.96 fvdl slave->flags |=
3857 1.96 fvdl master->flags & AHC_BIOS_ENABLED;
3858 1.96 fvdl slave->flags &= ~AHC_PRIMARY_CHANNEL;
3859 1.96 fvdl slave->flags |=
3860 1.96 fvdl master->flags & AHC_PRIMARY_CHANNEL;
3861 1.96 fvdl break;
3862 1.96 fvdl }
3863 1.96 fvdl }
3864 1.96 fvdl }
3865 1.96 fvdl #endif
3866 1.71 bouyer
3867 1.96 fvdl /*
3868 1.96 fvdl * Insertion sort into our list of softcs.
3869 1.96 fvdl */
3870 1.96 fvdl list_ahc = TAILQ_FIRST(&ahc_tailq);
3871 1.96 fvdl while (list_ahc != NULL
3872 1.96 fvdl && ahc_softc_comp(list_ahc, ahc) <= 0)
3873 1.96 fvdl list_ahc = TAILQ_NEXT(list_ahc, links);
3874 1.96 fvdl if (list_ahc != NULL)
3875 1.96 fvdl TAILQ_INSERT_BEFORE(list_ahc, ahc, links);
3876 1.96 fvdl else
3877 1.96 fvdl TAILQ_INSERT_TAIL(&ahc_tailq, ahc, links);
3878 1.96 fvdl ahc->init_level++;
3879 1.71 bouyer }
3880 1.71 bouyer
3881 1.42 fvdl /*
3882 1.96 fvdl * Verify that the passed in softc pointer is for a
3883 1.96 fvdl * controller that is still configured.
3884 1.42 fvdl */
3885 1.96 fvdl struct ahc_softc *
3886 1.96 fvdl ahc_find_softc(struct ahc_softc *ahc)
3887 1.42 fvdl {
3888 1.96 fvdl struct ahc_softc *list_ahc;
3889 1.42 fvdl
3890 1.96 fvdl TAILQ_FOREACH(list_ahc, &ahc_tailq, links) {
3891 1.96 fvdl if (list_ahc == ahc)
3892 1.96 fvdl return (ahc);
3893 1.42 fvdl }
3894 1.96 fvdl return (NULL);
3895 1.86 ichiro }
3896 1.86 ichiro
3897 1.96 fvdl void
3898 1.96 fvdl ahc_set_unit(struct ahc_softc *ahc, int unit)
3899 1.86 ichiro {
3900 1.96 fvdl ahc->unit = unit;
3901 1.96 fvdl }
3902 1.86 ichiro
3903 1.96 fvdl void
3904 1.96 fvdl ahc_set_name(struct ahc_softc *ahc, char *name)
3905 1.96 fvdl {
3906 1.96 fvdl if (ahc->name != NULL)
3907 1.96 fvdl free(ahc->name, M_DEVBUF);
3908 1.96 fvdl ahc->name = name;
3909 1.86 ichiro }
3910 1.86 ichiro
3911 1.96 fvdl void
3912 1.96 fvdl ahc_free(struct ahc_softc *ahc)
3913 1.86 ichiro {
3914 1.96 fvdl int i;
3915 1.86 ichiro
3916 1.96 fvdl ahc_fini_scbdata(ahc);
3917 1.96 fvdl switch (ahc->init_level) {
3918 1.96 fvdl default:
3919 1.96 fvdl case 2:
3920 1.96 fvdl ahc_shutdown(ahc);
3921 1.96 fvdl TAILQ_REMOVE(&ahc_tailq, ahc, links);
3922 1.96 fvdl /* FALLTHROUGH */
3923 1.96 fvdl case 1:
3924 1.96 fvdl bus_dmamap_unload(ahc->parent_dmat, ahc->shared_data_dmamap);
3925 1.96 fvdl bus_dmamap_destroy(ahc->parent_dmat, ahc->shared_data_dmamap);
3926 1.96 fvdl bus_dmamem_unmap(ahc->parent_dmat, (caddr_t)ahc->qoutfifo, ahc->shared_data_size);
3927 1.96 fvdl bus_dmamem_free(ahc->parent_dmat, &ahc->shared_data_seg, ahc->shared_data_nseg);
3928 1.86 ichiro break;
3929 1.96 fvdl case 0:
3930 1.86 ichiro break;
3931 1.86 ichiro }
3932 1.86 ichiro
3933 1.96 fvdl ahc_platform_free(ahc);
3934 1.96 fvdl for (i = 0; i < AHC_NUM_TARGETS; i++) {
3935 1.96 fvdl struct ahc_tmode_tstate *tstate;
3936 1.96 fvdl
3937 1.96 fvdl tstate = ahc->enabled_targets[i];
3938 1.96 fvdl if (tstate != NULL) {
3939 1.96 fvdl #if AHC_TARGET_MODE
3940 1.96 fvdl int j;
3941 1.96 fvdl
3942 1.96 fvdl for (j = 0; j < AHC_NUM_LUNS; j++) {
3943 1.96 fvdl struct ahc_tmode_lstate *lstate;
3944 1.96 fvdl
3945 1.96 fvdl lstate = tstate->enabled_luns[j];
3946 1.96 fvdl if (lstate != NULL) {
3947 1.96 fvdl /*xpt_free_path(lstate->path);*/
3948 1.96 fvdl free(lstate, M_DEVBUF);
3949 1.96 fvdl }
3950 1.96 fvdl }
3951 1.96 fvdl #endif
3952 1.96 fvdl free(tstate, M_DEVBUF);
3953 1.96 fvdl }
3954 1.96 fvdl }
3955 1.96 fvdl #if AHC_TARGET_MODE
3956 1.96 fvdl if (ahc->black_hole != NULL) {
3957 1.96 fvdl /*xpt_free_path(ahc->black_hole->path);*/
3958 1.96 fvdl free(ahc->black_hole, M_DEVBUF);
3959 1.96 fvdl }
3960 1.96 fvdl #endif
3961 1.96 fvdl if (ahc->name != NULL)
3962 1.96 fvdl free(ahc->name, M_DEVBUF);
3963 1.96 fvdl if (ahc->seep_config != NULL)
3964 1.96 fvdl free(ahc->seep_config, M_DEVBUF);
3965 1.96 fvdl #ifndef __FreeBSD__
3966 1.96 fvdl free(ahc, M_DEVBUF);
3967 1.96 fvdl #endif
3968 1.96 fvdl return;
3969 1.42 fvdl }
3970 1.42 fvdl
3971 1.96 fvdl void
3972 1.96 fvdl ahc_shutdown(void *arg)
3973 1.42 fvdl {
3974 1.96 fvdl struct ahc_softc *ahc;
3975 1.96 fvdl int i;
3976 1.42 fvdl
3977 1.96 fvdl ahc = (struct ahc_softc *)arg;
3978 1.42 fvdl
3979 1.96 fvdl /* This will reset most registers to 0, but not all */
3980 1.96 fvdl ahc_reset(ahc);
3981 1.96 fvdl ahc_outb(ahc, SCSISEQ, 0);
3982 1.96 fvdl ahc_outb(ahc, SXFRCTL0, 0);
3983 1.96 fvdl ahc_outb(ahc, DSPCISTATUS, 0);
3984 1.42 fvdl
3985 1.96 fvdl for (i = TARG_SCSIRATE; i < SCSICONF; i++)
3986 1.96 fvdl ahc_outb(ahc, i, 0);
3987 1.42 fvdl }
3988 1.42 fvdl
3989 1.42 fvdl /*
3990 1.96 fvdl * Reset the controller and record some information about it
3991 1.96 fvdl * that is only available just after a reset.
3992 1.42 fvdl */
3993 1.42 fvdl int
3994 1.96 fvdl ahc_reset(struct ahc_softc *ahc)
3995 1.42 fvdl {
3996 1.96 fvdl u_int sblkctl;
3997 1.96 fvdl u_int sxfrctl1_a, sxfrctl1_b;
3998 1.96 fvdl int wait;
3999 1.96 fvdl
4000 1.96 fvdl /*
4001 1.96 fvdl * Preserve the value of the SXFRCTL1 register for all channels.
4002 1.96 fvdl * It contains settings that affect termination and we don't want
4003 1.96 fvdl * to disturb the integrity of the bus.
4004 1.96 fvdl */
4005 1.96 fvdl ahc_pause(ahc);
4006 1.96 fvdl if ((ahc_inb(ahc, HCNTRL) & CHIPRST) != 0) {
4007 1.96 fvdl /*
4008 1.96 fvdl * The chip has not been initialized since
4009 1.96 fvdl * PCI/EISA/VLB bus reset. Don't trust
4010 1.96 fvdl * "left over BIOS data".
4011 1.96 fvdl */
4012 1.96 fvdl ahc->flags |= AHC_NO_BIOS_INIT;
4013 1.96 fvdl }
4014 1.96 fvdl sxfrctl1_b = 0;
4015 1.96 fvdl if ((ahc->chip & AHC_CHIPID_MASK) == AHC_AIC7770) {
4016 1.96 fvdl u_int sblkctl;
4017 1.42 fvdl
4018 1.96 fvdl /*
4019 1.96 fvdl * Save channel B's settings in case this chip
4020 1.96 fvdl * is setup for TWIN channel operation.
4021 1.96 fvdl */
4022 1.96 fvdl sblkctl = ahc_inb(ahc, SBLKCTL);
4023 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl | SELBUSB);
4024 1.96 fvdl sxfrctl1_b = ahc_inb(ahc, SXFRCTL1);
4025 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl & ~SELBUSB);
4026 1.96 fvdl }
4027 1.96 fvdl sxfrctl1_a = ahc_inb(ahc, SXFRCTL1);
4028 1.42 fvdl
4029 1.96 fvdl ahc_outb(ahc, HCNTRL, CHIPRST | ahc->pause);
4030 1.42 fvdl
4031 1.42 fvdl /*
4032 1.96 fvdl * Ensure that the reset has finished. We delay 1000us
4033 1.96 fvdl * prior to reading the register to make sure the chip
4034 1.96 fvdl * has sufficiently completed its reset to handle register
4035 1.96 fvdl * accesses.
4036 1.42 fvdl */
4037 1.96 fvdl wait = 1000;
4038 1.96 fvdl do {
4039 1.96 fvdl ahc_delay(1000);
4040 1.96 fvdl } while (--wait && !(ahc_inb(ahc, HCNTRL) & CHIPRSTACK));
4041 1.42 fvdl
4042 1.96 fvdl if (wait == 0) {
4043 1.96 fvdl printf("%s: WARNING - Failed chip reset! "
4044 1.96 fvdl "Trying to initialize anyway.\n", ahc_name(ahc));
4045 1.42 fvdl }
4046 1.96 fvdl ahc_outb(ahc, HCNTRL, ahc->pause);
4047 1.42 fvdl
4048 1.96 fvdl /* Determine channel configuration */
4049 1.96 fvdl sblkctl = ahc_inb(ahc, SBLKCTL) & (SELBUSB|SELWIDE);
4050 1.96 fvdl /* No Twin Channel PCI cards */
4051 1.96 fvdl if ((ahc->chip & AHC_PCI) != 0)
4052 1.96 fvdl sblkctl &= ~SELBUSB;
4053 1.96 fvdl switch (sblkctl) {
4054 1.96 fvdl case 0:
4055 1.96 fvdl /* Single Narrow Channel */
4056 1.96 fvdl break;
4057 1.96 fvdl case 2:
4058 1.96 fvdl /* Wide Channel */
4059 1.96 fvdl ahc->features |= AHC_WIDE;
4060 1.96 fvdl break;
4061 1.96 fvdl case 8:
4062 1.96 fvdl /* Twin Channel */
4063 1.96 fvdl ahc->features |= AHC_TWIN;
4064 1.96 fvdl break;
4065 1.96 fvdl default:
4066 1.96 fvdl printf(" Unsupported adapter type (0x%x). Ignoring\n", sblkctl);
4067 1.96 fvdl return(-1);
4068 1.42 fvdl }
4069 1.42 fvdl
4070 1.96 fvdl /*
4071 1.96 fvdl * Reload sxfrctl1.
4072 1.96 fvdl *
4073 1.96 fvdl * We must always initialize STPWEN to 1 before we
4074 1.96 fvdl * restore the saved values. STPWEN is initialized
4075 1.96 fvdl * to a tri-state condition which can only be cleared
4076 1.96 fvdl * by turning it on.
4077 1.96 fvdl */
4078 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0) {
4079 1.96 fvdl u_int sblkctl;
4080 1.42 fvdl
4081 1.96 fvdl sblkctl = ahc_inb(ahc, SBLKCTL);
4082 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl | SELBUSB);
4083 1.96 fvdl ahc_outb(ahc, SXFRCTL1, sxfrctl1_b);
4084 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl & ~SELBUSB);
4085 1.42 fvdl }
4086 1.96 fvdl ahc_outb(ahc, SXFRCTL1, sxfrctl1_a);
4087 1.42 fvdl
4088 1.96 fvdl #ifdef AHC_DUMP_SEQ
4089 1.96 fvdl if (ahc->init_level == 0)
4090 1.96 fvdl ahc_dumpseq(ahc);
4091 1.96 fvdl #endif
4092 1.42 fvdl
4093 1.96 fvdl return (0);
4094 1.42 fvdl }
4095 1.42 fvdl
4096 1.96 fvdl /*
4097 1.96 fvdl * Determine the number of SCBs available on the controller
4098 1.96 fvdl */
4099 1.96 fvdl int
4100 1.96 fvdl ahc_probe_scbs(struct ahc_softc *ahc) {
4101 1.96 fvdl int i;
4102 1.96 fvdl
4103 1.96 fvdl for (i = 0; i < AHC_SCB_MAX; i++) {
4104 1.42 fvdl
4105 1.96 fvdl ahc_outb(ahc, SCBPTR, i);
4106 1.96 fvdl ahc_outb(ahc, SCB_BASE, i);
4107 1.96 fvdl if (ahc_inb(ahc, SCB_BASE) != i)
4108 1.96 fvdl break;
4109 1.96 fvdl ahc_outb(ahc, SCBPTR, 0);
4110 1.96 fvdl if (ahc_inb(ahc, SCB_BASE) != 0)
4111 1.96 fvdl break;
4112 1.42 fvdl }
4113 1.96 fvdl return (i);
4114 1.42 fvdl }
4115 1.42 fvdl
4116 1.96 fvdl #if 0
4117 1.42 fvdl static void
4118 1.96 fvdl ahc_dmamap_cb(void *arg, bus_dma_segment_t *segs, int nseg, int error)
4119 1.42 fvdl {
4120 1.96 fvdl bus_addr_t *baddr;
4121 1.42 fvdl
4122 1.96 fvdl baddr = (bus_addr_t *)arg;
4123 1.96 fvdl *baddr = segs->ds_addr;
4124 1.42 fvdl }
4125 1.42 fvdl #endif
4126 1.42 fvdl
4127 1.42 fvdl static void
4128 1.96 fvdl ahc_build_free_scb_list(struct ahc_softc *ahc)
4129 1.42 fvdl {
4130 1.96 fvdl int scbsize;
4131 1.96 fvdl int i;
4132 1.59 pk
4133 1.96 fvdl scbsize = 32;
4134 1.96 fvdl if ((ahc->flags & AHC_LSCBS_ENABLED) != 0)
4135 1.96 fvdl scbsize = 64;
4136 1.42 fvdl
4137 1.96 fvdl for (i = 0; i < ahc->scb_data->maxhscbs; i++) {
4138 1.96 fvdl int j;
4139 1.42 fvdl
4140 1.96 fvdl ahc_outb(ahc, SCBPTR, i);
4141 1.42 fvdl
4142 1.42 fvdl /*
4143 1.96 fvdl * Touch all SCB bytes to avoid parity errors
4144 1.96 fvdl * should one of our debugging routines read
4145 1.96 fvdl * an otherwise uninitiatlized byte.
4146 1.42 fvdl */
4147 1.96 fvdl for (j = 0; j < scbsize; j++)
4148 1.96 fvdl ahc_outb(ahc, SCB_BASE+j, 0xFF);
4149 1.42 fvdl
4150 1.96 fvdl /* Clear the control byte. */
4151 1.96 fvdl ahc_outb(ahc, SCB_CONTROL, 0);
4152 1.42 fvdl
4153 1.96 fvdl /* Set the next pointer */
4154 1.96 fvdl if ((ahc->flags & AHC_PAGESCBS) != 0)
4155 1.96 fvdl ahc_outb(ahc, SCB_NEXT, i+1);
4156 1.96 fvdl else
4157 1.96 fvdl ahc_outb(ahc, SCB_NEXT, SCB_LIST_NULL);
4158 1.42 fvdl
4159 1.96 fvdl /* Make the tag number, SCSIID, and lun invalid */
4160 1.96 fvdl ahc_outb(ahc, SCB_TAG, SCB_LIST_NULL);
4161 1.96 fvdl ahc_outb(ahc, SCB_SCSIID, 0xFF);
4162 1.96 fvdl ahc_outb(ahc, SCB_LUN, 0xFF);
4163 1.96 fvdl }
4164 1.42 fvdl
4165 1.96 fvdl /* Make sure that the last SCB terminates the free list */
4166 1.96 fvdl ahc_outb(ahc, SCBPTR, i-1);
4167 1.96 fvdl ahc_outb(ahc, SCB_NEXT, SCB_LIST_NULL);
4168 1.96 fvdl }
4169 1.42 fvdl
4170 1.96 fvdl static int
4171 1.96 fvdl ahc_init_scbdata(struct ahc_softc *ahc)
4172 1.96 fvdl {
4173 1.96 fvdl struct scb_data *scb_data;
4174 1.42 fvdl
4175 1.96 fvdl scb_data = ahc->scb_data;
4176 1.96 fvdl SLIST_INIT(&scb_data->free_scbs);
4177 1.96 fvdl SLIST_INIT(&scb_data->sg_maps);
4178 1.42 fvdl
4179 1.96 fvdl /* Allocate SCB resources */
4180 1.96 fvdl scb_data->scbarray =
4181 1.96 fvdl (struct scb *)malloc(sizeof(struct scb) * AHC_SCB_MAX_ALLOC,
4182 1.96 fvdl M_DEVBUF, M_NOWAIT);
4183 1.96 fvdl if (scb_data->scbarray == NULL)
4184 1.96 fvdl return (ENOMEM);
4185 1.96 fvdl memset(scb_data->scbarray, 0, sizeof(struct scb) * AHC_SCB_MAX_ALLOC);
4186 1.42 fvdl
4187 1.96 fvdl /* Determine the number of hardware SCBs and initialize them */
4188 1.42 fvdl
4189 1.96 fvdl scb_data->maxhscbs = ahc_probe_scbs(ahc);
4190 1.96 fvdl if ((ahc->flags & AHC_PAGESCBS) != 0) {
4191 1.96 fvdl /* SCB 0 heads the free list */
4192 1.96 fvdl ahc_outb(ahc, FREE_SCBH, 0);
4193 1.96 fvdl } else {
4194 1.96 fvdl ahc_outb(ahc, FREE_SCBH, SCB_LIST_NULL);
4195 1.42 fvdl }
4196 1.42 fvdl
4197 1.96 fvdl if (ahc->scb_data->maxhscbs == 0) {
4198 1.96 fvdl printf("%s: No SCB space found\n", ahc_name(ahc));
4199 1.96 fvdl return (ENXIO);
4200 1.42 fvdl }
4201 1.42 fvdl
4202 1.96 fvdl ahc_build_free_scb_list(ahc);
4203 1.59 pk
4204 1.42 fvdl /*
4205 1.96 fvdl * Create our DMA tags. These tags define the kinds of device
4206 1.96 fvdl * accessible memory allocations and memory mappings we will
4207 1.96 fvdl * need to perform during normal operation.
4208 1.96 fvdl *
4209 1.96 fvdl * Unless we need to further restrict the allocation, we rely
4210 1.96 fvdl * on the restrictions of the parent dmat, hence the common
4211 1.96 fvdl * use of MAXADDR and MAXSIZE.
4212 1.42 fvdl */
4213 1.6 mycroft
4214 1.96 fvdl if (ahc_createdmamem(ahc->parent_dmat,
4215 1.96 fvdl AHC_SCB_MAX * sizeof(struct hardware_scb), ahc->sc_dmaflags,
4216 1.96 fvdl &scb_data->hscb_dmamap,
4217 1.96 fvdl (caddr_t *)&scb_data->hscbs, &scb_data->hscb_busaddr,
4218 1.96 fvdl &scb_data->hscb_seg, &scb_data->hscb_nseg, ahc_name(ahc),
4219 1.96 fvdl "hardware SCB structures") < 0)
4220 1.96 fvdl goto error_exit;
4221 1.96 fvdl
4222 1.96 fvdl scb_data->init_level++;
4223 1.96 fvdl
4224 1.96 fvdl if (ahc_createdmamem(ahc->parent_dmat,
4225 1.96 fvdl AHC_SCB_MAX * sizeof(struct scsipi_sense_data), ahc->sc_dmaflags,
4226 1.96 fvdl &scb_data->sense_dmamap, (caddr_t *)&scb_data->sense,
4227 1.96 fvdl &scb_data->sense_busaddr, &scb_data->sense_seg,
4228 1.96 fvdl &scb_data->sense_nseg, ahc_name(ahc), "sense buffers") < 0)
4229 1.96 fvdl goto error_exit;
4230 1.96 fvdl
4231 1.96 fvdl scb_data->init_level++;
4232 1.6 mycroft
4233 1.96 fvdl /* Perform initial CCB allocation */
4234 1.96 fvdl memset(scb_data->hscbs, 0,
4235 1.96 fvdl AHC_SCB_MAX_ALLOC * sizeof(struct hardware_scb));
4236 1.96 fvdl ahc_alloc_scbs(ahc);
4237 1.1 mycroft
4238 1.96 fvdl if (scb_data->numscbs == 0) {
4239 1.96 fvdl printf("%s: ahc_init_scbdata - "
4240 1.96 fvdl "Unable to allocate initial scbs\n",
4241 1.96 fvdl ahc_name(ahc));
4242 1.96 fvdl goto error_exit;
4243 1.42 fvdl }
4244 1.6 mycroft
4245 1.96 fvdl /*
4246 1.96 fvdl * Tell the sequencer which SCB will be the next one it receives.
4247 1.96 fvdl */
4248 1.96 fvdl ahc->next_queued_scb = ahc_get_scb(ahc);
4249 1.96 fvdl ahc_outb(ahc, NEXT_QUEUED_SCB, ahc->next_queued_scb->hscb->tag);
4250 1.96 fvdl
4251 1.96 fvdl /*
4252 1.96 fvdl * Note that we were successfull
4253 1.96 fvdl */
4254 1.96 fvdl return (0);
4255 1.6 mycroft
4256 1.96 fvdl error_exit:
4257 1.42 fvdl
4258 1.96 fvdl return (ENOMEM);
4259 1.96 fvdl }
4260 1.6 mycroft
4261 1.96 fvdl static void
4262 1.96 fvdl ahc_fini_scbdata(struct ahc_softc *ahc)
4263 1.96 fvdl {
4264 1.96 fvdl struct scb_data *scb_data;
4265 1.6 mycroft
4266 1.96 fvdl scb_data = ahc->scb_data;
4267 1.96 fvdl if (scb_data == NULL)
4268 1.96 fvdl return;
4269 1.42 fvdl
4270 1.96 fvdl switch (scb_data->init_level) {
4271 1.96 fvdl default:
4272 1.96 fvdl case 3:
4273 1.96 fvdl {
4274 1.96 fvdl struct sg_map_node *sg_map;
4275 1.42 fvdl
4276 1.96 fvdl while ((sg_map = SLIST_FIRST(&scb_data->sg_maps))!= NULL) {
4277 1.96 fvdl SLIST_REMOVE_HEAD(&scb_data->sg_maps, links);
4278 1.96 fvdl ahc_freedmamem(ahc->parent_dmat, PAGE_SIZE,
4279 1.96 fvdl sg_map->sg_dmamap, (caddr_t)sg_map->sg_vaddr,
4280 1.96 fvdl &sg_map->sg_dmasegs, sg_map->sg_nseg);
4281 1.96 fvdl free(sg_map, M_DEVBUF);
4282 1.96 fvdl }
4283 1.96 fvdl }
4284 1.96 fvdl /*FALLTHROUGH*/
4285 1.96 fvdl case 2:
4286 1.96 fvdl ahc_freedmamem(ahc->parent_dmat,
4287 1.96 fvdl AHC_SCB_MAX * sizeof(struct scsipi_sense_data),
4288 1.96 fvdl scb_data->sense_dmamap, (caddr_t)scb_data->sense,
4289 1.96 fvdl &scb_data->sense_seg, scb_data->sense_nseg);
4290 1.96 fvdl /*FALLTHROUGH*/
4291 1.96 fvdl case 1:
4292 1.96 fvdl ahc_freedmamem(ahc->parent_dmat,
4293 1.96 fvdl AHC_SCB_MAX * sizeof(struct hardware_scb),
4294 1.96 fvdl scb_data->hscb_dmamap, (caddr_t)scb_data->hscbs,
4295 1.96 fvdl &scb_data->hscb_seg, scb_data->hscb_nseg);
4296 1.96 fvdl /*FALLTHROUGH*/
4297 1.96 fvdl }
4298 1.96 fvdl if (scb_data->scbarray != NULL)
4299 1.96 fvdl free(scb_data->scbarray, M_DEVBUF);
4300 1.96 fvdl }
4301 1.6 mycroft
4302 1.96 fvdl void
4303 1.96 fvdl ahc_alloc_scbs(struct ahc_softc *ahc)
4304 1.96 fvdl {
4305 1.96 fvdl struct scb_data *scb_data;
4306 1.96 fvdl struct scb *next_scb;
4307 1.96 fvdl struct sg_map_node *sg_map;
4308 1.96 fvdl bus_addr_t physaddr;
4309 1.96 fvdl struct ahc_dma_seg *segs;
4310 1.96 fvdl int newcount;
4311 1.96 fvdl int i;
4312 1.6 mycroft
4313 1.96 fvdl scb_data = ahc->scb_data;
4314 1.96 fvdl if (scb_data->numscbs >= AHC_SCB_MAX_ALLOC)
4315 1.96 fvdl /* Can't allocate any more */
4316 1.96 fvdl return;
4317 1.6 mycroft
4318 1.96 fvdl next_scb = &scb_data->scbarray[scb_data->numscbs];
4319 1.6 mycroft
4320 1.96 fvdl sg_map = malloc(sizeof(*sg_map), M_DEVBUF, M_NOWAIT);
4321 1.42 fvdl
4322 1.96 fvdl if (sg_map == NULL)
4323 1.96 fvdl return;
4324 1.6 mycroft
4325 1.96 fvdl /* Allocate S/G space for the next batch of SCBS */
4326 1.96 fvdl if (ahc_createdmamem(ahc->parent_dmat, PAGE_SIZE, ahc->sc_dmaflags,
4327 1.96 fvdl &sg_map->sg_dmamap,
4328 1.96 fvdl (caddr_t *)&sg_map->sg_vaddr, &sg_map->sg_physaddr,
4329 1.96 fvdl &sg_map->sg_dmasegs, &sg_map->sg_nseg, ahc_name(ahc),
4330 1.96 fvdl "SG space") < 0) {
4331 1.96 fvdl free(sg_map, M_DEVBUF);
4332 1.96 fvdl return;
4333 1.96 fvdl }
4334 1.6 mycroft
4335 1.96 fvdl SLIST_INSERT_HEAD(&scb_data->sg_maps, sg_map, links);
4336 1.6 mycroft
4337 1.96 fvdl segs = sg_map->sg_vaddr;
4338 1.96 fvdl physaddr = sg_map->sg_physaddr;
4339 1.6 mycroft
4340 1.96 fvdl newcount = (PAGE_SIZE / (AHC_NSEG * sizeof(struct ahc_dma_seg)));
4341 1.96 fvdl newcount = MIN(newcount, (AHC_SCB_MAX_ALLOC - scb_data->numscbs));
4342 1.96 fvdl for (i = 0; i < newcount; i++) {
4343 1.96 fvdl struct scb_platform_data *pdata;
4344 1.96 fvdl int error;
4345 1.6 mycroft
4346 1.96 fvdl pdata = (struct scb_platform_data *)malloc(sizeof(*pdata),
4347 1.96 fvdl M_DEVBUF, M_NOWAIT);
4348 1.96 fvdl if (pdata == NULL)
4349 1.96 fvdl break;
4350 1.96 fvdl next_scb->platform_data = pdata;
4351 1.96 fvdl next_scb->sg_map = sg_map;
4352 1.96 fvdl next_scb->sg_list = segs;
4353 1.42 fvdl /*
4354 1.96 fvdl * The sequencer always starts with the second entry.
