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Mike Iselyd8554972006-06-26 20:58:46 -03001/*
2 *
Mike Iselyd8554972006-06-26 20:58:46 -03003 *
4 * Copyright (C) 2005 Mike Isely <isely@pobox.com>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License
9 *
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.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 *
19 */
20
21#include <linux/errno.h>
22#include <linux/string.h>
23#include <linux/slab.h>
24#include <linux/firmware.h>
Mike Iselyd8554972006-06-26 20:58:46 -030025#include <linux/videodev2.h>
Mike Isely32ffa9a2006-09-23 22:26:52 -030026#include <media/v4l2-common.h>
Mike Iselyd8554972006-06-26 20:58:46 -030027#include "pvrusb2.h"
28#include "pvrusb2-std.h"
29#include "pvrusb2-util.h"
30#include "pvrusb2-hdw.h"
31#include "pvrusb2-i2c-core.h"
32#include "pvrusb2-tuner.h"
33#include "pvrusb2-eeprom.h"
34#include "pvrusb2-hdw-internal.h"
35#include "pvrusb2-encoder.h"
36#include "pvrusb2-debug.h"
Michael Krufky8d364362007-01-22 02:17:55 -030037#include "pvrusb2-fx2-cmd.h"
Mike Iselyd8554972006-06-26 20:58:46 -030038
Mike Isely1bde0282006-12-27 23:30:13 -030039#define TV_MIN_FREQ 55250000L
40#define TV_MAX_FREQ 850000000L
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -030041
Mike Isely83ce57a2008-05-26 05:51:57 -030042/* This defines a minimum interval that the decoder must remain quiet
43 before we are allowed to start it running. */
44#define TIME_MSEC_DECODER_WAIT 50
45
46/* This defines a minimum interval that the encoder must remain quiet
Mike Iselyfa98e592008-05-26 05:54:24 -030047 before we are allowed to configure it. I had this originally set to
48 50msec, but Martin Dauskardt <martin.dauskardt@gmx.de> reports that
49 things work better when it's set to 100msec. */
50#define TIME_MSEC_ENCODER_WAIT 100
Mike Isely83ce57a2008-05-26 05:51:57 -030051
52/* This defines the minimum interval that the encoder must successfully run
53 before we consider that the encoder has run at least once since its
54 firmware has been loaded. This measurement is in important for cases
55 where we can't do something until we know that the encoder has been run
56 at least once. */
57#define TIME_MSEC_ENCODER_OK 250
58
Mike Iselya0fd1cb2006-06-30 11:35:28 -030059static struct pvr2_hdw *unit_pointers[PVR_NUM] = {[ 0 ... PVR_NUM-1 ] = NULL};
Matthias Kaehlcke8df0c872007-04-28 20:00:18 -030060static DEFINE_MUTEX(pvr2_unit_mtx);
Mike Iselyd8554972006-06-26 20:58:46 -030061
Douglas Schilling Landgrafff699e62008-04-22 14:41:48 -030062static int ctlchg;
Mike Iselyd8554972006-06-26 20:58:46 -030063static int initusbreset = 1;
Douglas Schilling Landgrafff699e62008-04-22 14:41:48 -030064static int procreload;
Mike Iselyd8554972006-06-26 20:58:46 -030065static int tuner[PVR_NUM] = { [0 ... PVR_NUM-1] = -1 };
66static int tolerance[PVR_NUM] = { [0 ... PVR_NUM-1] = 0 };
67static int video_std[PVR_NUM] = { [0 ... PVR_NUM-1] = 0 };
Douglas Schilling Landgrafff699e62008-04-22 14:41:48 -030068static int init_pause_msec;
Mike Iselyd8554972006-06-26 20:58:46 -030069
70module_param(ctlchg, int, S_IRUGO|S_IWUSR);
71MODULE_PARM_DESC(ctlchg, "0=optimize ctl change 1=always accept new ctl value");
72module_param(init_pause_msec, int, S_IRUGO|S_IWUSR);
73MODULE_PARM_DESC(init_pause_msec, "hardware initialization settling delay");
74module_param(initusbreset, int, S_IRUGO|S_IWUSR);
75MODULE_PARM_DESC(initusbreset, "Do USB reset device on probe");
76module_param(procreload, int, S_IRUGO|S_IWUSR);
77MODULE_PARM_DESC(procreload,
78 "Attempt init failure recovery with firmware reload");
79module_param_array(tuner, int, NULL, 0444);
80MODULE_PARM_DESC(tuner,"specify installed tuner type");
81module_param_array(video_std, int, NULL, 0444);
82MODULE_PARM_DESC(video_std,"specify initial video standard");
83module_param_array(tolerance, int, NULL, 0444);
84MODULE_PARM_DESC(tolerance,"specify stream error tolerance");
85
Michael Krufky5a4f5da62008-05-11 16:37:50 -030086/* US Broadcast channel 7 (175.25 MHz) */
87static int default_tv_freq = 175250000L;
88/* 104.3 MHz, a usable FM station for my area */
89static int default_radio_freq = 104300000L;
90
91module_param_named(tv_freq, default_tv_freq, int, 0444);
92MODULE_PARM_DESC(tv_freq, "specify initial television frequency");
93module_param_named(radio_freq, default_radio_freq, int, 0444);
94MODULE_PARM_DESC(radio_freq, "specify initial radio frequency");
95
Mike Iselyd8554972006-06-26 20:58:46 -030096#define PVR2_CTL_WRITE_ENDPOINT 0x01
97#define PVR2_CTL_READ_ENDPOINT 0x81
98
99#define PVR2_GPIO_IN 0x9008
100#define PVR2_GPIO_OUT 0x900c
101#define PVR2_GPIO_DIR 0x9020
102
103#define trace_firmware(...) pvr2_trace(PVR2_TRACE_FIRMWARE,__VA_ARGS__)
104
105#define PVR2_FIRMWARE_ENDPOINT 0x02
106
107/* size of a firmware chunk */
108#define FIRMWARE_CHUNK_SIZE 0x2000
109
Mike Iselyb30d2442006-06-25 20:05:01 -0300110/* Define the list of additional controls we'll dynamically construct based
111 on query of the cx2341x module. */
112struct pvr2_mpeg_ids {
113 const char *strid;
114 int id;
115};
116static const struct pvr2_mpeg_ids mpeg_ids[] = {
117 {
118 .strid = "audio_layer",
119 .id = V4L2_CID_MPEG_AUDIO_ENCODING,
120 },{
121 .strid = "audio_bitrate",
122 .id = V4L2_CID_MPEG_AUDIO_L2_BITRATE,
123 },{
124 /* Already using audio_mode elsewhere :-( */
125 .strid = "mpeg_audio_mode",
126 .id = V4L2_CID_MPEG_AUDIO_MODE,
127 },{
128 .strid = "mpeg_audio_mode_extension",
129 .id = V4L2_CID_MPEG_AUDIO_MODE_EXTENSION,
130 },{
131 .strid = "audio_emphasis",
132 .id = V4L2_CID_MPEG_AUDIO_EMPHASIS,
133 },{
134 .strid = "audio_crc",
135 .id = V4L2_CID_MPEG_AUDIO_CRC,
136 },{
137 .strid = "video_aspect",
138 .id = V4L2_CID_MPEG_VIDEO_ASPECT,
139 },{
140 .strid = "video_b_frames",
141 .id = V4L2_CID_MPEG_VIDEO_B_FRAMES,
142 },{
143 .strid = "video_gop_size",
144 .id = V4L2_CID_MPEG_VIDEO_GOP_SIZE,
145 },{
146 .strid = "video_gop_closure",
147 .id = V4L2_CID_MPEG_VIDEO_GOP_CLOSURE,
148 },{
Mike Iselyb30d2442006-06-25 20:05:01 -0300149 .strid = "video_bitrate_mode",
150 .id = V4L2_CID_MPEG_VIDEO_BITRATE_MODE,
151 },{
152 .strid = "video_bitrate",
153 .id = V4L2_CID_MPEG_VIDEO_BITRATE,
154 },{
155 .strid = "video_bitrate_peak",
156 .id = V4L2_CID_MPEG_VIDEO_BITRATE_PEAK,
157 },{
158 .strid = "video_temporal_decimation",
159 .id = V4L2_CID_MPEG_VIDEO_TEMPORAL_DECIMATION,
160 },{
161 .strid = "stream_type",
162 .id = V4L2_CID_MPEG_STREAM_TYPE,
163 },{
164 .strid = "video_spatial_filter_mode",
165 .id = V4L2_CID_MPEG_CX2341X_VIDEO_SPATIAL_FILTER_MODE,
166 },{
167 .strid = "video_spatial_filter",
168 .id = V4L2_CID_MPEG_CX2341X_VIDEO_SPATIAL_FILTER,
169 },{
170 .strid = "video_luma_spatial_filter_type",
171 .id = V4L2_CID_MPEG_CX2341X_VIDEO_LUMA_SPATIAL_FILTER_TYPE,
172 },{
173 .strid = "video_chroma_spatial_filter_type",
174 .id = V4L2_CID_MPEG_CX2341X_VIDEO_CHROMA_SPATIAL_FILTER_TYPE,
175 },{
176 .strid = "video_temporal_filter_mode",
177 .id = V4L2_CID_MPEG_CX2341X_VIDEO_TEMPORAL_FILTER_MODE,
178 },{
179 .strid = "video_temporal_filter",
180 .id = V4L2_CID_MPEG_CX2341X_VIDEO_TEMPORAL_FILTER,
181 },{
182 .strid = "video_median_filter_type",
183 .id = V4L2_CID_MPEG_CX2341X_VIDEO_MEDIAN_FILTER_TYPE,
184 },{
185 .strid = "video_luma_median_filter_top",
186 .id = V4L2_CID_MPEG_CX2341X_VIDEO_LUMA_MEDIAN_FILTER_TOP,
187 },{
188 .strid = "video_luma_median_filter_bottom",
189 .id = V4L2_CID_MPEG_CX2341X_VIDEO_LUMA_MEDIAN_FILTER_BOTTOM,
190 },{
191 .strid = "video_chroma_median_filter_top",
192 .id = V4L2_CID_MPEG_CX2341X_VIDEO_CHROMA_MEDIAN_FILTER_TOP,
193 },{
194 .strid = "video_chroma_median_filter_bottom",
195 .id = V4L2_CID_MPEG_CX2341X_VIDEO_CHROMA_MEDIAN_FILTER_BOTTOM,
196 }
197};
Ahmed S. Darwisheca8ebf2007-01-20 00:35:03 -0300198#define MPEGDEF_COUNT ARRAY_SIZE(mpeg_ids)
Mike Iselyc05c0462006-06-25 20:04:25 -0300199
Mike Iselyd8554972006-06-26 20:58:46 -0300200
Mike Isely434449f2006-08-08 09:10:06 -0300201static const char *control_values_srate[] = {
202 [V4L2_MPEG_AUDIO_SAMPLING_FREQ_44100] = "44.1 kHz",
203 [V4L2_MPEG_AUDIO_SAMPLING_FREQ_48000] = "48 kHz",
204 [V4L2_MPEG_AUDIO_SAMPLING_FREQ_32000] = "32 kHz",
205};
Mike Iselyd8554972006-06-26 20:58:46 -0300206
Mike Iselyd8554972006-06-26 20:58:46 -0300207
208
209static const char *control_values_input[] = {
210 [PVR2_CVAL_INPUT_TV] = "television", /*xawtv needs this name*/
Mike Isely29bf5b12008-04-22 14:45:37 -0300211 [PVR2_CVAL_INPUT_DTV] = "dtv",
Mike Iselyd8554972006-06-26 20:58:46 -0300212 [PVR2_CVAL_INPUT_RADIO] = "radio",
213 [PVR2_CVAL_INPUT_SVIDEO] = "s-video",
214 [PVR2_CVAL_INPUT_COMPOSITE] = "composite",
215};
216
217
218static const char *control_values_audiomode[] = {
219 [V4L2_TUNER_MODE_MONO] = "Mono",
220 [V4L2_TUNER_MODE_STEREO] = "Stereo",
221 [V4L2_TUNER_MODE_LANG1] = "Lang1",
222 [V4L2_TUNER_MODE_LANG2] = "Lang2",
223 [V4L2_TUNER_MODE_LANG1_LANG2] = "Lang1+Lang2",
224};
225
226
227static const char *control_values_hsm[] = {
228 [PVR2_CVAL_HSM_FAIL] = "Fail",
229 [PVR2_CVAL_HSM_HIGH] = "High",
230 [PVR2_CVAL_HSM_FULL] = "Full",
231};
232
233
Mike Isely681c7392007-11-26 01:48:52 -0300234static const char *pvr2_state_names[] = {
235 [PVR2_STATE_NONE] = "none",
236 [PVR2_STATE_DEAD] = "dead",
237 [PVR2_STATE_COLD] = "cold",
238 [PVR2_STATE_WARM] = "warm",
239 [PVR2_STATE_ERROR] = "error",
240 [PVR2_STATE_READY] = "ready",
241 [PVR2_STATE_RUN] = "run",
Mike Iselyd8554972006-06-26 20:58:46 -0300242};
243
Mike Isely681c7392007-11-26 01:48:52 -0300244
Mike Isely694dca22008-03-28 05:42:10 -0300245struct pvr2_fx2cmd_descdef {
Mike Isely1c9d10d2008-03-28 05:38:54 -0300246 unsigned char id;
247 unsigned char *desc;
248};
249
Mike Isely694dca22008-03-28 05:42:10 -0300250static const struct pvr2_fx2cmd_descdef pvr2_fx2cmd_desc[] = {
Mike Isely1c9d10d2008-03-28 05:38:54 -0300251 {FX2CMD_MEM_WRITE_DWORD, "write encoder dword"},
252 {FX2CMD_MEM_READ_DWORD, "read encoder dword"},
253 {FX2CMD_MEM_READ_64BYTES, "read encoder 64bytes"},
254 {FX2CMD_REG_WRITE, "write encoder register"},
255 {FX2CMD_REG_READ, "read encoder register"},
256 {FX2CMD_MEMSEL, "encoder memsel"},
257 {FX2CMD_I2C_WRITE, "i2c write"},
258 {FX2CMD_I2C_READ, "i2c read"},
259 {FX2CMD_GET_USB_SPEED, "get USB speed"},
260 {FX2CMD_STREAMING_ON, "stream on"},
261 {FX2CMD_STREAMING_OFF, "stream off"},
262 {FX2CMD_FWPOST1, "fwpost1"},
263 {FX2CMD_POWER_OFF, "power off"},
264 {FX2CMD_POWER_ON, "power on"},
265 {FX2CMD_DEEP_RESET, "deep reset"},
266 {FX2CMD_GET_EEPROM_ADDR, "get rom addr"},
267 {FX2CMD_GET_IR_CODE, "get IR code"},
268 {FX2CMD_HCW_DEMOD_RESETIN, "hcw demod resetin"},
269 {FX2CMD_HCW_DTV_STREAMING_ON, "hcw dtv stream on"},
270 {FX2CMD_HCW_DTV_STREAMING_OFF, "hcw dtv stream off"},
271 {FX2CMD_ONAIR_DTV_STREAMING_ON, "onair dtv stream on"},
272 {FX2CMD_ONAIR_DTV_STREAMING_OFF, "onair dtv stream off"},
273 {FX2CMD_ONAIR_DTV_POWER_ON, "onair dtv power on"},
274 {FX2CMD_ONAIR_DTV_POWER_OFF, "onair dtv power off"},
275};
276
277
Mike Isely1cb03b72008-04-21 03:47:43 -0300278static int pvr2_hdw_set_input(struct pvr2_hdw *hdw,int v);
Mike Isely681c7392007-11-26 01:48:52 -0300279static void pvr2_hdw_state_sched(struct pvr2_hdw *);
280static int pvr2_hdw_state_eval(struct pvr2_hdw *);
Mike Isely1bde0282006-12-27 23:30:13 -0300281static void pvr2_hdw_set_cur_freq(struct pvr2_hdw *,unsigned long);
Mike Isely681c7392007-11-26 01:48:52 -0300282static void pvr2_hdw_worker_i2c(struct work_struct *work);
283static void pvr2_hdw_worker_poll(struct work_struct *work);
Mike Isely681c7392007-11-26 01:48:52 -0300284static int pvr2_hdw_wait(struct pvr2_hdw *,int state);
285static int pvr2_hdw_untrip_unlocked(struct pvr2_hdw *);
286static void pvr2_hdw_state_log_state(struct pvr2_hdw *);
Adrian Bunk07e337e2006-06-30 11:30:20 -0300287static int pvr2_hdw_cmd_usbstream(struct pvr2_hdw *hdw,int runFl);
Mike Isely681c7392007-11-26 01:48:52 -0300288static int pvr2_hdw_commit_setup(struct pvr2_hdw *hdw);
Adrian Bunk07e337e2006-06-30 11:30:20 -0300289static int pvr2_hdw_get_eeprom_addr(struct pvr2_hdw *hdw);
Adrian Bunk07e337e2006-06-30 11:30:20 -0300290static void pvr2_hdw_internal_find_stdenum(struct pvr2_hdw *hdw);
291static void pvr2_hdw_internal_set_std_avail(struct pvr2_hdw *hdw);
Mike Isely681c7392007-11-26 01:48:52 -0300292static void pvr2_hdw_quiescent_timeout(unsigned long);
293static void pvr2_hdw_encoder_wait_timeout(unsigned long);
Mike Iselyd913d632008-04-06 04:04:35 -0300294static void pvr2_hdw_encoder_run_timeout(unsigned long);
Mike Isely1c9d10d2008-03-28 05:38:54 -0300295static int pvr2_issue_simple_cmd(struct pvr2_hdw *,u32);
Adrian Bunk07e337e2006-06-30 11:30:20 -0300296static int pvr2_send_request_ex(struct pvr2_hdw *hdw,
297 unsigned int timeout,int probe_fl,
298 void *write_data,unsigned int write_len,
299 void *read_data,unsigned int read_len);
Mike Iselyd8554972006-06-26 20:58:46 -0300300
Mike Isely681c7392007-11-26 01:48:52 -0300301
302static void trace_stbit(const char *name,int val)
303{
304 pvr2_trace(PVR2_TRACE_STBITS,
305 "State bit %s <-- %s",
306 name,(val ? "true" : "false"));
307}
308
Mike Iselyd8554972006-06-26 20:58:46 -0300309static int ctrl_channelfreq_get(struct pvr2_ctrl *cptr,int *vp)
310{
311 struct pvr2_hdw *hdw = cptr->hdw;
312 if ((hdw->freqProgSlot > 0) && (hdw->freqProgSlot <= FREQTABLE_SIZE)) {
313 *vp = hdw->freqTable[hdw->freqProgSlot-1];
314 } else {
315 *vp = 0;
316 }
317 return 0;
318}
319
320static int ctrl_channelfreq_set(struct pvr2_ctrl *cptr,int m,int v)
321{
322 struct pvr2_hdw *hdw = cptr->hdw;
Mike Isely1bde0282006-12-27 23:30:13 -0300323 unsigned int slotId = hdw->freqProgSlot;
324 if ((slotId > 0) && (slotId <= FREQTABLE_SIZE)) {
325 hdw->freqTable[slotId-1] = v;
326 /* Handle side effects correctly - if we're tuned to this
327 slot, then forgot the slot id relation since the stored
328 frequency has been changed. */
329 if (hdw->freqSelector) {
330 if (hdw->freqSlotRadio == slotId) {
331 hdw->freqSlotRadio = 0;
332 }
333 } else {
334 if (hdw->freqSlotTelevision == slotId) {
335 hdw->freqSlotTelevision = 0;
336 }
337 }
Mike Iselyd8554972006-06-26 20:58:46 -0300338 }
339 return 0;
340}
341
342static int ctrl_channelprog_get(struct pvr2_ctrl *cptr,int *vp)
343{
344 *vp = cptr->hdw->freqProgSlot;
345 return 0;
346}
347
348static int ctrl_channelprog_set(struct pvr2_ctrl *cptr,int m,int v)
349{
350 struct pvr2_hdw *hdw = cptr->hdw;
351 if ((v >= 0) && (v <= FREQTABLE_SIZE)) {
352 hdw->freqProgSlot = v;
353 }
354 return 0;
355}
356
357static int ctrl_channel_get(struct pvr2_ctrl *cptr,int *vp)
358{
Mike Isely1bde0282006-12-27 23:30:13 -0300359 struct pvr2_hdw *hdw = cptr->hdw;
360 *vp = hdw->freqSelector ? hdw->freqSlotRadio : hdw->freqSlotTelevision;
Mike Iselyd8554972006-06-26 20:58:46 -0300361 return 0;
362}
363
Mike Isely1bde0282006-12-27 23:30:13 -0300364static int ctrl_channel_set(struct pvr2_ctrl *cptr,int m,int slotId)
Mike Iselyd8554972006-06-26 20:58:46 -0300365{
366 unsigned freq = 0;
367 struct pvr2_hdw *hdw = cptr->hdw;
Mike Isely1bde0282006-12-27 23:30:13 -0300368 if ((slotId < 0) || (slotId > FREQTABLE_SIZE)) return 0;
369 if (slotId > 0) {
370 freq = hdw->freqTable[slotId-1];
371 if (!freq) return 0;
372 pvr2_hdw_set_cur_freq(hdw,freq);
Mike Iselyd8554972006-06-26 20:58:46 -0300373 }
Mike Isely1bde0282006-12-27 23:30:13 -0300374 if (hdw->freqSelector) {
375 hdw->freqSlotRadio = slotId;
376 } else {
377 hdw->freqSlotTelevision = slotId;
Mike Iselyd8554972006-06-26 20:58:46 -0300378 }
379 return 0;
380}
381
382static int ctrl_freq_get(struct pvr2_ctrl *cptr,int *vp)
383{
Mike Isely1bde0282006-12-27 23:30:13 -0300384 *vp = pvr2_hdw_get_cur_freq(cptr->hdw);
Mike Iselyd8554972006-06-26 20:58:46 -0300385 return 0;
386}
387
388static int ctrl_freq_is_dirty(struct pvr2_ctrl *cptr)
389{
390 return cptr->hdw->freqDirty != 0;
391}
392
393static void ctrl_freq_clear_dirty(struct pvr2_ctrl *cptr)
394{
395 cptr->hdw->freqDirty = 0;
396}
397
398static int ctrl_freq_set(struct pvr2_ctrl *cptr,int m,int v)
399{
Mike Isely1bde0282006-12-27 23:30:13 -0300400 pvr2_hdw_set_cur_freq(cptr->hdw,v);
Mike Iselyd8554972006-06-26 20:58:46 -0300401 return 0;
402}
403
Mike Isely3ad9fc32006-09-02 22:37:52 -0300404static int ctrl_vres_max_get(struct pvr2_ctrl *cptr,int *vp)
405{
406 /* Actual maximum depends on the video standard in effect. */
407 if (cptr->hdw->std_mask_cur & V4L2_STD_525_60) {
408 *vp = 480;
409 } else {
410 *vp = 576;
411 }
412 return 0;
413}
414
415static int ctrl_vres_min_get(struct pvr2_ctrl *cptr,int *vp)
416{
Mike Isely989eb152007-11-26 01:53:12 -0300417 /* Actual minimum depends on device digitizer type. */
418 if (cptr->hdw->hdw_desc->flag_has_cx25840) {
Mike Isely3ad9fc32006-09-02 22:37:52 -0300419 *vp = 75;
420 } else {
421 *vp = 17;
422 }
423 return 0;
424}
425
Mike Isely1bde0282006-12-27 23:30:13 -0300426static int ctrl_get_input(struct pvr2_ctrl *cptr,int *vp)
427{
428 *vp = cptr->hdw->input_val;
429 return 0;
430}
431
Mike Isely29bf5b12008-04-22 14:45:37 -0300432static int ctrl_check_input(struct pvr2_ctrl *cptr,int v)
433{
Mike Isely1cb03b72008-04-21 03:47:43 -0300434 return ((1 << v) & cptr->hdw->input_allowed_mask) != 0;
Mike Isely29bf5b12008-04-22 14:45:37 -0300435}
436
Mike Isely1bde0282006-12-27 23:30:13 -0300437static int ctrl_set_input(struct pvr2_ctrl *cptr,int m,int v)
438{
Mike Isely1cb03b72008-04-21 03:47:43 -0300439 return pvr2_hdw_set_input(cptr->hdw,v);
Mike Isely1bde0282006-12-27 23:30:13 -0300440}
441
442static int ctrl_isdirty_input(struct pvr2_ctrl *cptr)
443{
444 return cptr->hdw->input_dirty != 0;
445}
446
447static void ctrl_cleardirty_input(struct pvr2_ctrl *cptr)
448{
449 cptr->hdw->input_dirty = 0;
450}
451
Mike Isely5549f542006-12-27 23:28:54 -0300452
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300453static int ctrl_freq_max_get(struct pvr2_ctrl *cptr, int *vp)
454{
Mike Isely644afdb2007-01-20 00:19:23 -0300455 unsigned long fv;
456 struct pvr2_hdw *hdw = cptr->hdw;
457 if (hdw->tuner_signal_stale) {
458 pvr2_i2c_core_status_poll(hdw);
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300459 }
Mike Isely644afdb2007-01-20 00:19:23 -0300460 fv = hdw->tuner_signal_info.rangehigh;
461 if (!fv) {
462 /* Safety fallback */
463 *vp = TV_MAX_FREQ;
464 return 0;
465 }
466 if (hdw->tuner_signal_info.capability & V4L2_TUNER_CAP_LOW) {
467 fv = (fv * 125) / 2;
468 } else {
469 fv = fv * 62500;
470 }
471 *vp = fv;
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300472 return 0;
473}
474
475static int ctrl_freq_min_get(struct pvr2_ctrl *cptr, int *vp)
476{
Mike Isely644afdb2007-01-20 00:19:23 -0300477 unsigned long fv;
478 struct pvr2_hdw *hdw = cptr->hdw;
479 if (hdw->tuner_signal_stale) {
480 pvr2_i2c_core_status_poll(hdw);
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300481 }
Mike Isely644afdb2007-01-20 00:19:23 -0300482 fv = hdw->tuner_signal_info.rangelow;
483 if (!fv) {
484 /* Safety fallback */
485 *vp = TV_MIN_FREQ;
486 return 0;
487 }
488 if (hdw->tuner_signal_info.capability & V4L2_TUNER_CAP_LOW) {
489 fv = (fv * 125) / 2;
490 } else {
491 fv = fv * 62500;
492 }
493 *vp = fv;
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300494 return 0;
495}
496
Mike Iselyb30d2442006-06-25 20:05:01 -0300497static int ctrl_cx2341x_is_dirty(struct pvr2_ctrl *cptr)
498{
499 return cptr->hdw->enc_stale != 0;
500}
501
502static void ctrl_cx2341x_clear_dirty(struct pvr2_ctrl *cptr)
503{
504 cptr->hdw->enc_stale = 0;
Mike Isely681c7392007-11-26 01:48:52 -0300505 cptr->hdw->enc_unsafe_stale = 0;
Mike Iselyb30d2442006-06-25 20:05:01 -0300506}
507
508static int ctrl_cx2341x_get(struct pvr2_ctrl *cptr,int *vp)
509{
510 int ret;
511 struct v4l2_ext_controls cs;
512 struct v4l2_ext_control c1;
513 memset(&cs,0,sizeof(cs));
514 memset(&c1,0,sizeof(c1));
515 cs.controls = &c1;
516 cs.count = 1;
517 c1.id = cptr->info->v4l_id;
Hans Verkuil01f1e442007-08-21 18:32:42 -0300518 ret = cx2341x_ext_ctrls(&cptr->hdw->enc_ctl_state, 0, &cs,
Mike Iselyb30d2442006-06-25 20:05:01 -0300519 VIDIOC_G_EXT_CTRLS);
520 if (ret) return ret;
521 *vp = c1.value;
522 return 0;
523}
524
525static int ctrl_cx2341x_set(struct pvr2_ctrl *cptr,int m,int v)
526{
527 int ret;
Mike Isely681c7392007-11-26 01:48:52 -0300528 struct pvr2_hdw *hdw = cptr->hdw;
