2 * Wireless Host Controller (WHC) periodic schedule management.
4 * Copyright (C) 2007 Cambridge Silicon Radio Ltd.
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License version
8 * 2 as published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 #include <linux/kernel.h>
19 #include <linux/dma-mapping.h>
20 #include <linux/uwb/umc.h>
21 #include <linux/usb.h>
23 #include "../../wusbcore/wusbhc.h"
27 static void update_pzl_pointers(struct whc
*whc
, int period
, u64 addr
)
31 whc_qset_set_link_ptr(&whc
->pz_list
[0], addr
);
32 whc_qset_set_link_ptr(&whc
->pz_list
[2], addr
);
33 whc_qset_set_link_ptr(&whc
->pz_list
[4], addr
);
34 whc_qset_set_link_ptr(&whc
->pz_list
[6], addr
);
35 whc_qset_set_link_ptr(&whc
->pz_list
[8], addr
);
36 whc_qset_set_link_ptr(&whc
->pz_list
[10], addr
);
37 whc_qset_set_link_ptr(&whc
->pz_list
[12], addr
);
38 whc_qset_set_link_ptr(&whc
->pz_list
[14], addr
);
41 whc_qset_set_link_ptr(&whc
->pz_list
[1], addr
);
42 whc_qset_set_link_ptr(&whc
->pz_list
[5], addr
);
43 whc_qset_set_link_ptr(&whc
->pz_list
[9], addr
);
44 whc_qset_set_link_ptr(&whc
->pz_list
[13], addr
);
47 whc_qset_set_link_ptr(&whc
->pz_list
[3], addr
);
48 whc_qset_set_link_ptr(&whc
->pz_list
[11], addr
);
51 whc_qset_set_link_ptr(&whc
->pz_list
[7], addr
);
54 whc_qset_set_link_ptr(&whc
->pz_list
[15], addr
);
60 * Return the 'period' to use for this qset. The minimum interval for
61 * the endpoint is used so whatever urbs are submitted the device is
62 * polled often enough.
64 static int qset_get_period(struct whc
*whc
, struct whc_qset
*qset
)
66 uint8_t bInterval
= qset
->ep
->desc
.bInterval
;
75 static void qset_insert_in_sw_list(struct whc
*whc
, struct whc_qset
*qset
)
79 period
= qset_get_period(whc
, qset
);
81 qset_clear(whc
, qset
);
82 list_move(&qset
->list_node
, &whc
->periodic_list
[period
]);
83 qset
->in_sw_list
= true;
86 static void pzl_qset_remove(struct whc
*whc
, struct whc_qset
*qset
)
88 list_move(&qset
->list_node
, &whc
->periodic_removed_list
);
89 qset
->in_hw_list
= false;
90 qset
->in_sw_list
= false;
94 * pzl_process_qset - process any recently inactivated or halted qTDs
97 * After inactive qTDs are removed, new qTDs can be added if the
98 * urb queue still contains URBs.
100 * Returns the schedule updates required.
102 static enum whc_update
pzl_process_qset(struct whc
*whc
, struct whc_qset
*qset
)
104 enum whc_update update
= 0;
112 td
= &qset
->qtd
[qset
->td_start
];
113 status
= le32_to_cpu(td
->status
);
116 * Nothing to do with a still active qTD.
118 if (status
& QTD_STS_ACTIVE
)
121 if (status
& QTD_STS_HALTED
) {
123 process_halted_qtd(whc
, qset
, td
);
124 /* A halted qTD always triggers an update
125 because the qset was either removed or
127 update
|= WHC_UPDATE_UPDATED
;
131 /* Mmm, a completed qTD. */
132 process_inactive_qtd(whc
, qset
, td
);
136 update
|= qset_add_qtds(whc
, qset
);
140 * If there are no qTDs in this qset, remove it from the PZL.