4355 1.96 fvdl * The first entry is embedded in the scb.
4356 1.42 fvdl */
4357 1.96 fvdl next_scb->sg_list_phys = physaddr + sizeof(struct ahc_dma_seg);
4358 1.96 fvdl next_scb->ahc_softc = ahc;
4359 1.96 fvdl next_scb->flags = SCB_FREE;
4360 1.96 fvdl
4361 1.96 fvdl error = bus_dmamap_create(ahc->parent_dmat,
4362 1.103 tls AHC_MAXTRANSFER_SIZE, AHC_NSEG, MAXPHYS, 0,
4363 1.96 fvdl BUS_DMA_NOWAIT|BUS_DMA_ALLOCNOW,
4364 1.96 fvdl &next_scb->dmamap);
4365 1.96 fvdl if (error != 0)
4366 1.96 fvdl break;
4367 1.6 mycroft
4368 1.96 fvdl next_scb->hscb = &scb_data->hscbs[scb_data->numscbs];
4369 1.96 fvdl next_scb->hscb->tag = ahc->scb_data->numscbs;
4370 1.96 fvdl SLIST_INSERT_HEAD(&ahc->scb_data->free_scbs,
4371 1.96 fvdl next_scb, links.sle);
4372 1.96 fvdl segs += AHC_NSEG;
4373 1.96 fvdl physaddr += (AHC_NSEG * sizeof(struct ahc_dma_seg));
4374 1.96 fvdl next_scb++;
4375 1.96 fvdl ahc->scb_data->numscbs++;
4376 1.6 mycroft }
4377 1.1 mycroft }
4378 1.1 mycroft
4379 1.96 fvdl void
4380 1.96 fvdl ahc_controller_info(struct ahc_softc *ahc, char *buf)
4381 1.1 mycroft {
4382 1.96 fvdl int len;
4383 1.42 fvdl
4384 1.96 fvdl len = sprintf(buf, "%s: ", ahc_chip_names[ahc->chip & AHC_CHIPID_MASK]);
4385 1.96 fvdl buf += len;
4386 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0)
4387 1.96 fvdl len = sprintf(buf, "Twin Channel, A SCSI Id=%d, "
4388 1.96 fvdl "B SCSI Id=%d, primary %c, ",
4389 1.96 fvdl ahc->our_id, ahc->our_id_b,
4390 1.96 fvdl (ahc->flags & AHC_PRIMARY_CHANNEL) + 'A');
4391 1.96 fvdl else {
4392 1.96 fvdl const char *speed;
4393 1.96 fvdl const char *type;
4394 1.96 fvdl
4395 1.96 fvdl speed = "";
4396 1.96 fvdl if ((ahc->features & AHC_ULTRA) != 0) {
4397 1.96 fvdl speed = "Ultra ";
4398 1.96 fvdl } else if ((ahc->features & AHC_DT) != 0) {
4399 1.96 fvdl speed = "Ultra160 ";
4400 1.96 fvdl } else if ((ahc->features & AHC_ULTRA2) != 0) {
4401 1.96 fvdl speed = "Ultra2 ";
4402 1.96 fvdl }
4403 1.96 fvdl if ((ahc->features & AHC_WIDE) != 0) {
4404 1.96 fvdl type = "Wide";
4405 1.96 fvdl } else {
4406 1.96 fvdl type = "Single";
4407 1.96 fvdl }
4408 1.96 fvdl len = sprintf(buf, "%s%s Channel %c, SCSI Id=%d, ",
4409 1.96 fvdl speed, type, ahc->channel, ahc->our_id);
4410 1.42 fvdl }
4411 1.96 fvdl buf += len;
4412 1.42 fvdl
4413 1.96 fvdl if ((ahc->flags & AHC_PAGESCBS) != 0)
4414 1.96 fvdl sprintf(buf, "%d/%d SCBs",
4415 1.96 fvdl ahc->scb_data->maxhscbs, AHC_MAX_QUEUE);
4416 1.96 fvdl else
4417 1.96 fvdl sprintf(buf, "%d SCBs", ahc->scb_data->maxhscbs);
4418 1.42 fvdl }
4419 1.1 mycroft
4420 1.96 fvdl /*
4421 1.96 fvdl * Start the board, ready for normal operation
4422 1.96 fvdl */
4423 1.96 fvdl int
4424 1.96 fvdl ahc_init(struct ahc_softc *ahc)
4425 1.42 fvdl {
4426 1.96 fvdl int max_targ;
4427 1.96 fvdl int i;
4428 1.96 fvdl int term;
4429 1.96 fvdl u_int scsi_conf;
4430 1.96 fvdl u_int scsiseq_template;
4431 1.96 fvdl u_int ultraenb;
4432 1.96 fvdl u_int discenable;
4433 1.96 fvdl u_int tagenable;
4434 1.96 fvdl size_t driver_data_size;
4435 1.96 fvdl uint32_t physaddr;
4436 1.42 fvdl
4437 1.96 fvdl #ifdef AHC_DEBUG
4438 1.96 fvdl if ((ahc_debug & AHC_DEBUG_SEQUENCER) != 0)
4439 1.96 fvdl ahc->flags |= AHC_SEQUENCER_DEBUG;
4440 1.96 fvdl #endif
4441 1.42 fvdl
4442 1.96 fvdl #ifdef AHC_PRINT_SRAM
4443 1.96 fvdl printf("Scratch Ram:");
4444 1.96 fvdl for (i = 0x20; i < 0x5f; i++) {
4445 1.96 fvdl if (((i % 8) == 0) && (i != 0)) {
4446 1.96 fvdl printf ("\n ");
4447 1.42 fvdl }
4448 1.96 fvdl printf (" 0x%x", ahc_inb(ahc, i));
4449 1.42 fvdl }
4450 1.96 fvdl if ((ahc->features & AHC_MORE_SRAM) != 0) {
4451 1.96 fvdl for (i = 0x70; i < 0x7f; i++) {
4452 1.96 fvdl if (((i % 8) == 0) && (i != 0)) {
4453 1.96 fvdl printf ("\n ");
4454 1.96 fvdl }
4455 1.96 fvdl printf (" 0x%x", ahc_inb(ahc, i));
4456 1.96 fvdl }
4457 1.42 fvdl }
4458 1.96 fvdl printf ("\n");
4459 1.96 fvdl /*
4460 1.96 fvdl * Reading uninitialized scratch ram may
4461 1.96 fvdl * generate parity errors.
4462 1.96 fvdl */
4463 1.96 fvdl ahc_outb(ahc, CLRINT, CLRPARERR);
4464 1.96 fvdl ahc_outb(ahc, CLRINT, CLRBRKADRINT);
4465 1.96 fvdl #endif
4466 1.96 fvdl max_targ = 15;
4467 1.6 mycroft
4468 1.42 fvdl /*
4469 1.96 fvdl * Assume we have a board at this stage and it has been reset.
4470 1.42 fvdl */
4471 1.96 fvdl if ((ahc->flags & AHC_USEDEFAULTS) != 0)
4472 1.96 fvdl ahc->our_id = ahc->our_id_b = 7;
4473 1.96 fvdl
4474 1.59 pk /*
4475 1.96 fvdl * Default to allowing initiator operations.
4476 1.59 pk */
4477 1.96 fvdl ahc->flags |= AHC_INITIATORROLE;
4478 1.6 mycroft
4479 1.1 mycroft /*
4480 1.96 fvdl * Only allow target mode features if this unit has them enabled.
4481 1.1 mycroft */
4482 1.96 fvdl //if ((AHC_TMODE_ENABLE & (0x1 << ahc->unit)) == 0)
4483 1.96 fvdl ahc->features &= ~AHC_TARGETMODE;
4484 1.42 fvdl
4485 1.96 fvdl /*
4486 1.96 fvdl * DMA tag for our command fifos and other data in system memory
4487 1.96 fvdl * the card's sequencer must be able to access. For initiator
4488 1.96 fvdl * roles, we need to allocate space for the qinfifo and qoutfifo.
4489 1.96 fvdl * The qinfifo and qoutfifo are composed of 256 1 byte elements.
4490 1.96 fvdl * When providing for the target mode role, we must additionally
4491 1.96 fvdl * provide space for the incoming target command fifo and an extra
4492 1.96 fvdl * byte to deal with a dma bug in some chip versions.
4493 1.96 fvdl */
4494 1.96 fvdl driver_data_size = 2 * 256 * sizeof(uint8_t);
4495 1.96 fvdl if ((ahc->features & AHC_TARGETMODE) != 0)
4496 1.96 fvdl driver_data_size += AHC_TMODE_CMDS * sizeof(struct target_cmd)
4497 1.96 fvdl + /*DMA WideOdd Bug Buffer*/1;
4498 1.42 fvdl
4499 1.96 fvdl if (ahc_createdmamem(ahc->parent_dmat, driver_data_size,
4500 1.96 fvdl ahc->sc_dmaflags,
4501 1.96 fvdl &ahc->shared_data_dmamap, (caddr_t *)&ahc->qoutfifo,
4502 1.96 fvdl &ahc->shared_data_busaddr, &ahc->shared_data_seg,
4503 1.96 fvdl &ahc->shared_data_nseg, ahc_name(ahc), "shared data") < 0)
4504 1.96 fvdl return (ENOMEM);
4505 1.6 mycroft
4506 1.96 fvdl ahc->init_level++;
4507 1.1 mycroft
4508 1.96 fvdl if ((ahc->features & AHC_TARGETMODE) != 0) {
4509 1.96 fvdl ahc->targetcmds = (struct target_cmd *)ahc->qoutfifo;
4510 1.96 fvdl ahc->qoutfifo = (uint8_t *)&ahc->targetcmds[AHC_TMODE_CMDS];
4511 1.96 fvdl ahc->dma_bug_buf = ahc->shared_data_busaddr
4512 1.96 fvdl + driver_data_size - 1;
4513 1.96 fvdl /* All target command blocks start out invalid. */
4514 1.96 fvdl for (i = 0; i < AHC_TMODE_CMDS; i++)
4515 1.96 fvdl ahc->targetcmds[i].cmd_valid = 0;
4516 1.96 fvdl ahc_sync_tqinfifo(ahc, BUS_DMASYNC_PREREAD);
4517 1.96 fvdl ahc->tqinfifonext = 1;
4518 1.96 fvdl ahc_outb(ahc, KERNEL_TQINPOS, ahc->tqinfifonext - 1);
4519 1.96 fvdl ahc_outb(ahc, TQINPOS, ahc->tqinfifonext);
4520 1.96 fvdl ahc->qoutfifo = (uint8_t *)&ahc->targetcmds[256];
4521 1.42 fvdl }
4522 1.96 fvdl ahc->qinfifo = &ahc->qoutfifo[256];
4523 1.14 gibbs
4524 1.96 fvdl ahc->init_level++;
4525 1.14 gibbs
4526 1.96 fvdl /* Allocate SCB data now that buffer_dmat is initialized */
4527 1.96 fvdl if (ahc->scb_data->maxhscbs == 0)
4528 1.96 fvdl if (ahc_init_scbdata(ahc) != 0)
4529 1.96 fvdl return (ENOMEM);
4530 1.42 fvdl
4531 1.96 fvdl if (bootverbose)
4532 1.96 fvdl printf("%s: found %d SCBs\n", ahc_name(ahc),
4533 1.96 fvdl ahc->scb_data->maxhscbs);
4534 1.42 fvdl
4535 1.96 fvdl /*
4536 1.96 fvdl * Allocate a tstate to house information for our
4537 1.96 fvdl * initiator presence on the bus as well as the user
4538 1.96 fvdl * data for any target mode initiator.
4539 1.96 fvdl */
4540 1.96 fvdl if (ahc_alloc_tstate(ahc, ahc->our_id, 'A') == NULL) {
4541 1.96 fvdl printf("%s: unable to allocate ahc_tmode_tstate. "
4542 1.96 fvdl "Failing attach\n", ahc_name(ahc));
4543 1.96 fvdl return (ENOMEM);
4544 1.96 fvdl }
4545 1.42 fvdl
4546 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0) {
4547 1.96 fvdl if (ahc_alloc_tstate(ahc, ahc->our_id_b, 'B') == NULL) {
4548 1.96 fvdl printf("%s: unable to allocate ahc_tmode_tstate. "
4549 1.96 fvdl "Failing attach\n", ahc_name(ahc));
4550 1.96 fvdl return (ENOMEM);
4551 1.96 fvdl }
4552 1.96 fvdl }
4553 1.42 fvdl
4554 1.96 fvdl ahc_outb(ahc, SEQ_FLAGS, 0);
4555 1.96 fvdl ahc_outb(ahc, SEQ_FLAGS2, 0);
4556 1.42 fvdl
4557 1.96 fvdl if (ahc->scb_data->maxhscbs < AHC_SCB_MAX_ALLOC) {
4558 1.96 fvdl ahc->flags |= AHC_PAGESCBS;
4559 1.96 fvdl } else {
4560 1.96 fvdl ahc->flags &= ~AHC_PAGESCBS;
4561 1.96 fvdl }
4562 1.42 fvdl
4563 1.96 fvdl #ifdef AHC_DEBUG
4564 1.96 fvdl if (ahc_debug & AHC_SHOW_MISC) {
4565 1.97 bjh21 printf("%s: hardware scb %lu bytes; kernel scb %lu bytes; "
4566 1.97 bjh21 "ahc_dma %lu bytes\n",
4567 1.96 fvdl ahc_name(ahc),
4568 1.97 bjh21 (u_long)sizeof(struct hardware_scb),
4569 1.97 bjh21 (u_long)sizeof(struct scb),
4570 1.97 bjh21 (u_long)sizeof(struct ahc_dma_seg));
4571 1.96 fvdl }
4572 1.96 fvdl #endif /* AHC_DEBUG */
4573 1.42 fvdl
4574 1.96 fvdl /* Set the SCSI Id, SXFRCTL0, SXFRCTL1, and SIMODE1, for both channels*/
4575 1.96 fvdl if (ahc->features & AHC_TWIN) {
4576 1.42 fvdl
4577 1.42 fvdl /*
4578 1.96 fvdl * The device is gated to channel B after a chip reset,
4579 1.96 fvdl * so set those values first
4580 1.42 fvdl */
4581 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) | SELBUSB);
4582 1.96 fvdl term = (ahc->flags & AHC_TERM_ENB_B) != 0 ? STPWEN : 0;
4583 1.96 fvdl ahc_outb(ahc, SCSIID, ahc->our_id_b);
4584 1.96 fvdl scsi_conf = ahc_inb(ahc, SCSICONF + 1);
4585 1.96 fvdl ahc_outb(ahc, SXFRCTL1, (scsi_conf & (ENSPCHK|STIMESEL))
4586 1.96 fvdl |term|ahc->seltime_b|ENSTIMER|ACTNEGEN);
4587 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
4588 1.96 fvdl ahc_outb(ahc, SIMODE0, ahc_inb(ahc, SIMODE0)|ENIOERR);
4589 1.96 fvdl ahc_outb(ahc, SIMODE1, ENSELTIMO|ENSCSIRST|ENSCSIPERR);
4590 1.96 fvdl ahc_outb(ahc, SXFRCTL0, DFON|SPIOEN);
4591 1.96 fvdl
4592 1.96 fvdl if ((scsi_conf & RESET_SCSI) != 0
4593 1.96 fvdl && (ahc->flags & AHC_INITIATORROLE) != 0)
4594 1.96 fvdl ahc->flags |= AHC_RESET_BUS_B;
4595 1.96 fvdl
4596 1.96 fvdl /* Select Channel A */
4597 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) & ~SELBUSB);
4598 1.42 fvdl }
4599 1.42 fvdl
4600 1.96 fvdl term = (ahc->flags & AHC_TERM_ENB_A) != 0 ? STPWEN : 0;
4601 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
4602 1.96 fvdl ahc_outb(ahc, SCSIID_ULTRA2, ahc->our_id);
4603 1.96 fvdl else
4604 1.96 fvdl ahc_outb(ahc, SCSIID, ahc->our_id);
4605 1.96 fvdl scsi_conf = ahc_inb(ahc, SCSICONF);
4606 1.96 fvdl ahc_outb(ahc, SXFRCTL1, (scsi_conf & (ENSPCHK|STIMESEL))
4607 1.96 fvdl |term|ahc->seltime
4608 1.96 fvdl |ENSTIMER|ACTNEGEN);
4609 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
4610 1.96 fvdl ahc_outb(ahc, SIMODE0, ahc_inb(ahc, SIMODE0)|ENIOERR);
4611 1.96 fvdl ahc_outb(ahc, SIMODE1, ENSELTIMO|ENSCSIRST|ENSCSIPERR);
4612 1.96 fvdl ahc_outb(ahc, SXFRCTL0, DFON|SPIOEN);
4613 1.96 fvdl
4614 1.96 fvdl if ((scsi_conf & RESET_SCSI) != 0
4615 1.96 fvdl && (ahc->flags & AHC_INITIATORROLE) != 0)
4616 1.96 fvdl ahc->flags |= AHC_RESET_BUS_A;
4617 1.96 fvdl
4618 1.96 fvdl /*
4619 1.96 fvdl * Look at the information that board initialization or
4620 1.96 fvdl * the board bios has left us.
4621 1.96 fvdl */
4622 1.96 fvdl ultraenb = 0;
4623 1.96 fvdl tagenable = ALL_TARGETS_MASK;
4624 1.42 fvdl
4625 1.96 fvdl /* Grab the disconnection disable table and invert it for our needs */
4626 1.96 fvdl if ((ahc->flags & AHC_USEDEFAULTS) != 0) {
4627 1.96 fvdl printf("%s: Host Adapter Bios disabled. Using default SCSI "
4628 1.96 fvdl "device parameters\n", ahc_name(ahc));
4629 1.96 fvdl ahc->flags |= AHC_EXTENDED_TRANS_A|AHC_EXTENDED_TRANS_B|
4630 1.96 fvdl AHC_TERM_ENB_A|AHC_TERM_ENB_B;
4631 1.96 fvdl discenable = ALL_TARGETS_MASK;
4632 1.96 fvdl if ((ahc->features & AHC_ULTRA) != 0)
4633 1.96 fvdl ultraenb = ALL_TARGETS_MASK;
4634 1.96 fvdl } else {
4635 1.96 fvdl discenable = ~((ahc_inb(ahc, DISC_DSB + 1) << 8)
4636 1.96 fvdl | ahc_inb(ahc, DISC_DSB));
4637 1.96 fvdl if ((ahc->features & (AHC_ULTRA|AHC_ULTRA2)) != 0)
4638 1.96 fvdl ultraenb = (ahc_inb(ahc, ULTRA_ENB + 1) << 8)
4639 1.96 fvdl | ahc_inb(ahc, ULTRA_ENB);
4640 1.96 fvdl }
4641 1.42 fvdl
4642 1.96 fvdl if ((ahc->features & (AHC_WIDE|AHC_TWIN)) == 0)
4643 1.96 fvdl max_targ = 7;
4644 1.42 fvdl
4645 1.96 fvdl for (i = 0; i <= max_targ; i++) {
4646 1.96 fvdl struct ahc_initiator_tinfo *tinfo;
4647 1.96 fvdl struct ahc_tmode_tstate *tstate;
4648 1.96 fvdl u_int our_id;
4649 1.96 fvdl u_int target_id;
4650 1.96 fvdl char channel;
4651 1.42 fvdl
4652 1.96 fvdl channel = 'A';
4653 1.96 fvdl our_id = ahc->our_id;
4654 1.96 fvdl target_id = i;
4655 1.96 fvdl if (i > 7 && (ahc->features & AHC_TWIN) != 0) {
4656 1.96 fvdl channel = 'B';
4657 1.96 fvdl our_id = ahc->our_id_b;
4658 1.96 fvdl target_id = i % 8;
4659 1.96 fvdl }
4660 1.96 fvdl tinfo = ahc_fetch_transinfo(ahc, channel, our_id,
4661 1.96 fvdl target_id, &tstate);
4662 1.96 fvdl /* Default to async narrow across the board */
4663 1.96 fvdl memset(tinfo, 0, sizeof(*tinfo));
4664 1.96 fvdl if (ahc->flags & AHC_USEDEFAULTS) {
4665 1.96 fvdl if ((ahc->features & AHC_WIDE) != 0)
4666 1.96 fvdl tinfo->user.width = MSG_EXT_WDTR_BUS_16_BIT;
4667 1.42 fvdl
4668 1.42 fvdl /*
4669 1.96 fvdl * These will be truncated when we determine the
4670 1.96 fvdl * connection type we have with the target.
4671 1.42 fvdl */
4672 1.96 fvdl tinfo->user.period = ahc_syncrates->period;
4673 1.96 fvdl tinfo->user.offset = ~0;
4674 1.96 fvdl } else {
4675 1.96 fvdl u_int scsirate;
4676 1.96 fvdl uint16_t mask;
4677 1.42 fvdl
4678 1.96 fvdl /* Take the settings leftover in scratch RAM. */
4679 1.96 fvdl scsirate = ahc_inb(ahc, TARG_SCSIRATE + i);
4680 1.96 fvdl mask = (0x01 << i);
4681 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
4682 1.96 fvdl u_int offset;
4683 1.96 fvdl u_int maxsync;
4684 1.42 fvdl
4685 1.96 fvdl if ((scsirate & SOFS) == 0x0F) {
4686 1.96 fvdl /*
4687 1.96 fvdl * Haven't negotiated yet,
4688 1.96 fvdl * so the format is different.
4689 1.96 fvdl */
4690 1.96 fvdl scsirate = (scsirate & SXFR) >> 4
4691 1.96 fvdl | (ultraenb & mask)
4692 1.96 fvdl ? 0x08 : 0x0
4693 1.96 fvdl | (scsirate & WIDEXFER);
4694 1.96 fvdl offset = MAX_OFFSET_ULTRA2;
4695 1.96 fvdl } else
4696 1.96 fvdl offset = ahc_inb(ahc, TARG_OFFSET + i);
4697 1.96 fvdl if ((scsirate & ~WIDEXFER) == 0 && offset != 0)
4698 1.96 fvdl /* Set to the lowest sync rate, 5MHz */
4699 1.96 fvdl scsirate |= 0x1c;
4700 1.96 fvdl maxsync = AHC_SYNCRATE_ULTRA2;
4701 1.96 fvdl if ((ahc->features & AHC_DT) != 0)
4702 1.96 fvdl maxsync = AHC_SYNCRATE_DT;
4703 1.96 fvdl tinfo->user.period =
4704 1.96 fvdl ahc_find_period(ahc, scsirate, maxsync);
4705 1.96 fvdl if (offset == 0)
4706 1.96 fvdl tinfo->user.period = 0;
4707 1.96 fvdl else
4708 1.96 fvdl tinfo->user.offset = ~0;
4709 1.96 fvdl if ((scsirate & SXFR_ULTRA2) <= 8/*10MHz*/
4710 1.96 fvdl && (ahc->features & AHC_DT) != 0)
4711 1.96 fvdl tinfo->user.ppr_options =
4712 1.96 fvdl MSG_EXT_PPR_DT_REQ;
4713 1.96 fvdl } else if ((scsirate & SOFS) != 0) {
4714 1.96 fvdl if ((scsirate & SXFR) == 0x40
4715 1.96 fvdl && (ultraenb & mask) != 0) {
4716 1.96 fvdl /* Treat 10MHz as a non-ultra speed */
4717 1.96 fvdl scsirate &= ~SXFR;
4718 1.96 fvdl ultraenb &= ~mask;
4719 1.96 fvdl }
4720 1.96 fvdl tinfo->user.period =
4721 1.96 fvdl ahc_find_period(ahc, scsirate,
4722 1.96 fvdl (ultraenb & mask)
4723 1.96 fvdl ? AHC_SYNCRATE_ULTRA
4724 1.96 fvdl : AHC_SYNCRATE_FAST);
4725 1.96 fvdl if (tinfo->user.period != 0)
4726 1.96 fvdl tinfo->user.offset = ~0;
4727 1.96 fvdl }
4728 1.96 fvdl if (tinfo->user.period == 0)
4729 1.96 fvdl tinfo->user.offset = 0;
4730 1.96 fvdl if ((scsirate & WIDEXFER) != 0
4731 1.96 fvdl && (ahc->features & AHC_WIDE) != 0)
4732 1.96 fvdl tinfo->user.width = MSG_EXT_WDTR_BUS_16_BIT;
4733 1.96 fvdl tinfo->user.protocol_version = 4;
4734 1.96 fvdl if ((ahc->features & AHC_DT) != 0)
4735 1.96 fvdl tinfo->user.transport_version = 3;
4736 1.96 fvdl else
4737 1.96 fvdl tinfo->user.transport_version = 2;
4738 1.96 fvdl tinfo->goal.protocol_version = 2;
4739 1.96 fvdl tinfo->goal.transport_version = 2;
4740 1.96 fvdl tinfo->curr.protocol_version = 2;
4741 1.96 fvdl tinfo->curr.transport_version = 2;
4742 1.42 fvdl }
4743 1.96 fvdl tstate->ultraenb = 0;
4744 1.96 fvdl tstate->discenable = discenable;
4745 1.42 fvdl }
4746 1.96 fvdl ahc->user_discenable = discenable;
4747 1.96 fvdl ahc->user_tagenable = tagenable;
4748 1.42 fvdl
4749 1.96 fvdl /* There are no untagged SCBs active yet. */
4750 1.96 fvdl for (i = 0; i < 16; i++) {
4751 1.96 fvdl ahc_unbusy_tcl(ahc, BUILD_TCL(i << 4, 0));
4752 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
4753 1.96 fvdl int lun;
4754 1.42 fvdl
4755 1.42 fvdl /*
4756 1.96 fvdl * The SCB based BTT allows an entry per
4757 1.96 fvdl * target and lun pair.
