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26 Commits

Author SHA1 Message Date
Rolf Ahrenberg
60386835dd Updated for vdr-1.7.12. 2010-02-01 13:48:28 +02:00
Rolf Ahrenberg
38f4d3d9b8 Added Lithuanian translation (Thanks to Valdemaras Pipiras). 2009-12-14 16:47:16 +02:00
Rolf Ahrenberg
078f0552fc Fixed a typo. 2009-11-25 16:03:41 +02:00
Rolf Ahrenberg
1fd7c90c3b Updated Estonian translation (Thanks to Arthur Konovalov).
Updated version number.
2009-11-23 15:11:37 +02:00
Rolf Ahrenberg
44fa48c59f Added debug() and error() macros. 2009-10-01 12:13:35 +03:00
Rolf Ahrenberg
554dac9674 Increased video buffer size, added buffer timeouts and fixed deleting AC3 buffer data. 2009-09-29 15:31:32 +03:00
Rolf Ahrenberg
8267abcc3b Revert "Changed cRingBufferLinear to cRingBufferFrame."
This reverts commit edb8b4090a.
2009-09-27 16:59:42 +03:00
Rolf Ahrenberg
ea4561a874 Silenced a compilation warning. 2009-09-26 12:15:26 +03:00
Rolf Ahrenberg
56b9b89204 Cleaned up translations and warnings. 2009-09-26 11:54:31 +03:00
Rolf Ahrenberg
3d994be0b7 Cosmetics. 2009-09-25 22:31:12 +03:00
Rolf Ahrenberg
b7d44e730e Added Chinese translation (Thanks to NanFeng). 2009-09-24 17:28:02 +03:00
Rolf Ahrenberg
edb8b4090a Changed cRingBufferLinear to cRingBufferFrame. 2009-09-22 20:37:15 +03:00
Rolf Ahrenberg
21d9c20beb Removed bitstream parsing from Receive() method.
Refactored the error logging from unimplemented ioctl functions.
2009-09-22 08:44:30 +03:00
Rolf Ahrenberg
080f390a75 Remove compilation warnings. 2009-09-16 12:05:15 +03:00
Rolf Ahrenberg
fefb7f0fde Removed error logging from unimplemented ioctl functions. 2009-09-16 09:37:51 +03:00
Rolf Ahrenberg
ba133f15f8 Changed H.264 parser to show display aspect ratio. 2009-09-15 10:57:53 +03:00
Rolf Ahrenberg
4e87693de6 Tweaked symbols. 2009-09-05 01:22:27 +03:00
Rolf Ahrenberg
8ea980a60f Fixed symbols. 2009-09-05 01:05:17 +03:00
Rolf Ahrenberg
5635c2dc52 Fixed debug print output. 2009-09-04 10:47:19 +03:00
Rolf Ahrenberg
7551788969 Changed bitrate to bit/s instead of Mbit/s. 2009-09-04 08:44:33 +03:00
Rolf Ahrenberg
6b6169d5f3 Disabled temporarily SEI in H.264 bitstream parser. 2009-09-03 18:24:51 +03:00
Rolf Ahrenberg
22644e6ae4 Header cleanup. 2009-09-03 18:20:31 +03:00
Rolf Ahrenberg
3fc73af3d5 Added non-strict limits for 1080/720/576/480 format symbols. 2009-09-03 18:15:04 +03:00
Rolf Ahrenberg
c07abc7ed5 Added 1080/720/576/480 symbols into status window. 2009-09-02 15:58:30 +03:00
Rolf Ahrenberg
e57b36a151 Fixed H.264 bitstream parser.
Added a mutex to receiver class.
2009-09-01 15:30:48 +03:00
Rolf Ahrenberg
453ca7a2a5 Fixed H.264 bitstream parsing. 2009-08-31 19:12:15 +03:00
23 changed files with 2194 additions and 422 deletions

19
HISTORY
View File

@@ -370,3 +370,22 @@ VDR Plugin 'femon' Revision History
- Removed OSD offset and height options.
- Added PES assembler.
- Added bitstream parsers for all codecs.
2009-09-04: Version 1.7.4
- Fixed H.264 bitstream parser.
- Added a mutex to receiver class.
- Added 1080/720/576/480 format symbols into status window.
2009-10-01: Version 1.7.5
- Changed H.264 parser to show display aspect ratio.
- Removed error logging from unimplemented ioctl functions.
- Removed bitstream parsing from Receive() method.
- Added Chinese translation (Thanks to NanFeng).
2010-02-01: Version 1.7.6
- Updated for vdr-1.7.12.
- Updated Estonian translation (Thanks to Arthur Konovalov).
- Added Lithuanian translation (Thanks to Valdemaras Pipiras).

16
femon.c
View File

@@ -14,11 +14,11 @@
#include "femonservice.h"
#include "femontools.h"
#if defined(APIVERSNUM) && APIVERSNUM < 10700
#error "VDR-1.7.0 API version or greater is required!"
#if defined(APIVERSNUM) && APIVERSNUM < 10712
#error "VDR-1.7.12 API version or greater is required!"
#endif
static const char VERSION[] = "1.7.3";
static const char VERSION[] = "1.7.6";
static const char DESCRIPTION[] = trNOOP("DVB Signal Information Monitor (OSD)");
static const char MAINMENUENTRY[] = trNOOP("Signal Information");
@@ -50,13 +50,13 @@ cPluginFemon::cPluginFemon()
// Initialize any member variables here.
// DON'T DO ANYTHING ELSE THAT MAY HAVE SIDE EFFECTS, REQUIRE GLOBAL
// VDR OBJECTS TO EXIST OR PRODUCE ANY OUTPUT!
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
}
cPluginFemon::~cPluginFemon()
{
// Clean up after yourself!
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
}
const char *cPluginFemon::CommandLineHelp(void)
@@ -96,7 +96,7 @@ void cPluginFemon::Housekeeping(void)
cOsdObject *cPluginFemon::MainMenuAction(void)
{
// Perform the action when selected from the main VDR menu.
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
if (cReplayControl::NowReplaying() || (Channels.Count() <= 0))
Skins.Message(mtInfo, tr("Femon not available"));
else
@@ -274,7 +274,7 @@ public:
cMenuFemonSetup::cMenuFemonSetup(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
dispmodes[eFemonModeBasic] = tr("basic");
dispmodes[eFemonModeTransponder] = tr("transponder");
dispmodes[eFemonModeStream] = tr("stream");
@@ -353,7 +353,7 @@ void cMenuFemonSetup::Setup(void)
void cMenuFemonSetup::Store(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
femonConfig = data;
SetupStore("HideMenu", femonConfig.hidemenu);
SetupStore("DisplayMode", femonConfig.displaymode);

View File

@@ -89,7 +89,7 @@ enum eAudioCodingMode {
typedef struct audio_info {
eAudioCodec codec; // enum
double bitrate; // kbit/s or eAudioBitrate
double bitrate; // bit/s or eAudioBitrate
int samplingFrequency; // Hz or eAudioSamplingFrequency
int channelMode; // eAudioChannelMode
} audio_info_t;

