texture-amf-opts.hpp 9.0 KB

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  1. static bool str_to_bool(const char *str)
  2. {
  3. if (!str)
  4. return false;
  5. if (*str == '1')
  6. return true;
  7. if (*str == '0')
  8. return false;
  9. if (astrcmpi(str, "true") == 0)
  10. return true;
  11. if (astrcmpi(str, "false") == 0)
  12. return false;
  13. return false;
  14. }
  15. static void amf_apply_opt(amf_base *enc, obs_option *opt)
  16. {
  17. bool avc = enc->codec == amf_codec_type::AVC;
  18. bool hevc = enc->codec == amf_codec_type::HEVC;
  19. bool av1 = enc->codec == amf_codec_type::AV1;
  20. if (strcmp(opt->name, "g") == 0 || strcmp(opt->name, "keyint") == 0) {
  21. int val = atoi(opt->value);
  22. if (avc)
  23. set_avc_opt(IDR_PERIOD, val);
  24. else if (hevc)
  25. set_hevc_opt(NUM_GOPS_PER_IDR, val);
  26. else if (av1)
  27. set_av1_opt(GOP_SIZE, val);
  28. } else if (strcmp(opt->name, "usage") == 0) {
  29. if (strcmp(opt->value, "transcoding") == 0) {
  30. set_enum_opt(USAGE, TRANSCODING);
  31. } else if (strcmp(opt->value, "ultralowlatency") == 0) {
  32. if (avc)
  33. set_avc_enum(USAGE, ULTRA_LOW_LATENCY);
  34. else if (hevc)
  35. set_hevc_enum(USAGE, ULTRA_LOW_LATENCY);
  36. else
  37. warn("Invalid value for %s: %s", opt->name,
  38. opt->value);
  39. } else if (strcmp(opt->value, "lowlatency") == 0) {
  40. set_enum_opt(USAGE, LOW_LATENCY);
  41. } else if (strcmp(opt->value, "webcam") == 0) {
  42. if (avc)
  43. set_avc_enum(USAGE, WEBCAM);
  44. else if (hevc)
  45. set_hevc_enum(USAGE, WEBCAM);
  46. else
  47. warn("Invalid value for %s: %s", opt->name,
  48. opt->value);
  49. } else {
  50. warn("Invalid value for %s: %s", opt->name, opt->value);
  51. }
  52. } else if (strcmp(opt->name, "profile") == 0) {
  53. if (strcmp(opt->value, "main") == 0) {
  54. set_enum_opt(PROFILE, MAIN);
  55. } else if (enc->codec != amf_codec_type::AVC) {
  56. warn("Invalid value for %s: %s", opt->name, opt->value);
  57. return;
  58. }
  59. if (strcmp(opt->value, "high") == 0) {
  60. set_opt(PROFILE, AMF_VIDEO_ENCODER_PROFILE_HIGH);
  61. } else if (strcmp(opt->value, "constrained_baseline") == 0) {
  62. set_opt(PROFILE,
  63. AMF_VIDEO_ENCODER_PROFILE_CONSTRAINED_BASELINE);
  64. } else if (strcmp(opt->value, "constrained_high") == 0) {
  65. set_opt(PROFILE,
  66. AMF_VIDEO_ENCODER_PROFILE_CONSTRAINED_HIGH);
  67. } else {
  68. warn("Invalid value for %s: %s", opt->name, opt->value);
  69. }
  70. } else if (strcmp(opt->name, "level") == 0) {
  71. std::string val = opt->value;
  72. size_t pos = val.find('.');
  73. if (pos != std::string::npos)
  74. val.erase(pos, 1);
  75. int level = std::stoi(val);
  76. if (avc)
  77. set_avc_opt(PROFILE_LEVEL, level);
  78. else if (hevc)
  79. set_hevc_opt(PROFILE_LEVEL, level);
  80. else
  81. warn("Invalid value for %s: %s", opt->name, opt->value);
  82. } else if (strcmp(opt->name, "quality") == 0) {
  83. if (strcmp(opt->value, "speed") == 0) {
  84. set_enum_opt(QUALITY_PRESET, SPEED);
  85. } else if (strcmp(opt->value, "balanced") == 0) {
  86. set_enum_opt(QUALITY_PRESET, BALANCED);
  87. } else if (strcmp(opt->value, "quality") == 0) {
  88. set_enum_opt(QUALITY_PRESET, QUALITY);
  89. } else {
  90. warn("Invalid value for %s: %s", opt->name, opt->value);
  91. }
  92. } else if (strcmp(opt->name, "rc") == 0) {
  93. if (strcmp(opt->value, "cqp") == 0) {
  94. set_enum_opt(RATE_CONTROL_METHOD, CONSTANT_QP);
