FS-11425 refactor vpx to support more profiles

This commit is contained in:
Seven Du 2018-10-01 17:52:05 +08:00 committed by Andrey Volk
parent 2a6fb572af
commit 0bbea7e197
1 changed files with 345 additions and 273 deletions

View File

@ -52,6 +52,7 @@
#define KEY_FRAME_MIN_FREQ 250000
typedef struct my_vpx_cfg_s {
char name[64];
int lossless;
int cpuused;
int token_parts;
@ -399,23 +400,24 @@ struct vpx_context {
};
typedef struct vpx_context vpx_context_t;
#define MAX_PROFILES 100
struct vpx_globals {
int debug;
uint32_t max_bitrate;
uint32_t rtp_slice_size;
uint32_t key_frame_min_freq;
char vp8_profile[20];
char vp9_profile[20];
char vp10_profile[20];
uint32_t dec_threads;
uint32_t enc_threads;
my_vpx_cfg_t vp8;
my_vpx_cfg_t vp9;
my_vpx_cfg_t vp10;
my_vpx_cfg_t *profiles[MAX_PROFILES];
};
struct vpx_globals vpx_globals = { 0 };
static my_vpx_cfg_t *find_cfg_profile(const char *name, switch_bool_t reconfig);
static switch_status_t init_decoder(switch_codec_t *codec)
{
vpx_context_t *context = (vpx_context_t *)codec->private_info;
@ -433,11 +435,13 @@ static switch_status_t init_decoder(switch_codec_t *codec)
vpx_codec_err_t err;
if (context->is_vp9) {
my_cfg = &vpx_globals.vp9;
my_cfg = find_cfg_profile("vp9", SWITCH_FALSE);
} else {
my_cfg = &vpx_globals.vp8;
my_cfg = find_cfg_profile("vp8", SWITCH_FALSE);
}
if (!my_cfg) return SWITCH_STATUS_FALSE;
cfg.threads = my_cfg->dec_cfg.threads;
if ((err = vpx_codec_dec_init(&context->decoder, context->decoder_interface, &cfg, dec_flags)) != VPX_CODEC_OK) {
@ -482,11 +486,13 @@ static switch_status_t init_encoder(switch_codec_t *codec)
vpx_codec_err_t err;
if (context->is_vp9) {
my_cfg = &vpx_globals.vp9;
my_cfg = find_cfg_profile("vp9", SWITCH_FALSE);
} else {
my_cfg = &vpx_globals.vp8;
my_cfg = find_cfg_profile("vp8", SWITCH_FALSE);
}
if (!my_cfg) return SWITCH_STATUS_FALSE;
if (!context->codec_settings.video.width) {
context->codec_settings.video.width = 1280;
}
@ -1189,14 +1195,18 @@ static switch_status_t switch_vpx_decode(switch_codec_t *codec, switch_frame_t *
if (context->need_decoder_reset != 0) {
vpx_codec_destroy(&context->decoder);
context->decoder_init = 0;
init_decoder(codec);
status = init_decoder(codec);
context->need_decoder_reset = 0;
}
if (status != SWITCH_STATUS_SUCCESS) goto end;
if (!context->decoder_init) {
init_decoder(codec);
status = init_decoder(codec);
}
if (status != SWITCH_STATUS_SUCCESS) goto end;
if (!context->decoder_init) {
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_WARNING, "VPX decoder is not initialized!\n");
return SWITCH_STATUS_FALSE;
@ -1434,52 +1444,294 @@ static switch_status_t switch_vpx_destroy(switch_codec_t *codec)
return SWITCH_STATUS_SUCCESS;
}
static void init_vp8(my_vpx_cfg_t *my_cfg)
{
vpx_codec_enc_config_default(vpx_codec_vp8_cx(), &my_cfg->enc_cfg, 0);
my_cfg->cpuused = -6;
my_cfg->enc_cfg.g_profile = 2;
my_cfg->enc_cfg.g_timebase.den = 1000;
