file.c revision 1.16 1 1.16 christos /* $NetBSD: file.c,v 1.16 2016/06/08 01:11:49 christos Exp $ */
2 1.2 thorpej
3 1.1 cjs /*
4 1.1 cjs * Copyright (c) 1995-96 Mats O Jansson. All rights reserved.
5 1.1 cjs *
6 1.1 cjs * Redistribution and use in source and binary forms, with or without
7 1.1 cjs * modification, are permitted provided that the following conditions
8 1.1 cjs * are met:
9 1.1 cjs * 1. Redistributions of source code must retain the above copyright
10 1.1 cjs * notice, this list of conditions and the following disclaimer.
11 1.1 cjs * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 cjs * notice, this list of conditions and the following disclaimer in the
13 1.1 cjs * documentation and/or other materials provided with the distribution.
14 1.1 cjs *
15 1.1 cjs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 1.1 cjs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 1.1 cjs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 1.1 cjs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 1.1 cjs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20 1.1 cjs * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21 1.1 cjs * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22 1.1 cjs * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23 1.1 cjs * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24 1.1 cjs * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25 1.1 cjs */
26 1.1 cjs
27 1.16 christos #include "port.h"
28 1.4 lukem #ifndef lint
29 1.16 christos __RCSID("$NetBSD: file.c,v 1.16 2016/06/08 01:11:49 christos Exp $");
30 1.1 cjs #endif
31 1.1 cjs
32 1.1 cjs #include "os.h"
33 1.4 lukem #include "common.h"
34 1.4 lukem #include "file.h"
35 1.4 lukem #include "mopdef.h"
36 1.8 thorpej #include <stddef.h>
37 1.1 cjs
38 1.1 cjs #ifndef NOAOUT
39 1.8 thorpej # if defined(__NetBSD__) || defined(__OpenBSD__)
40 1.8 thorpej # include <sys/exec_aout.h>
41 1.8 thorpej # endif
42 1.8 thorpej # if defined(__bsdi__)
43 1.8 thorpej # define NOAOUT
44 1.8 thorpej # endif
45 1.8 thorpej # if defined(__FreeBSD__)
46 1.8 thorpej # include <sys/imgact_aout.h>
47 1.8 thorpej # endif
48 1.8 thorpej # if !defined(MID_VAX)
49 1.8 thorpej # define MID_VAX 140
50 1.8 thorpej # endif
51 1.8 thorpej #endif /* NOAOUT */
52 1.8 thorpej
53 1.8 thorpej #ifndef NOELF
54 1.8 thorpej # if defined(__NetBSD__)
55 1.8 thorpej # include <sys/exec_elf.h>
56 1.8 thorpej # else
57 1.8 thorpej # define NOELF
58 1.8 thorpej # endif
59 1.8 thorpej #endif /* NOELF */
