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00023 #include <ctype.h>
00024 #include <string.h>
00025
00026 #include "libavutil/avstring.h"
00027 #include "avfilter.h"
00028 #include "avfiltergraph.h"
00029
00030 #define WHITESPACES " \n\t"
00031
00037 static int link_filter(AVFilterContext *src, int srcpad,
00038 AVFilterContext *dst, int dstpad,
00039 void *log_ctx)
00040 {
00041 int ret;
00042 if ((ret = avfilter_link(src, srcpad, dst, dstpad))) {
00043 av_log(log_ctx, AV_LOG_ERROR,
00044 "Cannot create the link %s:%d -> %s:%d\n",
00045 src->filter->name, srcpad, dst->filter->name, dstpad);
00046 return ret;
00047 }
00048
00049 return 0;
00050 }
00051
00058 static char *parse_link_name(const char **buf, void *log_ctx)
00059 {
00060 const char *start = *buf;
00061 char *name;
00062 (*buf)++;
00063
00064 name = av_get_token(buf, "]");
00065
00066 if (!name[0]) {
00067 av_log(log_ctx, AV_LOG_ERROR,
00068 "Bad (empty?) label found in the following: \"%s\".\n", start);
00069 goto fail;
00070 }
00071
00072 if (*(*buf)++ != ']') {
00073 av_log(log_ctx, AV_LOG_ERROR,
00074 "Mismatched '[' found in the following: \"%s\".\n", start);
00075 fail:
00076 av_freep(&name);
00077 }
00078
00079 return name;
00080 }
00081
00094 static int create_filter(AVFilterContext **filt_ctx, AVFilterGraph *ctx, int index,
00095 const char *filt_name, const char *args, void *log_ctx)
00096 {
00097 AVFilter *filt;
00098 char inst_name[30];
00099 char tmp_args[256];
00100 int ret;
00101
00102 snprintf(inst_name, sizeof(inst_name), "Parsed_%s_%d", filt_name, index);
00103
00104 filt = avfilter_get_by_name(filt_name);
00105
00106 if (!filt) {
00107 av_log(log_ctx, AV_LOG_ERROR,
00108 "No such filter: '%s'\n", filt_name);
00109 return AVERROR(EINVAL);
00110 }
00111
00112 ret = avfilter_open(filt_ctx, filt, inst_name);
00113 if (!*filt_ctx) {
00114 av_log(log_ctx, AV_LOG_ERROR,
00115 "Error creating filter '%s'\n", filt_name);
00116 return ret;
00117 }
00118
00119 if ((ret = avfilter_graph_add_filter(ctx, *filt_ctx)) < 0) {
00120 avfilter_free(*filt_ctx);
00121 return ret;
00122 }
00123
00124 if (!strcmp(filt_name, "scale") && args && !strstr(args, "flags")) {
00125 snprintf(tmp_args, sizeof(tmp_args), "%s:%s",
00126 args, ctx->scale_sws_opts);
00127 args = tmp_args;
00128 }
00129
00130 if ((ret = avfilter_init_filter(*filt_ctx, args, NULL)) < 0) {
00131 av_log(log_ctx, AV_LOG_ERROR,
00132 "Error initializing filter '%s' with args '%s'\n", filt_name, args);
00133 return ret;
00134 }
00135
00136 return 0;
00137 }
00138
00155 static int parse_filter(AVFilterContext **filt_ctx, const char **buf, AVFilterGraph *graph,
00156 int index, void *log_ctx)
00157 {
00158 char *opts = NULL;
00159 char *name = av_get_token(buf, "=,;[\n");
00160 int ret;
00161
00162 if (**buf == '=') {
00163 (*buf)++;
00164 opts = av_get_token(buf, "[],;\n");
00165 }
00166
00167 ret = create_filter(filt_ctx, graph, index, name, opts, log_ctx);
00168 av_free(name);
00169 av_free(opts);
00170 return ret;
00171 }
00172
00173 AVFilterInOut *avfilter_inout_alloc(void)
00174 {
00175 return av_mallocz(sizeof(AVFilterInOut));
00176 }
00177
00178 void avfilter_inout_free(AVFilterInOut **inout)