my_cfg->enc_cfg.g_error_resilient = VPX_ERROR_RESILIENT_PARTITIONS;
my_cfg->enc_cfg.rc_resize_allowed = 1;
my_cfg->enc_cfg.rc_end_usage = VPX_CBR;
my_cfg->enc_cfg.rc_target_bitrate = switch_parse_bandwidth_string("1mb");
my_cfg->enc_cfg.rc_min_quantizer = 4;
my_cfg->enc_cfg.rc_max_quantizer = 63;
my_cfg->enc_cfg.rc_overshoot_pct = 50;
my_cfg->enc_cfg.rc_buf_sz = 5000;
my_cfg->enc_cfg.rc_buf_initial_sz = 1000;
my_cfg->enc_cfg.rc_buf_optimal_sz = 1000;
my_cfg->enc_cfg.kf_max_dist = 360;
}
static void init_vp9(my_vpx_cfg_t *my_cfg)
{
vpx_codec_enc_config_default(vpx_codec_vp9_cx(), &my_cfg->enc_cfg, 0);
my_cfg->cpuused = -6;
my_cfg->enc_cfg.g_profile = 2;
my_cfg->enc_cfg.g_timebase.den = 1000;
my_cfg->enc_cfg.g_error_resilient = VPX_ERROR_RESILIENT_PARTITIONS;
my_cfg->enc_cfg.rc_resize_allowed = 1;
my_cfg->enc_cfg.rc_end_usage = VPX_CBR;
my_cfg->enc_cfg.rc_target_bitrate = switch_parse_bandwidth_string("1mb");
my_cfg->enc_cfg.rc_min_quantizer = 4;
my_cfg->enc_cfg.rc_max_quantizer = 63;
my_cfg->enc_cfg.rc_overshoot_pct = 50;
my_cfg->enc_cfg.rc_buf_sz = 5000;
my_cfg->enc_cfg.rc_buf_initial_sz = 1000;
my_cfg->enc_cfg.rc_buf_optimal_sz = 1000;
my_cfg->enc_cfg.kf_max_dist = 360;
my_cfg->tune_content = VP9E_CONTENT_SCREEN;
}
static void init_vp10(my_vpx_cfg_t *my_cfg)
{
// vpx_codec_enc_config_default(vpx_codec_vp9_cx(), &cfg->enc_cfg, 0);
my_cfg->cpuused = -6;
}
static my_vpx_cfg_t *find_cfg_profile(const char *name, switch_bool_t reconfig)
{
int i;
for (i = 0; i < MAX_PROFILES; i++) {
if (!vpx_globals.profiles[i]) {
vpx_globals.profiles[i] = malloc(sizeof(my_vpx_cfg_t));
switch_assert(vpx_globals.profiles[i]);
memset(vpx_globals.profiles[i], 0, sizeof(my_vpx_cfg_t));
switch_set_string(vpx_globals.profiles[i]->name, name);
if (!strcmp(name, "vp8")) {
init_vp8(vpx_globals.profiles[i]);
} else if (!strcmp(name, "vp9")) {
init_vp9(vpx_globals.profiles[i]);
} else if (!strcmp(name, "vp10")) {
init_vp10(vpx_globals.profiles[i]);
}
return vpx_globals.profiles[i];
}
if (!strcmp(name, vpx_globals.profiles[i]->name)) {
if (reconfig) {
memset(vpx_globals.profiles[i], 0, sizeof(my_vpx_cfg_t));
switch_set_string(vpx_globals.profiles[i]->name, name);
}
return vpx_globals.profiles[i];
}
}
return NULL;
}
#define UINTVAL(v) (v > 0 ? v : 0);
static void parse_config(switch_xml_t profile)
{
switch_xml_t param = NULL;
const char *profile_name = switch_xml_attr(profile, "name");
my_vpx_cfg_t *my_cfg = NULL;
vpx_codec_dec_cfg_t *dec_cfg = NULL;
vpx_codec_enc_cfg_t *enc_cfg = NULL;
if (zstr(profile_name)) return;
my_cfg = find_cfg_profile(profile_name, SWITCH_TRUE);
if (!my_cfg) return;
dec_cfg = &my_cfg->dec_cfg;
enc_cfg = &my_cfg->enc_cfg;
for (param = switch_xml_child(profile, "param"); param; param = param->next) {
const char *name = switch_xml_attr(param, "name");
const char *value = switch_xml_attr(param, "value");
int val;
if (!enc_cfg || !dec_cfg) break;
if (zstr(name) || zstr(value)) continue;
