blob: 1911c5d17875912f4e9692342ede45c284362a08 [file] [log] [blame]
James Bottomley2908d772006-08-29 09:22:51 -05001/*
2 * Aic94xx SAS/SATA driver SCB management.
3 *
4 * Copyright (C) 2005 Adaptec, Inc. All rights reserved.
5 * Copyright (C) 2005 Luben Tuikov <luben_tuikov@adaptec.com>
6 *
7 * This file is licensed under GPLv2.
8 *
9 * This file is part of the aic94xx driver.
10 *
11 * The aic94xx driver is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License as
13 * published by the Free Software Foundation; version 2 of the
14 * License.
15 *
16 * The aic94xx driver is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 * General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with the aic94xx driver; if not, write to the Free Software
23 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
24 *
25 */
26
27#include <linux/pci.h>
Darrick J. Wongfe4a36c2006-10-30 15:18:56 -080028#include <scsi/scsi_host.h>
James Bottomley2908d772006-08-29 09:22:51 -050029
30#include "aic94xx.h"
31#include "aic94xx_reg.h"
32#include "aic94xx_hwi.h"
33#include "aic94xx_seq.h"
34
35#include "aic94xx_dump.h"
36
37/* ---------- EMPTY SCB ---------- */
38
39#define DL_PHY_MASK 7
40#define BYTES_DMAED 0
41#define PRIMITIVE_RECVD 0x08
42#define PHY_EVENT 0x10
43#define LINK_RESET_ERROR 0x18
44#define TIMER_EVENT 0x20
45#define REQ_TASK_ABORT 0xF0
46#define REQ_DEVICE_RESET 0xF1
47#define SIGNAL_NCQ_ERROR 0xF2
48#define CLEAR_NCQ_ERROR 0xF3
49
50#define PHY_EVENTS_STATUS (CURRENT_LOSS_OF_SIGNAL | CURRENT_OOB_DONE \
51 | CURRENT_SPINUP_HOLD | CURRENT_GTO_TIMEOUT \
52 | CURRENT_OOB_ERROR)
53
54static inline void get_lrate_mode(struct asd_phy *phy, u8 oob_mode)
55{
James Bottomleya01e70e2006-09-06 19:28:07 -050056 struct sas_phy *sas_phy = phy->sas_phy.phy;
57
James Bottomley2908d772006-08-29 09:22:51 -050058 switch (oob_mode & 7) {
59 case PHY_SPEED_60:
60 /* FIXME: sas transport class doesn't have this */
James Bottomley88edf742006-09-06 17:36:13 -050061 phy->sas_phy.linkrate = SAS_LINK_RATE_6_0_GBPS;
James Bottomley2908d772006-08-29 09:22:51 -050062 phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_6_0_GBPS;
63 break;
64 case PHY_SPEED_30:
James Bottomley88edf742006-09-06 17:36:13 -050065 phy->sas_phy.linkrate = SAS_LINK_RATE_3_0_GBPS;
James Bottomley2908d772006-08-29 09:22:51 -050066 phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_3_0_GBPS;
67 break;
68 case PHY_SPEED_15:
James Bottomley88edf742006-09-06 17:36:13 -050069 phy->sas_phy.linkrate = SAS_LINK_RATE_1_5_GBPS;
James Bottomley2908d772006-08-29 09:22:51 -050070 phy->sas_phy.phy->negotiated_linkrate = SAS_LINK_RATE_1_5_GBPS;
71 break;
72 }
James Bottomleya01e70e2006-09-06 19:28:07 -050073 sas_phy->negotiated_linkrate = phy->sas_phy.linkrate;
74 sas_phy->maximum_linkrate_hw = SAS_LINK_RATE_3_0_GBPS;
75 sas_phy->minimum_linkrate_hw = SAS_LINK_RATE_1_5_GBPS;
76 sas_phy->maximum_linkrate = phy->phy_desc->max_sas_lrate;
77 sas_phy->minimum_linkrate = phy->phy_desc->min_sas_lrate;
78
James Bottomley2908d772006-08-29 09:22:51 -050079 if (oob_mode & SAS_MODE)
80 phy->sas_phy.oob_mode = SAS_OOB_MODE;
81 else if (oob_mode & SATA_MODE)
82 phy->sas_phy.oob_mode = SATA_OOB_MODE;
83}
84
85static inline void asd_phy_event_tasklet(struct asd_ascb *ascb,
86 struct done_list_struct *dl)
87{
88 struct asd_ha_struct *asd_ha = ascb->ha;
89 struct sas_ha_struct *sas_ha = &asd_ha->sas_ha;
90 int phy_id = dl->status_block[0] & DL_PHY_MASK;
91 struct asd_phy *phy = &asd_ha->phys[phy_id];