00179 {
00180 while (*inout) {
00181 AVFilterInOut *next = (*inout)->next;
00182 av_freep(&(*inout)->name);
00183 av_freep(inout);
00184 *inout = next;
00185 }
00186 }
00187
00188 static AVFilterInOut *extract_inout(const char *label, AVFilterInOut **links)
00189 {
00190 AVFilterInOut *ret;
00191
00192 while (*links && strcmp((*links)->name, label))
00193 links = &((*links)->next);
00194
00195 ret = *links;
00196
00197 if (ret)
00198 *links = ret->next;
00199
00200 return ret;
00201 }
00202
00203 static void insert_inout(AVFilterInOut **inouts, AVFilterInOut *element)
00204 {
00205 element->next = *inouts;
00206 *inouts = element;
00207 }
00208
00209 static int link_filter_inouts(AVFilterContext *filt_ctx,
00210 AVFilterInOut **curr_inputs,
00211 AVFilterInOut **open_inputs, void *log_ctx)
00212 {
00213 int pad = filt_ctx->input_count, ret;
00214
00215 while (pad--) {
00216 AVFilterInOut *p = *curr_inputs;
00217 if (!p) {
00218 av_log(log_ctx, AV_LOG_ERROR,
00219 "Not enough inputs specified for the \"%s\" filter.\n",
00220 filt_ctx->filter->name);
00221 return AVERROR(EINVAL);
00222 }
00223
00224 *curr_inputs = (*curr_inputs)->next;
00225
00226 if (p->filter_ctx) {
00227 if ((ret = link_filter(p->filter_ctx, p->pad_idx, filt_ctx, pad, log_ctx)) < 0)
00228 return ret;
00229 av_free(p->name);
00230 av_free(p);
00231 } else {
00232 p->filter_ctx = filt_ctx;
00233 p->pad_idx = pad;
00234 insert_inout(open_inputs, p);
00235 }
00236 }
00237
00238 if (*curr_inputs) {
00239 av_log(log_ctx, AV_LOG_ERROR,
00240 "Too many inputs specified for the \"%s\" filter.\n",
00241 filt_ctx->filter->name);
00242 return AVERROR(EINVAL);
00243 }
00244
00245 pad = filt_ctx->output_count;
00246 while (pad--) {
00247 AVFilterInOut *currlinkn = av_mallocz(sizeof(AVFilterInOut));
00248 if (!currlinkn)
00249 return AVERROR(ENOMEM);
00250 currlinkn->filter_ctx = filt_ctx;
00251 currlinkn->pad_idx = pad;
00252 insert_inout(curr_inputs, currlinkn);
00253 }
00254
00255 return 0;
00256 }
00257
00258 static int parse_inputs(const char **buf, AVFilterInOut **curr_inputs,
00259 AVFilterInOut **open_outputs, void *log_ctx)
00260 {
00261 int pad = 0;
00262
00263 while (**buf == '[') {
00264 char *name = parse_link_name(buf, log_ctx);
00265 AVFilterInOut *match;
00266
00267 if (!name)
00268 return AVERROR(EINVAL);
00269
00270
00271 match = extract_inout(name, open_outputs);
00272
00273 if (match) {
00274 av_free(name);
00275 } else {
00276
00277 if (!(match = av_mallocz(sizeof(AVFilterInOut))))
00278 return AVERROR(ENOMEM);
00279 match->name = name;
00280 match->pad_idx = pad;
00281 }
00282
00283 insert_inout(curr_inputs, match);
00284
00285 *buf += strspn(*buf, WHITESPACES);
00286 pad++;
00287 }
00288
00289 return pad;
00290 }
00291
00292 static int parse_outputs(const char **buf, AVFilterInOut **curr_inputs,
00293 AVFilterInOut **open_inputs,
00294 AVFilterInOut **open_outputs, void *log_ctx)
00295 {
00296 int ret, pad = 0;
00297
00298 while (**buf == '[') {
00299 char *name = parse_link_name(buf, log_ctx);
00300 AVFilterInOut *match;
00301
00302 AVFilterInOut *input = *curr_inputs;
00303 if (!input) {
00304 av_log(log_ctx, AV_LOG_ERROR,