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "%s: %s = %s\n", profile_name, name, value);
val = atoi(value);
if (!strcmp(name, "dec-threads")) {
dec_cfg->threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "enc-threads")) {
enc_cfg->g_threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "g-profile")) {
enc_cfg->g_profile = UINTVAL(val);
#if 0
} else if (!strcmp(name, "g-timebase")) {
int num = 0;
int den = 0;
char *slash = strchr(value, '/');
num = UINTVAL(val);
if (slash) {
slash++;
den = atoi(slash);
if (den < 0) den = 0;
}
if (num && den) {
enc_cfg->g_timebase.num = num;
enc_cfg->g_timebase.den = den;
}
#endif
} else if (!strcmp(name, "g-error-resilient")) {
char *s = strdup(value);
vpx_codec_er_flags_t res = 0;
if (s) {
int argc;
char *argv[10];
int i;
argc = switch_separate_string(s, '|', argv, (sizeof(argv) / sizeof(argv[0])));
for (i = 0; i < argc; i++) {
if (!strcasecmp(argv[i], "DEFAULT")) {
res |= VPX_ERROR_RESILIENT_DEFAULT;
} else if (!strcasecmp(argv[i], "PARTITIONS")) {
res |= VPX_ERROR_RESILIENT_PARTITIONS;
}
}
free(s);
enc_cfg->g_error_resilient = res;
}
} else if (!strcmp(name, "g-pass")) {
int pass = 0;
if (!strcasecmp(value, "ONE_PASS")) {
pass = VPX_RC_ONE_PASS;
} else if (!strcasecmp(value, "FIRST_PASS")) {
pass = VPX_RC_FIRST_PASS;
} else if (!strcasecmp(value, "LAST_PASS")) {
pass = VPX_RC_FIRST_PASS;
}
enc_cfg->g_pass = pass;
} else if (!strcmp(name, "g-lag-in-frames")) {
enc_cfg->g_lag_in_frames = UINTVAL(val);
} else if (!strcmp(name, "rc_dropframe_thresh")) {
enc_cfg->rc_dropframe_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-allowed")) {
enc_cfg->rc_resize_allowed = UINTVAL(val);
} else if (!strcmp(name, "rc-scaled-width")) {
enc_cfg->rc_scaled_width = UINTVAL(val);
} else if (!strcmp(name, "rc-scaled-height")) {
enc_cfg->rc_scaled_height = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-up-thresh")) {
enc_cfg->rc_resize_up_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-down-thresh")) {
enc_cfg->rc_resize_down_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-end-usage")) {
int mode = 0;
if (!strcasecmp(value, "VBR")) {
mode = VPX_VBR;
} else if (!strcasecmp(value, "CBR")) {
mode = VPX_CBR;
} else if (!strcasecmp(value, "CQ")) {
mode = VPX_CQ;
} else if (!strcasecmp(value, "Q")) {
mode = VPX_Q;
}
enc_cfg->rc_end_usage = mode;
} else if (!strcmp(name, "rc-target-bitrate")) {
int br = switch_parse_bandwidth_string(value);
if (br > 0) {
enc_cfg->rc_target_bitrate = br;
}
} else if (!strcmp(name, "rc-min-quantizer")) {
enc_cfg->rc_min_quantizer = UINTVAL(val);
} else if (!strcmp(name, "rc-max-quantizer")) {
enc_cfg->rc_max_quantizer = UINTVAL(val);
} else if (!strcmp(name, "rc-undershoot-pct")) {
enc_cfg->rc_undershoot_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-overshoot-pct")) {
enc_cfg->rc_overshoot_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-sz")) {
enc_cfg->rc_buf_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-initial-sz")) {
