V4L/DVB (9728): cx18: Copyright attribution update for files modified by awalls
[safe/jmp/linux-2.6] / drivers / media / video / cx18 / cx18-queue.c
1 /*
2  *  cx18 buffer queues
3  *
4  *  Derived from ivtv-queue.c
5  *
6  *  Copyright (C) 2007  Hans Verkuil <hverkuil@xs4all.nl>
7  *  Copyright (C) 2008  Andy Walls <awalls@radix.net>
8  *
9  *  This program is free software; you can redistribute it and/or modify
10  *  it under the terms of the GNU General Public License as published by
11  *  the Free Software Foundation; either version 2 of the License, or
12  *  (at your option) any later version.
13  *
14  *  This program is distributed in the hope that it will be useful,
15  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17  *  GNU General Public License for more details.
18  *
19  *  You should have received a copy of the GNU General Public License
20  *  along with this program; if not, write to the Free Software
21  *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
22  *  02111-1307  USA
23  */
24
25 #include "cx18-driver.h"
26 #include "cx18-streams.h"
27 #include "cx18-queue.h"
28 #include "cx18-scb.h"
29
30 void cx18_buf_swap(struct cx18_buffer *buf)
31 {
32         int i;
33
34         for (i = 0; i < buf->bytesused; i += 4)
35                 swab32s((u32 *)(buf->buf + i));
36 }
37
38 void cx18_queue_init(struct cx18_queue *q)
39 {
40         INIT_LIST_HEAD(&q->list);
41         atomic_set(&q->buffers, 0);
42         q->bytesused = 0;
43 }
44
45 void cx18_enqueue(struct cx18_stream *s, struct cx18_buffer *buf,
46                 struct cx18_queue *q)
47 {
48         /* clear the buffer if it is going to be enqueued to the free queue */
49         if (q == &s->q_free) {
50                 buf->bytesused = 0;
51                 buf->readpos = 0;
52                 buf->b_flags = 0;
53                 buf->skipped = 0;
54         }
55         mutex_lock(&s->qlock);
56         list_add_tail(&buf->list, &q->list);
57         atomic_inc(&q->buffers);
58         q->bytesused += buf->bytesused - buf->readpos;
59         mutex_unlock(&s->qlock);
60 }
61
62 struct cx18_buffer *cx18_dequeue(struct cx18_stream *s, struct cx18_queue *q)
63 {
64         struct cx18_buffer *buf = NULL;
65
66         mutex_lock(&s->qlock);
67         if (!list_empty(&q->list)) {
68                 buf = list_entry(q->list.next, struct cx18_buffer, list);
69                 list_del_init(q->list.next);
70                 atomic_dec(&q->buffers);
71                 q->bytesused -= buf->bytesused - buf->readpos;
72                 buf->skipped = 0;
73         }
74         mutex_unlock(&s->qlock);
75         return buf;
76 }
77
78 struct cx18_buffer *cx18_queue_get_buf(struct cx18_stream *s, u32 id,
79         u32 bytesused)
80 {
81         struct cx18 *cx = s->cx;
82         struct cx18_buffer *buf;
83         struct cx18_buffer *ret = NULL;
84         struct list_head *p, *t;
85         LIST_HEAD(r);
86
87         mutex_lock(&s->qlock);
88         list_for_each_safe(p, t, &s->q_free.list) {
89                 buf = list_entry(p, struct cx18_buffer, list);
90
91                 if (buf->id != id) {
92                         buf->skipped++;
93                         if (buf->skipped >= atomic_read(&s->q_free.buffers)-1) {
94                                 /* buffer must have fallen out of rotation */
95                                 atomic_dec(&s->q_free.buffers);
96                                 list_move_tail(&buf->list, &r);
97                                 CX18_WARN("Skipped %s, buffer %d, %d "
98                                           "times - it must have dropped out of "
99                                           "rotation\n", s->name, buf->id,
100                                           buf->skipped);
101                         }
102                         continue;
103                 }
104
105                 buf->bytesused = bytesused;
106                 atomic_dec(&s->q_free.buffers);
107                 if (s->type == CX18_ENC_STREAM_TYPE_TS) {
108                         /*
109                          * TS doesn't use q_full, but for sweeping up lost
110                          * buffers, we want the TS to requeue the buffer just
111                          * before sending the MDL back to the firmware, so we
112                          * pull it off the list here.