92
93 u8 oob_status = dl->status_block[1] & PHY_EVENTS_STATUS;
94 u8 oob_mode = dl->status_block[2];
95
96 switch (oob_status) {
97 case CURRENT_LOSS_OF_SIGNAL:
98 /* directly attached device was removed */
99 ASD_DPRINTK("phy%d: device unplugged\n", phy_id);
100 asd_turn_led(asd_ha, phy_id, 0);
101 sas_phy_disconnected(&phy->sas_phy);
102 sas_ha->notify_phy_event(&phy->sas_phy, PHYE_LOSS_OF_SIGNAL);
103 break;
104 case CURRENT_OOB_DONE:
105 /* hot plugged device */
106 asd_turn_led(asd_ha, phy_id, 1);
107 get_lrate_mode(phy, oob_mode);
108 ASD_DPRINTK("phy%d device plugged: lrate:0x%x, proto:0x%x\n",
109 phy_id, phy->sas_phy.linkrate, phy->sas_phy.iproto);
110 sas_ha->notify_phy_event(&phy->sas_phy, PHYE_OOB_DONE);
111 break;
112 case CURRENT_SPINUP_HOLD:
113 /* hot plug SATA, no COMWAKE sent */
114 asd_turn_led(asd_ha, phy_id, 1);
115 sas_ha->notify_phy_event(&phy->sas_phy, PHYE_SPINUP_HOLD);
116 break;
117 case CURRENT_GTO_TIMEOUT:
118 case CURRENT_OOB_ERROR:
119 ASD_DPRINTK("phy%d error while OOB: oob status:0x%x\n", phy_id,
120 dl->status_block[1]);
121 asd_turn_led(asd_ha, phy_id, 0);
122 sas_phy_disconnected(&phy->sas_phy);
123 sas_ha->notify_phy_event(&phy->sas_phy, PHYE_OOB_ERROR);
124 break;
125 }
126}
127
128/* If phys are enabled sparsely, this will do the right thing. */
129static inline unsigned ord_phy(struct asd_ha_struct *asd_ha,
130 struct asd_phy *phy)
131{
132 u8 enabled_mask = asd_ha->hw_prof.enabled_phys;
133 int i, k = 0;
134
135 for_each_phy(enabled_mask, enabled_mask, i) {
136 if (&asd_ha->phys[i] == phy)
137 return k;
138 k++;
139 }
140 return 0;
141}
142
143/**
144 * asd_get_attached_sas_addr -- extract/generate attached SAS address
145 * phy: pointer to asd_phy
146 * sas_addr: pointer to buffer where the SAS address is to be written
147 *
148 * This function extracts the SAS address from an IDENTIFY frame
149 * received. If OOB is SATA, then a SAS address is generated from the
150 * HA tables.
151 *
152 * LOCKING: the frame_rcvd_lock needs to be held since this parses the frame
153 * buffer.
154 */
155static inline void asd_get_attached_sas_addr(struct asd_phy *phy, u8 *sas_addr)
156{
157 if (phy->sas_phy.frame_rcvd[0] == 0x34
158 && phy->sas_phy.oob_mode == SATA_OOB_MODE) {
159 struct asd_ha_struct *asd_ha = phy->sas_phy.ha->lldd_ha;
160 /* FIS device-to-host */
161 u64 addr = be64_to_cpu(*(__be64 *)phy->phy_desc->sas_addr);
162
163 addr += asd_ha->hw_prof.sata_name_base + ord_phy(asd_ha, phy);
164 *(__be64 *)sas_addr = cpu_to_be64(addr);
165 } else {
166 struct sas_identify_frame *idframe =
167 (void *) phy->sas_phy.frame_rcvd;
168 memcpy(sas_addr, idframe->sas_addr, SAS_ADDR_SIZE);
169 }
170}
171
172static inline void asd_bytes_dmaed_tasklet(struct asd_ascb *ascb,
173 struct done_list_struct *dl,
174 int edb_id, int phy_id)
175{
176 unsigned long flags;
177 int edb_el = edb_id + ascb->edb_index;
178 struct asd_dma_tok *edb = ascb->ha->seq.edb_arr[edb_el];
179 struct asd_phy *phy = &ascb->ha->phys[phy_id];
180 struct sas_ha_struct *sas_ha = phy->sas_phy.ha;
181 u16 size = ((dl->status_block[3] & 7) << 8) | dl->status_block[2];
182
183 size = min(size, (u16) sizeof(phy->frame_rcvd));
184
185 spin_lock_irqsave(&phy->sas_phy.frame_rcvd_lock, flags);
186 memcpy(phy->sas_phy.frame_rcvd, edb->vaddr, size);
187 phy->sas_phy.frame_rcvd_size = size;
188 asd_get_attached_sas_addr(phy, phy->sas_phy.attached_sas_addr);
189 spin_unlock_irqrestore(&phy->sas_phy.frame_rcvd_lock, flags);