enc_cfg->rc_buf_initial_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-optimal-sz")) {
enc_cfg->rc_buf_optimal_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-bias-pct")) {
enc_cfg->rc_2pass_vbr_bias_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-minsection-pct")) {
enc_cfg->rc_2pass_vbr_minsection_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-maxsection-pct")) {
enc_cfg->rc_2pass_vbr_maxsection_pct = UINTVAL(val);
} else if (!strcmp(name, "kf-mode")) {
int mode = 0;
if (!strcasecmp(value, "AUTO")) {
mode = VPX_KF_AUTO;
} else if (!strcasecmp(value, "DISABLED")) {
mode = VPX_KF_DISABLED;
}
enc_cfg->kf_mode = mode;
} else if (!strcmp(name, "kf-min-dist")) {
enc_cfg->kf_min_dist = UINTVAL(val);
} else if (!strcmp(name, "kf-max-dist")) {
enc_cfg->kf_max_dist = UINTVAL(val);
} else if (!strcmp(name, "ss-number-layers")) {
enc_cfg->ss_number_layers = UINTVAL(val);
} else if (!strcmp(name, "ts-number-layers")) {
enc_cfg->ts_number_layers = UINTVAL(val);
} else if (!strcmp(name, "ts-periodicity")) {
enc_cfg->ts_periodicity = UINTVAL(val);
} else if (!strcmp(name, "temporal-layering-mode")) {
enc_cfg->temporal_layering_mode = UINTVAL(val);
} else if (!strcmp(name, "lossless")) {
my_cfg->lossless = UINTVAL(val);
} else if (!strcmp(name, "cpuused")) {
if (!strcmp(my_cfg->name, "vp8")) {
if (val < -16) val = -16;
if (val > 16) val = 16;
} else if (!strcmp(my_cfg->name, "vp9")) {
if (val < -8) val = -8;
if (val > 8) val = 8;
}
my_cfg->cpuused = val;
} else if (!strcmp(name, "token-parts")) {
my_cfg->token_parts = switch_parse_cpu_string(value);
} else if (!strcmp(name, "static-thresh")) {
my_cfg->static_thresh = UINTVAL(val);
} else if (!strcmp(name, "noise-sensitivity")) {
my_cfg->noise_sensitivity = UINTVAL(val);
} else if (!strcmp(name, "losmax-intra-bitrate-pct")) {
my_cfg->max_intra_bitrate_pct = UINTVAL(val);
} else if (!strcmp(name, "tune-content")) {
uint32_t tune = VP9E_CONTENT_DEFAULT;
if (!strcasecmp(value, "SCREEN")) {
tune = VP9E_CONTENT_SCREEN;
}
my_cfg->tune_content = tune;
}
} // for param
}
static void load_config()
{
switch_xml_t cfg = NULL, xml = NULL;
my_vpx_cfg_t *my_cfg = NULL;
vpx_codec_enc_config_default(vpx_codec_vp8_cx(), &vpx_globals.vp8.enc_cfg, 0);
vpx_codec_enc_config_default(vpx_codec_vp9_cx(), &vpx_globals.vp9.enc_cfg, 0);
switch_set_string(vpx_globals.vp8_profile, "vp8");
switch_set_string(vpx_globals.vp9_profile, "vp9");
switch_set_string(vpx_globals.vp10_profile, "vp10");
memset(&vpx_globals, 0, sizeof(vpx_globals));
vpx_globals.max_bitrate = 0;
vpx_globals.vp8.cpuused = -6;
vpx_globals.vp8.enc_cfg.g_profile = 2;
vpx_globals.vp8.enc_cfg.g_timebase.den = 1000;
vpx_globals.vp8.enc_cfg.g_error_resilient = VPX_ERROR_RESILIENT_PARTITIONS;
vpx_globals.vp8.enc_cfg.rc_resize_allowed = 1;
vpx_globals.vp8.enc_cfg.rc_end_usage = VPX_CBR;
vpx_globals.vp8.enc_cfg.rc_target_bitrate = switch_parse_bandwidth_string("1mb");
