version 1.9, 2001/06/04 02:49:49 |
version 1.13, 2002/08/02 02:28:29 |
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* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* |
* |
* $OpenXM: OpenXM_contrib2/asir2000/plot/plotf.c,v 1.8 2000/11/22 04:03:11 noro Exp $ |
* $OpenXM: OpenXM_contrib2/asir2000/plot/plotf.c,v 1.12 2002/07/10 05:29:36 noro Exp $ |
*/ |
*/ |
#include "ca.h" |
#include "ca.h" |
#include "parse.h" |
#include "parse.h" |
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#include "ifplot.h" |
#include "ifplot.h" |
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void Pifplot(), Pconplot(), Pplotover(), Pplot(), Parrayplot(), Pdrawcircle(); |
void Pifplot(), Pconplot(), Pplotover(), Pplot(), Parrayplot(), Pdrawcircle(); |
void Popen_canvas(), Pclear_canvas(), Pdraw_obj(); |
void Pmemory_ifplot(); |
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void Popen_canvas(), Pclear_canvas(), Pdraw_obj(), Pdraw_string(); |
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void Pox_rpc(); |
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void Pox_cmo_rpc(); |
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struct ftab plot_tab[] = { |
struct ftab plot_tab[] = { |
{"ifplot",Pifplot,-7}, |
{"ifplot",Pifplot,-7}, |
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{"memory_ifplot",Pmemory_ifplot,-7}, |
{"conplot",Pconplot,-8}, |
{"conplot",Pconplot,-8}, |
{"plot",Pplot,-6}, |
{"plot",Pplot,-6}, |
{"plotover",Pplotover,3}, |
{"plotover",Pplotover,3}, |
Line 64 struct ftab plot_tab[] = { |
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Line 68 struct ftab plot_tab[] = { |
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{"open_canvas",Popen_canvas,-3}, |
{"open_canvas",Popen_canvas,-3}, |
{"clear_canvas",Pclear_canvas,2}, |
{"clear_canvas",Pclear_canvas,2}, |
{"draw_obj",Pdraw_obj,-4}, |
{"draw_obj",Pdraw_obj,-4}, |
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{"draw_string",Pdraw_string,-5}, |
/* |
/* |
{"arrayplot",Parrayplot,2}, |
{"arrayplot",Parrayplot,2}, |
*/ |
*/ |
{0,0,0}, |
{0,0,0}, |
}; |
}; |
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int current_s; |
void Popen_canvas(NODE arg,Obj *rp) |
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void Popen_canvas(arg,rp) |
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NODE arg; |
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Obj *rp; |
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{ |
{ |
Q w300,s_id; |
Q w300,s_id; |
LIST geom; |
LIST geom; |
int stream,id,i; |
int stream; |
NODE n,n0; |
NODE n,n0; |
STRING fname,wname; |
STRING fname,wname; |
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wname=name (STRING)] |
wname=name (STRING)] |
*/ |
*/ |
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if ( stream < 0 ) |
stream = validate_ox_plot_stream(stream); |
stream = current_s; |
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else |
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current_s = stream; |
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STOQ(stream,s_id); |
STOQ(stream,s_id); |
if ( !geom ) { |
if ( !geom ) { |
STOQ(300,w300); |
STOQ(300,w300); |
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Pox_cmo_rpc(arg,rp); |
Pox_cmo_rpc(arg,rp); |
} |
} |
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void Pifplot(arg,rp) |
void Pifplot(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
Q m2,p2,w300,s_id; |
Q m2,p2,w300,s_id; |
NODE defrange; |
NODE defrange; |
LIST xrange,yrange,range[2],list,geom; |
LIST xrange,yrange,range[2],list,geom; |
VL vl,vl0; |
VL vl,vl0; |
V v[2],av[2]; |
V v[2],av[2]; |
int stream,ri,id,i; |
int stream,ri,i; |
P poly; |
P poly; |
P var; |
P var; |
NODE n,n0; |
NODE n,n0; |
STRING fname,wname; |
STRING fname,wname; |
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Obj t; |
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STOQ(-2,m2); STOQ(2,p2); |
STOQ(-2,m2); STOQ(2,p2); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
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switch ( OID(BDY(arg)) ) { |
switch ( OID(BDY(arg)) ) { |
case O_P: |
case O_P: |
poly = (P)BDY(arg); |
poly = (P)BDY(arg); |
get_vars_recursive(poly,&vl); |
get_vars_recursive((Obj)poly,&vl); |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
if ( vl0->v->attr == V_IND ) |
if ( vl0->v->attr == (pointer)V_IND ) |
if ( i >= 2 ) |
if ( i >= 2 ) |
error("ifplot : invalid argument"); |
error("ifplot : invalid argument"); |
else |
else |
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wname=name (STRING)] |
wname=name (STRING)] |
*/ |
*/ |
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if ( stream < 0 ) |
stream = validate_ox_plot_stream(stream); |
stream = current_s; |
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else |
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current_s = stream; |
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STOQ(stream,s_id); |
STOQ(stream,s_id); |
if ( !geom ) { |
if ( !geom ) { |
STOQ(300,w300); |
STOQ(300,w300); |
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} |
} |
MKSTR(fname,"plot"); |
MKSTR(fname,"plot"); |
arg = mknode(8,s_id,fname,poly,xrange,yrange,0,geom,wname); |
arg = mknode(8,s_id,fname,poly,xrange,yrange,0,geom,wname); |
Pox_rpc(arg,rp); |
Pox_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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void Pconplot(arg,rp) |
void Pmemory_ifplot(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
Q m2,p2,w300,s_id; |
Q m2,p2,w300,s_id; |
NODE defrange; |
NODE defrange; |
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LIST xrange,yrange,range[2],list,geom; |
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VL vl,vl0; |
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V v[2],av[2]; |