4758 1.42 fvdl */
4759 1.96 fvdl for (lun = 1; lun < AHC_NUM_LUNS; lun++)
4760 1.96 fvdl ahc_unbusy_tcl(ahc, BUILD_TCL(i << 4, lun));
4761 1.42 fvdl }
4762 1.96 fvdl }
4763 1.59 pk
4764 1.96 fvdl /* All of our queues are empty */
4765 1.96 fvdl for (i = 0; i < 256; i++)
4766 1.96 fvdl ahc->qoutfifo[i] = SCB_LIST_NULL;
4767 1.42 fvdl
4768 1.96 fvdl ahc_sync_qoutfifo(ahc, BUS_DMASYNC_PREREAD);
4769 1.9 explorer
4770 1.96 fvdl for (i = 0; i < 256; i++)
4771 1.96 fvdl ahc->qinfifo[i] = SCB_LIST_NULL;
4772 1.9 explorer
4773 1.96 fvdl if ((ahc->features & AHC_MULTI_TID) != 0) {
4774 1.96 fvdl ahc_outb(ahc, TARGID, 0);
4775 1.96 fvdl ahc_outb(ahc, TARGID + 1, 0);
4776 1.14 gibbs }
4777 1.14 gibbs
4778 1.96 fvdl /*
4779 1.96 fvdl * Tell the sequencer where it can find our arrays in memory.
4780 1.96 fvdl */
4781 1.96 fvdl physaddr = ahc->scb_data->hscb_busaddr;
4782 1.96 fvdl ahc_outb(ahc, HSCB_ADDR, physaddr & 0xFF);
4783 1.96 fvdl ahc_outb(ahc, HSCB_ADDR + 1, (physaddr >> 8) & 0xFF);
4784 1.96 fvdl ahc_outb(ahc, HSCB_ADDR + 2, (physaddr >> 16) & 0xFF);
4785 1.96 fvdl ahc_outb(ahc, HSCB_ADDR + 3, (physaddr >> 24) & 0xFF);
4786 1.14 gibbs
4787 1.96 fvdl physaddr = ahc->shared_data_busaddr;
4788 1.96 fvdl ahc_outb(ahc, SHARED_DATA_ADDR, physaddr & 0xFF);
4789 1.96 fvdl ahc_outb(ahc, SHARED_DATA_ADDR + 1, (physaddr >> 8) & 0xFF);
4790 1.96 fvdl ahc_outb(ahc, SHARED_DATA_ADDR + 2, (physaddr >> 16) & 0xFF);
4791 1.96 fvdl ahc_outb(ahc, SHARED_DATA_ADDR + 3, (physaddr >> 24) & 0xFF);
4792 1.14 gibbs
4793 1.96 fvdl /*
4794 1.96 fvdl * Initialize the group code to command length table.
4795 1.96 fvdl * This overrides the values in TARG_SCSIRATE, so only
4796 1.96 fvdl * setup the table after we have processed that information.
4797 1.96 fvdl */
4798 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE, 5);
4799 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 1, 9);
4800 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 2, 9);
4801 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 3, 0);
4802 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 4, 15);
4803 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 5, 11);
4804 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 6, 0);
4805 1.96 fvdl ahc_outb(ahc, CMDSIZE_TABLE + 7, 0);
4806 1.96 fvdl
4807 1.96 fvdl /* Tell the sequencer of our initial queue positions */
4808 1.96 fvdl ahc_outb(ahc, KERNEL_QINPOS, 0);
4809 1.96 fvdl ahc_outb(ahc, QINPOS, 0);
4810 1.96 fvdl ahc_outb(ahc, QOUTPOS, 0);
4811 1.14 gibbs
4812 1.96 fvdl /*
4813 1.96 fvdl * Use the built in queue management registers
4814 1.96 fvdl * if they are available.
4815 1.96 fvdl */
4816 1.96 fvdl if ((ahc->features & AHC_QUEUE_REGS) != 0) {
4817 1.96 fvdl ahc_outb(ahc, QOFF_CTLSTA, SCB_QSIZE_256);
4818 1.96 fvdl ahc_outb(ahc, SDSCB_QOFF, 0);
4819 1.96 fvdl ahc_outb(ahc, SNSCB_QOFF, 0);
4820 1.96 fvdl ahc_outb(ahc, HNSCB_QOFF, 0);
4821 1.96 fvdl }
4822 1.14 gibbs
4823 1.42 fvdl
4824 1.96 fvdl /* We don't have any waiting selections */
4825 1.96 fvdl ahc_outb(ahc, WAITING_SCBH, SCB_LIST_NULL);
4826 1.14 gibbs
4827 1.96 fvdl /* Our disconnection list is empty too */
4828 1.96 fvdl ahc_outb(ahc, DISCONNECTED_SCBH, SCB_LIST_NULL);
4829 1.42 fvdl
4830 1.96 fvdl /* Message out buffer starts empty */
4831 1.96 fvdl ahc_outb(ahc, MSG_OUT, MSG_NOOP);
4832 1.42 fvdl
4833 1.42 fvdl /*
4834 1.96 fvdl * Setup the allowed SCSI Sequences based on operational mode.
4835 1.96 fvdl * If we are a target, we'll enalbe select in operations once
4836 1.96 fvdl * we've had a lun enabled.
4837 1.42 fvdl */
4838 1.96 fvdl scsiseq_template = ENSELO|ENAUTOATNO|ENAUTOATNP;
4839 1.96 fvdl if ((ahc->flags & AHC_INITIATORROLE) != 0)
4840 1.96 fvdl scsiseq_template |= ENRSELI;
4841 1.96 fvdl ahc_outb(ahc, SCSISEQ_TEMPLATE, scsiseq_template);
4842 1.42 fvdl
4843 1.96 fvdl /*
4844 1.96 fvdl * Load the Sequencer program and Enable the adapter
4845 1.96 fvdl * in "fast" mode.
4846 1.96 fvdl */
4847 1.96 fvdl if (bootverbose)
4848 1.96 fvdl printf("%s: Downloading Sequencer Program...",
4849 1.96 fvdl ahc_name(ahc));
4850 1.14 gibbs
4851 1.96 fvdl ahc_loadseq(ahc);
4852 1.42 fvdl
4853 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
4854 1.96 fvdl int wait;
4855 1.14 gibbs
4856 1.96 fvdl /*
4857 1.96 fvdl * Wait for up to 500ms for our transceivers
4858 1.96 fvdl * to settle. If the adapter does not have
4859 1.96 fvdl * a cable attached, the tranceivers may
4860 1.96 fvdl * never settle, so don't complain if we
4861 1.96 fvdl * fail here.
4862 1.96 fvdl */
4863 1.96 fvdl ahc_pause(ahc);
4864 1.96 fvdl for (wait = 5000;
4865 1.96 fvdl (ahc_inb(ahc, SBLKCTL) & (ENAB40|ENAB20)) == 0 && wait;
4866 1.96 fvdl wait--)
4867 1.96 fvdl ahc_delay(100);
4868 1.96 fvdl ahc_unpause(ahc);
4869 1.96 fvdl }
4870 1.1 mycroft
4871 1.96 fvdl /* We have to wait until after any system dumps... */
4872 1.96 fvdl ahc->shutdown_hook = shutdownhook_establish(ahc_shutdown, ahc);
4873 1.1 mycroft
4874 1.96 fvdl return (0);
4875 1.96 fvdl }
4876 1.1 mycroft
4877 1.96 fvdl void
4878 1.96 fvdl ahc_intr_enable(struct ahc_softc *ahc, int enable)
4879 1.96 fvdl {
4880 1.96 fvdl u_int hcntrl;
4881 1.42 fvdl
4882 1.96 fvdl hcntrl = ahc_inb(ahc, HCNTRL);
4883 1.96 fvdl hcntrl &= ~INTEN;
4884 1.96 fvdl ahc->pause &= ~INTEN;
4885 1.96 fvdl ahc->unpause &= ~INTEN;
4886 1.96 fvdl if (enable) {
4887 1.96 fvdl hcntrl |= INTEN;
4888 1.96 fvdl ahc->pause |= INTEN;
4889 1.96 fvdl ahc->unpause |= INTEN;
4890 1.96 fvdl }
4891 1.96 fvdl ahc_outb(ahc, HCNTRL, hcntrl);
4892 1.96 fvdl }
4893 1.42 fvdl
4894 1.96 fvdl /*
4895 1.96 fvdl * Ensure that the card is paused in a location
4896 1.96 fvdl * outside of all critical sections and that all
4897 1.96 fvdl * pending work is completed prior to returning.
4898 1.96 fvdl * This routine should only be called from outside
4899 1.96 fvdl * an interrupt context.
4900 1.96 fvdl */
4901 1.96 fvdl void
4902 1.96 fvdl ahc_pause_and_flushwork(struct ahc_softc *ahc)
4903 1.96 fvdl {
4904 1.96 fvdl int intstat;
4905 1.96 fvdl int maxloops;
4906 1.96 fvdl int paused;
4907 1.96 fvdl
4908 1.96 fvdl maxloops = 1000;
4909 1.96 fvdl ahc->flags |= AHC_ALL_INTERRUPTS;
4910 1.96 fvdl intstat = 0;
4911 1.96 fvdl paused = FALSE;
4912 1.96 fvdl do {
4913 1.96 fvdl if (paused)
4914 1.96 fvdl ahc_unpause(ahc);
4915 1.96 fvdl ahc_intr(ahc);
4916 1.96 fvdl ahc_pause(ahc);
4917 1.96 fvdl paused = TRUE;
4918 1.96 fvdl ahc_outb(ahc, SCSISEQ, ahc_inb(ahc, SCSISEQ) & ~ENSELO);
4919 1.96 fvdl ahc_clear_critical_section(ahc);
4920 1.96 fvdl if (intstat == 0xFF && (ahc->features & AHC_REMOVABLE) != 0)
4921 1.42 fvdl break;
4922 1.96 fvdl } while (--maxloops
4923 1.96 fvdl && (((intstat = ahc_inb(ahc, INTSTAT)) & INT_PEND) != 0
4924 1.96 fvdl || (ahc_inb(ahc, SSTAT0) & (SELDO|SELINGO))));
4925 1.96 fvdl if (maxloops == 0) {
4926 1.96 fvdl printf("Infinite interrupt loop, INTSTAT = %x",
4927 1.96 fvdl ahc_inb(ahc, INTSTAT));
4928 1.14 gibbs }
4929 1.96 fvdl ahc_platform_flushwork(ahc);
4930 1.96 fvdl ahc->flags &= ~AHC_ALL_INTERRUPTS;
4931 1.96 fvdl }
4932 1.96 fvdl
4933 1.96 fvdl int
4934 1.96 fvdl ahc_suspend(struct ahc_softc *ahc)
4935 1.96 fvdl {
4936 1.96 fvdl uint8_t *ptr;
4937 1.96 fvdl int i;
4938 1.96 fvdl
4939 1.96 fvdl ahc_pause_and_flushwork(ahc);
4940 1.42 fvdl
4941 1.96 fvdl if (LIST_FIRST(&ahc->pending_scbs) != NULL)
4942 1.96 fvdl return (EBUSY);
4943 1.42 fvdl
4944 1.96 fvdl #if AHC_TARGET_MODE
4945 1.96 fvdl /*
4946 1.96 fvdl * XXX What about ATIOs that have not yet been serviced?
4947 1.96 fvdl * Perhaps we should just refuse to be suspended if we
4948 1.96 fvdl * are acting in a target role.
4949 1.96 fvdl */
4950 1.96 fvdl if (ahc->pending_device != NULL)
4951 1.96 fvdl return (EBUSY);
4952 1.42 fvdl #endif
4953 1.96 fvdl
4954 1.96 fvdl /* Save volatile registers */
4955 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0) {
4956 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) | SELBUSB);
4957 1.96 fvdl ahc->suspend_state.channel[1].scsiseq = ahc_inb(ahc, SCSISEQ);
4958 1.96 fvdl ahc->suspend_state.channel[1].sxfrctl0 = ahc_inb(ahc, SXFRCTL0);
4959 1.96 fvdl ahc->suspend_state.channel[1].sxfrctl1 = ahc_inb(ahc, SXFRCTL1);
4960 1.96 fvdl ahc->suspend_state.channel[1].simode0 = ahc_inb(ahc, SIMODE0);
4961 1.96 fvdl ahc->suspend_state.channel[1].simode1 = ahc_inb(ahc, SIMODE1);
4962 1.96 fvdl ahc->suspend_state.channel[1].seltimer = ahc_inb(ahc, SELTIMER);
4963 1.96 fvdl ahc->suspend_state.channel[1].seqctl = ahc_inb(ahc, SEQCTL);
4964 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) & ~SELBUSB);
4965 1.96 fvdl }
4966 1.96 fvdl ahc->suspend_state.channel[0].scsiseq = ahc_inb(ahc, SCSISEQ);
4967 1.96 fvdl ahc->suspend_state.channel[0].sxfrctl0 = ahc_inb(ahc, SXFRCTL0);
4968 1.96 fvdl ahc->suspend_state.channel[0].sxfrctl1 = ahc_inb(ahc, SXFRCTL1);
4969 1.96 fvdl ahc->suspend_state.channel[0].simode0 = ahc_inb(ahc, SIMODE0);
4970 1.96 fvdl ahc->suspend_state.channel[0].simode1 = ahc_inb(ahc, SIMODE1);
4971 1.96 fvdl ahc->suspend_state.channel[0].seltimer = ahc_inb(ahc, SELTIMER);
4972 1.96 fvdl ahc->suspend_state.channel[0].seqctl = ahc_inb(ahc, SEQCTL);
4973 1.96 fvdl
4974 1.96 fvdl if ((ahc->chip & AHC_PCI) != 0) {
4975 1.96 fvdl ahc->suspend_state.dscommand0 = ahc_inb(ahc, DSCOMMAND0);
4976 1.96 fvdl ahc->suspend_state.dspcistatus = ahc_inb(ahc, DSPCISTATUS);
4977 1.96 fvdl }
4978 1.96 fvdl
4979 1.96 fvdl if ((ahc->features & AHC_DT) != 0) {
4980 1.96 fvdl u_int sfunct;
4981 1.96 fvdl
4982 1.96 fvdl sfunct = ahc_inb(ahc, SFUNCT) & ~ALT_MODE;
4983 1.96 fvdl ahc_outb(ahc, SFUNCT, sfunct | ALT_MODE);
4984 1.96 fvdl ahc->suspend_state.optionmode = ahc_inb(ahc, OPTIONMODE);
4985 1.96 fvdl ahc_outb(ahc, SFUNCT, sfunct);
4986 1.96 fvdl ahc->suspend_state.crccontrol1 = ahc_inb(ahc, CRCCONTROL1);
4987 1.14 gibbs }
4988 1.6 mycroft
4989 1.96 fvdl if ((ahc->features & AHC_MULTI_FUNC) != 0)
4990 1.96 fvdl ahc->suspend_state.scbbaddr = ahc_inb(ahc, SCBBADDR);
4991 1.96 fvdl
4992 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
4993 1.96 fvdl ahc->suspend_state.dff_thrsh = ahc_inb(ahc, DFF_THRSH);
4994 1.96 fvdl
4995 1.96 fvdl ptr = ahc->suspend_state.scratch_ram;
4996 1.96 fvdl for (i = 0; i < 64; i++)
4997 1.96 fvdl *ptr++ = ahc_inb(ahc, SRAM_BASE + i);
4998 1.96 fvdl
4999 1.96 fvdl if ((ahc->features & AHC_MORE_SRAM) != 0) {
5000 1.96 fvdl for (i = 0; i < 16; i++)
5001 1.96 fvdl *ptr++ = ahc_inb(ahc, TARG_OFFSET + i);
5002 1.42 fvdl }
5003 1.1 mycroft
5004 1.96 fvdl ptr = ahc->suspend_state.btt;
5005 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
5006 1.96 fvdl for (i = 0;i < AHC_NUM_TARGETS; i++) {
5007 1.96 fvdl int j;
5008 1.96 fvdl
5009 1.96 fvdl for (j = 0;j < AHC_NUM_LUNS; j++) {
5010 1.96 fvdl u_int tcl;
5011 1.1 mycroft
5012 1.96 fvdl tcl = BUILD_TCL(i << 4, j);
5013 1.96 fvdl *ptr = ahc_index_busy_tcl(ahc, tcl);
5014 1.96 fvdl }
5015 1.96 fvdl }
5016 1.96 fvdl }
5017 1.96 fvdl ahc_shutdown(ahc);
5018 1.96 fvdl return (0);
5019 1.42 fvdl }
5020 1.1 mycroft
5021 1.96 fvdl int
5022 1.96 fvdl ahc_resume(struct ahc_softc *ahc)
5023 1.42 fvdl {
5024 1.96 fvdl uint8_t *ptr;
5025 1.96 fvdl int i;
5026 1.96 fvdl
5027 1.96 fvdl ahc_reset(ahc);
5028 1.96 fvdl
5029 1.96 fvdl ahc_build_free_scb_list(ahc);
5030 1.96 fvdl
5031 1.96 fvdl /* Restore volatile registers */
5032 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0) {
5033 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) | SELBUSB);
5034 1.96 fvdl ahc_outb(ahc, SCSIID, ahc->our_id);
5035 1.96 fvdl ahc_outb(ahc, SCSISEQ, ahc->suspend_state.channel[1].scsiseq);
5036 1.96 fvdl ahc_outb(ahc, SXFRCTL0, ahc->suspend_state.channel[1].sxfrctl0);
5037 1.96 fvdl ahc_outb(ahc, SXFRCTL1, ahc->suspend_state.channel[1].sxfrctl1);
5038 1.96 fvdl ahc_outb(ahc, SIMODE0, ahc->suspend_state.channel[1].simode0);
5039 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc->suspend_state.channel[1].simode1);
5040 1.96 fvdl ahc_outb(ahc, SELTIMER, ahc->suspend_state.channel[1].seltimer);
5041 1.96 fvdl ahc_outb(ahc, SEQCTL, ahc->suspend_state.channel[1].seqctl);
5042 1.96 fvdl ahc_outb(ahc, SBLKCTL, ahc_inb(ahc, SBLKCTL) & ~SELBUSB);
5043 1.96 fvdl }
5044 1.96 fvdl ahc_outb(ahc, SCSISEQ, ahc->suspend_state.channel[0].scsiseq);
5045 1.96 fvdl ahc_outb(ahc, SXFRCTL0, ahc->suspend_state.channel[0].sxfrctl0);
5046 1.96 fvdl ahc_outb(ahc, SXFRCTL1, ahc->suspend_state.channel[0].sxfrctl1);
5047 1.96 fvdl ahc_outb(ahc, SIMODE0, ahc->suspend_state.channel[0].simode0);
5048 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc->suspend_state.channel[0].simode1);
5049 1.96 fvdl ahc_outb(ahc, SELTIMER, ahc->suspend_state.channel[0].seltimer);
5050 1.96 fvdl ahc_outb(ahc, SEQCTL, ahc->suspend_state.channel[0].seqctl);
5051 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
5052 1.96 fvdl ahc_outb(ahc, SCSIID_ULTRA2, ahc->our_id);
5053 1.96 fvdl else
5054 1.96 fvdl ahc_outb(ahc, SCSIID, ahc->our_id);
5055 1.22 cgd
5056 1.96 fvdl if ((ahc->chip & AHC_PCI) != 0) {
5057 1.96 fvdl ahc_outb(ahc, DSCOMMAND0, ahc->suspend_state.dscommand0);
5058 1.96 fvdl ahc_outb(ahc, DSPCISTATUS, ahc->suspend_state.dspcistatus);
5059 1.96 fvdl }
5060 1.6 mycroft
5061 1.96 fvdl if ((ahc->features & AHC_DT) != 0) {
5062 1.96 fvdl u_int sfunct;
5063 1.42 fvdl
5064 1.96 fvdl sfunct = ahc_inb(ahc, SFUNCT) & ~ALT_MODE;
5065 1.96 fvdl ahc_outb(ahc, SFUNCT, sfunct | ALT_MODE);
5066 1.96 fvdl ahc_outb(ahc, OPTIONMODE, ahc->suspend_state.optionmode);
5067 1.96 fvdl ahc_outb(ahc, SFUNCT, sfunct);
5068 1.96 fvdl ahc_outb(ahc, CRCCONTROL1, ahc->suspend_state.crccontrol1);
5069 1.96 fvdl }
5070 1.42 fvdl
5071 1.96 fvdl if ((ahc->features & AHC_MULTI_FUNC) != 0)
5072 1.96 fvdl ahc_outb(ahc, SCBBADDR, ahc->suspend_state.scbbaddr);
5073 1.42 fvdl
5074 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
5075 1.96 fvdl ahc_outb(ahc, DFF_THRSH, ahc->suspend_state.dff_thrsh);
5076 1.42 fvdl
5077 1.96 fvdl ptr = ahc->suspend_state.scratch_ram;
5078 1.96 fvdl for (i = 0; i < 64; i++)
5079 1.96 fvdl ahc_outb(ahc, SRAM_BASE + i, *ptr++);
5080 1.59 pk
5081 1.96 fvdl if ((ahc->features & AHC_MORE_SRAM) != 0) {
5082 1.96 fvdl for (i = 0; i < 16; i++)
5083 1.96 fvdl ahc_outb(ahc, TARG_OFFSET + i, *ptr++);
5084 1.6 mycroft }
5085 1.14 gibbs
5086 1.96 fvdl ptr = ahc->suspend_state.btt;
5087 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
5088 1.96 fvdl for (i = 0;i < AHC_NUM_TARGETS; i++) {
5089 1.96 fvdl int j;
5090 1.14 gibbs
5091 1.96 fvdl for (j = 0;j < AHC_NUM_LUNS; j++) {
5092 1.96 fvdl u_int tcl;
5093 1.59 pk
5094 1.96 fvdl tcl = BUILD_TCL(i << 4, j);
5095 1.96 fvdl ahc_busy_tcl(ahc, tcl, *ptr);
5096 1.96 fvdl }
5097 1.96 fvdl }
5098 1.96 fvdl }
5099 1.96 fvdl return (0);
5100 1.1 mycroft }
5101 1.1 mycroft
5102 1.96 fvdl /************************** Busy Target Table *********************************/
5103 1.1 mycroft /*
5104 1.96 fvdl * Return the untagged transaction id for a given target/channel lun.
5105 1.96 fvdl * Optionally, clear the entry.