Mike Iselyb30d2442006-06-25 20:05:01 -0300529 struct v4l2_ext_controls cs;
530 struct v4l2_ext_control c1;
531 memset(&cs,0,sizeof(cs));
532 memset(&c1,0,sizeof(c1));
533 cs.controls = &c1;
534 cs.count = 1;
535 c1.id = cptr->info->v4l_id;
536 c1.value = v;
Mike Isely681c7392007-11-26 01:48:52 -0300537 ret = cx2341x_ext_ctrls(&hdw->enc_ctl_state,
538 hdw->state_encoder_run, &cs,
Mike Iselyb30d2442006-06-25 20:05:01 -0300539 VIDIOC_S_EXT_CTRLS);
Mike Isely681c7392007-11-26 01:48:52 -0300540 if (ret == -EBUSY) {
541 /* Oops. cx2341x is telling us it's not safe to change
542 this control while we're capturing. Make a note of this
543 fact so that the pipeline will be stopped the next time
544 controls are committed. Then go on ahead and store this
545 change anyway. */
546 ret = cx2341x_ext_ctrls(&hdw->enc_ctl_state,
547 0, &cs,
548 VIDIOC_S_EXT_CTRLS);
549 if (!ret) hdw->enc_unsafe_stale = !0;
550 }
Mike Iselyb30d2442006-06-25 20:05:01 -0300551 if (ret) return ret;
Mike Isely681c7392007-11-26 01:48:52 -0300552 hdw->enc_stale = !0;
Mike Iselyb30d2442006-06-25 20:05:01 -0300553 return 0;
554}
555
556static unsigned int ctrl_cx2341x_getv4lflags(struct pvr2_ctrl *cptr)
557{
558 struct v4l2_queryctrl qctrl;
559 struct pvr2_ctl_info *info;
560 qctrl.id = cptr->info->v4l_id;
561 cx2341x_ctrl_query(&cptr->hdw->enc_ctl_state,&qctrl);
562 /* Strip out the const so we can adjust a function pointer. It's
563 OK to do this here because we know this is a dynamically created
564 control, so the underlying storage for the info pointer is (a)
565 private to us, and (b) not in read-only storage. Either we do
566 this or we significantly complicate the underlying control
567 implementation. */
568 info = (struct pvr2_ctl_info *)(cptr->info);
569 if (qctrl.flags & V4L2_CTRL_FLAG_READ_ONLY) {
570 if (info->set_value) {
Mike Iselya0fd1cb2006-06-30 11:35:28 -0300571 info->set_value = NULL;
Mike Iselyb30d2442006-06-25 20:05:01 -0300572 }
573 } else {
574 if (!(info->set_value)) {
575 info->set_value = ctrl_cx2341x_set;
576 }
577 }
578 return qctrl.flags;
579}
580
Mike Iselyd8554972006-06-26 20:58:46 -0300581static int ctrl_streamingenabled_get(struct pvr2_ctrl *cptr,int *vp)
582{
Mike Isely681c7392007-11-26 01:48:52 -0300583 *vp = cptr->hdw->state_pipeline_req;
584 return 0;
585}
586
587static int ctrl_masterstate_get(struct pvr2_ctrl *cptr,int *vp)
588{
589 *vp = cptr->hdw->master_state;
Mike Iselyd8554972006-06-26 20:58:46 -0300590 return 0;
591}
592
593static int ctrl_hsm_get(struct pvr2_ctrl *cptr,int *vp)
594{
595 int result = pvr2_hdw_is_hsm(cptr->hdw);
596 *vp = PVR2_CVAL_HSM_FULL;
597 if (result < 0) *vp = PVR2_CVAL_HSM_FAIL;
598 if (result) *vp = PVR2_CVAL_HSM_HIGH;
599 return 0;
600}
601
602static int ctrl_stdavail_get(struct pvr2_ctrl *cptr,int *vp)
603{
604 *vp = cptr->hdw->std_mask_avail;
605 return 0;
606}
607
608static int ctrl_stdavail_set(struct pvr2_ctrl *cptr,int m,int v)
609{
610 struct pvr2_hdw *hdw = cptr->hdw;
611 v4l2_std_id ns;
612 ns = hdw->std_mask_avail;
613 ns = (ns & ~m) | (v & m);
614 if (ns == hdw->std_mask_avail) return 0;
615 hdw->std_mask_avail = ns;
616 pvr2_hdw_internal_set_std_avail(hdw);
617 pvr2_hdw_internal_find_stdenum(hdw);
618 return 0;
619}
620
621static int ctrl_std_val_to_sym(struct pvr2_ctrl *cptr,int msk,int val,
622 char *bufPtr,unsigned int bufSize,
623 unsigned int *len)
624{
625 *len = pvr2_std_id_to_str(bufPtr,bufSize,msk & val);
626 return 0;
627}
628
629static int ctrl_std_sym_to_val(struct pvr2_ctrl *cptr,
630 const char *bufPtr,unsigned int bufSize,
631 int *mskp,int *valp)
632{
633 int ret;
634 v4l2_std_id id;
635 ret = pvr2_std_str_to_id(&id,bufPtr,bufSize);
636 if (ret < 0) return ret;
637 if (mskp) *mskp = id;
638 if (valp) *valp = id;
639 return 0;
640}
641
642static int ctrl_stdcur_get(struct pvr2_ctrl *cptr,int *vp)
643{
644 *vp = cptr->hdw->std_mask_cur;
645 return 0;
646}
647
648static int ctrl_stdcur_set(struct pvr2_ctrl *cptr,int m,int v)
649{
650 struct pvr2_hdw *hdw = cptr->hdw;
651 v4l2_std_id ns;
652 ns = hdw->std_mask_cur;
653 ns = (ns & ~m) | (v & m);
654 if (ns == hdw->std_mask_cur) return 0;
655 hdw->std_mask_cur = ns;
656 hdw->std_dirty = !0;
657 pvr2_hdw_internal_find_stdenum(hdw);
658 return 0;
659}
660
661static int ctrl_stdcur_is_dirty(struct pvr2_ctrl *cptr)
662{
663 return cptr->hdw->std_dirty != 0;
664}
665
666static void ctrl_stdcur_clear_dirty(struct pvr2_ctrl *cptr)
667{
668 cptr->hdw->std_dirty = 0;
669}
670
671static int ctrl_signal_get(struct pvr2_ctrl *cptr,int *vp)
672{
Mike Isely18103c52007-01-20 00:09:47 -0300673 struct pvr2_hdw *hdw = cptr->hdw;
674 pvr2_i2c_core_status_poll(hdw);
675 *vp = hdw->tuner_signal_info.signal;
676 return 0;
677}
678
679static int ctrl_audio_modes_present_get(struct pvr2_ctrl *cptr,int *vp)
680{
681 int val = 0;
682 unsigned int subchan;
683 struct pvr2_hdw *hdw = cptr->hdw;
Mike Isely644afdb2007-01-20 00:19:23 -0300684 pvr2_i2c_core_status_poll(hdw);
Mike Isely18103c52007-01-20 00:09:47 -0300685 subchan = hdw->tuner_signal_info.rxsubchans;
686 if (subchan & V4L2_TUNER_SUB_MONO) {
687 val |= (1 << V4L2_TUNER_MODE_MONO);
688 }
689 if (subchan & V4L2_TUNER_SUB_STEREO) {
690 val |= (1 << V4L2_TUNER_MODE_STEREO);
691 }
692 if (subchan & V4L2_TUNER_SUB_LANG1) {
693 val |= (1 << V4L2_TUNER_MODE_LANG1);
694 }
695 if (subchan & V4L2_TUNER_SUB_LANG2) {
696 val |= (1 << V4L2_TUNER_MODE_LANG2);
697 }
698 *vp = val;
Mike Iselyd8554972006-06-26 20:58:46 -0300699 return 0;
700}
701
Mike Iselyd8554972006-06-26 20:58:46 -0300702
703static int ctrl_stdenumcur_set(struct pvr2_ctrl *cptr,int m,int v)
704{
705 struct pvr2_hdw *hdw = cptr->hdw;
706 if (v < 0) return -EINVAL;
707 if (v > hdw->std_enum_cnt) return -EINVAL;
708 hdw->std_enum_cur = v;
709 if (!v) return 0;
710 v--;
711 if (hdw->std_mask_cur == hdw->std_defs[v].id) return 0;
712 hdw->std_mask_cur = hdw->std_defs[v].id;
713 hdw->std_dirty = !0;
714 return 0;
715}
716
717
718static int ctrl_stdenumcur_get(struct pvr2_ctrl *cptr,int *vp)
719{
720 *vp = cptr->hdw->std_enum_cur;
721 return 0;
722}
723
724
725static int ctrl_stdenumcur_is_dirty(struct pvr2_ctrl *cptr)
726{
727 return cptr->hdw->std_dirty != 0;
728}
729
730
731static void ctrl_stdenumcur_clear_dirty(struct pvr2_ctrl *cptr)
732{
733 cptr->hdw->std_dirty = 0;
734}
735
736
737#define DEFINT(vmin,vmax) \
738 .type = pvr2_ctl_int, \
739 .def.type_int.min_value = vmin, \
740 .def.type_int.max_value = vmax
741
742#define DEFENUM(tab) \
743 .type = pvr2_ctl_enum, \
Mike Isely27c7b712007-01-20 00:39:17 -0300744 .def.type_enum.count = ARRAY_SIZE(tab), \
Mike Iselyd8554972006-06-26 20:58:46 -0300745 .def.type_enum.value_names = tab
746
Mike Isely33213962006-06-25 20:04:40 -0300747#define DEFBOOL \
748 .type = pvr2_ctl_bool
749
Mike Iselyd8554972006-06-26 20:58:46 -0300750#define DEFMASK(msk,tab) \
751 .type = pvr2_ctl_bitmask, \
752 .def.type_bitmask.valid_bits = msk, \
753 .def.type_bitmask.bit_names = tab
754
755#define DEFREF(vname) \
756 .set_value = ctrl_set_##vname, \
757 .get_value = ctrl_get_##vname, \
758 .is_dirty = ctrl_isdirty_##vname, \
759 .clear_dirty = ctrl_cleardirty_##vname
760
761
762#define VCREATE_FUNCS(vname) \
763static int ctrl_get_##vname(struct pvr2_ctrl *cptr,int *vp) \
764{*vp = cptr->hdw->vname##_val; return 0;} \
765static int ctrl_set_##vname(struct pvr2_ctrl *cptr,int m,int v) \
766{cptr->hdw->vname##_val = v; cptr->hdw->vname##_dirty = !0; return 0;} \
767static int ctrl_isdirty_##vname(struct pvr2_ctrl *cptr) \
768{return cptr->hdw->vname##_dirty != 0;} \
769static void ctrl_cleardirty_##vname(struct pvr2_ctrl *cptr) \
770{cptr->hdw->vname##_dirty = 0;}
771
772VCREATE_FUNCS(brightness)
773VCREATE_FUNCS(contrast)
774VCREATE_FUNCS(saturation)
775VCREATE_FUNCS(hue)
776VCREATE_FUNCS(volume)
777VCREATE_FUNCS(balance)
778VCREATE_FUNCS(bass)
779VCREATE_FUNCS(treble)
780VCREATE_FUNCS(mute)
Mike Iselyc05c0462006-06-25 20:04:25 -0300781VCREATE_FUNCS(audiomode)
782VCREATE_FUNCS(res_hor)
783VCREATE_FUNCS(res_ver)
Mike Iselyd8554972006-06-26 20:58:46 -0300784VCREATE_FUNCS(srate)
Mike Iselyd8554972006-06-26 20:58:46 -0300785
Mike Iselyd8554972006-06-26 20:58:46 -0300786/* Table definition of all controls which can be manipulated */
787static const struct pvr2_ctl_info control_defs[] = {
788 {
789 .v4l_id = V4L2_CID_BRIGHTNESS,
790 .desc = "Brightness",
791 .name = "brightness",
792 .default_value = 128,
793 DEFREF(brightness),
794 DEFINT(0,255),
795 },{
796 .v4l_id = V4L2_CID_CONTRAST,
797 .desc = "Contrast",
798 .name = "contrast",
799 .default_value = 68,
800 DEFREF(contrast),
801 DEFINT(0,127),
802 },{
803 .v4l_id = V4L2_CID_SATURATION,
804 .desc = "Saturation",
805 .name = "saturation",
806 .default_value = 64,
807 DEFREF(saturation),
808 DEFINT(0,127),
809 },{
810 .v4l_id = V4L2_CID_HUE,
811 .desc = "Hue",
812 .name = "hue",
813 .default_value = 0,
814 DEFREF(hue),
815 DEFINT(-128,127),
816 },{
817 .v4l_id = V4L2_CID_AUDIO_VOLUME,
818 .desc = "Volume",
819 .name = "volume",
Mike Isely139eecf2006-12-27 23:36:33 -0300820 .default_value = 62000,
Mike Iselyd8554972006-06-26 20:58:46 -0300821 DEFREF(volume),
822 DEFINT(0,65535),
823 },{
824 .v4l_id = V4L2_CID_AUDIO_BALANCE,
825 .desc = "Balance",
826 .name = "balance",
827 .default_value = 0,
828 DEFREF(balance),
829 DEFINT(-32768,32767),
830 },{
831 .v4l_id = V4L2_CID_AUDIO_BASS,
832 .desc = "Bass",
833 .name = "bass",
834 .default_value = 0,
835 DEFREF(bass),
836 DEFINT(-32768,32767),
837 },{
838 .v4l_id = V4L2_CID_AUDIO_TREBLE,
839 .desc = "Treble",
840 .name = "treble",
841 .default_value = 0,
842 DEFREF(treble),
843 DEFINT(-32768,32767),
844 },{
845 .v4l_id = V4L2_CID_AUDIO_MUTE,
846 .desc = "Mute",
847 .name = "mute",
848 .default_value = 0,
849 DEFREF(mute),
Mike Isely33213962006-06-25 20:04:40 -0300850 DEFBOOL,
Mike Iselyd8554972006-06-26 20:58:46 -0300851 },{
Mike Iselyc05c0462006-06-25 20:04:25 -0300852 .desc = "Video Source",
853 .name = "input",
854 .internal_id = PVR2_CID_INPUT,
855 .default_value = PVR2_CVAL_INPUT_TV,
Mike Isely29bf5b12008-04-22 14:45:37 -0300856 .check_value = ctrl_check_input,
Mike Iselyc05c0462006-06-25 20:04:25 -0300857 DEFREF(input),
858 DEFENUM(control_values_input),
859 },{
860 .desc = "Audio Mode",
861 .name = "audio_mode",
862 .internal_id = PVR2_CID_AUDIOMODE,
863 .default_value = V4L2_TUNER_MODE_STEREO,
864 DEFREF(audiomode),
865 DEFENUM(control_values_audiomode),
866 },{
867 .desc = "Horizontal capture resolution",
868 .name = "resolution_hor",
869 .internal_id = PVR2_CID_HRES,
870 .default_value = 720,
871 DEFREF(res_hor),
Mike Isely3ad9fc32006-09-02 22:37:52 -0300872 DEFINT(19,720),
Mike Iselyc05c0462006-06-25 20:04:25 -0300873 },{
874 .desc = "Vertical capture resolution",
875 .name = "resolution_ver",
876 .internal_id = PVR2_CID_VRES,
877 .default_value = 480,
878 DEFREF(res_ver),
Mike Isely3ad9fc32006-09-02 22:37:52 -0300879 DEFINT(17,576),
880 /* Hook in check for video standard and adjust maximum
881 depending on the standard. */
882 .get_max_value = ctrl_vres_max_get,
883 .get_min_value = ctrl_vres_min_get,
Mike Iselyc05c0462006-06-25 20:04:25 -0300884 },{
Mike Iselyb30d2442006-06-25 20:05:01 -0300885 .v4l_id = V4L2_CID_MPEG_AUDIO_SAMPLING_FREQ,
Mike Isely434449f2006-08-08 09:10:06 -0300886 .default_value = V4L2_MPEG_AUDIO_SAMPLING_FREQ_48000,
887 .desc = "Audio Sampling Frequency",
Mike Iselyd8554972006-06-26 20:58:46 -0300888 .name = "srate",
Mike Iselyd8554972006-06-26 20:58:46 -0300889 DEFREF(srate),
890 DEFENUM(control_values_srate),
891 },{
Mike Iselyd8554972006-06-26 20:58:46 -0300892 .desc = "Tuner Frequency (Hz)",
893 .name = "frequency",
894 .internal_id = PVR2_CID_FREQUENCY,
Mike Isely1bde0282006-12-27 23:30:13 -0300895 .default_value = 0,
Mike Iselyd8554972006-06-26 20:58:46 -0300896 .set_value = ctrl_freq_set,
897 .get_value = ctrl_freq_get,
898 .is_dirty = ctrl_freq_is_dirty,
899 .clear_dirty = ctrl_freq_clear_dirty,
Mike Isely644afdb2007-01-20 00:19:23 -0300900 DEFINT(0,0),
Pantelis Koukousoulas25d85272006-12-27 23:06:04 -0300901 /* Hook in check for input value (tv/radio) and adjust
902 max/min values accordingly */
903 .get_max_value = ctrl_freq_max_get,
904 .get_min_value = ctrl_freq_min_get,
Mike Iselyd8554972006-06-26 20:58:46 -0300905 },{
906 .desc = "Channel",
907 .name = "channel",
908 .set_value = ctrl_channel_set,
909 .get_value = ctrl_channel_get,
910 DEFINT(0,FREQTABLE_SIZE),
911 },{
912 .desc = "Channel Program Frequency",
913 .name = "freq_table_value",
914 .set_value = ctrl_channelfreq_set,
915 .get_value = ctrl_channelfreq_get,
Mike Isely644afdb2007-01-20 00:19:23 -0300916 DEFINT(0,0),
Mike Isely1bde0282006-12-27 23:30:13 -0300917 /* Hook in check for input value (tv/radio) and adjust
918 max/min values accordingly */
Mike Isely1bde0282006-12-27 23:30:13 -0300919 .get_max_value = ctrl_freq_max_get,
920 .get_min_value = ctrl_freq_min_get,
Mike Iselyd8554972006-06-26 20:58:46 -0300921 },{
922 .desc = "Channel Program ID",
923 .name = "freq_table_channel",
924 .set_value = ctrl_channelprog_set,
925 .get_value = ctrl_channelprog_get,
926 DEFINT(0,FREQTABLE_SIZE),
927 },{
Mike Iselyd8554972006-06-26 20:58:46 -0300928 .desc = "Streaming Enabled",
929 .name = "streaming_enabled",
930 .get_value = ctrl_streamingenabled_get,
Mike Isely33213962006-06-25 20:04:40 -0300931 DEFBOOL,
Mike Iselyd8554972006-06-26 20:58:46 -0300932 },{
933 .desc = "USB Speed",
934 .name = "usb_speed",
935 .get_value = ctrl_hsm_get,
936 DEFENUM(control_values_hsm),
937 },{
Mike Isely681c7392007-11-26 01:48:52 -0300938 .desc = "Master State",
939 .name = "master_state",
940 .get_value = ctrl_masterstate_get,
941 DEFENUM(pvr2_state_names),
942 },{
Mike Iselyd8554972006-06-26 20:58:46 -0300943 .desc = "Signal Present",
944 .name = "signal_present",
945 .get_value = ctrl_signal_get,
Mike Isely18103c52007-01-20 00:09:47 -0300946 DEFINT(0,65535),
947 },{
948 .desc = "Audio Modes Present",
949 .name = "audio_modes_present",
950 .get_value = ctrl_audio_modes_present_get,
951 /* For this type we "borrow" the V4L2_TUNER_MODE enum from
952 v4l. Nothing outside of this module cares about this,
953 but I reuse it in order to also reuse the
954 control_values_audiomode string table. */
955 DEFMASK(((1 << V4L2_TUNER_MODE_MONO)|
956 (1 << V4L2_TUNER_MODE_STEREO)|
957 (1 << V4L2_TUNER_MODE_LANG1)|
958 (1 << V4L2_TUNER_MODE_LANG2)),
959 control_values_audiomode),
Mike Iselyd8554972006-06-26 20:58:46 -0300960 },{
961 .desc = "Video Standards Available Mask",
962 .name = "video_standard_mask_available",
963 .internal_id = PVR2_CID_STDAVAIL,
964 .skip_init = !0,
965 .get_value = ctrl_stdavail_get,
966 .set_value = ctrl_stdavail_set,
967 .val_to_sym = ctrl_std_val_to_sym,
968 .sym_to_val = ctrl_std_sym_to_val,
969 .type = pvr2_ctl_bitmask,
970 },{
971 .desc = "Video Standards In Use Mask",
972 .name = "video_standard_mask_active",
973 .internal_id = PVR2_CID_STDCUR,
974 .skip_init = !0,
975 .get_value = ctrl_stdcur_get,
976 .set_value = ctrl_stdcur_set,
977 .is_dirty = ctrl_stdcur_is_dirty,
978 .clear_dirty = ctrl_stdcur_clear_dirty,
979 .val_to_sym = ctrl_std_val_to_sym,
980 .sym_to_val = ctrl_std_sym_to_val,
981 .type = pvr2_ctl_bitmask,
982 },{
Mike Iselyd8554972006-06-26 20:58:46 -0300983 .desc = "Video Standard Name",
984 .name = "video_standard",
985 .internal_id = PVR2_CID_STDENUM,
986 .skip_init = !0,
987 .get_value = ctrl_stdenumcur_get,
988 .set_value = ctrl_stdenumcur_set,
989 .is_dirty = ctrl_stdenumcur_is_dirty,
990 .clear_dirty = ctrl_stdenumcur_clear_dirty,
991 .type = pvr2_ctl_enum,
992 }
993};
994
Ahmed S. Darwisheca8ebf2007-01-20 00:35:03 -0300995#define CTRLDEF_COUNT ARRAY_SIZE(control_defs)
Mike Iselyd8554972006-06-26 20:58:46 -0300996
997
998const char *pvr2_config_get_name(enum pvr2_config cfg)
999{
1000 switch (cfg) {
1001 case pvr2_config_empty: return "empty";
1002 case pvr2_config_mpeg: return "mpeg";
1003 case pvr2_config_vbi: return "vbi";
Mike Isely16eb40d2006-12-30 18:27:32 -03001004 case pvr2_config_pcm: return "pcm";
1005 case pvr2_config_rawvideo: return "raw video";
Mike Iselyd8554972006-06-26 20:58:46 -03001006 }
1007 return "<unknown>";
1008}
1009
1010
1011struct usb_device *pvr2_hdw_get_dev(struct pvr2_hdw *hdw)
1012{
1013 return hdw->usb_dev;
1014}
1015
1016
1017unsigned long pvr2_hdw_get_sn(struct pvr2_hdw *hdw)
1018{
1019 return hdw->serial_number;
1020}
1021
Mike Isely31a18542007-04-08 01:11:47 -03001022
1023const char *pvr2_hdw_get_bus_info(struct pvr2_hdw *hdw)
1024{
1025 return hdw->bus_info;
1026}
1027
1028
Mike Isely1bde0282006-12-27 23:30:13 -03001029unsigned long pvr2_hdw_get_cur_freq(struct pvr2_hdw *hdw)
1030{
1031 return hdw->freqSelector ? hdw->freqValTelevision : hdw->freqValRadio;
1032}
1033
1034/* Set the currently tuned frequency and account for all possible
1035 driver-core side effects of this action. */
Adrian Bunkf55a8712008-04-18 05:38:56 -03001036static void pvr2_hdw_set_cur_freq(struct pvr2_hdw *hdw,unsigned long val)
Mike Isely1bde0282006-12-27 23:30:13 -03001037{
Mike Isely7c74e572007-01-20 00:15:41 -03001038 if (hdw->input_val == PVR2_CVAL_INPUT_RADIO) {
Mike Isely1bde0282006-12-27 23:30:13 -03001039 if (hdw->freqSelector) {
1040 /* Swing over to radio frequency selection */
1041 hdw->freqSelector = 0;
1042 hdw->freqDirty = !0;
1043 }
Mike Isely1bde0282006-12-27 23:30:13 -03001044 if (hdw->freqValRadio != val) {
1045 hdw->freqValRadio = val;
1046 hdw->freqSlotRadio = 0;
Mike Isely7c74e572007-01-20 00:15:41 -03001047 hdw->freqDirty = !0;
Mike Isely1bde0282006-12-27 23:30:13 -03001048 }
Mike Isely7c74e572007-01-20 00:15:41 -03001049 } else {
Mike Isely1bde0282006-12-27 23:30:13 -03001050 if (!(hdw->freqSelector)) {
1051 /* Swing over to television frequency selection */
1052 hdw->freqSelector = 1;
1053 hdw->freqDirty = !0;
1054 }
Mike Isely1bde0282006-12-27 23:30:13 -03001055 if (hdw->freqValTelevision != val) {
1056 hdw->freqValTelevision = val;
1057 hdw->freqSlotTelevision = 0;
Mike Isely7c74e572007-01-20 00:15:41 -03001058 hdw->freqDirty = !0;
Mike Isely1bde0282006-12-27 23:30:13 -03001059 }
Mike Isely1bde0282006-12-27 23:30:13 -03001060 }
1061}
1062
Mike Iselyd8554972006-06-26 20:58:46 -03001063int pvr2_hdw_get_unit_number(struct pvr2_hdw *hdw)
1064{
1065 return hdw->unit_number;
1066}
1067
1068
1069/* Attempt to locate one of the given set of files. Messages are logged
1070 appropriate to what has been found. The return value will be 0 or
1071 greater on success (it will be the index of the file name found) and
1072 fw_entry will be filled in. Otherwise a negative error is returned on
1073 failure. If the return value is -ENOENT then no viable firmware file
1074 could be located. */
1075static int pvr2_locate_firmware(struct pvr2_hdw *hdw,
1076 const struct firmware **fw_entry,
1077 const char *fwtypename,
1078 unsigned int fwcount,
1079 const char *fwnames[])
1080{
1081 unsigned int idx;
1082 int ret = -EINVAL;
1083 for (idx = 0; idx < fwcount; idx++) {
1084 ret = request_firmware(fw_entry,
1085 fwnames[idx],
1086 &hdw->usb_dev->dev);
1087 if (!ret) {
1088 trace_firmware("Located %s firmware: %s;"
1089 " uploading...",
1090 fwtypename,
1091 fwnames[idx]);
1092 return idx;
1093 }
1094 if (ret == -ENOENT) continue;
1095 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1096 "request_firmware fatal error with code=%d",ret);
1097 return ret;
1098 }
1099 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1100 "***WARNING***"
1101 " Device %s firmware"
1102 " seems to be missing.",
1103 fwtypename);
1104 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1105 "Did you install the pvrusb2 firmware files"
1106 " in their proper location?");
1107 if (fwcount == 1) {
1108 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1109 "request_firmware unable to locate %s file %s",
1110 fwtypename,fwnames[0]);
1111 } else {
1112 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1113 "request_firmware unable to locate"
1114 " one of the following %s files:",
1115 fwtypename);
1116 for (idx = 0; idx < fwcount; idx++) {
1117 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1118 "request_firmware: Failed to find %s",
1119 fwnames[idx]);
1120 }
1121 }
1122 return ret;
1123}
1124
1125
1126/*
1127 * pvr2_upload_firmware1().