00305 "No output pad can be associated to link label '%s'.\n",
00306 name);
00307 return AVERROR(EINVAL);
00308 }
00309 *curr_inputs = (*curr_inputs)->next;
00310
00311 if (!name)
00312 return AVERROR(EINVAL);
00313
00314
00315 match = extract_inout(name, open_inputs);
00316
00317 if (match) {
00318 if ((ret = link_filter(input->filter_ctx, input->pad_idx,
00319 match->filter_ctx, match->pad_idx, log_ctx)) < 0)
00320 return ret;
00321 av_free(match->name);
00322 av_free(name);
00323 av_free(match);
00324 av_free(input);
00325 } else {
00326
00327 input->name = name;
00328 insert_inout(open_outputs, input);
00329 }
00330 *buf += strspn(*buf, WHITESPACES);
00331 pad++;
00332 }
00333
00334 return pad;
00335 }
00336
00337 int avfilter_graph_parse(AVFilterGraph *graph, const char *filters,
00338 AVFilterInOut **open_inputs_ptr, AVFilterInOut **open_outputs_ptr,
00339 void *log_ctx)
00340 {
00341 int index = 0, ret = 0;
00342 char chr = 0;
00343
00344 AVFilterInOut *curr_inputs = NULL;
00345 AVFilterInOut *open_inputs = open_inputs_ptr ? *open_inputs_ptr : NULL;
00346 AVFilterInOut *open_outputs = open_outputs_ptr ? *open_outputs_ptr : NULL;
00347
00348 do {
00349 AVFilterContext *filter;
00350 const char *filterchain = filters;
00351 filters += strspn(filters, WHITESPACES);
00352
00353 if ((ret = parse_inputs(&filters, &curr_inputs, &open_outputs, log_ctx)) < 0)
00354 goto end;
00355
00356 if ((ret = parse_filter(&filter, &filters, graph, index, log_ctx)) < 0)
00357 goto end;
00358
00359 if (filter->input_count == 1 && !curr_inputs && !index) {
00360
00361 const char *tmp = "[in]";
00362 if ((ret = parse_inputs(&tmp, &curr_inputs, &open_outputs, log_ctx)) < 0)
00363 goto end;
00364 }
00365
00366 if ((ret = link_filter_inouts(filter, &curr_inputs, &open_inputs, log_ctx)) < 0)
00367 goto end;
00368
00369 if ((ret = parse_outputs(&filters, &curr_inputs, &open_inputs, &open_outputs,
00370 log_ctx)) < 0)
00371 goto end;
00372
00373 filters += strspn(filters, WHITESPACES);
00374 chr = *filters++;
00375
00376 if (chr == ';' && curr_inputs) {
00377 av_log(log_ctx, AV_LOG_ERROR,
00378 "Invalid filterchain containing an unlabelled output pad: \"%s\"\n",
00379 filterchain);
00380 ret = AVERROR(EINVAL);
00381 goto end;
00382 }
00383 index++;
00384 } while (chr == ',' || chr == ';');
00385
00386 if (chr) {
00387 av_log(log_ctx, AV_LOG_ERROR,
00388 "Unable to parse graph description substring: \"%s\"\n",
00389 filters - 1);
00390 ret = AVERROR(EINVAL);
00391 goto end;
00392 }
00393
00394 if (curr_inputs) {
00395
00396 const char *tmp = "[out]";
00397 if ((ret = parse_outputs(&tmp, &curr_inputs, &open_inputs, &open_outputs,
00398 log_ctx)) < 0)
00399 goto end;
00400 }
00401
00402 end:
00403
00404 if (open_inputs_ptr) *open_inputs_ptr = open_inputs;
00405 else avfilter_inout_free(&open_inputs);
00406 if (open_outputs_ptr) *open_outputs_ptr = open_outputs;
00407 else avfilter_inout_free(&open_outputs);
00408 avfilter_inout_free(&curr_inputs);
00409
00410 if (ret < 0) {
00411 for (; graph->filter_count > 0; graph->filter_count--)
00412 avfilter_free(graph->filters[graph->filter_count - 1]);
00413 av_freep(&graph->filters);
00414 }
00415 return ret;
00416 }