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int stream,ri,i; |
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P poly; |
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P var; |
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NODE n,n0; |
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STRING fname; |
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Obj t; |
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STOQ(-2,m2); STOQ(2,p2); |
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MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
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poly = 0; vl = 0; geom = 0; stream = -1; ri = 0; |
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for ( ; arg; arg = NEXT(arg) ) |
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if ( !BDY(arg) ) |
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stream = 0; |
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else |
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switch ( OID(BDY(arg)) ) { |
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case O_P: |
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poly = (P)BDY(arg); |
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get_vars_recursive((Obj)poly,&vl); |
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for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
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if ( vl0->v->attr == (pointer)V_IND ) |
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if ( i >= 2 ) |
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error("ifplot : invalid argument"); |
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else |
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v[i++] = vl0->v; |
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break; |
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case O_LIST: |
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list = (LIST)BDY(arg); |
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if ( OID(BDY(BDY(list))) == O_P ) |
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if ( ri > 1 ) |
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error("ifplot : invalid argument"); |
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else |
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range[ri++] = list; |
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else |
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geom = list; |
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break; |
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case O_N: |
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stream = QTOS((Q)BDY(arg)); break; |
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default: |
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error("memory_ifplot : invalid argument"); break; |
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} |
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if ( !poly ) |
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error("memory_ifplot : invalid argument"); |
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switch ( ri ) { |
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case 0: |
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if ( !v[1] ) |
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error("memory_ifplot : please specify all variables"); |
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MKV(v[0],var); MKNODE(n,var,defrange); MKLIST(xrange,n); |
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MKV(v[1],var); MKNODE(n,var,defrange); MKLIST(yrange,n); |
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break; |
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case 1: |
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if ( !v[1] ) |
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error("memory_ifplot : please specify all variables"); |
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av[0] = VR((P)BDY(BDY(range[0]))); |
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if ( v[0] == av[0] ) { |
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xrange = range[0]; |
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MKV(v[1],var); MKNODE(n,var,defrange); MKLIST(yrange,n); |
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} else if ( v[1] == av[0] ) { |
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MKV(v[0],var); MKNODE(n,var,defrange); MKLIST(xrange,n); |
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yrange = range[0]; |
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} else |
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error("memory_ifplot : invalid argument"); |
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break; |
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case 2: |
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av[0] = VR((P)BDY(BDY(range[0]))); |
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av[1] = VR((P)BDY(BDY(range[1]))); |
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if ( ((v[0] == av[0]) && (!v[1] || v[1] == av[1])) || |
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((v[0] == av[1]) && (!v[1] || v[1] == av[0])) ) { |
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xrange = range[0]; yrange = range[1]; |
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} else |
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error("memory_ifplot : invalid argument"); |
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break; |
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default: |
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error("memory_ifplot : cannot happen"); break; |
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} |
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/* memory_ifplot in ox_plot requires |