1128 *
1129 * Send the 8051 firmware to the device. After the upload, arrange for
1130 * device to re-enumerate.
1131 *
1132 * NOTE : the pointer to the firmware data given by request_firmware()
1133 * is not suitable for an usb transaction.
1134 *
1135 */
Adrian Bunk07e337e2006-06-30 11:30:20 -03001136static int pvr2_upload_firmware1(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03001137{
Mike Iselya0fd1cb2006-06-30 11:35:28 -03001138 const struct firmware *fw_entry = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03001139 void *fw_ptr;
1140 unsigned int pipe;
1141 int ret;
1142 u16 address;
Mike Isely1d643a32007-09-08 22:18:50 -03001143
Mike Isely989eb152007-11-26 01:53:12 -03001144 if (!hdw->hdw_desc->fx2_firmware.cnt) {
Mike Isely1d643a32007-09-08 22:18:50 -03001145 hdw->fw1_state = FW1_STATE_OK;
Mike Isely56dcbfa2007-11-26 02:00:51 -03001146 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1147 "Connected device type defines"
1148 " no firmware to upload; ignoring firmware");
1149 return -ENOTTY;
Mike Isely1d643a32007-09-08 22:18:50 -03001150 }
1151
Mike Iselyd8554972006-06-26 20:58:46 -03001152 hdw->fw1_state = FW1_STATE_FAILED; // default result
1153
1154 trace_firmware("pvr2_upload_firmware1");
1155
1156 ret = pvr2_locate_firmware(hdw,&fw_entry,"fx2 controller",
Mike Isely989eb152007-11-26 01:53:12 -03001157 hdw->hdw_desc->fx2_firmware.cnt,
1158 hdw->hdw_desc->fx2_firmware.lst);
Mike Iselyd8554972006-06-26 20:58:46 -03001159 if (ret < 0) {
1160 if (ret == -ENOENT) hdw->fw1_state = FW1_STATE_MISSING;
1161 return ret;
1162 }
1163
1164 usb_settoggle(hdw->usb_dev, 0 & 0xf, !(0 & USB_DIR_IN), 0);
1165 usb_clear_halt(hdw->usb_dev, usb_sndbulkpipe(hdw->usb_dev, 0 & 0x7f));
1166
1167 pipe = usb_sndctrlpipe(hdw->usb_dev, 0);
1168
1169 if (fw_entry->size != 0x2000){
1170 pvr2_trace(PVR2_TRACE_ERROR_LEGS,"wrong fx2 firmware size");
1171 release_firmware(fw_entry);
1172 return -ENOMEM;
1173 }
1174
1175 fw_ptr = kmalloc(0x800, GFP_KERNEL);
1176 if (fw_ptr == NULL){
1177 release_firmware(fw_entry);
1178 return -ENOMEM;
1179 }
1180
1181 /* We have to hold the CPU during firmware upload. */
1182 pvr2_hdw_cpureset_assert(hdw,1);
1183
1184 /* upload the firmware to address 0000-1fff in 2048 (=0x800) bytes
1185 chunk. */
1186
1187 ret = 0;
1188 for(address = 0; address < fw_entry->size; address += 0x800) {
1189 memcpy(fw_ptr, fw_entry->data + address, 0x800);
1190 ret += usb_control_msg(hdw->usb_dev, pipe, 0xa0, 0x40, address,
1191 0, fw_ptr, 0x800, HZ);
1192 }
1193
1194 trace_firmware("Upload done, releasing device's CPU");
1195
1196 /* Now release the CPU. It will disconnect and reconnect later. */
1197 pvr2_hdw_cpureset_assert(hdw,0);
1198
1199 kfree(fw_ptr);
1200 release_firmware(fw_entry);
1201
1202 trace_firmware("Upload done (%d bytes sent)",ret);
1203
1204 /* We should have written 8192 bytes */
1205 if (ret == 8192) {
1206 hdw->fw1_state = FW1_STATE_RELOAD;
1207 return 0;
1208 }
1209
1210 return -EIO;
1211}
1212
1213
1214/*
1215 * pvr2_upload_firmware2()
1216 *
1217 * This uploads encoder firmware on endpoint 2.
1218 *
1219 */
1220
1221int pvr2_upload_firmware2(struct pvr2_hdw *hdw)
1222{
Mike Iselya0fd1cb2006-06-30 11:35:28 -03001223 const struct firmware *fw_entry = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03001224 void *fw_ptr;
Mike Isely90060d32007-02-08 02:02:53 -03001225 unsigned int pipe, fw_len, fw_done, bcnt, icnt;
Mike Iselyd8554972006-06-26 20:58:46 -03001226 int actual_length;
1227 int ret = 0;
1228 int fwidx;
1229 static const char *fw_files[] = {
1230 CX2341X_FIRM_ENC_FILENAME,
1231 };
1232
Mike Isely989eb152007-11-26 01:53:12 -03001233 if (hdw->hdw_desc->flag_skip_cx23416_firmware) {
Mike Isely1d643a32007-09-08 22:18:50 -03001234 return 0;
1235 }
1236
Mike Iselyd8554972006-06-26 20:58:46 -03001237 trace_firmware("pvr2_upload_firmware2");
1238
1239 ret = pvr2_locate_firmware(hdw,&fw_entry,"encoder",
Ahmed S. Darwisheca8ebf2007-01-20 00:35:03 -03001240 ARRAY_SIZE(fw_files), fw_files);
Mike Iselyd8554972006-06-26 20:58:46 -03001241 if (ret < 0) return ret;
1242 fwidx = ret;
1243 ret = 0;
Mike Iselyb30d2442006-06-25 20:05:01 -03001244 /* Since we're about to completely reinitialize the encoder,
1245 invalidate our cached copy of its configuration state. Next
1246 time we configure the encoder, then we'll fully configure it. */
1247 hdw->enc_cur_valid = 0;
Mike Iselyd8554972006-06-26 20:58:46 -03001248
Mike Iselyd913d632008-04-06 04:04:35 -03001249 /* Encoder is about to be reset so note that as far as we're
1250 concerned now, the encoder has never been run. */
1251 del_timer_sync(&hdw->encoder_run_timer);
1252 if (hdw->state_encoder_runok) {
1253 hdw->state_encoder_runok = 0;
1254 trace_stbit("state_encoder_runok",hdw->state_encoder_runok);
1255 }
1256
Mike Iselyd8554972006-06-26 20:58:46 -03001257 /* First prepare firmware loading */
1258 ret |= pvr2_write_register(hdw, 0x0048, 0xffffffff); /*interrupt mask*/
1259 ret |= pvr2_hdw_gpio_chg_dir(hdw,0xffffffff,0x00000088); /*gpio dir*/
1260 ret |= pvr2_hdw_gpio_chg_out(hdw,0xffffffff,0x00000008); /*gpio output state*/
1261 ret |= pvr2_hdw_cmd_deep_reset(hdw);
1262 ret |= pvr2_write_register(hdw, 0xa064, 0x00000000); /*APU command*/
1263 ret |= pvr2_hdw_gpio_chg_dir(hdw,0xffffffff,0x00000408); /*gpio dir*/
1264 ret |= pvr2_hdw_gpio_chg_out(hdw,0xffffffff,0x00000008); /*gpio output state*/
1265 ret |= pvr2_write_register(hdw, 0x9058, 0xffffffed); /*VPU ctrl*/
1266 ret |= pvr2_write_register(hdw, 0x9054, 0xfffffffd); /*reset hw blocks*/
1267 ret |= pvr2_write_register(hdw, 0x07f8, 0x80000800); /*encoder SDRAM refresh*/
1268 ret |= pvr2_write_register(hdw, 0x07fc, 0x0000001a); /*encoder SDRAM pre-charge*/
1269 ret |= pvr2_write_register(hdw, 0x0700, 0x00000000); /*I2C clock*/
1270 ret |= pvr2_write_register(hdw, 0xaa00, 0x00000000); /*unknown*/
1271 ret |= pvr2_write_register(hdw, 0xaa04, 0x00057810); /*unknown*/
1272 ret |= pvr2_write_register(hdw, 0xaa10, 0x00148500); /*unknown*/
1273 ret |= pvr2_write_register(hdw, 0xaa18, 0x00840000); /*unknown*/
Mike Isely1c9d10d2008-03-28 05:38:54 -03001274 ret |= pvr2_issue_simple_cmd(hdw,FX2CMD_FWPOST1);
1275 ret |= pvr2_issue_simple_cmd(hdw,FX2CMD_MEMSEL | (1 << 8) | (0 << 16));
Mike Iselyd8554972006-06-26 20:58:46 -03001276
1277 if (ret) {
1278 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1279 "firmware2 upload prep failed, ret=%d",ret);
1280 release_firmware(fw_entry);
Mike Isely21684ba2008-04-21 03:49:33 -03001281 goto done;
Mike Iselyd8554972006-06-26 20:58:46 -03001282 }
1283
1284 /* Now send firmware */
1285
1286 fw_len = fw_entry->size;
1287
Mike Isely90060d32007-02-08 02:02:53 -03001288 if (fw_len % sizeof(u32)) {
Mike Iselyd8554972006-06-26 20:58:46 -03001289 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1290 "size of %s firmware"
Mike Isely48dc30a2007-03-03 10:13:05 -02001291 " must be a multiple of %zu bytes",
Mike Isely90060d32007-02-08 02:02:53 -03001292 fw_files[fwidx],sizeof(u32));
Mike Iselyd8554972006-06-26 20:58:46 -03001293 release_firmware(fw_entry);
Mike Isely21684ba2008-04-21 03:49:33 -03001294 ret = -EINVAL;
1295 goto done;
Mike Iselyd8554972006-06-26 20:58:46 -03001296 }
1297
1298 fw_ptr = kmalloc(FIRMWARE_CHUNK_SIZE, GFP_KERNEL);
1299 if (fw_ptr == NULL){
1300 release_firmware(fw_entry);
1301 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1302 "failed to allocate memory for firmware2 upload");
Mike Isely21684ba2008-04-21 03:49:33 -03001303 ret = -ENOMEM;
1304 goto done;
Mike Iselyd8554972006-06-26 20:58:46 -03001305 }
1306
1307 pipe = usb_sndbulkpipe(hdw->usb_dev, PVR2_FIRMWARE_ENDPOINT);
1308
Mike Isely90060d32007-02-08 02:02:53 -03001309 fw_done = 0;
1310 for (fw_done = 0; fw_done < fw_len;) {
1311 bcnt = fw_len - fw_done;
1312 if (bcnt > FIRMWARE_CHUNK_SIZE) bcnt = FIRMWARE_CHUNK_SIZE;
1313 memcpy(fw_ptr, fw_entry->data + fw_done, bcnt);
1314 /* Usbsnoop log shows that we must swap bytes... */
1315 for (icnt = 0; icnt < bcnt/4 ; icnt++)
1316 ((u32 *)fw_ptr)[icnt] =
1317 ___swab32(((u32 *)fw_ptr)[icnt]);
Mike Iselyd8554972006-06-26 20:58:46 -03001318
Mike Isely90060d32007-02-08 02:02:53 -03001319 ret |= usb_bulk_msg(hdw->usb_dev, pipe, fw_ptr,bcnt,
Mike Iselyd8554972006-06-26 20:58:46 -03001320 &actual_length, HZ);
Mike Isely90060d32007-02-08 02:02:53 -03001321 ret |= (actual_length != bcnt);
1322 if (ret) break;
1323 fw_done += bcnt;
Mike Iselyd8554972006-06-26 20:58:46 -03001324 }
1325
1326 trace_firmware("upload of %s : %i / %i ",
1327 fw_files[fwidx],fw_done,fw_len);
1328
1329 kfree(fw_ptr);
1330 release_firmware(fw_entry);
1331
1332 if (ret) {
1333 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1334 "firmware2 upload transfer failure");
Mike Isely21684ba2008-04-21 03:49:33 -03001335 goto done;
Mike Iselyd8554972006-06-26 20:58:46 -03001336 }
1337
1338 /* Finish upload */
1339
1340 ret |= pvr2_write_register(hdw, 0x9054, 0xffffffff); /*reset hw blocks*/
1341 ret |= pvr2_write_register(hdw, 0x9058, 0xffffffe8); /*VPU ctrl*/
Mike Isely1c9d10d2008-03-28 05:38:54 -03001342 ret |= pvr2_issue_simple_cmd(hdw,FX2CMD_MEMSEL | (1 << 8) | (0 << 16));
Mike Iselyd8554972006-06-26 20:58:46 -03001343
1344 if (ret) {
1345 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1346 "firmware2 upload post-proc failure");
Mike Iselyd8554972006-06-26 20:58:46 -03001347 }
Mike Isely21684ba2008-04-21 03:49:33 -03001348
1349 done:
Mike Isely1df59f02008-04-21 03:50:39 -03001350 if (hdw->hdw_desc->signal_routing_scheme ==
1351 PVR2_ROUTING_SCHEME_GOTVIEW) {
1352 /* Ensure that GPIO 11 is set to output for GOTVIEW
1353 hardware. */
1354 pvr2_hdw_gpio_chg_dir(hdw,(1 << 11),~0);
1355 }
Mike Iselyd8554972006-06-26 20:58:46 -03001356 return ret;
1357}
1358
1359
Mike Isely681c7392007-11-26 01:48:52 -03001360static const char *pvr2_get_state_name(unsigned int st)
Mike Iselyd8554972006-06-26 20:58:46 -03001361{
Mike Isely681c7392007-11-26 01:48:52 -03001362 if (st < ARRAY_SIZE(pvr2_state_names)) {
1363 return pvr2_state_names[st];
Mike Iselyd8554972006-06-26 20:58:46 -03001364 }
Mike Isely681c7392007-11-26 01:48:52 -03001365 return "???";
Mike Iselyd8554972006-06-26 20:58:46 -03001366}
1367
Mike Isely681c7392007-11-26 01:48:52 -03001368static int pvr2_decoder_enable(struct pvr2_hdw *hdw,int enablefl)
Mike Iselyd8554972006-06-26 20:58:46 -03001369{
Mike Isely681c7392007-11-26 01:48:52 -03001370 if (!hdw->decoder_ctrl) {
1371 if (!hdw->flag_decoder_missed) {
1372 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1373 "WARNING: No decoder present");
1374 hdw->flag_decoder_missed = !0;
1375 trace_stbit("flag_decoder_missed",
1376 hdw->flag_decoder_missed);
1377 }
1378 return -EIO;
Mike Iselyd8554972006-06-26 20:58:46 -03001379 }
Mike Isely681c7392007-11-26 01:48:52 -03001380 hdw->decoder_ctrl->enable(hdw->decoder_ctrl->ctxt,enablefl);
Mike Iselyd8554972006-06-26 20:58:46 -03001381 return 0;
1382}
1383
1384
Mike Isely681c7392007-11-26 01:48:52 -03001385void pvr2_hdw_set_decoder(struct pvr2_hdw *hdw,struct pvr2_decoder_ctrl *ptr)
1386{
1387 if (hdw->decoder_ctrl == ptr) return;
1388 hdw->decoder_ctrl = ptr;
1389 if (hdw->decoder_ctrl && hdw->flag_decoder_missed) {
1390 hdw->flag_decoder_missed = 0;
1391 trace_stbit("flag_decoder_missed",
1392 hdw->flag_decoder_missed);
1393 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1394 "Decoder has appeared");
1395 pvr2_hdw_state_sched(hdw);
1396 }
1397}
1398
1399
1400int pvr2_hdw_get_state(struct pvr2_hdw *hdw)
1401{
1402 return hdw->master_state;
1403}
1404
1405
1406static int pvr2_hdw_untrip_unlocked(struct pvr2_hdw *hdw)
1407{
1408 if (!hdw->flag_tripped) return 0;
1409 hdw->flag_tripped = 0;
1410 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1411 "Clearing driver error statuss");
1412 return !0;
1413}
1414
1415
1416int pvr2_hdw_untrip(struct pvr2_hdw *hdw)
1417{
1418 int fl;
1419 LOCK_TAKE(hdw->big_lock); do {
1420 fl = pvr2_hdw_untrip_unlocked(hdw);
1421 } while (0); LOCK_GIVE(hdw->big_lock);
1422 if (fl) pvr2_hdw_state_sched(hdw);
1423 return 0;
1424}
1425
1426
Mike Isely681c7392007-11-26 01:48:52 -03001427
1428
Mike Iselyd8554972006-06-26 20:58:46 -03001429int pvr2_hdw_get_streaming(struct pvr2_hdw *hdw)
1430{
Mike Isely681c7392007-11-26 01:48:52 -03001431 return hdw->state_pipeline_req != 0;
Mike Iselyd8554972006-06-26 20:58:46 -03001432}
1433
1434
1435int pvr2_hdw_set_streaming(struct pvr2_hdw *hdw,int enable_flag)
1436{
Mike Isely681c7392007-11-26 01:48:52 -03001437 int ret,st;
Mike Iselyd8554972006-06-26 20:58:46 -03001438 LOCK_TAKE(hdw->big_lock); do {
Mike Isely681c7392007-11-26 01:48:52 -03001439 pvr2_hdw_untrip_unlocked(hdw);
1440 if ((!enable_flag) != !(hdw->state_pipeline_req)) {
1441 hdw->state_pipeline_req = enable_flag != 0;
1442 pvr2_trace(PVR2_TRACE_START_STOP,
1443 "/*--TRACE_STREAM--*/ %s",
1444 enable_flag ? "enable" : "disable");
1445 }
1446 pvr2_hdw_state_sched(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03001447 } while (0); LOCK_GIVE(hdw->big_lock);
Mike Isely681c7392007-11-26 01:48:52 -03001448 if ((ret = pvr2_hdw_wait(hdw,0)) < 0) return ret;
1449 if (enable_flag) {
1450 while ((st = hdw->master_state) != PVR2_STATE_RUN) {
1451 if (st != PVR2_STATE_READY) return -EIO;
1452 if ((ret = pvr2_hdw_wait(hdw,st)) < 0) return ret;
1453 }
1454 }
Mike Iselyd8554972006-06-26 20:58:46 -03001455 return 0;
1456}
1457
1458
1459int pvr2_hdw_set_stream_type(struct pvr2_hdw *hdw,enum pvr2_config config)
1460{
Mike Isely681c7392007-11-26 01:48:52 -03001461 int fl;
Mike Iselyd8554972006-06-26 20:58:46 -03001462 LOCK_TAKE(hdw->big_lock);
Mike Isely681c7392007-11-26 01:48:52 -03001463 if ((fl = (hdw->desired_stream_type != config)) != 0) {
1464 hdw->desired_stream_type = config;
1465 hdw->state_pipeline_config = 0;
1466 trace_stbit("state_pipeline_config",
1467 hdw->state_pipeline_config);
1468 pvr2_hdw_state_sched(hdw);
1469 }
Mike Iselyd8554972006-06-26 20:58:46 -03001470 LOCK_GIVE(hdw->big_lock);
Mike Isely681c7392007-11-26 01:48:52 -03001471 if (fl) return 0;
1472 return pvr2_hdw_wait(hdw,0);
Mike Iselyd8554972006-06-26 20:58:46 -03001473}
1474
1475
1476static int get_default_tuner_type(struct pvr2_hdw *hdw)
1477{
1478 int unit_number = hdw->unit_number;
1479 int tp = -1;
1480 if ((unit_number >= 0) && (unit_number < PVR_NUM)) {
1481 tp = tuner[unit_number];
1482 }
1483 if (tp < 0) return -EINVAL;
1484 hdw->tuner_type = tp;
Mike Iselyaaf78842007-11-26 02:04:11 -03001485 hdw->tuner_updated = !0;
Mike Iselyd8554972006-06-26 20:58:46 -03001486 return 0;
1487}
1488
1489
1490static v4l2_std_id get_default_standard(struct pvr2_hdw *hdw)
1491{
1492 int unit_number = hdw->unit_number;
1493 int tp = 0;
1494 if ((unit_number >= 0) && (unit_number < PVR_NUM)) {
1495 tp = video_std[unit_number];
Mike Isely6a540252007-12-02 23:51:34 -03001496 if (tp) return tp;
Mike Iselyd8554972006-06-26 20:58:46 -03001497 }
Mike Isely6a540252007-12-02 23:51:34 -03001498 return 0;
Mike Iselyd8554972006-06-26 20:58:46 -03001499}
1500
1501
1502static unsigned int get_default_error_tolerance(struct pvr2_hdw *hdw)
1503{
1504 int unit_number = hdw->unit_number;
1505 int tp = 0;
1506 if ((unit_number >= 0) && (unit_number < PVR_NUM)) {
1507 tp = tolerance[unit_number];
1508 }
1509 return tp;
1510}
1511
1512
1513static int pvr2_hdw_check_firmware(struct pvr2_hdw *hdw)
1514{
1515 /* Try a harmless request to fetch the eeprom's address over
1516 endpoint 1. See what happens. Only the full FX2 image can
1517 respond to this. If this probe fails then likely the FX2
1518 firmware needs be loaded. */
1519 int result;
1520 LOCK_TAKE(hdw->ctl_lock); do {
Michael Krufky8d364362007-01-22 02:17:55 -03001521 hdw->cmd_buffer[0] = FX2CMD_GET_EEPROM_ADDR;
Mike Iselyd8554972006-06-26 20:58:46 -03001522 result = pvr2_send_request_ex(hdw,HZ*1,!0,
1523 hdw->cmd_buffer,1,
1524 hdw->cmd_buffer,1);
1525 if (result < 0) break;
1526 } while(0); LOCK_GIVE(hdw->ctl_lock);
1527 if (result) {
1528 pvr2_trace(PVR2_TRACE_INIT,
1529 "Probe of device endpoint 1 result status %d",
1530 result);
1531 } else {
1532 pvr2_trace(PVR2_TRACE_INIT,
1533 "Probe of device endpoint 1 succeeded");
1534 }
1535 return result == 0;
1536}
1537
Mike Isely9f66d4e2007-09-08 22:28:51 -03001538struct pvr2_std_hack {
1539 v4l2_std_id pat; /* Pattern to match */
1540 v4l2_std_id msk; /* Which bits we care about */
1541 v4l2_std_id std; /* What additional standards or default to set */
1542};
1543
1544/* This data structure labels specific combinations of standards from
1545 tveeprom that we'll try to recognize. If we recognize one, then assume
1546 a specified default standard to use. This is here because tveeprom only
1547 tells us about available standards not the intended default standard (if
1548 any) for the device in question. We guess the default based on what has
1549 been reported as available. Note that this is only for guessing a
1550 default - which can always be overridden explicitly - and if the user
1551 has otherwise named a default then that default will always be used in
1552 place of this table. */
Tobias Klauserebff0332008-04-22 14:45:45 -03001553static const struct pvr2_std_hack std_eeprom_maps[] = {
Mike Isely9f66d4e2007-09-08 22:28:51 -03001554 { /* PAL(B/G) */
1555 .pat = V4L2_STD_B|V4L2_STD_GH,
1556 .std = V4L2_STD_PAL_B|V4L2_STD_PAL_B1|V4L2_STD_PAL_G,
1557 },
1558 { /* NTSC(M) */
1559 .pat = V4L2_STD_MN,
1560 .std = V4L2_STD_NTSC_M,
1561 },
1562 { /* PAL(I) */
1563 .pat = V4L2_STD_PAL_I,
1564 .std = V4L2_STD_PAL_I,
1565 },
1566 { /* SECAM(L/L') */
1567 .pat = V4L2_STD_SECAM_L|V4L2_STD_SECAM_LC,
1568 .std = V4L2_STD_SECAM_L|V4L2_STD_SECAM_LC,
1569 },
1570 { /* PAL(D/D1/K) */
1571 .pat = V4L2_STD_DK,
Roel Kluinea2562d2007-12-02 23:04:57 -03001572 .std = V4L2_STD_PAL_D|V4L2_STD_PAL_D1|V4L2_STD_PAL_K,
Mike Isely9f66d4e2007-09-08 22:28:51 -03001573 },
1574};
1575
Mike Iselyd8554972006-06-26 20:58:46 -03001576static void pvr2_hdw_setup_std(struct pvr2_hdw *hdw)
1577{
1578 char buf[40];
1579 unsigned int bcnt;
Mike Isely3d290bd2007-12-03 01:47:12 -03001580 v4l2_std_id std1,std2,std3;
Mike Iselyd8554972006-06-26 20:58:46 -03001581
1582 std1 = get_default_standard(hdw);
Mike Isely3d290bd2007-12-03 01:47:12 -03001583 std3 = std1 ? 0 : hdw->hdw_desc->default_std_mask;
Mike Iselyd8554972006-06-26 20:58:46 -03001584
1585 bcnt = pvr2_std_id_to_str(buf,sizeof(buf),hdw->std_mask_eeprom);
Mike Isely56585382007-09-08 22:32:12 -03001586 pvr2_trace(PVR2_TRACE_STD,
Mike Isely56dcbfa2007-11-26 02:00:51 -03001587 "Supported video standard(s) reported available"
1588 " in hardware: %.*s",
Mike Iselyd8554972006-06-26 20:58:46 -03001589 bcnt,buf);
1590
1591 hdw->std_mask_avail = hdw->std_mask_eeprom;
1592
Mike Isely3d290bd2007-12-03 01:47:12 -03001593 std2 = (std1|std3) & ~hdw->std_mask_avail;
Mike Iselyd8554972006-06-26 20:58:46 -03001594 if (std2) {
1595 bcnt = pvr2_std_id_to_str(buf,sizeof(buf),std2);
Mike Isely56585382007-09-08 22:32:12 -03001596 pvr2_trace(PVR2_TRACE_STD,
Mike Iselyd8554972006-06-26 20:58:46 -03001597 "Expanding supported video standards"
1598 " to include: %.*s",
1599 bcnt,buf);
1600 hdw->std_mask_avail |= std2;
1601 }
1602
1603 pvr2_hdw_internal_set_std_avail(hdw);
1604
1605 if (std1) {
1606 bcnt = pvr2_std_id_to_str(buf,sizeof(buf),std1);
Mike Isely56585382007-09-08 22:32:12 -03001607 pvr2_trace(PVR2_TRACE_STD,
Mike Iselyd8554972006-06-26 20:58:46 -03001608 "Initial video standard forced to %.*s",
1609 bcnt,buf);
1610 hdw->std_mask_cur = std1;
1611 hdw->std_dirty = !0;
1612 pvr2_hdw_internal_find_stdenum(hdw);
1613 return;
1614 }
Mike Isely3d290bd2007-12-03 01:47:12 -03001615 if (std3) {
1616 bcnt = pvr2_std_id_to_str(buf,sizeof(buf),std3);
1617 pvr2_trace(PVR2_TRACE_STD,
1618 "Initial video standard"
1619 " (determined by device type): %.*s",bcnt,buf);
1620 hdw->std_mask_cur = std3;
1621 hdw->std_dirty = !0;
1622 pvr2_hdw_internal_find_stdenum(hdw);
1623 return;
1624 }
Mike Iselyd8554972006-06-26 20:58:46 -03001625
Mike Isely9f66d4e2007-09-08 22:28:51 -03001626 {
1627 unsigned int idx;
1628 for (idx = 0; idx < ARRAY_SIZE(std_eeprom_maps); idx++) {
1629 if (std_eeprom_maps[idx].msk ?
