2001-05-10 20:30:10 +00:00
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#include <gst/gst.h>
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#include <stdlib.h>
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static guint64 max = 0, min = -1, total = 0;
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static guint count = 0;
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static guint print_del = 1;
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static guint iterations = 0;
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static guint mhz = 0;
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void handoff_src(GstElement *src, GstBuffer *buf, gpointer user_data) {
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2001-05-16 05:04:44 +00:00
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gst_trace_read_tsc(&GST_BUFFER_TIMESTAMP(buf));
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2001-05-10 20:30:10 +00:00
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}
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void handoff_sink(GstElement *sink, GstBuffer *buf, gpointer user_data) {
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guint64 end, d, avg;
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guint avg_ns;
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2001-05-16 05:04:44 +00:00
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gst_trace_read_tsc(&end);
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2001-05-10 20:30:10 +00:00
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d = end - GST_BUFFER_TIMESTAMP(buf);
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if (d > max) max = d;
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if (d < min) min = d;
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total += d;
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count++;
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avg = total/count;
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avg_ns = (guint)(1000.0*(double)avg/(double)mhz);
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if ((count % print_del) == 0) {
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g_print("%07d:%08lld min:%08lld max:%08lld avg:%08lld avg-s:0.%09d\r",
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count, d, min, max, avg, avg_ns);
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}
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}
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GstElement *identity_add(GstPipeline *pipeline, GstElement *first, int count) {
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GstElement *last, *ident;
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int i;
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2001-05-25 23:36:32 +00:00
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char buf[20];
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2001-05-10 20:30:10 +00:00
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last = first;
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for (i=0; i<count; i++) {
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2001-05-25 23:36:32 +00:00
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snprintf(buf, 20, "identity_%03d", i);
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ident = gst_elementfactory_make("identity",buf);
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2001-05-10 20:30:10 +00:00
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g_return_val_if_fail(ident != NULL,NULL);
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2001-06-25 01:20:11 +00:00
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g_object_set(G_OBJECT(ident),"silent",TRUE,NULL);
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2001-05-10 20:30:10 +00:00
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(ident));
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gst_pad_connect(gst_element_get_pad(last,"src"),
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gst_element_get_pad(ident,"sink"));
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last = ident;
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}
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return last;
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}
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GstElement *fakesrc() {
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GstElement *src;
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src = gst_elementfactory_make("fakesrc","src");
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g_return_val_if_fail(src != NULL,NULL);
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2001-06-25 01:20:11 +00:00
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g_object_set(G_OBJECT(src),"silent",TRUE,NULL);
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g_object_set(G_OBJECT(src),"num_buffers",iterations,NULL);
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2001-08-13 19:00:13 +00:00
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g_signal_connect(G_OBJECT(src),
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"handoff",G_CALLBACK(handoff_src),NULL);
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2001-05-10 20:30:10 +00:00
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return src;
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}
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GstElement *fakesink() {
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GstElement *sink;
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sink = gst_elementfactory_make("fakesink","fakesink");
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g_return_val_if_fail(sink != NULL,NULL);
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2001-06-25 01:20:11 +00:00
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g_object_set(G_OBJECT(sink),"silent",TRUE,NULL);
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2001-08-13 19:00:13 +00:00
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g_signal_connect(G_OBJECT(sink),
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"handoff",G_CALLBACK(handoff_sink),NULL);
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2001-05-10 20:30:10 +00:00
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return sink;
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}
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GstPipeline *simple(int argc, int argi, char *argv[]) {
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GstPipeline *pipeline;
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GstElement *last, *src, *sink;
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int idents;
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if ((argc - argi) < 1) {
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fprintf(stderr, "bad params");
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return NULL;
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}
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idents = atoi(argv[argi]);
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pipeline = GST_PIPELINE(gst_pipeline_new("pipeline"));
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g_return_val_if_fail(pipeline != NULL,NULL);
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src = fakesrc();
