📄 pswigp.c
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/* Copyright (c) Colorado School of Mines, 1990./* All rights reserved. */char *sdoc ="PSWIGP - PostScript WIGgle-trace plot of f(x1,x2) via Polygons\n""Best for few traces. Use PSWIGB (Bitmap version) for many traces.\n""\n""pswigp n1= [optional parameters] <binaryfile >postscriptfile\n""\n""Required Parameters:\n""n1 number of samples in 1st (fast) dimension\n""\n""Optional Parameters:\n""d1=1.0 sampling interval in 1st dimension\n""f1=d1 first sample in 1st dimension\n""n2=all number of samples in 2nd (slow) dimension\n""d2=1.0 sampling interval in 2nd dimension\n""f2=d2 first sample in 2nd dimension\n""x2=f2,f2+d2,... array of sampled values in 2nd dimension\n""bias=0.0 data value corresponding to location along axis 2\n""perc=100.0 percentile for determining clip\n""clip=(perc percentile) data values < bias+clip and > bias-clip are clipped\n""xcur=1.0 wiggle excursion in traces corresponding to clip\n""fill=1 =0 for no fill; >0 for pos. fill; <0 for neg. fill\n""verbose=1 =1 for info printed on stderr (0 for no info)\n""xbox=1.5 offset in inches of left side of axes box\n""ybox=1.5 offset in inches of bottom side of axes box\n""wbox=6.0 width in inches of axes box\n""hbox=8.0 height in inches of axes box\n""x1beg=x1min value at which axis 1 begins\n""x1end=x1max value at which axis 1 ends\n""d1num=0.0 numbered tic interval on axis 1 (0.0 for automatic)\n""f1num=x1min first numbered tic on axis 1 (used if d1num not 0.0)\n""n1tic=1 number of tics per numbered tic on axis 1\n""grid1=none grid lines on axis 1 - none, dot, dash, or solid\n""label1= label on axis 1\n""x2beg=x2min value at which axis 2 begins\n""x2end=x2max value at which axis 2 ends\n""d2num=0.0 numbered tic interval on axis 2 (0.0 for automatic)\n""f2num=x2min first numbered tic on axis 2 (used if d2num not 0.0)\n""n2tic=1 number of tics per numbered tic on axis 2\n""grid2=none grid lines on axis 2 - none, dot, dash, or solid\n""label2= label on axis 2\n""labelfont=Helvetica font name for axes labels\n""labelsize=12 font size for axes labels\n""title= title of plot\n""titlefont=Helvetica-Bold font name for title\n""titlesize=24 font size for title\n""style=seismic normal (axis 1 horizontal, axis 2 vertical) or\n"" seismic (axis 1 vertical, axis 2 horizontal)\n""\n""AUTHOR: Dave Hale, Colorado School of Mines, 05/29/90\n""\n";#include "par.h"#include "psplot.h"main (argc,argv)int argc; char **argv;{ int n1,n2,n1tic,n2tic,nfloats,fill,bbox[4], i1,i2,npar,grid1,grid2,style, i1beg,i1end,if1p,n1p, p1fz,p1lz,n2in,nz,iz,i,nbytes,verbose; float labelsize,titlesize,bias,perc,clip,xcur, d1,f1,d2,f2,*x2,*z,zmin,zmax, xbox,ybox,wbox,hbox, x1beg,x1end,x2beg,x2end, x1min,x1max,x2min,x2max, d1num,f1num,d2num,f2num, *temp,p2beg,p2end,matrix[6], pscale,poffset,pxcur,px2,x1size,x2size; char *label1="",*label2="",*title="", *labelfont="Helvetica",*titlefont="Helvetica-Bold", *styles="seismic",*grid1s="none",*grid2s="none"; FILE *infp=stdin; /* initialize getpar */ initargs(argc,argv); askdoc(1); /* get parameters describing 1st dimension sampling */ if (!getparint("n1",&n1)) err("Must specify number of samples in 1st dimension!\n"); d1 = 1.0; getparfloat("d1",&d1); f1 = d1; getparfloat("f1",&f1); x1min = (d1>0.0)?f1:f1+(n1-1)*d1; x1max = (d1<0.0)?f1:f1+(n1-1)*d1; /* get parameters describing 2nd dimension sampling */ if ((n2=countparval("x2"))==0 && !getparint("n2",&n2)) { if (fseek(infp,0L,2)!=0) err("must specify n2 if in a pipe!\n"); nfloats = eftell(infp)/sizeof(float); efseek(infp,0L,0); n2 = nfloats/n1; } x2 = ealloc1float(n2); if (!getparfloat("x2",x2)) { d2 = 1.0; getparfloat("d2",&d2); f2 = d2; getparfloat("f2",&f2); for (i2=0; i2<n2; i2++) x2[i2] = f2+i2*d2; } for (i2=1,x2min=x2max=x2[0]; i2<n2; i2++) { x2min = MIN(x2min,x2[i2]); x2max = MAX(x2max,x2[i2]); } /* read binary data to be plotted */ nz = n1*n2; z = ealloc1float(nz); if (fread(z,sizeof(float),nz,infp)!=nz) err("Error reading input file!\n"); /* if necessary, subtract bias */ if (getparfloat("bias",&bias) && bias!