1 |
greg |
1.1 |
#ifndef lint |
2 |
greg |
1.16 |
static const char RCSid[] = "$Id: xf.c,v 1.15 2011/01/14 05:46:12 greg Exp $"; |
3 |
greg |
1.1 |
#endif |
4 |
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/* |
5 |
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* Routines for 4x4 homogeneous, rigid-body transformations |
6 |
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*/ |
7 |
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8 |
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#include <stdio.h> |
9 |
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#include <math.h> |
10 |
gregl |
1.13 |
#include <stdlib.h> |
11 |
greg |
1.1 |
#include <string.h> |
12 |
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#include "parser.h" |
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14 |
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#define d2r(a) ((PI/180.)*(a)) |
15 |
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16 |
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#define checkarg(a,l) if (av[i][a] || badarg(ac-i-1,av+i+1,l)) goto done |
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18 |
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MAT4 m4ident = MAT4IDENT; |
19 |
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20 |
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static MAT4 m4tmp; /* for efficiency */ |
21 |
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22 |
greg |
1.14 |
XF_SPEC *xf_context = NULL; /* current context */ |
23 |
greg |
1.9 |
char **xf_argend; /* end of transform argument list */ |
24 |
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static char **xf_argbeg; /* beginning of transform argument list */ |
25 |
greg |
1.1 |
|
26 |
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27 |
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int |
28 |
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xf_handler(ac, av) /* handle xf entity */ |
29 |
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int ac; |
30 |
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char **av; |
31 |
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{ |
32 |
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register XF_SPEC *spec; |
33 |
greg |
1.5 |
register int n; |
34 |
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int rv; |
35 |
greg |
1.1 |
|
36 |
greg |
1.5 |
if (ac == 1) { /* something with existing transform */ |
37 |
greg |
1.1 |
if ((spec = xf_context) == NULL) |
38 |
greg |
1.11 |
return(MG_ECNTXT); |
39 |
greg |
1.5 |
n = -1; |
40 |
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if (spec->xarr != NULL) { /* check for iteration */ |
41 |
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register struct xf_array *ap = spec->xarr; |
42 |
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43 |
greg |
1.12 |
(void)xf_aname((struct xf_array *)NULL); |
44 |
greg |
1.5 |
n = ap->ndim; |
45 |
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while (n--) { |
46 |
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if (++ap->aarg[n].i < ap->aarg[n].n) |
47 |
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break; |
48 |
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(void)strcpy(ap->aarg[n].arg, "0"); |
49 |
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ap->aarg[n].i = 0; |
50 |
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} |
51 |
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if (n >= 0) { |
52 |
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if ((rv = mg_fgoto(&ap->spos)) != MG_OK) |
53 |
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return(rv); |
54 |
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sprintf(ap->aarg[n].arg, "%d", ap->aarg[n].i); |
55 |
greg |
1.12 |
(void)xf_aname(ap); |
56 |
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} |
57 |
greg |
1.5 |
} |
58 |
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if (n < 0) { /* pop transform */ |
59 |
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xf_context = spec->prev; |
60 |
greg |
1.12 |
free_xf(spec); |
61 |
greg |
1.5 |
return(MG_OK); |
62 |
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} |
63 |
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} else { /* else allocate transform */ |
64 |
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if ((spec = new_xf(ac-1, av+1)) == NULL) |
65 |
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return(MG_EMEM); |
66 |
greg |
1.12 |
if (spec->xarr != NULL) |
67 |
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(void)xf_aname(spec->xarr); |
68 |
greg |
1.5 |
spec->prev = xf_context; /* push onto stack */ |
69 |
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xf_context = spec; |
70 |
greg |
1.1 |
} |
71 |
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/* translate new specification */ |
72 |
greg |
1.9 |
n = xf_ac(spec); |
73 |
greg |
1.12 |
n -= xf_ac(spec->prev); /* incremental comp. is more eff. */ |
74 |
greg |
1.9 |
if (xf(&spec->xf, n, xf_av(spec)) != n) |
75 |
greg |
1.1 |
return(MG_ETYPE); |
76 |
greg |
1.7 |
/* check for vertex reversal */ |
77 |
greg |
1.8 |
if ((spec->rev = (spec->xf.sca < 0.))) |
78 |
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spec->xf.sca = -spec->xf.sca; |
79 |
greg |
1.5 |
/* compute total transformation */ |
80 |
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if (spec->prev != NULL) { |
81 |
greg |
1.8 |
multmat4(spec->xf.xfm, spec->xf.xfm, spec->prev->xf.xfm); |