142 if (qset
->remove
&& qset
->ntds
== 0) {
143 pzl_qset_remove(whc
, qset
);
144 update
|= WHC_UPDATE_REMOVED
;
151 * pzl_start - start the periodic schedule
152 * @whc: the WHCI host controller
154 * The PZL must be valid (e.g., all entries in the list should have
157 void pzl_start(struct whc
*whc
)
159 le_writeq(whc
->pz_list_dma
, whc
->base
+ WUSBPERIODICLISTBASE
);
161 whc_write_wusbcmd(whc
, WUSBCMD_PERIODIC_EN
, WUSBCMD_PERIODIC_EN
);
162 whci_wait_for(&whc
->umc
->dev
, whc
->base
+ WUSBSTS
,
163 WUSBSTS_PERIODIC_SCHED
, WUSBSTS_PERIODIC_SCHED
,
168 * pzl_stop - stop the periodic schedule
169 * @whc: the WHCI host controller
171 void pzl_stop(struct whc
*whc
)
173 whc_write_wusbcmd(whc
, WUSBCMD_PERIODIC_EN
, 0);
174 whci_wait_for(&whc
->umc
->dev
, whc
->base
+ WUSBSTS
,
175 WUSBSTS_PERIODIC_SCHED
, 0,
180 * pzl_update - request a PZL update and wait for the hardware to be synced
182 * @wusbcmd: WUSBCMD value to start the update.
184 * If the WUSB HC is inactive (i.e., the PZL is stopped) then the
185 * update must be skipped as the hardware may not respond to update
188 void pzl_update(struct whc
*whc
, uint32_t wusbcmd
)
190 struct wusbhc
*wusbhc
= &whc
->wusbhc
;
193 mutex_lock(&wusbhc
->mutex
);
194 if (wusbhc
->active
) {
195 whc_write_wusbcmd(whc
, wusbcmd
, wusbcmd
);
196 t
= wait_event_timeout(
197 whc
->periodic_list_wq
,
198 (le_readl(whc
->base
+ WUSBCMD
) & WUSBCMD_PERIODIC_UPDATED
) == 0,
199 msecs_to_jiffies(1000));
201 whc_hw_error(whc
, "PZL update timeout");
203 mutex_unlock(&wusbhc
->mutex
);
206 static void update_pzl_hw_view(struct whc
*whc
)
208 struct whc_qset
*qset
, *t
;
212 for (period
= 0; period
< 5; period
++) {
213 list_for_each_entry_safe(qset
, t
, &whc
->periodic_list
[period
], list_node
) {
214 whc_qset_set_link_ptr(&qset
->qh
.link
, tmp_qh
);
215 tmp_qh
= qset
->qset_dma
;
216 qset
->in_hw_list
= true;
218 update_pzl_pointers(whc
, period
, tmp_qh
);
223 * scan_periodic_work - scan the PZL for qsets to process.
225 * Process each qset in the PZL in turn and then signal the WHC that
226 * the PZL has been updated.
228 * Then start, stop or update the periodic schedule as required.
230 void scan_periodic_work(struct work_struct
*work
)
232 struct whc
*whc
= container_of(work
, struct whc
, periodic_work
);
233 struct whc_qset
*qset
, *t
;
234 enum whc_update update
= 0;
237 spin_lock_irq(&whc
->lock
);
239 for (period
= 4; period
>= 0; period
--) {
240 list_for_each_entry_safe(qset
, t
, &whc
->periodic_list
[period
], list_node
) {
241 if (!qset
->in_hw_list
)
242 update
|= WHC_UPDATE_ADDED
;
243 update
|= pzl_process_qset(whc
, qset
);
247 if (update
& (WHC_UPDATE_ADDED
| WHC_UPDATE_REMOVED
))
248 update_pzl_hw_view(whc
);
250 spin_unlock_irq(&whc
->lock
);
253 uint32_t wusbcmd
= WUSBCMD_PERIODIC_UPDATED
| WUSBCMD_PERIODIC_SYNCED_DB
;
254 if (update
& WHC_UPDATE_REMOVED
)
255 wusbcmd
|= WUSBCMD_PERIODIC_QSET_RM
;
256 pzl_update(whc
, wusbcmd
);
260 * Now that the PZL is updated, complete the removal of any
263 * If the qset was to be reset, do so and reinsert it into the
264 * PZL if it has pending transfers.