190 asd_dump_frame_rcvd(phy, dl);
191 sas_ha->notify_port_event(&phy->sas_phy, PORTE_BYTES_DMAED);
192}
193
194static inline void asd_link_reset_err_tasklet(struct asd_ascb *ascb,
195 struct done_list_struct *dl,
196 int phy_id)
197{
198 struct asd_ha_struct *asd_ha = ascb->ha;
199 struct sas_ha_struct *sas_ha = &asd_ha->sas_ha;
200 struct asd_sas_phy *sas_phy = sas_ha->sas_phy[phy_id];
201 u8 lr_error = dl->status_block[1];
202 u8 retries_left = dl->status_block[2];
203
204 switch (lr_error) {
205 case 0:
206 ASD_DPRINTK("phy%d: Receive ID timer expired\n", phy_id);
207 break;
208 case 1:
209 ASD_DPRINTK("phy%d: Loss of signal\n", phy_id);
210 break;
211 case 2:
212 ASD_DPRINTK("phy%d: Loss of dword sync\n", phy_id);
213 break;
214 case 3:
215 ASD_DPRINTK("phy%d: Receive FIS timeout\n", phy_id);
216 break;
217 default:
218 ASD_DPRINTK("phy%d: unknown link reset error code: 0x%x\n",
219 phy_id, lr_error);
220 break;
221 }
222
223 asd_turn_led(asd_ha, phy_id, 0);
224 sas_phy_disconnected(sas_phy);
225 sas_ha->notify_port_event(sas_phy, PORTE_LINK_RESET_ERR);
226
227 if (retries_left == 0) {
228 int num = 1;
229 struct asd_ascb *cp = asd_ascb_alloc_list(ascb->ha, &num,
230 GFP_ATOMIC);
231 if (!cp) {
232 asd_printk("%s: out of memory\n", __FUNCTION__);
233 goto out;
234 }
235 ASD_DPRINTK("phy%d: retries:0 performing link reset seq\n",
236 phy_id);
237 asd_build_control_phy(cp, phy_id, ENABLE_PHY);
238 if (asd_post_ascb_list(ascb->ha, cp, 1) != 0)
239 asd_ascb_free(cp);
240 }
241out:
242 ;
243}
244
245static inline void asd_primitive_rcvd_tasklet(struct asd_ascb *ascb,
246 struct done_list_struct *dl,
247 int phy_id)
248{
249 unsigned long flags;
250 struct sas_ha_struct *sas_ha = &ascb->ha->sas_ha;
251 struct asd_sas_phy *sas_phy = sas_ha->sas_phy[phy_id];
252 u8 reg = dl->status_block[1];
253 u32 cont = dl->status_block[2] << ((reg & 3)*8);
254
255 reg &= ~3;
256 switch (reg) {
257 case LmPRMSTAT0BYTE0:
258 switch (cont) {
259 case LmBROADCH:
260 case LmBROADRVCH0:
261 case LmBROADRVCH1:
262 case LmBROADSES:
263 ASD_DPRINTK("phy%d: BROADCAST change received:%d\n",
264 phy_id, cont);
265 spin_lock_irqsave(&sas_phy->sas_prim_lock, flags);
266 sas_phy->sas_prim = ffs(cont);
267 spin_unlock_irqrestore(&sas_phy->sas_prim_lock, flags);
268 sas_ha->notify_port_event(sas_phy,PORTE_BROADCAST_RCVD);
269 break;
270
271 case LmUNKNOWNP:
272 ASD_DPRINTK("phy%d: unknown BREAK\n", phy_id);
273 break;
274
275 default:
276 ASD_DPRINTK("phy%d: primitive reg:0x%x, cont:0x%04x\n",
277 phy_id, reg, cont);
278 break;
279 }
280 break;
281 case LmPRMSTAT1BYTE0:
282 switch (cont) {
283 case LmHARDRST:
284 ASD_DPRINTK("phy%d: HARD_RESET primitive rcvd\n",
285 phy_id);
286 /* The sequencer disables all phys on that port.
287 * We have to re-enable the phys ourselves. */
288 sas_ha->notify_port_event(sas_phy, PORTE_HARD_RESET);
289 break;
290
291 default:
292 ASD_DPRINTK("phy%d: primitive reg:0x%x, cont:0x%04x\n",
293 phy_id, reg, cont);
294 break;
295 }
296 break;
297 default:
298 ASD_DPRINTK("unknown primitive register:0x%x\n",
299 dl->status_block[1]);
300 break;
301 }
302}
303
304/**
305 * asd_invalidate_edb -- invalidate an EDB and if necessary post the ESCB
306 * @ascb: pointer to Empty SCB
307 * @edb_id: index [0,6] to the empty data buffer which is to be invalidated
308 *
309 * After an EDB has been invalidated, if all EDBs in this ESCB have been
310 * invalidated, the ESCB is posted back to the sequencer.