82 |
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spec->xf.sca *= spec->prev->xf.sca; |
83 |
greg |
1.7 |
spec->rev ^= spec->prev->rev; |
84 |
greg |
1.8 |
} |
85 |
greg |
1.5 |
spec->xid = comp_xfid(spec->xf.xfm); /* compute unique ID */ |
86 |
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return(MG_OK); |
87 |
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} |
88 |
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89 |
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90 |
greg |
1.12 |
XF_SPEC * |
91 |
greg |
1.5 |
new_xf(ac, av) /* allocate new transform structure */ |
92 |
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int ac; |
93 |
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char **av; |
94 |
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{ |
95 |
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register XF_SPEC *spec; |
96 |
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register int i; |
97 |
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char *cp; |
98 |
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int n, ndim; |
99 |
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100 |
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ndim = 0; |
101 |
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n = 0; /* compute space req'd by arguments */ |
102 |
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for (i = 0; i < ac; i++) |
103 |
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if (!strcmp(av[i], "-a")) { |
104 |
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ndim++; |
105 |
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i++; |
106 |
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} else |
107 |
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n += strlen(av[i]) + 1; |
108 |
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if (ndim > XF_MAXDIM) |
109 |
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return(NULL); |
110 |
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spec = (XF_SPEC *)malloc(sizeof(XF_SPEC) + n); |
111 |
greg |
1.1 |
if (spec == NULL) |
112 |
greg |
1.5 |
return(NULL); |
113 |
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if (ndim) { |
114 |
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spec->xarr = (struct xf_array *)malloc(sizeof(struct xf_array)); |
115 |
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if (spec->xarr == NULL) |
116 |
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return(NULL); |
117 |
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mg_fgetpos(&spec->xarr->spos); |
118 |
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spec->xarr->ndim = 0; /* incremented below */ |
119 |
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} else |
120 |
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spec->xarr = NULL; |
121 |
greg |
1.9 |
spec->xac = ac + xf_argc; |
122 |
greg |
1.1 |
/* and store new xf arguments */ |
123 |
greg |
1.9 |
if (xf_argbeg == NULL || xf_av(spec) < xf_argbeg) { |
124 |
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register char **newav = |
125 |
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(char **)malloc((spec->xac+1)*sizeof(char *)); |
126 |
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if (newav == NULL) |
127 |
greg |
1.5 |
return(NULL); |
128 |
greg |
1.9 |
for (i = xf_argc; i-- > 0; ) |
129 |
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newav[ac+i] = xf_argend[i-xf_context->xac]; |
130 |
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*(xf_argend = newav + spec->xac) = NULL; |
131 |
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if (xf_argbeg != NULL) |
132 |
greg |
1.15 |
free(xf_argbeg); |
133 |
greg |
1.9 |
xf_argbeg = newav; |
134 |
greg |
1.1 |
} |
135 |
greg |
1.5 |
cp = (char *)(spec + 1); /* use memory allocated above */ |
136 |
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for (i = 0; i < ac; i++) |
137 |
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if (!strcmp(av[i], "-a")) { |
138 |
greg |
1.9 |
xf_av(spec)[i++] = "-i"; |
139 |
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xf_av(spec)[i] = strcpy( |
140 |
greg |
1.5 |
spec->xarr->aarg[spec->xarr->ndim].arg, |
141 |
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"0"); |
142 |
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spec->xarr->aarg[spec->xarr->ndim].i = 0; |
143 |
greg |
1.9 |
spec->xarr->aarg[spec->xarr->ndim++].n = atoi(av[i]); |
144 |
greg |
1.5 |
} else { |
145 |
greg |
1.9 |
xf_av(spec)[i] = strcpy(cp, av[i]); |
146 |
greg |
1.5 |
cp += strlen(av[i]) + 1; |
147 |
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} |
148 |
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return(spec); |
149 |
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} |
150 |
greg |
1.4 |
|
151 |
greg |
1.5 |
|
152 |
greg |
1.12 |
void |
153 |
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free_xf(spec) /* free a transform */ |
154 |
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register XF_SPEC *spec; |
155 |
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{ |
156 |
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if (spec->xarr != NULL) |
157 |
greg |
1.15 |
free(spec->xarr); |
158 |
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free(spec); |
159 |
greg |
1.12 |
} |
160 |
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161 |
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162 |
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int |