1630 ((std_eeprom_maps[idx].pat ^
1631 hdw->std_mask_eeprom) &
1632 std_eeprom_maps[idx].msk) :
1633 (std_eeprom_maps[idx].pat !=
1634 hdw->std_mask_eeprom)) continue;
1635 bcnt = pvr2_std_id_to_str(buf,sizeof(buf),
1636 std_eeprom_maps[idx].std);
Mike Isely56585382007-09-08 22:32:12 -03001637 pvr2_trace(PVR2_TRACE_STD,
Mike Isely9f66d4e2007-09-08 22:28:51 -03001638 "Initial video standard guessed as %.*s",
1639 bcnt,buf);
1640 hdw->std_mask_cur = std_eeprom_maps[idx].std;
1641 hdw->std_dirty = !0;
1642 pvr2_hdw_internal_find_stdenum(hdw);
1643 return;
1644 }
1645 }
1646
Mike Iselyd8554972006-06-26 20:58:46 -03001647 if (hdw->std_enum_cnt > 1) {
1648 // Autoselect the first listed standard
1649 hdw->std_enum_cur = 1;
1650 hdw->std_mask_cur = hdw->std_defs[hdw->std_enum_cur-1].id;
1651 hdw->std_dirty = !0;
Mike Isely56585382007-09-08 22:32:12 -03001652 pvr2_trace(PVR2_TRACE_STD,
Mike Iselyd8554972006-06-26 20:58:46 -03001653 "Initial video standard auto-selected to %s",
1654 hdw->std_defs[hdw->std_enum_cur-1].name);
1655 return;
1656 }
1657
Mike Isely0885ba12006-06-25 21:30:47 -03001658 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
Mike Iselyd8554972006-06-26 20:58:46 -03001659 "Unable to select a viable initial video standard");
1660}
1661
1662
1663static void pvr2_hdw_setup_low(struct pvr2_hdw *hdw)
1664{
1665 int ret;
1666 unsigned int idx;
1667 struct pvr2_ctrl *cptr;
1668 int reloadFl = 0;
Mike Isely989eb152007-11-26 01:53:12 -03001669 if (hdw->hdw_desc->fx2_firmware.cnt) {
Mike Isely1d643a32007-09-08 22:18:50 -03001670 if (!reloadFl) {
1671 reloadFl =
1672 (hdw->usb_intf->cur_altsetting->desc.bNumEndpoints
1673 == 0);
1674 if (reloadFl) {
1675 pvr2_trace(PVR2_TRACE_INIT,
1676 "USB endpoint config looks strange"
1677 "; possibly firmware needs to be"
1678 " loaded");
1679 }
1680 }
1681 if (!reloadFl) {
1682 reloadFl = !pvr2_hdw_check_firmware(hdw);
1683 if (reloadFl) {
1684 pvr2_trace(PVR2_TRACE_INIT,
1685 "Check for FX2 firmware failed"
1686 "; possibly firmware needs to be"
1687 " loaded");
1688 }
1689 }
Mike Iselyd8554972006-06-26 20:58:46 -03001690 if (reloadFl) {
Mike Isely1d643a32007-09-08 22:18:50 -03001691 if (pvr2_upload_firmware1(hdw) != 0) {
1692 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1693 "Failure uploading firmware1");
1694 }
1695 return;
Mike Iselyd8554972006-06-26 20:58:46 -03001696 }
1697 }
Mike Iselyd8554972006-06-26 20:58:46 -03001698 hdw->fw1_state = FW1_STATE_OK;
1699
1700 if (initusbreset) {
1701 pvr2_hdw_device_reset(hdw);
1702 }
1703 if (!pvr2_hdw_dev_ok(hdw)) return;
1704
Mike Isely989eb152007-11-26 01:53:12 -03001705 for (idx = 0; idx < hdw->hdw_desc->client_modules.cnt; idx++) {
1706 request_module(hdw->hdw_desc->client_modules.lst[idx]);
Mike Iselyd8554972006-06-26 20:58:46 -03001707 }
1708
Mike Isely989eb152007-11-26 01:53:12 -03001709 if (!hdw->hdw_desc->flag_no_powerup) {
Mike Isely1d643a32007-09-08 22:18:50 -03001710 pvr2_hdw_cmd_powerup(hdw);
1711 if (!pvr2_hdw_dev_ok(hdw)) return;
Mike Iselyd8554972006-06-26 20:58:46 -03001712 }
1713
1714 // This step MUST happen after the earlier powerup step.
1715 pvr2_i2c_core_init(hdw);
1716 if (!pvr2_hdw_dev_ok(hdw)) return;
1717
Mike Iselyc05c0462006-06-25 20:04:25 -03001718 for (idx = 0; idx < CTRLDEF_COUNT; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03001719 cptr = hdw->controls + idx;
1720 if (cptr->info->skip_init) continue;
1721 if (!cptr->info->set_value) continue;
1722 cptr->info->set_value(cptr,~0,cptr->info->default_value);
1723 }
1724
Mike Isely1bde0282006-12-27 23:30:13 -03001725 /* Set up special default values for the television and radio
1726 frequencies here. It's not really important what these defaults
1727 are, but I set them to something usable in the Chicago area just
1728 to make driver testing a little easier. */
1729
Michael Krufky5a4f5da62008-05-11 16:37:50 -03001730 hdw->freqValTelevision = default_tv_freq;
1731 hdw->freqValRadio = default_radio_freq;
Mike Isely1bde0282006-12-27 23:30:13 -03001732
Mike Iselyd8554972006-06-26 20:58:46 -03001733 // Do not use pvr2_reset_ctl_endpoints() here. It is not
1734 // thread-safe against the normal pvr2_send_request() mechanism.
1735 // (We should make it thread safe).
1736
Mike Iselyaaf78842007-11-26 02:04:11 -03001737 if (hdw->hdw_desc->flag_has_hauppauge_rom) {
1738 ret = pvr2_hdw_get_eeprom_addr(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03001739 if (!pvr2_hdw_dev_ok(hdw)) return;
Mike Iselyaaf78842007-11-26 02:04:11 -03001740 if (ret < 0) {
1741 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
1742 "Unable to determine location of eeprom,"
1743 " skipping");
1744 } else {
1745 hdw->eeprom_addr = ret;
1746 pvr2_eeprom_analyze(hdw);
1747 if (!pvr2_hdw_dev_ok(hdw)) return;
1748 }
1749 } else {
1750 hdw->tuner_type = hdw->hdw_desc->default_tuner_type;
1751 hdw->tuner_updated = !0;
1752 hdw->std_mask_eeprom = V4L2_STD_ALL;
Mike Iselyd8554972006-06-26 20:58:46 -03001753 }
1754
1755 pvr2_hdw_setup_std(hdw);
1756
1757 if (!get_default_tuner_type(hdw)) {
1758 pvr2_trace(PVR2_TRACE_INIT,
1759 "pvr2_hdw_setup: Tuner type overridden to %d",
1760 hdw->tuner_type);
1761 }
1762
Mike Iselyd8554972006-06-26 20:58:46 -03001763 pvr2_i2c_core_check_stale(hdw);
1764 hdw->tuner_updated = 0;
1765
1766 if (!pvr2_hdw_dev_ok(hdw)) return;
1767
Mike Isely1df59f02008-04-21 03:50:39 -03001768 if (hdw->hdw_desc->signal_routing_scheme ==
1769 PVR2_ROUTING_SCHEME_GOTVIEW) {
1770 /* Ensure that GPIO 11 is set to output for GOTVIEW
1771 hardware. */
1772 pvr2_hdw_gpio_chg_dir(hdw,(1 << 11),~0);
1773 }
1774
Mike Isely681c7392007-11-26 01:48:52 -03001775 pvr2_hdw_commit_setup(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03001776
1777 hdw->vid_stream = pvr2_stream_create();
1778 if (!pvr2_hdw_dev_ok(hdw)) return;
1779 pvr2_trace(PVR2_TRACE_INIT,
1780 "pvr2_hdw_setup: video stream is %p",hdw->vid_stream);
1781 if (hdw->vid_stream) {
1782 idx = get_default_error_tolerance(hdw);
1783 if (idx) {
1784 pvr2_trace(PVR2_TRACE_INIT,
1785 "pvr2_hdw_setup: video stream %p"
1786 " setting tolerance %u",
1787 hdw->vid_stream,idx);
1788 }
1789 pvr2_stream_setup(hdw->vid_stream,hdw->usb_dev,
1790 PVR2_VID_ENDPOINT,idx);
1791 }
1792
1793 if (!pvr2_hdw_dev_ok(hdw)) return;
1794
Mike Iselyd8554972006-06-26 20:58:46 -03001795 hdw->flag_init_ok = !0;
Mike Isely681c7392007-11-26 01:48:52 -03001796
1797 pvr2_hdw_state_sched(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03001798}
1799
1800
Mike Isely681c7392007-11-26 01:48:52 -03001801/* Set up the structure and attempt to put the device into a usable state.
1802 This can be a time-consuming operation, which is why it is not done
1803 internally as part of the create() step. */
1804static void pvr2_hdw_setup(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03001805{
1806 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_setup(hdw=%p) begin",hdw);
Mike Isely681c7392007-11-26 01:48:52 -03001807 do {
Mike Iselyd8554972006-06-26 20:58:46 -03001808 pvr2_hdw_setup_low(hdw);
1809 pvr2_trace(PVR2_TRACE_INIT,
1810 "pvr2_hdw_setup(hdw=%p) done, ok=%d init_ok=%d",
Mike Isely681c7392007-11-26 01:48:52 -03001811 hdw,pvr2_hdw_dev_ok(hdw),hdw->flag_init_ok);
Mike Iselyd8554972006-06-26 20:58:46 -03001812 if (pvr2_hdw_dev_ok(hdw)) {
Mike Isely681c7392007-11-26 01:48:52 -03001813 if (hdw->flag_init_ok) {
Mike Iselyd8554972006-06-26 20:58:46 -03001814 pvr2_trace(
1815 PVR2_TRACE_INFO,
1816 "Device initialization"
1817 " completed successfully.");
1818 break;
1819 }
1820 if (hdw->fw1_state == FW1_STATE_RELOAD) {
1821 pvr2_trace(
1822 PVR2_TRACE_INFO,
1823 "Device microcontroller firmware"
1824 " (re)loaded; it should now reset"
1825 " and reconnect.");
1826 break;
1827 }
1828 pvr2_trace(
1829 PVR2_TRACE_ERROR_LEGS,
1830 "Device initialization was not successful.");
1831 if (hdw->fw1_state == FW1_STATE_MISSING) {
1832 pvr2_trace(
1833 PVR2_TRACE_ERROR_LEGS,
1834 "Giving up since device"
1835 " microcontroller firmware"
1836 " appears to be missing.");
1837 break;
1838 }
1839 }
1840 if (procreload) {
1841 pvr2_trace(
1842 PVR2_TRACE_ERROR_LEGS,
1843 "Attempting pvrusb2 recovery by reloading"
1844 " primary firmware.");
1845 pvr2_trace(
1846 PVR2_TRACE_ERROR_LEGS,
1847 "If this works, device should disconnect"
1848 " and reconnect in a sane state.");
1849 hdw->fw1_state = FW1_STATE_UNKNOWN;
1850 pvr2_upload_firmware1(hdw);
1851 } else {
1852 pvr2_trace(
1853 PVR2_TRACE_ERROR_LEGS,
1854 "***WARNING*** pvrusb2 device hardware"
1855 " appears to be jammed"
1856 " and I can't clear it.");
1857 pvr2_trace(
1858 PVR2_TRACE_ERROR_LEGS,
1859 "You might need to power cycle"
1860 " the pvrusb2 device"
1861 " in order to recover.");
1862 }
Mike Isely681c7392007-11-26 01:48:52 -03001863 } while (0);
Mike Iselyd8554972006-06-26 20:58:46 -03001864 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_setup(hdw=%p) end",hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03001865}
1866
1867
Mike Iselyc4a88282008-04-22 14:45:44 -03001868/* Perform second stage initialization. Set callback pointer first so that
1869 we can avoid a possible initialization race (if the kernel thread runs
1870 before the callback has been set). */
Mike Isely794b1602008-04-22 14:45:45 -03001871int pvr2_hdw_initialize(struct pvr2_hdw *hdw,
1872 void (*callback_func)(void *),
1873 void *callback_data)
Mike Iselyc4a88282008-04-22 14:45:44 -03001874{
1875 LOCK_TAKE(hdw->big_lock); do {
Mike Isely97f26ff2008-04-07 02:22:43 -03001876 if (hdw->flag_disconnected) {
1877 /* Handle a race here: If we're already
1878 disconnected by this point, then give up. If we
1879 get past this then we'll remain connected for
1880 the duration of initialization since the entire
1881 initialization sequence is now protected by the
1882 big_lock. */
1883 break;
1884 }
Mike Iselyc4a88282008-04-22 14:45:44 -03001885 hdw->state_data = callback_data;
1886 hdw->state_func = callback_func;
Mike Isely97f26ff2008-04-07 02:22:43 -03001887 pvr2_hdw_setup(hdw);
Mike Iselyc4a88282008-04-22 14:45:44 -03001888 } while (0); LOCK_GIVE(hdw->big_lock);
Mike Isely794b1602008-04-22 14:45:45 -03001889 return hdw->flag_init_ok;
Mike Iselyc4a88282008-04-22 14:45:44 -03001890}
1891
1892
1893/* Create, set up, and return a structure for interacting with the
1894 underlying hardware. */
Mike Iselyd8554972006-06-26 20:58:46 -03001895struct pvr2_hdw *pvr2_hdw_create(struct usb_interface *intf,
1896 const struct usb_device_id *devid)
1897{
Mike Isely7fb20fa2008-04-22 14:45:37 -03001898 unsigned int idx,cnt1,cnt2,m;
Mike Iselyd8554972006-06-26 20:58:46 -03001899 struct pvr2_hdw *hdw;
Mike Iselyd8554972006-06-26 20:58:46 -03001900 int valid_std_mask;
1901 struct pvr2_ctrl *cptr;
Mike Isely989eb152007-11-26 01:53:12 -03001902 const struct pvr2_device_desc *hdw_desc;
Mike Iselyd8554972006-06-26 20:58:46 -03001903 __u8 ifnum;
Mike Iselyb30d2442006-06-25 20:05:01 -03001904 struct v4l2_queryctrl qctrl;
1905 struct pvr2_ctl_info *ciptr;
Mike Iselyd8554972006-06-26 20:58:46 -03001906
Mike Iselyd130fa82007-12-08 17:20:06 -03001907 hdw_desc = (const struct pvr2_device_desc *)(devid->driver_info);
Mike Iselyd8554972006-06-26 20:58:46 -03001908
Mike Iselyca545f72007-01-20 00:37:11 -03001909 hdw = kzalloc(sizeof(*hdw),GFP_KERNEL);
Mike Iselyd8554972006-06-26 20:58:46 -03001910 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_create: hdw=%p, type \"%s\"",
Mike Isely989eb152007-11-26 01:53:12 -03001911 hdw,hdw_desc->description);
Mike Iselyd8554972006-06-26 20:58:46 -03001912 if (!hdw) goto fail;
Mike Isely681c7392007-11-26 01:48:52 -03001913
1914 init_timer(&hdw->quiescent_timer);
1915 hdw->quiescent_timer.data = (unsigned long)hdw;
1916 hdw->quiescent_timer.function = pvr2_hdw_quiescent_timeout;
1917
1918 init_timer(&hdw->encoder_wait_timer);
1919 hdw->encoder_wait_timer.data = (unsigned long)hdw;
1920 hdw->encoder_wait_timer.function = pvr2_hdw_encoder_wait_timeout;
1921
Mike Iselyd913d632008-04-06 04:04:35 -03001922 init_timer(&hdw->encoder_run_timer);
1923 hdw->encoder_run_timer.data = (unsigned long)hdw;
1924 hdw->encoder_run_timer.function = pvr2_hdw_encoder_run_timeout;
1925
Mike Isely681c7392007-11-26 01:48:52 -03001926 hdw->master_state = PVR2_STATE_DEAD;
1927
1928 init_waitqueue_head(&hdw->state_wait_data);
1929
Mike Isely18103c52007-01-20 00:09:47 -03001930 hdw->tuner_signal_stale = !0;
Mike Iselyb30d2442006-06-25 20:05:01 -03001931 cx2341x_fill_defaults(&hdw->enc_ctl_state);
Mike Iselyd8554972006-06-26 20:58:46 -03001932
Mike Isely7fb20fa2008-04-22 14:45:37 -03001933 /* Calculate which inputs are OK */
1934 m = 0;
1935 if (hdw_desc->flag_has_analogtuner) m |= 1 << PVR2_CVAL_INPUT_TV;
Mike Iselye8f5bac2008-04-22 14:45:40 -03001936 if (hdw_desc->digital_control_scheme != PVR2_DIGITAL_SCHEME_NONE) {
1937 m |= 1 << PVR2_CVAL_INPUT_DTV;
1938 }
Mike Isely7fb20fa2008-04-22 14:45:37 -03001939 if (hdw_desc->flag_has_svideo) m |= 1 << PVR2_CVAL_INPUT_SVIDEO;
1940 if (hdw_desc->flag_has_composite) m |= 1 << PVR2_CVAL_INPUT_COMPOSITE;
1941 if (hdw_desc->flag_has_fmradio) m |= 1 << PVR2_CVAL_INPUT_RADIO;
1942 hdw->input_avail_mask = m;
Mike Isely1cb03b72008-04-21 03:47:43 -03001943 hdw->input_allowed_mask = hdw->input_avail_mask;
Mike Isely7fb20fa2008-04-22 14:45:37 -03001944
Mike Isely62433e32008-04-22 14:45:40 -03001945 /* If not a hybrid device, pathway_state never changes. So
1946 initialize it here to what it should forever be. */
1947 if (!(hdw->input_avail_mask & (1 << PVR2_CVAL_INPUT_DTV))) {
1948 hdw->pathway_state = PVR2_PATHWAY_ANALOG;
1949 } else if (!(hdw->input_avail_mask & (1 << PVR2_CVAL_INPUT_TV))) {
1950 hdw->pathway_state = PVR2_PATHWAY_DIGITAL;
1951 }
1952
Mike Iselyc05c0462006-06-25 20:04:25 -03001953 hdw->control_cnt = CTRLDEF_COUNT;
Mike Iselyb30d2442006-06-25 20:05:01 -03001954 hdw->control_cnt += MPEGDEF_COUNT;
Mike Iselyca545f72007-01-20 00:37:11 -03001955 hdw->controls = kzalloc(sizeof(struct pvr2_ctrl) * hdw->control_cnt,
Mike Iselyd8554972006-06-26 20:58:46 -03001956 GFP_KERNEL);
1957 if (!hdw->controls) goto fail;
Mike Isely989eb152007-11-26 01:53:12 -03001958 hdw->hdw_desc = hdw_desc;
Mike Iselyc05c0462006-06-25 20:04:25 -03001959 for (idx = 0; idx < hdw->control_cnt; idx++) {
1960 cptr = hdw->controls + idx;
1961 cptr->hdw = hdw;
1962 }
Mike Iselyd8554972006-06-26 20:58:46 -03001963 for (idx = 0; idx < 32; idx++) {
1964 hdw->std_mask_ptrs[idx] = hdw->std_mask_names[idx];
1965 }
Mike Iselyc05c0462006-06-25 20:04:25 -03001966 for (idx = 0; idx < CTRLDEF_COUNT; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03001967 cptr = hdw->controls + idx;
Mike Iselyd8554972006-06-26 20:58:46 -03001968 cptr->info = control_defs+idx;
1969 }
Mike Iselydbc40a02008-04-22 14:45:39 -03001970
1971 /* Ensure that default input choice is a valid one. */
1972 m = hdw->input_avail_mask;
1973 if (m) for (idx = 0; idx < (sizeof(m) << 3); idx++) {
1974 if (!((1 << idx) & m)) continue;
1975 hdw->input_val = idx;
1976 break;
1977 }
1978
Mike Iselyb30d2442006-06-25 20:05:01 -03001979 /* Define and configure additional controls from cx2341x module. */
Mike Iselyca545f72007-01-20 00:37:11 -03001980 hdw->mpeg_ctrl_info = kzalloc(
Mike Iselyb30d2442006-06-25 20:05:01 -03001981 sizeof(*(hdw->mpeg_ctrl_info)) * MPEGDEF_COUNT, GFP_KERNEL);
1982 if (!hdw->mpeg_ctrl_info) goto fail;
Mike Iselyb30d2442006-06-25 20:05:01 -03001983 for (idx = 0; idx < MPEGDEF_COUNT; idx++) {
1984 cptr = hdw->controls + idx + CTRLDEF_COUNT;
1985 ciptr = &(hdw->mpeg_ctrl_info[idx].info);
1986 ciptr->desc = hdw->mpeg_ctrl_info[idx].desc;
1987 ciptr->name = mpeg_ids[idx].strid;
1988 ciptr->v4l_id = mpeg_ids[idx].id;
1989 ciptr->skip_init = !0;
1990 ciptr->get_value = ctrl_cx2341x_get;
1991 ciptr->get_v4lflags = ctrl_cx2341x_getv4lflags;
1992 ciptr->is_dirty = ctrl_cx2341x_is_dirty;
1993 if (!idx) ciptr->clear_dirty = ctrl_cx2341x_clear_dirty;
1994 qctrl.id = ciptr->v4l_id;
1995 cx2341x_ctrl_query(&hdw->enc_ctl_state,&qctrl);
1996 if (!(qctrl.flags & V4L2_CTRL_FLAG_READ_ONLY)) {
1997 ciptr->set_value = ctrl_cx2341x_set;
1998 }
1999 strncpy(hdw->mpeg_ctrl_info[idx].desc,qctrl.name,
2000 PVR2_CTLD_INFO_DESC_SIZE);
2001 hdw->mpeg_ctrl_info[idx].desc[PVR2_CTLD_INFO_DESC_SIZE-1] = 0;
2002 ciptr->default_value = qctrl.default_value;
2003 switch (qctrl.type) {
2004 default:
2005 case V4L2_CTRL_TYPE_INTEGER:
2006 ciptr->type = pvr2_ctl_int;
2007 ciptr->def.type_int.min_value = qctrl.minimum;
2008 ciptr->def.type_int.max_value = qctrl.maximum;
2009 break;
2010 case V4L2_CTRL_TYPE_BOOLEAN:
2011 ciptr->type = pvr2_ctl_bool;
2012 break;
2013 case V4L2_CTRL_TYPE_MENU:
2014 ciptr->type = pvr2_ctl_enum;
2015 ciptr->def.type_enum.value_names =
Hans Verkuile0e31cd2008-06-22 12:03:28 -03002016 cx2341x_ctrl_get_menu(&hdw->enc_ctl_state,
2017 ciptr->v4l_id);
Mike Iselyb30d2442006-06-25 20:05:01 -03002018 for (cnt1 = 0;
2019 ciptr->def.type_enum.value_names[cnt1] != NULL;
2020 cnt1++) { }
2021 ciptr->def.type_enum.count = cnt1;
2022 break;
2023 }
2024 cptr->info = ciptr;
2025 }
Mike Iselyd8554972006-06-26 20:58:46 -03002026
2027 // Initialize video standard enum dynamic control
2028 cptr = pvr2_hdw_get_ctrl_by_id(hdw,PVR2_CID_STDENUM);
2029 if (cptr) {
2030 memcpy(&hdw->std_info_enum,cptr->info,
2031 sizeof(hdw->std_info_enum));
2032 cptr->info = &hdw->std_info_enum;
2033
2034 }
2035 // Initialize control data regarding video standard masks
2036 valid_std_mask = pvr2_std_get_usable();
2037 for (idx = 0; idx < 32; idx++) {
2038 if (!(valid_std_mask & (1 << idx))) continue;
2039 cnt1 = pvr2_std_id_to_str(
2040 hdw->std_mask_names[idx],
2041 sizeof(hdw->std_mask_names[idx])-1,
2042 1 << idx);
2043 hdw->std_mask_names[idx][cnt1] = 0;
2044 }
2045 cptr = pvr2_hdw_get_ctrl_by_id(hdw,PVR2_CID_STDAVAIL);
2046 if (cptr) {
2047 memcpy(&hdw->std_info_avail,cptr->info,
2048 sizeof(hdw->std_info_avail));
2049 cptr->info = &hdw->std_info_avail;
2050 hdw->std_info_avail.def.type_bitmask.bit_names =
2051 hdw->std_mask_ptrs;
2052 hdw->std_info_avail.def.type_bitmask.valid_bits =
2053 valid_std_mask;
2054 }
2055 cptr = pvr2_hdw_get_ctrl_by_id(hdw,PVR2_CID_STDCUR);
2056 if (cptr) {
2057 memcpy(&hdw->std_info_cur,cptr->info,
2058 sizeof(hdw->std_info_cur));
2059 cptr->info = &hdw->std_info_cur;
2060 hdw->std_info_cur.def.type_bitmask.bit_names =
2061 hdw->std_mask_ptrs;
2062 hdw->std_info_avail.def.type_bitmask.valid_bits =
2063 valid_std_mask;
2064 }
2065
2066 hdw->eeprom_addr = -1;
2067 hdw->unit_number = -1;
Mike Isely80793842006-12-27 23:12:28 -03002068 hdw->v4l_minor_number_video = -1;
2069 hdw->v4l_minor_number_vbi = -1;
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002070 hdw->v4l_minor_number_radio = -1;
Mike Iselyd8554972006-06-26 20:58:46 -03002071 hdw->ctl_write_buffer = kmalloc(PVR2_CTL_BUFFSIZE,GFP_KERNEL);
2072 if (!hdw->ctl_write_buffer) goto fail;
2073 hdw->ctl_read_buffer = kmalloc(PVR2_CTL_BUFFSIZE,GFP_KERNEL);
2074 if (!hdw->ctl_read_buffer) goto fail;
2075 hdw->ctl_write_urb = usb_alloc_urb(0,GFP_KERNEL);
2076 if (!hdw->ctl_write_urb) goto fail;
2077 hdw->ctl_read_urb = usb_alloc_urb(0,GFP_KERNEL);
2078 if (!hdw->ctl_read_urb) goto fail;
2079
Matthias Kaehlcke8df0c872007-04-28 20:00:18 -03002080 mutex_lock(&pvr2_unit_mtx); do {
Mike Iselyd8554972006-06-26 20:58:46 -03002081 for (idx = 0; idx < PVR_NUM; idx++) {
2082 if (unit_pointers[idx]) continue;
2083 hdw->unit_number = idx;
2084 unit_pointers[idx] = hdw;
2085 break;
2086 }
Matthias Kaehlcke8df0c872007-04-28 20:00:18 -03002087 } while (0); mutex_unlock(&pvr2_unit_mtx);
Mike Iselyd8554972006-06-26 20:58:46 -03002088
2089 cnt1 = 0;
2090 cnt2 = scnprintf(hdw->name+cnt1,sizeof(hdw->name)-cnt1,"pvrusb2");
2091 cnt1 += cnt2;
2092 if (hdw->unit_number >= 0) {
2093 cnt2 = scnprintf(hdw->name+cnt1,sizeof(hdw->name)-cnt1,"_%c",
2094 ('a' + hdw->unit_number));
2095 cnt1 += cnt2;
2096 }
2097 if (cnt1 >= sizeof(hdw->name)) cnt1 = sizeof(hdw->name)-1;
2098 hdw->name[cnt1] = 0;
2099
Mike Isely681c7392007-11-26 01:48:52 -03002100 hdw->workqueue = create_singlethread_workqueue(hdw->name);
2101 INIT_WORK(&hdw->workpoll,pvr2_hdw_worker_poll);
2102 INIT_WORK(&hdw->worki2csync,pvr2_hdw_worker_i2c);
Mike Isely681c7392007-11-26 01:48:52 -03002103
Mike Iselyd8554972006-06-26 20:58:46 -03002104 pvr2_trace(PVR2_TRACE_INIT,"Driver unit number is %d, name is %s",
2105 hdw->unit_number,hdw->name);
2106
2107 hdw->tuner_type = -1;
2108 hdw->flag_ok = !0;
Mike Iselyd8554972006-06-26 20:58:46 -03002109
2110 hdw->usb_intf = intf;
2111 hdw->usb_dev = interface_to_usbdev(intf);
2112
Mike Isely31a18542007-04-08 01:11:47 -03002113 scnprintf(hdw->bus_info,sizeof(hdw->bus_info),
2114 "usb %s address %d",
2115 hdw->usb_dev->dev.bus_id,
2116 hdw->usb_dev->devnum);
2117
Mike Iselyd8554972006-06-26 20:58:46 -03002118 ifnum = hdw->usb_intf->cur_altsetting->desc.bInterfaceNumber;
2119 usb_set_interface(hdw->usb_dev,ifnum,0);
2120
2121 mutex_init(&hdw->ctl_lock_mutex);
2122 mutex_init(&hdw->big_lock_mutex);
2123
2124 return hdw;
2125 fail:
2126 if (hdw) {
Mike Isely681c7392007-11-26 01:48:52 -03002127 del_timer_sync(&hdw->quiescent_timer);
Mike Iselyd913d632008-04-06 04:04:35 -03002128 del_timer_sync(&hdw->encoder_run_timer);
Mike Isely681c7392007-11-26 01:48:52 -03002129 del_timer_sync(&hdw->encoder_wait_timer);
2130 if (hdw->workqueue) {
2131 flush_workqueue(hdw->workqueue);
2132 destroy_workqueue(hdw->workqueue);
2133 hdw->workqueue = NULL;
2134 }
Mariusz Kozlowski5e55d2c2006-11-08 15:34:31 +01002135 usb_free_urb(hdw->ctl_read_urb);
2136 usb_free_urb(hdw->ctl_write_urb);
Mariusz Kozlowski22071a42007-01-07 10:33:39 -03002137 kfree(hdw->ctl_read_buffer);
2138 kfree(hdw->ctl_write_buffer);
2139 kfree(hdw->controls);
2140 kfree(hdw->mpeg_ctrl_info);
Mike Isely681c7392007-11-26 01:48:52 -03002141 kfree(hdw->std_defs);
2142 kfree(hdw->std_enum_names);
Mike Iselyd8554972006-06-26 20:58:46 -03002143 kfree(hdw);
2144 }
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002145 return NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002146}
2147
2148
2149/* Remove _all_ associations between this driver and the underlying USB
2150 layer. */
Adrian Bunk07e337e2006-06-30 11:30:20 -03002151static void pvr2_hdw_remove_usb_stuff(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03002152{
2153 if (hdw->flag_disconnected) return;
2154 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_remove_usb_stuff: hdw=%p",hdw);
2155 if (hdw->ctl_read_urb) {
2156 usb_kill_urb(hdw->ctl_read_urb);
2157 usb_free_urb(hdw->ctl_read_urb);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002158 hdw->ctl_read_urb = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002159 }
2160 if (hdw->ctl_write_urb) {
2161 usb_kill_urb(hdw->ctl_write_urb);
2162 usb_free_urb(hdw->ctl_write_urb);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002163 hdw->ctl_write_urb = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002164 }
2165 if (hdw->ctl_read_buffer) {
2166 kfree(hdw->ctl_read_buffer);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002167 hdw->ctl_read_buffer = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002168 }
2169 if (hdw->ctl_write_buffer) {
2170 kfree(hdw->ctl_write_buffer);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002171 hdw->ctl_write_buffer = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002172 }
Mike Iselyd8554972006-06-26 20:58:46 -03002173 hdw->flag_disconnected = !0;
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002174 hdw->usb_dev = NULL;
2175 hdw->usb_intf = NULL;
Mike Isely681c7392007-11-26 01:48:52 -03002176 pvr2_hdw_render_useless(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03002177}
2178
2179
2180/* Destroy hardware interaction structure */
2181void pvr2_hdw_destroy(struct pvr2_hdw *hdw)
2182{
Mike Isely401c27c2007-09-08 22:11:46 -03002183 if (!hdw) return;
Mike Iselyd8554972006-06-26 20:58:46 -03002184 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_destroy: hdw=%p",hdw);
Mike Isely681c7392007-11-26 01:48:52 -03002185 if (hdw->workqueue) {
2186 flush_workqueue(hdw->workqueue);
2187 destroy_workqueue(hdw->workqueue);
2188 hdw->workqueue = NULL;
2189 }
Mike Isely8f591002008-04-22 14:45:45 -03002190 del_timer_sync(&hdw->quiescent_timer);
Mike Iselyd913d632008-04-06 04:04:35 -03002191 del_timer_sync(&hdw->encoder_run_timer);
Mike Isely8f591002008-04-22 14:45:45 -03002192 del_timer_sync(&hdw->encoder_wait_timer);
Mike Iselyd8554972006-06-26 20:58:46 -03002193 if (hdw->fw_buffer) {
2194 kfree(hdw->fw_buffer);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002195 hdw->fw_buffer = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002196 }
2197 if (hdw->vid_stream) {
2198 pvr2_stream_destroy(hdw->vid_stream);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002199 hdw->vid_stream = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002200 }
Mike Iselyd8554972006-06-26 20:58:46 -03002201 if (hdw->decoder_ctrl) {
2202 hdw->decoder_ctrl->detach(hdw->decoder_ctrl->ctxt);
2203 }
2204 pvr2_i2c_core_done(hdw);
2205 pvr2_hdw_remove_usb_stuff(hdw);
Matthias Kaehlcke8df0c872007-04-28 20:00:18 -03002206 mutex_lock(&pvr2_unit_mtx); do {
Mike Iselyd8554972006-06-26 20:58:46 -03002207 if ((hdw->unit_number >= 0) &&
2208 (hdw->unit_number < PVR_NUM) &&
2209 (unit_pointers[hdw->unit_number] == hdw)) {
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002210 unit_pointers[hdw->unit_number] = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002211 }
Matthias Kaehlcke8df0c872007-04-28 20:00:18 -03002212 } while (0); mutex_unlock(&pvr2_unit_mtx);
Mariusz Kozlowski22071a42007-01-07 10:33:39 -03002213 kfree(hdw->controls);
2214 kfree(hdw->mpeg_ctrl_info);
2215 kfree(hdw->std_defs);
2216 kfree(hdw->std_enum_names);
Mike Iselyd8554972006-06-26 20:58:46 -03002217 kfree(hdw);
2218}
2219
2220
Mike Iselyd8554972006-06-26 20:58:46 -03002221int pvr2_hdw_dev_ok(struct pvr2_hdw *hdw)
2222{
2223 return (hdw && hdw->flag_ok);
2224}
2225
2226
2227/* Called when hardware has been unplugged */
2228void pvr2_hdw_disconnect(struct pvr2_hdw *hdw)
2229{
2230 pvr2_trace(PVR2_TRACE_INIT,"pvr2_hdw_disconnect(hdw=%p)",hdw);
2231 LOCK_TAKE(hdw->big_lock);
2232 LOCK_TAKE(hdw->ctl_lock);
2233 pvr2_hdw_remove_usb_stuff(hdw);
2234 LOCK_GIVE(hdw->ctl_lock);
2235 LOCK_GIVE(hdw->big_lock);
2236}
2237
2238
2239// Attempt to autoselect an appropriate value for std_enum_cur given
2240// whatever is currently in std_mask_cur
Adrian Bunk07e337e2006-06-30 11:30:20 -03002241static void pvr2_hdw_internal_find_stdenum(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03002242{
2243 unsigned int idx;
2244 for (idx = 1; idx < hdw->std_enum_cnt; idx++) {
2245 if (hdw->std_defs[idx-1].id == hdw->std_mask_cur) {
2246 hdw->std_enum_cur = idx;
2247 return;
2248 }
2249 }
2250 hdw->std_enum_cur = 0;
2251}
2252
2253
2254// Calculate correct set of enumerated standards based on currently known
2255// set of available standards bits.
