perf timechart: Show the name of the waker/wakee in timechart
Timechart currently shows thin green lines for sending or receiving wakeups. This patch also prints (in a very small font) the name of the process that is being woken/wakes up this process. Signed-off-by: Arjan van de Ven <arjan@linux.intel.com> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Paul Mackerras <paulus@samba.org> Cc: Frederic Weisbecker <fweisbec@gmail.com> LKML-Reference: <20090920181328.68baa978@linux.intel.com> Signed-off-by: Ingo Molnar <mingo@elte.hu>
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3 changed files with 30 additions and 11 deletions
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@ -752,6 +752,7 @@ static void draw_wakeups(void)
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we = wake_events;
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while (we) {
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int from = 0, to = 0;
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char *task_from = NULL, *task_to = NULL;
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/* locate the column of the waker and wakee */
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p = all_data;
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@ -760,10 +761,14 @@ static void draw_wakeups(void)
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c = p->all;
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while (c) {
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if (c->Y && c->start_time <= we->time && c->end_time >= we->time) {
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if (p->pid == we->waker)
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if (p->pid == we->waker) {
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from = c->Y;
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if (p->pid == we->wakee)
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task_from = c->comm;
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}
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if (p->pid == we->wakee) {
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to = c->Y;
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task_to = c->comm;
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}
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}
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c = c->next;
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}
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@ -776,7 +781,7 @@ static void draw_wakeups(void)
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else if (from && to && abs(from - to) == 1)
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svg_wakeline(we->time, from, to);
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else
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svg_partial_wakeline(we->time, from, to);
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svg_partial_wakeline(we->time, from, task_from, to, task_to);
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we = we->next;
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}
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}
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@ -242,7 +242,7 @@ void svg_pstate(int cpu, u64 start, u64 end, u64 freq)
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}
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void svg_partial_wakeline(u64 start, int row1, int row2)
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void svg_partial_wakeline(u64 start, int row1, char *desc1, int row2, char *desc2)
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{
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double height;
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@ -251,21 +251,35 @@ void svg_partial_wakeline(u64 start, int row1, int row2)
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if (row1 < row2) {
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if (row1)
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if (row1) {
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fprintf(svgfile, "<line x1=\"%4.8f\" y1=\"%4.2f\" x2=\"%4.8f\" y2=\"%4.2f\" style=\"stroke:rgb(32,255,32);stroke-width:0.009\"/>\n",
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time2pixels(start), row1 * SLOT_MULT + SLOT_HEIGHT, time2pixels(start), row1 * SLOT_MULT + SLOT_HEIGHT + SLOT_MULT/32);
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if (row2)
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if (desc2)
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fprintf(svgfile, "<text transform=\"translate(%4.8f,%4.8f) rotate(90)\" font-size=\"0.02pt\">%s ></text>\n",
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time2pixels(start), row1 * SLOT_MULT + SLOT_HEIGHT + SLOT_HEIGHT/48, desc2);
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}
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if (row2) {
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fprintf(svgfile, "<line x1=\"%4.8f\" y1=\"%4.2f\" x2=\"%4.8f\" y2=\"%4.2f\" style=\"stroke:rgb(32,255,32);stroke-width:0.009\"/>\n",
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time2pixels(start), row2 * SLOT_MULT - SLOT_MULT/32, time2pixels(start), row2 * SLOT_MULT);
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if (desc1)
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fprintf(svgfile, "<text transform=\"translate(%4.8f,%4.8f) rotate(90)\" font-size=\"0.02pt\">%s ></text>\n",
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time2pixels(start), row2 * SLOT_MULT - SLOT_MULT/32, desc1);
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}
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} else {
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if (row2)
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if (row2) {
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fprintf(svgfile, "<line x1=\"%4.8f\" y1=\"%4.2f\" x2=\"%4.8f\" y2=\"%4.2f\" style=\"stroke:rgb(32,255,32);stroke-width:0.009\"/>\n",
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time2pixels(start), row2 * SLOT_MULT + SLOT_HEIGHT, time2pixels(start), row2 * SLOT_MULT + SLOT_HEIGHT + SLOT_MULT/32);
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if (row1)
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if (desc1)
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fprintf(svgfile, "<text transform=\"translate(%4.8f,%4.8f) rotate(90)\" font-size=\"0.02pt\">%s <</text>\n",
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time2pixels(start), row2 * SLOT_MULT + SLOT_HEIGHT + SLOT_MULT/48, desc1);
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}
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if (row1) {
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fprintf(svgfile, "<line x1=\"%4.8f\" y1=\"%4.2f\" x2=\"%4.8f\" y2=\"%4.2f\" style=\"stroke:rgb(32,255,32);stroke-width:0.009\"/>\n",
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time2pixels(start), row1 * SLOT_MULT - SLOT_MULT/32, time2pixels(start), row1 * SLOT_MULT);
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if (desc2)
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fprintf(svgfile, "<text transform=\"translate(%4.8f,%4.8f) rotate(90)\" font-size=\"0.02pt\">%s <</text>\n",
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time2pixels(start), row1 * SLOT_MULT - SLOT_HEIGHT/32, desc2);
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}
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}
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height = row1 * SLOT_MULT;
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if (row2 > row1)
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@ -17,7 +17,7 @@ extern void svg_pstate(int cpu, u64 start, u64 end, u64 freq);
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extern void svg_time_grid(u64 start, u64 end);
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extern void svg_legenda(void);
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extern void svg_wakeline(u64 start, int row1, int row2);
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extern void svg_partial_wakeline(u64 start, int row1, int row2);
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extern void svg_partial_wakeline(u64 start, int row1, char *desc1, int row2, char *desc2);
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extern void svg_interrupt(u64 start, int row);
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extern void svg_text(int Yslot, u64 start, const char *text);
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extern void svg_close(void);
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