311 * Context is tasklet/IRQ.
312 */
313void asd_invalidate_edb(struct asd_ascb *ascb, int edb_id)
314{
315 struct asd_seq_data *seq = &ascb->ha->seq;
316 struct empty_scb *escb = &ascb->scb->escb;
317 struct sg_el *eb = &escb->eb[edb_id];
318 struct asd_dma_tok *edb = seq->edb_arr[ascb->edb_index + edb_id];
319
320 memset(edb->vaddr, 0, ASD_EDB_SIZE);
321 eb->flags |= ELEMENT_NOT_VALID;
322 escb->num_valid--;
323
324 if (escb->num_valid == 0) {
325 int i;
326 /* ASD_DPRINTK("reposting escb: vaddr: 0x%p, "
327 "dma_handle: 0x%08llx, next: 0x%08llx, "
328 "index:%d, opcode:0x%02x\n",
329 ascb->dma_scb.vaddr,
330 (u64)ascb->dma_scb.dma_handle,
331 le64_to_cpu(ascb->scb->header.next_scb),
332 le16_to_cpu(ascb->scb->header.index),
333 ascb->scb->header.opcode);
334 */
335 escb->num_valid = ASD_EDBS_PER_SCB;
336 for (i = 0; i < ASD_EDBS_PER_SCB; i++)
337 escb->eb[i].flags = 0;
338 if (!list_empty(&ascb->list))
339 list_del_init(&ascb->list);
340 i = asd_post_escb_list(ascb->ha, ascb, 1);
341 if (i)
342 asd_printk("couldn't post escb, err:%d\n", i);
343 }
344}
345
Darrick J. Wongfe4a36c2006-10-30 15:18:56 -0800346/* start up the ABORT TASK tmf... */
347static void task_kill_later(struct asd_ascb *ascb)
348{
349 struct asd_ha_struct *asd_ha = ascb->ha;
350 struct sas_ha_struct *sas_ha = &asd_ha->sas_ha;
351 struct Scsi_Host *shost = sas_ha->core.shost;
352 struct sas_task *task = ascb->uldd_task;
353
354 INIT_WORK(&task->abort_work, (void (*)(void *))sas_task_abort, task);
355 queue_work(shost->work_q, &task->abort_work);
356}
357
James Bottomley2908d772006-08-29 09:22:51 -0500358static void escb_tasklet_complete(struct asd_ascb *ascb,
359 struct done_list_struct *dl)
360{
361 struct asd_ha_struct *asd_ha = ascb->ha;
362 struct sas_ha_struct *sas_ha = &asd_ha->sas_ha;
363 int edb = (dl->opcode & DL_PHY_MASK) - 1; /* [0xc1,0xc7] -> [0,6] */
364 u8 sb_opcode = dl->status_block[0];
365 int phy_id = sb_opcode & DL_PHY_MASK;
366 struct asd_sas_phy *sas_phy = sas_ha->sas_phy[phy_id];
367
368 if (edb > 6 || edb < 0) {
369 ASD_DPRINTK("edb is 0x%x! dl->opcode is 0x%x\n",
370 edb, dl->opcode);
371 ASD_DPRINTK("sb_opcode : 0x%x, phy_id: 0x%x\n",
372 sb_opcode, phy_id);
373 ASD_DPRINTK("escb: vaddr: 0x%p, "
374 "dma_handle: 0x%llx, next: 0x%llx, "
375 "index:%d, opcode:0x%02x\n",
376 ascb->dma_scb.vaddr,
377 (unsigned long long)ascb->dma_scb.dma_handle,
378 (unsigned long long)
379 le64_to_cpu(ascb->scb->header.next_scb),
380 le16_to_cpu(ascb->scb->header.index),
381 ascb->scb->header.opcode);
382 }
383
Darrick J. Wongfe4a36c2006-10-30 15:18:56 -0800384 /* Catch these before we mask off the sb_opcode bits */
385 switch (sb_opcode) {
386 case REQ_TASK_ABORT: {
387 struct asd_ascb *a, *b;
388 u16 tc_abort;
389
390 tc_abort = *((u16*)(&dl->status_block[1]));
391 tc_abort = le16_to_cpu(tc_abort);
392
393 ASD_DPRINTK("%s: REQ_TASK_ABORT, reason=0x%X\n",
394 __FUNCTION__, dl->status_block[3]);
395
396 /* Find the pending task and abort it. */
397 list_for_each_entry_safe(a, b, &asd_ha->seq.pend_q, list)
398 if (a->tc_index == tc_abort) {
399 task_kill_later(a);
400 break;
401 }
402 goto out;
403 }
404 case REQ_DEVICE_RESET: {
405 struct asd_ascb *a, *b;
406 u16 conn_handle;
407
408 conn_handle = *((u16*)(&dl->status_block[1]));