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[s_id (Q), |
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formula (Obj), |
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xrange=[x,xmin,xmax] (LIST), |
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yrange=[y,ymin,ymax] (LIST), |
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zrange=0, |
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geom=[xsize,ysize] (LIST)] |
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*/ |
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stream = validate_ox_plot_stream(stream); |
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STOQ(stream,s_id); |
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if ( !geom ) { |
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STOQ(300,w300); |
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MKNODE(n0,w300,0); MKNODE(n,w300,n0); MKLIST(geom,n); |
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} |
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MKSTR(fname,"memory_plot"); |
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arg = mknode(7,s_id,fname,poly,xrange,yrange,0,geom); |
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Pox_rpc(arg,&t); |
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*rp = s_id; |
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} |
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void Pconplot(NODE arg,Q *rp) |
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{ |
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Q m2,p2,w300,s_id; |
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NODE defrange; |
LIST xrange,yrange,zrange,range[3],list,geom; |
LIST xrange,yrange,zrange,range[3],list,geom; |
VL vl,vl0; |
VL vl,vl0; |
V v[2],av[2]; |
V v[2],av[2]; |
int stream,ri,id,i; |
int stream,ri,i; |
P poly; |
P poly; |
P var; |
P var; |
NODE n,n0; |
NODE n,n0; |
STRING fname,wname; |
STRING fname,wname; |
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Obj t; |
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STOQ(-2,m2); STOQ(2,p2); |
STOQ(-2,m2); STOQ(2,p2); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
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switch ( OID(BDY(arg)) ) { |
switch ( OID(BDY(arg)) ) { |
case O_P: |
case O_P: |
poly = (P)BDY(arg); |
poly = (P)BDY(arg); |
get_vars_recursive(poly,&vl); |
get_vars_recursive((Obj)poly,&vl); |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
if ( vl0->v->attr == V_IND ) |
if ( vl0->v->attr == (pointer)V_IND ) |
if ( i >= 2 ) |
if ( i >= 2 ) |
error("ifplot : invalid argument"); |
error("ifplot : invalid argument"); |
else |
else |
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default: |
default: |
error("ifplot : cannot happen"); break; |
error("ifplot : cannot happen"); break; |
} |
} |
if ( stream < 0 ) |
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stream = current_s; |
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else |
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current_s = stream; |
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/* conplot in ox_plot requires |
/* conplot in ox_plot requires |
[s_id (Q), |
[s_id (Q), |
formula (Obj), |
formula (Obj), |
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wname=name (STRING)] |
wname=name (STRING)] |
*/ |
*/ |
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if ( stream < 0 ) |
stream = validate_ox_plot_stream(stream); |
stream = current_s; |
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else |
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current_s = stream; |
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STOQ(stream,s_id); |
STOQ(stream,s_id); |
if ( !geom ) { |
if ( !geom ) { |
STOQ(300,w300); |
STOQ(300,w300); |
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} |
} |
MKSTR(fname,"plot"); |
MKSTR(fname,"plot"); |
arg = mknode(8,s_id,fname,poly,xrange,yrange,zrange,geom,wname); |
arg = mknode(8,s_id,fname,poly,xrange,yrange,zrange,geom,wname); |
Pox_rpc(arg,rp); |
Pox_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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void Pplot(arg,rp) |
void Pplot(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
Q m2,p2,w300,s_id; |
Q m2,p2,w300,s_id; |
NODE defrange; |
NODE defrange; |
LIST xrange,range[1],list,geom; |
LIST xrange,range[1],list,geom; |
VL vl,vl0; |
VL vl,vl0; |
V v[1],av[1]; |
V v[1],av[1]; |
int stream,ri,id,i; |
int stream,ri,i; |
P poly; |
P poly; |
P var; |
P var; |
NODE n,n0; |
NODE n,n0; |
STRING fname,wname; |
STRING fname,wname; |
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Obj t; |
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STOQ(-2,m2); STOQ(2,p2); |
STOQ(-2,m2); STOQ(2,p2); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
MKNODE(n,p2,0); MKNODE(defrange,m2,n); |
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switch ( OID(BDY(arg)) ) { |
switch ( OID(BDY(arg)) ) { |
case O_P: case O_R: |
case O_P: case O_R: |
poly = (P)BDY(arg); |
poly = (P)BDY(arg); |
get_vars_recursive(poly,&vl); |
get_vars_recursive((Obj)poly,&vl); |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
for ( vl0 = vl, i = 0; vl0; vl0 = NEXT(vl0) ) |
if ( vl0->v->attr == V_IND ) |
if ( vl0->v->attr == (pointer)V_IND ) |
if ( i >= 1 ) |
if ( i >= 1 ) |
error("ifplot : invalid argument"); |
error("ifplot : invalid argument"); |
else |
else |
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geom=[xsize,ysize] (LIST), |
geom=[xsize,ysize] (LIST), |
wname=name (STRING)] |
wname=name (STRING)] |
*/ |
*/ |
if ( stream < 0 ) |
stream = validate_ox_plot_stream(stream); |
stream = current_s; |
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else |
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current_s = stream; |