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(src));
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last = identity_add(pipeline, src, idents);
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sink = fakesink();
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(sink));
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gst_pad_connect(gst_element_get_pad(last,"src"),
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gst_element_get_pad(sink,"sink"));
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return pipeline;
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}
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GstPipeline *queue(int argc, int argi, char *argv[]) {
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GstPipeline *pipeline;
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GstElement *last, *src, *sink, *src_thr, *src_q, *sink_q, *sink_thr;
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int idents;
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if ((argc - argi) < 1) {
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fprintf(stderr, "bad params");
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return NULL;
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}
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idents = atoi(argv[argi]);
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pipeline = GST_PIPELINE(gst_pipeline_new("pipeline"));
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g_return_val_if_fail(pipeline != NULL,NULL);
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src_thr = GST_ELEMENT(gst_thread_new("src_thread"));
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g_return_val_if_fail(src_thr != NULL,NULL);
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src = fakesrc();
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g_return_val_if_fail(src != NULL,NULL);
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gst_bin_add(GST_BIN(src_thr),GST_ELEMENT(src));
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src_q = gst_elementfactory_make("queue","src_q");
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g_return_val_if_fail(src_q != NULL,NULL);
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gst_bin_add(GST_BIN(src_thr),GST_ELEMENT(src_q));
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gst_pad_connect(gst_element_get_pad(src,"src"),
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gst_element_get_pad(src_q,"sink"));
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(src_thr));
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last = identity_add(pipeline, src_q, idents);
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sink_q = gst_elementfactory_make("queue","sink_q");
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g_return_val_if_fail(sink_q != NULL,NULL);
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(sink_q));
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gst_pad_connect(gst_element_get_pad(last,"src"),
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gst_element_get_pad(sink_q,"sink"));
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sink_thr = GST_ELEMENT(gst_thread_new("sink_thread"));
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g_return_val_if_fail(sink_thr != NULL,NULL);
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sink = fakesink();
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g_return_val_if_fail(sink != NULL,NULL);
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gst_bin_add(GST_BIN(sink_thr),GST_ELEMENT(sink));
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gst_bin_add(GST_BIN(pipeline),GST_ELEMENT(sink_thr));
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gst_pad_connect(gst_element_get_pad(sink_q,"src"),
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gst_element_get_pad(sink,"sink"));
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return pipeline;
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}
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struct test {
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char *name;
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char *params;
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GstPipeline *(*func)(int argc, int argi, char *argv[]);
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};
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static struct test tests[] = {
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{"simple", "ident_count", simple},
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{"queue", "ident_count", queue},
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{NULL, NULL, NULL}
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};
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int main(int argc,char *argv[]) {
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GstPipeline *pipeline;
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int i;
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char *name;
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gst_init(&argc,&argv);
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if (argc < 3) {
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fprintf(stderr, "usage: %s iterations print_del mhz test_name [test_params...]\n",
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argv[0]);
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for (i=0; tests[i].name; i++) {
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fprintf(stderr, " %s %s\n", tests[i].name, tests[i].params);
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}
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exit(1);
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} else {
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iterations = atoi(argv[1]);
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print_del = atoi(argv[2]);
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mhz = atoi(argv[3]);
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name = argv[4];
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}
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pipeline = NULL;
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for (i=0; tests[i].name && !pipeline; i++) {
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if (!strcmp(name, tests[i].name)) {
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pipeline = tests[i].func(argc,5,argv);
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}
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}
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g_return_val_if_fail(pipeline != NULL, -1);
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//xmlSaveFile("lat.gst", gst_xml_write(GST_ELEMENT(pipeline)));
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gst_element_set_state(GST_ELEMENT(pipeline),GST_STATE_PLAYING);
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while (count < iterations) {
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gst_bin_iterate(GST_BIN(pipeline));
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}
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g_print("\n");
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return 0;
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}
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