Adrian Bunk07e337e2006-06-30 11:30:20 -03002256static void pvr2_hdw_internal_set_std_avail(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03002257{
2258 struct v4l2_standard *newstd;
2259 unsigned int std_cnt;
2260 unsigned int idx;
2261
2262 newstd = pvr2_std_create_enum(&std_cnt,hdw->std_mask_avail);
2263
2264 if (hdw->std_defs) {
2265 kfree(hdw->std_defs);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002266 hdw->std_defs = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002267 }
2268 hdw->std_enum_cnt = 0;
2269 if (hdw->std_enum_names) {
2270 kfree(hdw->std_enum_names);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002271 hdw->std_enum_names = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002272 }
2273
2274 if (!std_cnt) {
2275 pvr2_trace(
2276 PVR2_TRACE_ERROR_LEGS,
2277 "WARNING: Failed to identify any viable standards");
2278 }
2279 hdw->std_enum_names = kmalloc(sizeof(char *)*(std_cnt+1),GFP_KERNEL);
2280 hdw->std_enum_names[0] = "none";
2281 for (idx = 0; idx < std_cnt; idx++) {
2282 hdw->std_enum_names[idx+1] =
2283 newstd[idx].name;
2284 }
2285 // Set up the dynamic control for this standard
2286 hdw->std_info_enum.def.type_enum.value_names = hdw->std_enum_names;
2287 hdw->std_info_enum.def.type_enum.count = std_cnt+1;
2288 hdw->std_defs = newstd;
2289 hdw->std_enum_cnt = std_cnt+1;
2290 hdw->std_enum_cur = 0;
2291 hdw->std_info_cur.def.type_bitmask.valid_bits = hdw->std_mask_avail;
2292}
2293
2294
2295int pvr2_hdw_get_stdenum_value(struct pvr2_hdw *hdw,
2296 struct v4l2_standard *std,
2297 unsigned int idx)
2298{
2299 int ret = -EINVAL;
2300 if (!idx) return ret;
2301 LOCK_TAKE(hdw->big_lock); do {
2302 if (idx >= hdw->std_enum_cnt) break;
2303 idx--;
2304 memcpy(std,hdw->std_defs+idx,sizeof(*std));
2305 ret = 0;
2306 } while (0); LOCK_GIVE(hdw->big_lock);
2307 return ret;
2308}
2309
2310
2311/* Get the number of defined controls */
2312unsigned int pvr2_hdw_get_ctrl_count(struct pvr2_hdw *hdw)
2313{
Mike Iselyc05c0462006-06-25 20:04:25 -03002314 return hdw->control_cnt;
Mike Iselyd8554972006-06-26 20:58:46 -03002315}
2316
2317
2318/* Retrieve a control handle given its index (0..count-1) */
2319struct pvr2_ctrl *pvr2_hdw_get_ctrl_by_index(struct pvr2_hdw *hdw,
2320 unsigned int idx)
2321{
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002322 if (idx >= hdw->control_cnt) return NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002323 return hdw->controls + idx;
2324}
2325
2326
2327/* Retrieve a control handle given its index (0..count-1) */
2328struct pvr2_ctrl *pvr2_hdw_get_ctrl_by_id(struct pvr2_hdw *hdw,
2329 unsigned int ctl_id)
2330{
2331 struct pvr2_ctrl *cptr;
2332 unsigned int idx;
2333 int i;
2334
2335 /* This could be made a lot more efficient, but for now... */
Mike Iselyc05c0462006-06-25 20:04:25 -03002336 for (idx = 0; idx < hdw->control_cnt; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03002337 cptr = hdw->controls + idx;
2338 i = cptr->info->internal_id;
2339 if (i && (i == ctl_id)) return cptr;
2340 }
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002341 return NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002342}
2343
2344
Mike Iselya761f432006-06-25 20:04:44 -03002345/* Given a V4L ID, retrieve the control structure associated with it. */
Mike Iselyd8554972006-06-26 20:58:46 -03002346struct pvr2_ctrl *pvr2_hdw_get_ctrl_v4l(struct pvr2_hdw *hdw,unsigned int ctl_id)
2347{
2348 struct pvr2_ctrl *cptr;
2349 unsigned int idx;
2350 int i;
2351
2352 /* This could be made a lot more efficient, but for now... */
Mike Iselyc05c0462006-06-25 20:04:25 -03002353 for (idx = 0; idx < hdw->control_cnt; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03002354 cptr = hdw->controls + idx;
2355 i = cptr->info->v4l_id;
2356 if (i && (i == ctl_id)) return cptr;
2357 }
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002358 return NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002359}
2360
2361
Mike Iselya761f432006-06-25 20:04:44 -03002362/* Given a V4L ID for its immediate predecessor, retrieve the control
2363 structure associated with it. */
2364struct pvr2_ctrl *pvr2_hdw_get_ctrl_nextv4l(struct pvr2_hdw *hdw,
2365 unsigned int ctl_id)
2366{
2367 struct pvr2_ctrl *cptr,*cp2;
2368 unsigned int idx;
2369 int i;
2370
2371 /* This could be made a lot more efficient, but for now... */
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002372 cp2 = NULL;
Mike Iselya761f432006-06-25 20:04:44 -03002373 for (idx = 0; idx < hdw->control_cnt; idx++) {
2374 cptr = hdw->controls + idx;
2375 i = cptr->info->v4l_id;
2376 if (!i) continue;
2377 if (i <= ctl_id) continue;
2378 if (cp2 && (cp2->info->v4l_id < i)) continue;
2379 cp2 = cptr;
2380 }
2381 return cp2;
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002382 return NULL;
Mike Iselya761f432006-06-25 20:04:44 -03002383}
2384
2385
Mike Iselyd8554972006-06-26 20:58:46 -03002386static const char *get_ctrl_typename(enum pvr2_ctl_type tp)
2387{
2388 switch (tp) {
2389 case pvr2_ctl_int: return "integer";
2390 case pvr2_ctl_enum: return "enum";
Mike Isely33213962006-06-25 20:04:40 -03002391 case pvr2_ctl_bool: return "boolean";
Mike Iselyd8554972006-06-26 20:58:46 -03002392 case pvr2_ctl_bitmask: return "bitmask";
2393 }
2394 return "";
2395}
2396
2397
Mike Isely681c7392007-11-26 01:48:52 -03002398/* Figure out if we need to commit control changes. If so, mark internal
2399 state flags to indicate this fact and return true. Otherwise do nothing
2400 else and return false. */
2401static int pvr2_hdw_commit_setup(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03002402{
Mike Iselyd8554972006-06-26 20:58:46 -03002403 unsigned int idx;
2404 struct pvr2_ctrl *cptr;
2405 int value;
2406 int commit_flag = 0;
2407 char buf[100];
2408 unsigned int bcnt,ccnt;
2409
Mike Iselyc05c0462006-06-25 20:04:25 -03002410 for (idx = 0; idx < hdw->control_cnt; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03002411 cptr = hdw->controls + idx;
Al Viro5fa12472008-03-29 03:07:38 +00002412 if (!cptr->info->is_dirty) continue;
Mike Iselyd8554972006-06-26 20:58:46 -03002413 if (!cptr->info->is_dirty(cptr)) continue;
Mike Iselyfe23a282007-01-20 00:10:55 -03002414 commit_flag = !0;
Mike Iselyd8554972006-06-26 20:58:46 -03002415
Mike Iselyfe23a282007-01-20 00:10:55 -03002416 if (!(pvrusb2_debug & PVR2_TRACE_CTL)) continue;
Mike Iselyd8554972006-06-26 20:58:46 -03002417 bcnt = scnprintf(buf,sizeof(buf),"\"%s\" <-- ",
2418 cptr->info->name);
2419 value = 0;
2420 cptr->info->get_value(cptr,&value);
2421 pvr2_ctrl_value_to_sym_internal(cptr,~0,value,
2422 buf+bcnt,
2423 sizeof(buf)-bcnt,&ccnt);
2424 bcnt += ccnt;
2425 bcnt += scnprintf(buf+bcnt,sizeof(buf)-bcnt," <%s>",
2426 get_ctrl_typename(cptr->info->type));
2427 pvr2_trace(PVR2_TRACE_CTL,
2428 "/*--TRACE_COMMIT--*/ %.*s",
2429 bcnt,buf);
2430 }
2431
2432 if (!commit_flag) {
2433 /* Nothing has changed */
2434 return 0;
2435 }
2436
Mike Isely681c7392007-11-26 01:48:52 -03002437 hdw->state_pipeline_config = 0;
2438 trace_stbit("state_pipeline_config",hdw->state_pipeline_config);
2439 pvr2_hdw_state_sched(hdw);
2440
2441 return !0;
2442}
2443
2444
2445/* Perform all operations needed to commit all control changes. This must
2446 be performed in synchronization with the pipeline state and is thus
2447 expected to be called as part of the driver's worker thread. Return
2448 true if commit successful, otherwise return false to indicate that
2449 commit isn't possible at this time. */
2450static int pvr2_hdw_commit_execute(struct pvr2_hdw *hdw)
2451{
2452 unsigned int idx;
2453 struct pvr2_ctrl *cptr;
2454 int disruptive_change;
2455
Mike Iselyab062fe2008-06-30 03:32:35 -03002456 /* Handle some required side effects when the video standard is
2457 changed.... */
Mike Iselyd8554972006-06-26 20:58:46 -03002458 if (hdw->std_dirty) {
2459 /* Rewrite the vertical resolution to be appropriate to the
2460 video standard that has been selected. */
2461 int nvres;
2462 if (hdw->std_mask_cur & V4L2_STD_525_60) {
2463 nvres = 480;
2464 } else {
2465 nvres = 576;
2466 }
2467 if (nvres != hdw->res_ver_val) {
2468 hdw->res_ver_val = nvres;
2469 hdw->res_ver_dirty = !0;
2470 }
Mike Iselyd8554972006-06-26 20:58:46 -03002471 }
2472
Mike Isely38d9a2c2008-03-28 05:30:48 -03002473 if (hdw->input_dirty && hdw->state_pathway_ok &&
Mike Isely62433e32008-04-22 14:45:40 -03002474 (((hdw->input_val == PVR2_CVAL_INPUT_DTV) ?
2475 PVR2_PATHWAY_DIGITAL : PVR2_PATHWAY_ANALOG) !=
2476 hdw->pathway_state)) {
2477 /* Change of mode being asked for... */
2478 hdw->state_pathway_ok = 0;
Mike Iselye9db1ff2008-04-22 14:45:41 -03002479 trace_stbit("state_pathway_ok",hdw->state_pathway_ok);
Mike Isely62433e32008-04-22 14:45:40 -03002480 }
2481 if (!hdw->state_pathway_ok) {
2482 /* Can't commit anything until pathway is ok. */
2483 return 0;
2484 }
Mike Isely681c7392007-11-26 01:48:52 -03002485 /* If any of the below has changed, then we can't do the update
2486 while the pipeline is running. Pipeline must be paused first
2487 and decoder -> encoder connection be made quiescent before we
2488 can proceed. */
2489 disruptive_change =
2490 (hdw->std_dirty ||
2491 hdw->enc_unsafe_stale ||
2492 hdw->srate_dirty ||
2493 hdw->res_ver_dirty ||
2494 hdw->res_hor_dirty ||
2495 hdw->input_dirty ||
2496 (hdw->active_stream_type != hdw->desired_stream_type));
2497 if (disruptive_change && !hdw->state_pipeline_idle) {
2498 /* Pipeline is not idle; we can't proceed. Arrange to
2499 cause pipeline to stop so that we can try this again
2500 later.... */
2501 hdw->state_pipeline_pause = !0;
2502 return 0;
Mike Iselyd8554972006-06-26 20:58:46 -03002503 }
2504
Mike Iselyb30d2442006-06-25 20:05:01 -03002505 if (hdw->srate_dirty) {
2506 /* Write new sample rate into control structure since
2507 * the master copy is stale. We must track srate
2508 * separate from the mpeg control structure because
2509 * other logic also uses this value. */
2510 struct v4l2_ext_controls cs;
2511 struct v4l2_ext_control c1;
2512 memset(&cs,0,sizeof(cs));
2513 memset(&c1,0,sizeof(c1));
2514 cs.controls = &c1;
2515 cs.count = 1;
2516 c1.id = V4L2_CID_MPEG_AUDIO_SAMPLING_FREQ;
2517 c1.value = hdw->srate_val;
Hans Verkuil01f1e442007-08-21 18:32:42 -03002518 cx2341x_ext_ctrls(&hdw->enc_ctl_state, 0, &cs,VIDIOC_S_EXT_CTRLS);
Mike Iselyb30d2442006-06-25 20:05:01 -03002519 }
Mike Iselyc05c0462006-06-25 20:04:25 -03002520
Mike Iselyd8554972006-06-26 20:58:46 -03002521 /* Scan i2c core at this point - before we clear all the dirty
2522 bits. Various parts of the i2c core will notice dirty bits as
2523 appropriate and arrange to broadcast or directly send updates to
2524 the client drivers in order to keep everything in sync */
2525 pvr2_i2c_core_check_stale(hdw);
2526
Mike Iselyc05c0462006-06-25 20:04:25 -03002527 for (idx = 0; idx < hdw->control_cnt; idx++) {
Mike Iselyd8554972006-06-26 20:58:46 -03002528 cptr = hdw->controls + idx;
2529 if (!cptr->info->clear_dirty) continue;
2530 cptr->info->clear_dirty(cptr);
2531 }
2532
Mike Isely681c7392007-11-26 01:48:52 -03002533 if (hdw->active_stream_type != hdw->desired_stream_type) {
2534 /* Handle any side effects of stream config here */
2535 hdw->active_stream_type = hdw->desired_stream_type;
2536 }
2537
Mike Isely1df59f02008-04-21 03:50:39 -03002538 if (hdw->hdw_desc->signal_routing_scheme ==
2539 PVR2_ROUTING_SCHEME_GOTVIEW) {
2540 u32 b;
2541 /* Handle GOTVIEW audio switching */
2542 pvr2_hdw_gpio_get_out(hdw,&b);
2543 if (hdw->input_val == PVR2_CVAL_INPUT_RADIO) {
2544 /* Set GPIO 11 */
2545 pvr2_hdw_gpio_chg_out(hdw,(1 << 11),~0);
2546 } else {
2547 /* Clear GPIO 11 */
2548 pvr2_hdw_gpio_chg_out(hdw,(1 << 11),0);
2549 }
2550 }
2551
Mike Iselyd8554972006-06-26 20:58:46 -03002552 /* Now execute i2c core update */
2553 pvr2_i2c_core_sync(hdw);
2554
Mike Isely62433e32008-04-22 14:45:40 -03002555 if ((hdw->pathway_state == PVR2_PATHWAY_ANALOG) &&
2556 hdw->state_encoder_run) {
2557 /* If encoder isn't running or it can't be touched, then
2558 this will get worked out later when we start the
2559 encoder. */
Mike Isely681c7392007-11-26 01:48:52 -03002560 if (pvr2_encoder_adjust(hdw) < 0) return !0;
2561 }
Mike Iselyd8554972006-06-26 20:58:46 -03002562
Mike Isely681c7392007-11-26 01:48:52 -03002563 hdw->state_pipeline_config = !0;
2564 trace_stbit("state_pipeline_config",hdw->state_pipeline_config);
2565 return !0;
Mike Iselyd8554972006-06-26 20:58:46 -03002566}
2567
2568
2569int pvr2_hdw_commit_ctl(struct pvr2_hdw *hdw)
2570{
Mike Isely681c7392007-11-26 01:48:52 -03002571 int fl;
2572 LOCK_TAKE(hdw->big_lock);
2573 fl = pvr2_hdw_commit_setup(hdw);
2574 LOCK_GIVE(hdw->big_lock);
2575 if (!fl) return 0;
2576 return pvr2_hdw_wait(hdw,0);
Mike Iselyd8554972006-06-26 20:58:46 -03002577}
2578
2579
Mike Isely681c7392007-11-26 01:48:52 -03002580static void pvr2_hdw_worker_i2c(struct work_struct *work)
Mike Iselyd8554972006-06-26 20:58:46 -03002581{
Mike Isely681c7392007-11-26 01:48:52 -03002582 struct pvr2_hdw *hdw = container_of(work,struct pvr2_hdw,worki2csync);
Mike Iselyd8554972006-06-26 20:58:46 -03002583 LOCK_TAKE(hdw->big_lock); do {
2584 pvr2_i2c_core_sync(hdw);
2585 } while (0); LOCK_GIVE(hdw->big_lock);
2586}
2587
2588
Mike Isely681c7392007-11-26 01:48:52 -03002589static void pvr2_hdw_worker_poll(struct work_struct *work)
Mike Iselyd8554972006-06-26 20:58:46 -03002590{
Mike Isely681c7392007-11-26 01:48:52 -03002591 int fl = 0;
2592 struct pvr2_hdw *hdw = container_of(work,struct pvr2_hdw,workpoll);
Mike Iselyd8554972006-06-26 20:58:46 -03002593 LOCK_TAKE(hdw->big_lock); do {
Mike Isely681c7392007-11-26 01:48:52 -03002594 fl = pvr2_hdw_state_eval(hdw);
2595 } while (0); LOCK_GIVE(hdw->big_lock);
2596 if (fl && hdw->state_func) {
2597 hdw->state_func(hdw->state_data);
2598 }
2599}
2600
2601
Mike Isely681c7392007-11-26 01:48:52 -03002602static int pvr2_hdw_wait(struct pvr2_hdw *hdw,int state)
Mike Iselyd8554972006-06-26 20:58:46 -03002603{
Mike Isely681c7392007-11-26 01:48:52 -03002604 return wait_event_interruptible(
2605 hdw->state_wait_data,
2606 (hdw->state_stale == 0) &&
2607 (!state || (hdw->master_state != state)));
Mike Iselyd8554972006-06-26 20:58:46 -03002608}
2609
Mike Isely681c7392007-11-26 01:48:52 -03002610
Mike Iselyd8554972006-06-26 20:58:46 -03002611/* Return name for this driver instance */
2612const char *pvr2_hdw_get_driver_name(struct pvr2_hdw *hdw)
2613{
2614 return hdw->name;
2615}
2616
2617
Mike Isely78a47102007-11-26 01:58:20 -03002618const char *pvr2_hdw_get_desc(struct pvr2_hdw *hdw)
2619{
2620 return hdw->hdw_desc->description;
2621}
2622
2623
2624const char *pvr2_hdw_get_type(struct pvr2_hdw *hdw)
2625{
2626 return hdw->hdw_desc->shortname;
2627}
2628
2629
Mike Iselyd8554972006-06-26 20:58:46 -03002630int pvr2_hdw_is_hsm(struct pvr2_hdw *hdw)
2631{
2632 int result;
2633 LOCK_TAKE(hdw->ctl_lock); do {
Michael Krufky8d364362007-01-22 02:17:55 -03002634 hdw->cmd_buffer[0] = FX2CMD_GET_USB_SPEED;
Mike Iselyd8554972006-06-26 20:58:46 -03002635 result = pvr2_send_request(hdw,
2636 hdw->cmd_buffer,1,
2637 hdw->cmd_buffer,1);
2638 if (result < 0) break;
2639 result = (hdw->cmd_buffer[0] != 0);
2640 } while(0); LOCK_GIVE(hdw->ctl_lock);
2641 return result;
2642}
2643
2644
Mike Isely18103c52007-01-20 00:09:47 -03002645/* Execute poll of tuner status */
2646void pvr2_hdw_execute_tuner_poll(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03002647{
Mike Iselyd8554972006-06-26 20:58:46 -03002648 LOCK_TAKE(hdw->big_lock); do {
Mike Isely18103c52007-01-20 00:09:47 -03002649 pvr2_i2c_core_status_poll(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03002650 } while (0); LOCK_GIVE(hdw->big_lock);
Mike Isely18103c52007-01-20 00:09:47 -03002651}
2652
2653
2654/* Return information about the tuner */
2655int pvr2_hdw_get_tuner_status(struct pvr2_hdw *hdw,struct v4l2_tuner *vtp)
2656{
2657 LOCK_TAKE(hdw->big_lock); do {
2658 if (hdw->tuner_signal_stale) {
2659 pvr2_i2c_core_status_poll(hdw);
2660 }
2661 memcpy(vtp,&hdw->tuner_signal_info,sizeof(struct v4l2_tuner));
2662 } while (0); LOCK_GIVE(hdw->big_lock);
2663 return 0;
Mike Iselyd8554972006-06-26 20:58:46 -03002664}
2665
2666
2667/* Get handle to video output stream */
2668struct pvr2_stream *pvr2_hdw_get_video_stream(struct pvr2_hdw *hp)
2669{
2670 return hp->vid_stream;
2671}
2672
2673
2674void pvr2_hdw_trigger_module_log(struct pvr2_hdw *hdw)
2675{
Mike Isely4f1a3e52006-06-25 20:04:31 -03002676 int nr = pvr2_hdw_get_unit_number(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03002677 LOCK_TAKE(hdw->big_lock); do {
2678 hdw->log_requested = !0;
Mike Isely4f1a3e52006-06-25 20:04:31 -03002679 printk(KERN_INFO "pvrusb2: ================= START STATUS CARD #%d =================\n", nr);
Mike Iselyd8554972006-06-26 20:58:46 -03002680 pvr2_i2c_core_check_stale(hdw);
2681 hdw->log_requested = 0;
2682 pvr2_i2c_core_sync(hdw);
Mike Iselyb30d2442006-06-25 20:05:01 -03002683 pvr2_trace(PVR2_TRACE_INFO,"cx2341x config:");
Hans Verkuil99eb44f2006-06-26 18:24:05 -03002684 cx2341x_log_status(&hdw->enc_ctl_state, "pvrusb2");
Mike Isely681c7392007-11-26 01:48:52 -03002685 pvr2_hdw_state_log_state(hdw);
Mike Isely4f1a3e52006-06-25 20:04:31 -03002686 printk(KERN_INFO "pvrusb2: ================== END STATUS CARD #%d ==================\n", nr);
Mike Iselyd8554972006-06-26 20:58:46 -03002687 } while (0); LOCK_GIVE(hdw->big_lock);
2688}
2689
Mike Isely4db666c2007-09-08 22:16:27 -03002690
2691/* Grab EEPROM contents, needed for direct method. */
2692#define EEPROM_SIZE 8192
2693#define trace_eeprom(...) pvr2_trace(PVR2_TRACE_EEPROM,__VA_ARGS__)
2694static u8 *pvr2_full_eeprom_fetch(struct pvr2_hdw *hdw)
2695{
2696 struct i2c_msg msg[2];
2697 u8 *eeprom;
2698 u8 iadd[2];
2699 u8 addr;
2700 u16 eepromSize;
2701 unsigned int offs;
2702 int ret;
2703 int mode16 = 0;
2704 unsigned pcnt,tcnt;
2705 eeprom = kmalloc(EEPROM_SIZE,GFP_KERNEL);
2706 if (!eeprom) {
2707 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
2708 "Failed to allocate memory"
2709 " required to read eeprom");
2710 return NULL;
2711 }
2712
2713 trace_eeprom("Value for eeprom addr from controller was 0x%x",
2714 hdw->eeprom_addr);
2715 addr = hdw->eeprom_addr;
2716 /* Seems that if the high bit is set, then the *real* eeprom
2717 address is shifted right now bit position (noticed this in
2718 newer PVR USB2 hardware) */
2719 if (addr & 0x80) addr >>= 1;
2720
2721 /* FX2 documentation states that a 16bit-addressed eeprom is
2722 expected if the I2C address is an odd number (yeah, this is
2723 strange but it's what they do) */
2724 mode16 = (addr & 1);
2725 eepromSize = (mode16 ? EEPROM_SIZE : 256);
2726 trace_eeprom("Examining %d byte eeprom at location 0x%x"
2727 " using %d bit addressing",eepromSize,addr,
2728 mode16 ? 16 : 8);
2729
2730 msg[0].addr = addr;
2731 msg[0].flags = 0;
2732 msg[0].len = mode16 ? 2 : 1;
2733 msg[0].buf = iadd;
2734 msg[1].addr = addr;
2735 msg[1].flags = I2C_M_RD;
2736
2737 /* We have to do the actual eeprom data fetch ourselves, because
2738 (1) we're only fetching part of the eeprom, and (2) if we were
2739 getting the whole thing our I2C driver can't grab it in one
2740 pass - which is what tveeprom is otherwise going to attempt */
2741 memset(eeprom,0,EEPROM_SIZE);
2742 for (tcnt = 0; tcnt < EEPROM_SIZE; tcnt += pcnt) {
2743 pcnt = 16;
2744 if (pcnt + tcnt > EEPROM_SIZE) pcnt = EEPROM_SIZE-tcnt;
2745 offs = tcnt + (eepromSize - EEPROM_SIZE);
2746 if (mode16) {
2747 iadd[0] = offs >> 8;
2748 iadd[1] = offs;
2749 } else {
2750 iadd[0] = offs;
2751 }
2752 msg[1].len = pcnt;
2753 msg[1].buf = eeprom+tcnt;
2754 if ((ret = i2c_transfer(&hdw->i2c_adap,
2755 msg,ARRAY_SIZE(msg))) != 2) {
2756 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
2757 "eeprom fetch set offs err=%d",ret);
2758 kfree(eeprom);
2759 return NULL;
2760 }
2761 }
2762 return eeprom;
2763}
2764
2765
2766void pvr2_hdw_cpufw_set_enabled(struct pvr2_hdw *hdw,
2767 int prom_flag,
2768 int enable_flag)
Mike Iselyd8554972006-06-26 20:58:46 -03002769{
2770 int ret;
2771 u16 address;
2772 unsigned int pipe;
2773 LOCK_TAKE(hdw->big_lock); do {
Al Viro5fa12472008-03-29 03:07:38 +00002774 if ((hdw->fw_buffer == NULL) == !enable_flag) break;
Mike Iselyd8554972006-06-26 20:58:46 -03002775
2776 if (!enable_flag) {
2777 pvr2_trace(PVR2_TRACE_FIRMWARE,
2778 "Cleaning up after CPU firmware fetch");
2779 kfree(hdw->fw_buffer);