  95. } else if (strcmp(opt->value, "cbr") == 0) {
  96. set_enum_opt(RATE_CONTROL_METHOD, CBR);
  97. } else if (strcmp(opt->value, "vbr_peak") == 0) {
  98. set_enum_opt(RATE_CONTROL_METHOD, PEAK_CONSTRAINED_VBR);
  99. } else if (strcmp(opt->value, "vbr_latency") == 0) {
  100. set_enum_opt(RATE_CONTROL_METHOD,
  101. LATENCY_CONSTRAINED_VBR);
  102. } else {
  103. warn("Invalid value for %s: %s", opt->name, opt->value);
  104. }
  105. } else if (strcmp(opt->name, "enforce_hrd") == 0) {
  106. bool val = str_to_bool(opt->value);
  107. set_opt(ENFORCE_HRD, val);
  108. } else if (strcmp(opt->name, "filler_data") == 0) {
  109. bool val = str_to_bool(opt->value);
  110. if (avc)
  111. set_avc_opt(FILLER_DATA_ENABLE, val);
  112. else if (hevc)
  113. set_hevc_opt(FILLER_DATA_ENABLE, val);
  114. else
  115. warn("Invalid value for %s: %s", opt->name, opt->value);
  116. } else if (strcmp(opt->name, "vbaq") == 0) {
  117. bool val = str_to_bool(opt->value);
  118. if (avc)
  119. set_avc_opt(ENABLE_VBAQ, val);
  120. else if (hevc)
  121. set_hevc_opt(ENABLE_VBAQ, val);
  122. else
  123. warn("Invalid value for %s: %s", opt->name, opt->value);
  124. } else if (strcmp(opt->name, "qp_i") == 0) {
  125. int val = atoi(opt->value);
  126. if (avc)
  127. set_avc_opt(QP_I, val);
  128. else if (hevc)
  129. set_hevc_opt(QP_I, val);
  130. else
  131. warn("Invalid value for %s: %s", opt->name, opt->value);
  132. } else if (strcmp(opt->name, "qp_p") == 0) {
  133. int val = atoi(opt->value);
  134. if (avc)
  135. set_avc_opt(QP_P, val);
  136. else if (hevc)
  137. set_hevc_opt(QP_P, val);
  138. else
  139. warn("Invalid value for %s: %s", opt->name, opt->value);
  140. } else if (strcmp(opt->name, "me_half_pel") == 0) {
  141. bool val = str_to_bool(opt->value);
  142. if (avc)
  143. set_avc_opt(MOTION_HALF_PIXEL, val);
  144. else if (hevc)
  145. set_hevc_opt(MOTION_HALF_PIXEL, val);
  146. else
  147. warn("Invalid value for %s: %s", opt->name, opt->value);
  148. } else if (strcmp(opt->name, "me_quarter_pel") == 0) {
  149. bool val = str_to_bool(opt->value);
  150. if (avc)
  151. set_avc_opt(MOTION_QUARTERPIXEL, val);
  152. else if (hevc)
  153. set_hevc_opt(MOTION_QUARTERPIXEL, val);
  154. else
  155. warn("Invalid value for %s: %s", opt->name, opt->value);
  156. } else if (strcmp(opt->name, "aud") == 0) {
  157. bool val = str_to_bool(opt->value);
  158. if (avc)
  159. set_avc_opt(INSERT_AUD, val);
  160. else if (hevc)
  161. set_hevc_opt(INSERT_AUD, val);
  162. else
  163. warn("Invalid value for %s: %s", opt->name, opt->value);
  164. } else if (strcmp(opt->name, "max_au_size") == 0) {
  165. int val = atoi(opt->value);
  166. if (avc)
  167. set_avc_opt(MAX_AU_SIZE, val);
  168. else if (hevc)
  169. set_hevc_opt(MAX_AU_SIZE, val);
  170. else
  171. warn("Invalid value for %s: %s", opt->name, opt->value);
  172. } else if (avc && strcmp(opt->name, "preanalysis") == 0) {
  173. bool val = str_to_bool(opt->value);
  174. set_avc_property(enc, PREENCODE_ENABLE, val);
  175. } else if (avc && strcmp(opt->name, "qp_b") == 0) {
  176. int val = atoi(opt->value);
  177. set_avc_property(enc, QP_B, val);
  178. } else if (avc && strcmp(opt->name, "frame_skipping") == 0) {
  179. bool val = str_to_bool(opt->value);
  180. set_avc_property(enc, RATE_CONTROL_SKIP_FRAME_ENABLE, val);
  181. } else if (avc && strcmp(opt->name, "header_spacing") == 0) {
  182. int val = atoi(opt->value);