163 |
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xf_aname(ap) /* put out name for this instance */ |
164 |
greg |
1.5 |
register struct xf_array *ap; |
165 |
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{ |
166 |
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static char oname[10*XF_MAXDIM]; |
167 |
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static char *oav[3] = {mg_ename[MG_E_OBJECT], oname}; |
168 |
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register int i; |
169 |
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register char *cp1, *cp2; |
170 |
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171 |
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if (ap == NULL) |
172 |
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return(mg_handle(MG_E_OBJECT, 1, oav)); |
173 |
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cp1 = oname; |
174 |
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*cp1 = 'a'; |
175 |
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for (i = 0; i < ap->ndim; i++) { |
176 |
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for (cp2 = ap->aarg[i].arg; *cp2; ) |
177 |
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*++cp1 = *cp2++; |
178 |
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*++cp1 = '.'; |
179 |
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} |
180 |
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*cp1 = '\0'; |
181 |
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return(mg_handle(MG_E_OBJECT, 2, oav)); |
182 |
greg |
1.1 |
} |
183 |
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184 |
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185 |
greg |
1.12 |
long |
186 |
greg |
1.5 |
comp_xfid(xfm) /* compute unique ID from matrix */ |
187 |
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register MAT4 xfm; |
188 |
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{ |
189 |
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static char shifttab[64] = { 15, 5, 11, 5, 6, 3, |
190 |
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9, 15, 13, 2, 13, 5, 2, 12, 14, 11, |
191 |
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11, 12, 12, 3, 2, 11, 8, 12, 1, 12, |
192 |
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5, 4, 15, 9, 14, 5, 13, 14, 2, 10, |
193 |
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10, 14, 12, 3, 5, 5, 14, 6, 12, 11, |
194 |
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13, 9, 12, 8, 1, 6, 5, 12, 7, 13, |
195 |
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15, 8, 9, 2, 6, 11, 9, 11 }; |
196 |
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register int i; |
197 |
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register long xid; |
198 |
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199 |
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xid = 0; /* compute unique transform id */ |
200 |
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for (i = 0; i < sizeof(MAT4)/sizeof(unsigned short); i++) |
201 |
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xid ^= (long)(((unsigned short *)xfm)[i]) << shifttab[i&63]; |
202 |
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return(xid); |
203 |
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} |
204 |
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205 |
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206 |
greg |
1.1 |
void |
207 |
greg |
1.2 |
xf_clear() /* clear transform stack */ |
208 |
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{ |
209 |
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register XF_SPEC *spec; |
210 |
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211 |
greg |
1.9 |
if (xf_argbeg != NULL) { |
212 |
greg |
1.15 |
free(xf_argbeg); |
213 |
greg |
1.9 |
xf_argbeg = xf_argend = NULL; |
214 |
greg |
1.2 |
} |
215 |
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while ((spec = xf_context) != NULL) { |
216 |
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xf_context = spec->prev; |
217 |
greg |
1.12 |
free_xf(spec); |
218 |
greg |
1.2 |
} |
219 |
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} |
220 |
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221 |
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222 |
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void |
223 |
greg |
1.1 |
xf_xfmpoint(v1, v2) /* transform a point by the current matrix */ |
224 |
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FVECT v1, v2; |
225 |
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{ |
226 |
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if (xf_context == NULL) { |
227 |
greg |
1.10 |
VCOPY(v1, v2); |
228 |
greg |
1.1 |
return; |
229 |
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} |
230 |
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multp3(v1, v2, xf_context->xf.xfm); |
231 |
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} |
232 |
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233 |
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234 |
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void |
235 |
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xf_xfmvect(v1, v2) /* transform a vector using current matrix */ |
236 |
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FVECT v1, v2; |
237 |
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{ |
238 |
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if (xf_context == NULL) { |