Mike Iselya0fd1cb2006-06-30 11:35:28 -03002780 hdw->fw_buffer = NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002781 hdw->fw_size = 0;
Mike Isely4db666c2007-09-08 22:16:27 -03002782 if (hdw->fw_cpu_flag) {
2783 /* Now release the CPU. It will disconnect
2784 and reconnect later. */
2785 pvr2_hdw_cpureset_assert(hdw,0);
2786 }
Mike Iselyd8554972006-06-26 20:58:46 -03002787 break;
2788 }
2789
Mike Isely4db666c2007-09-08 22:16:27 -03002790 hdw->fw_cpu_flag = (prom_flag == 0);
2791 if (hdw->fw_cpu_flag) {
2792 pvr2_trace(PVR2_TRACE_FIRMWARE,
2793 "Preparing to suck out CPU firmware");
2794 hdw->fw_size = 0x2000;
2795 hdw->fw_buffer = kzalloc(hdw->fw_size,GFP_KERNEL);
2796 if (!hdw->fw_buffer) {
2797 hdw->fw_size = 0;
2798 break;
2799 }
2800
2801 /* We have to hold the CPU during firmware upload. */
2802 pvr2_hdw_cpureset_assert(hdw,1);
2803
2804 /* download the firmware from address 0000-1fff in 2048
2805 (=0x800) bytes chunk. */
2806
2807 pvr2_trace(PVR2_TRACE_FIRMWARE,
2808 "Grabbing CPU firmware");
2809 pipe = usb_rcvctrlpipe(hdw->usb_dev, 0);
2810 for(address = 0; address < hdw->fw_size;
2811 address += 0x800) {
2812 ret = usb_control_msg(hdw->usb_dev,pipe,
2813 0xa0,0xc0,
2814 address,0,
2815 hdw->fw_buffer+address,
2816 0x800,HZ);
2817 if (ret < 0) break;
2818 }
2819
2820 pvr2_trace(PVR2_TRACE_FIRMWARE,
2821 "Done grabbing CPU firmware");
2822 } else {
2823 pvr2_trace(PVR2_TRACE_FIRMWARE,
2824 "Sucking down EEPROM contents");
2825 hdw->fw_buffer = pvr2_full_eeprom_fetch(hdw);
2826 if (!hdw->fw_buffer) {
2827 pvr2_trace(PVR2_TRACE_FIRMWARE,
2828 "EEPROM content suck failed.");
2829 break;
2830 }
2831 hdw->fw_size = EEPROM_SIZE;
2832 pvr2_trace(PVR2_TRACE_FIRMWARE,
2833 "Done sucking down EEPROM contents");
Mike Iselyd8554972006-06-26 20:58:46 -03002834 }
2835
Mike Iselyd8554972006-06-26 20:58:46 -03002836 } while (0); LOCK_GIVE(hdw->big_lock);
2837}
2838
2839
2840/* Return true if we're in a mode for retrieval CPU firmware */
2841int pvr2_hdw_cpufw_get_enabled(struct pvr2_hdw *hdw)
2842{
Al Viro5fa12472008-03-29 03:07:38 +00002843 return hdw->fw_buffer != NULL;
Mike Iselyd8554972006-06-26 20:58:46 -03002844}
2845
2846
2847int pvr2_hdw_cpufw_get(struct pvr2_hdw *hdw,unsigned int offs,
2848 char *buf,unsigned int cnt)
2849{
2850 int ret = -EINVAL;
2851 LOCK_TAKE(hdw->big_lock); do {
2852 if (!buf) break;
2853 if (!cnt) break;
2854
2855 if (!hdw->fw_buffer) {
2856 ret = -EIO;
2857 break;
2858 }
2859
2860 if (offs >= hdw->fw_size) {
2861 pvr2_trace(PVR2_TRACE_FIRMWARE,
2862 "Read firmware data offs=%d EOF",
2863 offs);
2864 ret = 0;
2865 break;
2866 }
2867
2868 if (offs + cnt > hdw->fw_size) cnt = hdw->fw_size - offs;
2869
2870 memcpy(buf,hdw->fw_buffer+offs,cnt);
2871
2872 pvr2_trace(PVR2_TRACE_FIRMWARE,
2873 "Read firmware data offs=%d cnt=%d",
2874 offs,cnt);
2875 ret = cnt;
2876 } while (0); LOCK_GIVE(hdw->big_lock);
2877
2878 return ret;
2879}
2880
2881
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002882int pvr2_hdw_v4l_get_minor_number(struct pvr2_hdw *hdw,
Mike Isely80793842006-12-27 23:12:28 -03002883 enum pvr2_v4l_type index)
Mike Iselyd8554972006-06-26 20:58:46 -03002884{
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002885 switch (index) {
Mike Isely80793842006-12-27 23:12:28 -03002886 case pvr2_v4l_type_video: return hdw->v4l_minor_number_video;
2887 case pvr2_v4l_type_vbi: return hdw->v4l_minor_number_vbi;
2888 case pvr2_v4l_type_radio: return hdw->v4l_minor_number_radio;
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002889 default: return -1;
2890 }
Mike Iselyd8554972006-06-26 20:58:46 -03002891}
2892
2893
Pantelis Koukousoulas2fdf3d92006-12-27 23:07:58 -03002894/* Store a v4l minor device number */
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002895void pvr2_hdw_v4l_store_minor_number(struct pvr2_hdw *hdw,
Mike Isely80793842006-12-27 23:12:28 -03002896 enum pvr2_v4l_type index,int v)
Mike Iselyd8554972006-06-26 20:58:46 -03002897{
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002898 switch (index) {
Mike Isely80793842006-12-27 23:12:28 -03002899 case pvr2_v4l_type_video: hdw->v4l_minor_number_video = v;
2900 case pvr2_v4l_type_vbi: hdw->v4l_minor_number_vbi = v;
2901 case pvr2_v4l_type_radio: hdw->v4l_minor_number_radio = v;
Mike Iselyfd5a75f2006-12-27 23:11:22 -03002902 default: break;
2903 }
Mike Iselyd8554972006-06-26 20:58:46 -03002904}
2905
2906
David Howells7d12e782006-10-05 14:55:46 +01002907static void pvr2_ctl_write_complete(struct urb *urb)
Mike Iselyd8554972006-06-26 20:58:46 -03002908{
2909 struct pvr2_hdw *hdw = urb->context;
2910 hdw->ctl_write_pend_flag = 0;
2911 if (hdw->ctl_read_pend_flag) return;
2912 complete(&hdw->ctl_done);
2913}
2914
2915
David Howells7d12e782006-10-05 14:55:46 +01002916static void pvr2_ctl_read_complete(struct urb *urb)
Mike Iselyd8554972006-06-26 20:58:46 -03002917{
2918 struct pvr2_hdw *hdw = urb->context;
2919 hdw->ctl_read_pend_flag = 0;
2920 if (hdw->ctl_write_pend_flag) return;
2921 complete(&hdw->ctl_done);
2922}
2923
2924
2925static void pvr2_ctl_timeout(unsigned long data)
2926{
2927 struct pvr2_hdw *hdw = (struct pvr2_hdw *)data;
2928 if (hdw->ctl_write_pend_flag || hdw->ctl_read_pend_flag) {
2929 hdw->ctl_timeout_flag = !0;
Mariusz Kozlowski5e55d2c2006-11-08 15:34:31 +01002930 if (hdw->ctl_write_pend_flag)
Mike Iselyd8554972006-06-26 20:58:46 -03002931 usb_unlink_urb(hdw->ctl_write_urb);
Mariusz Kozlowski5e55d2c2006-11-08 15:34:31 +01002932 if (hdw->ctl_read_pend_flag)
Mike Iselyd8554972006-06-26 20:58:46 -03002933 usb_unlink_urb(hdw->ctl_read_urb);
Mike Iselyd8554972006-06-26 20:58:46 -03002934 }
2935}
2936
2937
Mike Iselye61b6fc2006-07-18 22:42:18 -03002938/* Issue a command and get a response from the device. This extended
2939 version includes a probe flag (which if set means that device errors
2940 should not be logged or treated as fatal) and a timeout in jiffies.
2941 This can be used to non-lethally probe the health of endpoint 1. */
Adrian Bunk07e337e2006-06-30 11:30:20 -03002942static int pvr2_send_request_ex(struct pvr2_hdw *hdw,
2943 unsigned int timeout,int probe_fl,
2944 void *write_data,unsigned int write_len,
2945 void *read_data,unsigned int read_len)
Mike Iselyd8554972006-06-26 20:58:46 -03002946{
2947 unsigned int idx;
2948 int status = 0;
2949 struct timer_list timer;
2950 if (!hdw->ctl_lock_held) {
2951 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
2952 "Attempted to execute control transfer"
2953 " without lock!!");
2954 return -EDEADLK;
2955 }
Mike Isely681c7392007-11-26 01:48:52 -03002956 if (!hdw->flag_ok && !probe_fl) {
Mike Iselyd8554972006-06-26 20:58:46 -03002957 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
2958 "Attempted to execute control transfer"
2959 " when device not ok");
2960 return -EIO;
2961 }
2962 if (!(hdw->ctl_read_urb && hdw->ctl_write_urb)) {
2963 if (!probe_fl) {
2964 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
2965 "Attempted to execute control transfer"
2966 " when USB is disconnected");
2967 }
2968 return -ENOTTY;
2969 }
2970
2971 /* Ensure that we have sane parameters */
2972 if (!write_data) write_len = 0;
2973 if (!read_data) read_len = 0;
2974 if (write_len > PVR2_CTL_BUFFSIZE) {
2975 pvr2_trace(
2976 PVR2_TRACE_ERROR_LEGS,
2977 "Attempted to execute %d byte"
2978 " control-write transfer (limit=%d)",
2979 write_len,PVR2_CTL_BUFFSIZE);
2980 return -EINVAL;
2981 }
2982 if (read_len > PVR2_CTL_BUFFSIZE) {
2983 pvr2_trace(
2984 PVR2_TRACE_ERROR_LEGS,
2985 "Attempted to execute %d byte"
2986 " control-read transfer (limit=%d)",
2987 write_len,PVR2_CTL_BUFFSIZE);
2988 return -EINVAL;
2989 }
2990 if ((!write_len) && (!read_len)) {
2991 pvr2_trace(
2992 PVR2_TRACE_ERROR_LEGS,
2993 "Attempted to execute null control transfer?");
2994 return -EINVAL;
2995 }
2996
2997
2998 hdw->cmd_debug_state = 1;
2999 if (write_len) {
3000 hdw->cmd_debug_code = ((unsigned char *)write_data)[0];
3001 } else {
3002 hdw->cmd_debug_code = 0;
3003 }
3004 hdw->cmd_debug_write_len = write_len;
3005 hdw->cmd_debug_read_len = read_len;
3006
3007 /* Initialize common stuff */
3008 init_completion(&hdw->ctl_done);
3009 hdw->ctl_timeout_flag = 0;
3010 hdw->ctl_write_pend_flag = 0;
3011 hdw->ctl_read_pend_flag = 0;
3012 init_timer(&timer);
3013 timer.expires = jiffies + timeout;
3014 timer.data = (unsigned long)hdw;
3015 timer.function = pvr2_ctl_timeout;
3016
3017 if (write_len) {
3018 hdw->cmd_debug_state = 2;
3019 /* Transfer write data to internal buffer */
3020 for (idx = 0; idx < write_len; idx++) {
3021 hdw->ctl_write_buffer[idx] =
3022 ((unsigned char *)write_data)[idx];
3023 }
3024 /* Initiate a write request */
3025 usb_fill_bulk_urb(hdw->ctl_write_urb,
3026 hdw->usb_dev,
3027 usb_sndbulkpipe(hdw->usb_dev,
3028 PVR2_CTL_WRITE_ENDPOINT),
3029 hdw->ctl_write_buffer,
3030 write_len,
3031 pvr2_ctl_write_complete,
3032 hdw);
3033 hdw->ctl_write_urb->actual_length = 0;
3034 hdw->ctl_write_pend_flag = !0;
3035 status = usb_submit_urb(hdw->ctl_write_urb,GFP_KERNEL);
3036 if (status < 0) {
3037 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3038 "Failed to submit write-control"
3039 " URB status=%d",status);
3040 hdw->ctl_write_pend_flag = 0;
3041 goto done;
3042 }
3043 }
3044
3045 if (read_len) {
3046 hdw->cmd_debug_state = 3;
3047 memset(hdw->ctl_read_buffer,0x43,read_len);
3048 /* Initiate a read request */
3049 usb_fill_bulk_urb(hdw->ctl_read_urb,
3050 hdw->usb_dev,
3051 usb_rcvbulkpipe(hdw->usb_dev,
3052 PVR2_CTL_READ_ENDPOINT),
3053 hdw->ctl_read_buffer,
3054 read_len,
3055 pvr2_ctl_read_complete,
3056 hdw);
3057 hdw->ctl_read_urb->actual_length = 0;
3058 hdw->ctl_read_pend_flag = !0;
3059 status = usb_submit_urb(hdw->ctl_read_urb,GFP_KERNEL);
3060 if (status < 0) {
3061 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3062 "Failed to submit read-control"
3063 " URB status=%d",status);
3064 hdw->ctl_read_pend_flag = 0;
3065 goto done;
3066 }
3067 }
3068
3069 /* Start timer */
3070 add_timer(&timer);
3071
3072 /* Now wait for all I/O to complete */
3073 hdw->cmd_debug_state = 4;
3074 while (hdw->ctl_write_pend_flag || hdw->ctl_read_pend_flag) {
3075 wait_for_completion(&hdw->ctl_done);
3076 }
3077 hdw->cmd_debug_state = 5;
3078
3079 /* Stop timer */
3080 del_timer_sync(&timer);
3081
3082 hdw->cmd_debug_state = 6;
3083 status = 0;
3084
3085 if (hdw->ctl_timeout_flag) {
3086 status = -ETIMEDOUT;
3087 if (!probe_fl) {
3088 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3089 "Timed out control-write");
3090 }
3091 goto done;
3092 }
3093
3094 if (write_len) {
3095 /* Validate results of write request */
3096 if ((hdw->ctl_write_urb->status != 0) &&
3097 (hdw->ctl_write_urb->status != -ENOENT) &&
3098 (hdw->ctl_write_urb->status != -ESHUTDOWN) &&
3099 (hdw->ctl_write_urb->status != -ECONNRESET)) {
3100 /* USB subsystem is reporting some kind of failure
3101 on the write */
3102 status = hdw->ctl_write_urb->status;
3103 if (!probe_fl) {
3104 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3105 "control-write URB failure,"
3106 " status=%d",
3107 status);
3108 }
3109 goto done;
3110 }
3111 if (hdw->ctl_write_urb->actual_length < write_len) {
3112 /* Failed to write enough data */
3113 status = -EIO;
3114 if (!probe_fl) {
3115 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3116 "control-write URB short,"
3117 " expected=%d got=%d",
3118 write_len,
3119 hdw->ctl_write_urb->actual_length);
3120 }
3121 goto done;
3122 }
3123 }
3124 if (read_len) {
3125 /* Validate results of read request */
3126 if ((hdw->ctl_read_urb->status != 0) &&
3127 (hdw->ctl_read_urb->status != -ENOENT) &&
3128 (hdw->ctl_read_urb->status != -ESHUTDOWN) &&
3129 (hdw->ctl_read_urb->status != -ECONNRESET)) {
3130 /* USB subsystem is reporting some kind of failure
3131 on the read */
3132 status = hdw->ctl_read_urb->status;
3133 if (!probe_fl) {
3134 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3135 "control-read URB failure,"
3136 " status=%d",
3137 status);
3138 }
3139 goto done;
3140 }
3141 if (hdw->ctl_read_urb->actual_length < read_len) {
3142 /* Failed to read enough data */
3143 status = -EIO;
3144 if (!probe_fl) {
3145 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3146 "control-read URB short,"
3147 " expected=%d got=%d",
3148 read_len,
3149 hdw->ctl_read_urb->actual_length);
3150 }
3151 goto done;
3152 }
3153 /* Transfer retrieved data out from internal buffer */
3154 for (idx = 0; idx < read_len; idx++) {
3155 ((unsigned char *)read_data)[idx] =
3156 hdw->ctl_read_buffer[idx];
3157 }
3158 }
3159
3160 done:
3161
3162 hdw->cmd_debug_state = 0;
3163 if ((status < 0) && (!probe_fl)) {
Mike Isely681c7392007-11-26 01:48:52 -03003164 pvr2_hdw_render_useless(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03003165 }
3166 return status;
3167}
3168
3169
3170int pvr2_send_request(struct pvr2_hdw *hdw,
3171 void *write_data,unsigned int write_len,
3172 void *read_data,unsigned int read_len)
3173{
3174 return pvr2_send_request_ex(hdw,HZ*4,0,
3175 write_data,write_len,
3176 read_data,read_len);
3177}
3178
Mike Isely1c9d10d2008-03-28 05:38:54 -03003179
3180static int pvr2_issue_simple_cmd(struct pvr2_hdw *hdw,u32 cmdcode)
3181{
3182 int ret;
3183 unsigned int cnt = 1;
3184 unsigned int args = 0;
3185 LOCK_TAKE(hdw->ctl_lock);
3186 hdw->cmd_buffer[0] = cmdcode & 0xffu;
3187 args = (cmdcode >> 8) & 0xffu;
3188 args = (args > 2) ? 2 : args;
3189 if (args) {
3190 cnt += args;
3191 hdw->cmd_buffer[1] = (cmdcode >> 16) & 0xffu;
3192 if (args > 1) {
3193 hdw->cmd_buffer[2] = (cmdcode >> 24) & 0xffu;
3194 }
3195 }
3196 if (pvrusb2_debug & PVR2_TRACE_INIT) {
3197 unsigned int idx;
3198 unsigned int ccnt,bcnt;
3199 char tbuf[50];
3200 cmdcode &= 0xffu;
3201 bcnt = 0;
3202 ccnt = scnprintf(tbuf+bcnt,
3203 sizeof(tbuf)-bcnt,
3204 "Sending FX2 command 0x%x",cmdcode);
3205 bcnt += ccnt;
3206 for (idx = 0; idx < ARRAY_SIZE(pvr2_fx2cmd_desc); idx++) {
3207 if (pvr2_fx2cmd_desc[idx].id == cmdcode) {
3208 ccnt = scnprintf(tbuf+bcnt,
3209 sizeof(tbuf)-bcnt,
3210 " \"%s\"",
3211 pvr2_fx2cmd_desc[idx].desc);
3212 bcnt += ccnt;
3213 break;
3214 }
3215 }
3216 if (args) {
3217 ccnt = scnprintf(tbuf+bcnt,
3218 sizeof(tbuf)-bcnt,
3219 " (%u",hdw->cmd_buffer[1]);
3220 bcnt += ccnt;
3221 if (args > 1) {
3222 ccnt = scnprintf(tbuf+bcnt,
3223 sizeof(tbuf)-bcnt,
3224 ",%u",hdw->cmd_buffer[2]);
3225 bcnt += ccnt;
3226 }
3227 ccnt = scnprintf(tbuf+bcnt,
3228 sizeof(tbuf)-bcnt,
3229 ")");
3230 bcnt += ccnt;
3231 }
3232 pvr2_trace(PVR2_TRACE_INIT,"%.*s",bcnt,tbuf);
3233 }
3234 ret = pvr2_send_request(hdw,hdw->cmd_buffer,cnt,NULL,0);
3235 LOCK_GIVE(hdw->ctl_lock);
3236 return ret;
3237}
3238
3239
Mike Iselyd8554972006-06-26 20:58:46 -03003240int pvr2_write_register(struct pvr2_hdw *hdw, u16 reg, u32 data)
3241{
3242 int ret;
3243
3244 LOCK_TAKE(hdw->ctl_lock);
3245
Michael Krufky8d364362007-01-22 02:17:55 -03003246 hdw->cmd_buffer[0] = FX2CMD_REG_WRITE; /* write register prefix */
Mike Iselyd8554972006-06-26 20:58:46 -03003247 PVR2_DECOMPOSE_LE(hdw->cmd_buffer,1,data);
3248 hdw->cmd_buffer[5] = 0;
3249 hdw->cmd_buffer[6] = (reg >> 8) & 0xff;
3250 hdw->cmd_buffer[7] = reg & 0xff;
3251
3252
3253 ret = pvr2_send_request(hdw, hdw->cmd_buffer, 8, hdw->cmd_buffer, 0);
3254
3255 LOCK_GIVE(hdw->ctl_lock);
3256
3257 return ret;
3258}
3259
3260
Adrian Bunk07e337e2006-06-30 11:30:20 -03003261static int pvr2_read_register(struct pvr2_hdw *hdw, u16 reg, u32 *data)
Mike Iselyd8554972006-06-26 20:58:46 -03003262{
3263 int ret = 0;
3264
3265 LOCK_TAKE(hdw->ctl_lock);
3266
Michael Krufky8d364362007-01-22 02:17:55 -03003267 hdw->cmd_buffer[0] = FX2CMD_REG_READ; /* read register prefix */
Mike Iselyd8554972006-06-26 20:58:46 -03003268 hdw->cmd_buffer[1] = 0;
3269 hdw->cmd_buffer[2] = 0;
3270 hdw->cmd_buffer[3] = 0;
3271 hdw->cmd_buffer[4] = 0;
3272 hdw->cmd_buffer[5] = 0;
3273 hdw->cmd_buffer[6] = (reg >> 8) & 0xff;
3274 hdw->cmd_buffer[7] = reg & 0xff;
3275
3276 ret |= pvr2_send_request(hdw, hdw->cmd_buffer, 8, hdw->cmd_buffer, 4);
3277 *data = PVR2_COMPOSE_LE(hdw->cmd_buffer,0);
3278
3279 LOCK_GIVE(hdw->ctl_lock);
3280
3281 return ret;
3282}
3283
3284
Mike Isely681c7392007-11-26 01:48:52 -03003285void pvr2_hdw_render_useless(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03003286{
3287 if (!hdw->flag_ok) return;
Mike Isely681c7392007-11-26 01:48:52 -03003288 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3289 "Device being rendered inoperable");
Mike Iselyd8554972006-06-26 20:58:46 -03003290 if (hdw->vid_stream) {
Mike Iselya0fd1cb2006-06-30 11:35:28 -03003291 pvr2_stream_setup(hdw->vid_stream,NULL,0,0);
Mike Iselyd8554972006-06-26 20:58:46 -03003292 }
Mike Isely681c7392007-11-26 01:48:52 -03003293 hdw->flag_ok = 0;
3294 trace_stbit("flag_ok",hdw->flag_ok);
3295 pvr2_hdw_state_sched(hdw);
Mike Iselyd8554972006-06-26 20:58:46 -03003296}
3297
3298
3299void pvr2_hdw_device_reset(struct pvr2_hdw *hdw)
3300{
3301 int ret;
3302 pvr2_trace(PVR2_TRACE_INIT,"Performing a device reset...");
Mike Iselya0fd1cb2006-06-30 11:35:28 -03003303 ret = usb_lock_device_for_reset(hdw->usb_dev,NULL);
Mike Iselyd8554972006-06-26 20:58:46 -03003304 if (ret == 1) {
3305 ret = usb_reset_device(hdw->usb_dev);
3306 usb_unlock_device(hdw->usb_dev);
3307 } else {
3308 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3309 "Failed to lock USB device ret=%d",ret);
3310 }
3311 if (init_pause_msec) {
3312 pvr2_trace(PVR2_TRACE_INFO,
3313 "Waiting %u msec for hardware to settle",
3314 init_pause_msec);
3315 msleep(init_pause_msec);
3316 }
3317
3318}
3319
3320
3321void pvr2_hdw_cpureset_assert(struct pvr2_hdw *hdw,int val)
3322{
3323 char da[1];
3324 unsigned int pipe;
3325 int ret;
3326
3327 if (!hdw->usb_dev) return;
3328
3329 pvr2_trace(PVR2_TRACE_INIT,"cpureset_assert(%d)",val);
3330
3331 da[0] = val ? 0x01 : 0x00;
3332
3333 /* Write the CPUCS register on the 8051. The lsb of the register
3334 is the reset bit; a 1 asserts reset while a 0 clears it. */
3335 pipe = usb_sndctrlpipe(hdw->usb_dev, 0);
3336 ret = usb_control_msg(hdw->usb_dev,pipe,0xa0,0x40,0xe600,0,da,1,HZ);
3337 if (ret < 0) {
3338 pvr2_trace(PVR2_TRACE_ERROR_LEGS,
3339 "cpureset_assert(%d) error=%d",val,ret);
3340 pvr2_hdw_render_useless(hdw);
3341 }
3342}
3343
3344
3345int pvr2_hdw_cmd_deep_reset(struct pvr2_hdw *hdw)
3346{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003347 return pvr2_issue_simple_cmd(hdw,FX2CMD_DEEP_RESET);
Mike Iselyd8554972006-06-26 20:58:46 -03003348}
3349
3350
Michael Krufkye1edb192008-04-22 14:45:39 -03003351int pvr2_hdw_cmd_powerup(struct pvr2_hdw *hdw)
3352{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003353 return pvr2_issue_simple_cmd(hdw,FX2CMD_POWER_ON);
Michael Krufkye1edb192008-04-22 14:45:39 -03003354}
3355
Mike Isely1c9d10d2008-03-28 05:38:54 -03003356
Michael Krufkye1edb192008-04-22 14:45:39 -03003357int pvr2_hdw_cmd_powerdown(struct pvr2_hdw *hdw)
3358{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003359 return pvr2_issue_simple_cmd(hdw,FX2CMD_POWER_OFF);
Michael Krufkye1edb192008-04-22 14:45:39 -03003360}
3361
Mike Iselyd8554972006-06-26 20:58:46 -03003362
3363int pvr2_hdw_cmd_decoder_reset(struct pvr2_hdw *hdw)
3364{
3365 if (!hdw->decoder_ctrl) {
3366 pvr2_trace(PVR2_TRACE_INIT,
3367 "Unable to reset decoder: nothing attached");
3368 return -ENOTTY;
3369 }
3370
3371 if (!hdw->decoder_ctrl->force_reset) {
3372 pvr2_trace(PVR2_TRACE_INIT,
3373 "Unable to reset decoder: not implemented");
3374 return -ENOTTY;
3375 }
3376
3377 pvr2_trace(PVR2_TRACE_INIT,
3378 "Requesting decoder reset");
3379 hdw->decoder_ctrl->force_reset(hdw->decoder_ctrl->ctxt);
3380 return 0;
3381}
3382
3383
Mike Isely62433e32008-04-22 14:45:40 -03003384static int pvr2_hdw_cmd_hcw_demod_reset(struct pvr2_hdw *hdw, int onoff)
Mike Isely84147f32008-04-22 14:45:40 -03003385{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003386 hdw->flag_ok = !0;
3387 return pvr2_issue_simple_cmd(hdw,
3388 FX2CMD_HCW_DEMOD_RESETIN |
3389 (1 << 8) |
3390 ((onoff ? 1 : 0) << 16));
Mike Isely84147f32008-04-22 14:45:40 -03003391}
3392
Mike Isely84147f32008-04-22 14:45:40 -03003393
Mike Isely62433e32008-04-22 14:45:40 -03003394static int pvr2_hdw_cmd_onair_fe_power_ctrl(struct pvr2_hdw *hdw, int onoff)
Mike Isely84147f32008-04-22 14:45:40 -03003395{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003396 hdw->flag_ok = !0;
3397 return pvr2_issue_simple_cmd(hdw,(onoff ?
