staging/easycap: Add option to show conspicuous indication of signal loss
A new module parameter turns on the option of displaying a testcard when the analogue input signal is lost (more precisely: when the hardware detects no field/frame synchronization). This feature has been requested in the context of security cameras used at night. Signed-off-by: Mike Thomas <rmthomas@sciolus.org> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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849322a0f1
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@ -154,6 +154,7 @@
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#error video_isoc_buffer[.] will not be big enough
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#endif
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#define VIDEO_JUNK_TOLERATE VIDEO_ISOC_BUFFER_MANY
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#define VIDEO_LOST_TOLERATE 50
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/*---------------------------------------------------------------------------*/
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/*
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* VIDEO BUFFERS
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@ -344,6 +345,7 @@ int usec;
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int tolerate;
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int skip;
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int skipped;
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int lost[INPUT_MANY];
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int merit[180];
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struct timeval timeval0;
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@ -33,7 +33,9 @@
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#include "easycap_ioctl.h"
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int debug;
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int bars;
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module_param(debug, int, S_IRUGO | S_IWUSR);
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module_param(bars, int, S_IRUGO | S_IWUSR);
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/*---------------------------------------------------------------------------*/
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/*
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@ -868,7 +870,7 @@ return 0;
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void
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easycap_delete(struct kref *pkref)
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{
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int k, m, lost;
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int k, m, gone;
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int allocation_video_urb, allocation_video_page, allocation_video_struct;
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int allocation_audio_urb, allocation_audio_page, allocation_audio_struct;
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int registered_video, registered_audio;
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@ -941,7 +943,7 @@ for (k = 0; k < VIDEO_ISOC_BUFFER_MANY; k++) {
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JOM(4, "isoc video buffers freed: %i pages\n", m * (0x01 << VIDEO_ISOC_ORDER));
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/*---------------------------------------------------------------------------*/
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JOM(4, "freeing video field buffers.\n");
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lost = 0;
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gone = 0;
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for (k = 0; k < FIELD_BUFFER_MANY; k++) {
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for (m = 0; m < FIELD_BUFFER_SIZE/PAGE_SIZE; m++) {
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if ((void *)NULL != peasycap->field_buffer[k][m].pgo) {
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@ -949,14 +951,14 @@ for (k = 0; k < FIELD_BUFFER_MANY; k++) {
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(peasycap->field_buffer[k][m].pgo));
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peasycap->field_buffer[k][m].pgo = (void *)NULL;
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peasycap->allocation_video_page -= 1;
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lost++;
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gone++;
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}
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}
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}
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JOM(4, "video field buffers freed: %i pages\n", lost);
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JOM(4, "video field buffers freed: %i pages\n", gone);
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/*---------------------------------------------------------------------------*/
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JOM(4, "freeing video frame buffers.\n");
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lost = 0;
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gone = 0;
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for (k = 0; k < FRAME_BUFFER_MANY; k++) {
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for (m = 0; m < FRAME_BUFFER_SIZE/PAGE_SIZE; m++) {
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if ((void *)NULL != peasycap->frame_buffer[k][m].pgo) {
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@ -964,11 +966,11 @@ for (k = 0; k < FRAME_BUFFER_MANY; k++) {
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(peasycap->frame_buffer[k][m].pgo));
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peasycap->frame_buffer[k][m].pgo = (void *)NULL;
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peasycap->allocation_video_page -= 1;
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lost++;
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gone++;
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}
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}
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}
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JOM(4, "video frame buffers freed: %i pages\n", lost);
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JOM(4, "video frame buffers freed: %i pages\n", gone);
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/*---------------------------------------------------------------------------*/
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/*
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* FREE AUDIO.
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@ -1027,16 +1029,16 @@ JOM(4, "easysnd_delete(): isoc audio buffers freed: %i pages\n", \
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m * (0x01 << AUDIO_ISOC_ORDER));
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/*---------------------------------------------------------------------------*/
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JOM(4, "freeing audio buffers.\n");
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lost = 0;
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gone = 0;
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for (k = 0; k < peasycap->audio_buffer_page_many; k++) {
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if ((void *)NULL != peasycap->audio_buffer[k].pgo) {
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free_page((unsigned long)(peasycap->audio_buffer[k].pgo));
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peasycap->audio_buffer[k].pgo = (void *)NULL;
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peasycap->allocation_audio_page -= 1;
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lost++;
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gone++;
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}
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}
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JOM(4, "easysnd_delete(): audio buffers freed: %i pages\n", lost);
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JOM(4, "easysnd_delete(): audio buffers freed: %i pages\n", gone);
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/*---------------------------------------------------------------------------*/
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JOM(4, "freeing easycap structure.\n");
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allocation_video_urb = peasycap->allocation_video_urb;
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@ -1103,7 +1105,7 @@ else
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int
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easycap_dqbuf(struct easycap *peasycap, int mode)
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{
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int ifield, miss, rc;
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int input, ifield, miss, rc;
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JOT(8, "\n");
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@ -1114,6 +1116,36 @@ if (NULL == peasycap) {
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ifield = 0;
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JOM(8, "%i=ifield\n", ifield);
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/*---------------------------------------------------------------------------*/
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/*
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* CHECK FOR LOST INPUT SIGNAL.
