| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168 | /* * StarPU * Copyright (C) INRIA 2008-2009 (see AUTHORS file) * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License as published by * the Free Software Foundation; either version 2.1 of the License, or (at * your option) any later version. * * This program is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. * * See the GNU Lesser General Public License in COPYING.LGPL for more details. */#include "histo-svg.h"static uint64_t absolute_start_time;static uint64_t start_time;static uint64_t absolute_end_time;static uint64_t end_time;static char *out_path;static FILE *out_file;static void add_region(worker_mode color, uint64_t start, uint64_t end, unsigned worker){	float starty, endy, startx, endx;	starty = SVG_BORDERY + (SVG_THICKNESS + SVG_GAP)*worker;	endy = starty + SVG_THICKNESS;	double ratio_start, ratio_end;		ratio_start = (double)(start - start_time) / (double)(end_time - start_time);	ratio_end = (double)(end - start_time) / (double)(end_time - start_time);	startx = (float)(SVG_BORDERX + ratio_start*(SVG_WIDTH - 2*SVG_BORDERX)); 	endx = (float)(SVG_BORDERX + ratio_end*(SVG_WIDTH - 2*SVG_BORDERX)); //	printf("startx %d endx %d  ratio %f %f starty %d endy %d\n", startx, endx, ratio_start, ratio_end, starty, endy);	char *color_str;	switch (color) {		case WORKING:			color_str = "green";			break;		case IDLE:		default:			color_str = "red";			break;	}	fprintf(out_file, "<rect x=\"%fcm\" y=\"%fcm\" width=\"%fcm\" height=\"%fcm\" stroke-width=\"10\%%\" stroke=\"black\" fill=\"%s\"/>\n", startx, starty, endx - startx, endy -starty, color_str);}static void display_worker(event_list_t events, unsigned worker, char *worker_name){	uint64_t prev = start_time;	worker_mode prev_state = IDLE;	fprintf(out_file, "<text x=\"%fcm\" y=\"%fcm\" font-size=\"%fcm\" fill=\"blue\" text-anchor=\"center\" > <tspan font-weight=\"bold\">%s</tspan></text>\n", 0.5f*SVG_BORDERX, SVG_BORDERY + (SVG_THICKNESS + SVG_GAP)*worker + 0.5f*SVG_THICKNESS, SVG_THICKNESS/4.0f, worker_name);	event_itor_t i;	for (i = event_list_begin(events);		i != event_list_end(events);		i = event_list_next(i))	{		add_region(prev_state, prev, i->time, worker);		prev = i->time;		prev_state = i->mode;	}}static void display_workq_evolution(workq_list_t taskq, unsigned nworkers, unsigned maxq_size){	float endy, starty;	starty = SVG_BORDERY + (SVG_THICKNESS + SVG_GAP)*nworkers;	endy = starty + SVG_THICKNESS;	fprintf(out_file, "<line x1=\"%fcm\" y1=\"%fcm\" x2=\"%fcm\" y2=\"%fcm\" stroke=\"black\"  stroke-width=\"100\%%\" />\n", SVG_BORDERX, endy, SVG_WIDTH - SVG_BORDERX, endy);	fprintf(out_file, "<line x1=\"%fcm\" y1=\"%fcm\" x2=\"%fcm\" y2=\"%fcm\" stroke=\"black\" stroke-width=\"100\%%\" />\n", SVG_BORDERX, starty, SVG_BORDERX, endy);	float prevx, prevy;	prevx = SVG_BORDERX;	prevy = endy;	workq_itor_t i;	for (i = workq_list_begin(taskq);		i != workq_list_end(taskq);		i = workq_list_next(i))	{		float event_pos;		double event_ratio;		float y;		event_ratio = ( i->time - start_time )/ (double)(end_time - start_time);		event_pos = (SVG_BORDERX + event_ratio*(SVG_WIDTH - 2*SVG_BORDERX));		double qratio;		qratio = ((double)(i->current_size))/((double)maxq_size);		y = ((double)endy - qratio *((double)SVG_THICKNESS));		fprintf(out_file, "<line x1=\"%fcm\" y1=\"%fcm\" x2=\"%fcm\" y2=\"%fcm\" stroke=\"black\" stroke-width=\"30\%%\" />\n", prevx, prevy, event_pos, y);		prevx = event_pos;		prevy = y;	}	fprintf(out_file, "<line x1=\"%fcm\" y1=\"%fcm\" x2=\"%fcm\" y2=\"%fcm\" stroke=\"black\" stroke-width=\"100\%%\" />\n", prevx, prevy, SVG_BORDERX, endy);}void svg_output_file_init(void){	/* create a new file */	out_file = fopen(out_path, "w+");	/* create some header for a valid svg file */	fprintf(out_file, "<?xml version=\"1.0\" standalone=\"no\"?>\n");	fprintf(out_file, "<!DOCTYPE svg PUBLIC \"-//W3C//DTD SVG 1.1//EN\" \"http://www.w3.org/Graphics/SVG/1.1/DTD/svg11.dtd\">\n");	fprintf(out_file, "<svg width=\"%fcm\" height=\"%fcm\" version=\"1.1\" xmlns=\"http://www.w3.org/2000/svg\">\n", SVG_WIDTH, SVG_HEIGHT);	/* a little description is not too much */	fprintf(out_file, "<desc>Gantt diagram ...</desc>\n");}void svg_output_file_terminate(void){	fprintf(out_file, "</svg>\n");	/* close the file */		fclose(out_file);}void svg_engine_generate_output(event_list_t *events, workq_list_t taskq, char **worker_name,			unsigned nworkers, unsigned maxq_size, 			uint64_t _start_time, uint64_t _end_time, char *path){	out_path = path;	unsigned worker;	start_time = _start_time;	absolute_start_time = _start_time;	end_time = _end_time;	absolute_end_time = _end_time;	svg_output_file_init();	for (worker = 0; worker < nworkers; worker++)	{		display_worker(events[worker], worker, worker_name[worker]);	}	display_workq_evolution(taskq, nworkers, maxq_size);	svg_output_file_terminate();}
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