3398 FX2CMD_ONAIR_DTV_POWER_ON :
3399 FX2CMD_ONAIR_DTV_POWER_OFF));
Mike Isely84147f32008-04-22 14:45:40 -03003400}
3401
Mike Isely62433e32008-04-22 14:45:40 -03003402
3403static int pvr2_hdw_cmd_onair_digital_path_ctrl(struct pvr2_hdw *hdw,
3404 int onoff)
Mike Isely84147f32008-04-22 14:45:40 -03003405{
Mike Isely1c9d10d2008-03-28 05:38:54 -03003406 return pvr2_issue_simple_cmd(hdw,(onoff ?
3407 FX2CMD_ONAIR_DTV_STREAMING_ON :
3408 FX2CMD_ONAIR_DTV_STREAMING_OFF));
Mike Isely84147f32008-04-22 14:45:40 -03003409}
3410
Mike Isely62433e32008-04-22 14:45:40 -03003411
3412static void pvr2_hdw_cmd_modeswitch(struct pvr2_hdw *hdw,int digitalFl)
3413{
3414 int cmode;
3415 /* Compare digital/analog desired setting with current setting. If
3416 they don't match, fix it... */
3417 cmode = (digitalFl ? PVR2_PATHWAY_DIGITAL : PVR2_PATHWAY_ANALOG);
3418 if (cmode == hdw->pathway_state) {
3419 /* They match; nothing to do */
3420 return;
3421 }
3422
3423 switch (hdw->hdw_desc->digital_control_scheme) {
3424 case PVR2_DIGITAL_SCHEME_HAUPPAUGE:
3425 pvr2_hdw_cmd_hcw_demod_reset(hdw,digitalFl);
3426 if (cmode == PVR2_PATHWAY_ANALOG) {
3427 /* If moving to analog mode, also force the decoder
3428 to reset. If no decoder is attached, then it's
3429 ok to ignore this because if/when the decoder
3430 attaches, it will reset itself at that time. */
3431 pvr2_hdw_cmd_decoder_reset(hdw);
3432 }
3433 break;
3434 case PVR2_DIGITAL_SCHEME_ONAIR:
3435 /* Supposedly we should always have the power on whether in
3436 digital or analog mode. But for now do what appears to
3437 work... */
Mike Iselybb0c2fe2008-03-28 05:41:19 -03003438 pvr2_hdw_cmd_onair_fe_power_ctrl(hdw,digitalFl);
Mike Isely62433e32008-04-22 14:45:40 -03003439 break;
3440 default: break;
3441 }
3442
Mike Isely1b9c18c2008-04-22 14:45:41 -03003443 pvr2_hdw_untrip_unlocked(hdw);
Mike Isely62433e32008-04-22 14:45:40 -03003444 hdw->pathway_state = cmode;
3445}
3446
3447
Adrian Bunke9b59f62008-05-10 04:35:24 -03003448static void pvr2_led_ctrl_hauppauge(struct pvr2_hdw *hdw, int onoff)
Mike Iselyc55a97d2008-04-22 14:45:41 -03003449{
3450 /* change some GPIO data
3451 *
3452 * note: bit d7 of dir appears to control the LED,
3453 * so we shut it off here.
3454 *
Mike Iselyc55a97d2008-04-22 14:45:41 -03003455 */
Mike Isely40381cb2008-04-22 14:45:42 -03003456 if (onoff) {
Mike Iselyc55a97d2008-04-22 14:45:41 -03003457 pvr2_hdw_gpio_chg_dir(hdw, 0xffffffff, 0x00000481);
Mike Isely40381cb2008-04-22 14:45:42 -03003458 } else {
Mike Iselyc55a97d2008-04-22 14:45:41 -03003459 pvr2_hdw_gpio_chg_dir(hdw, 0xffffffff, 0x00000401);
Mike Isely40381cb2008-04-22 14:45:42 -03003460 }
Mike Iselyc55a97d2008-04-22 14:45:41 -03003461 pvr2_hdw_gpio_chg_out(hdw, 0xffffffff, 0x00000000);
Mike Isely40381cb2008-04-22 14:45:42 -03003462}
Mike Iselyc55a97d2008-04-22 14:45:41 -03003463
Mike Isely40381cb2008-04-22 14:45:42 -03003464
3465typedef void (*led_method_func)(struct pvr2_hdw *,int);
3466
3467static led_method_func led_methods[] = {
3468 [PVR2_LED_SCHEME_HAUPPAUGE] = pvr2_led_ctrl_hauppauge,
3469};
3470
3471
3472/* Toggle LED */
3473static void pvr2_led_ctrl(struct pvr2_hdw *hdw,int onoff)
3474{
3475 unsigned int scheme_id;
3476 led_method_func fp;
3477
3478 if ((!onoff) == (!hdw->led_on)) return;
3479
3480 hdw->led_on = onoff != 0;
3481
3482 scheme_id = hdw->hdw_desc->led_scheme;
3483 if (scheme_id < ARRAY_SIZE(led_methods)) {
3484 fp = led_methods[scheme_id];
3485 } else {
3486 fp = NULL;
3487 }
3488
3489 if (fp) (*fp)(hdw,onoff);
Mike Iselyc55a97d2008-04-22 14:45:41 -03003490}
3491
3492
Mike Iselye61b6fc2006-07-18 22:42:18 -03003493/* Stop / start video stream transport */
Adrian Bunk07e337e2006-06-30 11:30:20 -03003494static int pvr2_hdw_cmd_usbstream(struct pvr2_hdw *hdw,int runFl)
Mike Iselyd8554972006-06-26 20:58:46 -03003495{
Mike Iselybb0c2fe2008-03-28 05:41:19 -03003496 int ret;
3497
3498 /* If we're in analog mode, then just issue the usual analog
3499 command. */
3500 if (hdw->pathway_state == PVR2_PATHWAY_ANALOG) {
3501 return pvr2_issue_simple_cmd(hdw,
3502 (runFl ?
3503 FX2CMD_STREAMING_ON :
3504 FX2CMD_STREAMING_OFF));
3505 /*Note: Not reached */
Mike Isely62433e32008-04-22 14:45:40 -03003506 }
Mike Iselybb0c2fe2008-03-28 05:41:19 -03003507
3508 if (hdw->pathway_state != PVR2_PATHWAY_DIGITAL) {
3509 /* Whoops, we don't know what mode we're in... */
3510 return -EINVAL;
3511 }
3512
3513 /* To get here we have to be in digital mode. The mechanism here
3514 is unfortunately different for different vendors. So we switch
3515 on the device's digital scheme attribute in order to figure out
3516 what to do. */
3517 switch (hdw->hdw_desc->digital_control_scheme) {
3518 case PVR2_DIGITAL_SCHEME_HAUPPAUGE:
3519 return pvr2_issue_simple_cmd(hdw,
3520 (runFl ?
3521 FX2CMD_HCW_DTV_STREAMING_ON :
3522 FX2CMD_HCW_DTV_STREAMING_OFF));
3523 case PVR2_DIGITAL_SCHEME_ONAIR:
3524 ret = pvr2_issue_simple_cmd(hdw,
3525 (runFl ?
3526 FX2CMD_STREAMING_ON :
3527 FX2CMD_STREAMING_OFF));
3528 if (ret) return ret;
3529 return pvr2_hdw_cmd_onair_digital_path_ctrl(hdw,runFl);
3530 default:
3531 return -EINVAL;
3532 }
Mike Iselyd8554972006-06-26 20:58:46 -03003533}
3534
3535
Mike Isely62433e32008-04-22 14:45:40 -03003536/* Evaluate whether or not state_pathway_ok can change */
3537static int state_eval_pathway_ok(struct pvr2_hdw *hdw)
3538{
3539 if (hdw->state_pathway_ok) {
3540 /* Nothing to do if pathway is already ok */
3541 return 0;
3542 }
3543 if (!hdw->state_pipeline_idle) {
3544 /* Not allowed to change anything if pipeline is not idle */
3545 return 0;
3546 }
3547 pvr2_hdw_cmd_modeswitch(hdw,hdw->input_val == PVR2_CVAL_INPUT_DTV);
3548 hdw->state_pathway_ok = !0;
Mike Iselye9db1ff2008-04-22 14:45:41 -03003549 trace_stbit("state_pathway_ok",hdw->state_pathway_ok);
Mike Isely62433e32008-04-22 14:45:40 -03003550 return !0;
3551}
3552
3553
Mike Isely681c7392007-11-26 01:48:52 -03003554/* Evaluate whether or not state_encoder_ok can change */
3555static int state_eval_encoder_ok(struct pvr2_hdw *hdw)
3556{
3557 if (hdw->state_encoder_ok) return 0;
3558 if (hdw->flag_tripped) return 0;
3559 if (hdw->state_encoder_run) return 0;
3560 if (hdw->state_encoder_config) return 0;
3561 if (hdw->state_decoder_run) return 0;
3562 if (hdw->state_usbstream_run) return 0;
Mike Isely72998b72008-04-03 04:51:19 -03003563 if (hdw->pathway_state == PVR2_PATHWAY_DIGITAL) {
3564 if (!hdw->hdw_desc->flag_digital_requires_cx23416) return 0;
3565 } else if (hdw->pathway_state != PVR2_PATHWAY_ANALOG) {
3566 return 0;
3567 }
3568
Mike Isely681c7392007-11-26 01:48:52 -03003569 if (pvr2_upload_firmware2(hdw) < 0) {
3570 hdw->flag_tripped = !0;
3571 trace_stbit("flag_tripped",hdw->flag_tripped);
3572 return !0;
3573 }
3574 hdw->state_encoder_ok = !0;
3575 trace_stbit("state_encoder_ok",hdw->state_encoder_ok);
3576 return !0;
3577}
3578
3579
3580/* Evaluate whether or not state_encoder_config can change */
3581static int state_eval_encoder_config(struct pvr2_hdw *hdw)
3582{
3583 if (hdw->state_encoder_config) {
3584 if (hdw->state_encoder_ok) {
3585 if (hdw->state_pipeline_req &&
3586 !hdw->state_pipeline_pause) return 0;
3587 }
3588 hdw->state_encoder_config = 0;
3589 hdw->state_encoder_waitok = 0;
3590 trace_stbit("state_encoder_waitok",hdw->state_encoder_waitok);
3591 /* paranoia - solve race if timer just completed */
3592 del_timer_sync(&hdw->encoder_wait_timer);
3593 } else {
Mike Isely62433e32008-04-22 14:45:40 -03003594 if (!hdw->state_pathway_ok ||
3595 (hdw->pathway_state != PVR2_PATHWAY_ANALOG) ||
3596 !hdw->state_encoder_ok ||
Mike Isely681c7392007-11-26 01:48:52 -03003597 !hdw->state_pipeline_idle ||
3598 hdw->state_pipeline_pause ||
3599 !hdw->state_pipeline_req ||
3600 !hdw->state_pipeline_config) {
3601 /* We must reset the enforced wait interval if
3602 anything has happened that might have disturbed
3603 the encoder. This should be a rare case. */
3604 if (timer_pending(&hdw->encoder_wait_timer)) {
3605 del_timer_sync(&hdw->encoder_wait_timer);
3606 }
3607 if (hdw->state_encoder_waitok) {
3608 /* Must clear the state - therefore we did
3609 something to a state bit and must also
3610 return true. */
3611 hdw->state_encoder_waitok = 0;
3612 trace_stbit("state_encoder_waitok",
3613 hdw->state_encoder_waitok);
3614 return !0;
3615 }
3616 return 0;
3617 }
3618 if (!hdw->state_encoder_waitok) {
3619 if (!timer_pending(&hdw->encoder_wait_timer)) {
3620 /* waitok flag wasn't set and timer isn't
3621 running. Check flag once more to avoid
3622 a race then start the timer. This is
3623 the point when we measure out a minimal
3624 quiet interval before doing something to
3625 the encoder. */
3626 if (!hdw->state_encoder_waitok) {
3627 hdw->encoder_wait_timer.expires =
Mike Isely83ce57a2008-05-26 05:51:57 -03003628 jiffies +
3629 (HZ * TIME_MSEC_ENCODER_WAIT
3630 / 1000);
Mike Isely681c7392007-11-26 01:48:52 -03003631 add_timer(&hdw->encoder_wait_timer);
3632 }
3633 }
3634 /* We can't continue until we know we have been
3635 quiet for the interval measured by this
3636 timer. */
3637 return 0;
3638 }
3639 pvr2_encoder_configure(hdw);
3640 if (hdw->state_encoder_ok) hdw->state_encoder_config = !0;
3641 }
3642 trace_stbit("state_encoder_config",hdw->state_encoder_config);
3643 return !0;
3644}
3645
3646
Mike Iselyd913d632008-04-06 04:04:35 -03003647/* Return true if the encoder should not be running. */
3648static int state_check_disable_encoder_run(struct pvr2_hdw *hdw)
3649{
3650 if (!hdw->state_encoder_ok) {
3651 /* Encoder isn't healthy at the moment, so stop it. */
3652 return !0;
3653 }
3654 if (!hdw->state_pathway_ok) {
3655 /* Mode is not understood at the moment (i.e. it wants to
3656 change), so encoder must be stopped. */
3657 return !0;
3658 }
3659
3660 switch (hdw->pathway_state) {
3661 case PVR2_PATHWAY_ANALOG:
3662 if (!hdw->state_decoder_run) {
3663 /* We're in analog mode and the decoder is not
3664 running; thus the encoder should be stopped as
3665 well. */
3666 return !0;
3667 }
3668 break;
3669 case PVR2_PATHWAY_DIGITAL:
3670 if (hdw->state_encoder_runok) {
3671 /* This is a funny case. We're in digital mode so
3672 really the encoder should be stopped. However
3673 if it really is running, only kill it after
3674 runok has been set. This gives a chance for the
3675 onair quirk to function (encoder must run
3676 briefly first, at least once, before onair
3677 digital streaming can work). */
3678 return !0;
3679 }
3680 break;
3681 default:
3682 /* Unknown mode; so encoder should be stopped. */
3683 return !0;
3684 }
3685
3686 /* If we get here, we haven't found a reason to stop the
3687 encoder. */
3688 return 0;
3689}
3690
3691
3692/* Return true if the encoder should be running. */
3693static int state_check_enable_encoder_run(struct pvr2_hdw *hdw)
3694{
3695 if (!hdw->state_encoder_ok) {
3696 /* Don't run the encoder if it isn't healthy... */
3697 return 0;
3698 }
3699 if (!hdw->state_pathway_ok) {
3700 /* Don't run the encoder if we don't (yet) know what mode
3701 we need to be in... */
3702 return 0;
3703 }
3704
3705 switch (hdw->pathway_state) {
3706 case PVR2_PATHWAY_ANALOG:
3707 if (hdw->state_decoder_run) {
3708 /* In analog mode, if the decoder is running, then
3709 run the encoder. */
3710 return !0;
3711 }
3712 break;
3713 case PVR2_PATHWAY_DIGITAL:
3714 if ((hdw->hdw_desc->digital_control_scheme ==
3715 PVR2_DIGITAL_SCHEME_ONAIR) &&
3716 !hdw->state_encoder_runok) {
3717 /* This is a quirk. OnAir hardware won't stream
3718 digital until the encoder has been run at least
3719 once, for a minimal period of time (empiricially
3720 measured to be 1/4 second). So if we're on
3721 OnAir hardware and the encoder has never been
3722 run at all, then start the encoder. Normal
3723 state machine logic in the driver will
3724 automatically handle the remaining bits. */
3725 return !0;
3726 }
3727 break;
3728 default:
3729 /* For completeness (unknown mode; encoder won't run ever) */
3730 break;
3731 }
3732 /* If we get here, then we haven't found any reason to run the
3733 encoder, so don't run it. */
3734 return 0;
3735}
3736
3737
Mike Isely681c7392007-11-26 01:48:52 -03003738/* Evaluate whether or not state_encoder_run can change */
3739static int state_eval_encoder_run(struct pvr2_hdw *hdw)
3740{
3741 if (hdw->state_encoder_run) {
Mike Iselyd913d632008-04-06 04:04:35 -03003742 if (!state_check_disable_encoder_run(hdw)) return 0;
Mike Isely681c7392007-11-26 01:48:52 -03003743 if (hdw->state_encoder_ok) {
Mike Iselyd913d632008-04-06 04:04:35 -03003744 del_timer_sync(&hdw->encoder_run_timer);
Mike Isely681c7392007-11-26 01:48:52 -03003745 if (pvr2_encoder_stop(hdw) < 0) return !0;
3746 }
3747 hdw->state_encoder_run = 0;
3748 } else {
Mike Iselyd913d632008-04-06 04:04:35 -03003749 if (!state_check_enable_encoder_run(hdw)) return 0;
Mike Isely681c7392007-11-26 01:48:52 -03003750 if (pvr2_encoder_start(hdw) < 0) return !0;
3751 hdw->state_encoder_run = !0;
Mike Iselyd913d632008-04-06 04:04:35 -03003752 if (!hdw->state_encoder_runok) {
3753 hdw->encoder_run_timer.expires =
Mike Isely83ce57a2008-05-26 05:51:57 -03003754 jiffies + (HZ * TIME_MSEC_ENCODER_OK / 1000);
Mike Iselyd913d632008-04-06 04:04:35 -03003755 add_timer(&hdw->encoder_run_timer);
3756 }
Mike Isely681c7392007-11-26 01:48:52 -03003757 }
3758 trace_stbit("state_encoder_run",hdw->state_encoder_run);
3759 return !0;
3760}
3761
3762
3763/* Timeout function for quiescent timer. */
3764static void pvr2_hdw_quiescent_timeout(unsigned long data)
3765{
3766 struct pvr2_hdw *hdw = (struct pvr2_hdw *)data;
3767 hdw->state_decoder_quiescent = !0;
3768 trace_stbit("state_decoder_quiescent",hdw->state_decoder_quiescent);
3769 hdw->state_stale = !0;
3770 queue_work(hdw->workqueue,&hdw->workpoll);
3771}
3772
3773
3774/* Timeout function for encoder wait timer. */
3775static void pvr2_hdw_encoder_wait_timeout(unsigned long data)
3776{
3777 struct pvr2_hdw *hdw = (struct pvr2_hdw *)data;
3778 hdw->state_encoder_waitok = !0;
3779 trace_stbit("state_encoder_waitok",hdw->state_encoder_waitok);
3780 hdw->state_stale = !0;
3781 queue_work(hdw->workqueue,&hdw->workpoll);
3782}
3783
3784
Mike Iselyd913d632008-04-06 04:04:35 -03003785/* Timeout function for encoder run timer. */
3786static void pvr2_hdw_encoder_run_timeout(unsigned long data)
3787{
3788 struct pvr2_hdw *hdw = (struct pvr2_hdw *)data;
3789 if (!hdw->state_encoder_runok) {
3790 hdw->state_encoder_runok = !0;
3791 trace_stbit("state_encoder_runok",hdw->state_encoder_runok);
3792 hdw->state_stale = !0;
3793 queue_work(hdw->workqueue,&hdw->workpoll);
3794 }
3795}
3796
3797
Mike Isely681c7392007-11-26 01:48:52 -03003798/* Evaluate whether or not state_decoder_run can change */
3799static int state_eval_decoder_run(struct pvr2_hdw *hdw)
3800{
3801 if (hdw->state_decoder_run) {
3802 if (hdw->state_encoder_ok) {
3803 if (hdw->state_pipeline_req &&
Mike Isely62433e32008-04-22 14:45:40 -03003804 !hdw->state_pipeline_pause &&
3805 hdw->state_pathway_ok) return 0;
Mike Isely681c7392007-11-26 01:48:52 -03003806 }
3807 if (!hdw->flag_decoder_missed) {
3808 pvr2_decoder_enable(hdw,0);
3809 }
3810 hdw->state_decoder_quiescent = 0;
3811 hdw->state_decoder_run = 0;
3812 /* paranoia - solve race if timer just completed */
3813 del_timer_sync(&hdw->quiescent_timer);
3814 } else {
3815 if (!hdw->state_decoder_quiescent) {
3816 if (!timer_pending(&hdw->quiescent_timer)) {
3817 /* We don't do something about the
3818 quiescent timer until right here because
3819 we also want to catch cases where the
3820 decoder was already not running (like
3821 after initialization) as opposed to
3822 knowing that we had just stopped it.