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*
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* FOR THE FOUR-CVBS EasyCAP, THIS DOES NOT WORK AS EXPECTED.
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* IF INPUT 0 IS PRESENT AND LOCKED, UNPLUGGING INPUT 4 DOES NOT RESULT IN
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* SETTING BIT 0x40 ON REGISTER 0x1F, PRESUMABLY BECAUSE THERE IS FLYWHEELING
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* ON INPUT 0. THE UPSHOT IS:
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*
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* INPUT 0 PLUGGED, INPUT 4 PLUGGED => SCREEN 0 OK, SCREEN 4 OK
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* INPUT 0 PLUGGED, INPUT 4 UNPLUGGED => SCREEN 0 OK, SCREEN 4 BLACK
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* INPUT 0 UNPLUGGED, INPUT 4 PLUGGED => SCREEN 0 BARS, SCREEN 4 OK
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* INPUT 0 UNPLUGGED, INPUT 4 UNPLUGGED => SCREEN 0 BARS, SCREEN 4 BARS
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*/
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/*---------------------------------------------------------------------------*/
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input = peasycap->input;
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if (0 <= input && INPUT_MANY > input) {
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rc = read_saa(peasycap->pusb_device, 0x1F);
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if (0 <= rc) {
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if (rc & 0x40)
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peasycap->lost[input] += 1;
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else
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peasycap->lost[input] -= 2;
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if (0 > peasycap->lost[input])
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peasycap->lost[input] = 0;
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else if ((2 * VIDEO_LOST_TOLERATE) < peasycap->lost[input])
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peasycap->lost[input] = (2 * VIDEO_LOST_TOLERATE);
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}
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}
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/*---------------------------------------------------------------------------*/
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/*
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* WAIT FOR FIELD ifield (0 => TOP, 1 => BOTTOM)
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*/
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@ -1304,7 +1336,7 @@ struct signed_div_result sdr;
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void *pex, *pad;
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int kex, kad, mex, mad, rex, rad, rad2;
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int c2, c3, w2, w3, cz, wz;
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int rc, bytesperpixel, multiplier, much, more, over, rump, caches;
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int rc, bytesperpixel, multiplier, much, more, over, rump, caches, input;
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__u8 mask, margin;
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bool odd, isuy, decimatepixel, offerfields, badinput;
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@ -1314,6 +1346,7 @@ if ((struct easycap *)NULL == peasycap) {
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}
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badinput = false;
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input = 0x07 & peasycap->field_buffer[peasycap->field_read][0].input;
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JOM(8, "===== parity %i, input 0x%02X, field buffer %i --> " \
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"frame buffer %i\n", \
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@ -1337,8 +1370,10 @@ if (peasycap->field_read == peasycap->field_fill) {
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#if defined(EASYCAP_TESTCARD)
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easycap_testcard(peasycap, peasycap->field_read);
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#else
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if (0 != (0x0400 & peasycap->field_buffer[peasycap->field_read][0].kount))
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easycap_testcard(peasycap, peasycap->field_read);
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if (0 <= input && INPUT_MANY > input) {
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if (bars && VIDEO_LOST_TOLERATE <= peasycap->lost[input])
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easycap_testcard(peasycap, peasycap->field_read);
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}
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#endif /*EASYCAP_TESTCARD*/
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/*---------------------------------------------------------------------------*/
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@ -3491,6 +3526,8 @@ if (0 == bInterfaceNumber) {
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peasycap->frame_buffer_many = FRAME_BUFFER_MANY;
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for (k = 0; k < INPUT_MANY; k++)
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peasycap->lost[k] = 0;
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peasycap->skip = 0;
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peasycap->skipped = 0;
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peasycap->offerfields = 0;
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@ -4733,7 +4770,7 @@ easycap_module_init(void)
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int result;
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SAY("========easycap=======\n");
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JOT(4, "begins. %i=debug\n", debug);
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JOT(4, "begins. %i=debug %i=bars\n", debug, bars);
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SAY("version: " EASYCAP_DRIVER_VERSION "\n");
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/*---------------------------------------------------------------------------*/
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/*
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@ -4774,6 +4811,8 @@ MODULE_AUTHOR("R.M. Thomas <rmthomas@sciolus.org>");
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MODULE_DESCRIPTION(EASYCAP_DRIVER_DESCRIPTION);
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MODULE_VERSION(EASYCAP_DRIVER_VERSION);
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#if defined(EASYCAP_DEBUG)
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MODULE_PARM_DESC(debug, "debug: 0 (default), 1, 2,...");
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MODULE_PARM_DESC(debug, "Debug level: 0 (default),1,2,...,9");
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#endif /*EASYCAP_DEBUG*/
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MODULE_PARM_DESC(bars, \
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"Testcard bars on input signal failure: 0=>no, 1=>yes(default)");
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/*****************************************************************************/
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@ -29,37 +29,69 @@
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#include "easycap_debug.h"
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/*****************************************************************************/
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#define TESTCARD_BYTESPERLINE (2 * 1440)
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#define TESTCARD_BYTESPERLINE (2 * 720)
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void
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easycap_testcard(struct easycap *peasycap, int field_fill)
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easycap_testcard(struct easycap *peasycap, int field)