View File

@@ -3,32 +3,52 @@
*
* See the README file for copyright information and how to reach the author.
*
* The original NAL SPS parsing and bitstream functions are taken from
* vdr-xineliboutput plugin by Petri Hintukainen.
*/
#include "femontools.h"
#include "femonh264.h"
const eVideoAspectRatio cFemonH264::s_AspectRatios[] =
const cFemonH264::t_DAR cFemonH264::s_DAR[] =
{
VIDEO_ASPECT_RATIO_INVALID,
VIDEO_ASPECT_RATIO_1_1,
VIDEO_ASPECT_RATIO_12_11,
VIDEO_ASPECT_RATIO_10_11,
VIDEO_ASPECT_RATIO_16_11,
VIDEO_ASPECT_RATIO_40_33,
VIDEO_ASPECT_RATIO_24_11,
VIDEO_ASPECT_RATIO_20_11,
VIDEO_ASPECT_RATIO_32_11,
VIDEO_ASPECT_RATIO_80_33,
VIDEO_ASPECT_RATIO_18_11,
VIDEO_ASPECT_RATIO_15_11,
VIDEO_ASPECT_RATIO_64_33,
VIDEO_ASPECT_RATIO_160_99,
VIDEO_ASPECT_RATIO_4_3,
VIDEO_ASPECT_RATIO_3_2,
VIDEO_ASPECT_RATIO_2_1
{ VIDEO_ASPECT_RATIO_1_1, 100 },
{ VIDEO_ASPECT_RATIO_4_3, 133 },
{ VIDEO_ASPECT_RATIO_16_9, 177 },
{ VIDEO_ASPECT_RATIO_2_21_1, 221 },
{ VIDEO_ASPECT_RATIO_12_11, 109 },
{ VIDEO_ASPECT_RATIO_10_11, 90 },
{ VIDEO_ASPECT_RATIO_16_11, 145 },
{ VIDEO_ASPECT_RATIO_40_33, 121 },
{ VIDEO_ASPECT_RATIO_24_11, 218 },
{ VIDEO_ASPECT_RATIO_20_11, 181 },
{ VIDEO_ASPECT_RATIO_32_11, 290 },
{ VIDEO_ASPECT_RATIO_80_33, 242 },
{ VIDEO_ASPECT_RATIO_18_11, 163 },
{ VIDEO_ASPECT_RATIO_15_11, 136 },
{ VIDEO_ASPECT_RATIO_64_33, 193 },
{ VIDEO_ASPECT_RATIO_160_99, 161 },
{ VIDEO_ASPECT_RATIO_3_2, 150 },
{ VIDEO_ASPECT_RATIO_2_1, 200 }
};
const cFemonH264::t_SAR cFemonH264::s_SAR[] =
{
{ 0, 0 }, // VIDEO_ASPECT_RATIO_INVALID
{ 1, 1 }, // VIDEO_ASPECT_RATIO_1_1
{ 12, 11 }, // VIDEO_ASPECT_RATIO_12_11
{ 10, 11 }, // VIDEO_ASPECT_RATIO_10_11
{ 16, 11 }, // VIDEO_ASPECT_RATIO_16_11
{ 40, 33 }, // VIDEO_ASPECT_RATIO_40_33
{ 24, 11 }, // VIDEO_ASPECT_RATIO_24_11
{ 20, 11 }, // VIDEO_ASPECT_RATIO_20_11
{ 32, 11 }, // VIDEO_ASPECT_RATIO_32_11
{ 80, 33 }, // VIDEO_ASPECT_RATIO_80_33
{ 18, 11 }, // VIDEO_ASPECT_RATIO_18_11
{ 15, 11 }, // VIDEO_ASPECT_RATIO_15_11
{ 64, 33 }, // VIDEO_ASPECT_RATIO_64_33
{ 160, 99 }, // VIDEO_ASPECT_RATIO_160_99
{ 4, 3 }, // VIDEO_ASPECT_RATIO_4_3
{ 3, 2 }, // VIDEO_ASPECT_RATIO_3_2
{ 2, 1 } // VIDEO_ASPECT_RATIO_2_1
};
const eVideoFormat cFemonH264::s_VideoFormats[] =
@@ -58,8 +78,11 @@ cFemonH264::cFemonH264(cFemonVideoIf *videohandler)
m_Scan(VIDEO_SCAN_INVALID),
m_CpbDpbDelaysPresentFlag(false),
m_PicStructPresentFlag(false),
m_FrameMbsOnlyFlag(false),
m_MbAdaptiveFrameFieldFlag(false),
m_TimeOffsetLength(0)
{
reset();
}
cFemonH264::~cFemonH264()
@@ -69,7 +92,7 @@ cFemonH264::~cFemonH264()
bool cFemonH264::processVideo(const uint8_t *buf, int len)
{
uint8_t nal_data[len];
bool aud_found = false, sps_found = false, sei_found = false;
bool aud_found = false, sps_found = false, sei_found = true; // SEI temporarily disabled!
const uint8_t *start = buf;
const uint8_t *end = start + len;
@@ -82,6 +105,8 @@ bool cFemonH264::processVideo(const uint8_t *buf, int len)
buf += PesPayloadOffset(buf);
start = buf;
reset();
for (;;) {
int consumed = 0;
@@ -94,7 +119,7 @@ bool cFemonH264::processVideo(const uint8_t *buf, int len)
if (!aud_found) {
switch (buf[4] >> 5) {
case 0: case 3: case 5: // I_FRAME
//Dprintf("H.264: Found NAL AUD at offset %d/%d", buf - start, len);
//debug("H.264: Found NAL AUD at offset %d/%d\n", int(buf - start), len);
aud_found = true;
break;
case 1: case 4: case 6: // P_FRAME;
@@ -107,24 +132,24 @@ bool cFemonH264::processVideo(const uint8_t *buf, int len)
case NAL_SPS:
if (!sps_found) {
//Dprintf("H.264: Found NAL SPS at offset %d/%d", buf - start, len);
//debug("H.264: Found NAL SPS at offset %d/%d\n", int(buf - start), len);
int nal_len = nalUnescape(nal_data, buf + 4, int(end - buf - 4));
consumed = parseSPS(nal_data, nal_len);
if (consumed > 0)
sps_found = true;
}
break;
#if 0
case NAL_SEI:
if (!sei_found) {
//Dprintf("H.264: Found NAL SEI at offset %d/%d", buf - start, len);
//debug("H.264: Found NAL SEI at offset %d/%d\n", iny(buf - start), len);
int nal_len = nalUnescape(nal_data, buf + 4, int(end - buf - 4));
consumed = parseSEI(nal_data, nal_len);
if (consumed > 0)
sei_found = true;
}
break;
#endif
default:
break;
}
@@ -138,15 +163,15 @@ bool cFemonH264::processVideo(const uint8_t *buf, int len)
if (aud_found) {
m_VideoHandler->SetVideoCodec(VIDEO_CODEC_H264);
if (sps_found) {
//Dprintf("H.264 SPS: -> video size %dx%d, aspect %d format %d", m_Width, m_Height, m_AspectRatio, m_Format);
//debug("H.264 SPS: size %dx%d, aspect %d format %d framerate %.2f bitrate %.0f\n", m_Width, m_Height, m_AspectRatio, m_Format, m_FrameRate, m_BitRate);
m_VideoHandler->SetVideoFormat(m_Format);
m_VideoHandler->SetVideoSize(m_Width, m_Height);
m_VideoHandler->SetVideoAspectRatio(m_AspectRatio);
}
if (sei_found) {
//Dprintf("H.264 SEI: -> stream bitrate %.1f, frame rate %.1f scan %d", m_BitRate, m_FrameRate, m_Scan);
m_VideoHandler->SetVideoFramerate(m_FrameRate);
m_VideoHandler->SetVideoBitrate(m_BitRate);
}
if (sei_found) {
//debug("H.264 SEI: scan %d\n", m_Scan);
m_VideoHandler->SetVideoScan(m_Scan);
}
}
@@ -154,6 +179,15 @@ bool cFemonH264::processVideo(const uint8_t *buf, int len)
return aud_found;
}
void cFemonH264::reset()
{
m_CpbDpbDelaysPresentFlag = false;
m_PicStructPresentFlag = false;
m_FrameMbsOnlyFlag = false;
m_MbAdaptiveFrameFieldFlag = false;
m_TimeOffsetLength = 0;
}
const uint8_t *cFemonH264::nextStartCode(const uint8_t *start, const uint8_t *end)
{
for (end -= 3; start < end; ++start) {
@@ -187,34 +221,252 @@ int cFemonH264::nalUnescape(uint8_t *dst, const uint8_t *src, int len)
int cFemonH264::parseSPS(const uint8_t *buf, int len)
{
int profile_idc, pic_order_cnt_type, frame_mbs_only, i, j;
int profile_idc, level_idc, constraint_set3_flag, pic_order_cnt_type, i, j;
cBitStream bs(buf, len);
unsigned int width = m_Width;
unsigned int height = m_Height;
uint32_t width = m_Width;
uint32_t height = m_Height;
eVideoAspectRatio aspect_ratio = m_AspectRatio;
eVideoFormat format = m_Format;
double frame_rate = m_FrameRate;
double bit_rate = m_BitRate;
bool cpb_dpb_delays_present_flag = m_CpbDpbDelaysPresentFlag;
bool pic_struct_present_flag = m_PicStructPresentFlag;
unsigned int time_offset_length = m_TimeOffsetLength;
bool frame_mbs_only_flag = m_FrameMbsOnlyFlag;
bool mb_adaptive_frame_field_flag = m_MbAdaptiveFrameFieldFlag;
uint32_t time_offset_length = m_TimeOffsetLength;
profile_idc = bs.getU8();
//Dprintf("H.264 SPS: profile_idc %d", profile_idc);
bs.skipBits(16);
profile_idc = bs.getU8(); // profile_idc
bs.skipBit(); // constraint_set0_flag
bs.skipBit(); // constraint_set1_flag
bs.skipBit(); // constraint_set2_flag
constraint_set3_flag = bs.getBit(); // constraint_set3_flag
bs.skipBits(4); // reserved_zero_4bits
level_idc = bs.getU8(); // level_idc
bs.skipUeGolomb(); // seq_parameter_set_id
if (profile_idc >= 100) {
//debug("H.264 SPS: profile_idc %d level_idc %d\n", profile_idc, level_idc);
switch (profile_idc) {
case 66: // baseline profile
case 77: // main profile
case 88: // extended profile
switch (level_idc) {
case 10: // level 1.0
bit_rate = 64000;
break;
case 11: // level 1b / 1.1
bit_rate = constraint_set3_flag ? 128000 : 192000;
break;
case 12: // level 1.2
bit_rate = 384000;
break;
case 13: // level 1.3
bit_rate = 768000;
break;
case 20: // level 2.0
bit_rate = 2000000;
break;
case 21: // level 2.1
bit_rate = 4000000;
break;
case 22: // level 2.2
bit_rate = 4000000;
break;
case 30: // level 3.0
bit_rate = 10000000;
break;
case 31: // level 3.1
bit_rate = 14000000;
break;
case 32: // level 3.2
bit_rate = 20000000;
break;
case 40: // level 4.0
bit_rate = 20000000;
break;
case 41: // level 4.1
bit_rate = 50000000;
break;
case 42: // level 4.2
bit_rate = 50000000;
break;
case 50: // level 5.0
bit_rate = 135000000;
break;
case 51: // level 5.1
bit_rate = 240000000;
break;
default:
break;
}
break;
case 100: // high profile
switch (level_idc) {
case 10: // level 1.0
bit_rate = 80000;
break;
case 11: // level 1b / 1.1
bit_rate = constraint_set3_flag ? 160000 : 240000;
break;
case 12: // level 1.2
bit_rate = 480000;
break;
case 13: // level 1.3
bit_rate = 960000;
break;
case 20: // level 2.0
bit_rate = 2500000;
break;
case 21: // level 2.1
bit_rate = 5000000;
break;
case 22: // level 2.2
bit_rate = 5000000;
break;
case 30: // level 3.0
bit_rate = 12500000;
break;
case 31: // level 3.1
bit_rate = 17500000;
break;
case 32: // level 3.2
bit_rate = 25000000;
break;
case 40: // level 4.0
bit_rate = 25000000;
break;
case 41: // level 4.1
bit_rate = 62500000;
break;
case 42: // level 4.2
bit_rate = 62500000;
break;
case 50: // level 5.0
bit_rate = 168750000;
break;
case 51: // level 5.1
bit_rate = 300000000;
break;
default:
break;
}
break;
case 110: // high 10 profile
switch (level_idc) {
case 10: // level 1.0
bit_rate = 192000;
break;
case 11: // level 1b / 1.1
bit_rate = constraint_set3_flag ? 384000 : 576000;
break;
case 12: // level 1.2
bit_rate = 115200;
break;
case 13: // level 1.3
bit_rate = 2304000;
break;
case 20: // level 2.0
bit_rate = 6000000;
break;
case 21: // level 2.1
bit_rate = 12000000;
break;
case 22: // level 2.2
bit_rate = 12000000;
break;
case 30: // level 3.0
bit_rate = 30000000;
break;
case 31: // level 3.1
bit_rate = 42000000;
break;
case 32: // level 3.2
bit_rate = 60000000;
break;
case 40: // level 4.0
bit_rate = 60000000;
break;
case 41: // level 4.1
bit_rate = 150000000;
break;
case 42: // level 4.2
bit_rate = 150000000;
break;
case 50: // level 5.0
bit_rate = 405000000;
break;
case 51: // level 5.1
bit_rate = 720000000;
break;
default:
break;
}
break;
case 122: // high 4:2:2 profile
case 144: // high 4:4:4 profile
switch (level_idc) {
case 10: // level 1.0
bit_rate = 256000;
break;
case 11: // level 1b / 1.1
bit_rate = constraint_set3_flag ? 512000 : 768000;
break;
case 12: // level 1.2
bit_rate = 1536000;
break;
case 13: // level 1.3
bit_rate = 3072000;
break;
case 20: // level 2.0
bit_rate = 8000000;
break;
case 21: // level 2.1
bit_rate = 16000000;
break;
case 22: // level 2.2
bit_rate = 16000000;
break;
case 30: // level 3.0
bit_rate = 40000000;
break;
case 31: // level 3.1
bit_rate = 56000000;
break;
case 32: // level 3.2
bit_rate = 80000000;
break;
case 40: // level 4.0
bit_rate = 80000000;
break;
case 41: // level 4.1
bit_rate = 200000000;
break;
case 42: // level 4.2
bit_rate = 200000000;
break;
case 50: // level 5.0
bit_rate = 540000000;
break;
case 51: // level 5.1
bit_rate = 960000000;
break;
default:
break;
}
break;
default:
break;
}
if ((profile_idc == 100) || (profile_idc == 110) || (profile_idc == 122) || (profile_idc == 144)) {
if (bs.getUeGolomb() == 3) // chroma_format_idc
bs.skipBit(); // residual_colour_transform_flag
bs.skipUeGolomb(); // bit_depth_luma - 8
bs.skipUeGolomb(); // bit_depth_chroma - 8
bs.skipBit(); // transform_bypass
if (bs.getBit()) { // seq_scaling_matrix_present
for (i = 0; i < 8; i++) {
if (bs.getBit()) { // seq_scaling_list_present
bs.skipUeGolomb(); // bit_depth_luma_minus8
bs.skipUeGolomb(); // bit_depth_chroma_minus8
bs.skipBit(); // qpprime_y_zero_transform_bypass_flag
if (bs.getBit()) { // seq_scaling_matrix_present_flag
for (i = 0; i < 8; ++i) {
if (bs.getBit()) { // seq_scaling_list_present_flag[i]
int last = 8, next = 8, size = (i < 6) ? 16 : 64;
for (j = 0; j < size; j++) {
for (j = 0; j < size; ++j) {
if (next)
next = (last + bs.getSeGolomb()) & 0xff;
last = next ?: last;
@@ -223,67 +475,75 @@ int cFemonH264::parseSPS(const uint8_t *buf, int len)
}
}
}
bs.skipUeGolomb(); // log2_max_frame_num - 4
pic_order_cnt_type = bs.getUeGolomb();
bs.skipUeGolomb(); // log2_max_frame_num_minus4
pic_order_cnt_type = bs.getUeGolomb(); // pic_order_cnt_type
if (pic_order_cnt_type == 0)
bs.skipUeGolomb(); // log2_max_poc_lsb - 4
bs.skipUeGolomb(); // log2_max_pic_order_cnt_lsb_minus4
else if (pic_order_cnt_type == 1) {
bs.skipBit(); // delta_pic_order_always_zero
bs.skipSeGolomb(); // offset_for_non_ref_pic
bs.skipSeGolomb(); // offset_for_top_to_bottom_field
j = bs.getUeGolomb(); // num_ref_frames_in_pic_order_cnt_cycle
for (i = 0; i < j; i++)
for (i = 0; i < j; ++i)
bs.skipSeGolomb(); // offset_for_ref_frame[i]
}
bs.skipUeGolomb(); // ref_frames
bs.skipBit(); // gaps_in_frame_num_allowed
width = bs.getUeGolomb() + 1; // mbs
height = bs.getUeGolomb() + 1; // mbs
frame_mbs_only = bs.getBit();
//Dprintf("H.264 SPS: pic_width: %u mbs", width);
//Dprintf("H.264 SPS: pic_height: %u mbs", height);
//Dprintf("H.264 SPS: frame only flag: %d", frame_mbs_only);
bs.skipUeGolomb(); // num_ref_frames
bs.skipBit(); // gaps_in_frame_num_value_allowed_flag
width = bs.getUeGolomb() + 1; // pic_width_in_mbs_minus1
height = bs.getUeGolomb() + 1; // pic_height_in_mbs_minus1
frame_mbs_only_flag = bs.getBit(); // frame_mbs_only_flag
//debug("H.264 SPS: pic_width: %u mbs\n", width);
//debug("H.264 SPS: pic_height: %u mbs\n", height);
//debug("H.264 SPS: frame only flag: %d\n", frame_mbs_only_flag);
width *= 16;
height *= 16 * (2 - frame_mbs_only);
if (!frame_mbs_only) {
if (bs.getBit()) { // mb_adaptive_frame_field_flag
//Dprintf("H.264 SPS: MBAFF");
}
}
height *= 16 * (frame_mbs_only_flag ? 1 : 2);
if (!frame_mbs_only_flag)
mb_adaptive_frame_field_flag = bs.getBit(); // mb_adaptive_frame_field_flag
bs.skipBit(); // direct_8x8_inference_flag
if (bs.getBit()) { // frame_cropping_flag
uint32_t crop_left = bs.getUeGolomb();
uint32_t crop_right = bs.getUeGolomb();
uint32_t crop_top = bs.getUeGolomb();
uint32_t crop_bottom = bs.getUeGolomb();
//Dprintf("H.264 SPS: cropping %d %d %d %d", crop_left, crop_top, crop_right, crop_bottom);
width -= 2 * (crop_left + crop_right);
if (frame_mbs_only)
height -= 2 * (crop_top + crop_bottom);
else
height -= 4 * (crop_top + crop_bottom);
}
uint32_t crop_left, crop_right, crop_top, crop_bottom;
crop_left = bs.getUeGolomb(); // frame_crop_left_offset
crop_right = bs.getUeGolomb(); // frame_crop_rigth_offset
crop_top = bs.getUeGolomb(); // frame_crop_top_offset
crop_bottom = bs.getUeGolomb(); // frame_crop_bottom_offset
//debug("H.264 SPS: cropping %d %d %d %d\n", crop_left, crop_top, crop_right, crop_bottom);
width -= 2 * (crop_left + crop_right);
if (frame_mbs_only_flag)
height -= 2 * (crop_top + crop_bottom);
else
height -= 4 * (crop_top + crop_bottom);
}
// VUI parameters
if (bs.getBit()) { // vui_parameters_present_flag
if (bs.getBit()) { // aspect_ratio_info_present
uint32_t aspect_ratio_idc = bs.getU8();
//Dprintf("H.264 SPS: aspect_ratio_idc %d", aspect_ratio_idc);
uint32_t aspect_ratio_idc, sar_width = 0, sar_height = 0;
aspect_ratio_idc = bs.getU8(); // aspect_ratio_idc
//debug("H.264 SPS: aspect_ratio_idc %d\n", aspect_ratio_idc);
if (aspect_ratio_idc == 255) { // extended sar
bs.skipBit(); // sar_width
bs.skipBit(); // sar_height
aspect_ratio = VIDEO_ASPECT_RATIO_EXTENDED;
//Dprintf("H.264 SPS: aspect ratio extended");
sar_width = bs.getU16(); // sar_width
sar_height = bs.getU16(); // sar_height
}
else if (aspect_ratio_idc < sizeof(s_AspectRatios) / sizeof(s_AspectRatios[0])) {
aspect_ratio = s_AspectRatios[aspect_ratio_idc];
//Dprintf("H.264 SPS: -> aspect ratio %d", aspect_ratio);
else if (aspect_ratio_idc < ELEMENTS(s_SAR)) {
sar_width = s_SAR[aspect_ratio_idc].w;
sar_height = s_SAR[aspect_ratio_idc].h;
}
if (sar_width && sar_height) {
int index = -1, ratio = int(100.0L * sar_width * width / sar_height / height);
for (unsigned int i = 0; i < ELEMENTS(s_DAR); ++i) {
if (s_DAR[i].ratio == ratio) {
index = i;
break;
}
}
if (index < 0) {
if (aspect_ratio_idc == 255)
aspect_ratio = VIDEO_ASPECT_RATIO_EXTENDED;
else
aspect_ratio = VIDEO_ASPECT_RATIO_INVALID;
}
else
aspect_ratio = s_DAR[index].dar;
//debug("H.264 SPS: DAR %dx%d (%d)\n", sar_width, sar_height, aspect_ratio);
}
}
if (bs.getBit()) // overscan_info_present_flag
@@ -293,10 +553,9 @@ int cFemonH264::parseSPS(const uint8_t *buf, int len)
video_format = bs.getBits(3); // video_format
if (video_format < sizeof(s_VideoFormats) / sizeof(s_VideoFormats[0])) {
format = s_VideoFormats[video_format];
//Dprintf("H.264 SPS: -> video format %d", format);
//debug("H.264 SPS: video format %d\n", format);
}
bs.skipBit(); // video_full_range_flag
bs.skipBit(); // video_full_range_flag
if (bs.getBit()) { // colour_description_present_flag
bs.skipBits(8); // colour_primaries
bs.skipBits(8); // transfer_characteristics
@@ -308,8 +567,11 @@ int cFemonH264::parseSPS(const uint8_t *buf, int len)
bs.skipUeGolomb(); // chroma_sample_loc_type_bottom_field
}
if (bs.getBit()) { // timing_info_present_flag
bs.skipBits(32); // num_units_in_tick
bs.skipBits(32); // time_scale
uint32_t num_units_in_tick, time_scale;
num_units_in_tick = bs.getU32(); // num_units_in_tick
time_scale = bs.getU32(); // time_scale
if (num_units_in_tick > 0)
frame_rate = time_scale / num_units_in_tick;
bs.skipBit(); // fixed_frame_rate_flag
}
int nal_hrd_parameters_present_flag = bs.getBit(); // nal_hrd_parameters_present_flag
@@ -331,18 +593,18 @@ int cFemonH264::parseSPS(const uint8_t *buf, int len)
int vlc_hrd_parameters_present_flag = bs.getBit(); // vlc_hrd_parameters_present_flag
if (vlc_hrd_parameters_present_flag) {
int cpb_cnt_minus1;
cpb_cnt_minus1 = bs.getUeGolomb(); // cpb_cnt_minus1
bs.skipBits(4); // bit_rate_scale
bs.skipBits(4); // cpb_size_scale
cpb_cnt_minus1 = bs.getUeGolomb(); // cpb_cnt_minus1
bs.skipBits(4); // bit_rate_scale
bs.skipBits(4); // cpb_size_scale
for (int i = 0; i < cpb_cnt_minus1; ++i) {
bs.skipUeGolomb(); // bit_rate_value_minus1[i]
bs.skipUeGolomb(); // cpb_size_value_minus1[i]
bs.skipBit(); // cbr_flag[i]
bs.skipUeGolomb(); // bit_rate_value_minus1[i]
bs.skipUeGolomb(); // cpb_size_value_minus1[i]
bs.skipBit(); // cbr_flag[i]
}
bs.skipBits(5); // initial_cpb_removal_delay_length_minus1
bs.skipBits(5); // cpb_removal_delay_length_minus1
bs.skipBits(5); // dpb_output_delay_length_minus1
time_offset_length = bs.getBits(5); // time_offset_length
bs.skipBits(5); // initial_cpb_removal_delay_length_minus1
bs.skipBits(5); // cpb_removal_delay_length_minus1
bs.skipBits(5); // dpb_output_delay_length_minus1
time_offset_length = bs.getBits(5);// time_offset_length
}
cpb_dpb_delays_present_flag = (nal_hrd_parameters_present_flag | vlc_hrd_parameters_present_flag);
if (cpb_dpb_delays_present_flag)
@@ -363,8 +625,12 @@ int cFemonH264::parseSPS(const uint8_t *buf, int len)
m_Height = height;
m_AspectRatio = aspect_ratio;
m_Format = format;
m_FrameRate = frame_rate;
m_BitRate = bit_rate;
m_CpbDpbDelaysPresentFlag = cpb_dpb_delays_present_flag;
m_PicStructPresentFlag = pic_struct_present_flag;
m_FrameMbsOnlyFlag = frame_mbs_only_flag;
m_MbAdaptiveFrameFieldFlag = mb_adaptive_frame_field_flag;
m_TimeOffsetLength = time_offset_length;
return (bs.getIndex() / 8);
@@ -375,24 +641,20 @@ int cFemonH264::parseSEI(const uint8_t *buf, int len)
int num_referenced_subseqs, i;
cBitStream bs(buf, len);
double frame_rate = m_FrameRate;
double bit_rate = m_BitRate;
eVideoScan scan = m_Scan;
while ((bs.getIndex() * 8 + 16) < len) { // sei_message
int lastByte, payloadSize = 0, payloadType = 0;
// last_payload_type_byte
do {
lastByte = bs.getU8() & 0xFF;
payloadType += lastByte;
} while (lastByte == 0xFF);
} while (lastByte == 0xFF); // last_payload_type_byte
// last_payload_size_byte
do {
lastByte = bs.getU8() & 0xFF;
payloadSize += lastByte;
} while (lastByte == 0xFF);
} while (lastByte == 0xFF); // last_payload_size_byte
switch (payloadType) { // sei_payload
case 1: // pic_timing
@@ -400,10 +662,34 @@ int cFemonH264::parseSEI(const uint8_t *buf, int len)
bs.skipUeGolomb(); // cpb_removal_delay
bs.skipUeGolomb(); // dpb_output_delay
}
if (m_PicStructPresentFlag) { // pic_struct_present_flag
unsigned int pic_struct = bs.getBits(4); // pic_struct
if (pic_struct >= (sizeof(s_SeiNumClockTsTable) ) / sizeof(s_SeiNumClockTsTable[0]))
if (m_PicStructPresentFlag) { // pic_struct_present_flag
uint32_t pic_struct;
pic_struct = bs.getBits(4); // pic_struct
if (pic_struct >= (sizeof(s_SeiNumClockTsTable)) / sizeof(s_SeiNumClockTsTable[0]))
return 0;
if (m_FrameMbsOnlyFlag && !m_MbAdaptiveFrameFieldFlag)
scan = VIDEO_SCAN_PROGRESSIVE;
else {
switch (pic_struct) {
case 0: // frame
case 7: // frame doubling
case 8: // frame tripling
scan = VIDEO_SCAN_PROGRESSIVE;
break;
case 1: // top
case 2: // bottom
case 3: // top bottom
case 4: // bottom top
case 5: // top bottom top
case 6: // bottom top bottom
scan = VIDEO_SCAN_INTERLACED;
break;
default:
scan = VIDEO_SCAN_RESERVED;
break;
}
}
//debug("H.264 SEI: pic struct %d scan type %d\n", pic_struct, scan);
for (int i = 0; i < s_SeiNumClockTsTable[pic_struct]; ++i) {
if (bs.getBit()) { // clock_timestamp_flag[i]
int full_timestamp_flag;
@@ -421,7 +707,7 @@ int cFemonH264::parseSEI(const uint8_t *buf, int len)
scan = VIDEO_SCAN_RESERVED;
break;
}
//Dprintf("\nH.264 SEI: -> scan type %d", bit_rate, scan);
//debug("H.264 SEI: scan type %d\n", scan);
bs.skipBit(); // nuit_field_based_flag
bs.skipBits(5); // counting_type
full_timestamp_flag = bs.getBit(); // full_timestamp_flag
@@ -450,22 +736,21 @@ int cFemonH264::parseSEI(const uint8_t *buf, int len)
}
break;
case 12: // sub_seq_characteristics
bs.skipUeGolomb(); // sub_seq_layer_num
bs.skipUeGolomb(); // sub_seq_id
if (bs.getBit()) // duration_flag
bs.skipBits(32); // sub_seq_duration
if (bs.getBit()) { // average_rate_flag
bs.skipBit(); // accurate_statistics_flag
bit_rate = bs.getU16() / 1048.51; // average_bit_rate (1000 bit/s -> Mbit/s)
frame_rate = bs.getU16() / 256.0; // average_frame_rate (frames/256s)
//Dprintf("\nH.264 SEI: -> stream bitrate %.1f, frame rate %.1f", bit_rate, frame_rate);
case 12: // sub_seq_characteristics
bs.skipUeGolomb(); // sub_seq_layer_num
bs.skipUeGolomb(); // sub_seq_id
if (bs.getBit()) // duration_flag
bs.skipBits(32); // sub_seq_duration
if (bs.getBit()) { // average_rate_flag
bs.skipBit(); // accurate_statistics_flag
bs.skipBits(16); // average_bit_rate (1000 bit/s)
bs.skipBits(16); // average_frame_rate (frames per 256s)
}
num_referenced_subseqs = bs.getUeGolomb(); // num_referenced_subseqs
num_referenced_subseqs = bs.getUeGolomb(); // num_referenced_subseqs
for (i = 0; i < num_referenced_subseqs; ++i) {
bs.skipUeGolomb(); // ref_sub_seq_layer_num
bs.skipUeGolomb(); // ref_sub_seq_id
bs.getBit(); // ref_sub_seq_direction
bs.skipUeGolomb(); // ref_sub_seq_layer_num
bs.skipUeGolomb(); // ref_sub_seq_id
bs.getBit(); // ref_sub_seq_direction
}
break;
@@ -478,8 +763,6 @@ int cFemonH264::parseSEI(const uint8_t *buf, int len)
bs.byteAlign();
}
m_FrameRate = frame_rate;
m_BitRate = bit_rate;
m_Scan = scan;
return (bs.getIndex() / 8);