409 conn_handle = le16_to_cpu(conn_handle);
410
411 ASD_DPRINTK("%s: REQ_DEVICE_RESET, reason=0x%X\n", __FUNCTION__,
412 dl->status_block[3]);
413
414 /* Kill all pending tasks and reset the device */
415 list_for_each_entry_safe(a, b, &asd_ha->seq.pend_q, list) {
416 struct sas_task *task = a->uldd_task;
417 struct domain_device *dev = task->dev;
418 u16 x;
419
420 x = *((u16*)(&dev->lldd_dev));
421 if (x == conn_handle)
422 task_kill_later(a);
423 }
424
425 /* FIXME: Reset device port (huh?) */
426 goto out;
427 }
428 case SIGNAL_NCQ_ERROR:
429 ASD_DPRINTK("%s: SIGNAL_NCQ_ERROR\n", __FUNCTION__);
430 goto out;
431 case CLEAR_NCQ_ERROR:
432 ASD_DPRINTK("%s: CLEAR_NCQ_ERROR\n", __FUNCTION__);
433 goto out;
434 }
435
James Bottomley2908d772006-08-29 09:22:51 -0500436 sb_opcode &= ~DL_PHY_MASK;
437
438 switch (sb_opcode) {
439 case BYTES_DMAED:
440 ASD_DPRINTK("%s: phy%d: BYTES_DMAED\n", __FUNCTION__, phy_id);
441 asd_bytes_dmaed_tasklet(ascb, dl, edb, phy_id);
442 break;
443 case PRIMITIVE_RECVD:
444 ASD_DPRINTK("%s: phy%d: PRIMITIVE_RECVD\n", __FUNCTION__,
445 phy_id);
446 asd_primitive_rcvd_tasklet(ascb, dl, phy_id);
447 break;
448 case PHY_EVENT:
449 ASD_DPRINTK("%s: phy%d: PHY_EVENT\n", __FUNCTION__, phy_id);
450 asd_phy_event_tasklet(ascb, dl);
451 break;
452 case LINK_RESET_ERROR:
453 ASD_DPRINTK("%s: phy%d: LINK_RESET_ERROR\n", __FUNCTION__,
454 phy_id);
455 asd_link_reset_err_tasklet(ascb, dl, phy_id);
456 break;
457 case TIMER_EVENT:
458 ASD_DPRINTK("%s: phy%d: TIMER_EVENT, lost dw sync\n",
459 __FUNCTION__, phy_id);
460 asd_turn_led(asd_ha, phy_id, 0);
461 /* the device is gone */
462 sas_phy_disconnected(sas_phy);
463 sas_ha->notify_port_event(sas_phy, PORTE_TIMER_EVENT);
464 break;
James Bottomley2908d772006-08-29 09:22:51 -0500465 default:
466 ASD_DPRINTK("%s: phy%d: unknown event:0x%x\n", __FUNCTION__,
467 phy_id, sb_opcode);
468 ASD_DPRINTK("edb is 0x%x! dl->opcode is 0x%x\n",
469 edb, dl->opcode);
470 ASD_DPRINTK("sb_opcode : 0x%x, phy_id: 0x%x\n",
471 sb_opcode, phy_id);
472 ASD_DPRINTK("escb: vaddr: 0x%p, "
473 "dma_handle: 0x%llx, next: 0x%llx, "
474 "index:%d, opcode:0x%02x\n",
475 ascb->dma_scb.vaddr,
476 (unsigned long long)ascb->dma_scb.dma_handle,
477 (unsigned long long)
478 le64_to_cpu(ascb->scb->header.next_scb),
479 le16_to_cpu(ascb->scb->header.index),
480 ascb->scb->header.opcode);
481
482 break;
483 }
Darrick J. Wongfe4a36c2006-10-30 15:18:56 -0800484out:
James Bottomley2908d772006-08-29 09:22:51 -0500485 asd_invalidate_edb(ascb, edb);
486}
487
488int asd_init_post_escbs(struct asd_ha_struct *asd_ha)
489{
490 struct asd_seq_data *seq = &asd_ha->seq;
491 int i;
492
493 for (i = 0; i < seq->num_escbs; i++)
494 seq->escb_arr[i]->tasklet_complete = escb_tasklet_complete;
495
496 ASD_DPRINTK("posting %d escbs\n", i);
497 return asd_post_escb_list(asd_ha, seq->escb_arr[0], seq->num_escbs);
498}
499
500/* ---------- CONTROL PHY ---------- */
501
502#define CONTROL_PHY_STATUS (CURRENT_DEVICE_PRESENT | CURRENT_OOB_DONE \
503 | CURRENT_SPINUP_HOLD | CURRENT_GTO_TIMEOUT \
504 | CURRENT_OOB_ERROR)
505
506/**
507 * control_phy_tasklet_complete -- tasklet complete for CONTROL PHY ascb
508 * @ascb: pointer to an ascb
509 * @dl: pointer to the done list entry
510 *
511 * This function completes a CONTROL PHY scb and frees the ascb.