5106 1.1 mycroft */
5107 1.96 fvdl u_int
5108 1.96 fvdl ahc_index_busy_tcl(struct ahc_softc *ahc, u_int tcl)
5109 1.1 mycroft {
5110 1.96 fvdl u_int scbid;
5111 1.96 fvdl u_int target_offset;
5112 1.96 fvdl
5113 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
5114 1.96 fvdl u_int saved_scbptr;
5115 1.96 fvdl
5116 1.96 fvdl saved_scbptr = ahc_inb(ahc, SCBPTR);
5117 1.96 fvdl ahc_outb(ahc, SCBPTR, TCL_LUN(tcl));
5118 1.96 fvdl scbid = ahc_inb(ahc, SCB_64_BTT + TCL_TARGET_OFFSET(tcl));
5119 1.96 fvdl ahc_outb(ahc, SCBPTR, saved_scbptr);
5120 1.96 fvdl } else {
5121 1.96 fvdl target_offset = TCL_TARGET_OFFSET(tcl);
5122 1.96 fvdl scbid = ahc_inb(ahc, BUSY_TARGETS + target_offset);
5123 1.96 fvdl }
5124 1.96 fvdl
5125 1.96 fvdl return (scbid);
5126 1.96 fvdl }
5127 1.59 pk
5128 1.96 fvdl void
5129 1.96 fvdl ahc_unbusy_tcl(struct ahc_softc *ahc, u_int tcl)
5130 1.96 fvdl {
5131 1.96 fvdl u_int target_offset;
5132 1.42 fvdl
5133 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
5134 1.96 fvdl u_int saved_scbptr;
5135 1.96 fvdl
5136 1.96 fvdl saved_scbptr = ahc_inb(ahc, SCBPTR);
5137 1.96 fvdl ahc_outb(ahc, SCBPTR, TCL_LUN(tcl));
5138 1.96 fvdl ahc_outb(ahc, SCB_64_BTT+TCL_TARGET_OFFSET(tcl), SCB_LIST_NULL);
5139 1.96 fvdl ahc_outb(ahc, SCBPTR, saved_scbptr);
5140 1.96 fvdl } else {
5141 1.96 fvdl target_offset = TCL_TARGET_OFFSET(tcl);
5142 1.96 fvdl ahc_outb(ahc, BUSY_TARGETS + target_offset, SCB_LIST_NULL);
5143 1.96 fvdl }
5144 1.96 fvdl }
5145 1.42 fvdl
5146 1.96 fvdl void
5147 1.96 fvdl ahc_busy_tcl(struct ahc_softc *ahc, u_int tcl, u_int scbid)
5148 1.96 fvdl {
5149 1.96 fvdl u_int target_offset;
5150 1.42 fvdl
5151 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0) {
5152 1.96 fvdl u_int saved_scbptr;
5153 1.96 fvdl
5154 1.96 fvdl saved_scbptr = ahc_inb(ahc, SCBPTR);
5155 1.96 fvdl ahc_outb(ahc, SCBPTR, TCL_LUN(tcl));
5156 1.96 fvdl ahc_outb(ahc, SCB_64_BTT + TCL_TARGET_OFFSET(tcl), scbid);
5157 1.96 fvdl ahc_outb(ahc, SCBPTR, saved_scbptr);
5158 1.96 fvdl } else {
5159 1.96 fvdl target_offset = TCL_TARGET_OFFSET(tcl);
5160 1.96 fvdl ahc_outb(ahc, BUSY_TARGETS + target_offset, scbid);
5161 1.42 fvdl }
5162 1.96 fvdl }
5163 1.6 mycroft
5164 1.96 fvdl /************************** SCB and SCB queue management **********************/
5165 1.96 fvdl int
5166 1.96 fvdl ahc_match_scb(struct ahc_softc *ahc, struct scb *scb, int target,
5167 1.96 fvdl char channel, int lun, u_int tag, role_t role)
5168 1.96 fvdl {
5169 1.96 fvdl int targ = SCB_GET_TARGET(ahc, scb);
5170 1.96 fvdl char chan = SCB_GET_CHANNEL(ahc, scb);
5171 1.96 fvdl int slun = SCB_GET_LUN(scb);
5172 1.96 fvdl int match;
5173 1.28 leo
5174 1.96 fvdl match = ((chan == channel) || (channel == ALL_CHANNELS));
5175 1.96 fvdl if (match != 0)
5176 1.96 fvdl match = ((targ == target) || (target == CAM_TARGET_WILDCARD));
5177 1.96 fvdl if (match != 0)
5178 1.96 fvdl match = ((lun == slun) || (lun == CAM_LUN_WILDCARD));
5179 1.96 fvdl if (match != 0) {
5180 1.96 fvdl #if 0
5181 1.96 fvdl #if AHC_TARGET_MODE
5182 1.96 fvdl int group;
5183 1.42 fvdl
5184 1.96 fvdl group = XPT_FC_GROUP(scb->io_ctx->ccb_h.func_code);
5185 1.96 fvdl if (role == ROLE_INITIATOR) {
5186 1.96 fvdl match = (group != XPT_FC_GROUP_TMODE)
5187 1.96 fvdl && ((tag == scb->hscb->tag)
5188 1.96 fvdl || (tag == SCB_LIST_NULL));
5189 1.96 fvdl } else if (role == ROLE_TARGET) {
5190 1.96 fvdl match = (group == XPT_FC_GROUP_TMODE)
5191 1.96 fvdl && ((tag == scb->io_ctx->csio.tag_id)
5192 1.96 fvdl || (tag == SCB_LIST_NULL));
5193 1.96 fvdl }
5194 1.96 fvdl #else /* !AHC_TARGET_MODE */
5195 1.96 fvdl match = ((tag == scb->hscb->tag) || (tag == SCB_LIST_NULL));
5196 1.96 fvdl #endif /* AHC_TARGET_MODE */
5197 1.96 fvdl #endif
5198 1.28 leo }
5199 1.42 fvdl
5200 1.96 fvdl return match;
5201 1.96 fvdl }
5202 1.96 fvdl
5203 1.96 fvdl void
5204 1.96 fvdl ahc_freeze_devq(struct ahc_softc *ahc, struct scb *scb)
5205 1.96 fvdl {
5206 1.96 fvdl int target;
5207 1.96 fvdl char channel;
5208 1.96 fvdl int lun;
5209 1.42 fvdl
5210 1.96 fvdl target = SCB_GET_TARGET(ahc, scb);
5211 1.96 fvdl lun = SCB_GET_LUN(scb);
5212 1.96 fvdl channel = SCB_GET_CHANNEL(ahc, scb);
5213 1.96 fvdl
5214 1.96 fvdl ahc_search_qinfifo(ahc, target, channel, lun,
5215 1.96 fvdl /*tag*/SCB_LIST_NULL, ROLE_UNKNOWN,
5216 1.96 fvdl CAM_REQUEUE_REQ, SEARCH_COMPLETE);
5217 1.42 fvdl
5218 1.96 fvdl ahc_platform_freeze_devq(ahc, scb);
5219 1.96 fvdl }
5220 1.42 fvdl
5221 1.96 fvdl void
5222 1.96 fvdl ahc_qinfifo_requeue_tail(struct ahc_softc *ahc, struct scb *scb)
5223 1.96 fvdl {
5224 1.96 fvdl struct scb *prev_scb;
5225 1.42 fvdl
5226 1.96 fvdl prev_scb = NULL;
5227 1.96 fvdl if (ahc_qinfifo_count(ahc) != 0) {
5228 1.96 fvdl u_int prev_tag;
5229 1.96 fvdl uint8_t prev_pos;
5230 1.42 fvdl
5231 1.96 fvdl prev_pos = ahc->qinfifonext - 1;
5232 1.96 fvdl prev_tag = ahc->qinfifo[prev_pos];
5233 1.96 fvdl prev_scb = ahc_lookup_scb(ahc, prev_tag);
5234 1.42 fvdl }
5235 1.96 fvdl ahc_qinfifo_requeue(ahc, prev_scb, scb);
5236 1.96 fvdl if ((ahc->features & AHC_QUEUE_REGS) != 0) {
5237 1.96 fvdl ahc_outb(ahc, HNSCB_QOFF, ahc->qinfifonext);
5238 1.96 fvdl } else {
5239 1.96 fvdl ahc_outb(ahc, KERNEL_QINPOS, ahc->qinfifonext);
5240 1.1 mycroft }
5241 1.96 fvdl }
5242 1.42 fvdl
5243 1.96 fvdl static void
5244 1.96 fvdl ahc_qinfifo_requeue(struct ahc_softc *ahc, struct scb *prev_scb,
5245 1.96 fvdl struct scb *scb)
5246 1.96 fvdl {
5247 1.96 fvdl if (prev_scb == NULL) {
5248 1.96 fvdl ahc_outb(ahc, NEXT_QUEUED_SCB, scb->hscb->tag);
5249 1.96 fvdl } else {
5250 1.96 fvdl prev_scb->hscb->next = scb->hscb->tag;
5251 1.96 fvdl ahc_sync_scb(ahc, prev_scb,
5252 1.96 fvdl BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
5253 1.96 fvdl }
5254 1.96 fvdl ahc->qinfifo[ahc->qinfifonext++] = scb->hscb->tag;
5255 1.96 fvdl scb->hscb->next = ahc->next_queued_scb->hscb->tag;
5256 1.96 fvdl ahc_sync_scb(ahc, scb, BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
5257 1.42 fvdl }
5258 1.42 fvdl
5259 1.96 fvdl static int
5260 1.96 fvdl ahc_qinfifo_count(struct ahc_softc *ahc)
5261 1.96 fvdl {
5262 1.96 fvdl uint8_t qinpos;
5263 1.96 fvdl uint8_t diff;
5264 1.42 fvdl
5265 1.96 fvdl if ((ahc->features & AHC_QUEUE_REGS) != 0) {
5266 1.96 fvdl qinpos = ahc_inb(ahc, SNSCB_QOFF);
5267 1.96 fvdl ahc_outb(ahc, SNSCB_QOFF, qinpos);
5268 1.96 fvdl } else
5269 1.96 fvdl qinpos = ahc_inb(ahc, QINPOS);
5270 1.96 fvdl diff = ahc->qinfifonext - qinpos;
5271 1.96 fvdl return (diff);
5272 1.1 mycroft }
5273 1.1 mycroft
5274 1.1 mycroft int
5275 1.96 fvdl ahc_search_qinfifo(struct ahc_softc *ahc, int target, char channel,
5276 1.96 fvdl int lun, u_int tag, role_t role, uint32_t status,
5277 1.96 fvdl ahc_search_action action)
5278 1.1 mycroft {
5279 1.96 fvdl struct scb *scb;
5280 1.96 fvdl struct scb *prev_scb;
5281 1.96 fvdl uint8_t qinstart;
5282 1.96 fvdl uint8_t qinpos;
5283 1.96 fvdl uint8_t qintail;
5284 1.96 fvdl uint8_t next;
5285 1.96 fvdl uint8_t prev;
5286 1.96 fvdl uint8_t curscbptr;
5287 1.96 fvdl int found;
5288 1.96 fvdl int have_qregs;
5289 1.96 fvdl
5290 1.96 fvdl qintail = ahc->qinfifonext;
5291 1.96 fvdl have_qregs = (ahc->features & AHC_QUEUE_REGS) != 0;
5292 1.96 fvdl if (have_qregs) {
5293 1.96 fvdl qinstart = ahc_inb(ahc, SNSCB_QOFF);
5294 1.96 fvdl ahc_outb(ahc, SNSCB_QOFF, qinstart);
5295 1.96 fvdl } else
5296 1.96 fvdl qinstart = ahc_inb(ahc, QINPOS);
5297 1.96 fvdl qinpos = qinstart;
5298 1.96 fvdl found = 0;
5299 1.96 fvdl prev_scb = NULL;
5300 1.42 fvdl
5301 1.96 fvdl if (action == SEARCH_COMPLETE) {
5302 1.96 fvdl /*
5303 1.96 fvdl * Don't attempt to run any queued untagged transactions
5304 1.96 fvdl * until we are done with the abort process.
5305 1.96 fvdl */
5306 1.96 fvdl ahc_freeze_untagged_queues(ahc);
5307 1.42 fvdl }
5308 1.28 leo
5309 1.1 mycroft /*
5310 1.96 fvdl * Start with an empty queue. Entries that are not chosen
5311 1.96 fvdl * for removal will be re-added to the queue as we go.
5312 1.1 mycroft */
5313 1.96 fvdl ahc->qinfifonext = qinpos;
5314 1.96 fvdl ahc_outb(ahc, NEXT_QUEUED_SCB, ahc->next_queued_scb->hscb->tag);
5315 1.59 pk
5316 1.96 fvdl while (qinpos != qintail) {
5317 1.96 fvdl scb = ahc_lookup_scb(ahc, ahc->qinfifo[qinpos]);
5318 1.96 fvdl if (scb == NULL) {
5319 1.96 fvdl printf("qinpos = %d, SCB index = %d\n",
5320 1.96 fvdl qinpos, ahc->qinfifo[qinpos]);
5321 1.96 fvdl panic("Loop 1\n");
5322 1.96 fvdl }
5323 1.1 mycroft
5324 1.96 fvdl if (ahc_match_scb(ahc, scb, target, channel, lun, tag, role)) {
5325 1.96 fvdl /*
5326 1.96 fvdl * We found an scb that needs to be acted on.
5327 1.96 fvdl */
5328 1.96 fvdl found++;
5329 1.96 fvdl switch (action) {
5330 1.96 fvdl case SEARCH_COMPLETE:
5331 1.96 fvdl {
5332 1.96 fvdl cam_status ostat;
5333 1.96 fvdl cam_status cstat;
5334 1.6 mycroft
5335 1.96 fvdl ostat = ahc_get_transaction_status(scb);
5336 1.96 fvdl if (ostat == CAM_REQ_INPROG)
5337 1.96 fvdl ahc_set_transaction_status(scb, status);
5338 1.96 fvdl cstat = ahc_get_transaction_status(scb);
5339 1.96 fvdl if (cstat != CAM_REQ_CMP)
5340 1.96 fvdl ahc_freeze_scb(scb);
5341 1.96 fvdl if ((scb->flags & SCB_ACTIVE) == 0)
5342 1.96 fvdl printf("Inactive SCB in qinfifo\n");
5343 1.96 fvdl ahc_done(ahc, scb);
5344 1.1 mycroft
5345 1.96 fvdl /* FALLTHROUGH */
5346 1.96 fvdl }
5347 1.96 fvdl case SEARCH_REMOVE:
5348 1.96 fvdl break;
5349 1.96 fvdl case SEARCH_COUNT:
5350 1.96 fvdl ahc_qinfifo_requeue(ahc, prev_scb, scb);
5351 1.96 fvdl prev_scb = scb;
5352 1.96 fvdl break;
5353 1.96 fvdl }
5354 1.96 fvdl } else {
5355 1.96 fvdl ahc_qinfifo_requeue(ahc, prev_scb, scb);
5356 1.96 fvdl prev_scb = scb;
5357 1.96 fvdl }
5358 1.96 fvdl qinpos++;
5359 1.96 fvdl }
5360 1.1 mycroft
5361 1.96 fvdl if ((ahc->features & AHC_QUEUE_REGS) != 0) {
5362 1.96 fvdl ahc_outb(ahc, HNSCB_QOFF, ahc->qinfifonext);
5363 1.96 fvdl } else {
5364 1.96 fvdl ahc_outb(ahc, KERNEL_QINPOS, ahc->qinfifonext);
5365 1.96 fvdl }
5366 1.1 mycroft
5367 1.96 fvdl if (action != SEARCH_COUNT
5368 1.96 fvdl && (found != 0)
5369 1.96 fvdl && (qinstart != ahc->qinfifonext)) {
5370 1.96 fvdl /*
5371 1.96 fvdl * The sequencer may be in the process of dmaing
5372 1.96 fvdl * down the SCB at the beginning of the queue.
5373 1.96 fvdl * This could be problematic if either the first,
5374 1.96 fvdl * or the second SCB is removed from the queue
5375 1.96 fvdl * (the first SCB includes a pointer to the "next"
5376 1.96 fvdl * SCB to dma). If we have removed any entries, swap
5377 1.96 fvdl * the first element in the queue with the next HSCB
5378 1.96 fvdl * so the sequencer will notice that NEXT_QUEUED_SCB
5379 1.96 fvdl * has changed during its dma attempt and will retry
5380 1.96 fvdl * the DMA.
5381 1.96 fvdl */
5382 1.96 fvdl scb = ahc_lookup_scb(ahc, ahc->qinfifo[qinstart]);
5383 1.6 mycroft
5384 1.96 fvdl if (scb == NULL) {
5385 1.96 fvdl printf("found = %d, qinstart = %d, qinfifionext = %d\n",
5386 1.96 fvdl found, qinstart, ahc->qinfifonext);
5387 1.96 fvdl panic("First/Second Qinfifo fixup\n");
5388 1.96 fvdl }
5389 1.96 fvdl /*
5390 1.96 fvdl * ahc_swap_with_next_hscb forces our next pointer to
5391 1.96 fvdl * point to the reserved SCB for future commands. Save
5392 1.96 fvdl * and restore our original next pointer to maintain
5393 1.96 fvdl * queue integrity.
5394 1.96 fvdl */
5395 1.96 fvdl next = scb->hscb->next;
5396 1.96 fvdl ahc->scb_data->scbindex[scb->hscb->tag] = NULL;
5397 1.96 fvdl ahc_swap_with_next_hscb(ahc, scb);
5398 1.96 fvdl scb->hscb->next = next;
5399 1.96 fvdl ahc->qinfifo[qinstart] = scb->hscb->tag;
5400 1.96 fvdl
5401 1.96 fvdl /* Tell the card about the new head of the qinfifo. */
5402 1.96 fvdl ahc_outb(ahc, NEXT_QUEUED_SCB, scb->hscb->tag);
5403 1.96 fvdl
5404 1.96 fvdl /* Fixup the tail "next" pointer. */
5405 1.96 fvdl qintail = ahc->qinfifonext - 1;
5406 1.96 fvdl scb = ahc_lookup_scb(ahc, ahc->qinfifo[qintail]);
5407 1.96 fvdl scb->hscb->next = ahc->next_queued_scb->hscb->tag;
5408 1.96 fvdl }
5409 1.6 mycroft
5410 1.28 leo /*
5411 1.96 fvdl * Search waiting for selection list.
5412 1.28 leo */
5413 1.96 fvdl curscbptr = ahc_inb(ahc, SCBPTR);
5414 1.96 fvdl next = ahc_inb(ahc, WAITING_SCBH); /* Start at head of list. */
5415 1.96 fvdl prev = SCB_LIST_NULL;
5416 1.96 fvdl
5417 1.96 fvdl while (next != SCB_LIST_NULL) {
5418 1.96 fvdl uint8_t scb_index;
5419 1.42 fvdl
5420 1.96 fvdl ahc_outb(ahc, SCBPTR, next);
5421 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
5422 1.96 fvdl if (scb_index >= ahc->scb_data->numscbs) {
5423 1.96 fvdl printf("Waiting List inconsistency. "
5424 1.96 fvdl "SCB index == %d, yet numscbs == %d.",
5425 1.96 fvdl scb_index, ahc->scb_data->numscbs);
5426 1.96 fvdl ahc_dump_card_state(ahc);
5427 1.96 fvdl panic("for safety");
5428 1.96 fvdl }
5429 1.96 fvdl scb = ahc_lookup_scb(ahc, scb_index);
5430 1.96 fvdl if (scb == NULL) {
5431 1.96 fvdl printf("scb_index = %d, next = %d\n",
5432 1.96 fvdl scb_index, next);
5433 1.96 fvdl panic("Waiting List traversal\n");
5434 1.42 fvdl }
5435 1.96 fvdl if (ahc_match_scb(ahc, scb, target, channel,
5436 1.96 fvdl lun, SCB_LIST_NULL, role)) {
5437 1.96 fvdl /*
5438 1.96 fvdl * We found an scb that needs to be acted on.
5439 1.96 fvdl */
5440 1.96 fvdl found++;
5441 1.96 fvdl switch (action) {
5442 1.96 fvdl case SEARCH_COMPLETE:
5443 1.96 fvdl {
5444 1.96 fvdl cam_status ostat;
5445 1.96 fvdl cam_status cstat;
5446 1.96 fvdl
5447 1.96 fvdl ostat = ahc_get_transaction_status(scb);
5448 1.96 fvdl if (ostat == CAM_REQ_INPROG)
5449 1.96 fvdl ahc_set_transaction_status(scb, status);
5450 1.96 fvdl cstat = ahc_get_transaction_status(scb);
5451 1.96 fvdl if (cstat != CAM_REQ_CMP)
5452 1.96 fvdl ahc_freeze_scb(scb);
5453 1.96 fvdl if ((scb->flags & SCB_ACTIVE) == 0)
5454 1.96 fvdl printf("Inactive SCB in Waiting List\n");
5455 1.96 fvdl ahc_done(ahc, scb);
5456 1.96 fvdl /* FALLTHROUGH */
5457 1.96 fvdl }
5458 1.96 fvdl case SEARCH_REMOVE:
5459 1.96 fvdl next = ahc_rem_wscb(ahc, next, prev);
5460 1.96 fvdl break;
5461 1.96 fvdl case SEARCH_COUNT:
5462 1.96 fvdl prev = next;
5463 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5464 1.96 fvdl break;
5465 1.96 fvdl }
5466 1.42 fvdl } else {
5467 1.96 fvdl
5468 1.96 fvdl prev = next;
5469 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5470 1.42 fvdl }
5471 1.28 leo }
5472 1.96 fvdl ahc_outb(ahc, SCBPTR, curscbptr);
5473 1.42 fvdl
5474 1.96 fvdl found += ahc_search_untagged_queues(ahc, /*ahc_io_ctx_t*/NULL, target,
5475 1.96 fvdl channel, lun, status, action);
5476 1.42 fvdl
5477 1.96 fvdl if (action == SEARCH_COMPLETE)
5478 1.96 fvdl ahc_release_untagged_queues(ahc);
5479 1.96 fvdl return (found);
5480 1.96 fvdl }
5481 1.6 mycroft
5482 1.96 fvdl int
5483 1.96 fvdl ahc_search_untagged_queues(struct ahc_softc *ahc, struct scsipi_xfer *xs, /*ahc_io_ctx_t ctx,*/
5484 1.96 fvdl int target, char channel, int lun, uint32_t status,
5485 1.96 fvdl ahc_search_action action)
5486 1.96 fvdl {
5487 1.96 fvdl struct scb *scb;
5488 1.96 fvdl int maxtarget;
5489 1.96 fvdl int found;
5490 1.96 fvdl int i;
5491 1.42 fvdl
5492 1.96 fvdl if (action == SEARCH_COMPLETE) {
5493 1.1 mycroft /*
5494 1.96 fvdl * Don't attempt to run any queued untagged transactions
5495 1.96 fvdl * until we are done with the abort process.
5496 1.1 mycroft */
5497 1.96 fvdl ahc_freeze_untagged_queues(ahc);
5498 1.6 mycroft }
5499 1.42 fvdl
5500 1.96 fvdl found = 0;
5501 1.96 fvdl i = 0;
5502 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) == 0) {
5503 1.6 mycroft
5504 1.96 fvdl maxtarget = 16;
5505 1.96 fvdl if (target != CAM_TARGET_WILDCARD) {
5506 1.1 mycroft
5507 1.96 fvdl i = target;
5508 1.96 fvdl if (channel == 'B')
5509 1.96 fvdl i += 8;
5510 1.96 fvdl maxtarget = i + 1;
5511 1.96 fvdl }
5512 1.42 fvdl } else {
5513 1.96 fvdl maxtarget = 0;
5514 1.6 mycroft }
5515 1.6 mycroft
5516 1.96 fvdl for (; i < maxtarget; i++) {
5517 1.96 fvdl struct scb_tailq *untagged_q;
5518 1.96 fvdl struct scb *next_scb;
5519 1.6 mycroft
5520 1.96 fvdl untagged_q = &(ahc->untagged_queues[i]);
5521 1.96 fvdl next_scb = TAILQ_FIRST(untagged_q);
5522 1.96 fvdl while (next_scb != NULL) {
5523 1.42 fvdl
5524 1.96 fvdl scb = next_scb;
5525 1.96 fvdl next_scb = TAILQ_NEXT(scb, links.tqe);
5526 1.42 fvdl
5527 1.42 fvdl /*
5528 1.96 fvdl * The head of the list may be the currently
5529 1.96 fvdl * active untagged command for a device.
5530 1.96 fvdl * We're only searching for commands that
5531 1.96 fvdl * have not been started. A transaction
5532 1.96 fvdl * marked active but still in the qinfifo
5533 1.96 fvdl * is removed by the qinfifo scanning code
5534 1.96 fvdl * above.
5535 1.42 fvdl */
5536 1.96 fvdl if ((scb->flags & SCB_ACTIVE) != 0)
5537 1.96 fvdl continue;
5538 1.96 fvdl
5539 1.96 fvdl if (ahc_match_scb(ahc, scb, target, channel, lun,
5540 1.96 fvdl SCB_LIST_NULL, ROLE_INITIATOR) == 0
5541 1.96 fvdl /*|| (ctx != NULL && ctx != scb->io_ctx)*/)
5542 1.96 fvdl continue;
5543 1.42 fvdl
5544 1.96 fvdl /*
5545 1.96 fvdl * We found an scb that needs to be acted on.
5546 1.96 fvdl */
5547 1.96 fvdl found++;
5548 1.96 fvdl switch (action) {
5549 1.96 fvdl case SEARCH_COMPLETE:
5550 1.96 fvdl {
5551 1.96 fvdl cam_status ostat;
5552 1.96 fvdl cam_status cstat;
5553 1.6 mycroft
5554 1.96 fvdl ostat = ahc_get_transaction_status(scb);
5555 1.96 fvdl if (ostat == CAM_REQ_INPROG)
5556 1.96 fvdl ahc_set_transaction_status(scb, status);
5557 1.96 fvdl cstat = ahc_get_transaction_status(scb);
5558 1.96 fvdl if (cstat != CAM_REQ_CMP)
5559 1.96 fvdl ahc_freeze_scb(scb);
5560 1.96 fvdl if ((scb->flags & SCB_ACTIVE) == 0)
5561 1.96 fvdl printf("Inactive SCB in untaggedQ\n");
5562 1.96 fvdl ahc_done(ahc, scb);
5563 1.96 fvdl break;
5564 1.96 fvdl }
5565 1.96 fvdl case SEARCH_REMOVE:
5566 1.96 fvdl scb->flags &= ~SCB_UNTAGGEDQ;
5567 1.96 fvdl TAILQ_REMOVE(untagged_q, scb, links.tqe);
5568 1.96 fvdl break;
5569 1.96 fvdl case SEARCH_COUNT:
5570 1.96 fvdl break;
5571 1.6 mycroft }
5572 1.42 fvdl }
5573 1.42 fvdl }
5574 1.42 fvdl
5575 1.96 fvdl if (action == SEARCH_COMPLETE)
5576 1.96 fvdl ahc_release_untagged_queues(ahc);
5577 1.96 fvdl return (found);
5578 1.96 fvdl }
5579 1.42 fvdl
5580 1.96 fvdl int
5581 1.96 fvdl ahc_search_disc_list(struct ahc_softc *ahc, int target, char channel,
5582 1.96 fvdl int lun, u_int tag, int stop_on_first, int remove,
5583 1.96 fvdl int save_state)
5584 1.96 fvdl {
5585 1.96 fvdl struct scb *scbp;
5586 1.96 fvdl u_int next;
5587 1.96 fvdl u_int prev;
5588 1.96 fvdl u_int count;
5589 1.96 fvdl u_int active_scb;
5590 1.42 fvdl
5591 1.96 fvdl count = 0;
5592 1.96 fvdl next = ahc_inb(ahc, DISCONNECTED_SCBH);
5593 1.96 fvdl prev = SCB_LIST_NULL;
5594 1.59 pk
5595 1.96 fvdl if (save_state) {
5596 1.96 fvdl /* restore this when we're done */
5597 1.96 fvdl active_scb = ahc_inb(ahc, SCBPTR);
5598 1.96 fvdl } else
5599 1.96 fvdl /* Silence compiler */
5600 1.96 fvdl active_scb = SCB_LIST_NULL;
5601 1.9 explorer
5602 1.96 fvdl while (next != SCB_LIST_NULL) {
5603 1.96 fvdl u_int scb_index;
5604 1.1 mycroft
5605 1.96 fvdl ahc_outb(ahc, SCBPTR, next);
5606 1.96 fvdl scb_index = ahc_inb(ahc, SCB_TAG);
5607 1.96 fvdl if (scb_index >= ahc->scb_data->numscbs) {
5608 1.96 fvdl printf("Disconnected List inconsistency. "
5609 1.96 fvdl "SCB index == %d, yet numscbs == %d.",
5610 1.96 fvdl scb_index, ahc->scb_data->numscbs);
5611 1.96 fvdl ahc_dump_card_state(ahc);
5612 1.96 fvdl panic("for safety");
5613 1.96 fvdl }
5614 1.1 mycroft
5615 1.96 fvdl if (next == prev) {
5616 1.96 fvdl panic("Disconnected List Loop. "
5617 1.96 fvdl "cur SCBPTR == %x, prev SCBPTR == %x.",
5618 1.96 fvdl next, prev);
5619 1.96 fvdl }
5620 1.96 fvdl scbp = ahc_lookup_scb(ahc, scb_index);
5621 1.96 fvdl if (ahc_match_scb(ahc, scbp, target, channel, lun,
5622 1.96 fvdl tag, ROLE_INITIATOR)) {
5623 1.96 fvdl count++;
5624 1.96 fvdl if (remove) {
5625 1.96 fvdl next =
5626 1.96 fvdl ahc_rem_scb_from_disc_list(ahc, prev, next);
5627 1.96 fvdl } else {
5628 1.96 fvdl prev = next;
5629 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5630 1.96 fvdl }
5631 1.96 fvdl if (stop_on_first)
5632 1.96 fvdl break;
5633 1.96 fvdl } else {
5634 1.96 fvdl prev = next;
5635 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5636 1.96 fvdl }
5637 1.42 fvdl }
5638 1.96 fvdl if (save_state)
5639 1.96 fvdl ahc_outb(ahc, SCBPTR, active_scb);
5640 1.96 fvdl return (count);
5641 1.96 fvdl }
5642 1.1 mycroft
5643 1.96 fvdl /*
5644 1.96 fvdl * Remove an SCB from the on chip list of disconnected transactions.