View File

@@ -19,26 +19,40 @@ private:
NAL_END_SEQ = 0x0A // End of Sequence
};
cFemonVideoIf *m_VideoHandler;
unsigned int m_Width;
unsigned int m_Height;
typedef struct DAR {
eVideoAspectRatio dar;
int ratio;
} t_DAR;
typedef struct SAR {
int w;
int h;
} t_SAR;
cFemonVideoIf *m_VideoHandler;
uint32_t m_Width;
uint32_t m_Height;
eVideoAspectRatio m_AspectRatio;
eVideoFormat m_Format;
double m_FrameRate;
double m_BitRate;
eVideoScan m_Scan;
bool m_CpbDpbDelaysPresentFlag;
bool m_PicStructPresentFlag;
unsigned int m_TimeOffsetLength;
eVideoFormat m_Format;
double m_FrameRate;
double m_BitRate;
eVideoScan m_Scan;
bool m_CpbDpbDelaysPresentFlag;
bool m_PicStructPresentFlag;
bool m_FrameMbsOnlyFlag;
bool m_MbAdaptiveFrameFieldFlag;
uint32_t m_TimeOffsetLength;
void reset();
const uint8_t *nextStartCode(const uint8_t *start, const uint8_t *end);
int nalUnescape(uint8_t *dst, const uint8_t *src, int len);
int parseSPS(const uint8_t *buf, int len);
int parseSEI(const uint8_t *buf, int len);
int nalUnescape(uint8_t *dst, const uint8_t *src, int len);
int parseSPS(const uint8_t *buf, int len);
int parseSEI(const uint8_t *buf, int len);
static const eVideoAspectRatio s_AspectRatios[];
static const eVideoFormat s_VideoFormats[];
static const uint8_t s_SeiNumClockTsTable[9];
static const t_SAR s_SAR[];
static const t_DAR s_DAR[];
static const eVideoFormat s_VideoFormats[];
static const uint8_t s_SeiNumClockTsTable[9];
public:
cFemonH264(cFemonVideoIf *videohandler);