60 1.1 cjs
61 1.15 nakayama #ifndef NOAOUT
62 1.14 joerg static int getCLBYTES(int);
63 1.14 joerg static int getMID(int, int);
64 1.15 nakayama #endif
65 1.4 lukem
66 1.9 thorpej const char *
67 1.14 joerg FileTypeName(mopd_imagetype type)
68 1.9 thorpej {
69 1.9 thorpej
70 1.9 thorpej switch (type) {
71 1.9 thorpej case IMAGE_TYPE_MOP:
72 1.9 thorpej return ("MOP");
73 1.9 thorpej
74 1.9 thorpej case IMAGE_TYPE_ELF32:
75 1.9 thorpej return ("Elf32");
76 1.9 thorpej
77 1.9 thorpej case IMAGE_TYPE_AOUT:
78 1.9 thorpej return ("a.out");
79 1.9 thorpej }
80 1.9 thorpej
81 1.9 thorpej abort();
82 1.9 thorpej }
83 1.9 thorpej
84 1.1 cjs void
85 1.14 joerg mopFilePutLX(u_char *buf, int idx, u_int32_t value, int cnt)
86 1.1 cjs {
87 1.1 cjs int i;
88 1.1 cjs for (i = 0; i < cnt; i++) {
89 1.11 lukem buf[idx+i] = value % 256;
90 1.1 cjs value = value / 256;
91 1.1 cjs }
92 1.1 cjs }
93 1.1 cjs
94 1.1 cjs void
95 1.14 joerg mopFilePutBX(u_char *buf, int idx, u_int32_t value, int cnt)
96 1.1 cjs {
97 1.1 cjs int i;
98 1.1 cjs for (i = 0; i < cnt; i++) {
99 1.11 lukem buf[idx+cnt-1-i] = value % 256;
100 1.1 cjs value = value / 256;
101 1.1 cjs }
102 1.1 cjs }
103 1.1 cjs
104 1.4 lukem u_int32_t
105 1.14 joerg mopFileGetLX(u_char *buf, int idx, int cnt)
106 1.1 cjs {
107 1.4 lukem u_int32_t ret = 0;
108 1.1 cjs int i;
109 1.1 cjs
110 1.1 cjs for (i = 0; i < cnt; i++) {
111 1.13 christos int j = idx + cnt - 1 - i;
112 1.13 christos if (j < 0)
113 1.13 christos abort();
114 1.13 christos ret = ret * 256 + buf[j];
115 1.1 cjs }
116 1.1 cjs
117 1.1 cjs return(ret);
118 1.1 cjs }
119 1.1 cjs
120 1.4 lukem u_int32_t
121 1.14 joerg mopFileGetBX(u_char *buf, int idx, int cnt)
122 1.1 cjs {
123 1.4 lukem u_int32_t ret = 0;
124 1.1 cjs int i;
125 1.1 cjs
126 1.1 cjs for (i = 0; i < cnt; i++) {
127 1.13 christos int j = idx + i;
128 1.13 christos if (j < 0)
129 1.13 christos abort();
130 1.13 christos ret = ret * 256 + buf[j];
131 1.1 cjs }
132 1.1 cjs
133 1.1 cjs return(ret);
134 1.1 cjs }
135 1.1 cjs
136 1.1 cjs void
137 1.14 joerg mopFileSwapX(u_char *buf, int idx, int cnt)
138 1.1 cjs {
139 1.1 cjs int i;
140 1.1 cjs u_char c;
141 1.1 cjs
142 1.1 cjs for (i = 0; i < (cnt / 2); i++) {
143 1.11 lukem c = buf[idx+i];
144 1.11 lukem buf[idx+i] = buf[idx+cnt-1-i];
145 1.11 lukem buf[idx+cnt-1-i] = c;
146 1.1 cjs }
147 1.1 cjs
148 1.1 cjs }
149 1.1 cjs
150 1.1 cjs int
151 1.14 joerg CheckMopFile(int fd)
152 1.1 cjs {
153 1.1 cjs u_char header[512];
154 1.1 cjs short image_type;
155 1.1 cjs