239 |
greg |
1.10 |
VCOPY(v1, v2); |
240 |
greg |
1.1 |
return; |
241 |
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} |
242 |
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multv3(v1, v2, xf_context->xf.xfm); |
243 |
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} |
244 |
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245 |
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246 |
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void |
247 |
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xf_rotvect(v1, v2) /* rotate a vector using current matrix */ |
248 |
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FVECT v1, v2; |
249 |
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{ |
250 |
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xf_xfmvect(v1, v2); |
251 |
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if (xf_context == NULL) |
252 |
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return; |
253 |
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v1[0] /= xf_context->xf.sca; |
254 |
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v1[1] /= xf_context->xf.sca; |
255 |
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v1[2] /= xf_context->xf.sca; |
256 |
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} |
257 |
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258 |
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259 |
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double |
260 |
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xf_scale(d) /* scale a number by the current transform */ |
261 |
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double d; |
262 |
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{ |
263 |
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if (xf_context == NULL) |
264 |
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return(d); |
265 |
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return(d*xf_context->xf.sca); |
266 |
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} |
267 |
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268 |
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269 |
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void |
270 |
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multmat4(m4a, m4b, m4c) /* multiply m4b X m4c and put into m4a */ |
271 |
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MAT4 m4a; |
272 |
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register MAT4 m4b, m4c; |
273 |
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{ |
274 |
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register int i, j; |
275 |
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276 |
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for (i = 4; i--; ) |
277 |
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for (j = 4; j--; ) |
278 |
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m4tmp[i][j] = m4b[i][0]*m4c[0][j] + |
279 |
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m4b[i][1]*m4c[1][j] + |
280 |
|
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m4b[i][2]*m4c[2][j] + |
281 |
|
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m4b[i][3]*m4c[3][j]; |
282 |
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283 |
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copymat4(m4a, m4tmp); |
284 |
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} |
285 |
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286 |
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287 |
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void |
288 |
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multv3(v3a, v3b, m4) /* transform vector v3b by m4 and put into v3a */ |
289 |
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FVECT v3a; |
290 |
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register FVECT v3b; |
291 |
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register MAT4 m4; |
292 |
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{ |
293 |
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m4tmp[0][0] = v3b[0]*m4[0][0] + v3b[1]*m4[1][0] + v3b[2]*m4[2][0]; |
294 |
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m4tmp[0][1] = v3b[0]*m4[0][1] + v3b[1]*m4[1][1] + v3b[2]*m4[2][1]; |
295 |
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m4tmp[0][2] = v3b[0]*m4[0][2] + v3b[1]*m4[1][2] + v3b[2]*m4[2][2]; |
296 |
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297 |
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v3a[0] = m4tmp[0][0]; |
298 |
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v3a[1] = m4tmp[0][1]; |
299 |
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v3a[2] = m4tmp[0][2]; |
300 |
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} |
301 |
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302 |
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303 |
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void |
304 |
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multp3(p3a, p3b, m4) /* transform p3b by m4 and put into p3a */ |
305 |
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register FVECT p3a; |
306 |
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FVECT p3b; |
307 |
|
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register MAT4 m4; |
308 |
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{ |
309 |
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multv3(p3a, p3b, m4); /* transform as vector */ |