vpx_globals.vp8.enc_cfg.rc_min_quantizer = 4;
vpx_globals.vp8.enc_cfg.rc_max_quantizer = 63;
vpx_globals.vp8.enc_cfg.rc_overshoot_pct = 50;
vpx_globals.vp8.enc_cfg.rc_buf_sz = 5000;
vpx_globals.vp8.enc_cfg.rc_buf_initial_sz = 1000;
vpx_globals.vp8.enc_cfg.rc_buf_optimal_sz = 1000;
vpx_globals.vp8.enc_cfg.kf_max_dist = 360;
vpx_globals.vp9.cpuused = -6;
vpx_globals.vp9.enc_cfg.g_profile = 2;
vpx_globals.vp9.enc_cfg.g_timebase.den = 1000;
vpx_globals.vp9.enc_cfg.g_error_resilient = VPX_ERROR_RESILIENT_PARTITIONS;
vpx_globals.vp9.enc_cfg.rc_resize_allowed = 1;
vpx_globals.vp9.enc_cfg.rc_end_usage = VPX_CBR;
vpx_globals.vp9.enc_cfg.rc_target_bitrate = switch_parse_bandwidth_string("1mb");
vpx_globals.vp9.enc_cfg.rc_min_quantizer = 4;
vpx_globals.vp9.enc_cfg.rc_max_quantizer = 63;
vpx_globals.vp9.enc_cfg.rc_overshoot_pct = 50;
vpx_globals.vp9.enc_cfg.rc_buf_sz = 5000;
vpx_globals.vp9.enc_cfg.rc_buf_initial_sz = 1000;
vpx_globals.vp9.enc_cfg.rc_buf_optimal_sz = 1000;
vpx_globals.vp9.enc_cfg.kf_max_dist = 360;
vpx_globals.vp9.tune_content = VP9E_CONTENT_SCREEN;
vpx_globals.vp10.cpuused = -6;
vpx_globals.debug = 1;
xml = switch_xml_open_cfg("vpx.conf", &cfg, NULL);
@ -1506,19 +1758,9 @@ static void load_config()
vpx_globals.key_frame_min_freq = UINTVAL(val);
vpx_globals.key_frame_min_freq *= 1000;
} else if (!strcmp(name, "dec-threads")) {
vpx_globals.vp8.dec_cfg.threads = switch_parse_cpu_string(value);
vpx_globals.vp9.dec_cfg.threads = switch_parse_cpu_string(value);
vpx_globals.vp10.dec_cfg.threads = switch_parse_cpu_string(value);
vpx_globals.dec_threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "enc-threads")) {
vpx_globals.vp8.enc_cfg.g_threads = switch_parse_cpu_string(value);
vpx_globals.vp9.enc_cfg.g_threads = switch_parse_cpu_string(value);
vpx_globals.vp10.enc_cfg.g_threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "vp8-profile")) {
switch_set_string(vpx_globals.vp8_profile, value);
} else if (!strcmp(name, "vp9-profile")) {
switch_set_string(vpx_globals.vp9_profile, value);
} else if (!strcmp(name, "vp10-profile")) {
switch_set_string(vpx_globals.vp10_profile, value);
vpx_globals.enc_threads = switch_parse_cpu_string(value);
}
}
}
@ -1527,204 +1769,8 @@ static void load_config()
switch_xml_t profile = switch_xml_child(profiles, "profile");
for (; profile; profile = profile->next) {
switch_xml_t param = NULL;
const char *profile_name = switch_xml_attr(profile, "name");
vpx_codec_dec_cfg_t *dec_cfg = NULL;
vpx_codec_enc_cfg_t *enc_cfg = NULL;
my_vpx_cfg_t *my_cfg = NULL;
parse_config(profile);
if (zstr(profile_name)) continue;
if (!strcmp(profile_name, vpx_globals.vp8_profile)) {
my_cfg = &vpx_globals.vp8;
} else if (!strcmp(profile_name, vpx_globals.vp9_profile)) {
my_cfg = &vpx_globals.vp9;
} else if (!strcmp(profile_name, vpx_globals.vp10_profile)) {
my_cfg = &vpx_globals.vp10;
}
if (!my_cfg) continue;
dec_cfg = &my_cfg->dec_cfg;