266 spin_lock_irq(&whc
->lock
);
268 list_for_each_entry_safe(qset
, t
, &whc
->periodic_removed_list
, list_node
) {
269 qset_remove_complete(whc
, qset
);
271 qset_reset(whc
, qset
);
272 if (!list_empty(&qset
->stds
)) {
273 qset_insert_in_sw_list(whc
, qset
);
274 queue_work(whc
->workqueue
, &whc
->periodic_work
);
279 spin_unlock_irq(&whc
->lock
);
283 * pzl_urb_enqueue - queue an URB onto the periodic list (PZL)
284 * @whc: the WHCI host controller
285 * @urb: the URB to enqueue
286 * @mem_flags: flags for any memory allocations
288 * The qset for the endpoint is obtained and the urb queued on to it.
290 * Work is scheduled to update the hardware's view of the PZL.
292 int pzl_urb_enqueue(struct whc
*whc
, struct urb
*urb
, gfp_t mem_flags
)
294 struct whc_qset
*qset
;
298 spin_lock_irqsave(&whc
->lock
, flags
);
300 err
= usb_hcd_link_urb_to_ep(&whc
->wusbhc
.usb_hcd
, urb
);
302 spin_unlock_irqrestore(&whc
->lock
, flags
);
306 qset
= get_qset(whc
, urb
, GFP_ATOMIC
);
310 err
= qset_add_urb(whc
, qset
, urb
, GFP_ATOMIC
);
312 if (!qset
->in_sw_list
&& !qset
->remove
)
313 qset_insert_in_sw_list(whc
, qset
);
315 usb_hcd_unlink_urb_from_ep(&whc
->wusbhc
.usb_hcd
, urb
);
317 spin_unlock_irqrestore(&whc
->lock
, flags
);
320 queue_work(whc
->workqueue
, &whc
->periodic_work
);
326 * pzl_urb_dequeue - remove an URB (qset) from the periodic list
327 * @whc: the WHCI host controller
328 * @urb: the URB to dequeue
329 * @status: the current status of the URB
331 * URBs that do yet have qTDs can simply be removed from the software
332 * queue, otherwise the qset must be removed so the qTDs can be safely
335 int pzl_urb_dequeue(struct whc
*whc
, struct urb
*urb
, int status
)
337 struct whc_urb
*wurb
= urb
->hcpriv
;
338 struct whc_qset
*qset
= wurb
->qset
;
339 struct whc_std
*std
, *t
;
340 bool has_qtd
= false;
344 spin_lock_irqsave(&whc
->lock
, flags
);
346 ret
= usb_hcd_check_unlink_urb(&whc
->wusbhc
.usb_hcd
, urb
, status
);
350 list_for_each_entry_safe(std
, t
, &qset
->stds
, list_node
) {
351 if (std
->urb
== urb
) {
354 qset_free_std(whc
, std
);
356 std
->qtd
= NULL
; /* so this std is re-added when the qset is */
360 pzl_qset_remove(whc
, qset
);
361 update_pzl_hw_view(whc
);
362 wurb
->status
= status
;
363 wurb
->is_async
= false;
364 queue_work(whc
->workqueue
, &wurb
->dequeue_work
);
366 qset_remove_urb(whc
, qset
, urb
, status
);
368 spin_unlock_irqrestore(&whc
->lock
, flags
);
374 * pzl_qset_delete - delete a qset from the PZL
376 void pzl_qset_delete(struct whc
*whc
, struct whc_qset
*qset
)
379 queue_work(whc
->workqueue
, &whc
->periodic_work
);
380 qset_delete(whc
, qset
);
384 * pzl_init - initialize the periodic zone list
385 * @whc: the WHCI host controller
387 int pzl_init(struct whc
*whc
)
391 whc
->pz_list
= dma_alloc_coherent(&whc
->umc
->dev
, sizeof(u64
) * 16,
392 &whc
->pz_list_dma
, GFP_KERNEL
);
393 if (whc
->pz_list
== NULL
)
396 /* Set T bit on all elements in PZL. */
397 for (i
= 0; i
< 16; i
++)
398 whc
->pz_list
[i
] = cpu_to_le64(QH_LINK_NTDS(8) | QH_LINK_T
);
400 le_writeq(whc
->pz_list_dma
, whc
->base
+ WUSBPERIODICLISTBASE
);
406 * pzl_clean_up - free PZL resources
407 * @whc: the WHCI host controller
409 * The PZL is stopped and empty.
411 void pzl_clean_up(struct whc
*whc
)
414 dma_free_coherent(&whc
->umc
->dev
, sizeof(u64
) * 16, whc
->pz_list
,