View File

@@ -5,6 +5,10 @@
*
*/
#ifndef __STDC_FORMAT_MACROS
#define __STDC_FORMAT_MACROS
#endif
#include <ctype.h>
#include <math.h>
#include "femoncfg.h"
@@ -24,6 +28,7 @@
#define OSDSPACING 5
#define OSDROUNDING 10
#define IS_OSDROUNDING (femonConfig.skin == eFemonSkinElchi)
#define IS_OSDRESOLUTION(r1, r2) (abs(r1 - r2) < 20)
#define OSDINFOWIN_Y(offset) (femonConfig.position ? (OSDHEIGHT - OSDINFOHEIGHT + offset) : offset)
#define OSDINFOWIN_X(col) ((col == 4) ? int(round(OSDWIDTH * 0.76)) : \
(col == 3) ? int(round(OSDWIDTH * 0.51)) : \
@@ -62,12 +67,12 @@
#define OSDDRAWSTATUSBAR(value) \
if (value > 0) { \
value = OSDBARWIDTH(value); \
m_Osd->DrawRectangle(0, OSDSTATUSWIN_Y(offset) + 3, min(OSDBARWIDTH(femonConfig.redlimit), value), OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrRed); \
if (value > OSDBARWIDTH(femonConfig.redlimit)) \
m_Osd->DrawRectangle(OSDBARWIDTH(femonConfig.redlimit), OSDSTATUSWIN_Y(offset) + 3, min((OSDWIDTH * femonConfig.greenlimit / 100), value), OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrYellow); \
if (value > OSDBARWIDTH(femonConfig.greenlimit)) \
m_Osd->DrawRectangle(OSDBARWIDTH(femonConfig.greenlimit), OSDSTATUSWIN_Y(offset) + 3, value, OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrGreen); \
int barvalue = OSDBARWIDTH(value); \
m_Osd->DrawRectangle(0, OSDSTATUSWIN_Y(offset) + 3, min(OSDBARWIDTH(femonConfig.redlimit), barvalue), OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrRed); \
if (barvalue > OSDBARWIDTH(femonConfig.redlimit)) \
m_Osd->DrawRectangle(OSDBARWIDTH(femonConfig.redlimit), OSDSTATUSWIN_Y(offset) + 3, min((OSDWIDTH * femonConfig.greenlimit / 100), barvalue), OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrYellow); \
if (barvalue > OSDBARWIDTH(femonConfig.greenlimit)) \
m_Osd->DrawRectangle(OSDBARWIDTH(femonConfig.greenlimit), OSDSTATUSWIN_Y(offset) + 3, barvalue, OSDSTATUSWIN_Y(offset) + OSDROWHEIGHT - 3, femonTheme[femonConfig.theme].clrGreen); \
}
#define OSDDRAWSTATUSTITLEBAR(title) \
@@ -145,7 +150,7 @@ cFemonOsd *cFemonOsd::pInstance = NULL;
cFemonOsd *cFemonOsd::Instance(bool create)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
if ((pInstance == NULL) && create)
{
pInstance = new cFemonOsd();
@@ -165,9 +170,14 @@ cFemonOsd::cFemonOsd()
m_Number(0),
m_OldNumber(0),
m_SNR(0),
m_SNRValid(false),
m_Signal(0),
m_SignalValid(false),
m_BER(0),
m_BERValid(false),
m_UNC(0),
m_UNCValid(false),
m_FrontendStatusValid(false),
m_DisplayMode(femonConfig.displaymode),
m_OsdWidth(cOsd::OsdWidth()),
m_OsdHeight(cOsd::OsdHeight()),
@@ -176,28 +186,30 @@ cFemonOsd::cFemonOsd()
m_Mutex()
{
int tmp;
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
memset(&m_FrontendStatus, 0, sizeof(m_FrontendStatus));
memset(&m_FrontendInfo, 0, sizeof(m_FrontendInfo));
m_SvdrpConnection.handle = -1;
m_Font = cFont::CreateFont(Setup.FontSml, min(max(Setup.FontSmlSize, MINFONTSIZE), MAXFONTSIZE));
if (!m_Font || !m_Font->Height()) {
m_Font = new cFemonDummyFont;
esyslog("ERROR: cFemonOsd::cFemonOsd() cannot create required font.");
error("cFemonOsd::cFemonOsd() cannot create required font.");
}
tmp = 5 * bmSymbol[SYMBOL_LOCK].Width() + 6 * OSDSPACING;
if (OSDWIDTH < tmp) {
esyslog("ERROR: cFemonOsd::cFemonOsd() OSD width (%d) smaller than required (%d).", OSDWIDTH, tmp);
error("cFemonOsd::cFemonOsd() OSD width (%d) smaller than required (%d).", OSDWIDTH, tmp);
OSDWIDTH = tmp;
}
tmp = OSDINFOHEIGHT + OSDROWHEIGHT + OSDSTATUSHEIGHT;
if (OSDHEIGHT < tmp) {
esyslog("ERROR: cFemonOsd::cFemonOsd() OSD height (%d) smaller than required (%d).", OSDHEIGHT, tmp);
error("cFemonOsd::cFemonOsd() OSD height (%d) smaller than required (%d).", OSDHEIGHT, tmp);
OSDHEIGHT = tmp;
}
}
cFemonOsd::~cFemonOsd(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
m_Sleep.Signal();
if (Running())
Cancel(3);
@@ -225,8 +237,6 @@ void cFemonOsd::DrawStatusWindow(void)
{
cMutexLock lock(&m_Mutex);
cBitmap *bm = NULL;
int snr = m_SNR / 655;
int signal = m_Signal / 655;
int offset = 0;
int x = OSDWIDTH - OSDROUNDING;
int y = 0;
@@ -247,6 +257,7 @@ void cFemonOsd::DrawStatusWindow(void)
case 5: bm = &bmSymbol[SYMBOL_FIVE]; break;
case 6: bm = &bmSymbol[SYMBOL_SIX]; break;
case 7: bm = &bmSymbol[SYMBOL_SEVEN]; break;
case 8: bm = &bmSymbol[SYMBOL_EIGHT]; break;
default: bm = &bmSymbol[SYMBOL_ZERO]; break;
}
OSDDRAWSTATUSBM(OSDSPACING);
@@ -261,6 +272,7 @@ void cFemonOsd::DrawStatusWindow(void)
case 5: bm = &bmSymbol[SYMBOL_FIVE]; break;
case 6: bm = &bmSymbol[SYMBOL_SIX]; break;
case 7: bm = &bmSymbol[SYMBOL_SEVEN]; break;
case 8: bm = &bmSymbol[SYMBOL_EIGHT]; break;
default: bm = &bmSymbol[SYMBOL_ZERO]; break;
}
OSDDRAWSTATUSBM(OSDSPACING);
@@ -278,6 +290,17 @@ void cFemonOsd::DrawStatusWindow(void)
OSDDRAWSTATUSBM(OSDSPACING);
}
if (m_Receiver) {
if (IS_OSDRESOLUTION(m_Receiver->VideoVerticalSize(), 1080))
bm = &bmSymbol[SYMBOL_FORMAT_1080];
else if (IS_OSDRESOLUTION(m_Receiver->VideoVerticalSize(), 720))
bm = &bmSymbol[SYMBOL_FORMAT_720];
else if (IS_OSDRESOLUTION(m_Receiver->VideoVerticalSize(), 576))
bm = &bmSymbol[SYMBOL_FORMAT_576];
else if (IS_OSDRESOLUTION(m_Receiver->VideoVerticalSize(), 480))
bm = &bmSymbol[SYMBOL_FORMAT_480];
else
bm = NULL;
OSDDRAWSTATUSBM(OSDSPACING);
switch (m_Receiver->VideoCodec()) {
case VIDEO_CODEC_MPEG2: bm = &bmSymbol[SYMBOL_MPEG2]; break;
case VIDEO_CODEC_H264: bm = &bmSymbol[SYMBOL_H264]; break;
@@ -304,24 +327,30 @@ void cFemonOsd::DrawStatusWindow(void)
OSDDRAWSTATUSBM(OSDSPACING);
}
offset += OSDROWHEIGHT;
OSDDRAWSTATUSBAR(signal);
if (m_SignalValid)
OSDDRAWSTATUSBAR(m_Signal / 655);
offset += OSDROWHEIGHT;
OSDDRAWSTATUSBAR(snr);
if (m_SNRValid)
OSDDRAWSTATUSBAR(m_SNR / 655);
offset += OSDROWHEIGHT;
OSDDRAWSTATUSVALUES("STR:", *cString::sprintf("%04x", m_Signal), *cString::sprintf("(%2d%%)", m_Signal / 655), "BER:", *cString::sprintf("%08x", m_BER),
*cString::sprintf("%s:", tr("Video")), *getBitrateMbits(m_Receiver ? m_Receiver->VideoBitrate() : (m_SvdrpFrontend >= 0 ? m_SvdrpVideoBitrate : -1.0)));
OSDDRAWSTATUSVALUES("STR:", m_SignalValid ? *cString::sprintf("%04x", m_Signal) : "", m_SignalValid ? *cString::sprintf("(%2d%%)", m_Signal / 655) : "",
"BER:", m_BERValid ? *cString::sprintf("%08x", m_BER) : "", *cString::sprintf("%s:", tr("Video")),
*getBitrateMbits(m_Receiver ? m_Receiver->VideoBitrate() : (m_SvdrpFrontend >= 0 ? m_SvdrpVideoBitrate : -1.0)));
offset += OSDROWHEIGHT;
OSDDRAWSTATUSVALUES("SNR:", *cString::sprintf("%04x", m_SNR), *cString::sprintf("(%2d%%)", m_SNR / 655), "UNC:", *cString::sprintf("%08x", m_UNC),
OSDDRAWSTATUSVALUES("SNR:", m_SNRValid ? *cString::sprintf("%04x", m_SNR) : "", m_SNRValid ? *cString::sprintf("(%2d%%)", m_SNR / 655) : "",
"UNC:", m_UNCValid ? *cString::sprintf("%08x", m_UNC) : "",
*cString::sprintf("%s:", (m_Receiver && m_Receiver->AC3Valid() && IS_DOLBY_TRACK(track)) ? tr("AC-3") : tr("Audio")),
*getBitrateKbits(m_Receiver ? ((m_Receiver->AC3Valid() && IS_DOLBY_TRACK(track)) ? m_Receiver->AC3Bitrate() : m_Receiver->AudioBitrate()) : (m_SvdrpFrontend >= 0 ? m_SvdrpAudioBitrate : -1.0)));
offset += OSDROWHEIGHT;
x = bmSymbol[SYMBOL_LOCK].Width();
y = (OSDROWHEIGHT - bmSymbol[SYMBOL_LOCK].Height()) / 2;
OSDDRAWSTATUSFRONTEND(1, bmSymbol[SYMBOL_LOCK], FE_HAS_LOCK);
OSDDRAWSTATUSFRONTEND(2, bmSymbol[SYMBOL_SIGNAL], FE_HAS_SIGNAL);
OSDDRAWSTATUSFRONTEND(3, bmSymbol[SYMBOL_CARRIER], FE_HAS_CARRIER);
OSDDRAWSTATUSFRONTEND(4, bmSymbol[SYMBOL_VITERBI], FE_HAS_VITERBI);
OSDDRAWSTATUSFRONTEND(5, bmSymbol[SYMBOL_SYNC], FE_HAS_SYNC);
if (m_FrontendStatusValid) {
OSDDRAWSTATUSFRONTEND(1, bmSymbol[SYMBOL_LOCK], FE_HAS_LOCK);
OSDDRAWSTATUSFRONTEND(2, bmSymbol[SYMBOL_SIGNAL], FE_HAS_SIGNAL);
OSDDRAWSTATUSFRONTEND(3, bmSymbol[SYMBOL_CARRIER], FE_HAS_CARRIER);
OSDDRAWSTATUSFRONTEND(4, bmSymbol[SYMBOL_VITERBI], FE_HAS_VITERBI);
OSDDRAWSTATUSFRONTEND(5, bmSymbol[SYMBOL_SYNC], FE_HAS_SYNC);
}
OSDDRAWSTATUSBOTTOMBAR();
m_Osd->Flush();
}
@@ -474,7 +503,7 @@ void cFemonOsd::DrawInfoWindow(void)
void cFemonOsd::Action(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
cTimeMs t;
SvdrpCommand_v1_0 cmd;
cmd.command = cString::sprintf("PLUG %s INFO\r\n", PLUGIN_NAME_I18N);
@@ -484,11 +513,11 @@ void cFemonOsd::Action(void)
m_SvdrpVideoBitrate = -1.0;
m_SvdrpAudioBitrate = -1.0;
if (m_Frontend != -1) {
CHECK(ioctl(m_Frontend, FE_READ_STATUS, &m_FrontendStatus));
CHECK(ioctl(m_Frontend, FE_READ_SIGNAL_STRENGTH, &m_Signal));
CHECK(ioctl(m_Frontend, FE_READ_SNR, &m_SNR));
CHECK(ioctl(m_Frontend, FE_READ_BER, &m_BER));
CHECK(ioctl(m_Frontend, FE_READ_UNCORRECTED_BLOCKS, &m_UNC));
m_FrontendStatusValid = (ioctl(m_Frontend, FE_READ_STATUS, &m_FrontendStatus) >= 0);
m_SignalValid = (ioctl(m_Frontend, FE_READ_SIGNAL_STRENGTH, &m_Signal) >= 0);
m_SNRValid = (ioctl(m_Frontend, FE_READ_SNR, &m_SNR) >= 0);
m_BERValid = (ioctl(m_Frontend, FE_READ_BER, &m_BER) >= 0);
m_UNCValid = (ioctl(m_Frontend, FE_READ_UNCORRECTED_BLOCKS, &m_UNC) >= 0);
DrawInfoWindow();
DrawStatusWindow();
}
@@ -496,24 +525,40 @@ void cFemonOsd::Action(void)
cmd.handle = m_SvdrpConnection.handle;
m_SvdrpPlugin->Service("SvdrpCommand-v1.0", &cmd);
if (cmd.responseCode == 900) {
m_FrontendStatusValid = false;
m_SignalValid = false;
m_SNRValid = false;
m_BERValid = false;
m_UNCValid = false;
for (cLine *line = cmd.reply.First(); line; line = cmd.reply.Next(line)) {
const char *s = line->Text();
if (!strncasecmp(s, "CARD:", 5))
m_SvdrpFrontend = (int)strtol(s + 5, NULL, 10);
else if (!strncasecmp(s, "TYPE:", 5))
m_FrontendInfo.type = (fe_type_t)strtol(s + 5, NULL, 10);
else if (!strncasecmp(s, "NAME:", 5))
else if (!strncasecmp(s, "NAME:", 5)) {
strn0cpy(m_FrontendInfo.name, s + 5, sizeof(m_FrontendInfo.name));
else if (!strncasecmp(s, "STAT:", 5))
}
else if (!strncasecmp(s, "STAT:", 5)) {
m_FrontendStatus = (fe_status_t)strtol(s + 5, NULL, 16);
else if (!strncasecmp(s, "SGNL:", 5))
m_FrontendStatusValid = true;
}
else if (!strncasecmp(s, "SGNL:", 5)) {
m_Signal = (uint16_t)strtol(s + 5, NULL, 16);
else if (!strncasecmp(s, "SNRA:", 5))
m_SignalValid = true;
}
else if (!strncasecmp(s, "SNRA:", 5)) {
m_SNR = (uint16_t)strtol(s + 5, NULL, 16);
else if (!strncasecmp(s, "BERA:", 5))
m_SNRValid = true;
}
else if (!strncasecmp(s, "BERA:", 5)) {
m_BER = (uint32_t)strtol(s + 5, NULL, 16);
else if (!strncasecmp(s, "UNCB:", 5))
m_BERValid = true;
}
else if (!strncasecmp(s, "UNCB:", 5)) {
m_UNC = (uint32_t)strtol(s + 5, NULL, 16);
m_UNCValid = true;
}
else if (!strncasecmp(s, "VIBR:", 5))
m_SvdrpVideoBitrate = (double)strtol(s + 5, NULL, 10);
else if (!strncasecmp(s, "AUBR:", 5))
@@ -529,17 +574,17 @@ void cFemonOsd::Action(void)
void cFemonOsd::Show(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
int apid[2] = {0, 0};
int dpid[2] = {0, 0};
debug("%s()\n", __PRETTY_FUNCTION__);
eTrackType track = cDevice::PrimaryDevice()->GetCurrentAudioTrack();
cString dev = cString::sprintf(FRONTEND_DEVICE, cDevice::ActualDevice()->CardIndex(), 0);
m_Frontend = open(dev, O_RDONLY | O_NONBLOCK);
if (m_Frontend >= 0) {
if (ioctl(m_Frontend, FE_GET_INFO, &m_FrontendInfo) < 0) {
esyslog("ERROR: cFemonOsd::Show() cannot read frontend info.");
if (!femonConfig.usesvdrp)
error("cFemonOsd::Show() cannot read frontend info.");
close(m_Frontend);
m_Frontend = -1;
memset(&m_FrontendInfo, 0, sizeof(m_FrontendInfo));
return;
}
}
@@ -548,7 +593,7 @@ void cFemonOsd::Show(void)
return;
}
else {
esyslog("ERROR: cFemonOsd::Show() cannot open frontend device.");
error("cFemonOsd::Show() cannot open frontend device.");
return;
}
@@ -574,9 +619,7 @@ void cFemonOsd::Show(void)
if (femonConfig.analyzestream) {
cChannel *channel = Channels.GetByNumber(cDevice::CurrentChannel());
if (channel) {
IS_AUDIO_TRACK(track) ? apid[0] = channel->Apid(int(track - ttAudioFirst)) : apid[0] = channel->Apid(0);
IS_DOLBY_TRACK(track) ? dpid[0] = channel->Dpid(int(track - ttDolbyFirst)) : dpid[0] = channel->Dpid(0);
m_Receiver = new cFemonReceiver(channel->GetChannelID(), channel->Ca(), channel->Vtype(), channel->Vpid(), apid, dpid);
m_Receiver = new cFemonReceiver(channel->Vtype(), channel->Vpid(), channel->Apid(IS_AUDIO_TRACK(track) ? int(track - ttAudioFirst) : 0), channel->Dpid(IS_DOLBY_TRACK(track) ? int(track - ttDolbyFirst) : 0));
cDevice::ActualDevice()->AttachReceiver(m_Receiver);
}
}
@@ -586,9 +629,7 @@ void cFemonOsd::Show(void)
void cFemonOsd::ChannelSwitch(const cDevice * device, int channelNumber)
{
Dprintf("%s(%d,%d)\n", __PRETTY_FUNCTION__, device->DeviceNumber(), channelNumber);
int apid[2] = {0, 0};
int dpid[2] = {0, 0};
debug("%s(%d,%d)\n", __PRETTY_FUNCTION__, device->DeviceNumber(), channelNumber);
eTrackType track = cDevice::PrimaryDevice()->GetCurrentAudioTrack();
if (!device->IsPrimaryDevice() || !channelNumber || cDevice::PrimaryDevice()->CurrentChannel() != channelNumber)
return;
@@ -597,9 +638,11 @@ void cFemonOsd::ChannelSwitch(const cDevice * device, int channelNumber)
m_Frontend = open(dev, O_RDONLY | O_NONBLOCK);
if (m_Frontend >= 0) {
if (ioctl(m_Frontend, FE_GET_INFO, &m_FrontendInfo) < 0) {
esyslog("ERROR: cFemonOsd::ChannelSwitch() cannot read frontend info.");
if (!femonConfig.usesvdrp)
error("cFemonOsd::ChannelSwitch() cannot read frontend info.");
close(m_Frontend);
m_Frontend = -1;
memset(&m_FrontendInfo, 0, sizeof(m_FrontendInfo));
return;
}
}
@@ -608,7 +651,7 @@ void cFemonOsd::ChannelSwitch(const cDevice * device, int channelNumber)
return;
}
else {
esyslog("ERROR: cFemonOsd::ChannelSwitch() cannot open frontend device.");
error("cFemonOsd::ChannelSwitch() cannot open frontend device.");
return;
}
@@ -619,9 +662,7 @@ void cFemonOsd::ChannelSwitch(const cDevice * device, int channelNumber)
if (femonConfig.analyzestream) {
cChannel *channel = Channels.GetByNumber(cDevice::CurrentChannel());
if (channel) {
IS_AUDIO_TRACK(track) ? apid[0] = channel->Apid(int(track - ttAudioFirst)) : apid[0] = channel->Apid(0);
IS_DOLBY_TRACK(track) ? dpid[0] = channel->Dpid(int(track - ttDolbyFirst)) : dpid[0] = channel->Dpid(0);
m_Receiver = new cFemonReceiver(channel->GetChannelID(), channel->Ca(), channel->Vtype(), channel->Vpid(), apid, dpid);
m_Receiver = new cFemonReceiver(channel->Vtype(), channel->Vpid(), channel->Apid(IS_AUDIO_TRACK(track) ? int(track - ttAudioFirst) : 0), channel->Dpid(IS_DOLBY_TRACK(track) ? int(track - ttDolbyFirst) : 0));
cDevice::ActualDevice()->AttachReceiver(m_Receiver);
}
}
@@ -629,9 +670,7 @@ void cFemonOsd::ChannelSwitch(const cDevice * device, int channelNumber)
void cFemonOsd::SetAudioTrack(int Index, const char * const *Tracks)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
int apid[2] = {0, 0};
int dpid[2] = {0, 0};
debug("%s()\n", __PRETTY_FUNCTION__);
eTrackType track = cDevice::PrimaryDevice()->GetCurrentAudioTrack();
if (m_Receiver) {
m_Receiver->Deactivate();
@@ -640,9 +679,7 @@ void cFemonOsd::SetAudioTrack(int Index, const char * const *Tracks)
if (femonConfig.analyzestream) {
cChannel *channel = Channels.GetByNumber(cDevice::CurrentChannel());
if (channel) {
IS_AUDIO_TRACK(track) ? apid[0] = channel->Apid(int(track - ttAudioFirst)) : apid[0] = channel->Apid(0);
IS_DOLBY_TRACK(track) ? dpid[0] = channel->Dpid(int(track - ttDolbyFirst)) : dpid[0] = channel->Dpid(0);
m_Receiver = new cFemonReceiver(channel->GetChannelID(), channel->Ca(), channel->Vtype(), channel->Vpid(), apid, dpid);
m_Receiver = new cFemonReceiver(channel->Vtype(), channel->Vpid(), channel->Apid(IS_AUDIO_TRACK(track) ? int(track - ttAudioFirst) : 0), channel->Dpid(IS_DOLBY_TRACK(track) ? int(track - ttDolbyFirst) : 0));
cDevice::ActualDevice()->AttachReceiver(m_Receiver);
}
}
@@ -650,7 +687,7 @@ void cFemonOsd::SetAudioTrack(int Index, const char * const *Tracks)
bool cFemonOsd::DeviceSwitch(int direction)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
int device = cDevice::ActualDevice()->DeviceNumber();
direction = sgn(direction);
if (device >= 0) {
@@ -666,13 +703,13 @@ bool cFemonOsd::DeviceSwitch(int direction)
device = cDevice::NumDevices() - 1;
}
if (cDevice::GetDevice(device)->ProvidesChannel(channel, 0)) {
Dprintf("%s(%d) device(%d)\n", __PRETTY_FUNCTION__, direction, device);
debug("%s(%d) device(%d)\n", __PRETTY_FUNCTION__, direction, device);
cStatus::MsgChannelSwitch(cDevice::PrimaryDevice(), 0);
cControl::Shutdown();
cDevice::GetDevice(device)->SwitchChannel(channel, true);
if (cDevice::GetDevice(device) == cDevice::PrimaryDevice())
cDevice::GetDevice(device)->ForceTransferMode();
cControl::Launch(new cTransferControl(cDevice::GetDevice(device), channel->GetChannelID(), channel->Vpid(), channel->Apids(), channel->Dpids(), channel->Spids()));
cControl::Launch(new cTransferControl(cDevice::GetDevice(device), channel));
cStatus::MsgChannelSwitch(cDevice::PrimaryDevice(), channel->Number());
return (true);
}
@@ -698,14 +735,14 @@ bool cFemonOsd::SvdrpConnect(void)
m_SvdrpPlugin->Service("SvdrpCommand-v1.0", &cmd);
if (cmd.responseCode != 214) {
m_SvdrpPlugin->Service("SvdrpConnection-v1.0", &m_SvdrpConnection); // close connection
esyslog("ERROR: cFemonOsd::SvdrpConnect() cannot find plugin '%s' on server %s.", PLUGIN_NAME_I18N, *m_SvdrpConnection.serverIp);
error("cFemonOsd::SvdrpConnect() cannot find plugin '%s' on server %s.", PLUGIN_NAME_I18N, *m_SvdrpConnection.serverIp);
}
}
else
esyslog("ERROR: cFemonOsd::SvdrpConnect() cannot connect to SVDRP server.");
error("cFemonOsd::SvdrpConnect() cannot connect to SVDRP server.");
}
else
esyslog("ERROR: cFemonOsd::SvdrpConnect() cannot find plugin '%s'.", SVDRPPLUGIN);
error("cFemonOsd::SvdrpConnect() cannot find plugin '%s'.", SVDRPPLUGIN);
}
return m_SvdrpConnection.handle >= 0;
}
@@ -721,19 +758,19 @@ bool cFemonOsd::SvdrpTune(void)
m_SvdrpPlugin->Service("SvdrpCommand-v1.0", &cmd);
if (cmd.responseCode == 250)
return true;
esyslog("ERROR: cFemonOsd::SvdrpTune() cannot tune server channel.");
error("cFemonOsd::SvdrpTune() cannot tune server channel.");
}
else
esyslog("ERROR: cFemonOsd::SvdrpTune() invalid channel.");
error("cFemonOsd::SvdrpTune() invalid channel.");
}
else
esyslog("ERROR: cFemonOsd::SvdrpTune() unexpected connection state.");
error("cFemonOsd::SvdrpTune() unexpected connection state.");
return false;
}
double cFemonOsd::GetVideoBitrate(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
double value = 0.0;
if (m_Receiver)
@@ -744,7 +781,7 @@ double cFemonOsd::GetVideoBitrate(void)
double cFemonOsd::GetAudioBitrate(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
double value = 0.0;
if (m_Receiver)
@@ -755,7 +792,7 @@ double cFemonOsd::GetAudioBitrate(void)
double cFemonOsd::GetDolbyBitrate(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
double value = 0.0;
if (m_Receiver)