156 1.1 cjs if (read(fd, header, 512) != 512)
157 1.1 cjs return(-1);
158 1.1 cjs
159 1.1 cjs (void)lseek(fd, (off_t) 0, SEEK_SET);
160 1.1 cjs
161 1.1 cjs image_type = (u_short)(header[IHD_W_ALIAS+1]*256 +
162 1.1 cjs header[IHD_W_ALIAS]);
163 1.1 cjs
164 1.1 cjs switch(image_type) {
165 1.1 cjs case IHD_C_NATIVE: /* Native mode image (VAX) */
166 1.1 cjs case IHD_C_RSX: /* RSX image produced by TKB */
167 1.1 cjs case IHD_C_BPA: /* BASIC plus analog */
168 1.1 cjs case IHD_C_ALIAS: /* Alias */
169 1.1 cjs case IHD_C_CLI: /* Image is CLI */
170 1.1 cjs case IHD_C_PMAX: /* PMAX system image */
171 1.1 cjs case IHD_C_ALPHA: /* ALPHA system image */
172 1.1 cjs break;
173 1.1 cjs default:
174 1.1 cjs return(-1);
175 1.1 cjs }
176 1.1 cjs
177 1.1 cjs return(0);
178 1.1 cjs }
179 1.1 cjs
180 1.1 cjs int
181 1.14 joerg GetMopFileInfo(struct dllist *dl)
182 1.1 cjs {
183 1.4 lukem u_char header[512];
184 1.4 lukem short image_type;
185 1.4 lukem u_int32_t load_addr, xfr_addr, isd, iha, hbcnt, isize;
186 1.1 cjs
187 1.8 thorpej if (read(dl->ldfd, header, 512) != 512)
188 1.1 cjs return(-1);
189 1.1 cjs
190 1.1 cjs image_type = (u_short)(header[IHD_W_ALIAS+1]*256 +
191 1.1 cjs header[IHD_W_ALIAS]);
192 1.1 cjs
193 1.1 cjs switch(image_type) {
194 1.1 cjs case IHD_C_NATIVE: /* Native mode image (VAX) */
195 1.1 cjs isd = (header[IHD_W_SIZE+1]*256 +
196 1.1 cjs header[IHD_W_SIZE]);
197 1.1 cjs iha = (header[IHD_W_ACTIVOFF+1]*256 +
198 1.1 cjs header[IHD_W_ACTIVOFF]);
199 1.1 cjs hbcnt = (header[IHD_B_HDRBLKCNT]);
200 1.1 cjs isize = (header[isd+ISD_W_PAGCNT+1]*256 +
201 1.1 cjs header[isd+ISD_W_PAGCNT]) * 512;
202 1.1 cjs load_addr = ((header[isd+ISD_V_VPN+1]*256 +
203 1.1 cjs header[isd+ISD_V_VPN]) & ISD_M_VPN)
204 1.1 cjs * 512;
205 1.1 cjs xfr_addr = (header[iha+IHA_L_TFRADR1+3]*0x1000000 +
206 1.1 cjs header[iha+IHA_L_TFRADR1+2]*0x10000 +
207 1.1 cjs header[iha+IHA_L_TFRADR1+1]*0x100 +
208 1.1 cjs header[iha+IHA_L_TFRADR1]) & 0x7fffffff;
209 1.1 cjs printf("Native Image (VAX)\n");
210 1.1 cjs printf("Header Block Count: %d\n",hbcnt);
211 1.1 cjs printf("Image Size: %08x\n",isize);
212 1.1 cjs printf("Load Address: %08x\n",load_addr);
213 1.1 cjs printf("Transfer Address: %08x\n",xfr_addr);
214 1.1 cjs break;
215 1.1 cjs case IHD_C_RSX: /* RSX image produced by TKB */
216 1.1 cjs hbcnt = header[L_BBLK+1]*256 + header[L_BBLK];
217 1.1 cjs isize = (header[L_BLDZ+1]*256 + header[L_BLDZ]) * 64;
218 1.1 cjs load_addr = header[L_BSA+1]*256 + header[L_BSA];
