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/*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 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 General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
*/
#include <kernel/kern.h>
#include <tracer.h>
#define PWCET_Automatic_Ipoint(a) TRACER_LOGEVENT(FTrace_EVT_ipoint,(a),0);
/* here are the bezier curves defined
format:
{startpoint, endpoint, controlpoint1, controlpoint}
.
.
. */
int curveno
= 20;
int data
[20][4][2] = {
{{123,321},{ 23,432},{345,120},{123, 98}},
{{567, 31},{ 23, 24},{ 35,421},{123,398}},
{{ 0, 21},{623,532},{145,323},{153, 68}},
{{253,321},{ 23,432},{745,525},{423,198}},
{{123,456},{ 23,482},{ 0,123},{123,128}},
{{322, 21},{223,232},{ 45,224},{123,98}},
{{423, 32},{123,332},{144,329},{123,98}},
{{276, 35},{ 23,492},{476,423},{123,98}},
{{783,121},{723,139},{ 78,528},{123,98}},
{{723,221},{623, 98},{734,683},{123,98}},
{{ 60,421},{523,132},{364,753},{123,98}},
{{100,521},{423,432},{633,623},{123,98}},
{{ 23,371},{323,599},{343,533},{123,98}},
{{123,123},{123, 0},{343,403},{123,98}},
{{253,321},{490, 32},{347,393},{123,98}},
{{ 68,321},{260,272},{674,283},{123,98}},
{{500,321},{245,373},{ 98,173},{123,98}},
{{423,321},{198,532},{306, 63},{123,98}},
{{197,321},{203,432},{307,443},{123,98}},
{{143,321},{293,132},{334,393},{123,98}}
};
#define STEPWIDTH 0.01 /* draws 1/STEPWIDTH +1 points between SP and EP */
#define XSIZE 800
#define YSIZE 600
char screen
[YSIZE
][XSIZE
];
int xco
[4],yco
[4];
int init
()
{
int y
,x
;
/*initialize screen*/
for (x
= 0;x
< XSIZE
;x
++) {
for (y
= 0;y
< YSIZE
;y
++) {
screen
[y
][x
] = 255; /*white*/
}
}
return 0;
}
void rand_init
()
{
int i
,j
,x
,y
;
for (i
=0;i
<20;i
++)
for (j
=0;j
<4;j
++) {
x
=rand()%800;
y
=rand()%600;
data
[i
][j
][0]=x
;
data
[i
][j
][1]=y
;
}
}
int bezier
()
{
int i
,y
,x
;
float k
;
init
();
for (i
= 0;i
< curveno
;i
++) {
xco
[3] = data
[i
][0][0];
yco
[3] = data
[i
][0][1];
xco
[2] = 3*(data
[i
][2][0] - data
[i
][0][0]);
yco
[2] = 3*(data
[i
][2][1] - data
[i
][0][1]);
xco
[1] = 3*(data
[i
][3][0] - data
[i
][2][0]) - xco
[2];
yco
[1] = 3*(data
[i
][3][1] - data
[i
][2][1]) - yco
[2];
xco
[0] = data
[i
][1][0] - data
[i
][0][0] - xco
[2]- xco
[1];
yco
[0] = data
[i
][1][1] - data
[i
][0][1] - yco
[2]- yco
[1];
/*scan curve for t = 0 to t = 1 with STEPWIDTH*/
for (k
= 0;k
<=1;k
+=STEPWIDTH
) { /* PAN_FIXED_LOOP PAN_VARPATH */
x
= (int)(((float)xco
[0]*k
*k
*k
)+((float)xco
[1]*k
*k
)+((float)xco
[2]*k
)+(float)xco
[3]);
y
= (int)(((float)yco
[0]*k
*k
*k
)+((float)yco
[1]*k
*k
)+((float)yco
[2]*k
)+(float)yco
[3]);
if ((x
< XSIZE
)&&(x
> 0)&&(y
< YSIZE
)&&(y
> 0)) {
/*write dot to screen*/
screen
[y
][x
] = 0; /*black*/
}
}
}
return 0;
}
int instrumented_function
() {
rand_init
();
bezier
();
return 0;
}