View File

@@ -34,14 +34,19 @@ private:
double m_SvdrpAudioBitrate;
SvdrpConnection_v1_0 m_SvdrpConnection;
cPlugin *m_SvdrpPlugin;
dvb_frontend_info m_FrontendInfo;
int m_Number;
int m_OldNumber;
uint16_t m_SNR;
bool m_SNRValid;
uint16_t m_Signal;
bool m_SignalValid;
uint32_t m_BER;
bool m_BERValid;
uint32_t m_UNC;
bool m_UNCValid;
fe_status_t m_FrontendStatus;
bool m_FrontendStatusValid;
dvb_frontend_info m_FrontendInfo;
int m_DisplayMode;
int m_OsdWidth;
int m_OsdHeight;

View File

@@ -10,30 +10,41 @@
#include "femoncfg.h"
#include "femonreceiver.h"
cFemonReceiver::cFemonReceiver(tChannelID ChannelID, int Ca, int Vtype, int Vpid, int Apid[], int Dpid[])
: cReceiver(ChannelID, -1, Vpid, Apid, Dpid, NULL),
cThread("femon receiver"),
cFemonReceiver::cFemonReceiver(int Vtype, int Vpid, int Apid, int Dpid)
: cThread("femon receiver"),
m_Mutex(),
m_Sleep(),
m_Active(false),
m_DetectH264(this),
m_DetectMPEG(this, this),
m_DetectAAC(this),
m_DetectAC3(this),
m_VideoBuffer(KILOBYTE(512), TS_SIZE, false, "Femon video"),
m_VideoType(Vtype),
m_VideoPid(Vpid),
m_VideoPacketCount(0),
m_VideoBitrate(0.0),
m_VideoValid(false),
m_AudioPid(Apid[0]),
m_AudioBuffer(KILOBYTE(256), TS_SIZE, false, "Femon audio"),
m_AudioPid(Apid),
m_AudioPacketCount(0),
m_AudioBitrate(0.0),
m_AudioValid(false),
m_AC3Pid(Dpid[0]),
m_AC3Buffer(KILOBYTE(256), TS_SIZE, false, "Femon AC3"),
m_AC3Pid(Dpid),
m_AC3PacketCount(0),
m_AC3Bitrate(0),
m_AC3Valid(false)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
AddPid(m_VideoPid);
AddPid(m_AudioPid);
AddPid(m_AC3Pid);
m_VideoBuffer.SetTimeouts(0, 100);
m_AudioBuffer.SetTimeouts(0, 100);
m_AC3Buffer.SetTimeouts(0, 100);
m_VideoInfo.codec = VIDEO_CODEC_INVALID;
m_VideoInfo.format = VIDEO_FORMAT_INVALID;
@@ -60,13 +71,13 @@ cFemonReceiver::cFemonReceiver(tChannelID ChannelID, int Ca, int Vtype, int Vpid
cFemonReceiver::~cFemonReceiver(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
Deactivate();
}
void cFemonReceiver::Deactivate(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
debug("%s()\n", __PRETTY_FUNCTION__);
if (m_Active) {
m_Active = false;
m_Sleep.Signal();
@@ -78,7 +89,7 @@ void cFemonReceiver::Deactivate(void)
void cFemonReceiver::Activate(bool On)
{
Dprintf("%s(%d)\n", __PRETTY_FUNCTION__, On);
debug("%s(%d)\n", __PRETTY_FUNCTION__, On);
if (On)
Start();
else
@@ -88,64 +99,149 @@ void cFemonReceiver::Activate(bool On)
void cFemonReceiver::Receive(uchar *Data, int Length)
{
// TS packet length: TS_SIZE
if (Length == TS_SIZE) {
if (Running() && (*Data == TS_SYNC_BYTE) && (Length == TS_SIZE)) {
int len, pid = TsPid(Data);
if (pid == m_VideoPid) {
m_VideoPacketCount++;
if (TsPayloadStart(Data)) {
while (const uint8_t *p = m_VideoAssembler.GetPes(len)) {
if (m_VideoType == 0x1B) { // MPEG4
if (m_DetectH264.processVideo(p, len)) {
m_VideoValid = true;
break;
}
}
else {
if (m_DetectMPEG.processVideo(p, len)) {
m_VideoValid = true;
break;
}
}
}
m_VideoAssembler.Reset();
}
m_VideoAssembler.PutTs(Data, Length);
++m_VideoPacketCount;
len = m_VideoBuffer.Put(Data, Length);
if (len != Length) {
m_VideoBuffer.ReportOverflow(Length - len);
m_VideoBuffer.Clear();
}
}
else if (pid == m_AudioPid) {
m_AudioPacketCount++;
if (const uint8_t *p = m_AudioAssembler.GetPes(len)) {
if (m_DetectAAC.processAudio(p, len) || m_DetectMPEG.processAudio(p, len))
m_AudioValid = true;
m_AudioAssembler.Reset();
++m_AudioPacketCount;
len = m_AudioBuffer.Put(Data, Length);
if (len != Length) {
m_AudioBuffer.ReportOverflow(Length - len);
m_AudioBuffer.Clear();
}
m_AudioAssembler.PutTs(Data, Length);
}
else if (pid == m_AC3Pid) {
m_AC3PacketCount++;
if (const uint8_t *p = m_AC3Assembler.GetPes(len)) {
if (m_DetectAC3.processAudio(p, len))
m_AC3Valid = true;
m_AC3Assembler.Reset();
++m_AC3PacketCount;
len = m_AC3Buffer.Put(Data, Length);
if (len != Length) {
m_AC3Buffer.ReportOverflow(Length - len);
m_AC3Buffer.Clear();
}
m_AC3Assembler.PutTs(Data, Length);
}
}
}
void cFemonReceiver::Action(void)
{
Dprintf("%s()\n", __PRETTY_FUNCTION__);
cTimeMs t;
debug("%s()\n", __PRETTY_FUNCTION__);
cTimeMs calcPeriod(0);
m_Active = true;
while (Running() && m_Active) {
t.Set(0);
// TS packet 188 bytes - 4 byte header; MPEG standard defines 1Mbit = 1000000bit
m_VideoBitrate = (10.0 * 8.0 * 184.0 * m_VideoPacketCount) / femonConfig.calcinterval;
m_VideoPacketCount = 0;
m_AudioBitrate = (10.0 * 8.0 * 184.0 * m_AudioPacketCount) / femonConfig.calcinterval;
m_AudioPacketCount = 0;
m_AC3Bitrate = (10.0 * 8.0 * 184.0 * m_AC3PacketCount) / femonConfig.calcinterval;
m_AC3PacketCount = 0;
m_Sleep.Wait(max((int)(100 * femonConfig.calcinterval - t.Elapsed()), 3));
uint8_t *Data;
double timeout;
int len, Length;
bool processed = false;
// process available video data
while (Data = m_VideoBuffer.Get(Length)) {
if (!m_Active || (Length < TS_SIZE))
break;
Length = TS_SIZE;
if (*Data != TS_SYNC_BYTE) {
for (int i = 1; i < Length; ++i) {
if (Data[i] == TS_SYNC_BYTE) {
Length = i;
break;
}
}
m_VideoBuffer.Del(Length);
continue;
}
processed = true;
if (TsPayloadStart(Data)) {
while (const uint8_t *p = m_VideoAssembler.GetPes(len)) {
if (m_VideoType == 0x1B) { // MPEG4
if (m_DetectH264.processVideo(p, len)) {
m_VideoValid = true;
break;
}
}
else {
if (m_DetectMPEG.processVideo(p, len)) {
m_VideoValid = true;
break;
}
}
}
m_VideoAssembler.Reset();
}
m_VideoAssembler.PutTs(Data, Length);
m_VideoBuffer.Del(Length);
}
// process available audio data
while (Data = m_AudioBuffer.Get(Length)) {
if (!m_Active || (Length < TS_SIZE))
break;
Length = TS_SIZE;
if (*Data != TS_SYNC_BYTE) {
for (int i = 1; i < Length; ++i) {
if (Data[i] == TS_SYNC_BYTE) {
Length = i;
break;
}
}
m_AudioBuffer.Del(Length);
continue;
}
processed = true;
if (const uint8_t *p = m_AudioAssembler.GetPes(len)) {
if (m_DetectAAC.processAudio(p, len) || m_DetectMPEG.processAudio(p, len))
m_AudioValid = true;
m_AudioAssembler.Reset();
}
m_AudioAssembler.PutTs(Data, Length);
m_AudioBuffer.Del(Length);
}
// process available dolby data
while (Data = m_AC3Buffer.Get(Length)) {
if (!m_Active || (Length < TS_SIZE))
break;
Length = TS_SIZE;
if (*Data != TS_SYNC_BYTE) {
for (int i = 1; i < Length; ++i) {
if (Data[i] == TS_SYNC_BYTE) {
Length = i;
break;
}
}
m_AC3Buffer.Del(Length);
continue;
}
processed = true;
if (const uint8_t *p = m_AC3Assembler.GetPes(len)) {
if (m_DetectAC3.processAudio(p, len))
m_AC3Valid = true;
m_AC3Assembler.Reset();
}
m_AC3Assembler.PutTs(Data, Length);
m_AC3Buffer.Del(Length);
}
// calculate bitrates
timeout = double(calcPeriod.Elapsed());
if (m_Active && (timeout >= (100.0 * femonConfig.calcinterval))) {
// TS packet 188 bytes - 4 byte header; MPEG standard defines 1Mbit = 1000000bit
// PES headers should be compensated!
m_VideoBitrate = (1000.0 * 8.0 * 184.0 * m_VideoPacketCount) / timeout;
m_VideoPacketCount = 0;
m_AudioBitrate = (1000.0 * 8.0 * 184.0 * m_AudioPacketCount) / timeout;
m_AudioPacketCount = 0;
m_AC3Bitrate = (1000.0 * 8.0 * 184.0 * m_AC3PacketCount) / timeout;
m_AC3PacketCount = 0;
calcPeriod.Set(0);
}
if (!processed)
m_Sleep.Wait(10); // to avoid busy loop and reduce cpu load
}
}

View File

@@ -21,35 +21,39 @@
class cFemonReceiver : public cReceiver, public cThread, public cFemonVideoIf, public cFemonAudioIf, public cFemonAC3If {
private:
cCondWait m_Sleep;
bool m_Active;
cMutex m_Mutex;
cCondWait m_Sleep;
bool m_Active;
cFemonH264 m_DetectH264;
cFemonMPEG m_DetectMPEG;
cFemonAAC m_DetectAAC;
cFemonAC3 m_DetectAC3;
cFemonH264 m_DetectH264;
cFemonMPEG m_DetectMPEG;
cFemonAAC m_DetectAAC;
cFemonAC3 m_DetectAC3;
cTsToPes m_VideoAssembler;
int m_VideoType;
int m_VideoPid;
int m_VideoPacketCount;
double m_VideoBitrate;
bool m_VideoValid;
video_info_t m_VideoInfo;
cRingBufferLinear m_VideoBuffer;
cTsToPes m_VideoAssembler;
int m_VideoType;
int m_VideoPid;
int m_VideoPacketCount;
double m_VideoBitrate;
bool m_VideoValid;
video_info_t m_VideoInfo;
cTsToPes m_AudioAssembler;
int m_AudioPid;
int m_AudioPacketCount;
double m_AudioBitrate;
bool m_AudioValid;
audio_info_t m_AudioInfo;
cRingBufferLinear m_AudioBuffer;
cTsToPes m_AudioAssembler;
int m_AudioPid;
int m_AudioPacketCount;
double m_AudioBitrate;
bool m_AudioValid;
audio_info_t m_AudioInfo;
cTsToPes m_AC3Assembler;
int m_AC3Pid;
int m_AC3PacketCount;
double m_AC3Bitrate;
bool m_AC3Valid;
ac3_info_t m_AC3Info;
cRingBufferLinear m_AC3Buffer;
cTsToPes m_AC3Assembler;
int m_AC3Pid;
int m_AC3PacketCount;
double m_AC3Bitrate;
bool m_AC3Valid;
ac3_info_t m_AC3Info;
protected:
virtual void Activate(bool On);
@@ -57,66 +61,115 @@ protected:
virtual void Action(void);
public:
virtual void SetVideoCodec(eVideoCodec codec) { m_VideoInfo.codec = codec; }
virtual void SetVideoFormat(eVideoFormat format) { m_VideoInfo.format = format; }
virtual void SetVideoScan(eVideoScan scan) { m_VideoInfo.scan = scan; }
virtual void SetVideoAspectRatio(eVideoAspectRatio aspectratio) { m_VideoInfo.aspectRatio = aspectratio; }
virtual void SetVideoSize(int width, int height) { m_VideoInfo.width = width;
m_VideoInfo.height = height; }
virtual void SetVideoFramerate(double framerate) { m_VideoInfo.frameRate = framerate; }
virtual void SetVideoBitrate(double bitrate) { m_VideoInfo.bitrate = bitrate; }
virtual void SetVideoCodec(eVideoCodec codec) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.codec = codec; }
virtual void SetVideoFormat(eVideoFormat format) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.format = format; }
virtual void SetVideoScan(eVideoScan scan) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.scan = scan; }
virtual void SetVideoAspectRatio(eVideoAspectRatio aspectratio) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.aspectRatio = aspectratio; }
virtual void SetVideoSize(int width, int height) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.width = width;
m_VideoInfo.height = height; }
virtual void SetVideoFramerate(double framerate) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.frameRate = framerate; }
virtual void SetVideoBitrate(double bitrate) { cMutexLock MutexLock(&m_Mutex);
m_VideoInfo.bitrate = bitrate; }
virtual void SetAudioCodec(eAudioCodec codec) { m_AudioInfo.codec = codec; }
virtual void SetAudioBitrate(double bitrate) { m_AudioInfo.bitrate = bitrate; }
virtual void SetAudioSamplingFrequency(int sampling) { m_AudioInfo.samplingFrequency = sampling; }
virtual void SetAudioChannel(eAudioChannelMode mode) { m_AudioInfo.channelMode = mode; }
virtual void SetAudioCodec(eAudioCodec codec) { cMutexLock MutexLock(&m_Mutex);
m_AudioInfo.codec = codec; }
virtual void SetAudioBitrate(double bitrate) { cMutexLock MutexLock(&m_Mutex);
m_AudioInfo.bitrate = bitrate; }
virtual void SetAudioSamplingFrequency(int sampling) { cMutexLock MutexLock(&m_Mutex);
m_AudioInfo.samplingFrequency = sampling; }
virtual void SetAudioChannel(eAudioChannelMode mode) { cMutexLock MutexLock(&m_Mutex);
m_AudioInfo.channelMode = mode; }
virtual void SetAC3Bitrate(int bitrate) { m_AC3Info.bitrate = bitrate; }
virtual void SetAC3SamplingFrequency(int sampling) { m_AC3Info.samplingFrequency = sampling; }
virtual void SetAC3Bitstream(int mode) { m_AC3Info.bitstreamMode = mode; }
virtual void SetAC3AudioCoding(int mode) { m_AC3Info.audioCodingMode = mode; }
virtual void SetAC3DolbySurround(int mode) { m_AC3Info.dolbySurroundMode = mode; }
virtual void SetAC3CenterMix(int level) { m_AC3Info.centerMixLevel = level; }
virtual void SetAC3SurroundMix(int level) { m_AC3Info.surroundMixLevel = level; }
virtual void SetAC3Dialog(int level) { m_AC3Info.dialogLevel = level; }
virtual void SetAC3LFE(bool onoff) { m_AC3Info.lfe = onoff; }
virtual void SetAC3Bitrate(int bitrate) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.bitrate = bitrate; }
virtual void SetAC3SamplingFrequency(int sampling) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.samplingFrequency = sampling; }
virtual void SetAC3Bitstream(int mode) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.bitstreamMode = mode; }
virtual void SetAC3AudioCoding(int mode) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.audioCodingMode = mode; }
virtual void SetAC3DolbySurround(int mode) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.dolbySurroundMode = mode; }
virtual void SetAC3CenterMix(int level) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.centerMixLevel = level; }
virtual void SetAC3SurroundMix(int level) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.surroundMixLevel = level; }
virtual void SetAC3Dialog(int level) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.dialogLevel = level; }
virtual void SetAC3LFE(bool onoff) { cMutexLock MutexLock(&m_Mutex);
m_AC3Info.lfe = onoff; }
public:
cFemonReceiver(tChannelID ChannelID, int Ca, int Vtype, int Vpid, int Apid[], int Dpid[]);
cFemonReceiver(int Vtype, int Vpid, int Apid, int Dpid);
virtual ~cFemonReceiver();
void Deactivate(void);
bool VideoValid(void) { return m_VideoValid; }; // boolean
double VideoBitrate(void) { return m_VideoBitrate; }; // bit/s
int VideoCodec(void) { return m_VideoInfo.codec; }; // eVideoCodec
int VideoFormat(void) { return m_VideoInfo.format; }; // eVideoFormat
int VideoScan(void) { return m_VideoInfo.scan; }; // eVideoScan
int VideoAspectRatio(void) { return m_VideoInfo.aspectRatio; }; // eVideoAspectRatio
int VideoHorizontalSize(void) { return m_VideoInfo.width; }; // pixels
int VideoVerticalSize(void) { return m_VideoInfo.height; }; // pixels
double VideoFrameRate(void) { return m_VideoInfo.frameRate; }; // Hz
double VideoStreamBitrate(void) { return m_VideoInfo.bitrate; }; // bit/s
bool VideoValid(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoValid; }; // boolean
double VideoBitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoBitrate; }; // bit/s
int VideoCodec(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.codec; }; // eVideoCodec
int VideoFormat(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.format; }; // eVideoFormat
int VideoScan(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.scan; }; // eVideoScan
int VideoAspectRatio(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.aspectRatio; }; // eVideoAspectRatio
int VideoHorizontalSize(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.width; }; // pixels
int VideoVerticalSize(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.height; }; // pixels
double VideoFrameRate(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.frameRate; }; // Hz
double VideoStreamBitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_VideoInfo.bitrate; }; // bit/s
bool AudioValid(void) { return m_AudioValid; }; // boolean
double AudioBitrate(void) { return m_AudioBitrate; }; // bit/s
int AudioCodec(void) { return m_AudioInfo.codec; }; // eAudioCodec
int AudioChannelMode(void) { return m_AudioInfo.channelMode; }; // eAudioChannelMode
double AudioStreamBitrate(void) { return m_AudioInfo.bitrate; }; // bit/s or eAudioBitrate
int AudioSamplingFreq(void) { return m_AudioInfo.samplingFrequency; }; // Hz or eAudioSamplingFrequency
bool AudioValid(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioValid; }; // boolean
double AudioBitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioBitrate; }; // bit/s
int AudioCodec(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioInfo.codec; }; // eAudioCodec
int AudioChannelMode(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioInfo.channelMode; }; // eAudioChannelMode
double AudioStreamBitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioInfo.bitrate; }; // bit/s or eAudioBitrate
int AudioSamplingFreq(void) { cMutexLock MutexLock(&m_Mutex);
return m_AudioInfo.samplingFrequency; }; // Hz or eAudioSamplingFrequency
bool AC3Valid(void) { return m_AC3Valid; }; // boolean
double AC3Bitrate(void) { return m_AC3Bitrate; }; // bit/s
double AC3StreamBitrate(void) { return m_AC3Info.bitrate; }; // bit/s or eAudioBitrate
int AC3SamplingFreq(void) { return m_AC3Info.samplingFrequency; }; // Hz or eAudioSamplingFrequency
int AC3BitStreamMode(void) { return m_AC3Info.bitstreamMode; }; // 0..7 or eAudioBitstreamMode
int AC3AudioCodingMode(void) { return m_AC3Info.audioCodingMode; }; // 0..7 or eAudioCodingMode
bool AC3_2_0(void) { return (m_AC3Info.audioCodingMode == AUDIO_CODING_MODE_2_0); }; // boolean
bool AC3_5_1(void) { return (m_AC3Info.audioCodingMode == AUDIO_CODING_MODE_3_2); }; // boolean
int AC3DolbySurroundMode(void) { return m_AC3Info.dolbySurroundMode; }; // eAudioDolbySurroundMode
int AC3CenterMixLevel(void) { return m_AC3Info.centerMixLevel; }; // eAudioCenterMixLevel
int AC3SurroundMixLevel(void) { return m_AC3Info.surroundMixLevel; }; // eAudioSurroundMixLevel
int AC3DialogLevel(void) { return m_AC3Info.dialogLevel; }; // -dB
bool AC3Lfe(void) { return m_AC3Info.lfe; }; // boolean
bool AC3Valid(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Valid; }; // boolean
double AC3Bitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Bitrate; }; // bit/s
double AC3StreamBitrate(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.bitrate; }; // bit/s or eAudioBitrate
int AC3SamplingFreq(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.samplingFrequency; }; // Hz or eAudioSamplingFrequency
int AC3BitStreamMode(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.bitstreamMode; }; // 0..7 or eAudioBitstreamMode
int AC3AudioCodingMode(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.audioCodingMode; }; // 0..7 or eAudioCodingMode
bool AC3_2_0(void) { cMutexLock MutexLock(&m_Mutex);
return (m_AC3Info.audioCodingMode == AUDIO_CODING_MODE_2_0); }; // boolean
bool AC3_5_1(void) { cMutexLock MutexLock(&m_Mutex);
return (m_AC3Info.audioCodingMode == AUDIO_CODING_MODE_3_2); }; // boolean
int AC3DolbySurroundMode(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.dolbySurroundMode; }; // eAudioDolbySurroundMode
int AC3CenterMixLevel(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.centerMixLevel; }; // eAudioCenterMixLevel
int AC3SurroundMixLevel(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.surroundMixLevel; }; // eAudioSurroundMixLevel
int AC3DialogLevel(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.dialogLevel; }; // -dB
bool AC3Lfe(void) { cMutexLock MutexLock(&m_Mutex);
return m_AC3Info.lfe; }; // boolean
};
#endif //__FEMONRECEIVER_H