5645 1.96 fvdl * This is empty/unused if we are not performing SCB paging.
5646 1.96 fvdl */
5647 1.96 fvdl static u_int
5648 1.96 fvdl ahc_rem_scb_from_disc_list(struct ahc_softc *ahc, u_int prev, u_int scbptr)
5649 1.96 fvdl {
5650 1.96 fvdl u_int next;
5651 1.96 fvdl
5652 1.96 fvdl ahc_outb(ahc, SCBPTR, scbptr);
5653 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5654 1.96 fvdl
5655 1.96 fvdl ahc_outb(ahc, SCB_CONTROL, 0);
5656 1.6 mycroft
5657 1.96 fvdl ahc_add_curscb_to_free_list(ahc);
5658 1.6 mycroft
5659 1.96 fvdl if (prev != SCB_LIST_NULL) {
5660 1.96 fvdl ahc_outb(ahc, SCBPTR, prev);
5661 1.96 fvdl ahc_outb(ahc, SCB_NEXT, next);
5662 1.96 fvdl } else
5663 1.96 fvdl ahc_outb(ahc, DISCONNECTED_SCBH, next);
5664 1.6 mycroft
5665 1.96 fvdl return (next);
5666 1.96 fvdl }
5667 1.42 fvdl
5668 1.96 fvdl /*
5669 1.96 fvdl * Add the SCB as selected by SCBPTR onto the on chip list of
5670 1.96 fvdl * free hardware SCBs. This list is empty/unused if we are not
5671 1.96 fvdl * performing SCB paging.
5672 1.96 fvdl */
5673 1.96 fvdl static void
5674 1.96 fvdl ahc_add_curscb_to_free_list(struct ahc_softc *ahc)
5675 1.96 fvdl {
5676 1.42 fvdl /*
5677 1.96 fvdl * Invalidate the tag so that our abort
5678 1.96 fvdl * routines don't think it's active.
5679 1.42 fvdl */
5680 1.96 fvdl ahc_outb(ahc, SCB_TAG, SCB_LIST_NULL);
5681 1.96 fvdl
5682 1.96 fvdl if ((ahc->flags & AHC_PAGESCBS) != 0) {
5683 1.96 fvdl ahc_outb(ahc, SCB_NEXT, ahc_inb(ahc, FREE_SCBH));
5684 1.96 fvdl ahc_outb(ahc, FREE_SCBH, ahc_inb(ahc, SCBPTR));
5685 1.96 fvdl }
5686 1.96 fvdl }
5687 1.96 fvdl
5688 1.96 fvdl /*
5689 1.96 fvdl * Manipulate the waiting for selection list and return the
5690 1.96 fvdl * scb that follows the one that we remove.
5691 1.96 fvdl */
5692 1.96 fvdl static u_int
5693 1.96 fvdl ahc_rem_wscb(struct ahc_softc *ahc, u_int scbpos, u_int prev)
5694 1.96 fvdl {
5695 1.96 fvdl u_int curscb, next;
5696 1.6 mycroft
5697 1.6 mycroft /*
5698 1.96 fvdl * Select the SCB we want to abort and
5699 1.96 fvdl * pull the next pointer out of it.
5700 1.96 fvdl */
5701 1.96 fvdl curscb = ahc_inb(ahc, SCBPTR);
5702 1.96 fvdl ahc_outb(ahc, SCBPTR, scbpos);
5703 1.96 fvdl next = ahc_inb(ahc, SCB_NEXT);
5704 1.6 mycroft
5705 1.96 fvdl /* Clear the necessary fields */
5706 1.96 fvdl ahc_outb(ahc, SCB_CONTROL, 0);
5707 1.6 mycroft
5708 1.96 fvdl ahc_add_curscb_to_free_list(ahc);
5709 1.1 mycroft
5710 1.96 fvdl /* update the waiting list */
5711 1.96 fvdl if (prev == SCB_LIST_NULL) {
5712 1.96 fvdl /* First in the list */
5713 1.96 fvdl ahc_outb(ahc, WAITING_SCBH, next);
5714 1.52 fvdl
5715 1.96 fvdl /*
5716 1.96 fvdl * Ensure we aren't attempting to perform
5717 1.96 fvdl * selection for this entry.
5718 1.96 fvdl */
5719 1.96 fvdl ahc_outb(ahc, SCSISEQ, (ahc_inb(ahc, SCSISEQ) & ~ENSELO));
5720 1.96 fvdl } else {
5721 1.96 fvdl /*
5722 1.96 fvdl * Select the scb that pointed to us
5723 1.96 fvdl * and update its next pointer.
5724 1.96 fvdl */
5725 1.96 fvdl ahc_outb(ahc, SCBPTR, prev);
5726 1.96 fvdl ahc_outb(ahc, SCB_NEXT, next);
5727 1.52 fvdl }
5728 1.52 fvdl
5729 1.96 fvdl /*
5730 1.96 fvdl * Point us back at the original scb position.
5731 1.96 fvdl */
5732 1.96 fvdl ahc_outb(ahc, SCBPTR, curscb);
5733 1.96 fvdl return next;
5734 1.52 fvdl }
5735 1.52 fvdl
5736 1.96 fvdl /******************************** Error Handling ******************************/
5737 1.1 mycroft /*
5738 1.96 fvdl * Abort all SCBs that match the given description (target/channel/lun/tag),
5739 1.96 fvdl * setting their status to the passed in status if the status has not already
5740 1.96 fvdl * been modified from CAM_REQ_INPROG. This routine assumes that the sequencer
5741 1.96 fvdl * is paused before it is called.
5742 1.1 mycroft */
5743 1.96 fvdl int
5744 1.96 fvdl ahc_abort_scbs(struct ahc_softc *ahc, int target, char channel,
5745 1.96 fvdl int lun, u_int tag, role_t role, uint32_t status)
5746 1.1 mycroft {
5747 1.96 fvdl struct scb *scbp;
5748 1.96 fvdl struct scb *scbp_next;
5749 1.96 fvdl u_int active_scb;
5750 1.96 fvdl int i, j;
5751 1.96 fvdl int maxtarget;
5752 1.96 fvdl int minlun;
5753 1.96 fvdl int maxlun;
5754 1.42 fvdl
5755 1.96 fvdl int found;
5756 1.18 thorpej
5757 1.96 fvdl /*
5758 1.96 fvdl * Don't attempt to run any queued untagged transactions
5759 1.96 fvdl * until we are done with the abort process.
5760 1.96 fvdl */
5761 1.96 fvdl ahc_freeze_untagged_queues(ahc);
5762 1.18 thorpej
5763 1.96 fvdl /* restore this when we're done */
5764 1.96 fvdl active_scb = ahc_inb(ahc, SCBPTR);
5765 1.18 thorpej
5766 1.96 fvdl found = ahc_search_qinfifo(ahc, target, channel, lun, SCB_LIST_NULL,
5767 1.96 fvdl role, CAM_REQUEUE_REQ, SEARCH_COMPLETE);
5768 1.42 fvdl
5769 1.96 fvdl /*
5770 1.96 fvdl * Clean out the busy target table for any untagged commands.
5771 1.96 fvdl */
5772 1.96 fvdl i = 0;
5773 1.96 fvdl maxtarget = 16;
5774 1.96 fvdl if (target != CAM_TARGET_WILDCARD) {
5775 1.96 fvdl i = target;
5776 1.96 fvdl if (channel == 'B')
5777 1.96 fvdl i += 8;
5778 1.96 fvdl maxtarget = i + 1;
5779 1.96 fvdl }
5780 1.96 fvdl
5781 1.96 fvdl if (lun == CAM_LUN_WILDCARD) {
5782 1.96 fvdl
5783 1.96 fvdl /*
5784 1.96 fvdl * Unless we are using an SCB based
5785 1.96 fvdl * busy targets table, there is only
5786 1.96 fvdl * one table entry for all luns of
5787 1.96 fvdl * a target.
5788 1.96 fvdl */
5789 1.96 fvdl minlun = 0;
5790 1.96 fvdl maxlun = 1;
5791 1.96 fvdl if ((ahc->flags & AHC_SCB_BTT) != 0)
5792 1.96 fvdl maxlun = AHC_NUM_LUNS;
5793 1.96 fvdl } else {
5794 1.96 fvdl minlun = lun;
5795 1.96 fvdl maxlun = lun + 1;
5796 1.96 fvdl }
5797 1.42 fvdl
5798 1.96 fvdl if (role != ROLE_TARGET) {
5799 1.96 fvdl for (;i < maxtarget; i++) {
5800 1.96 fvdl for (j = minlun;j < maxlun; j++) {
5801 1.96 fvdl u_int scbid;
5802 1.96 fvdl u_int tcl;
5803 1.96 fvdl
5804 1.96 fvdl tcl = BUILD_TCL(i << 4, j);
5805 1.96 fvdl scbid = ahc_index_busy_tcl(ahc, tcl);
5806 1.96 fvdl scbp = ahc_lookup_scb(ahc, scbid);
5807 1.96 fvdl if (scbp == NULL
5808 1.96 fvdl || ahc_match_scb(ahc, scbp, target, channel,
5809 1.96 fvdl lun, tag, role) == 0)
5810 1.96 fvdl continue;
5811 1.96 fvdl ahc_unbusy_tcl(ahc, BUILD_TCL(i << 4, j));
5812 1.70 bouyer }
5813 1.18 thorpej }
5814 1.18 thorpej
5815 1.18 thorpej /*
5816 1.96 fvdl * Go through the disconnected list and remove any entries we
5817 1.96 fvdl * have queued for completion, 0'ing their control byte too.
5818 1.96 fvdl * We save the active SCB and restore it ourselves, so there
5819 1.96 fvdl * is no reason for this search to restore it too.
5820 1.96 fvdl */
5821 1.96 fvdl ahc_search_disc_list(ahc, target, channel, lun, tag,
5822 1.96 fvdl /*stop_on_first*/FALSE, /*remove*/TRUE,
5823 1.96 fvdl /*save_state*/FALSE);
5824 1.96 fvdl }
5825 1.42 fvdl
5826 1.96 fvdl /*
5827 1.96 fvdl * Go through the hardware SCB array looking for commands that
5828 1.96 fvdl * were active but not on any list. In some cases, these remnants
5829 1.96 fvdl * might not still have mappings in the scbindex array (e.g. unexpected
5830 1.96 fvdl * bus free with the same scb queued for an abort). Don't hold this
5831 1.96 fvdl * against them.
5832 1.96 fvdl */
5833 1.96 fvdl for (i = 0; i < ahc->scb_data->maxhscbs; i++) {
5834 1.96 fvdl u_int scbid;
5835 1.42 fvdl
5836 1.96 fvdl ahc_outb(ahc, SCBPTR, i);
5837 1.96 fvdl scbid = ahc_inb(ahc, SCB_TAG);
5838 1.96 fvdl scbp = ahc_lookup_scb(ahc, scbid);
5839 1.96 fvdl if ((scbp == NULL && scbid != SCB_LIST_NULL)
5840 1.96 fvdl || (scbp != NULL
5841 1.96 fvdl && ahc_match_scb(ahc, scbp, target, channel, lun, tag, role)))
5842 1.96 fvdl ahc_add_curscb_to_free_list(ahc);
5843 1.96 fvdl }
5844 1.42 fvdl
5845 1.96 fvdl /*
5846 1.96 fvdl * Go through the pending CCB list and look for
5847 1.96 fvdl * commands for this target that are still active.
5848 1.96 fvdl * These are other tagged commands that were
5849 1.96 fvdl * disconnected when the reset occurred.
5850 1.96 fvdl */
5851 1.96 fvdl scbp_next = LIST_FIRST(&ahc->pending_scbs);
5852 1.96 fvdl while (scbp_next != NULL) {
5853 1.96 fvdl scbp = scbp_next;
5854 1.96 fvdl scbp_next = LIST_NEXT(scbp, pending_links);
5855 1.96 fvdl if (ahc_match_scb(ahc, scbp, target, channel, lun, tag, role)) {
5856 1.96 fvdl cam_status ostat;
5857 1.96 fvdl
5858 1.96 fvdl ostat = ahc_get_transaction_status(scbp);
5859 1.96 fvdl if (ostat == CAM_REQ_INPROG)
5860 1.96 fvdl ahc_set_transaction_status(scbp, status);
5861 1.96 fvdl if (ahc_get_transaction_status(scbp) != CAM_REQ_CMP)
5862 1.96 fvdl ahc_freeze_scb(scbp);
5863 1.96 fvdl if ((scbp->flags & SCB_ACTIVE) == 0)
5864 1.96 fvdl printf("Inactive SCB on pending list\n");
5865 1.96 fvdl ahc_done(ahc, scbp);
5866 1.96 fvdl found++;
5867 1.70 bouyer }
5868 1.42 fvdl }
5869 1.96 fvdl ahc_outb(ahc, SCBPTR, active_scb);
5870 1.96 fvdl ahc_platform_abort_scbs(ahc, target, channel, lun, tag, role, status);
5871 1.96 fvdl ahc_release_untagged_queues(ahc);
5872 1.96 fvdl return found;
5873 1.42 fvdl }
5874 1.42 fvdl
5875 1.70 bouyer static void
5876 1.96 fvdl ahc_reset_current_bus(struct ahc_softc *ahc)
5877 1.42 fvdl {
5878 1.96 fvdl uint8_t scsiseq;
5879 1.96 fvdl
5880 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc_inb(ahc, SIMODE1) & ~ENSCSIRST);
5881 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ);
5882 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq | SCSIRSTO);
5883 1.96 fvdl ahc_flush_device_writes(ahc);
5884 1.96 fvdl ahc_delay(AHC_BUSRESET_DELAY);
5885 1.96 fvdl /* Turn off the bus reset */
5886 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq & ~SCSIRSTO);
5887 1.42 fvdl
5888 1.96 fvdl ahc_clear_intstat(ahc);
5889 1.42 fvdl
5890 1.96 fvdl /* Re-enable reset interrupts */
5891 1.96 fvdl ahc_outb(ahc, SIMODE1, ahc_inb(ahc, SIMODE1) | ENSCSIRST);
5892 1.96 fvdl }
5893 1.42 fvdl
5894 1.96 fvdl int
5895 1.96 fvdl ahc_reset_channel(struct ahc_softc *ahc, char channel, int initiate_reset)
5896 1.96 fvdl {
5897 1.96 fvdl struct ahc_devinfo devinfo;
5898 1.96 fvdl u_int initiator, target, max_scsiid;
5899 1.96 fvdl u_int sblkctl;
5900 1.96 fvdl u_int scsiseq;
5901 1.96 fvdl u_int simode1;
5902 1.96 fvdl int found;
5903 1.96 fvdl int restart_needed;
5904 1.96 fvdl char cur_channel;
5905 1.18 thorpej
5906 1.96 fvdl ahc->pending_device = NULL;
5907 1.59 pk
5908 1.96 fvdl ahc_compile_devinfo(&devinfo,
5909 1.96 fvdl CAM_TARGET_WILDCARD,
5910 1.96 fvdl CAM_TARGET_WILDCARD,
5911 1.96 fvdl CAM_LUN_WILDCARD,
5912 1.96 fvdl channel, ROLE_UNKNOWN);
5913 1.96 fvdl ahc_pause(ahc);
5914 1.18 thorpej
5915 1.96 fvdl /* Make sure the sequencer is in a safe location. */
5916 1.96 fvdl ahc_clear_critical_section(ahc);
5917 1.18 thorpej
5918 1.9 explorer /*
5919 1.96 fvdl * Run our command complete fifos to ensure that we perform
5920 1.96 fvdl * completion processing on any commands that 'completed'
5921 1.96 fvdl * before the reset occurred.
5922 1.96 fvdl */
5923 1.96 fvdl ahc_run_qoutfifo(ahc);
5924 1.96 fvdl #if AHC_TARGET_MODE
5925 1.96 fvdl /*
5926 1.96 fvdl * XXX - In Twin mode, the tqinfifo may have commands
5927 1.96 fvdl * for an unaffected channel in it. However, if
5928 1.96 fvdl * we have run out of ATIO resources to drain that
5929 1.96 fvdl * queue, we may not get them all out here. Further,
5930 1.96 fvdl * the blocked transactions for the reset channel
5931 1.96 fvdl * should just be killed off, irrespecitve of whether
5932 1.96 fvdl * we are blocked on ATIO resources. Write a routine
5933 1.96 fvdl * to compact the tqinfifo appropriately.
5934 1.9 explorer */
5935 1.96 fvdl if ((ahc->flags & AHC_TARGETROLE) != 0) {
5936 1.96 fvdl ahc_run_tqinfifo(ahc, /*paused*/TRUE);
5937 1.42 fvdl }
5938 1.96 fvdl #endif
5939 1.6 mycroft
5940 1.96 fvdl /*
5941 1.96 fvdl * Reset the bus if we are initiating this reset
5942 1.96 fvdl */
5943 1.96 fvdl sblkctl = ahc_inb(ahc, SBLKCTL);
5944 1.96 fvdl cur_channel = 'A';
5945 1.96 fvdl if ((ahc->features & AHC_TWIN) != 0
5946 1.96 fvdl && ((sblkctl & SELBUSB) != 0))
5947 1.96 fvdl cur_channel = 'B';
5948 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ_TEMPLATE);
5949 1.96 fvdl if (cur_channel != channel) {
5950 1.96 fvdl /* Case 1: Command for another bus is active
5951 1.96 fvdl * Stealthily reset the other bus without
5952 1.96 fvdl * upsetting the current bus.
5953 1.96 fvdl */
5954 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl ^ SELBUSB);
5955 1.96 fvdl simode1 = ahc_inb(ahc, SIMODE1) & ~(ENBUSFREE|ENSCSIRST);
5956 1.96 fvdl #if AHC_TARGET_MODE
5957 1.96 fvdl /*
5958 1.96 fvdl * Bus resets clear ENSELI, so we cannot
5959 1.96 fvdl * defer re-enabling bus reset interrupts
5960 1.96 fvdl * if we are in target mode.
5961 1.96 fvdl */
5962 1.96 fvdl if ((ahc->flags & AHC_TARGETROLE) != 0)
5963 1.96 fvdl simode1 |= ENSCSIRST;
5964 1.96 fvdl #endif
5965 1.96 fvdl ahc_outb(ahc, SIMODE1, simode1);
5966 1.96 fvdl if (initiate_reset)
5967 1.96 fvdl ahc_reset_current_bus(ahc);
5968 1.96 fvdl ahc_clear_intstat(ahc);
5969 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq & (ENSELI|ENRSELI|ENAUTOATNP));
5970 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl);
5971 1.96 fvdl restart_needed = FALSE;
5972 1.96 fvdl } else {
5973 1.96 fvdl /* Case 2: A command from this bus is active or we're idle */
5974 1.96 fvdl simode1 = ahc_inb(ahc, SIMODE1) & ~(ENBUSFREE|ENSCSIRST);
5975 1.96 fvdl #if AHC_TARGET_MODE
5976 1.96 fvdl /*
5977 1.96 fvdl * Bus resets clear ENSELI, so we cannot
5978 1.96 fvdl * defer re-enabling bus reset interrupts
5979 1.96 fvdl * if we are in target mode.
5980 1.96 fvdl */
5981 1.96 fvdl if ((ahc->flags & AHC_TARGETROLE) != 0)
5982 1.96 fvdl simode1 |= ENSCSIRST;
5983 1.29 leo #endif
5984 1.96 fvdl ahc_outb(ahc, SIMODE1, simode1);
5985 1.96 fvdl if (initiate_reset)
5986 1.96 fvdl ahc_reset_current_bus(ahc);
5987 1.96 fvdl ahc_clear_intstat(ahc);
5988 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq & (ENSELI|ENRSELI|ENAUTOATNP));
5989 1.96 fvdl restart_needed = TRUE;
5990 1.96 fvdl }
5991 1.6 mycroft
5992 1.96 fvdl /*
5993 1.96 fvdl * Clean up all the state information for the
5994 1.96 fvdl * pending transactions on this bus.
5995 1.96 fvdl */
5996 1.96 fvdl found = ahc_abort_scbs(ahc, CAM_TARGET_WILDCARD, channel,
5997 1.96 fvdl CAM_LUN_WILDCARD, SCB_LIST_NULL,
5998 1.96 fvdl ROLE_UNKNOWN, CAM_SCSI_BUS_RESET);
5999 1.59 pk
6000 1.96 fvdl max_scsiid = (ahc->features & AHC_WIDE) ? 15 : 7;
6001 1.6 mycroft
6002 1.96 fvdl #ifdef AHC_TARGET_MODE
6003 1.96 fvdl /*
6004 1.96 fvdl * Send an immediate notify ccb to all target more peripheral
6005 1.96 fvdl * drivers affected by this action.
6006 1.96 fvdl */
6007 1.96 fvdl for (target = 0; target <= max_scsiid; target++) {
6008 1.96 fvdl struct ahc_tmode_tstate* tstate;
6009 1.96 fvdl u_int lun;
6010 1.6 mycroft
6011 1.96 fvdl tstate = ahc->enabled_targets[target];
6012 1.96 fvdl if (tstate == NULL)
6013 1.96 fvdl continue;
6014 1.96 fvdl for (lun = 0; lun < AHC_NUM_LUNS; lun++) {
6015 1.96 fvdl struct ahc_tmode_lstate* lstate;
6016 1.42 fvdl
6017 1.96 fvdl lstate = tstate->enabled_luns[lun];
6018 1.96 fvdl if (lstate == NULL)
6019 1.96 fvdl continue;
6020 1.6 mycroft
6021 1.96 fvdl ahc_queue_lstate_event(ahc, lstate, CAM_TARGET_WILDCARD,
6022 1.96 fvdl EVENT_TYPE_BUS_RESET, /*arg*/0);
6023 1.96 fvdl ahc_send_lstate_events(ahc, lstate);
6024 1.42 fvdl }
6025 1.42 fvdl }
6026 1.1 mycroft #endif
6027 1.1 mycroft /*
6028 1.96 fvdl * Revert to async/narrow transfers until we renegotiate.
6029 1.1 mycroft */
6030 1.96 fvdl for (target = 0; target <= max_scsiid; target++) {
6031 1.1 mycroft
6032 1.96 fvdl if (ahc->enabled_targets[target] == NULL)
6033 1.96 fvdl continue;
6034 1.96 fvdl for (initiator = 0; initiator <= max_scsiid; initiator++) {
6035 1.96 fvdl struct ahc_devinfo devinfo;
6036 1.42 fvdl
6037 1.96 fvdl ahc_compile_devinfo(&devinfo, target, initiator,
6038 1.96 fvdl CAM_LUN_WILDCARD,
6039 1.96 fvdl channel, ROLE_UNKNOWN);
6040 1.96 fvdl ahc_set_width(ahc, &devinfo, MSG_EXT_WDTR_BUS_8_BIT,
6041 1.96 fvdl AHC_TRANS_CUR, /*paused*/TRUE);
6042 1.96 fvdl ahc_set_syncrate(ahc, &devinfo, /*syncrate*/NULL,
6043 1.96 fvdl /*period*/0, /*offset*/0,
6044 1.96 fvdl /*ppr_options*/0, AHC_TRANS_CUR,
6045 1.96 fvdl /*paused*/TRUE);
6046 1.96 fvdl }
6047 1.42 fvdl }
6048 1.59 pk
6049 1.96 fvdl if (restart_needed)
6050 1.96 fvdl ahc_restart(ahc);
6051 1.96 fvdl else
6052 1.96 fvdl ahc_unpause(ahc);
6053 1.96 fvdl return found;
6054 1.42 fvdl }
6055 1.42 fvdl
6056 1.96 fvdl
6057 1.96 fvdl /***************************** Residual Processing ****************************/
6058 1.96 fvdl /*
6059 1.96 fvdl * Calculate the residual for a just completed SCB.
6060 1.96 fvdl */
6061 1.96 fvdl void
6062 1.96 fvdl ahc_calc_residual(struct ahc_softc *ahc, struct scb *scb)
6063 1.42 fvdl {
6064 1.42 fvdl struct hardware_scb *hscb;
6065 1.96 fvdl struct status_pkt *spkt;
6066 1.96 fvdl uint32_t sgptr;
6067 1.96 fvdl uint32_t resid_sgptr;
6068 1.96 fvdl uint32_t resid;
6069 1.96 fvdl
6070 1.96 fvdl /*
6071 1.96 fvdl * 5 cases.
6072 1.96 fvdl * 1) No residual.
6073 1.96 fvdl * SG_RESID_VALID clear in sgptr.
6074 1.96 fvdl * 2) Transferless command
6075 1.96 fvdl * 3) Never performed any transfers.
6076 1.96 fvdl * sgptr has SG_FULL_RESID set.
6077 1.96 fvdl * 4) No residual but target did not
6078 1.96 fvdl * save data pointers after the
6079 1.96 fvdl * last transfer, so sgptr was
6080 1.96 fvdl * never updated.
6081 1.96 fvdl * 5) We have a partial residual.
6082 1.96 fvdl * Use residual_sgptr to determine
6083 1.96 fvdl * where we are.
