5 |
|
* Routines for reading a compiled mesh from a file |
6 |
|
*/ |
7 |
|
|
8 |
+ |
#include <time.h> |
9 |
+ |
|
10 |
+ |
#include "platform.h" |
11 |
|
#include "standard.h" |
12 |
|
#include "octree.h" |
13 |
|
#include "object.h" |
14 |
|
#include "mesh.h" |
15 |
|
#include "resolu.h" |
16 |
|
|
17 |
+ |
#ifdef getc_unlocked /* avoid horrendous overhead of flockfile */ |
18 |
+ |
#undef getc |
19 |
+ |
#define getc getc_unlocked |
20 |
+ |
#endif |
21 |
+ |
|
22 |
|
static char *meshfn; /* input file name */ |
23 |
|
static FILE *meshfp; /* mesh file pointer */ |
24 |
|
static int objsize; /* sizeof(OBJECT) from writer */ |
97 |
|
default: |
98 |
|
mesherror(USER, "damaged mesh octree"); |
99 |
|
} |
100 |
< |
return NULL; /* pro forma return */ |
100 |
> |
return (OCTREE)NULL; /* pro forma return */ |
101 |
|
} |
102 |
|
|
103 |
|
|
140 |
|
pp->nverts = mgetint(2); |
141 |
|
if (pp->nverts <= 0 || pp->nverts > 256) |
142 |
|
mesherror(USER, "bad number of patch vertices"); |
143 |
< |
pp->xyz = (uint4 (*)[3])malloc(pp->nverts*3*sizeof(uint4)); |
143 |
> |
pp->xyz = (uint32 (*)[3])malloc(pp->nverts*3*sizeof(uint32)); |
144 |
|
if (pp->xyz == NULL) |
145 |
|
goto nomem; |
146 |
|
if (flags & MT_N) { |
147 |
< |
pp->norm = (int4 *)calloc(pp->nverts, sizeof(int4)); |
147 |
> |
pp->norm = (int32 *)calloc(pp->nverts, sizeof(int32)); |
148 |
|
if (pp->norm == NULL) |
149 |
|
goto nomem; |
150 |
|
} else |
151 |
|
pp->norm = NULL; |
152 |
|
if (flags & MT_UV) { |
153 |
< |
pp->uv = (uint4 (*)[2])calloc(pp->nverts, 2*sizeof(uint4)); |
153 |
> |
pp->uv = (uint32 (*)[2])calloc(pp->nverts, 2*sizeof(uint32)); |
154 |
|
if (pp->uv == NULL) |
155 |
|
goto nomem; |
156 |
|
} else |
186 |
|
pp->tri = NULL; |
187 |
|
/* local triangle material(s) */ |
188 |
|
if (mgetint(2) > 1) { |
189 |
< |
pp->trimat = (int2 *)malloc(pp->ntris*sizeof(int2)); |
189 |
> |
pp->trimat = (int16 *)malloc(pp->ntris*sizeof(int16)); |
190 |
|
if (pp->trimat == NULL) |
191 |
|
goto nomem; |
192 |
|
for (i = 0; i < pp->ntris; i++) |