512 * A note on LEDs:
513 * - an LED blinks if there is IO though it,
514 * - if a device is connected to the LED, it is lit,
515 * - if no device is connected to the LED, is is dimmed (off).
516 */
517static void control_phy_tasklet_complete(struct asd_ascb *ascb,
518 struct done_list_struct *dl)
519{
520 struct asd_ha_struct *asd_ha = ascb->ha;
521 struct scb *scb = ascb->scb;
522 struct control_phy *control_phy = &scb->control_phy;
523 u8 phy_id = control_phy->phy_id;
524 struct asd_phy *phy = &ascb->ha->phys[phy_id];
525
526 u8 status = dl->status_block[0];
527 u8 oob_status = dl->status_block[1];
528 u8 oob_mode = dl->status_block[2];
529 /* u8 oob_signals= dl->status_block[3]; */
530
531 if (status != 0) {
532 ASD_DPRINTK("%s: phy%d status block opcode:0x%x\n",
533 __FUNCTION__, phy_id, status);
534 goto out;
535 }
536
537 switch (control_phy->sub_func) {
538 case DISABLE_PHY:
539 asd_ha->hw_prof.enabled_phys &= ~(1 << phy_id);
540 asd_turn_led(asd_ha, phy_id, 0);
541 asd_control_led(asd_ha, phy_id, 0);
542 ASD_DPRINTK("%s: disable phy%d\n", __FUNCTION__, phy_id);
543 break;
544
545 case ENABLE_PHY:
546 asd_control_led(asd_ha, phy_id, 1);
547 if (oob_status & CURRENT_OOB_DONE) {
548 asd_ha->hw_prof.enabled_phys |= (1 << phy_id);
549 get_lrate_mode(phy, oob_mode);
550 asd_turn_led(asd_ha, phy_id, 1);
551 ASD_DPRINTK("%s: phy%d, lrate:0x%x, proto:0x%x\n",
552 __FUNCTION__, phy_id,phy->sas_phy.linkrate,
553 phy->sas_phy.iproto);
554 } else if (oob_status & CURRENT_SPINUP_HOLD) {
555 asd_ha->hw_prof.enabled_phys |= (1 << phy_id);
556 asd_turn_led(asd_ha, phy_id, 1);
557 ASD_DPRINTK("%s: phy%d, spinup hold\n", __FUNCTION__,
558 phy_id);
559 } else if (oob_status & CURRENT_ERR_MASK) {
560 asd_turn_led(asd_ha, phy_id, 0);
561 ASD_DPRINTK("%s: phy%d: error: oob status:0x%02x\n",
562 __FUNCTION__, phy_id, oob_status);
563 } else if (oob_status & (CURRENT_HOT_PLUG_CNCT
564 | CURRENT_DEVICE_PRESENT)) {
565 asd_ha->hw_prof.enabled_phys |= (1 << phy_id);
566 asd_turn_led(asd_ha, phy_id, 1);
567 ASD_DPRINTK("%s: phy%d: hot plug or device present\n",
568 __FUNCTION__, phy_id);
569 } else {
570 asd_ha->hw_prof.enabled_phys |= (1 << phy_id);
571 asd_turn_led(asd_ha, phy_id, 0);
572 ASD_DPRINTK("%s: phy%d: no device present: "
573 "oob_status:0x%x\n",
574 __FUNCTION__, phy_id, oob_status);
575 }
576 break;
577 case RELEASE_SPINUP_HOLD:
578 case PHY_NO_OP:
579 case EXECUTE_HARD_RESET:
580 ASD_DPRINTK("%s: phy%d: sub_func:0x%x\n", __FUNCTION__,
581 phy_id, control_phy->sub_func);
582 /* XXX finish */
583 break;
584 default:
585 ASD_DPRINTK("%s: phy%d: sub_func:0x%x?\n", __FUNCTION__,
586 phy_id, control_phy->sub_func);
587 break;
588 }
589out:
590 asd_ascb_free(ascb);
591}
592
593static inline void set_speed_mask(u8 *speed_mask, struct asd_phy_desc *pd)
594{
595 /* disable all speeds, then enable defaults */
596 *speed_mask = SAS_SPEED_60_DIS | SAS_SPEED_30_DIS | SAS_SPEED_15_DIS
597 | SATA_SPEED_30_DIS | SATA_SPEED_15_DIS;
598
599 switch (pd->max_sas_lrate) {
James Bottomley88edf742006-09-06 17:36:13 -0500600 case SAS_LINK_RATE_6_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500601 *speed_mask &= ~SAS_SPEED_60_DIS;
602 default:
James Bottomley88edf742006-09-06 17:36:13 -0500603 case SAS_LINK_RATE_3_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500604 *speed_mask &= ~SAS_SPEED_30_DIS;
James Bottomley88edf742006-09-06 17:36:13 -0500605 case SAS_LINK_RATE_1_5_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500606 *speed_mask &= ~SAS_SPEED_15_DIS;
607 }
608
609 switch (pd->min_sas_lrate) {
James Bottomley88edf742006-09-06 17:36:13 -0500610 case SAS_LINK_RATE_6_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500611 *speed_mask |= SAS_SPEED_30_DIS;
James Bottomley88edf742006-09-06 17:36:13 -0500612 case SAS_LINK_RATE_3_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500613 *speed_mask |= SAS_SPEED_15_DIS;
614 default:
James Bottomley88edf742006-09-06 17:36:13 -0500615 case SAS_LINK_RATE_1_5_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500616 /* nothing to do */
617 ;
618 }
619