enc_cfg = &my_cfg->enc_cfg;
for (param = switch_xml_child(profile, "param"); param; param = param->next) {
const char *name = switch_xml_attr(param, "name");
const char *value = switch_xml_attr(param, "value");
int val;
if (!enc_cfg || !dec_cfg) break;
if (zstr(name) || zstr(value)) continue;
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "%s: %s = %s\n", profile_name, name, value);
val = atoi(value);
if (!strcmp(name, "dec-threads")) {
dec_cfg->threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "enc-threads")) {
enc_cfg->g_threads = switch_parse_cpu_string(value);
} else if (!strcmp(name, "g-profile")) {
enc_cfg->g_profile = UINTVAL(val);
#if 0
} else if (!strcmp(name, "g-timebase")) {
int num = 0;
int den = 0;
char *slash = strchr(value, '/');
num = UINTVAL(val);
if (slash) {
slash++;
den = atoi(slash);
if (den < 0) den = 0;
}
if (num && den) {
enc_cfg->g_timebase.num = num;
enc_cfg->g_timebase.den = den;
}
#endif
} else if (!strcmp(name, "g-error-resilient")) {
char *s = strdup(value);
vpx_codec_er_flags_t res = 0;
if (s) {
int argc;
char *argv[10];
int i;
argc = switch_separate_string(s, '|', argv, (sizeof(argv) / sizeof(argv[0])));
for (i = 0; i < argc; i++) {
if (!strcasecmp(argv[i], "DEFAULT")) {
res |= VPX_ERROR_RESILIENT_DEFAULT;
} else if (!strcasecmp(argv[i], "PARTITIONS")) {
res |= VPX_ERROR_RESILIENT_PARTITIONS;
}
}
free(s);
enc_cfg->g_error_resilient = res;
}
} else if (!strcmp(name, "g-pass")) {
int pass = 0;
if (!strcasecmp(value, "ONE_PASS")) {
pass = VPX_RC_ONE_PASS;
} else if (!strcasecmp(value, "FIRST_PASS")) {
pass = VPX_RC_FIRST_PASS;
} else if (!strcasecmp(value, "LAST_PASS")) {
pass = VPX_RC_FIRST_PASS;
}
enc_cfg->g_pass = pass;
} else if (!strcmp(name, "g-lag-in-frames")) {
enc_cfg->g_lag_in_frames = UINTVAL(val);
} else if (!strcmp(name, "rc_dropframe_thresh")) {
enc_cfg->rc_dropframe_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-allowed")) {
enc_cfg->rc_resize_allowed = UINTVAL(val);
} else if (!strcmp(name, "rc-scaled-width")) {
enc_cfg->rc_scaled_width = UINTVAL(val);
} else if (!strcmp(name, "rc-scaled-height")) {
enc_cfg->rc_scaled_height = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-up-thresh")) {
enc_cfg->rc_resize_up_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-resize-down-thresh")) {
enc_cfg->rc_resize_down_thresh = UINTVAL(val);
} else if (!strcmp(name, "rc-end-usage")) {
int mode = 0;
if (!strcasecmp(value, "VBR")) {
mode = VPX_VBR;
} else if (!strcasecmp(value, "CBR")) {
mode = VPX_CBR;
} else if (!strcasecmp(value, "CQ")) {
mode = VPX_CQ;
} else if (!strcasecmp(value, "Q")) {
mode = VPX_Q;
}
enc_cfg->rc_end_usage = mode;
} else if (!strcmp(name, "rc-target-bitrate")) {
int br = switch_parse_bandwidth_string(value);
if (br > 0) {
enc_cfg->rc_target_bitrate = br;
}
} else if (!strcmp(name, "rc-min-quantizer")) {
enc_cfg->rc_min_quantizer = UINTVAL(val);
} else if (!strcmp(name, "rc-max-quantizer")) {