  183. set_avc_property(enc, HEADER_INSERTION_SPACING, val);
  184. } else if (avc && strcmp(opt->name, "bf_delta_qp") == 0) {
  185. int val = atoi(opt->value);
  186. set_avc_property(enc, B_PIC_DELTA_QP, val);
  187. } else if (avc && strcmp(opt->name, "bf_ref") == 0) {
  188. bool val = str_to_bool(opt->value);
  189. set_avc_property(enc, B_REFERENCE_ENABLE, val);
  190. } else if (avc && strcmp(opt->name, "bf_ref_delta_qp") == 0) {
  191. int val = atoi(opt->value);
  192. set_avc_property(enc, REF_B_PIC_DELTA_QP, val);
  193. } else if (avc && strcmp(opt->name, "intra_refresh_mb") == 0) {
  194. int val = atoi(opt->value);
  195. set_avc_property(enc, INTRA_REFRESH_NUM_MBS_PER_SLOT, val);
  196. } else if (avc && strcmp(opt->name, "coder") == 0) {
  197. if (strcmp(opt->value, "auto") == 0) {
  198. set_avc_opt(CABAC_ENABLE, AMF_VIDEO_ENCODER_UNDEFINED);
  199. } else if (strcmp(opt->value, "cavlc") == 0) {
  200. set_avc_opt(CABAC_ENABLE, AMF_VIDEO_ENCODER_CALV);
  201. } else if (strcmp(opt->value, "cabac") == 0) {
  202. set_avc_opt(CABAC_ENABLE, AMF_VIDEO_ENCODER_CABAC);
  203. } else {
  204. warn("Invalid value for %s: %s", opt->name, opt->value);
  205. }
  206. } else if (hevc && strcmp(opt->name, "profile_tier") == 0) {
  207. if (strcmp(opt->value, "main") == 0) {
  208. set_hevc_enum(TIER, MAIN);
  209. } else if (strcmp(opt->value, "high") == 0) {
  210. set_hevc_enum(TIER, HIGH);
  211. } else {
  212. warn("Invalid value for %s: %s", opt->name, opt->value);
  213. }
  214. } else if (hevc && strcmp(opt->name, "header_insertion_mode") == 0) {
  215. if (strcmp(opt->value, "none") == 0) {
  216. set_hevc_enum(HEADER_INSERTION_MODE, NONE);
  217. } else if (strcmp(opt->value, "gop") == 0) {
  218. set_hevc_enum(HEADER_INSERTION_MODE, GOP_ALIGNED);
  219. } else if (strcmp(opt->value, "idr") == 0) {
  220. set_hevc_enum(HEADER_INSERTION_MODE, IDR_ALIGNED);
  221. } else {
  222. warn("Invalid value for %s: %s", opt->name, opt->value);
  223. }
  224. } else if (hevc && strcmp(opt->name, "skip_frame") == 0) {
  225. bool val = str_to_bool(opt->value);
  226. set_hevc_property(enc, RATE_CONTROL_SKIP_FRAME_ENABLE, val);
  227. } else if (hevc && strcmp(opt->name, "gops_per_idr") == 0) {
  228. int val = atoi(opt->value);
  229. set_hevc_property(enc, NUM_GOPS_PER_IDR, val);
  230. } else if (hevc && strcmp(opt->name, "min_qp_i") == 0) {
  231. int val = atoi(opt->value);
  232. set_hevc_property(enc, MIN_QP_I, val);
  233. } else if (hevc && strcmp(opt->name, "max_qp_i") == 0) {
  234. int val = atoi(opt->value);
  235. set_hevc_property(enc, MAX_QP_I, val);
  236. } else if (hevc && strcmp(opt->name, "min_qp_p") == 0) {
  237. int val = atoi(opt->value);
  238. set_hevc_property(enc, MIN_QP_P, val);
  239. } else if (hevc && strcmp(opt->name, "max_qp_p") == 0) {
  240. int val = atoi(opt->value);
  241. set_hevc_property(enc, MAX_QP_P, val);
  242. } else {
  243. wchar_t wname[256];
  244. int val;
  245. bool is_bool = false;
  246. if (astrcmpi(opt->value, "true") == 0) {
  247. is_bool = true;
  248. val = 1;
  249. } else if (astrcmpi(opt->value, "false") == 0) {
  250. is_bool = true;
  251. val = 0;
  252. } else {
  253. val = atoi(opt->value);
  254. }
  255. os_utf8_to_wcs(opt->name, 0, wname, _countof(wname));
  256. if (is_bool) {
  257. bool bool_val = (bool)val;
  258. set_amf_property(enc, wname, bool_val);
  259. } else {
  260. set_amf_property(enc, wname, val);
  261. }
  262. }
  263. }