6084 1.96 fvdl */
6085 1.59 pk
6086 1.42 fvdl hscb = scb->hscb;
6087 1.96 fvdl sgptr = ahc_le32toh(hscb->sgptr);
6088 1.96 fvdl if ((sgptr & SG_RESID_VALID) == 0)
6089 1.96 fvdl /* Case 1 */
6090 1.96 fvdl return;
6091 1.96 fvdl sgptr &= ~SG_RESID_VALID;
6092 1.59 pk
6093 1.96 fvdl if ((sgptr & SG_LIST_NULL) != 0)
6094 1.96 fvdl /* Case 2 */
6095 1.96 fvdl return;
6096 1.42 fvdl
6097 1.96 fvdl spkt = &hscb->shared_data.status;
6098 1.96 fvdl resid_sgptr = ahc_le32toh(spkt->residual_sg_ptr);
6099 1.96 fvdl if ((sgptr & SG_FULL_RESID) != 0) {
6100 1.96 fvdl /* Case 3 */
6101 1.96 fvdl resid = ahc_get_transfer_length(scb);
6102 1.96 fvdl } else if ((resid_sgptr & SG_LIST_NULL) != 0) {
6103 1.96 fvdl /* Case 4 */
6104 1.96 fvdl return;
6105 1.96 fvdl } else if ((resid_sgptr & ~SG_PTR_MASK) != 0) {
6106 1.96 fvdl panic("Bogus resid sgptr value 0x%x\n", resid_sgptr);
6107 1.42 fvdl } else {
6108 1.96 fvdl struct ahc_dma_seg *sg;
6109 1.42 fvdl
6110 1.96 fvdl /*
6111 1.96 fvdl * Remainder of the SG where the transfer
6112 1.96 fvdl * stopped.
6113 1.96 fvdl */
6114 1.96 fvdl resid = ahc_le32toh(spkt->residual_datacnt) & AHC_SG_LEN_MASK;
6115 1.96 fvdl sg = ahc_sg_bus_to_virt(scb, resid_sgptr & SG_PTR_MASK);
6116 1.42 fvdl
6117 1.96 fvdl /* The residual sg_ptr always points to the next sg */
6118 1.96 fvdl sg--;
6119 1.42 fvdl
6120 1.96 fvdl /*
6121 1.96 fvdl * Add up the contents of all residual
6122 1.96 fvdl * SG segments that are after the SG where
6123 1.96 fvdl * the transfer stopped.
6124 1.96 fvdl */
6125 1.96 fvdl while ((ahc_le32toh(sg->len) & AHC_DMA_LAST_SEG) == 0) {
6126 1.96 fvdl sg++;
6127 1.96 fvdl resid += ahc_le32toh(sg->len) & AHC_SG_LEN_MASK;
6128 1.96 fvdl }
6129 1.96 fvdl }
6130 1.96 fvdl if ((scb->flags & SCB_SENSE) == 0)
6131 1.96 fvdl ahc_set_residual(scb, resid);
6132 1.96 fvdl else
6133 1.96 fvdl ahc_set_sense_residual(scb, resid);
6134 1.42 fvdl
6135 1.96 fvdl #ifdef AHC_DEBUG
6136 1.96 fvdl if ((ahc_debug & AHC_SHOW_MISC) != 0) {
6137 1.96 fvdl ahc_print_path(ahc, scb);
6138 1.96 fvdl printf("Handled %sResidual of %d bytes\n",
6139 1.96 fvdl (scb->flags & SCB_SENSE) ? "Sense " : "", resid);
6140 1.42 fvdl }
6141 1.96 fvdl #endif
6142 1.96 fvdl }
6143 1.96 fvdl
6144 1.96 fvdl /******************************* Target Mode **********************************/
6145 1.96 fvdl #ifdef AHC_TARGET_MODE
6146 1.96 fvdl /*
6147 1.96 fvdl * Add a target mode event to this lun's queue
6148 1.96 fvdl */
6149 1.96 fvdl static void
6150 1.96 fvdl ahc_queue_lstate_event(struct ahc_softc *ahc, struct ahc_tmode_lstate *lstate,
6151 1.96 fvdl u_int initiator_id, u_int event_type, u_int event_arg)
6152 1.96 fvdl {
6153 1.96 fvdl struct ahc_tmode_event *event;
6154 1.96 fvdl int pending;
6155 1.1 mycroft
6156 1.96 fvdl xpt_freeze_devq(lstate->path, /*count*/1);
6157 1.96 fvdl if (lstate->event_w_idx >= lstate->event_r_idx)
6158 1.96 fvdl pending = lstate->event_w_idx - lstate->event_r_idx;
6159 1.96 fvdl else
6160 1.96 fvdl pending = AHC_TMODE_EVENT_BUFFER_SIZE + 1
6161 1.96 fvdl - (lstate->event_r_idx - lstate->event_w_idx);
6162 1.42 fvdl
6163 1.96 fvdl if (event_type == EVENT_TYPE_BUS_RESET
6164 1.96 fvdl || event_type == MSG_BUS_DEV_RESET) {
6165 1.96 fvdl /*
6166 1.96 fvdl * Any earlier events are irrelevant, so reset our buffer.
6167 1.96 fvdl * This has the effect of allowing us to deal with reset
6168 1.96 fvdl * floods (an external device holding down the reset line)
6169 1.96 fvdl * without losing the event that is really interesting.
6170 1.96 fvdl */
6171 1.96 fvdl lstate->event_r_idx = 0;
6172 1.96 fvdl lstate->event_w_idx = 0;
6173 1.96 fvdl xpt_release_devq(lstate->path, pending, /*runqueue*/FALSE);
6174 1.96 fvdl }
6175 1.96 fvdl
6176 1.96 fvdl if (pending == AHC_TMODE_EVENT_BUFFER_SIZE) {
6177 1.96 fvdl xpt_print_path(lstate->path);
6178 1.96 fvdl printf("immediate event %x:%x lost\n",
6179 1.96 fvdl lstate->event_buffer[lstate->event_r_idx].event_type,
6180 1.96 fvdl lstate->event_buffer[lstate->event_r_idx].event_arg);
6181 1.96 fvdl lstate->event_r_idx++;
6182 1.96 fvdl if (lstate->event_r_idx == AHC_TMODE_EVENT_BUFFER_SIZE)
6183 1.96 fvdl lstate->event_r_idx = 0;
6184 1.96 fvdl xpt_release_devq(lstate->path, /*count*/1, /*runqueue*/FALSE);
6185 1.96 fvdl }
6186 1.96 fvdl
6187 1.96 fvdl event = &lstate->event_buffer[lstate->event_w_idx];
6188 1.96 fvdl event->initiator_id = initiator_id;
6189 1.96 fvdl event->event_type = event_type;
6190 1.96 fvdl event->event_arg = event_arg;
6191 1.96 fvdl lstate->event_w_idx++;
6192 1.96 fvdl if (lstate->event_w_idx == AHC_TMODE_EVENT_BUFFER_SIZE)
6193 1.96 fvdl lstate->event_w_idx = 0;
6194 1.96 fvdl }
6195 1.1 mycroft
6196 1.96 fvdl /*
6197 1.96 fvdl * Send any target mode events queued up waiting
6198 1.96 fvdl * for immediate notify resources.
6199 1.96 fvdl */
6200 1.96 fvdl void
6201 1.96 fvdl ahc_send_lstate_events(struct ahc_softc *ahc, struct ahc_tmode_lstate *lstate)
6202 1.96 fvdl {
6203 1.96 fvdl struct ccb_hdr *ccbh;
6204 1.96 fvdl struct ccb_immed_notify *inot;
6205 1.9 explorer
6206 1.96 fvdl while (lstate->event_r_idx != lstate->event_w_idx
6207 1.96 fvdl && (ccbh = SLIST_FIRST(&lstate->immed_notifies)) != NULL) {
6208 1.96 fvdl struct ahc_tmode_event *event;
6209 1.96 fvdl
6210 1.96 fvdl event = &lstate->event_buffer[lstate->event_r_idx];
6211 1.96 fvdl SLIST_REMOVE_HEAD(&lstate->immed_notifies, sim_links.sle);
6212 1.96 fvdl inot = (struct ccb_immed_notify *)ccbh;
6213 1.96 fvdl switch (event->event_type) {
6214 1.96 fvdl case EVENT_TYPE_BUS_RESET:
6215 1.96 fvdl ccbh->status = CAM_SCSI_BUS_RESET|CAM_DEV_QFRZN;
6216 1.96 fvdl break;
6217 1.96 fvdl default:
6218 1.96 fvdl ccbh->status = CAM_MESSAGE_RECV|CAM_DEV_QFRZN;
6219 1.96 fvdl inot->message_args[0] = event->event_type;
6220 1.96 fvdl inot->message_args[1] = event->event_arg;
6221 1.42 fvdl break;
6222 1.96 fvdl }
6223 1.96 fvdl inot->initiator_id = event->initiator_id;
6224 1.96 fvdl inot->sense_len = 0;
6225 1.96 fvdl xpt_done((union ccb *)inot);
6226 1.96 fvdl lstate->event_r_idx++;
6227 1.96 fvdl if (lstate->event_r_idx == AHC_TMODE_EVENT_BUFFER_SIZE)
6228 1.96 fvdl lstate->event_r_idx = 0;
6229 1.6 mycroft }
6230 1.96 fvdl }
6231 1.42 fvdl #endif
6232 1.96 fvdl
6233 1.96 fvdl /******************** Sequencer Program Patching/Download *********************/
6234 1.42 fvdl
6235 1.42 fvdl #ifdef AHC_DUMP_SEQ
6236 1.96 fvdl void
6237 1.42 fvdl ahc_dumpseq(struct ahc_softc* ahc)
6238 1.42 fvdl {
6239 1.42 fvdl int i;
6240 1.42 fvdl int max_prog;
6241 1.42 fvdl
6242 1.42 fvdl if ((ahc->chip & AHC_BUS_MASK) < AHC_PCI)
6243 1.42 fvdl max_prog = 448;
6244 1.42 fvdl else if ((ahc->features & AHC_ULTRA2) != 0)
6245 1.42 fvdl max_prog = 768;
6246 1.42 fvdl else
6247 1.42 fvdl max_prog = 512;
6248 1.42 fvdl
6249 1.42 fvdl ahc_outb(ahc, SEQCTL, PERRORDIS|FAILDIS|FASTMODE|LOADRAM);
6250 1.42 fvdl ahc_outb(ahc, SEQADDR0, 0);
6251 1.42 fvdl ahc_outb(ahc, SEQADDR1, 0);
6252 1.42 fvdl for (i = 0; i < max_prog; i++) {
6253 1.96 fvdl uint8_t ins_bytes[4];
6254 1.42 fvdl
6255 1.42 fvdl ahc_insb(ahc, SEQRAM, ins_bytes, 4);
6256 1.42 fvdl printf("0x%08x\n", ins_bytes[0] << 24
6257 1.42 fvdl | ins_bytes[1] << 16
6258 1.42 fvdl | ins_bytes[2] << 8
6259 1.42 fvdl | ins_bytes[3]);
6260 1.6 mycroft }
6261 1.42 fvdl }
6262 1.42 fvdl #endif
6263 1.42 fvdl
6264 1.42 fvdl static void
6265 1.42 fvdl ahc_loadseq(struct ahc_softc *ahc)
6266 1.42 fvdl {
6267 1.96 fvdl struct cs cs_table[num_critical_sections];
6268 1.96 fvdl u_int begin_set[num_critical_sections];
6269 1.96 fvdl u_int end_set[num_critical_sections];
6270 1.96 fvdl struct patch *cur_patch;
6271 1.96 fvdl u_int cs_count;
6272 1.96 fvdl u_int cur_cs;
6273 1.96 fvdl u_int i;
6274 1.96 fvdl int downloaded;
6275 1.96 fvdl u_int skip_addr;
6276 1.96 fvdl u_int sg_prefetch_cnt;
6277 1.96 fvdl uint8_t download_consts[7];
6278 1.96 fvdl
6279 1.96 fvdl /*
6280 1.96 fvdl * Start out with 0 critical sections
6281 1.96 fvdl * that apply to this firmware load.
6282 1.96 fvdl */
6283 1.96 fvdl cs_count = 0;
6284 1.96 fvdl cur_cs = 0;
6285 1.96 fvdl memset(begin_set, 0, sizeof(begin_set));
6286 1.96 fvdl memset(end_set, 0, sizeof(end_set));
6287 1.42 fvdl
6288 1.42 fvdl /* Setup downloadable constant table */
6289 1.96 fvdl download_consts[QOUTFIFO_OFFSET] = 0;
6290 1.96 fvdl if (ahc->targetcmds != NULL)
6291 1.96 fvdl download_consts[QOUTFIFO_OFFSET] += 32;
6292 1.96 fvdl download_consts[QINFIFO_OFFSET] = download_consts[QOUTFIFO_OFFSET] + 1;
6293 1.96 fvdl download_consts[CACHESIZE_MASK] = ahc->pci_cachesize - 1;
6294 1.96 fvdl download_consts[INVERTED_CACHESIZE_MASK] = ~(ahc->pci_cachesize - 1);
6295 1.96 fvdl sg_prefetch_cnt = ahc->pci_cachesize;
6296 1.96 fvdl if (sg_prefetch_cnt < (2 * sizeof(struct ahc_dma_seg)))
6297 1.96 fvdl sg_prefetch_cnt = 2 * sizeof(struct ahc_dma_seg);
6298 1.96 fvdl download_consts[SG_PREFETCH_CNT] = sg_prefetch_cnt;
6299 1.96 fvdl download_consts[SG_PREFETCH_ALIGN_MASK] = ~(sg_prefetch_cnt - 1);
6300 1.96 fvdl download_consts[SG_PREFETCH_ADDR_MASK] = (sg_prefetch_cnt - 1);
6301 1.42 fvdl
6302 1.42 fvdl cur_patch = patches;
6303 1.42 fvdl downloaded = 0;
6304 1.42 fvdl skip_addr = 0;
6305 1.42 fvdl ahc_outb(ahc, SEQCTL, PERRORDIS|FAILDIS|FASTMODE|LOADRAM);
6306 1.42 fvdl ahc_outb(ahc, SEQADDR0, 0);
6307 1.42 fvdl ahc_outb(ahc, SEQADDR1, 0);
6308 1.42 fvdl
6309 1.42 fvdl for (i = 0; i < sizeof(seqprog)/4; i++) {
6310 1.42 fvdl if (ahc_check_patch(ahc, &cur_patch, i, &skip_addr) == 0) {
6311 1.6 mycroft /*
6312 1.42 fvdl * Don't download this instruction as it
6313 1.42 fvdl * is in a patch that was removed.
6314 1.6 mycroft */
6315 1.96 fvdl continue;
6316 1.96 fvdl }
6317 1.96 fvdl /*
6318 1.96 fvdl * Move through the CS table until we find a CS
6319 1.96 fvdl * that might apply to this instruction.
6320 1.96 fvdl */
6321 1.96 fvdl for (; cur_cs < num_critical_sections; cur_cs++) {
6322 1.96 fvdl if (critical_sections[cur_cs].end <= i) {
6323 1.96 fvdl if (begin_set[cs_count] == TRUE
6324 1.96 fvdl && end_set[cs_count] == FALSE) {
6325 1.96 fvdl cs_table[cs_count].end = downloaded;
6326 1.96 fvdl end_set[cs_count] = TRUE;
6327 1.96 fvdl cs_count++;
6328 1.96 fvdl }
6329 1.96 fvdl continue;
6330 1.96 fvdl }
6331 1.96 fvdl if (critical_sections[cur_cs].begin <= i
6332 1.96 fvdl && begin_set[cs_count] == FALSE) {
6333 1.96 fvdl cs_table[cs_count].begin = downloaded;
6334 1.96 fvdl begin_set[cs_count] = TRUE;
6335 1.96 fvdl }
6336 1.96 fvdl break;
6337 1.42 fvdl }
6338 1.42 fvdl ahc_download_instr(ahc, i, download_consts);
6339 1.42 fvdl downloaded++;
6340 1.6 mycroft }
6341 1.96 fvdl
6342 1.96 fvdl ahc->num_critical_sections = cs_count;
6343 1.96 fvdl if (cs_count != 0) {
6344 1.96 fvdl
6345 1.96 fvdl cs_count *= sizeof(struct cs);
6346 1.96 fvdl ahc->critical_sections = malloc(cs_count, M_DEVBUF, M_NOWAIT);
6347 1.96 fvdl if (ahc->critical_sections == NULL)
6348 1.96 fvdl panic("ahc_loadseq: Could not malloc");
6349 1.96 fvdl memcpy(ahc->critical_sections, cs_table, cs_count);
6350 1.96 fvdl }
6351 1.42 fvdl ahc_outb(ahc, SEQCTL, PERRORDIS|FAILDIS|FASTMODE);
6352 1.96 fvdl ahc_restart(ahc);
6353 1.42 fvdl
6354 1.96 fvdl if (bootverbose) {
6355 1.96 fvdl printf(" %d instructions downloaded\n", downloaded);
6356 1.96 fvdl printf("%s: Features 0x%x, Bugs 0x%x, Flags 0x%x\n",
6357 1.96 fvdl ahc_name(ahc), ahc->features, ahc->bugs, ahc->flags);
6358 1.96 fvdl }
6359 1.1 mycroft }
6360 1.1 mycroft
6361 1.42 fvdl static int
6362 1.96 fvdl ahc_check_patch(struct ahc_softc *ahc, struct patch **start_patch,
6363 1.96 fvdl u_int start_instr, u_int *skip_addr)
6364 1.42 fvdl {
6365 1.96 fvdl struct patch *cur_patch;
6366 1.96 fvdl struct patch *last_patch;
6367 1.96 fvdl u_int num_patches;
6368 1.42 fvdl
6369 1.42 fvdl num_patches = sizeof(patches)/sizeof(struct patch);
6370 1.42 fvdl last_patch = &patches[num_patches];
6371 1.42 fvdl cur_patch = *start_patch;
6372 1.42 fvdl
6373 1.42 fvdl while (cur_patch < last_patch && start_instr == cur_patch->begin) {
6374 1.42 fvdl
6375 1.42 fvdl if (cur_patch->patch_func(ahc) == 0) {
6376 1.42 fvdl
6377 1.42 fvdl /* Start rejecting code */
6378 1.42 fvdl *skip_addr = start_instr + cur_patch->skip_instr;
6379 1.42 fvdl cur_patch += cur_patch->skip_patch;
6380 1.42 fvdl } else {
6381 1.42 fvdl /* Accepted this patch. Advance to the next
6382 1.42 fvdl * one and wait for our intruction pointer to
6383 1.42 fvdl * hit this point.
6384 1.42 fvdl */
6385 1.42 fvdl cur_patch++;
6386 1.28 leo }
6387 1.28 leo }
6388 1.42 fvdl
6389 1.42 fvdl *start_patch = cur_patch;
6390 1.42 fvdl if (start_instr < *skip_addr)
6391 1.42 fvdl /* Still skipping */
6392 1.42 fvdl return (0);
6393 1.42 fvdl
6394 1.42 fvdl return (1);
6395 1.28 leo }
6396 1.28 leo
6397 1.42 fvdl static void
6398 1.96 fvdl ahc_download_instr(struct ahc_softc *ahc, u_int instrptr, uint8_t *dconsts)
6399 1.1 mycroft {
6400 1.42 fvdl union ins_formats instr;
6401 1.42 fvdl struct ins_format1 *fmt1_ins;
6402 1.42 fvdl struct ins_format3 *fmt3_ins;
6403 1.42 fvdl u_int opcode;
6404 1.42 fvdl
6405 1.96 fvdl /*
6406 1.96 fvdl * The firmware is always compiled into a little endian format.
6407 1.96 fvdl */
6408 1.96 fvdl instr.integer = ahc_le32toh(*(uint32_t*)&seqprog[instrptr * 4]);
6409 1.42 fvdl
6410 1.42 fvdl fmt1_ins = &instr.format1;
6411 1.42 fvdl fmt3_ins = NULL;
6412 1.42 fvdl
6413 1.42 fvdl /* Pull the opcode */
6414 1.42 fvdl opcode = instr.format1.opcode;
6415 1.42 fvdl switch (opcode) {
6416 1.42 fvdl case AIC_OP_JMP:
6417 1.42 fvdl case AIC_OP_JC:
6418 1.42 fvdl case AIC_OP_JNC:
6419 1.42 fvdl case AIC_OP_CALL:
6420 1.42 fvdl case AIC_OP_JNE:
6421 1.42 fvdl case AIC_OP_JNZ:
6422 1.42 fvdl case AIC_OP_JE:
6423 1.42 fvdl case AIC_OP_JZ:
6424 1.42 fvdl {
6425 1.96 fvdl struct patch *cur_patch;
6426 1.42 fvdl int address_offset;
6427 1.42 fvdl u_int address;
6428 1.96 fvdl u_int skip_addr;
6429 1.96 fvdl u_int i;
6430 1.42 fvdl
6431 1.42 fvdl fmt3_ins = &instr.format3;
6432 1.42 fvdl address_offset = 0;
6433 1.42 fvdl address = fmt3_ins->address;
6434 1.42 fvdl cur_patch = patches;
6435 1.42 fvdl skip_addr = 0;
6436 1.42 fvdl for (i = 0; i < address;) {
6437 1.42 fvdl ahc_check_patch(ahc, &cur_patch, i, &skip_addr);
6438 1.42 fvdl
6439 1.42 fvdl if (skip_addr > i) {
6440 1.42 fvdl int end_addr;
6441 1.42 fvdl
6442 1.42 fvdl end_addr = MIN(address, skip_addr);
6443 1.42 fvdl address_offset += end_addr - i;
6444 1.42 fvdl i = skip_addr;
6445 1.42 fvdl } else {
6446 1.42 fvdl i++;
6447 1.42 fvdl }
6448 1.1 mycroft }
6449 1.42 fvdl address -= address_offset;
6450 1.42 fvdl fmt3_ins->address = address;
6451 1.42 fvdl /* FALLTHROUGH */
6452 1.42 fvdl }
6453 1.42 fvdl case AIC_OP_OR:
6454 1.42 fvdl case AIC_OP_AND:
6455 1.42 fvdl case AIC_OP_XOR:
6456 1.42 fvdl case AIC_OP_ADD:
6457 1.42 fvdl case AIC_OP_ADC:
6458 1.42 fvdl case AIC_OP_BMOV:
6459 1.42 fvdl if (fmt1_ins->parity != 0) {
6460 1.42 fvdl fmt1_ins->immediate = dconsts[fmt1_ins->immediate];
6461 1.42 fvdl }
6462 1.42 fvdl fmt1_ins->parity = 0;
6463 1.96 fvdl if ((ahc->features & AHC_CMD_CHAN) == 0
6464 1.96 fvdl && opcode == AIC_OP_BMOV) {
6465 1.96 fvdl /*
6466 1.96 fvdl * Block move was added at the same time
6467 1.96 fvdl * as the command channel. Verify that
6468 1.96 fvdl * this is only a move of a single element
6469 1.96 fvdl * and convert the BMOV to a MOV
6470 1.96 fvdl * (AND with an immediate of FF).