View File

@@ -37,6 +37,11 @@
#include "symbols/five.xpm"
#include "symbols/six.xpm"
#include "symbols/seven.xpm"
#include "symbols/eight.xpm"
#include "symbols/format1080.xpm"
#include "symbols/format720.xpm"
#include "symbols/format576.xpm"
#include "symbols/format480.xpm"
cBitmap bmSymbol[SYMBOL_MAX_COUNT] =
{
@@ -69,5 +74,10 @@ cBitmap bmSymbol[SYMBOL_MAX_COUNT] =
cBitmap(four_xpm), // SYMBOL_FOUR
cBitmap(five_xpm), // SYMBOL_FIVE
cBitmap(six_xpm), // SYMBOL_SIX
cBitmap(seven_xpm) // SYMBOL_SEVEN
cBitmap(seven_xpm), // SYMBOL_SEVEN
cBitmap(eight_xpm), // SYMBOL_EIGHT
cBitmap(format1080_xpm), // SYMBOL_FORMAT_1080
cBitmap(format720_xpm), // SYMBOL_FORMAT_720
cBitmap(format576_xpm), // SYMBOL_FORMAT_576
cBitmap(format480_xpm) // SYMBOL_FORMAT_480
};

View File

@@ -41,6 +41,11 @@ enum eSymbols {
SYMBOL_FIVE,
SYMBOL_SIX,
SYMBOL_SEVEN,
SYMBOL_EIGHT,
SYMBOL_FORMAT_1080,
SYMBOL_FORMAT_720,
SYMBOL_FORMAT_576,
SYMBOL_FORMAT_480,
SYMBOL_MAX_COUNT
};

View File

@@ -5,6 +5,11 @@
*
*/
#ifndef __STDC_FORMAT_MACROS
#define __STDC_FORMAT_MACROS
#endif
#include <stdint.h>
#include <stdlib.h>
#include <unistd.h>
#include <sys/ioctl.h>
@@ -86,15 +91,22 @@ cString getFrontendInfo(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return NULL;
CHECK(ioctl(fe, FE_GET_INFO, &value));
CHECK(ioctl(fe, FE_READ_STATUS, &status));
CHECK(ioctl(fe, FE_READ_SIGNAL_STRENGTH, &signal));
CHECK(ioctl(fe, FE_READ_SNR, &snr));
CHECK(ioctl(fe, FE_READ_BER, &ber));
CHECK(ioctl(fe, FE_READ_UNCORRECTED_BLOCKS, &unc));
close(fe);
info = cString::sprintf("CARD:%d\nTYPE:%d\nNAME:%s\nSTAT:%02X\nSGNL:%04X\nSNRA:%04X\nBERA:%08X\nUNCB:%08X", cardIndex, value.type, value.name, status, signal, snr, ber, unc);
info = cString::sprintf("CARD:%d", cardIndex);
if (ioctl(fe, FE_GET_INFO, &value) >= 0)
info = cString::sprintf("%s\nTYPE:%d\nNAME:%s", *info, value.type, value.name);
if (ioctl(fe, FE_READ_STATUS, &status) >= 0)
info = cString::sprintf("%s\nSTAT:%02X", *info, status);
if (ioctl(fe, FE_READ_SIGNAL_STRENGTH, &signal) >= 0)
info = cString::sprintf("%s\nSGNL:%04X", *info, signal);
if (ioctl(fe, FE_READ_SNR, &snr) >= 0)
info = cString::sprintf("%s\nSNRA:%04X", *info, snr);
if (ioctl(fe, FE_READ_BER, &ber) >= 0)
info = cString::sprintf("%s\nBERA:%08X", *info, ber);
if (ioctl(fe, FE_READ_UNCORRECTED_BLOCKS, &unc) >= 0)
info = cString::sprintf("%s\nUNCB:%08X", *info, unc);
close(fe);
if (cFemonOsd::Instance())
info = cString::sprintf("%s\nVIBR:%.0f\nAUBR:%.0f\nDDBR:%.0f", *info, cFemonOsd::Instance()->GetVideoBitrate(), cFemonOsd::Instance()->GetAudioBitrate(), cFemonOsd::Instance()->GetDolbyBitrate());
@@ -113,7 +125,8 @@ cString getFrontendName(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return NULL;
CHECK(ioctl(fe, FE_GET_INFO, &value));
memset(&value, 0, sizeof(value));
ioctl(fe, FE_GET_INFO, &value);
close(fe);
return (cString::sprintf("%s on device #%d", value.name, cardIndex));
@@ -127,7 +140,8 @@ cString getFrontendStatus(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return NULL;
CHECK(ioctl(fe, FE_READ_STATUS, &value));
memset(&value, 0, sizeof(value));
ioctl(fe, FE_READ_STATUS, &value);
close(fe);
return (cString::sprintf("Status %s:%s:%s:%s:%s on device #%d", (value & FE_HAS_LOCK) ? "LOCKED" : "-", (value & FE_HAS_SIGNAL) ? "SIGNAL" : "-", (value & FE_HAS_CARRIER) ? "CARRIER" : "-", (value & FE_HAS_VITERBI) ? "VITERBI" : "-", (value & FE_HAS_SYNC) ? "SYNC" : "-", cardIndex));
@@ -141,7 +155,7 @@ uint16_t getSignal(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return (value);
CHECK(ioctl(fe, FE_READ_SIGNAL_STRENGTH, &value));
ioctl(fe, FE_READ_SIGNAL_STRENGTH, &value);
close(fe);
return (value);
@@ -155,7 +169,7 @@ uint16_t getSNR(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return (value);
CHECK(ioctl(fe, FE_READ_SNR, &value));
ioctl(fe, FE_READ_SNR, &value);
close(fe);
return (value);
@@ -169,7 +183,7 @@ uint32_t getBER(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return (value);
CHECK(ioctl(fe, FE_READ_BER, &value));
ioctl(fe, FE_READ_BER, &value);
close(fe);
return (value);
@@ -183,7 +197,7 @@ uint32_t getUNC(int cardIndex)
int fe = open(dev, O_RDONLY | O_NONBLOCK);
if (fe < 0)
return (value);
CHECK(ioctl(fe, FE_READ_UNCORRECTED_BLOCKS, &value));
ioctl(fe, FE_READ_UNCORRECTED_BLOCKS, &value);
close(fe);
return (value);

View File

@@ -14,9 +14,11 @@
#include <vdr/tools.h>
#ifdef DEBUG
#define Dprintf(x...) printf(x);
#define debug(x...) dsyslog("FEMON: " x);
#define error(x...) esyslog("ERROR: " x);
#else
#define Dprintf(x...) ;
#define debug(x...) ;
#define error(x...) esyslog("ERROR: " x);
#endif
#define ELEMENTS(x) (sizeof(x) / sizeof(x[0]))

View File

@@ -66,7 +66,7 @@ typedef struct video_info {
int width; // pixels
int height; // pixels
double frameRate; // Hz
double bitrate; // Mbit/s
double bitrate; // bit/s
} video_info_t;
class cFemonVideoIf {

View File

@@ -22,7 +22,7 @@ msgid "Signal Information"
msgstr "Signaaliinfo"
msgid "Femon not available"
msgstr ""
msgstr "Femon ei ole k<>ttesaadav"
msgid "basic"
msgstr "standard"
@@ -37,7 +37,7 @@ msgid "AC-3"
msgstr "AC-3"
msgid "Classic"
msgstr "Klassikaline"
msgstr "Classic"
msgid "Elchi"
msgstr "Elchi"
@@ -64,79 +64,79 @@ msgid "SilverGreen"
msgstr "SilverGreen"
msgid "Hide main menu entry"
msgstr "Peida valik peamen<65><6E>s"
msgstr "Peita valik peamen<65><6E>s"
msgid "Define whether the main menu entry is hidden."
msgstr ""
msgstr "Valiku peamen<65><6E>s peitmise m<><6D>ritlemine."
msgid "Default display mode"
msgstr "Vaikimisi displei moodus"
msgstr "Vaikemoodus"
msgid "Define the default display mode at startup."
msgstr ""
msgstr "K<EFBFBD>ivitamisel vaikemooduse m<><6D>ritlemine."
msgid "Define the used OSD skin."
msgstr ""
msgstr "Kasutatava ekraanikesta m<><6D>ritlemine."
msgid "Define the used OSD theme."
msgstr ""
msgstr "Kasutatava teema m<><6D>ritlemine."
msgid "Position"
msgstr "Positsioon"
msgid "Define the position of OSD."
msgstr ""
msgstr "Ekraaniinfo positsiooni m<><6D>ritlemine."
msgid "Red limit [%]"
msgstr "Punase limiit [%]"
msgid "Define a limit for red bar, which is used to indicate a bad signal."
msgstr ""
msgstr "Seaded punasele limiidile. Iseloomustab kehva signaali."
msgid "Green limit [%]"
msgstr "Rohelise limiit [%]"
msgid "Define a limit for green bar, which is used to indicate a good signal."
msgstr ""
msgstr "Seaded rohelisele limiidile. Iseloomustab head signaali."
msgid "OSD update interval [0.1s]"
msgstr "Uuendusintervall [0,1s]"
msgid "Define an interval for OSD updates. The smaller interval generates higher CPU load."
msgstr ""
msgstr "Ekraaniinfo uuendamise intervalli m<><6D>ritlemine. V<>iksem intervall- suurem CPU koormus."
msgid "Analyze stream"
msgstr "Voo anal<61><6C>s"
msgid "Define whether the DVB stream is analyzed and bitrates calculated."
msgstr ""
msgstr "DVB voo bitikiiruse rehkendamise m<><6D>ritlemine."
msgid "Calculation interval [0.1s]"
msgstr "Kalkulatsiooni intervall [0,1s]"
msgstr "Arvutamise intervall [0,1s]"
msgid "Define an interval for calculation. The bigger interval generates more stable values."
msgstr ""
msgstr "Arvutamise intervalli m<><6D>ritlemine. Suurem intervall annab stabiilsemaid tulemusi."
msgid "Use SVDRP service"
msgstr ""
msgstr "SVDRP teenus"
msgid "Define whether the SVDRP service is used in client/server setups."
msgstr ""
msgstr "SVDRP teenuse klient/server seadete m<><6D>ritlemine."
msgid "SVDRP service port"
msgstr ""
msgstr "SVDRP port"
msgid "Define the port number of SVDRP service."
msgstr ""
msgstr "SVDRP teenuse pordi m<><6D>ritlemine."
msgid "SVDRP service IP"
msgstr ""
msgstr "SVDRP IP"
msgid "Define the IP address of SVDRP service."
msgstr ""
msgstr "SVDRP teenuse IP aadressi m<><6D>ritlemine."
msgid "Help"
msgstr ""
msgstr "Abi"
msgid "Video"
msgstr "Video"
@@ -169,13 +169,13 @@ msgid "Coderate"
msgstr "Coderate"
msgid "Stream Information"
msgstr "Voo info"
msgstr "Vooinfo"
msgid "Video Stream"
msgstr "Videovoog"
msgid "Codec"
msgstr ""
msgstr "Koodek"
msgid "Bitrate"
msgstr "Bitikiirus"
@@ -196,7 +196,7 @@ msgid "Audio Stream"
msgstr "Audiovoog"
msgid "Channel Mode"
msgstr ""
msgstr "Kanalimoodus"
msgid "Sampling Frequency"
msgstr "S<>mplimissagedus"
@@ -229,64 +229,64 @@ msgid "Fixed"
msgstr "Fikseeritud"
msgid "Analog"
msgstr ""
msgstr "Analoog"
msgid "MPEG-2"
msgstr ""
msgstr "MPEG-2"
msgid "H.264"
msgstr ""
msgstr "H.264"
msgid "MPEG-1 Layer I"
msgstr ""
msgstr "MPEG-1 Layet I"
msgid "MPEG-1 Layer II"
msgstr ""
msgstr "MPEG-1 Layer II"
msgid "MPEG-1 Layer III"
msgstr ""
msgstr "MPEG-1 Layer III"
msgid "MPEG-2 Layer I"
msgstr ""
msgstr "MPEG-2 Layer I"
msgid "MPEG-2 Layer II"
msgstr ""
msgstr "MPEG-2 Layer II"
msgid "MPEG-2 Layer III"
msgstr ""
msgstr "MPEG-2 Layer III"
msgid "HE-AAC"
msgstr ""
msgstr "HE-AAC"
msgid "stereo"
msgstr ""
msgstr "stereo"
msgid "joint Stereo"
msgstr ""
msgstr "joint stereo"
msgid "dual"
msgstr ""
msgstr "duaalne"
msgid "mono"
msgstr ""
msgstr "mono"
msgid "interlaced"
msgstr ""
msgstr "<EFBFBD>lerealaotus"
msgid "progressive"
msgstr ""
msgstr "progressiivne"
msgid "reserved"
msgstr "reserveeritud"
msgstr "reserv."
msgid "extended"
msgstr ""
msgstr "laiendatud"
msgid "unknown"
msgstr "tundmatu"
msgid "component"
msgstr ""
msgstr "komponentne"
msgid "PAL"
msgstr "PAL"
@@ -295,10 +295,10 @@ msgid "NTSC"
msgstr "NTSC"
msgid "SECAM"
msgstr ""
msgstr "SECAM"
msgid "MAC"
msgstr ""
msgstr "MAC"
msgid "Hz"
msgstr "Hz"
@@ -331,10 +331,10 @@ msgid "Karaoke"
msgstr "Karaoke"
msgid "Ch1"
msgstr "Kan. 1"
msgstr "Kan.1"
msgid "Ch2"
msgstr "Kan. 2"
msgstr "Kan.2"
msgid "C"
msgstr "C"