219 1.1 cjs xfr_addr = header[L_BXFR+1]*256 + header[L_BXFR];
220 1.1 cjs printf("RSX Image\n");
221 1.1 cjs printf("Header Block Count: %d\n",hbcnt);
222 1.1 cjs printf("Image Size: %08x\n",isize);
223 1.1 cjs printf("Load Address: %08x\n",load_addr);
224 1.1 cjs printf("Transfer Address: %08x\n",xfr_addr);
225 1.1 cjs break;
226 1.1 cjs case IHD_C_BPA: /* BASIC plus analog */
227 1.1 cjs printf("BASIC-Plus Image, not supported\n");
228 1.1 cjs return(-1);
229 1.1 cjs break;
230 1.1 cjs case IHD_C_ALIAS: /* Alias */
231 1.1 cjs printf("Alias, not supported\n");
232 1.1 cjs return(-1);
233 1.1 cjs break;
234 1.1 cjs case IHD_C_CLI: /* Image is CLI */
235 1.1 cjs printf("CLI, not supported\n");
236 1.1 cjs return(-1);
237 1.1 cjs break;
238 1.1 cjs case IHD_C_PMAX: /* PMAX system image */
239 1.1 cjs isd = (header[IHD_W_SIZE+1]*256 +
240 1.1 cjs header[IHD_W_SIZE]);
241 1.1 cjs iha = (header[IHD_W_ACTIVOFF+1]*256 +
242 1.1 cjs header[IHD_W_ACTIVOFF]);
243 1.1 cjs hbcnt = (header[IHD_B_HDRBLKCNT]);
244 1.1 cjs isize = (header[isd+ISD_W_PAGCNT+1]*256 +
245 1.1 cjs header[isd+ISD_W_PAGCNT]) * 512;
246 1.1 cjs load_addr = (header[isd+ISD_V_VPN+1]*256 +
247 1.1 cjs header[isd+ISD_V_VPN]) * 512;
248 1.1 cjs xfr_addr = (header[iha+IHA_L_TFRADR1+3]*0x1000000 +
249 1.1 cjs header[iha+IHA_L_TFRADR1+2]*0x10000 +
250 1.1 cjs header[iha+IHA_L_TFRADR1+1]*0x100 +
251 1.1 cjs header[iha+IHA_L_TFRADR1]);
252 1.1 cjs printf("PMAX Image \n");
253 1.1 cjs printf("Header Block Count: %d\n",hbcnt);
254 1.1 cjs printf("Image Size: %08x\n",isize);
255 1.1 cjs printf("Load Address: %08x\n",load_addr);
256 1.1 cjs printf("Transfer Address: %08x\n",xfr_addr);
257 1.1 cjs break;
258 1.1 cjs case IHD_C_ALPHA: /* ALPHA system image */
259 1.1 cjs isd = (header[EIHD_L_ISDOFF+3]*0x1000000 +
260 1.1 cjs header[EIHD_L_ISDOFF+2]*0x10000 +
261 1.1 cjs header[EIHD_L_ISDOFF+1]*0x100 +
262 1.1 cjs header[EIHD_L_ISDOFF]);
263 1.1 cjs hbcnt = (header[EIHD_L_HDRBLKCNT+3]*0x1000000 +
264 1.1 cjs header[EIHD_L_HDRBLKCNT+2]*0x10000 +
265 1.1 cjs header[EIHD_L_HDRBLKCNT+1]*0x100 +
266 1.1 cjs header[EIHD_L_HDRBLKCNT]);
267 1.1 cjs isize = (header[isd+EISD_L_SECSIZE+3]*0x1000000 +
268 1.1 cjs header[isd+EISD_L_SECSIZE+2]*0x10000 +
269 1.1 cjs header[isd+EISD_L_SECSIZE+1]*0x100 +
270 1.1 cjs header[isd+EISD_L_SECSIZE]);
271 1.1 cjs load_addr = 0;
272 1.1 cjs xfr_addr = 0;
273 1.1 cjs printf("Alpha Image \n");
274 1.1 cjs printf("Header Block Count: %d\n",hbcnt);
275 1.1 cjs printf("Image Size: %08x\n",isize);
276 1.1 cjs printf("Load Address: %08x\n",load_addr);