6471 1.96 fvdl */
6472 1.96 fvdl if (fmt1_ins->immediate != 1)
6473 1.96 fvdl panic("%s: BMOV not supported\n",
6474 1.96 fvdl ahc_name(ahc));
6475 1.96 fvdl fmt1_ins->opcode = AIC_OP_AND;
6476 1.96 fvdl fmt1_ins->immediate = 0xff;
6477 1.96 fvdl }
6478 1.42 fvdl /* FALLTHROUGH */
6479 1.42 fvdl case AIC_OP_ROL:
6480 1.42 fvdl if ((ahc->features & AHC_ULTRA2) != 0) {
6481 1.42 fvdl int i, count;
6482 1.42 fvdl
6483 1.42 fvdl /* Calculate odd parity for the instruction */
6484 1.42 fvdl for (i = 0, count = 0; i < 31; i++) {
6485 1.96 fvdl uint32_t mask;
6486 1.42 fvdl
6487 1.42 fvdl mask = 0x01 << i;
6488 1.42 fvdl if ((instr.integer & mask) != 0)
6489 1.42 fvdl count++;
6490 1.42 fvdl }
6491 1.42 fvdl if ((count & 0x01) == 0)
6492 1.42 fvdl instr.format1.parity = 1;
6493 1.42 fvdl } else {
6494 1.42 fvdl /* Compress the instruction for older sequencers */
6495 1.42 fvdl if (fmt3_ins != NULL) {
6496 1.42 fvdl instr.integer =
6497 1.42 fvdl fmt3_ins->immediate
6498 1.42 fvdl | (fmt3_ins->source << 8)
6499 1.42 fvdl | (fmt3_ins->address << 16)
6500 1.42 fvdl | (fmt3_ins->opcode << 25);
6501 1.42 fvdl } else {
6502 1.42 fvdl instr.integer =
6503 1.42 fvdl fmt1_ins->immediate
6504 1.42 fvdl | (fmt1_ins->source << 8)
6505 1.42 fvdl | (fmt1_ins->destination << 16)
6506 1.42 fvdl | (fmt1_ins->ret << 24)
6507 1.42 fvdl | (fmt1_ins->opcode << 25);
6508 1.1 mycroft }
6509 1.1 mycroft }
6510 1.96 fvdl /* The sequencer is a little endian cpu */
6511 1.96 fvdl instr.integer = ahc_htole32(instr.integer);
6512 1.42 fvdl ahc_outsb(ahc, SEQRAM, instr.bytes, 4);
6513 1.42 fvdl break;
6514 1.42 fvdl default:
6515 1.42 fvdl panic("Unknown opcode encountered in seq program");
6516 1.6 mycroft break;
6517 1.1 mycroft }
6518 1.1 mycroft }
6519 1.1 mycroft
6520 1.96 fvdl int
6521 1.96 fvdl ahc_print_register(ahc_reg_parse_entry_t *table, u_int num_entries,
6522 1.96 fvdl const char *name, u_int address, u_int value,
6523 1.96 fvdl u_int *cur_column, u_int wrap_point)
6524 1.96 fvdl {
6525 1.96 fvdl int printed;
6526 1.96 fvdl u_int printed_mask;
6527 1.98 fvdl char line[1024];
6528 1.96 fvdl
6529 1.99 fvdl line[0] = 0;
6530 1.96 fvdl
6531 1.96 fvdl if (cur_column != NULL && *cur_column >= wrap_point) {
6532 1.96 fvdl printf("\n");
6533 1.96 fvdl *cur_column = 0;
6534 1.96 fvdl }
6535 1.99 fvdl printed = snprintf(line, sizeof(line), "%s[0x%x]", name, value);
6536 1.96 fvdl if (table == NULL) {
6537 1.99 fvdl printed += snprintf(&line[printed], (sizeof line) - printed,
6538 1.99 fvdl " ");
6539 1.98 fvdl printf("%s", line);
6540 1.98 fvdl if (cur_column != NULL)
6541 1.98 fvdl *cur_column += printed;
6542 1.96 fvdl return (printed);
6543 1.96 fvdl }
6544 1.96 fvdl printed_mask = 0;
6545 1.96 fvdl while (printed_mask != 0xFF) {
6546 1.96 fvdl int entry;
6547 1.96 fvdl
6548 1.96 fvdl for (entry = 0; entry < num_entries; entry++) {
6549 1.96 fvdl if (((value & table[entry].mask)
6550 1.96 fvdl != table[entry].value)
6551 1.96 fvdl || ((printed_mask & table[entry].mask)
6552 1.96 fvdl == table[entry].mask))
6553 1.96 fvdl continue;
6554 1.98 fvdl printed += snprintf(&line[printed],
6555 1.98 fvdl (sizeof line) - printed, "%s%s",
6556 1.96 fvdl printed_mask == 0 ? ":(" : "|",
6557 1.96 fvdl table[entry].name);
6558 1.96 fvdl printed_mask |= table[entry].mask;
6559 1.96 fvdl
6560 1.96 fvdl break;
6561 1.42 fvdl }
6562 1.96 fvdl if (entry >= num_entries)
6563 1.96 fvdl break;
6564 1.6 mycroft }
6565 1.96 fvdl if (printed_mask != 0)
6566 1.98 fvdl printed += snprintf(&line[printed],
6567 1.98 fvdl (sizeof line) - printed, ") ");
6568 1.96 fvdl else
6569 1.98 fvdl printed += snprintf(&line[printed],
6570 1.98 fvdl (sizeof line) - printed, " ");
6571 1.96 fvdl if (cur_column != NULL)
6572 1.96 fvdl *cur_column += printed;
6573 1.98 fvdl printf("%s", line);
6574 1.96 fvdl
6575 1.96 fvdl return (printed);
6576 1.6 mycroft }
6577 1.6 mycroft
6578 1.96 fvdl void
6579 1.96 fvdl ahc_dump_card_state(struct ahc_softc *ahc)
6580 1.6 mycroft {
6581 1.42 fvdl struct scb *scb;
6582 1.96 fvdl struct scb_tailq *untagged_q;
6583 1.96 fvdl u_int cur_col;
6584 1.96 fvdl int paused;
6585 1.42 fvdl int target;
6586 1.96 fvdl int maxtarget;
6587 1.42 fvdl int i;
6588 1.96 fvdl uint8_t last_phase;
6589 1.96 fvdl uint8_t qinpos;
6590 1.96 fvdl uint8_t qintail;
6591 1.96 fvdl uint8_t qoutpos;
6592 1.96 fvdl uint8_t scb_index;
6593 1.96 fvdl uint8_t saved_scbptr;
6594 1.6 mycroft
6595 1.96 fvdl if (ahc_is_paused(ahc)) {
6596 1.96 fvdl paused = 1;
6597 1.96 fvdl } else {
6598 1.96 fvdl paused = 0;
6599 1.96 fvdl ahc_pause(ahc);
6600 1.6 mycroft }
6601 1.6 mycroft
6602 1.96 fvdl saved_scbptr = ahc_inb(ahc, SCBPTR);
6603 1.42 fvdl last_phase = ahc_inb(ahc, LASTPHASE);
6604 1.96 fvdl printf(">>>>>>>>>>>>>>>>>> Dump Card State Begins <<<<<<<<<<<<<<<<<\n"
6605 1.96 fvdl "%s: Dumping Card State %s, at SEQADDR 0x%x\n",
6606 1.96 fvdl ahc_name(ahc), ahc_lookup_phase_entry(last_phase)->phasemsg,
6607 1.42 fvdl ahc_inb(ahc, SEQADDR0) | (ahc_inb(ahc, SEQADDR1) << 8));
6608 1.96 fvdl if (paused)
6609 1.96 fvdl printf("Card was paused\n");
6610 1.96 fvdl printf("ACCUM = 0x%x, SINDEX = 0x%x, DINDEX = 0x%x, ARG_2 = 0x%x\n",
6611 1.96 fvdl ahc_inb(ahc, ACCUM), ahc_inb(ahc, SINDEX), ahc_inb(ahc, DINDEX),
6612 1.96 fvdl ahc_inb(ahc, ARG_2));
6613 1.96 fvdl printf("HCNT = 0x%x SCBPTR = 0x%x\n", ahc_inb(ahc, HCNT),
6614 1.96 fvdl ahc_inb(ahc, SCBPTR));
6615 1.96 fvdl cur_col = 0;
6616 1.96 fvdl if ((ahc->features & AHC_DT) != 0)
6617 1.96 fvdl ahc_scsiphase_print(ahc_inb(ahc, SCSIPHASE), &cur_col, 50);
6618 1.96 fvdl ahc_scsisigi_print(ahc_inb(ahc, SCSISIGI), &cur_col, 50);
6619 1.96 fvdl ahc_error_print(ahc_inb(ahc, ERROR), &cur_col, 50);
6620 1.96 fvdl ahc_scsibusl_print(ahc_inb(ahc, SCSIBUSL), &cur_col, 50);
6621 1.96 fvdl ahc_lastphase_print(ahc_inb(ahc, LASTPHASE), &cur_col, 50);
6622 1.96 fvdl ahc_scsiseq_print(ahc_inb(ahc, SCSISEQ), &cur_col, 50);
6623 1.96 fvdl ahc_sblkctl_print(ahc_inb(ahc, SBLKCTL), &cur_col, 50);
6624 1.96 fvdl ahc_scsirate_print(ahc_inb(ahc, SCSIRATE), &cur_col, 50);
6625 1.96 fvdl ahc_seqctl_print(ahc_inb(ahc, SEQCTL), &cur_col, 50);
6626 1.96 fvdl ahc_seq_flags_print(ahc_inb(ahc, SEQ_FLAGS), &cur_col, 50);
6627 1.96 fvdl ahc_sstat0_print(ahc_inb(ahc, SSTAT0), &cur_col, 50);
6628 1.96 fvdl ahc_sstat1_print(ahc_inb(ahc, SSTAT1), &cur_col, 50);
6629 1.96 fvdl ahc_sstat2_print(ahc_inb(ahc, SSTAT2), &cur_col, 50);
6630 1.96 fvdl ahc_sstat3_print(ahc_inb(ahc, SSTAT3), &cur_col, 50);
6631 1.96 fvdl ahc_simode0_print(ahc_inb(ahc, SIMODE0), &cur_col, 50);
6632 1.96 fvdl ahc_simode1_print(ahc_inb(ahc, SIMODE1), &cur_col, 50);
6633 1.96 fvdl ahc_sxfrctl0_print(ahc_inb(ahc, SXFRCTL0), &cur_col, 50);
6634 1.96 fvdl ahc_dfcntrl_print(ahc_inb(ahc, DFCNTRL), &cur_col, 50);
6635 1.96 fvdl ahc_dfstatus_print(ahc_inb(ahc, DFSTATUS), &cur_col, 50);
6636 1.96 fvdl if (cur_col != 0)
6637 1.96 fvdl printf("\n");
6638 1.96 fvdl printf("STACK:");
6639 1.96 fvdl for (i = 0; i < STACK_SIZE; i++)
6640 1.96 fvdl printf(" 0x%x", ahc_inb(ahc, STACK)|(ahc_inb(ahc, STACK) << 8));
6641 1.96 fvdl printf("\nSCB count = %d\n", ahc->scb_data->numscbs);
6642 1.96 fvdl printf("Kernel NEXTQSCB = %d\n", ahc->next_queued_scb->hscb->tag);
6643 1.96 fvdl printf("Card NEXTQSCB = %d\n", ahc_inb(ahc, NEXT_QUEUED_SCB));
6644 1.96 fvdl /* QINFIFO */
6645 1.96 fvdl printf("QINFIFO entries: ");
6646 1.96 fvdl if ((ahc->features & AHC_QUEUE_REGS) != 0) {
6647 1.96 fvdl qinpos = ahc_inb(ahc, SNSCB_QOFF);
6648 1.96 fvdl ahc_outb(ahc, SNSCB_QOFF, qinpos);
6649 1.96 fvdl } else
6650 1.96 fvdl qinpos = ahc_inb(ahc, QINPOS);
6651 1.42 fvdl qintail = ahc->qinfifonext;
6652 1.42 fvdl while (qinpos != qintail) {
6653 1.96 fvdl printf("%d ", ahc->qinfifo[qinpos]);
6654 1.42 fvdl qinpos++;
6655 1.42 fvdl }
6656 1.96 fvdl printf("\n");
6657 1.42 fvdl
6658 1.96 fvdl printf("Waiting Queue entries: ");
6659 1.96 fvdl scb_index = ahc_inb(ahc, WAITING_SCBH);
6660 1.96 fvdl i = 0;
6661 1.96 fvdl while (scb_index != SCB_LIST_NULL && i++ < 256) {
6662 1.96 fvdl ahc_outb(ahc, SCBPTR, scb_index);
6663 1.96 fvdl printf("%d:%d ", scb_index, ahc_inb(ahc, SCB_TAG));
6664 1.96 fvdl scb_index = ahc_inb(ahc, SCB_NEXT);
6665 1.6 mycroft }
6666 1.96 fvdl printf("\n");
6667 1.1 mycroft
6668 1.96 fvdl printf("Disconnected Queue entries: ");
6669 1.96 fvdl scb_index = ahc_inb(ahc, DISCONNECTED_SCBH);
6670 1.96 fvdl i = 0;
6671 1.96 fvdl while (scb_index != SCB_LIST_NULL && i++ < 256) {
6672 1.96 fvdl ahc_outb(ahc, SCBPTR, scb_index);
6673 1.96 fvdl printf("%d:%d ", scb_index, ahc_inb(ahc, SCB_TAG));
6674 1.96 fvdl scb_index = ahc_inb(ahc, SCB_NEXT);
6675 1.96 fvdl }
6676 1.96 fvdl printf("\n");
6677 1.96 fvdl
6678 1.96 fvdl ahc_sync_qoutfifo(ahc, BUS_DMASYNC_POSTREAD);
6679 1.96 fvdl printf("QOUTFIFO entries: ");
6680 1.96 fvdl qoutpos = ahc->qoutfifonext;
6681 1.96 fvdl i = 0;
6682 1.96 fvdl while (ahc->qoutfifo[qoutpos] != SCB_LIST_NULL && i++ < 256) {
6683 1.96 fvdl printf("%d ", ahc->qoutfifo[qoutpos]);
6684 1.96 fvdl qoutpos++;
6685 1.1 mycroft }
6686 1.96 fvdl printf("\n");
6687 1.42 fvdl
6688 1.96 fvdl printf("Sequencer Free SCB List: ");
6689 1.96 fvdl scb_index = ahc_inb(ahc, FREE_SCBH);
6690 1.96 fvdl i = 0;
6691 1.96 fvdl while (scb_index != SCB_LIST_NULL && i++ < 256) {
6692 1.96 fvdl ahc_outb(ahc, SCBPTR, scb_index);
6693 1.96 fvdl printf("%d ", scb_index);
6694 1.96 fvdl scb_index = ahc_inb(ahc, SCB_NEXT);
6695 1.96 fvdl }
6696 1.96 fvdl printf("\n");
6697 1.42 fvdl
6698 1.96 fvdl printf("Sequencer SCB Info: ");
6699 1.96 fvdl for (i = 0; i < ahc->scb_data->maxhscbs; i++) {
6700 1.42 fvdl ahc_outb(ahc, SCBPTR, i);
6701 1.96 fvdl /*cur_col =*/ printf("\n%3d ", i);
6702 1.96 fvdl
6703 1.96 fvdl ahc_scb_control_print(ahc_inb(ahc, SCB_CONTROL), &cur_col, 60);
6704 1.96 fvdl ahc_scb_scsiid_print(ahc_inb(ahc, SCB_SCSIID), &cur_col, 60);
6705 1.96 fvdl ahc_scb_lun_print(ahc_inb(ahc, SCB_LUN), &cur_col, 60);
6706 1.96 fvdl ahc_scb_tag_print(ahc_inb(ahc, SCB_TAG), &cur_col, 60);
6707 1.42 fvdl }
6708 1.96 fvdl printf("\n");
6709 1.42 fvdl
6710 1.96 fvdl printf("Pending list: ");
6711 1.96 fvdl i = 0;
6712 1.96 fvdl LIST_FOREACH(scb, &ahc->pending_scbs, pending_links) {
6713 1.96 fvdl if (i++ > 256)
6714 1.96 fvdl break;
6715 1.96 fvdl /*cur_col =*/ printf("\n%3d ", scb->hscb->tag);
6716 1.96 fvdl ahc_scb_control_print(scb->hscb->control, &cur_col, 60);
6717 1.96 fvdl ahc_scb_scsiid_print(scb->hscb->scsiid, &cur_col, 60);
6718 1.96 fvdl ahc_scb_lun_print(scb->hscb->lun, &cur_col, 60);
6719 1.96 fvdl if ((ahc->flags & AHC_PAGESCBS) == 0) {
6720 1.96 fvdl ahc_outb(ahc, SCBPTR, scb->hscb->tag);
6721 1.96 fvdl printf("(");
6722 1.96 fvdl ahc_scb_control_print(ahc_inb(ahc, SCB_CONTROL),
6723 1.96 fvdl &cur_col, 60);
6724 1.96 fvdl ahc_scb_tag_print(ahc_inb(ahc, SCB_TAG), &cur_col, 60);
6725 1.96 fvdl printf(")");
6726 1.6 mycroft }
6727 1.42 fvdl }
6728 1.96 fvdl printf("\n");
6729 1.6 mycroft
6730 1.96 fvdl printf("Kernel Free SCB list: ");
6731 1.96 fvdl i = 0;
6732 1.96 fvdl SLIST_FOREACH(scb, &ahc->scb_data->free_scbs, links.sle) {
6733 1.96 fvdl if (i++ > 256)
6734 1.96 fvdl break;
6735 1.96 fvdl printf("%d ", scb->hscb->tag);
6736 1.96 fvdl }
6737 1.96 fvdl printf("\n");
6738 1.42 fvdl
6739 1.96 fvdl maxtarget = (ahc->features & (AHC_WIDE|AHC_TWIN)) ? 15 : 7;
6740 1.96 fvdl for (target = 0; target <= maxtarget; target++) {
6741 1.96 fvdl untagged_q = &ahc->untagged_queues[target];
6742 1.96 fvdl if (TAILQ_FIRST(untagged_q) == NULL)
6743 1.96 fvdl continue;
6744 1.96 fvdl printf("Untagged Q(%d): ", target);
6745 1.96 fvdl i = 0;
6746 1.96 fvdl TAILQ_FOREACH(scb, untagged_q, links.tqe) {
6747 1.96 fvdl if (i++ > 256)
6748 1.42 fvdl break;
6749 1.96 fvdl printf("%d ", scb->hscb->tag);
6750 1.42 fvdl }
6751 1.96 fvdl printf("\n");
6752 1.42 fvdl }
6753 1.96 fvdl
6754 1.96 fvdl ahc_platform_dump_card_state(ahc);
6755 1.96 fvdl printf("\n<<<<<<<<<<<<<<<<< Dump Card State Ends >>>>>>>>>>>>>>>>>>\n");
6756 1.96 fvdl ahc_outb(ahc, SCBPTR, saved_scbptr);
6757 1.96 fvdl if (paused == 0)
6758 1.96 fvdl ahc_unpause(ahc);
6759 1.42 fvdl }
6760 1.42 fvdl
6761 1.96 fvdl /************************* Target Mode ****************************************/
6762 1.96 fvdl #ifdef AHC_TARGET_MODE
6763 1.96 fvdl cam_status
6764 1.96 fvdl ahc_find_tmode_devs(struct ahc_softc *ahc, struct cam_sim *sim, union ccb *ccb,
6765 1.96 fvdl struct ahc_tmode_tstate **tstate,
6766 1.96 fvdl struct ahc_tmode_lstate **lstate,
6767 1.96 fvdl int notfound_failure)
6768 1.42 fvdl {
6769 1.42 fvdl
6770 1.96 fvdl if ((ahc->features & AHC_TARGETMODE) == 0)
6771 1.96 fvdl return (CAM_REQ_INVALID);
6772 1.42 fvdl
6773 1.96 fvdl /*
6774 1.96 fvdl * Handle the 'black hole' device that sucks up
6775 1.96 fvdl * requests to unattached luns on enabled targets.
6776 1.96 fvdl */
6777 1.96 fvdl if (ccb->ccb_h.target_id == CAM_TARGET_WILDCARD
6778 1.96 fvdl && ccb->ccb_h.target_lun == CAM_LUN_WILDCARD) {
6779 1.96 fvdl *tstate = NULL;
6780 1.96 fvdl *lstate = ahc->black_hole;
6781 1.96 fvdl } else {
6782 1.96 fvdl u_int max_id;
6783 1.42 fvdl
6784 1.96 fvdl max_id = (ahc->features & AHC_WIDE) ? 15 : 7;
6785 1.96 fvdl if (ccb->ccb_h.target_id > max_id)
6786 1.96 fvdl return (CAM_TID_INVALID);
6787 1.42 fvdl
6788 1.96 fvdl if (ccb->ccb_h.target_lun >= AHC_NUM_LUNS)
6789 1.96 fvdl return (CAM_LUN_INVALID);
6790 1.42 fvdl
6791 1.96 fvdl *tstate = ahc->enabled_targets[ccb->ccb_h.target_id];
6792 1.96 fvdl *lstate = NULL;
6793 1.96 fvdl if (*tstate != NULL)
6794 1.96 fvdl *lstate =
6795 1.96 fvdl (*tstate)->enabled_luns[ccb->ccb_h.target_lun];
6796 1.96 fvdl }
6797 1.42 fvdl
6798 1.96 fvdl if (notfound_failure != 0 && *lstate == NULL)
6799 1.96 fvdl return (CAM_PATH_INVALID);
6800 1.42 fvdl
6801 1.96 fvdl return (CAM_REQ_CMP);
6802 1.42 fvdl }
6803 1.42 fvdl
6804 1.96 fvdl void
6805 1.96 fvdl ahc_handle_en_lun(struct ahc_softc *ahc, struct cam_sim *sim, union ccb *ccb)
6806 1.59 pk {
6807 1.96 fvdl struct ahc_tmode_tstate *tstate;
6808 1.96 fvdl struct ahc_tmode_lstate *lstate;
6809 1.96 fvdl struct ccb_en_lun *cel;
6810 1.96 fvdl cam_status status;
6811 1.96 fvdl u_int target;
6812 1.96 fvdl u_int lun;
6813 1.96 fvdl u_int target_mask;
6814 1.96 fvdl u_int our_id;
6815 1.96 fvdl u_long s;
6816 1.96 fvdl char channel;
6817 1.6 mycroft
6818 1.96 fvdl status = ahc_find_tmode_devs(ahc, sim, ccb, &tstate, &lstate,
6819 1.96 fvdl /*notfound_failure*/FALSE);
6820 1.42 fvdl
6821 1.96 fvdl if (status != CAM_REQ_CMP) {
6822 1.96 fvdl ccb->ccb_h.status = status;
6823 1.96 fvdl return;
6824 1.96 fvdl }
6825 1.6 mycroft
6826 1.96 fvdl if (cam_sim_bus(sim) == 0)
6827 1.96 fvdl our_id = ahc->our_id;
6828 1.96 fvdl else
6829 1.96 fvdl our_id = ahc->our_id_b;
6830 1.42 fvdl
6831 1.96 fvdl if (ccb->ccb_h.target_id != our_id) {
6832 1.42 fvdl /*
6833 1.96 fvdl * our_id represents our initiator ID, or
6834 1.96 fvdl * the ID of the first target to have an
6835 1.96 fvdl * enabled lun in target mode. There are
6836 1.96 fvdl * two cases that may preclude enabling a
6837 1.96 fvdl * target id other than our_id.
6838 1.96 fvdl *
6839 1.96 fvdl * o our_id is for an active initiator role.
6840 1.96 fvdl * Since the hardware does not support
6841 1.96 fvdl * reselections to the initiator role at
6842 1.96 fvdl * anything other than our_id, and our_id
6843 1.96 fvdl * is used by the hardware to indicate the
6844 1.96 fvdl * ID to use for both select-out and
6845 1.96 fvdl * reselect-out operations, the only target
6846 1.96 fvdl * ID we can support in this mode is our_id.
6847 1.96 fvdl *
6848 1.96 fvdl * o The MULTARGID feature is not available and
6849 1.96 fvdl * a previous target mode ID has been enabled.
6850 1.42 fvdl */
6851 1.96 fvdl if ((ahc->features & AHC_MULTIROLE) != 0) {
6852 1.96 fvdl
6853 1.96 fvdl if ((ahc->features & AHC_MULTI_TID) != 0
6854 1.96 fvdl && (ahc->flags & AHC_INITIATORROLE) != 0) {
6855 1.96 fvdl /*
6856 1.96 fvdl * Only allow additional targets if
6857 1.96 fvdl * the initiator role is disabled.
6858 1.96 fvdl * The hardware cannot handle a re-select-in
6859 1.96 fvdl * on the initiator id during a re-select-out
6860 1.96 fvdl * on a different target id.
6861 1.96 fvdl */
6862 1.96 fvdl status = CAM_TID_INVALID;
6863 1.96 fvdl } else if ((ahc->flags & AHC_INITIATORROLE) != 0
6864 1.96 fvdl || ahc->enabled_luns > 0) {
6865 1.96 fvdl /*
6866 1.96 fvdl * Only allow our target id to change
6867 1.96 fvdl * if the initiator role is not configured
6868 1.96 fvdl * and there are no enabled luns which
6869 1.96 fvdl * are attached to the currently registered
6870 1.96 fvdl * scsi id.
6871 1.96 fvdl */
6872 1.96 fvdl status = CAM_TID_INVALID;
6873 1.96 fvdl }
6874 1.96 fvdl } else if ((ahc->features & AHC_MULTI_TID) == 0
6875 1.96 fvdl && ahc->enabled_luns > 0) {
6876 1.96 fvdl
6877 1.96 fvdl status = CAM_TID_INVALID;
6878 1.96 fvdl }
6879 1.96 fvdl }
6880 1.96 fvdl
6881 1.96 fvdl if (status != CAM_REQ_CMP) {
6882 1.96 fvdl ccb->ccb_h.status = status;
6883 1.96 fvdl return;
6884 1.1 mycroft }
6885 1.42 fvdl
6886 1.1 mycroft /*
6887 1.96 fvdl * We now have an id that is valid.
6888 1.96 fvdl * If we aren't in target mode, switch modes.
6889 1.42 fvdl */
6890 1.96 fvdl if ((ahc->flags & AHC_TARGETROLE) == 0
6891 1.96 fvdl && ccb->ccb_h.target_id != CAM_TARGET_WILDCARD) {
6892 1.96 fvdl u_long s;
6893 1.96 fvdl
6894 1.96 fvdl printf("Configuring Target Mode\n");
6895 1.96 fvdl ahc_lock(ahc, &s);
6896 1.96 fvdl if (LIST_FIRST(&ahc->pending_scbs) != NULL) {
6897 1.96 fvdl ccb->ccb_h.status = CAM_BUSY;
6898 1.96 fvdl ahc_unlock(ahc, &s);
6899 1.96 fvdl return;
6900 1.96 fvdl }
6901 1.96 fvdl ahc->flags |= AHC_TARGETROLE;
6902 1.96 fvdl if ((ahc->features & AHC_MULTIROLE) == 0)
6903 1.96 fvdl ahc->flags &= ~AHC_INITIATORROLE;
6904 1.96 fvdl ahc_pause(ahc);
6905 1.96 fvdl ahc_loadseq(ahc);
6906 1.96 fvdl ahc_unlock(ahc, &s);
6907 1.96 fvdl }
6908 1.96 fvdl cel = &ccb->cel;
6909 1.96 fvdl target = ccb->ccb_h.target_id;
6910 1.96 fvdl lun = ccb->ccb_h.target_lun;
6911 1.96 fvdl channel = SIM_CHANNEL(ahc, sim);
6912 1.96 fvdl target_mask = 0x01 << target;
6913 1.96 fvdl if (channel == 'B')
6914 1.96 fvdl target_mask <<= 8;
6915 1.42 fvdl
6916 1.96 fvdl if (cel->enable != 0) {
6917 1.96 fvdl u_int scsiseq;
6918 1.42 fvdl
6919 1.96 fvdl /* Are we already enabled?? */
6920 1.96 fvdl if (lstate != NULL) {
6921 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
6922 1.96 fvdl printf("Lun already enabled\n");
6923 1.96 fvdl ccb->ccb_h.status = CAM_LUN_ALRDY_ENA;
6924 1.96 fvdl return;
6925 1.96 fvdl }
6926 1.42 fvdl
6927 1.96 fvdl if (cel->grp6_len != 0
6928 1.96 fvdl || cel->grp7_len != 0) {
6929 1.96 fvdl /*
6930 1.96 fvdl * Don't (yet?) support vendor
6931 1.96 fvdl * specific commands.
6932 1.96 fvdl */
6933 1.96 fvdl ccb->ccb_h.status = CAM_REQ_INVALID;
6934 1.96 fvdl printf("Non-zero Group Codes\n");
6935 1.96 fvdl return;
6936 1.96 fvdl }
6937 1.42 fvdl
6938 1.96 fvdl /*
6939 1.96 fvdl * Seems to be okay.
6940 1.96 fvdl * Setup our data structures.