enc_cfg->rc_max_quantizer = UINTVAL(val);
} else if (!strcmp(name, "rc-undershoot-pct")) {
enc_cfg->rc_undershoot_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-overshoot-pct")) {
enc_cfg->rc_overshoot_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-sz")) {
enc_cfg->rc_buf_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-initial-sz")) {
enc_cfg->rc_buf_initial_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-buf-optimal-sz")) {
enc_cfg->rc_buf_optimal_sz = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-bias-pct")) {
enc_cfg->rc_2pass_vbr_bias_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-minsection-pct")) {
enc_cfg->rc_2pass_vbr_minsection_pct = UINTVAL(val);
} else if (!strcmp(name, "rc-2pass-vbr-maxsection-pct")) {
enc_cfg->rc_2pass_vbr_maxsection_pct = UINTVAL(val);
} else if (!strcmp(name, "kf-mode")) {
int mode = 0;
if (!strcasecmp(value, "AUTO")) {
mode = VPX_KF_AUTO;
} else if (!strcasecmp(value, "DISABLED")) {
mode = VPX_KF_DISABLED;
}
enc_cfg->kf_mode = mode;
} else if (!strcmp(name, "kf-min-dist")) {
enc_cfg->kf_min_dist = UINTVAL(val);
} else if (!strcmp(name, "kf-max-dist")) {
enc_cfg->kf_max_dist = UINTVAL(val);
} else if (!strcmp(name, "ss-number-layers")) {
enc_cfg->ss_number_layers = UINTVAL(val);
} else if (!strcmp(name, "ts-number-layers")) {
enc_cfg->ts_number_layers = UINTVAL(val);
} else if (!strcmp(name, "ts-periodicity")) {
enc_cfg->ts_periodicity = UINTVAL(val);
} else if (!strcmp(name, "temporal-layering-mode")) {
enc_cfg->temporal_layering_mode = UINTVAL(val);
} else if (!strcmp(name, "lossless")) {
my_cfg->lossless = UINTVAL(val);
} else if (!strcmp(name, "cpuused")) {
if (my_cfg == &vpx_globals.vp8) {
if (val < -16) val = -16;
if (val > 16) val = 16;
} else if (my_cfg == &vpx_globals.vp9) {
if (val < -8) val = -8;
if (val > 8) val = 8;
}
my_cfg->cpuused = val;
} else if (!strcmp(name, "token-parts")) {
my_cfg->token_parts = switch_parse_cpu_string(value);
} else if (!strcmp(name, "static-thresh")) {
my_cfg->static_thresh = UINTVAL(val);
} else if (!strcmp(name, "noise-sensitivity")) {
my_cfg->noise_sensitivity = UINTVAL(val);
} else if (!strcmp(name, "losmax-intra-bitrate-pct")) {
my_cfg->max_intra_bitrate_pct = UINTVAL(val);
} else if (!strcmp(name, "tune-content")) {
uint32_t tune = VP9E_CONTENT_DEFAULT;
if (!strcasecmp(value, "SCREEN")) {
tune = VP9E_CONTENT_SCREEN;
}
my_cfg->tune_content = tune;
}
} // for param
} // for profile
} // profiles
@ -1743,12 +1789,27 @@ static void load_config()
vpx_globals.key_frame_min_freq = KEY_FRAME_MIN_FREQ;
}
if (!vpx_globals.vp8.enc_cfg.g_threads) vpx_globals.vp8.enc_cfg.g_threads = 1;
if (!vpx_globals.vp8.dec_cfg.threads) vpx_globals.vp8.dec_cfg.threads = switch_parse_cpu_string("cpu/2/4");
if (!vpx_globals.vp9.enc_cfg.g_threads) vpx_globals.vp9.enc_cfg.g_threads = vpx_globals.vp8.enc_cfg.g_threads;
if (!vpx_globals.vp9.dec_cfg.threads) vpx_globals.vp9.dec_cfg.threads = vpx_globals.vp8.dec_cfg.threads;