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STOQ(stream,s_id); |
STOQ(stream,s_id); |
if ( !geom ) { |
if ( !geom ) { |
STOQ(300,w300); |
STOQ(300,w300); |
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} |
} |
MKSTR(fname,"plot"); |
MKSTR(fname,"plot"); |
arg = mknode(8,s_id,fname,poly,xrange,0,0,geom,wname); |
arg = mknode(8,s_id,fname,poly,xrange,0,0,geom,wname); |
Pox_rpc(arg,rp); |
Pox_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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void Pplotover(arg,rp) |
void Pplotover(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
Q s_id,index; |
Q s_id,index; |
P poly; |
P poly; |
STRING fname; |
STRING fname; |
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Obj t; |
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poly = (P)ARG0(arg); |
poly = (P)ARG0(arg); |
s_id = (Q)ARG1(arg); |
s_id = (Q)ARG1(arg); |
index = (Q)ARG2(arg); |
index = (Q)ARG2(arg); |
MKSTR(fname,"plotover"); |
MKSTR(fname,"plotover"); |
arg = mknode(4,s_id,fname,index,poly); |
arg = mknode(4,s_id,fname,index,poly); |
Pox_rpc(arg,rp); |
Pox_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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/* arg = [x,y,r,s_id,index] */ |
/* arg = [x,y,r,s_id,index] */ |
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void Pdrawcircle(arg,rp) |
void Pdrawcircle(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
Q s_id,index; |
Q s_id,index; |
Obj x,y,r; |
Obj x,y,r; |
STRING fname; |
STRING fname; |
NODE n; |
NODE n; |
LIST pos; |
LIST pos; |
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Obj t; |
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x = (Obj)ARG0(arg); |
x = (Obj)ARG0(arg); |
y = (Obj)ARG1(arg); |
y = (Obj)ARG1(arg); |
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MKSTR(fname,"drawcircle"); |
MKSTR(fname,"drawcircle"); |
n = mknode(3,x,y,r); MKLIST(pos,n); |
n = mknode(3,x,y,r); MKLIST(pos,n); |
arg = mknode(4,s_id,fname,index,pos); |
arg = mknode(4,s_id,fname,index,pos); |
Pox_rpc(arg,rp); |
Pox_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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/* draw_obj(s_id,cindex,point|line); point = [x,y], line = [xa,ya,xb,yb] */ |
/* draw_obj(s_id,cindex,point|line); point = [x,y], line = [xa,ya,xb,yb] */ |
void Pdraw_obj(arg,rp) |
void Pdraw_obj(NODE arg,Q *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
static STRING fname; |
static STRING fname; |
Q s_id,index; |
Q s_id,index; |
LIST obj; |
LIST obj; |
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Obj t; |
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if ( !fname ) { |
if ( !fname ) { |
MKSTR(fname,"draw_obj"); |
MKSTR(fname,"draw_obj"); |
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arg = mknode(5,s_id,fname,index,obj,ARG3(arg)); |
arg = mknode(5,s_id,fname,index,obj,ARG3(arg)); |
else |
else |
arg = mknode(4,s_id,fname,index,obj); |
arg = mknode(4,s_id,fname,index,obj); |
Pox_cmo_rpc(arg,rp); |
Pox_cmo_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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void Pclear_canvas(arg,rp) |
/* draw_string(s_id,cindex,pos,string,[,color]); pos=[x,y] */ |
NODE arg; |
void Pdraw_string(NODE arg,Q *rp) |
Obj *rp; |
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{ |
{ |
static STRING fname; |
static STRING fname; |
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STRING str; |
Q s_id,index; |
Q s_id,index; |
LIST obj; |
LIST pos; |
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Obj t; |
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if ( !fname ) { |
if ( !fname ) { |
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MKSTR(fname,"draw_string"); |
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} |
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s_id = (Q)ARG0(arg); |
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index = (Q)ARG1(arg); |
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pos = (LIST)ARG2(arg); |
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str = (STRING)ARG3(arg); |
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/* ARG4(arg) = color */ |
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if ( argc(arg) == 5 ) |
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arg = mknode(6,s_id,fname,index,pos,str,ARG4(arg)); |
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else |
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arg = mknode(5,s_id,fname,index,pos,str); |
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Pox_cmo_rpc(arg,&t); |
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*rp = s_id; |
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} |
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void Pclear_canvas(NODE arg,Q *rp) |
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{ |
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static STRING fname; |
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Q s_id,index; |
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Obj t; |
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if ( !fname ) { |
MKSTR(fname,"clear_canvas"); |
MKSTR(fname,"clear_canvas"); |
} |
} |
s_id = (Q)ARG0(arg); |
s_id = (Q)ARG0(arg); |
index = (Q)ARG1(arg); |
index = (Q)ARG1(arg); |
arg = mknode(3,s_id,fname,index); |
arg = mknode(3,s_id,fname,index); |
Pox_cmo_rpc(arg,rp); |
Pox_cmo_rpc(arg,&t); |
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*rp = s_id; |
} |
} |
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#if 0 |
#if 0 |
void Parrayplot(arg,rp) |
void Parrayplot(NODE arg,Obj *rp) |
NODE arg; |
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Obj *rp; |
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{ |
{ |
int s; |
int s; |
int id; |
int id; |