373
po/lt_LT.po Normal file
View File

@@ -0,0 +1,373 @@
# VDR plugin language source file.
# Copyright (C) 2007 Rolf Ahrenberg
# This file is distributed under the same license as the femon package.
# Valdemaras Pipiras
#
msgid ""
msgstr ""
"Project-Id-Version: femon 1.7.3\n"
"Report-Msgid-Bugs-To: Rolf Ahrenberg\n"
"POT-Creation-Date: 2009-08-29 20:57+0300\n"
"PO-Revision-Date: 2007-08-12 23:22+0300\n"
"Last-Translator: Valdemaras Pipiras\n"
"Language-Team: <varas@ambernet.lt>\n"
"MIME-Version: 1.0\n"
"Content-Type: text/plain; charset=UTF-8\n"
"Content-Transfer-Encoding: 8bit\n"
msgid "DVB Signal Information Monitor (OSD)"
msgstr "DVB signalo informacijos stebėjimas (OSD)"
msgid "Signal Information"
msgstr "Signalo informacija"
msgid "Femon not available"
msgstr "Femon įskiepas nepasiekiamas"
msgid "basic"
msgstr "Standartinis"
msgid "transponder"
msgstr "Siųstuvas"
msgid "stream"
msgstr "Srautas"
msgid "AC-3"
msgstr "AC-3"
msgid "Classic"
msgstr "Klasikinis"
msgid "Elchi"
msgstr "Elchi"
msgid "ST:TNG"
msgstr "ST:TNG"
msgid "DeepBlue"
msgstr "DeepBlue"
msgid "Moronimo"
msgstr "Moronimo"
msgid "Enigma"
msgstr "Enigma"
msgid "EgalsTry"
msgstr "EgalsTry"
msgid "Duotone"
msgstr "Duotone"
msgid "SilverGreen"
msgstr "SilverGreen"
msgid "Hide main menu entry"
msgstr "Paslėpti pagrindinio meniu įrašus"
msgid "Define whether the main menu entry is hidden."
msgstr "Nustatyti pagrindinio meniu įrašų paslėpimą."
msgid "Default display mode"
msgstr "Numatytasis rodymo būdas"
msgid "Define the default display mode at startup."
msgstr "Nustatyti numatytąjį rodymo būdą paleidžiant."
msgid "Define the used OSD skin."
msgstr "Nustatyti naudojamą ekrano apvalkalą."
msgid "Define the used OSD theme."
msgstr "Nustatyti naudojamą ekrano temą."
msgid "Position"
msgstr "Pozicija"
msgid "Define the position of OSD."
msgstr "Nustatyti ekrano užsklandos poziciją."
msgid "Red limit [%]"
msgstr "Raudonoji ribą [%]"
msgid "Define a limit for red bar, which is used to indicate a bad signal."
msgstr "Nustatyti raudonos juostos ribą, kuri naudojama blogo signalo indikacijai."
msgid "Green limit [%]"
msgstr "Žalioji riba [%]"
msgid "Define a limit for green bar, which is used to indicate a good signal."
msgstr "Nustatyti žalios juostos ribą, kuri naudojama gero signalo indikacijai."
msgid "OSD update interval [0.1s]"
msgstr "Ekrano užsklandos atnaujinimo intervalas [0.1s]"
msgid "Define an interval for OSD updates. The smaller interval generates higher CPU load."
msgstr "Nustatyti ekrano užsklandos atnaujinimo intervalą. Mažesnis intervalas labiau apkrauna centrinį procesorių (CPU)."
msgid "Analyze stream"
msgstr "Analizuoti srautą"
msgid "Define whether the DVB stream is analyzed and bitrates calculated."
msgstr "Nurodyti ar DVB srautas turi būti analizuojamas bei jo kokybė išskaičiuojama."
msgid "Calculation interval [0.1s]"
msgstr "Apskaitos intervalos [0.1s]"
msgid "Define an interval for calculation. The bigger interval generates more stable values."
msgstr "Nustatyti apskaitos intervalą. Kuo didesnis intervalas, tuo tikslesni duomenys."
msgid "Use SVDRP service"
msgstr "Naudoti SVDRP paslaugą"
msgid "Define whether the SVDRP service is used in client/server setups."
msgstr "Nurodyti ar SVDRP paslauga naudojama kliento/serverio nustatymuose."
msgid "SVDRP service port"
msgstr "SVDRP įrenginio portas"
msgid "Define the port number of SVDRP service."
msgstr "Nustatyti SVDRP įrenginio prievadą."
msgid "SVDRP service IP"
msgstr "SVDRP įrenginio IP"
msgid "Define the IP address of SVDRP service."
msgstr "Nustatyti SVDRP įrenginio IP adresą."
msgid "Help"
msgstr "Pagalba"
msgid "Video"
msgstr "Video"
msgid "Audio"
msgstr "Audio"
msgid "Transponder Information"
msgstr "Siųstuvo informacija"
msgid "Apid"
msgstr "Apid"
msgid "Dpid"
msgstr "Dpid"
msgid "Spid"
msgstr "Spid"
msgid "Nid"
msgstr "Nid"
msgid "Tid"
msgstr "Tid"
msgid "Rid"
msgstr "Rid"
msgid "Coderate"
msgstr "Kodavimo dažnis"
msgid "Stream Information"
msgstr "Srauto informacija"
msgid "Video Stream"
msgstr "Video srautas"
msgid "Codec"
msgstr "Kodekas"
msgid "Bitrate"
msgstr "Kokybė"
msgid "Aspect Ratio"
msgstr "Proporcijos"
msgid "Frame Rate"
msgstr "Kadrų dažnis"
msgid "Video Format"
msgstr "Video formatas"
msgid "Resolution"
msgstr "Rezoliucija"
msgid "Audio Stream"
msgstr "Audio srautas"
msgid "Channel Mode"
msgstr "kanalo būsena"
msgid "Sampling Frequency"
msgstr "Parodomasis dažnis"
msgid "AC-3 Stream"
msgstr "AC-3 srautas"
msgid "Bit Stream Mode"
msgstr "Bitstream būsena"
msgid "Audio Coding Mode"
msgstr "Audio kodavimas"
msgid "Center Mix Level"
msgstr "Centerinis Mix lygis"
msgid "Surround Mix Level"
msgstr "Surround Mix lygis"
msgid "Dolby Surround Mode"
msgstr "Dolby Surround būklė"
msgid "Low Frequency Effects"
msgstr "Žemo dažnio efektai"
msgid "Dialogue Normalization"
msgstr "Dialogo normalizacija"
msgid "Fixed"
msgstr "Fest"
msgid "Analog"
msgstr "Analog"
msgid "MPEG-2"
msgstr "MPEG-2"
msgid "H.264"
msgstr "H.264"
msgid "MPEG-1 Layer I"
msgstr "MPEG-1 Layer I"
msgid "MPEG-1 Layer II"
msgstr "MPEG-1 Layer II"
msgid "MPEG-1 Layer III"
msgstr "MPEG-1 Layer III"
msgid "MPEG-2 Layer I"
msgstr "MPEG-2 Layer I"
msgid "MPEG-2 Layer II"
msgstr "MPEG-2 Layer II"
msgid "MPEG-2 Layer III"
msgstr "MPEG-2 Layer III"
msgid "HE-AAC"
msgstr "HE-AAC"
msgid "stereo"
msgstr "stereo"
msgid "joint Stereo"
msgstr "jungtinis stereo"
msgid "dual"
msgstr "dvigubas"
msgid "mono"
msgstr "mono"
msgid "interlaced"
msgstr "persipynęs (interlaced)"
msgid "progressive"
msgstr "progresyvinis"
msgid "reserved"
msgstr "belegt"
msgid "extended"
msgstr "išplėstas"
msgid "unknown"
msgstr "nežinomas"
msgid "component"
msgstr "komponentas"
msgid "PAL"
msgstr "PAL"
msgid "NTSC"
msgstr "NTSC"
msgid "SECAM"
msgstr "SECAM"
msgid "MAC"
msgstr "MAC"
msgid "Hz"
msgstr "Hz"
msgid "Complete Main (CM)"
msgstr "Pilnai pagrindinis (CM)"
msgid "Music and Effects (ME)"
msgstr "Muzika ir efektai (ME)"
msgid "Visually Impaired (VI)"
msgstr " (VI)"
msgid "Hearing Impaired (HI)"
msgstr " (HI)"
msgid "Dialogue (D)"
msgstr "Dialogas (D)"
msgid "Commentary (C)"
msgstr "Komentavimas (C)"
msgid "Emergency (E)"
msgstr "Avarinis (E)"
msgid "Voice Over (VO)"
msgstr "Voice over (VO)"
msgid "Karaoke"
msgstr "Karaoke"
msgid "Ch1"
msgstr "Kan1"
msgid "Ch2"
msgstr "Kan2"
msgid "C"
msgstr "C"
msgid "L"
msgstr "L"
msgid "R"
msgstr "R"
msgid "S"
msgstr "S"
msgid "SL"
msgstr "SL"
msgid "SR"
msgstr "SR"
msgid "dB"
msgstr "dB"
msgid "not indicated"
msgstr "nerasta"
msgid "MHz"
msgstr "MHz"
msgid "free"
msgstr "frei"
msgid "Mbit/s"
msgstr "Mbit/s"
msgid "kbit/s"
msgstr "kbit/s"

373
po/zh_CN.po Normal file
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@@ -0,0 +1,373 @@
# VDR plugin language source file.
# Copyright (C) 2007 Rolf Ahrenberg
# This file is distributed under the same license as the femon package.
# Nan Feng VDR <nfgx@21cn.com>, 2009.2
#
msgid ""
msgstr ""
"Project-Id-Version: femon 1.7.3\n"
"Report-Msgid-Bugs-To: Rolf Ahrenberg\n"
"POT-Creation-Date: 2009-08-29 20:57+0300\n"
"PO-Revision-Date: 2009-09-21 21:36+0800\n"
"Last-Translator: NanFeng <nfgx@21cn.com>\n"
"Language-Team: <vdr@linuxtv.org>\n"
"MIME-Version: 1.0\n"
"Content-Type: text/plain; charset=UTF-8\n"
"Content-Transfer-Encoding: 8bit\n"
msgid "DVB Signal Information Monitor (OSD)"
msgstr "卫星信号信息显示(OSD)"
msgid "Signal Information"
msgstr "频道信息浏览"
msgid "Femon not available"
msgstr "Femon插件无法使用"
msgid "basic"
msgstr "基本"
msgid "transponder"
msgstr "转发器"
msgid "stream"
msgstr "数据流"
msgid "AC-3"
msgstr "AC-3"
msgid "Classic"
msgstr "经典"
msgid "Elchi"
msgstr "Elchi"
msgid "ST:TNG"
msgstr "ST:TNG"
msgid "DeepBlue"
msgstr "DeepBlue"
msgid "Moronimo"
msgstr "Moronimo"
msgid "Enigma"
msgstr "Enigma"
msgid "EgalsTry"
msgstr "EgalsTry"
msgid "Duotone"
msgstr "双色调"
msgid "SilverGreen"
msgstr "银绿"
msgid "Hide main menu entry"
msgstr "隐藏主菜单条目."
msgid "Define whether the main menu entry is hidden."
msgstr "确定是否进入主菜单是隐藏的."
msgid "Default display mode"
msgstr "默认启动时显示模式."
msgid "Define the default display mode at startup."
msgstr "定义默认启动时显示模式."
msgid "Define the used OSD skin."
msgstr "确定使用的菜单皮肤."
msgid "Define the used OSD theme."
msgstr "确定使用的菜单主题."
msgid "Position"
msgstr "位置"
msgid "Define the position of OSD."
msgstr "确定菜单的位置."
msgid "Red limit [%]"
msgstr "红限制[ ]"
msgid "Define a limit for red bar, which is used to indicate a bad signal."
msgstr "定义一个限制红键,这是用来表示一个坏的信号."
msgid "Green limit [%]"
msgstr "绿限制[ ]"
msgid "Define a limit for green bar, which is used to indicate a good signal."
msgstr "定义一个限制的绿色键,这是用来表示一个良好的信号."
msgid "OSD update interval [0.1s]"
msgstr "菜单更新间隔时间 [0.1s]"
msgid "Define an interval for OSD updates. The smaller interval generates higher CPU load."
msgstr "确定一个OSD的更新时间间隔.较小的间隔产生较高的CPU负载."
msgid "Analyze stream"
msgstr "分析流"
msgid "Define whether the DVB stream is analyzed and bitrates calculated."
msgstr "确定是否DVB流分析和比特率计算."
msgid "Calculation interval [0.1s]"
msgstr "计算时间间隔 [0.1s]"
msgid "Define an interval for calculation. The bigger interval generates more stable values."
msgstr "定义一个时间间隔来计算.更大的时间价格产生将更稳定."
msgid "Use SVDRP service"
msgstr "使用SVDRP服务"
msgid "Define whether the SVDRP service is used in client/server setups."
msgstr "定义是否SVDRP服务是用来在客户机/服务器的设置."
msgid "SVDRP service port"
msgstr "SVDRP服务端口"
msgid "Define the port number of SVDRP service."
msgstr "定义SVDRP服务的端口号."
msgid "SVDRP service IP"
msgstr "SVDRP服务的IP地址"
msgid "Define the IP address of SVDRP service."
msgstr "定义SVDRP服务的IP地址."
msgid "Help"
msgstr "帮助"
msgid "Video"
msgstr "视频"
msgid "Audio"
msgstr "音频"
msgid "Transponder Information"
msgstr "转发器信息"
msgid "Apid"
msgstr "Apid"
msgid "Dpid"
msgstr "Dpid"
msgid "Spid"
msgstr "Spid"
msgid "Nid"
msgstr "Nid"
msgid "Tid"
msgstr "Tid"
msgid "Rid"
msgstr "Rid"
msgid "Coderate"
msgstr "码速率"
msgid "Stream Information"
msgstr "流信息"
msgid "Video Stream"
msgstr "视频流"
msgid "Codec"
msgstr "解码模式"
msgid "Bitrate"
msgstr "比特率"
msgid "Aspect Ratio"
msgstr "纵横比"
msgid "Frame Rate"
msgstr "帧速率"
msgid "Video Format"
msgstr "视频制式"
msgid "Resolution"
msgstr "分辨率"
msgid "Audio Stream"
msgstr "音频流"
msgid "Channel Mode"
msgstr "声道模式"
msgid "Sampling Frequency"
msgstr "采样频率"
msgid "AC-3 Stream"
msgstr "AC-3流"
msgid "Bit Stream Mode"
msgstr "比特流模式"
msgid "Audio Coding Mode"
msgstr "音频编码模式"
msgid "Center Mix Level"
msgstr "中心混合级别"
msgid "Surround Mix Level"
msgstr "环绕混合级别"
msgid "Dolby Surround Mode"
msgstr "杜比环绕声模式"
msgid "Low Frequency Effects"
msgstr "低频效果"
msgid "Dialogue Normalization"
msgstr "对话正常化"
msgid "Fixed"
msgstr "固定"
msgid "Analog"
msgstr "模拟"
msgid "MPEG-2"
msgstr "MPEG-2"
msgid "H.264"
msgstr "H.264"
msgid "MPEG-1 Layer I"
msgstr "MPEG-1 Layer I"
msgid "MPEG-1 Layer II"
msgstr "MPEG-1 Layer II"
msgid "MPEG-1 Layer III"
msgstr "MPEG-1 Layer III"
msgid "MPEG-2 Layer I"
msgstr "MPEG-2 Layer I"
msgid "MPEG-2 Layer II"
msgstr "MPEG-2 Layer II"
msgid "MPEG-2 Layer III"
msgstr "MPEG-2 Layer III"
msgid "HE-AAC"
msgstr "HE-AAC"
msgid "stereo"
msgstr "立体声"
msgid "joint Stereo"
msgstr "联合立体声"
msgid "dual"
msgstr "双重"
msgid "mono"
msgstr "单声道"
msgid "interlaced"
msgstr "隔行扫描"
msgid "progressive"
msgstr "进步"
msgid "reserved"
msgstr "保留"
msgid "extended"
msgstr "扩展"
msgid "unknown"
msgstr "未知"
msgid "component"
msgstr "组件"
msgid "PAL"
msgstr "PAL"
msgid "NTSC"
msgstr "NTSC"
msgid "SECAM"
msgstr "SECAM"
msgid "MAC"
msgstr "MAC"
msgid "Hz"
msgstr "赫兹"
msgid "Complete Main (CM)"
msgstr "完成主要 (CM)"
msgid "Music and Effects (ME)"
msgstr "音乐和效果 (ME)"
msgid "Visually Impaired (VI)"
msgstr "视障 (VI)"
msgid "Hearing Impaired (HI)"
msgstr "听障 (HI)"
msgid "Dialogue (D)"
msgstr "对话 (D)"
msgid "Commentary (C)"
msgstr "评论 (C)"
msgid "Emergency (E)"
msgstr "紧急 (E)"
msgid "Voice Over (VO)"
msgstr "旁白 (VO)"
msgid "Karaoke"
msgstr "卡拉OK"
msgid "Ch1"
msgstr "Ch1"
msgid "Ch2"
msgstr "Ch2"
msgid "C"
msgstr "C"
msgid "L"
msgstr "L"
msgid "R"
msgstr "R"
msgid "S"
msgstr "S"
msgid "SL"
msgstr "SL"
msgid "SR"
msgstr "SR"
msgid "dB"
msgstr "dB"
msgid "not indicated"
msgstr "没有说明"
msgid "MHz"
msgstr "兆赫兹"
msgid "free"
msgstr "免费"
msgid "Mbit/s"
msgstr "兆位/秒"
msgid "kbit/s"
msgstr "千字节/秒"