3823 The second flag check is here to cover a
3824 race - the timer could have run and set
3825 this flag just after the previous check
3826 but before we did the pending check. */
3827 if (!hdw->state_decoder_quiescent) {
3828 hdw->quiescent_timer.expires =
Mike Isely83ce57a2008-05-26 05:51:57 -03003829 jiffies +
3830 (HZ * TIME_MSEC_DECODER_WAIT
3831 / 1000);
Mike Isely681c7392007-11-26 01:48:52 -03003832 add_timer(&hdw->quiescent_timer);
3833 }
3834 }
3835 /* Don't allow decoder to start again until it has
3836 been quiesced first. This little detail should
3837 hopefully further stabilize the encoder. */
3838 return 0;
3839 }
Mike Isely62433e32008-04-22 14:45:40 -03003840 if (!hdw->state_pathway_ok ||
3841 (hdw->pathway_state != PVR2_PATHWAY_ANALOG) ||
3842 !hdw->state_pipeline_req ||
Mike Isely681c7392007-11-26 01:48:52 -03003843 hdw->state_pipeline_pause ||
3844 !hdw->state_pipeline_config ||
3845 !hdw->state_encoder_config ||
3846 !hdw->state_encoder_ok) return 0;
3847 del_timer_sync(&hdw->quiescent_timer);
3848 if (hdw->flag_decoder_missed) return 0;
3849 if (pvr2_decoder_enable(hdw,!0) < 0) return 0;
3850 hdw->state_decoder_quiescent = 0;
3851 hdw->state_decoder_run = !0;
3852 }
3853 trace_stbit("state_decoder_quiescent",hdw->state_decoder_quiescent);
3854 trace_stbit("state_decoder_run",hdw->state_decoder_run);
3855 return !0;
3856}
3857
3858
3859/* Evaluate whether or not state_usbstream_run can change */
3860static int state_eval_usbstream_run(struct pvr2_hdw *hdw)
3861{
3862 if (hdw->state_usbstream_run) {
Mike Isely72998b72008-04-03 04:51:19 -03003863 int fl = !0;
Mike Isely62433e32008-04-22 14:45:40 -03003864 if (hdw->pathway_state == PVR2_PATHWAY_ANALOG) {
Mike Isely72998b72008-04-03 04:51:19 -03003865 fl = (hdw->state_encoder_ok &&
3866 hdw->state_encoder_run);
3867 } else if ((hdw->pathway_state == PVR2_PATHWAY_DIGITAL) &&
3868 (hdw->hdw_desc->flag_digital_requires_cx23416)) {
3869 fl = hdw->state_encoder_ok;
3870 }
3871 if (fl &&
3872 hdw->state_pipeline_req &&
3873 !hdw->state_pipeline_pause &&
3874 hdw->state_pathway_ok) {
3875 return 0;
Mike Isely681c7392007-11-26 01:48:52 -03003876 }
3877 pvr2_hdw_cmd_usbstream(hdw,0);
3878 hdw->state_usbstream_run = 0;
3879 } else {
Mike Isely62433e32008-04-22 14:45:40 -03003880 if (!hdw->state_pipeline_req ||
3881 hdw->state_pipeline_pause ||
3882 !hdw->state_pathway_ok) return 0;
3883 if (hdw->pathway_state == PVR2_PATHWAY_ANALOG) {
3884 if (!hdw->state_encoder_ok ||
3885 !hdw->state_encoder_run) return 0;
Mike Isely72998b72008-04-03 04:51:19 -03003886 } else if ((hdw->pathway_state == PVR2_PATHWAY_DIGITAL) &&
3887 (hdw->hdw_desc->flag_digital_requires_cx23416)) {
3888 if (!hdw->state_encoder_ok) return 0;
Mike Iselyd913d632008-04-06 04:04:35 -03003889 if (hdw->state_encoder_run) return 0;
3890 if (hdw->hdw_desc->digital_control_scheme ==
3891 PVR2_DIGITAL_SCHEME_ONAIR) {
3892 /* OnAir digital receivers won't stream
3893 unless the analog encoder has run first.
3894 Why? I have no idea. But don't even
3895 try until we know the analog side is
3896 known to have run. */
3897 if (!hdw->state_encoder_runok) return 0;
3898 }
Mike Isely62433e32008-04-22 14:45:40 -03003899 }
Mike Isely681c7392007-11-26 01:48:52 -03003900 if (pvr2_hdw_cmd_usbstream(hdw,!0) < 0) return 0;
3901 hdw->state_usbstream_run = !0;
3902 }
3903 trace_stbit("state_usbstream_run",hdw->state_usbstream_run);
3904 return !0;
3905}
3906
3907
3908/* Attempt to configure pipeline, if needed */
3909static int state_eval_pipeline_config(struct pvr2_hdw *hdw)
3910{
3911 if (hdw->state_pipeline_config ||
3912 hdw->state_pipeline_pause) return 0;
3913 pvr2_hdw_commit_execute(hdw);
3914 return !0;
3915}
3916
3917
3918/* Update pipeline idle and pipeline pause tracking states based on other
3919 inputs. This must be called whenever the other relevant inputs have
3920 changed. */
3921static int state_update_pipeline_state(struct pvr2_hdw *hdw)
3922{
3923 unsigned int st;
3924 int updatedFl = 0;
3925 /* Update pipeline state */
3926 st = !(hdw->state_encoder_run ||
3927 hdw->state_decoder_run ||
3928 hdw->state_usbstream_run ||
3929 (!hdw->state_decoder_quiescent));
3930 if (!st != !hdw->state_pipeline_idle) {
3931 hdw->state_pipeline_idle = st;
3932 updatedFl = !0;
3933 }
3934 if (hdw->state_pipeline_idle && hdw->state_pipeline_pause) {
3935 hdw->state_pipeline_pause = 0;
3936 updatedFl = !0;
3937 }
3938 return updatedFl;
3939}
3940
3941
3942typedef int (*state_eval_func)(struct pvr2_hdw *);
3943
3944/* Set of functions to be run to evaluate various states in the driver. */
Tobias Klauserebff0332008-04-22 14:45:45 -03003945static const state_eval_func eval_funcs[] = {
Mike Isely62433e32008-04-22 14:45:40 -03003946 state_eval_pathway_ok,
Mike Isely681c7392007-11-26 01:48:52 -03003947 state_eval_pipeline_config,
3948 state_eval_encoder_ok,
3949 state_eval_encoder_config,
3950 state_eval_decoder_run,
3951 state_eval_encoder_run,
3952 state_eval_usbstream_run,
3953};
3954
3955
3956/* Process various states and return true if we did anything interesting. */
3957static int pvr2_hdw_state_update(struct pvr2_hdw *hdw)
3958{
3959 unsigned int i;
3960 int state_updated = 0;
3961 int check_flag;
3962
3963 if (!hdw->state_stale) return 0;
3964 if ((hdw->fw1_state != FW1_STATE_OK) ||
3965 !hdw->flag_ok) {
3966 hdw->state_stale = 0;
3967 return !0;
3968 }
3969 /* This loop is the heart of the entire driver. It keeps trying to
3970 evaluate various bits of driver state until nothing changes for
3971 one full iteration. Each "bit of state" tracks some global
3972 aspect of the driver, e.g. whether decoder should run, if
3973 pipeline is configured, usb streaming is on, etc. We separately
3974 evaluate each of those questions based on other driver state to
3975 arrive at the correct running configuration. */
3976 do {
3977 check_flag = 0;
3978 state_update_pipeline_state(hdw);
3979 /* Iterate over each bit of state */
3980 for (i = 0; (i<ARRAY_SIZE(eval_funcs)) && hdw->flag_ok; i++) {
3981 if ((*eval_funcs[i])(hdw)) {
3982 check_flag = !0;
3983 state_updated = !0;
3984 state_update_pipeline_state(hdw);
3985 }
3986 }
3987 } while (check_flag && hdw->flag_ok);
3988 hdw->state_stale = 0;
3989 trace_stbit("state_stale",hdw->state_stale);
3990 return state_updated;
3991}
3992
3993
Mike Isely1cb03b72008-04-21 03:47:43 -03003994static unsigned int print_input_mask(unsigned int msk,
3995 char *buf,unsigned int acnt)
3996{
3997 unsigned int idx,ccnt;
3998 unsigned int tcnt = 0;
3999 for (idx = 0; idx < ARRAY_SIZE(control_values_input); idx++) {
4000 if (!((1 << idx) & msk)) continue;
4001 ccnt = scnprintf(buf+tcnt,
4002 acnt-tcnt,
4003 "%s%s",
4004 (tcnt ? ", " : ""),
4005 control_values_input[idx]);
4006 tcnt += ccnt;
4007 }
4008 return tcnt;
4009}
4010
4011
Mike Isely62433e32008-04-22 14:45:40 -03004012static const char *pvr2_pathway_state_name(int id)
4013{
4014 switch (id) {
4015 case PVR2_PATHWAY_ANALOG: return "analog";
4016 case PVR2_PATHWAY_DIGITAL: return "digital";
4017 default: return "unknown";
4018 }
4019}
4020
4021
Mike Isely681c7392007-11-26 01:48:52 -03004022static unsigned int pvr2_hdw_report_unlocked(struct pvr2_hdw *hdw,int which,
4023 char *buf,unsigned int acnt)
4024{
4025 switch (which) {
4026 case 0:
4027 return scnprintf(
4028 buf,acnt,
Mike Iselye9db1ff2008-04-22 14:45:41 -03004029 "driver:%s%s%s%s%s <mode=%s>",
Mike Isely681c7392007-11-26 01:48:52 -03004030 (hdw->flag_ok ? " <ok>" : " <fail>"),
4031 (hdw->flag_init_ok ? " <init>" : " <uninitialized>"),
4032 (hdw->flag_disconnected ? " <disconnected>" :
4033 " <connected>"),
4034 (hdw->flag_tripped ? " <tripped>" : ""),
Mike Isely62433e32008-04-22 14:45:40 -03004035 (hdw->flag_decoder_missed ? " <no decoder>" : ""),
4036 pvr2_pathway_state_name(hdw->pathway_state));
4037
Mike Isely681c7392007-11-26 01:48:52 -03004038 case 1:
4039 return scnprintf(
4040 buf,acnt,
4041 "pipeline:%s%s%s%s",
4042 (hdw->state_pipeline_idle ? " <idle>" : ""),
4043 (hdw->state_pipeline_config ?
4044 " <configok>" : " <stale>"),
4045 (hdw->state_pipeline_req ? " <req>" : ""),
4046 (hdw->state_pipeline_pause ? " <pause>" : ""));
4047 case 2:
4048 return scnprintf(
4049 buf,acnt,
Mike Isely62433e32008-04-22 14:45:40 -03004050 "worker:%s%s%s%s%s%s%s",
Mike Isely681c7392007-11-26 01:48:52 -03004051 (hdw->state_decoder_run ?
4052 " <decode:run>" :
4053 (hdw->state_decoder_quiescent ?
4054 "" : " <decode:stop>")),
4055 (hdw->state_decoder_quiescent ?
4056 " <decode:quiescent>" : ""),
4057 (hdw->state_encoder_ok ?
4058 "" : " <encode:init>"),
4059 (hdw->state_encoder_run ?
Mike Iselyd913d632008-04-06 04:04:35 -03004060 (hdw->state_encoder_runok ?
4061 " <encode:run>" :
4062 " <encode:firstrun>") :
4063 (hdw->state_encoder_runok ?
4064 " <encode:stop>" :
4065 " <encode:virgin>")),
Mike Isely681c7392007-11-26 01:48:52 -03004066 (hdw->state_encoder_config ?
4067 " <encode:configok>" :
4068 (hdw->state_encoder_waitok ?
Mike Iselyb9a37d92008-03-28 05:31:40 -03004069 "" : " <encode:waitok>")),
Mike Isely681c7392007-11-26 01:48:52 -03004070 (hdw->state_usbstream_run ?
Mike Isely62433e32008-04-22 14:45:40 -03004071 " <usb:run>" : " <usb:stop>"),
4072 (hdw->state_pathway_ok ?
Mike Iselye9db1ff2008-04-22 14:45:41 -03004073 " <pathway:ok>" : ""));
Mike Isely681c7392007-11-26 01:48:52 -03004074 case 3:
4075 return scnprintf(
4076 buf,acnt,
4077 "state: %s",
4078 pvr2_get_state_name(hdw->master_state));
Mike Iselyad0992e2008-03-28 05:34:45 -03004079 case 4: {
Mike Isely1cb03b72008-04-21 03:47:43 -03004080 unsigned int tcnt = 0;
4081 unsigned int ccnt;
4082
4083 ccnt = scnprintf(buf,
4084 acnt,
4085 "Hardware supported inputs: ");
4086 tcnt += ccnt;
4087 tcnt += print_input_mask(hdw->input_avail_mask,
4088 buf+tcnt,
4089 acnt-tcnt);
4090 if (hdw->input_avail_mask != hdw->input_allowed_mask) {
4091 ccnt = scnprintf(buf+tcnt,
4092 acnt-tcnt,
4093 "; allowed inputs: ");
4094 tcnt += ccnt;
4095 tcnt += print_input_mask(hdw->input_allowed_mask,
4096 buf+tcnt,
4097 acnt-tcnt);
4098 }
4099 return tcnt;
4100 }
4101 case 5: {
Mike Iselyad0992e2008-03-28 05:34:45 -03004102 struct pvr2_stream_stats stats;
4103 if (!hdw->vid_stream) break;
4104 pvr2_stream_get_stats(hdw->vid_stream,
4105 &stats,
4106 0);
4107 return scnprintf(
4108 buf,acnt,
4109 "Bytes streamed=%u"
4110 " URBs: queued=%u idle=%u ready=%u"
4111 " processed=%u failed=%u",
4112 stats.bytes_processed,
4113 stats.buffers_in_queue,
4114 stats.buffers_in_idle,
4115 stats.buffers_in_ready,
4116 stats.buffers_processed,
4117 stats.buffers_failed);
4118 }
Mike Isely681c7392007-11-26 01:48:52 -03004119 default: break;
4120 }
4121 return 0;
4122}
4123
4124
4125unsigned int pvr2_hdw_state_report(struct pvr2_hdw *hdw,
4126 char *buf,unsigned int acnt)
4127{
4128 unsigned int bcnt,ccnt,idx;
4129 bcnt = 0;
4130 LOCK_TAKE(hdw->big_lock);
4131 for (idx = 0; ; idx++) {
4132 ccnt = pvr2_hdw_report_unlocked(hdw,idx,buf,acnt);
4133 if (!ccnt) break;
4134 bcnt += ccnt; acnt -= ccnt; buf += ccnt;
4135 if (!acnt) break;
4136 buf[0] = '\n'; ccnt = 1;
4137 bcnt += ccnt; acnt -= ccnt; buf += ccnt;
4138 }
4139 LOCK_GIVE(hdw->big_lock);
4140 return bcnt;
4141}
4142
4143
4144static void pvr2_hdw_state_log_state(struct pvr2_hdw *hdw)
4145{
4146 char buf[128];
4147 unsigned int idx,ccnt;
4148
4149 for (idx = 0; ; idx++) {
4150 ccnt = pvr2_hdw_report_unlocked(hdw,idx,buf,sizeof(buf));
4151 if (!ccnt) break;
4152 printk(KERN_INFO "%s %.*s\n",hdw->name,ccnt,buf);
4153 }
4154}
4155
4156
4157/* Evaluate and update the driver's current state, taking various actions
4158 as appropriate for the update. */
4159static int pvr2_hdw_state_eval(struct pvr2_hdw *hdw)
4160{
4161 unsigned int st;
4162 int state_updated = 0;
4163 int callback_flag = 0;
Mike Isely1b9c18c2008-04-22 14:45:41 -03004164 int analog_mode;
Mike Isely681c7392007-11-26 01:48:52 -03004165
4166 pvr2_trace(PVR2_TRACE_STBITS,
4167 "Drive state check START");
4168 if (pvrusb2_debug & PVR2_TRACE_STBITS) {
4169 pvr2_hdw_state_log_state(hdw);
4170 }
4171
4172 /* Process all state and get back over disposition */
4173 state_updated = pvr2_hdw_state_update(hdw);
4174
Mike Isely1b9c18c2008-04-22 14:45:41 -03004175 analog_mode = (hdw->pathway_state != PVR2_PATHWAY_DIGITAL);
4176
Mike Isely681c7392007-11-26 01:48:52 -03004177 /* Update master state based upon all other states. */
4178 if (!hdw->flag_ok) {
4179 st = PVR2_STATE_DEAD;
4180 } else if (hdw->fw1_state != FW1_STATE_OK) {
4181 st = PVR2_STATE_COLD;
Mike Isely72998b72008-04-03 04:51:19 -03004182 } else if ((analog_mode ||
4183 hdw->hdw_desc->flag_digital_requires_cx23416) &&
4184 !hdw->state_encoder_ok) {
Mike Isely681c7392007-11-26 01:48:52 -03004185 st = PVR2_STATE_WARM;
Mike Isely1b9c18c2008-04-22 14:45:41 -03004186 } else if (hdw->flag_tripped ||
4187 (analog_mode && hdw->flag_decoder_missed)) {
Mike Isely681c7392007-11-26 01:48:52 -03004188 st = PVR2_STATE_ERROR;
Mike Isely62433e32008-04-22 14:45:40 -03004189 } else if (hdw->state_usbstream_run &&
Mike Isely1b9c18c2008-04-22 14:45:41 -03004190 (!analog_mode ||
Mike Isely62433e32008-04-22 14:45:40 -03004191 (hdw->state_encoder_run && hdw->state_decoder_run))) {
Mike Isely681c7392007-11-26 01:48:52 -03004192 st = PVR2_STATE_RUN;
4193 } else {
4194 st = PVR2_STATE_READY;
4195 }
4196 if (hdw->master_state != st) {
4197 pvr2_trace(PVR2_TRACE_STATE,
4198 "Device state change from %s to %s",
4199 pvr2_get_state_name(hdw->master_state),
4200 pvr2_get_state_name(st));
Mike Isely40381cb2008-04-22 14:45:42 -03004201 pvr2_led_ctrl(hdw,st == PVR2_STATE_RUN);
Mike Isely681c7392007-11-26 01:48:52 -03004202 hdw->master_state = st;
4203 state_updated = !0;
4204 callback_flag = !0;
4205 }
4206 if (state_updated) {
4207 /* Trigger anyone waiting on any state changes here. */
4208 wake_up(&hdw->state_wait_data);
4209 }
4210
4211 if (pvrusb2_debug & PVR2_TRACE_STBITS) {
4212 pvr2_hdw_state_log_state(hdw);
4213 }
4214 pvr2_trace(PVR2_TRACE_STBITS,
4215 "Drive state check DONE callback=%d",callback_flag);
4216
4217 return callback_flag;
4218}
4219
4220
4221/* Cause kernel thread to check / update driver state */
4222static void pvr2_hdw_state_sched(struct pvr2_hdw *hdw)
4223{
4224 if (hdw->state_stale) return;
4225 hdw->state_stale = !0;
4226 trace_stbit("state_stale",hdw->state_stale);
4227 queue_work(hdw->workqueue,&hdw->workpoll);
4228}
4229
4230
Mike Iselyd8554972006-06-26 20:58:46 -03004231int pvr2_hdw_gpio_get_dir(struct pvr2_hdw *hdw,u32 *dp)
4232{
4233 return pvr2_read_register(hdw,PVR2_GPIO_DIR,dp);
4234}
4235
4236
4237int pvr2_hdw_gpio_get_out(struct pvr2_hdw *hdw,u32 *dp)
4238{
4239 return pvr2_read_register(hdw,PVR2_GPIO_OUT,dp);
4240}
4241
4242
4243int pvr2_hdw_gpio_get_in(struct pvr2_hdw *hdw,u32 *dp)
4244{
4245 return pvr2_read_register(hdw,PVR2_GPIO_IN,dp);
4246}
4247
4248
4249int pvr2_hdw_gpio_chg_dir(struct pvr2_hdw *hdw,u32 msk,u32 val)
4250{
4251 u32 cval,nval;
4252 int ret;
4253 if (~msk) {
4254 ret = pvr2_read_register(hdw,PVR2_GPIO_DIR,&cval);
4255 if (ret) return ret;
4256 nval = (cval & ~msk) | (val & msk);
4257 pvr2_trace(PVR2_TRACE_GPIO,
4258 "GPIO direction changing 0x%x:0x%x"
4259 " from 0x%x to 0x%x",
4260 msk,val,cval,nval);
4261 } else {
4262 nval = val;
4263 pvr2_trace(PVR2_TRACE_GPIO,
4264 "GPIO direction changing to 0x%x",nval);
4265 }
4266 return pvr2_write_register(hdw,PVR2_GPIO_DIR,nval);
4267}
4268
4269
4270int pvr2_hdw_gpio_chg_out(struct pvr2_hdw *hdw,u32 msk,u32 val)
4271{
4272 u32 cval,nval;
4273 int ret;
4274 if (~msk) {
4275 ret = pvr2_read_register(hdw,PVR2_GPIO_OUT,&cval);
4276 if (ret) return ret;
4277 nval = (cval & ~msk) | (val & msk);
4278 pvr2_trace(PVR2_TRACE_GPIO,
4279 "GPIO output changing 0x%x:0x%x from 0x%x to 0x%x",
4280 msk,val,cval,nval);
4281 } else {
4282 nval = val;
4283 pvr2_trace(PVR2_TRACE_GPIO,
4284 "GPIO output changing to 0x%x",nval);
4285 }
4286 return pvr2_write_register(hdw,PVR2_GPIO_OUT,nval);
4287}
4288
4289
Mike Isely7fb20fa2008-04-22 14:45:37 -03004290unsigned int pvr2_hdw_get_input_available(struct pvr2_hdw *hdw)
4291{
4292 return hdw->input_avail_mask;
4293}
4294
4295
Mike Isely1cb03b72008-04-21 03:47:43 -03004296unsigned int pvr2_hdw_get_input_allowed(struct pvr2_hdw *hdw)
4297{
4298 return hdw->input_allowed_mask;
4299}
4300
4301
4302static int pvr2_hdw_set_input(struct pvr2_hdw *hdw,int v)
4303{
4304 if (hdw->input_val != v) {
4305 hdw->input_val = v;
4306 hdw->input_dirty = !0;
4307 }
4308
4309 /* Handle side effects - if we switch to a mode that needs the RF
4310 tuner, then select the right frequency choice as well and mark
4311 it dirty. */
4312 if (hdw->input_val == PVR2_CVAL_INPUT_RADIO) {
4313 hdw->freqSelector = 0;
4314 hdw->freqDirty = !0;
4315 } else if ((hdw->input_val == PVR2_CVAL_INPUT_TV) ||
4316 (hdw->input_val == PVR2_CVAL_INPUT_DTV)) {
4317 hdw->freqSelector = 1;
4318 hdw->freqDirty = !0;
4319 }
4320 return 0;
4321}
4322
4323
4324int pvr2_hdw_set_input_allowed(struct pvr2_hdw *hdw,
4325 unsigned int change_mask,
4326 unsigned int change_val)
4327{
4328 int ret = 0;
4329 unsigned int nv,m,idx;
4330 LOCK_TAKE(hdw->big_lock);
4331 do {
4332 nv = hdw->input_allowed_mask & ~change_mask;
4333 nv |= (change_val & change_mask);
4334 nv &= hdw->input_avail_mask;
4335 if (!nv) {
4336 /* No legal modes left; return error instead. */
4337 ret = -EPERM;
4338 break;
4339 }
4340 hdw->input_allowed_mask = nv;
4341 if ((1 << hdw->input_val) & hdw->input_allowed_mask) {
4342 /* Current mode is still in the allowed mask, so
4343 we're done. */
4344 break;
4345 }
4346 /* Select and switch to a mode that is still in the allowed
4347 mask */
4348 if (!hdw->input_allowed_mask) {
4349 /* Nothing legal; give up */
4350 break;
4351 }
4352 m = hdw->input_allowed_mask;
4353 for (idx = 0; idx < (sizeof(m) << 3); idx++) {
4354 if (!((1 << idx) & m)) continue;
4355 pvr2_hdw_set_input(hdw,idx);
4356 break;
4357 }
4358 } while (0);
4359 LOCK_GIVE(hdw->big_lock);
4360 return ret;
4361}
4362
4363
Mike Iselye61b6fc2006-07-18 22:42:18 -03004364/* Find I2C address of eeprom */
Adrian Bunk07e337e2006-06-30 11:30:20 -03004365static int pvr2_hdw_get_eeprom_addr(struct pvr2_hdw *hdw)
Mike Iselyd8554972006-06-26 20:58:46 -03004366{
4367 int result;
4368 LOCK_TAKE(hdw->ctl_lock); do {
Michael Krufky8d364362007-01-22 02:17:55 -03004369 hdw->cmd_buffer[0] = FX2CMD_GET_EEPROM_ADDR;
Mike Iselyd8554972006-06-26 20:58:46 -03004370 result = pvr2_send_request(hdw,
4371 hdw->cmd_buffer,1,
4372 hdw->cmd_buffer,1);
4373 if (result < 0) break;
4374 result = hdw->cmd_buffer[0];
4375 } while(0); LOCK_GIVE(hdw->ctl_lock);
4376 return result;
4377}
4378
4379
Mike Isely32ffa9a2006-09-23 22:26:52 -03004380int pvr2_hdw_register_access(struct pvr2_hdw *hdw,
Hans Verkuilf3d092b2007-02-23 20:55:14 -03004381 u32 match_type, u32 match_chip, u64 reg_id,
4382 int setFl,u64 *val_ptr)
Mike Isely32ffa9a2006-09-23 22:26:52 -03004383{
4384#ifdef CONFIG_VIDEO_ADV_DEBUG
Mike Isely32ffa9a2006-09-23 22:26:52 -03004385 struct pvr2_i2c_client *cp;
4386 struct v4l2_register req;
Mike Isely6d988162006-09-28 17:53:49 -03004387 int stat = 0;
4388 int okFl = 0;
Mike Isely32ffa9a2006-09-23 22:26:52 -03004389
Mike Isely201f5c92007-01-28 16:08:36 -03004390 if (!capable(CAP_SYS_ADMIN)) return -EPERM;
4391
Hans Verkuilf3d092b2007-02-23 20:55:14 -03004392 req.match_type = match_type;
4393 req.match_chip = match_chip;
Mike Isely32ffa9a2006-09-23 22:26:52 -03004394 req.reg = reg_id;
4395 if (setFl) req.val = *val_ptr;
4396 mutex_lock(&hdw->i2c_list_lock); do {
Trent Piephoe77e2c22007-10-10 05:37:42 -03004397 list_for_each_entry(cp, &hdw->i2c_clients, list) {
Mike Isely8481a752007-04-27 12:31:31 -03004398 if (!v4l2_chip_match_i2c_client(
4399 cp->client,
4400 req.match_type, req.match_chip)) {
Hans Verkuilf3d092b2007-02-23 20:55:14 -03004401 continue;
4402 }
Mike Isely32ffa9a2006-09-23 22:26:52 -03004403 stat = pvr2_i2c_client_cmd(
Trent Piepho52ebc762007-01-23 22:38:13 -03004404 cp,(setFl ? VIDIOC_DBG_S_REGISTER :
4405 VIDIOC_DBG_G_REGISTER),&req);
Mike Isely32ffa9a2006-09-23 22:26:52 -03004406 if (!setFl) *val_ptr = req.val;
Mike Isely6d988162006-09-28 17:53:49 -03004407 okFl = !0;
4408 break;
Mike Isely32ffa9a2006-09-23 22:26:52 -03004409 }
4410 } while (0); mutex_unlock(&hdw->i2c_list_lock);
Mike Isely6d988162006-09-28 17:53:49 -03004411 if (okFl) {
4412 return stat;
4413 }
Mike Isely32ffa9a2006-09-23 22:26:52 -03004414 return -EINVAL;
4415#else
4416 return -ENOSYS;
4417#endif
4418}
4419
4420
Mike Iselyd8554972006-06-26 20:58:46 -03004421/*
4422 Stuff for Emacs to see, in order to encourage consistent editing style:
4423 *** Local Variables: ***
4424 *** mode: c ***
4425 *** fill-column: 75 ***
4426 *** tab-width: 8 ***
4427 *** c-basic-offset: 8 ***
4428 *** End: ***
4429 */