620 switch (pd->max_sata_lrate) {
James Bottomley88edf742006-09-06 17:36:13 -0500621 case SAS_LINK_RATE_3_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500622 *speed_mask &= ~SATA_SPEED_30_DIS;
623 default:
James Bottomley88edf742006-09-06 17:36:13 -0500624 case SAS_LINK_RATE_1_5_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500625 *speed_mask &= ~SATA_SPEED_15_DIS;
626 }
627
628 switch (pd->min_sata_lrate) {
James Bottomley88edf742006-09-06 17:36:13 -0500629 case SAS_LINK_RATE_3_0_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500630 *speed_mask |= SATA_SPEED_15_DIS;
631 default:
James Bottomley88edf742006-09-06 17:36:13 -0500632 case SAS_LINK_RATE_1_5_GBPS:
James Bottomley2908d772006-08-29 09:22:51 -0500633 /* nothing to do */
634 ;
635 }
636}
637
638/**
639 * asd_build_control_phy -- build a CONTROL PHY SCB
640 * @ascb: pointer to an ascb
641 * @phy_id: phy id to control, integer
642 * @subfunc: subfunction, what to actually to do the phy
643 *
644 * This function builds a CONTROL PHY scb. No allocation of any kind
645 * is performed. @ascb is allocated with the list function.
646 * The caller can override the ascb->tasklet_complete to point
647 * to its own callback function. It must call asd_ascb_free()
648 * at its tasklet complete function.
649 * See the default implementation.
650 */
651void asd_build_control_phy(struct asd_ascb *ascb, int phy_id, u8 subfunc)
652{
653 struct asd_phy *phy = &ascb->ha->phys[phy_id];
654 struct scb *scb = ascb->scb;
655 struct control_phy *control_phy = &scb->control_phy;
656
657 scb->header.opcode = CONTROL_PHY;
658 control_phy->phy_id = (u8) phy_id;
659 control_phy->sub_func = subfunc;
660
661 switch (subfunc) {
662 case EXECUTE_HARD_RESET: /* 0x81 */
663 case ENABLE_PHY: /* 0x01 */
664 /* decide hot plug delay */
665 control_phy->hot_plug_delay = HOTPLUG_DELAY_TIMEOUT;
666
667 /* decide speed mask */
668 set_speed_mask(&control_phy->speed_mask, phy->phy_desc);
669
670 /* initiator port settings are in the hi nibble */
671 if (phy->sas_phy.role == PHY_ROLE_INITIATOR)
672 control_phy->port_type = SAS_PROTO_ALL << 4;
673 else if (phy->sas_phy.role == PHY_ROLE_TARGET)
674 control_phy->port_type = SAS_PROTO_ALL;
675 else
676 control_phy->port_type =
677 (SAS_PROTO_ALL << 4) | SAS_PROTO_ALL;
678
679 /* link reset retries, this should be nominal */
680 control_phy->link_reset_retries = 10;
681
682 case RELEASE_SPINUP_HOLD: /* 0x02 */
683 /* decide the func_mask */
684 control_phy->func_mask = FUNCTION_MASK_DEFAULT;
685 if (phy->phy_desc->flags & ASD_SATA_SPINUP_HOLD)
686 control_phy->func_mask &= ~SPINUP_HOLD_DIS;
687 else
688 control_phy->func_mask |= SPINUP_HOLD_DIS;
689 }
690
691 control_phy->conn_handle = cpu_to_le16(0xFFFF);
692
693 ascb->tasklet_complete = control_phy_tasklet_complete;
694}
695
696/* ---------- INITIATE LINK ADM TASK ---------- */
697
698static void link_adm_tasklet_complete(struct asd_ascb *ascb,
699 struct done_list_struct *dl)
700{
701 u8 opcode = dl->opcode;
702 struct initiate_link_adm *link_adm = &ascb->scb->link_adm;
703 u8 phy_id = link_adm->phy_id;
704
705 if (opcode != TC_NO_ERROR) {
706 asd_printk("phy%d: link adm task 0x%x completed with error "
707 "0x%x\n", phy_id, link_adm->sub_func, opcode);
708 }
709 ASD_DPRINTK("phy%d: link adm task 0x%x: 0x%x\n",
710 phy_id, link_adm->sub_func, opcode);
711
712 asd_ascb_free(ascb);
713}
714
715void asd_build_initiate_link_adm_task(struct asd_ascb *ascb, int phy_id,
716 u8 subfunc)
717{
718 struct scb *scb = ascb->scb;
719 struct initiate_link_adm *link_adm = &scb->link_adm;
720
721 scb->header.opcode = INITIATE_LINK_ADM_TASK;
722
723 link_adm->phy_id = phy_id;
724 link_adm->sub_func = subfunc;
725 link_adm->conn_handle = cpu_to_le16(0xFFFF);
726
727 ascb->tasklet_complete = link_adm_tasklet_complete;
728}
729
730/* ---------- SCB timer ---------- */
731
732/**
733 * asd_ascb_timedout -- called when a pending SCB's timer has expired
734 * @data: unsigned long, a pointer to the ascb in question
735 *
736 * This is the default timeout function which does the most necessary.