if (!vpx_globals.vp10.enc_cfg.g_threads) vpx_globals.vp10.enc_cfg.g_threads = vpx_globals.vp8.enc_cfg.g_threads;
if (!vpx_globals.vp10.dec_cfg.threads) vpx_globals.vp10.dec_cfg.threads = vpx_globals.vp8.dec_cfg.threads;
my_cfg = find_cfg_profile("vp8", SWITCH_FALSE);
if (my_cfg) {
if (!my_cfg->enc_cfg.g_threads) my_cfg->enc_cfg.g_threads = 1;
if (!my_cfg->dec_cfg.threads) my_cfg->dec_cfg.threads = switch_parse_cpu_string("cpu/2/4");
}
my_cfg = find_cfg_profile("vp9", SWITCH_FALSE);
if (my_cfg) {
if (!my_cfg->enc_cfg.g_threads) my_cfg->enc_cfg.g_threads = 1;
if (!my_cfg->dec_cfg.threads) my_cfg->dec_cfg.threads = switch_parse_cpu_string("cpu/2/4");
}
my_cfg = find_cfg_profile("vp10", SWITCH_FALSE);
if (my_cfg) {
if (!my_cfg->enc_cfg.g_threads) my_cfg->enc_cfg.g_threads = 1;
if (!my_cfg->dec_cfg.threads) my_cfg->dec_cfg.threads = switch_parse_cpu_string("cpu/2/4");
}
}
#define VPX_API_SYNTAX "<reload|debug <on|off>>"
@ -1764,6 +1825,7 @@ SWITCH_STANDARD_API(vpx_api_function)
if (!strcasecmp(cmd, "reload")) {
const char *err;
my_vpx_cfg_t *my_cfg;
switch_xml_reload(&err);
stream->write_function(stream, "Reload XML [%s]\n", err);
@ -1773,16 +1835,26 @@ SWITCH_STANDARD_API(vpx_api_function)
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "rtp-slice-size", vpx_globals.rtp_slice_size);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "key-frame-min-freq", vpx_globals.key_frame_min_freq);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp8-dec-threads", vpx_globals.vp8.dec_cfg.threads);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp9-dec-threads", vpx_globals.vp9.dec_cfg.threads);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp10-dec-threads", vpx_globals.vp10.dec_cfg.threads);
my_cfg = find_cfg_profile("vp8", SWITCH_FALSE);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, "Codec: %s\n", vpx_codec_iface_name(vpx_codec_vp8_cx()));
show_config(&vpx_globals.vp8, &vpx_globals.vp8.enc_cfg);
if (my_cfg) {
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp8-dec-threads", my_cfg->dec_cfg.threads);
show_config(my_cfg, &my_cfg->enc_cfg);
}
my_cfg = find_cfg_profile("vp9", SWITCH_FALSE);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, "Codec: %s\n", vpx_codec_iface_name(vpx_codec_vp9_cx()));
show_config(&vpx_globals.vp9, &vpx_globals.vp9.enc_cfg);
if (my_cfg) {
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp8-dec-threads", my_cfg->dec_cfg.threads);
show_config(my_cfg, &my_cfg->enc_cfg);
}
my_cfg = find_cfg_profile("vp10", SWITCH_FALSE);
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, "Codec: VP10\n");
show_config(&vpx_globals.vp10, &vpx_globals.vp10.enc_cfg);
if (my_cfg) {
switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_INFO, " %-26s = %d\n", "vp8-dec-threads", my_cfg->dec_cfg.threads);
show_config(my_cfg, &my_cfg->enc_cfg);
}
stream->write_function(stream, "+OK\n");
} else if (!strcasecmp(cmd, "debug")) {