277 1.1 cjs printf("Transfer Address: %08x\n",xfr_addr);
278 1.1 cjs break;
279 1.1 cjs default:
280 1.1 cjs printf("Unknown Image (%d)\n",image_type);
281 1.1 cjs return(-1);
282 1.1 cjs }
283 1.1 cjs
284 1.8 thorpej dl->image_type = IMAGE_TYPE_MOP;
285 1.8 thorpej dl->loadaddr = load_addr;
286 1.8 thorpej dl->xferaddr = xfr_addr;
287 1.1 cjs
288 1.1 cjs return(0);
289 1.1 cjs }
290 1.1 cjs
291 1.1 cjs #ifndef NOAOUT
292 1.14 joerg static int
293 1.14 joerg getMID(int old_mid, int new_mid)
294 1.1 cjs {
295 1.1 cjs int mid;
296 1.1 cjs
297 1.1 cjs mid = old_mid;
298 1.1 cjs
299 1.1 cjs switch (new_mid) {
300 1.1 cjs case MID_I386:
301 1.1 cjs mid = MID_I386;
302 1.1 cjs break;
303 1.1 cjs #ifdef MID_M68K
304 1.1 cjs case MID_M68K:
305 1.1 cjs mid = MID_M68K;
306 1.1 cjs break;
307 1.1 cjs #endif
308 1.1 cjs #ifdef MID_M68K4K
309 1.1 cjs case MID_M68K4K:
310 1.1 cjs mid = MID_M68K4K;
311 1.1 cjs break;
312 1.1 cjs #endif
313 1.1 cjs #ifdef MID_NS32532
314 1.1 cjs case MID_NS32532:
315 1.1 cjs mid = MID_NS32532;
316 1.1 cjs break;
317 1.1 cjs #endif
318 1.1 cjs case MID_SPARC:
319 1.1 cjs mid = MID_SPARC;
320 1.1 cjs break;
321 1.1 cjs #ifdef MID_PMAX
322 1.1 cjs case MID_PMAX:
323 1.1 cjs mid = MID_PMAX;
324 1.1 cjs break;
325 1.1 cjs #endif
326 1.1 cjs #ifdef MID_VAX
327 1.1 cjs case MID_VAX:
328 1.1 cjs mid = MID_VAX;
329 1.1 cjs break;
330 1.1 cjs #endif
331 1.1 cjs #ifdef MID_ALPHA
332 1.1 cjs case MID_ALPHA:
333 1.1 cjs mid = MID_ALPHA;
334 1.1 cjs break;
335 1.1 cjs #endif
336 1.1 cjs #ifdef MID_MIPS
337 1.1 cjs case MID_MIPS:
338 1.1 cjs mid = MID_MIPS;
339 1.1 cjs break;
340 1.1 cjs #endif
341 1.1 cjs #ifdef MID_ARM6
342 1.1 cjs case MID_ARM6:
343 1.1 cjs mid = MID_ARM6;
344 1.1 cjs break;
345 1.1 cjs #endif
346 1.1 cjs default:
347 1.5 cgd break;
348 1.1 cjs }
349 1.1 cjs
350 1.1 cjs return(mid);
351 1.1 cjs }
352 1.1 cjs
353 1.14 joerg static int
354 1.14 joerg getCLBYTES(int mid)
355 1.1 cjs {
356 1.1 cjs int clbytes;
357 1.1 cjs
358 1.1 cjs switch (mid) {
359 1.1 cjs #ifdef MID_VAX
360 1.1 cjs case MID_VAX:
361 1.1 cjs clbytes = 1024;
362 1.1 cjs break;
363 1.1 cjs #endif
364 1.6 mycroft #ifdef MID_I386
365 1.1 cjs case MID_I386:
366 1.6 mycroft #endif
367 1.1 cjs #ifdef MID_M68K4K
368 1.1 cjs case MID_M68K4K:
369 1.1 cjs #endif
370 1.1 cjs #ifdef MID_NS32532
371 1.1 cjs case MID_NS32532:
372 1.1 cjs #endif
373 1.1 cjs #ifdef MID_PMAX
374 1.1 cjs case MID_PMAX:
375 1.1 cjs #endif
376 1.1 cjs #ifdef MID_MIPS
377 1.1 cjs case MID_MIPS:
378 1.1 cjs #endif
379 1.1 cjs #ifdef MID_ARM6
380 1.1 cjs case MID_ARM6:
381 1.1 cjs #endif
382 1.6 mycroft #if defined(MID_I386) || defined(MID_M68K4K) || defined(MID_NS32532) || \
383 1.6 mycroft defined(MID_PMAX) || defined(MID_MIPS) || defined(MID_ARM6)
384 1.1 cjs clbytes = 4096;
385 1.1 cjs break;
386 1.6 mycroft #endif
387 1.1 cjs #ifdef MID_M68K
388 1.1 cjs case MID_M68K:
389 1.1 cjs #endif
390 1.1 cjs #ifdef MID_ALPHA
391 1.1 cjs case MID_ALPHA:
392 1.1 cjs #endif
393 1.6 mycroft #ifdef MID_SPARC
394 1.6 mycroft case MID_SPARC:
395 1.6 mycroft #endif
396 1.6 mycroft #if defined(MID_M68K) || defined(MID_ALPHA) || defined(MID_SPARC)
397 1.1 cjs clbytes = 8192;
398 1.1 cjs break;
399 1.1 cjs #endif
400 1.1 cjs default:
401 1.1 cjs clbytes = 0;
402 1.1 cjs }
403 1.1 cjs
404 1.1 cjs return(clbytes);
405 1.1 cjs }
406 1.1 cjs #endif
407 1.1 cjs
408 1.1 cjs int
409 1.14 joerg CheckElfFile(int fd)
410 1.8 thorpej {
411 1.8 thorpej #ifdef NOELF
412 1.8 thorpej return(-1);
413 1.8 thorpej #else
414 1.8 thorpej Elf32_Ehdr ehdr;
415 1.8 thorpej
416 1.8 thorpej (void)lseek(fd, (off_t) 0, SEEK_SET);
417 1.8 thorpej
418 1.8 thorpej if (read(fd, (char *)&ehdr, sizeof(ehdr)) != sizeof(ehdr))
419 1.8 thorpej return(-1);
420 1.8 thorpej
421 1.8 thorpej if (ehdr.e_ident[0] != ELFMAG0 ||
422 1.8 thorpej ehdr.e_ident[1] != ELFMAG1 ||
423 1.8 thorpej ehdr.e_ident[2] != ELFMAG2 ||
424 1.8 thorpej ehdr.e_ident[3] != ELFMAG3)
425 1.8 thorpej return(-1);
426 1.8 thorpej
427 1.8 thorpej /* Must be Elf32... */
428 1.8 thorpej if (ehdr.e_ident[EI_CLASS] != ELFCLASS32)
429 1.8 thorpej return(-1);
430 1.8 thorpej
431 1.8 thorpej return(0);
432 1.8 thorpej #endif /* NOELF */
433 1.8 thorpej }
434 1.8 thorpej
435 1.8 thorpej int
436 1.14 joerg GetElfFileInfo(struct dllist *dl)
437 1.8 thorpej {
438 1.8 thorpej #ifdef NOELF
439 1.8 thorpej return(-1);
440 1.8 thorpej #else
441 1.8 thorpej Elf32_Ehdr ehdr;
442 1.8 thorpej Elf32_Phdr phdr;
443 1.8 thorpej uint32_t e_machine, e_entry;
444 1.8 thorpej uint32_t e_phoff, e_phentsize, e_phnum;
445 1.8 thorpej int ei_data, i;
446 1.8 thorpej
447 1.8 thorpej (void)lseek(dl->ldfd, (off_t) 0, SEEK_SET);
448 1.8 thorpej
449 1.8 thorpej if (read(dl->ldfd, (char *)&ehdr, sizeof(ehdr)) != sizeof(ehdr))
450 1.8 thorpej return(-1);
451 1.8 thorpej
452 1.8 thorpej if (ehdr.e_ident[0] != ELFMAG0 ||
453 1.8 thorpej ehdr.e_ident[1] != ELFMAG1 ||
454 1.8 thorpej ehdr.e_ident[2] != ELFMAG2 ||
455 1.8 thorpej ehdr.e_ident[3] != ELFMAG3)
456 1.8 thorpej return(-1);