737 * Upper layers can implement their own timeout function, say to free
738 * resources they have with this SCB, and then call this one at the
739 * end of their timeout function. To do this, one should initialize
740 * the ascb->timer.{function, data, expires} prior to calling the post
741 * funcion. The timer is started by the post function.
742 */
743void asd_ascb_timedout(unsigned long data)
744{
745 struct asd_ascb *ascb = (void *) data;
746 struct asd_seq_data *seq = &ascb->ha->seq;
747 unsigned long flags;
748
749 ASD_DPRINTK("scb:0x%x timed out\n", ascb->scb->header.opcode);
750
751 spin_lock_irqsave(&seq->pend_q_lock, flags);
752 seq->pending--;
753 list_del_init(&ascb->list);
754 spin_unlock_irqrestore(&seq->pend_q_lock, flags);
755
756 asd_ascb_free(ascb);
757}
758
759/* ---------- CONTROL PHY ---------- */
760
761/* Given the spec value, return a driver value. */
762static const int phy_func_table[] = {
763 [PHY_FUNC_NOP] = PHY_NO_OP,
764 [PHY_FUNC_LINK_RESET] = ENABLE_PHY,
765 [PHY_FUNC_HARD_RESET] = EXECUTE_HARD_RESET,
766 [PHY_FUNC_DISABLE] = DISABLE_PHY,
767 [PHY_FUNC_RELEASE_SPINUP_HOLD] = RELEASE_SPINUP_HOLD,
768};
769
James Bottomleya01e70e2006-09-06 19:28:07 -0500770int asd_control_phy(struct asd_sas_phy *phy, enum phy_func func, void *arg)
James Bottomley2908d772006-08-29 09:22:51 -0500771{
772 struct asd_ha_struct *asd_ha = phy->ha->lldd_ha;
James Bottomleya01e70e2006-09-06 19:28:07 -0500773 struct asd_phy_desc *pd = asd_ha->phys[phy->id].phy_desc;
James Bottomley2908d772006-08-29 09:22:51 -0500774 struct asd_ascb *ascb;
James Bottomleya01e70e2006-09-06 19:28:07 -0500775 struct sas_phy_linkrates *rates;
James Bottomley2908d772006-08-29 09:22:51 -0500776 int res = 1;
777
James Bottomleya01e70e2006-09-06 19:28:07 -0500778 switch (func) {
779 case PHY_FUNC_CLEAR_ERROR_LOG:
James Bottomley2908d772006-08-29 09:22:51 -0500780 return -ENOSYS;
James Bottomleya01e70e2006-09-06 19:28:07 -0500781 case PHY_FUNC_SET_LINK_RATE:
782 rates = arg;
783 if (rates->minimum_linkrate) {
784 pd->min_sas_lrate = rates->minimum_linkrate;
785 pd->min_sata_lrate = rates->minimum_linkrate;
786 }
787 if (rates->maximum_linkrate) {
788 pd->max_sas_lrate = rates->maximum_linkrate;
789 pd->max_sata_lrate = rates->maximum_linkrate;
790 }
791 func = PHY_FUNC_LINK_RESET;
792 break;
793 default:
794 break;
795 }
James Bottomley2908d772006-08-29 09:22:51 -0500796
797 ascb = asd_ascb_alloc_list(asd_ha, &res, GFP_KERNEL);
798 if (!ascb)
799 return -ENOMEM;
800
801 asd_build_control_phy(ascb, phy->id, phy_func_table[func]);
802 res = asd_post_ascb_list(asd_ha, ascb , 1);
803 if (res)
804 asd_ascb_free(ascb);
805
806 return res;
807}