6941 1.96 fvdl */
6942 1.96 fvdl if (target != CAM_TARGET_WILDCARD && tstate == NULL) {
6943 1.96 fvdl tstate = ahc_alloc_tstate(ahc, target, channel);
6944 1.96 fvdl if (tstate == NULL) {
6945 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
6946 1.96 fvdl printf("Couldn't allocate tstate\n");
6947 1.96 fvdl ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
6948 1.96 fvdl return;
6949 1.96 fvdl }
6950 1.96 fvdl }
6951 1.96 fvdl lstate = malloc(sizeof(*lstate), M_DEVBUF, M_NOWAIT);
6952 1.96 fvdl if (lstate == NULL) {
6953 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
6954 1.96 fvdl printf("Couldn't allocate lstate\n");
6955 1.96 fvdl ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
6956 1.96 fvdl return;
6957 1.96 fvdl }
6958 1.96 fvdl memset(lstate, 0, sizeof(*lstate));
6959 1.96 fvdl status = xpt_create_path(&lstate->path, /*periph*/NULL,
6960 1.96 fvdl xpt_path_path_id(ccb->ccb_h.path),
6961 1.96 fvdl xpt_path_target_id(ccb->ccb_h.path),
6962 1.96 fvdl xpt_path_lun_id(ccb->ccb_h.path));
6963 1.96 fvdl if (status != CAM_REQ_CMP) {
6964 1.96 fvdl free(lstate, M_DEVBUF);
6965 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
6966 1.96 fvdl printf("Couldn't allocate path\n");
6967 1.96 fvdl ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
6968 1.96 fvdl return;
6969 1.96 fvdl }
6970 1.96 fvdl SLIST_INIT(&lstate->accept_tios);
6971 1.96 fvdl SLIST_INIT(&lstate->immed_notifies);
6972 1.96 fvdl ahc_lock(ahc, &s);
6973 1.96 fvdl ahc_pause(ahc);
6974 1.96 fvdl if (target != CAM_TARGET_WILDCARD) {
6975 1.96 fvdl tstate->enabled_luns[lun] = lstate;
6976 1.96 fvdl ahc->enabled_luns++;
6977 1.96 fvdl
6978 1.96 fvdl if ((ahc->features & AHC_MULTI_TID) != 0) {
6979 1.96 fvdl u_int targid_mask;
6980 1.96 fvdl
6981 1.96 fvdl targid_mask = ahc_inb(ahc, TARGID)
6982 1.96 fvdl | (ahc_inb(ahc, TARGID + 1) << 8);
6983 1.96 fvdl
6984 1.96 fvdl targid_mask |= target_mask;
6985 1.96 fvdl ahc_outb(ahc, TARGID, targid_mask);
6986 1.96 fvdl ahc_outb(ahc, TARGID+1, (targid_mask >> 8));
6987 1.96 fvdl
6988 1.96 fvdl ahc_update_scsiid(ahc, targid_mask);
6989 1.96 fvdl } else {
6990 1.96 fvdl u_int our_id;
6991 1.96 fvdl char channel;
6992 1.42 fvdl
6993 1.96 fvdl channel = SIM_CHANNEL(ahc, sim);
6994 1.96 fvdl our_id = SIM_SCSI_ID(ahc, sim);
6995 1.42 fvdl
6996 1.96 fvdl /*
6997 1.96 fvdl * This can only happen if selections
6998 1.96 fvdl * are not enabled
6999 1.96 fvdl */
7000 1.96 fvdl if (target != our_id) {
7001 1.96 fvdl u_int sblkctl;
7002 1.96 fvdl char cur_channel;
7003 1.96 fvdl int swap;
7004 1.96 fvdl
7005 1.96 fvdl sblkctl = ahc_inb(ahc, SBLKCTL);
7006 1.96 fvdl cur_channel = (sblkctl & SELBUSB)
7007 1.96 fvdl ? 'B' : 'A';
7008 1.96 fvdl if ((ahc->features & AHC_TWIN) == 0)
7009 1.96 fvdl cur_channel = 'A';
7010 1.96 fvdl swap = cur_channel != channel;
7011 1.96 fvdl if (channel == 'A')
7012 1.96 fvdl ahc->our_id = target;
7013 1.96 fvdl else
7014 1.96 fvdl ahc->our_id_b = target;
7015 1.96 fvdl
7016 1.96 fvdl if (swap)
7017 1.96 fvdl ahc_outb(ahc, SBLKCTL,
7018 1.96 fvdl sblkctl ^ SELBUSB);
7019 1.42 fvdl
7020 1.96 fvdl ahc_outb(ahc, SCSIID, target);
7021 1.42 fvdl
7022 1.96 fvdl if (swap)
7023 1.96 fvdl ahc_outb(ahc, SBLKCTL, sblkctl);
7024 1.96 fvdl }
7025 1.96 fvdl }
7026 1.96 fvdl } else
7027 1.96 fvdl ahc->black_hole = lstate;
7028 1.96 fvdl /* Allow select-in operations */
7029 1.96 fvdl if (ahc->black_hole != NULL && ahc->enabled_luns > 0) {
7030 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ_TEMPLATE);
7031 1.96 fvdl scsiseq |= ENSELI;
7032 1.96 fvdl ahc_outb(ahc, SCSISEQ_TEMPLATE, scsiseq);
7033 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ);
7034 1.96 fvdl scsiseq |= ENSELI;
7035 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq);
7036 1.96 fvdl }
7037 1.96 fvdl ahc_unpause(ahc);
7038 1.96 fvdl ahc_unlock(ahc, &s);
7039 1.96 fvdl ccb->ccb_h.status = CAM_REQ_CMP;
7040 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
7041 1.96 fvdl printf("Lun now enabled for target mode\n");
7042 1.42 fvdl } else {
7043 1.96 fvdl struct scb *scb;
7044 1.96 fvdl int i, empty;
7045 1.6 mycroft
7046 1.96 fvdl if (lstate == NULL) {
7047 1.96 fvdl ccb->ccb_h.status = CAM_LUN_INVALID;
7048 1.96 fvdl return;
7049 1.96 fvdl }
7050 1.42 fvdl
7051 1.96 fvdl ahc_lock(ahc, &s);
7052 1.96 fvdl
7053 1.96 fvdl ccb->ccb_h.status = CAM_REQ_CMP;
7054 1.96 fvdl LIST_FOREACH(scb, &ahc->pending_scbs, pending_links) {
7055 1.96 fvdl struct ccb_hdr *ccbh;
7056 1.96 fvdl
7057 1.96 fvdl ccbh = &scb->io_ctx->ccb_h;
7058 1.96 fvdl if (ccbh->func_code == XPT_CONT_TARGET_IO
7059 1.96 fvdl && !xpt_path_comp(ccbh->path, ccb->ccb_h.path)){
7060 1.96 fvdl printf("CTIO pending\n");
7061 1.96 fvdl ccb->ccb_h.status = CAM_REQ_INVALID;
7062 1.96 fvdl ahc_unlock(ahc, &s);
7063 1.96 fvdl return;
7064 1.96 fvdl }
7065 1.96 fvdl }
7066 1.42 fvdl
7067 1.96 fvdl if (SLIST_FIRST(&lstate->accept_tios) != NULL) {
7068 1.96 fvdl printf("ATIOs pending\n");
7069 1.96 fvdl ccb->ccb_h.status = CAM_REQ_INVALID;
7070 1.96 fvdl }
7071 1.42 fvdl
7072 1.96 fvdl if (SLIST_FIRST(&lstate->immed_notifies) != NULL) {
7073 1.96 fvdl printf("INOTs pending\n");
7074 1.96 fvdl ccb->ccb_h.status = CAM_REQ_INVALID;
7075 1.96 fvdl }
7076 1.42 fvdl
7077 1.96 fvdl if (ccb->ccb_h.status != CAM_REQ_CMP) {
7078 1.96 fvdl ahc_unlock(ahc, &s);
7079 1.96 fvdl return;
7080 1.42 fvdl }
7081 1.42 fvdl
7082 1.96 fvdl xpt_print_path(ccb->ccb_h.path);
7083 1.96 fvdl printf("Target mode disabled\n");
7084 1.96 fvdl xpt_free_path(lstate->path);
7085 1.96 fvdl free(lstate, M_DEVBUF);
7086 1.96 fvdl
7087 1.96 fvdl ahc_pause(ahc);
7088 1.96 fvdl /* Can we clean up the target too? */
7089 1.96 fvdl if (target != CAM_TARGET_WILDCARD) {
7090 1.96 fvdl tstate->enabled_luns[lun] = NULL;
7091 1.96 fvdl ahc->enabled_luns--;
7092 1.96 fvdl for (empty = 1, i = 0; i < 8; i++)
7093 1.96 fvdl if (tstate->enabled_luns[i] != NULL) {
7094 1.96 fvdl empty = 0;
7095 1.96 fvdl break;
7096 1.96 fvdl }
7097 1.42 fvdl
7098 1.96 fvdl if (empty) {
7099 1.96 fvdl ahc_free_tstate(ahc, target, channel,
7100 1.96 fvdl /*force*/FALSE);
7101 1.96 fvdl if (ahc->features & AHC_MULTI_TID) {
7102 1.96 fvdl u_int targid_mask;
7103 1.96 fvdl
7104 1.96 fvdl targid_mask = ahc_inb(ahc, TARGID)
7105 1.96 fvdl | (ahc_inb(ahc, TARGID + 1)
7106 1.96 fvdl << 8);
7107 1.96 fvdl
7108 1.96 fvdl targid_mask &= ~target_mask;
7109 1.96 fvdl ahc_outb(ahc, TARGID, targid_mask);
7110 1.96 fvdl ahc_outb(ahc, TARGID+1,
7111 1.96 fvdl (targid_mask >> 8));
7112 1.96 fvdl ahc_update_scsiid(ahc, targid_mask);
7113 1.96 fvdl }
7114 1.96 fvdl }
7115 1.96 fvdl } else {
7116 1.42 fvdl
7117 1.96 fvdl ahc->black_hole = NULL;
7118 1.42 fvdl
7119 1.96 fvdl /*
7120 1.96 fvdl * We can't allow selections without
7121 1.96 fvdl * our black hole device.
7122 1.96 fvdl */
7123 1.96 fvdl empty = TRUE;
7124 1.96 fvdl }
7125 1.96 fvdl if (ahc->enabled_luns == 0) {
7126 1.96 fvdl /* Disallow select-in */
7127 1.96 fvdl u_int scsiseq;
7128 1.96 fvdl
7129 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ_TEMPLATE);
7130 1.96 fvdl scsiseq &= ~ENSELI;
7131 1.96 fvdl ahc_outb(ahc, SCSISEQ_TEMPLATE, scsiseq);
7132 1.96 fvdl scsiseq = ahc_inb(ahc, SCSISEQ);
7133 1.96 fvdl scsiseq &= ~ENSELI;
7134 1.96 fvdl ahc_outb(ahc, SCSISEQ, scsiseq);
7135 1.96 fvdl
7136 1.96 fvdl if ((ahc->features & AHC_MULTIROLE) == 0) {
7137 1.96 fvdl printf("Configuring Initiator Mode\n");
7138 1.96 fvdl ahc->flags &= ~AHC_TARGETROLE;
7139 1.96 fvdl ahc->flags |= AHC_INITIATORROLE;
7140 1.96 fvdl ahc_pause(ahc);
7141 1.96 fvdl ahc_loadseq(ahc);
7142 1.96 fvdl }
7143 1.96 fvdl }
7144 1.96 fvdl ahc_unpause(ahc);
7145 1.96 fvdl ahc_unlock(ahc, &s);
7146 1.96 fvdl }
7147 1.6 mycroft }
7148 1.6 mycroft
7149 1.6 mycroft static void
7150 1.96 fvdl ahc_update_scsiid(struct ahc_softc *ahc, u_int targid_mask)
7151 1.6 mycroft {
7152 1.96 fvdl u_int scsiid_mask;
7153 1.96 fvdl u_int scsiid;
7154 1.96 fvdl
7155 1.96 fvdl if ((ahc->features & AHC_MULTI_TID) == 0)
7156 1.96 fvdl panic("ahc_update_scsiid called on non-multitid unit\n");
7157 1.96 fvdl
7158 1.96 fvdl /*
7159 1.96 fvdl * Since we will rely on the TARGID mask
7160 1.96 fvdl * for selection enables, ensure that OID
7161 1.96 fvdl * in SCSIID is not set to some other ID
7162 1.96 fvdl * that we don't want to allow selections on.
7163 1.96 fvdl */
7164 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
7165 1.96 fvdl scsiid = ahc_inb(ahc, SCSIID_ULTRA2);
7166 1.96 fvdl else
7167 1.96 fvdl scsiid = ahc_inb(ahc, SCSIID);
7168 1.96 fvdl scsiid_mask = 0x1 << (scsiid & OID);
7169 1.96 fvdl if ((targid_mask & scsiid_mask) == 0) {
7170 1.96 fvdl u_int our_id;
7171 1.1 mycroft
7172 1.96 fvdl /* ffs counts from 1 */
7173 1.96 fvdl our_id = ffs(targid_mask);
7174 1.96 fvdl if (our_id == 0)
7175 1.96 fvdl our_id = ahc->our_id;
7176 1.96 fvdl else
7177 1.96 fvdl our_id--;
7178 1.96 fvdl scsiid &= TID;
7179 1.96 fvdl scsiid |= our_id;
7180 1.96 fvdl }
7181 1.96 fvdl if ((ahc->features & AHC_ULTRA2) != 0)
7182 1.96 fvdl ahc_outb(ahc, SCSIID_ULTRA2, scsiid);
7183 1.96 fvdl else
7184 1.96 fvdl ahc_outb(ahc, SCSIID, scsiid);
7185 1.1 mycroft }
7186 1.1 mycroft
7187 1.96 fvdl void
7188 1.96 fvdl ahc_run_tqinfifo(struct ahc_softc *ahc, int paused)
7189 1.1 mycroft {
7190 1.96 fvdl struct target_cmd *cmd;
7191 1.6 mycroft
7192 1.6 mycroft /*
7193 1.96 fvdl * If the card supports auto-access pause,
7194 1.96 fvdl * we can access the card directly regardless
7195 1.96 fvdl * of whether it is paused or not.
7196 1.96 fvdl */
7197 1.96 fvdl if ((ahc->features & AHC_AUTOPAUSE) != 0)
7198 1.96 fvdl paused = TRUE;
7199 1.59 pk
7200 1.96 fvdl ahc_sync_tqinfifo(ahc, BUS_DMASYNC_POSTREAD);
7201 1.96 fvdl while ((cmd = &ahc->targetcmds[ahc->tqinfifonext])->cmd_valid != 0) {
7202 1.1 mycroft
7203 1.6 mycroft /*
7204 1.96 fvdl * Only advance through the queue if we
7205 1.96 fvdl * have the resources to process the command.
7206 1.6 mycroft */
7207 1.96 fvdl if (ahc_handle_target_cmd(ahc, cmd) != 0)
7208 1.96 fvdl break;
7209 1.42 fvdl
7210 1.96 fvdl cmd->cmd_valid = 0;
7211 1.96 fvdl ahc_dmamap_sync(ahc, ahc->parent_dmat/*shared_data_dmat*/,
7212 1.96 fvdl ahc->shared_data_dmamap,
7213 1.96 fvdl ahc_targetcmd_offset(ahc, ahc->tqinfifonext),
7214 1.96 fvdl sizeof(struct target_cmd),
7215 1.96 fvdl BUS_DMASYNC_PREREAD);
7216 1.96 fvdl ahc->tqinfifonext++;
7217 1.96 fvdl
7218 1.96 fvdl /*
7219 1.96 fvdl * Lazily update our position in the target mode incoming
7220 1.96 fvdl * command queue as seen by the sequencer.
7221 1.96 fvdl */
7222 1.96 fvdl if ((ahc->tqinfifonext & (HOST_TQINPOS - 1)) == 1) {
7223 1.96 fvdl if ((ahc->features & AHC_HS_MAILBOX) != 0) {
7224 1.96 fvdl u_int hs_mailbox;
7225 1.96 fvdl
7226 1.96 fvdl hs_mailbox = ahc_inb(ahc, HS_MAILBOX);
7227 1.96 fvdl hs_mailbox &= ~HOST_TQINPOS;
7228 1.96 fvdl hs_mailbox |= ahc->tqinfifonext & HOST_TQINPOS;
7229 1.96 fvdl ahc_outb(ahc, HS_MAILBOX, hs_mailbox);
7230 1.96 fvdl } else {
7231 1.96 fvdl if (!paused)
7232 1.96 fvdl ahc_pause(ahc);
7233 1.96 fvdl ahc_outb(ahc, KERNEL_TQINPOS,
7234 1.96 fvdl ahc->tqinfifonext & HOST_TQINPOS);
7235 1.96 fvdl if (!paused)
7236 1.96 fvdl ahc_unpause(ahc);
7237 1.96 fvdl }
7238 1.6 mycroft }
7239 1.42 fvdl }
7240 1.96 fvdl }
7241 1.96 fvdl
7242 1.96 fvdl static int
7243 1.96 fvdl ahc_handle_target_cmd(struct ahc_softc *ahc, struct target_cmd *cmd)
7244 1.96 fvdl {
7245 1.96 fvdl struct ahc_tmode_tstate *tstate;
7246 1.96 fvdl struct ahc_tmode_lstate *lstate;
7247 1.96 fvdl struct ccb_accept_tio *atio;
7248 1.96 fvdl uint8_t *byte;
7249 1.96 fvdl int initiator;
7250 1.96 fvdl int target;
7251 1.96 fvdl int lun;
7252 1.96 fvdl
7253 1.96 fvdl initiator = SCSIID_TARGET(ahc, cmd->scsiid);
7254 1.96 fvdl target = SCSIID_OUR_ID(cmd->scsiid);
7255 1.96 fvdl lun = (cmd->identify & MSG_IDENTIFY_LUNMASK);
7256 1.96 fvdl
7257 1.96 fvdl byte = cmd->bytes;
7258 1.96 fvdl tstate = ahc->enabled_targets[target];
7259 1.96 fvdl lstate = NULL;
7260 1.96 fvdl if (tstate != NULL)
7261 1.96 fvdl lstate = tstate->enabled_luns[lun];
7262 1.42 fvdl
7263 1.42 fvdl /*
7264 1.96 fvdl * Commands for disabled luns go to the black hole driver.
7265 1.42 fvdl */
7266 1.96 fvdl if (lstate == NULL)
7267 1.96 fvdl lstate = ahc->black_hole;
7268 1.42 fvdl
7269 1.96 fvdl atio = (struct ccb_accept_tio*)SLIST_FIRST(&lstate->accept_tios);
7270 1.96 fvdl if (atio == NULL) {
7271 1.96 fvdl ahc->flags |= AHC_TQINFIFO_BLOCKED;
7272 1.96 fvdl /*
7273 1.96 fvdl * Wait for more ATIOs from the peripheral driver for this lun.
7274 1.96 fvdl */
7275 1.96 fvdl if (bootverbose)
7276 1.96 fvdl printf("%s: ATIOs exhausted\n", ahc_name(ahc));
7277 1.96 fvdl return (1);
7278 1.96 fvdl } else
7279 1.96 fvdl ahc->flags &= ~AHC_TQINFIFO_BLOCKED;
7280 1.96 fvdl #if 0
7281 1.96 fvdl printf("Incoming command from %d for %d:%d%s\n",
7282 1.96 fvdl initiator, target, lun,
7283 1.96 fvdl lstate == ahc->black_hole ? "(Black Holed)" : "");
7284 1.42 fvdl #endif
7285 1.96 fvdl SLIST_REMOVE_HEAD(&lstate->accept_tios, sim_links.sle);
7286 1.42 fvdl
7287 1.96 fvdl if (lstate == ahc->black_hole) {
7288 1.96 fvdl /* Fill in the wildcards */
7289 1.96 fvdl atio->ccb_h.target_id = target;
7290 1.96 fvdl atio->ccb_h.target_lun = lun;
7291 1.96 fvdl }
7292 1.42 fvdl
7293 1.42 fvdl /*
7294 1.96 fvdl * Package it up and send it off to
7295 1.96 fvdl * whomever has this lun enabled.
7296 1.42 fvdl */
7297 1.96 fvdl atio->sense_len = 0;
7298 1.96 fvdl atio->init_id = initiator;
7299 1.96 fvdl if (byte[0] != 0xFF) {
7300 1.96 fvdl /* Tag was included */
7301 1.96 fvdl atio->tag_action = *byte++;
7302 1.96 fvdl atio->tag_id = *byte++;
7303 1.96 fvdl atio->ccb_h.flags = CAM_TAG_ACTION_VALID;
7304 1.96 fvdl } else {
7305 1.96 fvdl atio->ccb_h.flags = 0;
7306 1.42 fvdl }
7307 1.96 fvdl byte++;
7308 1.42 fvdl
7309 1.96 fvdl /* Okay. Now determine the cdb size based on the command code */
7310 1.96 fvdl switch (*byte >> CMD_GROUP_CODE_SHIFT) {
7311 1.96 fvdl case 0:
7312 1.96 fvdl atio->cdb_len = 6;
7313 1.96 fvdl break;
7314 1.96 fvdl case 1:
7315 1.96 fvdl case 2:
7316 1.96 fvdl atio->cdb_len = 10;
7317 1.96 fvdl break;
7318 1.96 fvdl case 4:
7319 1.96 fvdl atio->cdb_len = 16;
7320 1.96 fvdl break;
7321 1.96 fvdl case 5:
7322 1.96 fvdl atio->cdb_len = 12;
7323 1.96 fvdl break;
7324 1.96 fvdl case 3:
7325 1.96 fvdl default:
7326 1.96 fvdl /* Only copy the opcode. */
7327 1.96 fvdl atio->cdb_len = 1;
7328 1.96 fvdl printf("Reserved or VU command code type encountered\n");
7329 1.96 fvdl break;
7330 1.1 mycroft }
7331 1.96 fvdl
7332 1.96 fvdl memcpy(atio->cdb_io.cdb_bytes, byte, atio->cdb_len);
7333 1.42 fvdl
7334 1.96 fvdl atio->ccb_h.status |= CAM_CDB_RECVD;
7335 1.42 fvdl
7336 1.96 fvdl if ((cmd->identify & MSG_IDENTIFY_DISCFLAG) == 0) {
7337 1.96 fvdl /*
7338 1.96 fvdl * We weren't allowed to disconnect.
7339 1.96 fvdl * We're hanging on the bus until a
7340 1.96 fvdl * continue target I/O comes in response
7341 1.96 fvdl * to this accept tio.
7342 1.96 fvdl */
7343 1.96 fvdl #if 0
7344 1.96 fvdl printf("Received Immediate Command %d:%d:%d - %p\n",
7345 1.96 fvdl initiator, target, lun, ahc->pending_device);
7346 1.96 fvdl #endif
7347 1.96 fvdl ahc->pending_device = lstate;
7348 1.96 fvdl ahc_freeze_ccb((union ccb *)atio);
7349 1.96 fvdl atio->ccb_h.flags |= CAM_DIS_DISCONNECT;
7350 1.1 mycroft }
7351 1.96 fvdl xpt_done((union ccb*)atio);
7352 1.96 fvdl return (0);
7353 1.6 mycroft }
7354 1.42 fvdl #endif
7355 1.42 fvdl
7356 1.96 fvdl static int
7357 1.96 fvdl ahc_createdmamem(tag, size, flags, mapp, vaddr, baddr, seg, nseg, myname, what)
7358 1.96 fvdl bus_dma_tag_t tag;
7359 1.96 fvdl int size;
7360 1.96 fvdl int flags;
7361 1.96 fvdl bus_dmamap_t *mapp;
7362 1.96 fvdl caddr_t *vaddr;
7363 1.96 fvdl bus_addr_t *baddr;
7364 1.96 fvdl bus_dma_segment_t *seg;
7365 1.96 fvdl int *nseg;
7366 1.96 fvdl const char *myname, *what;
7367 1.6 mycroft {
7368 1.96 fvdl int error, level = 0;
7369 1.42 fvdl
7370 1.96 fvdl if ((error = bus_dmamem_alloc(tag, size, PAGE_SIZE, 0,
7371 1.96 fvdl seg, 1, nseg, BUS_DMA_NOWAIT)) != 0) {
7372 1.96 fvdl printf("%s: failed to allocate DMA mem for %s, error = %d\n",
7373 1.96 fvdl myname, what, error);
7374 1.96 fvdl goto out;
7375 1.96 fvdl }
7376 1.96 fvdl level++;
7377 1.42 fvdl
7378 1.96 fvdl if ((error = bus_dmamem_map(tag, seg, *nseg, size, vaddr,
7379 1.96 fvdl BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) != 0) {
7380 1.96 fvdl printf("%s: failed to map DMA mem for %s, error = %d\n",
7381 1.96 fvdl myname, what, error);
7382 1.96 fvdl goto out;
7383 1.96 fvdl }
7384 1.96 fvdl level++;
7385 1.42 fvdl
7386 1.96 fvdl if ((error = bus_dmamap_create(tag, size, 1, size, 0,
7387 1.96 fvdl BUS_DMA_NOWAIT | flags, mapp)) != 0) {
7388 1.96 fvdl printf("%s: failed to create DMA map for %s, error = %d\n",
7389 1.96 fvdl myname, what, error);
7390 1.96 fvdl goto out;
7391 1.96 fvdl }
7392 1.96 fvdl level++;
7393 1.42 fvdl
7394 1.42 fvdl
7395 1.96 fvdl if ((error = bus_dmamap_load(tag, *mapp, *vaddr, size, NULL,
7396 1.96 fvdl BUS_DMA_NOWAIT)) != 0) {
7397 1.96 fvdl printf("%s: failed to load DMA map for %s, error = %d\n",
7398 1.96 fvdl myname, what, error);
7399 1.96 fvdl goto out;
7400 1.96 fvdl }
7401 1.42 fvdl
7402 1.96 fvdl *baddr = (*mapp)->dm_segs[0].ds_addr;
7403 1.1 mycroft
7404 1.96 fvdl return 0;
7405 1.96 fvdl out:
7406 1.96 fvdl printf("ahc_createdmamem error (%d)\n", level);
7407 1.96 fvdl switch (level) {
7408 1.96 fvdl case 3:
7409 1.96 fvdl bus_dmamap_destroy(tag, *mapp);
7410 1.96 fvdl /* FALLTHROUGH */
7411 1.96 fvdl case 2:
7412 1.96 fvdl bus_dmamem_unmap(tag, *vaddr, size);
7413 1.96 fvdl /* FALLTHROUGH */
7414 1.96 fvdl case 1:
7415 1.96 fvdl bus_dmamem_free(tag, seg, *nseg);
7416 1.96 fvdl break;
7417 1.96 fvdl default:
7418 1.96 fvdl break;
7419 1.42 fvdl }
7420 1.14 gibbs
7421 1.96 fvdl return error;
7422 1.14 gibbs }
7423 1.14 gibbs
7424 1.14 gibbs static void
7425 1.96 fvdl ahc_freedmamem(tag, size, map, vaddr, seg, nseg)
7426 1.96 fvdl bus_dma_tag_t tag;
7427 1.96 fvdl int size;
7428 1.96 fvdl bus_dmamap_t map;
7429 1.96 fvdl caddr_t vaddr;
7430 1.96 fvdl bus_dma_segment_t *seg;
7431 1.96 fvdl int nseg;
7432 1.14 gibbs {
7433 1.42 fvdl
7434 1.96 fvdl bus_dmamap_unload(tag, map);
7435 1.96 fvdl bus_dmamap_destroy(tag, map);
7436 1.96 fvdl bus_dmamem_unmap(tag, vaddr, size);
7437 1.96 fvdl bus_dmamem_free(tag, seg, nseg);
7438 1.45 fvdl }
7439