457 1.8 thorpej
458 1.8 thorpej /* Must be Elf32... */
459 1.8 thorpej if (ehdr.e_ident[EI_CLASS] != ELFCLASS32)
460 1.8 thorpej return(-1);
461 1.8 thorpej
462 1.8 thorpej ei_data = ehdr.e_ident[EI_DATA];
463 1.8 thorpej
464 1.8 thorpej switch (ei_data) {
465 1.8 thorpej case ELFDATA2LSB:
466 1.8 thorpej e_machine = mopFileGetLX((u_char *) &ehdr,
467 1.8 thorpej offsetof(Elf32_Ehdr, e_machine),
468 1.8 thorpej sizeof(ehdr.e_machine));
469 1.8 thorpej e_entry = mopFileGetLX((u_char *) &ehdr,
470 1.8 thorpej offsetof(Elf32_Ehdr, e_entry),
471 1.8 thorpej sizeof(ehdr.e_entry));
472 1.8 thorpej
473 1.8 thorpej e_phoff = mopFileGetLX((u_char *) &ehdr,
474 1.8 thorpej offsetof(Elf32_Ehdr, e_phoff),
475 1.8 thorpej sizeof(ehdr.e_phoff));
476 1.8 thorpej e_phentsize = mopFileGetLX((u_char *) &ehdr,
477 1.8 thorpej offsetof(Elf32_Ehdr, e_phentsize),
478 1.8 thorpej sizeof(ehdr.e_phentsize));
479 1.8 thorpej e_phnum = mopFileGetLX((u_char *) &ehdr,
480 1.8 thorpej offsetof(Elf32_Ehdr, e_phnum),
481 1.8 thorpej sizeof(ehdr.e_phnum));
482 1.8 thorpej break;
483 1.8 thorpej
484 1.8 thorpej case ELFDATA2MSB:
485 1.8 thorpej e_machine = mopFileGetBX((u_char *) &ehdr,
486 1.8 thorpej offsetof(Elf32_Ehdr, e_machine),
487 1.8 thorpej sizeof(ehdr.e_machine));
488 1.8 thorpej e_entry = mopFileGetBX((u_char *) &ehdr,
489 1.8 thorpej offsetof(Elf32_Ehdr, e_entry),
490 1.8 thorpej sizeof(ehdr.e_entry));
491 1.8 thorpej
492 1.8 thorpej e_phoff = mopFileGetBX((u_char *) &ehdr,
493 1.8 thorpej offsetof(Elf32_Ehdr, e_phoff),
494 1.8 thorpej sizeof(ehdr.e_phoff));
495 1.8 thorpej e_phentsize = mopFileGetBX((u_char *) &ehdr,
496 1.8 thorpej offsetof(Elf32_Ehdr, e_phentsize),
497 1.8 thorpej sizeof(ehdr.e_phentsize));
498 1.8 thorpej e_phnum = mopFileGetBX((u_char *) &ehdr,
499 1.8 thorpej offsetof(Elf32_Ehdr, e_phnum),
500 1.8 thorpej sizeof(ehdr.e_phnum));
501 1.8 thorpej break;
502 1.8 thorpej
503 1.8 thorpej default:
504 1.8 thorpej return(-1);
505 1.8 thorpej }
506 1.8 thorpej
507 1.8 thorpej dl->image_type = IMAGE_TYPE_ELF32;
508 1.10 thorpej dl->loadaddr = 0;
509 1.8 thorpej dl->xferaddr = e_entry; /* will relocate itself if necessary */
510 1.8 thorpej
511 1.8 thorpej if (e_phnum > SEC_MAX)
512 1.8 thorpej return(-1);
513 1.8 thorpej dl->e_nsec = e_phnum;
514 1.8 thorpej for (i = 0; i < dl->e_nsec; i++) {
515 1.8 thorpej if (lseek(dl->ldfd, (off_t) e_phoff + (i * e_phentsize),
516 1.8 thorpej SEEK_SET) == (off_t) -1)
517 1.8 thorpej return(-1);
518 1.8 thorpej if (read(dl->ldfd, (char *) &phdr, sizeof(phdr)) !=