373
po/zh_TW.po Normal file
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@@ -0,0 +1,373 @@
# VDR plugin language source file.
# Copyright (C) 2007 Rolf Ahrenberg
# This file is distributed under the same license as the femon package.
# Nan Feng VDR <nfgx@21cn.com>, 2009.2
#
msgid ""
msgstr ""
"Project-Id-Version: femon 1.7.3\n"
"Report-Msgid-Bugs-To: Rolf Ahrenberg\n"
"POT-Creation-Date: 2009-08-29 20:57+0300\n"
"PO-Revision-Date: 2009-09-21 21:36+0800\n"
"Last-Translator: NanFeng <nfgx@21cn.com>\n"
"Language-Team: <vdr@linuxtv.org>\n"
"MIME-Version: 1.0\n"
"Content-Type: text/plain; charset=UTF-8\n"
"Content-Transfer-Encoding: 8bit\n"
msgid "DVB Signal Information Monitor (OSD)"
msgstr "衛星信號信息顯示(OSD)"
msgid "Signal Information"
msgstr "頻道信息瀏覽"
msgid "Femon not available"
msgstr "Femon插件無法使用"
msgid "basic"
msgstr "基本"
msgid "transponder"
msgstr "轉發器"
msgid "stream"
msgstr "數據流"
msgid "AC-3"
msgstr "AC-3"
msgid "Classic"
msgstr "經典"
msgid "Elchi"
msgstr "Elchi"
msgid "ST:TNG"
msgstr "ST:TNG"
msgid "DeepBlue"
msgstr "DeepBlue"
msgid "Moronimo"
msgstr "Moronimo"
msgid "Enigma"
msgstr "Enigma"
msgid "EgalsTry"
msgstr "EgalsTry"
msgid "Duotone"
msgstr "雙色調"
msgid "SilverGreen"
msgstr "銀綠"
msgid "Hide main menu entry"
msgstr "隱藏主菜單條目."
msgid "Define whether the main menu entry is hidden."
msgstr "確定是否進入主菜單是隱藏的."
msgid "Default display mode"
msgstr "默認啟動時顯示模式."
msgid "Define the default display mode at startup."
msgstr "定義默認啟動時顯示模式."
msgid "Define the used OSD skin."
msgstr "確定使用的菜單皮膚."
msgid "Define the used OSD theme."
msgstr "確定使用的菜單主題."
msgid "Position"
msgstr "位置"
msgid "Define the position of OSD."
msgstr "確定菜單的位置."
msgid "Red limit [%]"
msgstr "紅限制[ ]"
msgid "Define a limit for red bar, which is used to indicate a bad signal."
msgstr "定義一個限制紅鍵,這是用來表示一個壞的信號."
msgid "Green limit [%]"
msgstr "綠限制[ ]"
msgid "Define a limit for green bar, which is used to indicate a good signal."
msgstr "定義一個限制的綠色鍵,這是用來表示一個良好的信號."
msgid "OSD update interval [0.1s]"
msgstr "菜單更新間隔時間[0.1s]"
msgid "Define an interval for OSD updates. The smaller interval generates higher CPU load."
msgstr "確定一個OSD的更新時間間隔.較小的間隔產生較高的CPU負載."
msgid "Analyze stream"
msgstr "分析流"
msgid "Define whether the DVB stream is analyzed and bitrates calculated."
msgstr "確定是否DVB流分析和比特率計算."
msgid "Calculation interval [0.1s]"
msgstr "計算時間間隔[0.1s]"
msgid "Define an interval for calculation. The bigger interval generates more stable values."
msgstr "定義一個時間間隔來計算.更大的時間價格產生將更穩定."
msgid "Use SVDRP service"
msgstr "使用SVDRP服務"
msgid "Define whether the SVDRP service is used in client/server setups."
msgstr "定義是否SVDRP服務是用來在客戶機/服務器的設置."
msgid "SVDRP service port"
msgstr "SVDRP服務端口"
msgid "Define the port number of SVDRP service."
msgstr "定義SVDRP服務的端口號."
msgid "SVDRP service IP"
msgstr "SVDRP服務的IP地址"
msgid "Define the IP address of SVDRP service."
msgstr "定義SVDRP服務的IP地址."
msgid "Help"
msgstr "幫助"
msgid "Video"
msgstr "視頻"
msgid "Audio"
msgstr "音頻"
msgid "Transponder Information"
msgstr "轉發器信息"
msgid "Apid"
msgstr "Apid"
msgid "Dpid"
msgstr "Dpid"
msgid "Spid"
msgstr "Spid"
msgid "Nid"
msgstr "Nid"
msgid "Tid"
msgstr "Tid"
msgid "Rid"
msgstr "Rid"
msgid "Coderate"
msgstr "碼速率"
msgid "Stream Information"
msgstr "流信息"
msgid "Video Stream"
msgstr "視頻流"
msgid "Codec"
msgstr "解碼模式"
msgid "Bitrate"
msgstr "比特率"
msgid "Aspect Ratio"
msgstr "縱橫比"
msgid "Frame Rate"
msgstr "幀速率"
msgid "Video Format"
msgstr "視頻制式"
msgid "Resolution"
msgstr "分辨率"
msgid "Audio Stream"
msgstr "音頻流"
msgid "Channel Mode"
msgstr "聲道模式"
msgid "Sampling Frequency"
msgstr "採樣頻率"
msgid "AC-3 Stream"
msgstr "AC-3流"
msgid "Bit Stream Mode"
msgstr "比特流模式"
msgid "Audio Coding Mode"
msgstr "音頻編碼模式"
msgid "Center Mix Level"
msgstr "中心混合級別"
msgid "Surround Mix Level"
msgstr "環繞混合級別"
msgid "Dolby Surround Mode"
msgstr "杜比環繞聲模式"
msgid "Low Frequency Effects"
msgstr "低頻效果"
msgid "Dialogue Normalization"
msgstr "對話正常化"
msgid "Fixed"
msgstr "固定"
msgid "Analog"
msgstr "模擬"
msgid "MPEG-2"
msgstr "MPEG-2"
msgid "H.264"
msgstr "H.264"
msgid "MPEG-1 Layer I"
msgstr "MPEG-1 Layer I"
msgid "MPEG-1 Layer II"
msgstr "MPEG-1 Layer II"
msgid "MPEG-1 Layer III"
msgstr "MPEG-1 Layer III"
msgid "MPEG-2 Layer I"
msgstr "MPEG-2 Layer I"
msgid "MPEG-2 Layer II"
msgstr "MPEG-2 Layer II"
msgid "MPEG-2 Layer III"
msgstr "MPEG-2 Layer III"
msgid "HE-AAC"
msgstr "HE-AAC"
msgid "stereo"
msgstr "立體聲"
msgid "joint Stereo"
msgstr "聯合立體聲"
msgid "dual"
msgstr "雙重"
msgid "mono"
msgstr "單聲道"
msgid "interlaced"
msgstr "隔行掃描"
msgid "progressive"
msgstr "進步"
msgid "reserved"
msgstr "保留"
msgid "extended"
msgstr "擴展"
msgid "unknown"
msgstr "未知"
msgid "component"
msgstr "組件"
msgid "PAL"
msgstr "PAL"
msgid "NTSC"
msgstr "NTSC"
msgid "SECAM"
msgstr "SECAM"
msgid "MAC"
msgstr "MAC"
msgid "Hz"
msgstr "赫茲"
msgid "Complete Main (CM)"
msgstr "完成主要(CM)"
msgid "Music and Effects (ME)"
msgstr "音樂和效果(ME)"
msgid "Visually Impaired (VI)"
msgstr "視障(VI)"
msgid "Hearing Impaired (HI)"
msgstr "聽障(HI)"
msgid "Dialogue (D)"
msgstr "對話(D)"
msgid "Commentary (C)"
msgstr "評論(C)"
msgid "Emergency (E)"
msgstr "緊急(E)"
msgid "Voice Over (VO)"
msgstr "旁白(VO)"
msgid "Karaoke"
msgstr "卡拉OK"
msgid "Ch1"
msgstr "Ch1"
msgid "Ch2"
msgstr "Ch2"
msgid "C"
msgstr "C"
msgid "L"
msgstr "L"
msgid "R"
msgstr "R"
msgid "S"
msgstr "S"
msgid "SL"
msgstr "SL"
msgid "SR"
msgstr "SR"
msgid "dB"
msgstr "dB"
msgid "not indicated"
msgstr "沒有說明"
msgid "MHz"
msgstr "兆赫茲"
msgid "free"
msgstr "免費"
msgid "Mbit/s"
msgstr "兆位/秒"
msgid "kbit/s"
msgstr "千字節/秒"

23
symbols/eight.xpm Normal file
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@@ -0,0 +1,23 @@
/* XPM */
static const char *const eight_xpm[] = {
"15 18 2 1",
". c #FFFFFF",
"+ c #000000",
"+++++++++++++++",
"..............+",
".....++++.....+",
"....++++++....+",
"....++..++....+",
"...++....++...+",
"...++....++...+",
"....++..++....+",
".....++++.....+",
".....++++.....+",
"....++..++....+",
"...++....++...+",
"...++....++...+",
"....++..++....+",
"....++++++....+",
".....++++.....+",
"..............+",
"+++++++++++++++"};

23
symbols/format1080.xpm Normal file
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/* XPM */
static const char *const format1080_xpm[] = {
"40 18 2 1",
". c #FFFFFF",
"+ c #000000",
"++++++++++++++++++++++++++++++++++++++++",
"+......................................+",
"+......++...++++.....++++.....++++.....+",
"+...+++++..++++++...++++++...++++++....+",
"+...+++++..++..++...++..++...++..++....+",
"+......++.++....++.++....++.++....++...+",
"+......++.++....++.++....++.++....++...+",
"+......++.++....++..++..++..++....++...+",
"+......++.++....++...++++...++....++...+",
"+......++.++....++...++++...++....++...+",
"+......++.++....++..++..++..++....++...+",
"+......++.++....++.++....++.++....++...+",
"+......++.++....++.++....++.++....++...+",
"+......++..++..++...++..++...++..++....+",
"+......++..++++++...++++++...++++++....+",
"+......++...++++.....++++.....++++.....+",
"+......................................+",
"++++++++++++++++++++++++++++++++++++++++"};

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symbols/format480.xpm Normal file
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/* XPM */
static const char *const format480_xpm[] = {
"35 18 2 1",
". c #FFFFFF",
"+ c #000000",
"+++++++++++++++++++++++++++++++++++",
"+.................................+",
"+.........++....++++.....++++.....+",
"+........+++...++++++...++++++....+",
"+.......++++...++..++...++..++....+",
"+......++.++..++....++.++....++...+",
"+.....++..++..++....++.++....++...+",
"+.....++..++...++..++..++....++...+",
"+....++...++....++++...++....++...+",
"+...++....++....++++...++....++...+",
"+...+++++++++..++..++..++....++...+",
"+...+++++++++.++....++.++....++...+",
"+.........++..++....++.++....++...+",
"+.........++...++..++...++..++....+",
"+.........++...++++++...++++++....+",
"+.........++....++++.....++++.....+",
"+.................................+",
"+++++++++++++++++++++++++++++++++++"};

23
symbols/format576.xpm Normal file
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/* XPM */
static const char *const format576_xpm[] = {
"33 18 2 1",
". c #FFFFFF",
"+ c #000000",
"+++++++++++++++++++++++++++++++++",
"+...............................+",
"+...+++++++.++++++++..++++++....+",
"+...+++++++.++++++++.++++++++...+",
"+...++......++....++.+++...++...+",
"+...++............++.++.........+",
"+...++...........+++.++.........+",
"+...++++++.......++..++.+++.....+",
"+...+++++++......++..+++++++....+",
"+...++...+++....+++..+++..+++...+",
"+.........++....++...++....++...+",
"+.........++....++...++....++...+",
"+...++....++...+++...++....++...+",
"+...++...+++...++....+++..+++...+",
"+...+++++++....++....+++++++....+",
"+....+++++.....++.....+++++.....+",
"+...............................+",
"+++++++++++++++++++++++++++++++++"};

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symbols/format720.xpm Normal file
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/* XPM */
static const char *const format720_xpm[] = {
"34 18 2 1",
". c #FFFFFF",
"+ c #000000",
"++++++++++++++++++++++++++++++++++",
"+................................+",
"+...++++++++...++++.....++++.....+",
"+...++++++++.+++++++...++++++....+",
"+...++....++.++....++..++..++....+",
"+.........++.......++.++....++...+",
"+.........++.......++.++....++...+",
"+.........++.......++.++....++...+",
"+........++......+++..++....++...+",
"+.......+++.....+++...++....++...+",
"+.......++.....+++....++....++...+",
"+.......++....+++.....++....++...+",
"+......+++...+++......++....++...+",
"+......++....++........++..++....+",
"+......++....++++++++..++++++....+",
"+......++....++++++++...++++.....+",
"+................................+",
"++++++++++++++++++++++++++++++++++"};