=0.0) for (iz=0; iz<nz; iz++) z[iz] -= bias; /* if necessary, determine clip from percentile */ if (!getparfloat("clip",&clip)) { perc = 100.0; getparfloat("perc",&perc); temp = ealloc1float(nz); for (iz=0; iz<nz; iz++) temp[iz] = fabs(z[iz]); iz = (nz*perc/100.0); if (iz<0) iz = 0; if (iz>nz-1) iz = nz-1; qkfind(iz,nz,temp); clip = temp[iz]; free1float(temp); } verbose = 1; getparint("verbose",&verbose); if (verbose) warn("clip=%g",clip); /* get fill parameter */ fill = 1; getparint("fill",&fill); /* get axes parameters */ xbox = 1.5; getparfloat("xbox",&xbox); ybox = 1.5; getparfloat("ybox",&ybox); wbox = 6.0; getparfloat("wbox",&wbox); hbox = 8.0; getparfloat("hbox",&hbox); x1beg = x1min; getparfloat("x1beg",&x1beg); x1end = x1max; getparfloat("x1end",&x1end); d1num = 0.0; getparfloat("d1num",&d1num); f1num = x1min; getparfloat("f1num",&f1num); n1tic = 1; getparint("n1tic",&n1tic); getparstring("grid1",&grid1s); if (STREQ("dot",grid1s)) grid1 = DOT; else if (STREQ("dash",grid1s)) grid1 = DASH; else if (STREQ("solid",grid1s)) grid1 = SOLID; else grid1 = NONE; x2beg = x2min; getparfloat("x2beg",&x2beg); x2end = x2max; getparfloat("x2end",&x2end); d2num = 0.0; getparfloat("d2num",&d2num); f2num = 0.0; getparfloat("f2num",&f2num); n2tic = 1; getparint("n2tic",&n2tic); getparstring("grid2",&grid2s); if (STREQ("dot",grid2s)) grid2 = DOT; else if (STREQ("dash",grid2s)) grid2 = DASH; else if (STREQ("solid",grid2s)) grid2 = SOLID; else grid2 = NONE; getparstring("label1",&label1); getparstring("label2",&label2); getparstring("labelfont",&labelfont); labelsize = 18.0; getparfloat("labelsize",&labelsize); getparstring("title",&title); getparstring("titlefont",&titlefont); titlesize = 24.0; getparfloat("titlesize",&titlesize); getparstring("style",&styles); if (STREQ("normal",styles)) style = NORMAL; else style = SEISMIC; /* determine number of traces that fall within axis 2 bounds */ x2min = MIN(x2beg,x2end); x2max = MAX(x2beg,x2end); for (i2=0,n2in=0; i2<n2; i2++) if (x2[i2]>=x2min && x2[i2]<=x2max) n2in++; /* determine pads for wiggle excursion along axis 2 */ xcur = 1.0; getparfloat("xcur",&xcur); xcur = fabs(xcur); if (n2in>1) xcur *= (x2max-x2min)/(n2in-1); p2beg = (x2end>x2beg)?-xcur:xcur; p2end = (x2end>x2beg)?xcur:-xcur; /* adjust x1beg and x1end to fall on sampled values */ i1beg = NINT((x1beg-f1)/d1); i1beg = MAX(0,MIN(n1-1,i1beg)); x1beg = f1+i1beg*d1; i1end = NINT((x1end-f1)/d1); i1end = MAX(0,MIN(n1-1,i1end)); x1end = f1+i1end*d1; /* determine first sample and number of samples to plot */ if1p = MIN(i1beg,i1end); n1p = MAX(i1beg,i1end)-if1p+1; /* begin PostScript */ beginps(); newpage("1",1); /* convert axes box parameters from inches to points */ xbox *= 72.0; ybox *= 72.0; wbox *= 72.0; hbox *= 72.0; /* determine box size for first and second dimensions */ x1size = (style==NORMAL)?wbox:hbox; x2size = (style==NORMAL)?hbox:wbox; /* determine scale and offset to map x2 units to plot units */ pscale = x2size/(x2end+p2end-x2beg-p2beg); poffset = -(x2beg+p2beg)*pscale; pxcur = xcur*pscale; /* determine plot coordinates of first and last samples */ p1fz = (x1end>x1beg)?0.0:x1size; p1lz = (x1end>x1beg)?x1size:0.0; /* save graphics state */ gsave(); /* translate coordinate system by box offset */ translate(xbox,ybox); /* if style is not normal, rotate coordinate system */ if (style!=NORMAL) { rotate(-90.0); translate(-hbox,0.0); } /* draw traces */ for (i2=0; i2<n2; i2++,z+=n1) { /* skip traces not in bounds */ if (x2[i2]<x2min || x2[i2]>x2max) continue; /* determine x2 plot coordinate of trace */ px2 = poffset+x2[i2]*pscale; /* plot one trace */ psWiggle(n1p,&z[if1p],-clip,clip,0.0, (int)(px2-pxcur),(int)(px2+pxcur), p1fz,p1lz,fill); } /* restore graphics state */ grestore(); /* set bounding box */ psAxesBBox( xbox,ybox,wbox,hbox, labelfont,labelsize, titlefont,titlesize, style,bbox); boundingbox(bbox[0],bbox[1],bbox[2],bbox[3]); /* draw axes and title */ psAxesBox( xbox,ybox,wbox,hbox, x1beg,x1end,0.0,0.0, d1num,f1num,n1tic,grid1,label1, x2beg,x2end,p2beg,p2end, d2num,f2num,n2tic,grid2,label2, labelfont,labelsize, title,titlefont,titlesize, style); /* end PostScript */ showpage(); endps();}
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