310 |
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p3a[0] += m4[3][0]; /* translate */ |
311 |
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p3a[1] += m4[3][1]; |
312 |
|
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p3a[2] += m4[3][2]; |
313 |
|
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} |
314 |
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315 |
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316 |
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int |
317 |
|
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xf(ret, ac, av) /* get transform specification */ |
318 |
|
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register XF *ret; |
319 |
|
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int ac; |
320 |
greg |
1.3 |
char **av; |
321 |
greg |
1.1 |
{ |
322 |
|
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MAT4 xfmat, m4; |
323 |
|
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double xfsca, dtmp; |
324 |
|
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int i, icnt; |
325 |
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|
326 |
|
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setident4(ret->xfm); |
327 |
|
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ret->sca = 1.0; |
328 |
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329 |
|
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icnt = 1; |
330 |
|
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setident4(xfmat); |
331 |
|
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xfsca = 1.0; |
332 |
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333 |
|
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for (i = 0; i < ac && av[i][0] == '-'; i++) { |
334 |
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|
335 |
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setident4(m4); |
336 |
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|
337 |
|
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switch (av[i][1]) { |
338 |
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339 |
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case 't': /* translate */ |
340 |
|
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checkarg(2,"fff"); |
341 |
|
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m4[3][0] = atof(av[++i]); |
342 |
|
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m4[3][1] = atof(av[++i]); |
343 |
|
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m4[3][2] = atof(av[++i]); |
344 |
|
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break; |
345 |
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346 |
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case 'r': /* rotate */ |
347 |
|
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switch (av[i][2]) { |
348 |
|
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case 'x': |
349 |
|
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checkarg(3,"f"); |
350 |
|
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dtmp = d2r(atof(av[++i])); |
351 |
|
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m4[1][1] = m4[2][2] = cos(dtmp); |
352 |
|
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m4[2][1] = -(m4[1][2] = sin(dtmp)); |
353 |
|
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break; |
354 |
|
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case 'y': |
355 |
|
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checkarg(3,"f"); |
356 |
|
|
dtmp = d2r(atof(av[++i])); |
357 |
|
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m4[0][0] = m4[2][2] = cos(dtmp); |
358 |
|
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m4[0][2] = -(m4[2][0] = sin(dtmp)); |
359 |
|
|
break; |
360 |
|
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case 'z': |
361 |
|
|
checkarg(3,"f"); |
362 |
|
|
dtmp = d2r(atof(av[++i])); |
363 |
|
|
m4[0][0] = m4[1][1] = cos(dtmp); |
364 |
|
|
m4[1][0] = -(m4[0][1] = sin(dtmp)); |
365 |
|
|
break; |
366 |
|
|
default: |
367 |
|
|
goto done; |
368 |
|
|
} |
369 |
|
|
break; |
370 |
|
|
|
371 |
|
|
case 's': /* scale */ |
372 |
|
|
checkarg(2,"f"); |
373 |
|
|
dtmp = atof(av[i+1]); |
374 |
|
|
if (dtmp == 0.0) goto done; |
375 |
|
|
i++; |
376 |
|
|
xfsca *= |
377 |
|
|
m4[0][0] = |
378 |
|
|
m4[1][1] = |
379 |
|
|
m4[2][2] = dtmp; |
380 |
|
|
break; |
381 |
|
|
|
382 |
|
|
case 'm': /* mirror */ |
383 |
|
|
switch (av[i][2]) { |
384 |
|
|
case 'x': |
385 |
|
|
checkarg(3,""); |
386 |
|
|
xfsca *= |
387 |
|
|
m4[0][0] = -1.0; |
388 |
|
|
break; |
389 |
|
|
case 'y': |
390 |
|
|
checkarg(3,""); |
391 |
|
|
xfsca *= |
392 |
|
|
m4[1][1] = -1.0; |
393 |
|
|
break; |
394 |
|
|
case 'z': |
395 |
|
|
checkarg(3,""); |
396 |
|
|
xfsca *= |
397 |
|
|
m4[2][2] = -1.0; |
398 |
|
|
break; |
399 |
|
|
default: |
400 |
|
|
goto done; |
401 |
|
|
} |
402 |
|
|
break; |
403 |
|
|
|
404 |
|
|
case 'i': /* iterate */ |
405 |
|
|
checkarg(2,"i"); |
406 |
|
|
while (icnt-- > 0) { |
407 |
|
|
multmat4(ret->xfm, ret->xfm, xfmat); |
408 |
|
|
ret->sca *= xfsca; |
409 |
|
|
} |
410 |
|
|
icnt = atoi(av[++i]); |
411 |
|
|
setident4(xfmat); |
412 |
|
|
xfsca = 1.0; |
413 |
|
|
continue; |
414 |
|
|
|
415 |
|
|
default: |
416 |
|
|
goto done; |
417 |
|
|
|
418 |
|
|
} |
419 |
|
|
multmat4(xfmat, xfmat, m4); |
420 |
|
|
} |
421 |
|
|
done: |
422 |
|
|
while (icnt-- > 0) { |
423 |
|
|
multmat4(ret->xfm, ret->xfm, xfmat); |
424 |
|
|
ret->sca *= xfsca; |
425 |
|
|
} |
426 |
|
|
return(i); |
427 |
|
|
} |