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{
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int total;
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int y, u, v, r, g, b;
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unsigned char uyvy[4];
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int i1, line, k, m, n, more, much, barwidth;
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int i1, line, k, m, n, more, much, barwidth, barheight;
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unsigned char bfbar[TESTCARD_BYTESPERLINE / 8], *p1, *p2;
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struct data_buffer *pfield_buffer;
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JOT(8, "%i=field_fill\n", field_fill);
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if ((TESTCARD_BYTESPERLINE / 2) < peasycap->width) {
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SAY("ERROR: image is too wide\n");
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if (NULL == peasycap) {
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SAY("ERROR: peasycap is NULL\n");
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return;
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}
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if (peasycap->width % 16) {
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SAY("ERROR: indivisible image width\n");
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JOM(8, "%i=field\n", field);
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switch (peasycap->width) {
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case 720:
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case 360: {
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barwidth = (2 * 720) / 8;
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break;
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}
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case 704:
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case 352: {
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barwidth = (2 * 704) / 8;
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break;
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}
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case 640:
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case 320: {
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barwidth = (2 * 640) / 8;
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break;
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}
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default: {
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SAM("ERROR: cannot set barwidth\n");
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return;
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}
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}
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if (TESTCARD_BYTESPERLINE < barwidth) {
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SAM("ERROR: barwidth is too large\n");
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return;
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}
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switch (peasycap->height) {
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case 576:
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case 288: {
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barheight = 576;
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break;
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}
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case 480:
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case 240: {
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barheight = 480;
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break;
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}
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default: {
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SAM("ERROR: cannot set barheight\n");
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return;
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}
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}
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total = 0;
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barwidth = (2 * peasycap->width) / 8;
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k = field_fill;
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k = field;
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m = 0;
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n = 0;
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for (line = 0; line < (peasycap->height / 2); line++) {
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for (line = 0; line < (barheight / 2); line++) {
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for (i1 = 0; i1 < 8; i1++) {
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r = (i1 * 256)/8;
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g = (i1 * 256)/8;
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@ -88,15 +120,15 @@ for (line = 0; line < (peasycap->height / 2); line++) {
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while (more) {
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if ((FIELD_BUFFER_SIZE/PAGE_SIZE) <= m) {
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SAY("ERROR: bad m reached\n");
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SAM("ERROR: bad m reached\n");
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return;
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}
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if (PAGE_SIZE < n) {
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SAY("ERROR: bad n reached\n"); return;
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SAM("ERROR: bad n reached\n"); return;
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}
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if (0 > more) {
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SAY("ERROR: internal fault\n");
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SAM("ERROR: internal fault\n");
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return;
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}
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@ -117,10 +149,6 @@ for (line = 0; line < (peasycap->height / 2); line++) {
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}
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}
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}
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JOT(8, "%i=total\n", total);
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if (total != peasycap->width * peasycap->height)
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SAY("ERROR: wrong number of bytes written: %i\n", total);
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return;
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}
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/*****************************************************************************/
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@ -375,10 +403,12 @@ int i1;
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unsigned char *p2;
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struct data_buffer *paudio_buffer;
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JOT(8, "%i=audio_fill\n", audio_fill);
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if (NULL == peasycap) {
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SAY("ERROR: peasycap is NULL\n");
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return;
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}
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JOM(8, "%i=audio_fill\n", audio_fill);
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paudio_buffer = &peasycap->audio_buffer[audio_fill];
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p2 = (unsigned char *)(paudio_buffer->pgo);
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for (i1 = 0; i1 < PAGE_SIZE; i1 += 4, p2 += 4) {
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*p2 = (unsigned char) (0x00FF & tones[i1/2]);
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