113                          */
114                         list_del_init(&buf->list);
115                 } else {
116                         atomic_inc(&s->q_full.buffers);
117                         s->q_full.bytesused += buf->bytesused;
118                         list_move_tail(&buf->list, &s->q_full.list);
119                 }
120
121                 ret = buf;
122                 break;
123         }
124         mutex_unlock(&s->qlock);
125
126         /* Put lost buffers back into firmware transfer rotation */
127         while (!list_empty(&r)) {
128                 buf = list_entry(r.next, struct cx18_buffer, list);
129                 list_del_init(r.next);
130                 cx18_enqueue(s, buf, &s->q_free);
131                 cx18_vapi(cx, CX18_CPU_DE_SET_MDL, 5, s->handle,
132                        (void __iomem *)&cx->scb->cpu_mdl[buf->id] - cx->enc_mem,
133                        1, buf->id, s->buf_size);
134                 CX18_INFO("Returning %s, buffer %d back to transfer rotation\n",
135                           s->name, buf->id);
136                 /* and there was much rejoicing... */
137         }
138         return ret;
139 }
140
141 /* Move all buffers of a queue to q_free, while flushing the buffers */
142 static void cx18_queue_flush(struct cx18_stream *s, struct cx18_queue *q)
143 {
144         struct cx18_buffer *buf;
145
146         if (q == &s->q_free)
147                 return;
148
149         mutex_lock(&s->qlock);
150         while (!list_empty(&q->list)) {
151                 buf = list_entry(q->list.next, struct cx18_buffer, list);
152                 list_move_tail(q->list.next, &s->q_free.list);
153                 buf->bytesused = buf->readpos = buf->b_flags = buf->skipped = 0;
154                 atomic_inc(&s->q_free.buffers);
155         }
156         cx18_queue_init(q);
157         mutex_unlock(&s->qlock);
158 }
159
160 void cx18_flush_queues(struct cx18_stream *s)
161 {
162         cx18_queue_flush(s, &s->q_io);
163         cx18_queue_flush(s, &s->q_full);
164 }
165
166 int cx18_stream_alloc(struct cx18_stream *s)
167 {
168         struct cx18 *cx = s->cx;
169         int i;
170
171         if (s->buffers == 0)
172                 return 0;
173
174         CX18_DEBUG_INFO("Allocate %s stream: %d x %d buffers (%dkB total)\n",
175                 s->name, s->buffers, s->buf_size,
176                 s->buffers * s->buf_size / 1024);
177
178         if (((char __iomem *)&cx->scb->cpu_mdl[cx->mdl_offset + s->buffers] -
179                                 (char __iomem *)cx->scb) > SCB_RESERVED_SIZE) {
180                 unsigned bufsz = (((char __iomem *)cx->scb) + SCB_RESERVED_SIZE -
181                                         ((char __iomem *)cx->scb->cpu_mdl));
182
183                 CX18_ERR("Too many buffers, cannot fit in SCB area\n");
184                 CX18_ERR("Max buffers = %zd\n",
185                         bufsz / sizeof(struct cx18_mdl));
186                 return -ENOMEM;
187         }
188
189         s->mdl_offset = cx->mdl_offset;
190
191         /* allocate stream buffers. Initially all buffers are in q_free. */
192         for (i = 0; i < s->buffers; i++) {
193                 struct cx18_buffer *buf = kzalloc(sizeof(struct cx18_buffer),
194                                                 GFP_KERNEL|__GFP_NOWARN);
195
196                 if (buf == NULL)
197                         break;
198                 buf->buf = kmalloc(s->buf_size, GFP_KERNEL|__GFP_NOWARN);
199                 if (buf->buf == NULL) {
200                         kfree(buf);
201                         break;
202                 }
203                 buf->id = cx->buffer_id++;
204                 INIT_LIST_HEAD(&buf->list);
205                 buf->dma_handle = pci_map_single(s->cx->dev,
206                                 buf->buf, s->buf_size, s->dma);
207                 cx18_buf_sync_for_cpu(s, buf);
208                 cx18_enqueue(s, buf, &s->q_free);
209         }
210         if (i == s->buffers) {
211                 cx->mdl_offset += s->buffers;
212                 return 0;
213         }
214         CX18_ERR("Couldn't allocate buffers for %s stream\n", s->name);
215         cx18_stream_free(s);
216         return -ENOMEM;
217 }
218
219 void cx18_stream_free(struct cx18_stream *s)
220 {
221         struct cx18_buffer *buf;
222
223         /* move all buffers to q_free */
224         cx18_flush_queues(s);
225
226         /* empty q_free */
227         while ((buf = cx18_dequeue(s, &s->q_free))) {
228                 pci_unmap_single(s->cx->dev, buf->dma_handle,
229                                 s->buf_size, s->dma);
230                 kfree(buf->buf);
231                 kfree(buf);
232         }
233 }