519 1.8 thorpej sizeof(phdr))
520 1.8 thorpej return(-1);
521 1.8 thorpej
522 1.8 thorpej switch (ei_data) {
523 1.8 thorpej case ELFDATA2LSB:
524 1.8 thorpej dl->e_sections[i].s_foff =
525 1.8 thorpej mopFileGetLX((u_char *) &phdr,
526 1.8 thorpej offsetof(Elf32_Phdr, p_offset),
527 1.8 thorpej sizeof(phdr.p_offset));
528 1.8 thorpej dl->e_sections[i].s_vaddr =
529 1.8 thorpej mopFileGetLX((u_char *) &phdr,
530 1.8 thorpej offsetof(Elf32_Phdr, p_vaddr),
531 1.8 thorpej sizeof(phdr.p_vaddr));
532 1.8 thorpej dl->e_sections[i].s_fsize =
533 1.8 thorpej mopFileGetLX((u_char *) &phdr,
534 1.8 thorpej offsetof(Elf32_Phdr, p_filesz),
535 1.8 thorpej sizeof(phdr.p_filesz));
536 1.8 thorpej dl->e_sections[i].s_msize =
537 1.8 thorpej mopFileGetLX((u_char *) &phdr,
538 1.8 thorpej offsetof(Elf32_Phdr, p_memsz),
539 1.8 thorpej sizeof(phdr.p_memsz));
540 1.8 thorpej break;
541 1.8 thorpej
542 1.8 thorpej case ELFDATA2MSB:
543 1.8 thorpej dl->e_sections[i].s_foff =
544 1.8 thorpej mopFileGetBX((u_char *) &phdr,
545 1.8 thorpej offsetof(Elf32_Phdr, p_offset),
546 1.8 thorpej sizeof(phdr.p_offset));
547 1.8 thorpej dl->e_sections[i].s_vaddr =
548 1.8 thorpej mopFileGetBX((u_char *) &phdr,
549 1.8 thorpej offsetof(Elf32_Phdr, p_vaddr),
550 1.8 thorpej sizeof(phdr.p_vaddr));
551 1.8 thorpej dl->e_sections[i].s_fsize =
552 1.8 thorpej mopFileGetBX((u_char *) &phdr,
553 1.8 thorpej offsetof(Elf32_Phdr, p_filesz),
554 1.8 thorpej sizeof(phdr.p_filesz));
555 1.8 thorpej dl->e_sections[i].s_msize =
556 1.8 thorpej mopFileGetBX((u_char *) &phdr,
557 1.8 thorpej offsetof(Elf32_Phdr, p_memsz),
558 1.8 thorpej sizeof(phdr.p_memsz));
559 1.8 thorpej break;
560 1.8 thorpej
561 1.8 thorpej default:
562 1.8 thorpej return(-1);
563 1.8 thorpej }
564 1.8 thorpej }
565 1.8 thorpej /*
566 1.8 thorpej * In addition to padding between segments, this also
567 1.8 thorpej * takes care of memsz > filesz.
568 1.8 thorpej */
569 1.8 thorpej for (i = 0; i < dl->e_nsec - 1; i++) {
570 1.8 thorpej dl->e_sections[i].s_pad =
571 1.8 thorpej dl->e_sections[i + 1].s_vaddr -
572 1.8 thorpej (dl->e_sections[i].s_vaddr + dl->e_sections[i].s_fsize);
573 1.8 thorpej }
574 1.8 thorpej dl->e_sections[dl->e_nsec - 1].s_pad =
575 1.8 thorpej dl->e_sections[dl->e_nsec - 1].s_msize -
576 1.8 thorpej dl->e_sections[dl->e_nsec - 1].s_fsize;
577 1.8 thorpej /*
578 1.8 thorpej * Now compute the logical offsets for each section.
579 1.8 thorpej */
580 1.8 thorpej dl->e_sections[0].s_loff = 0;
581 1.8 thorpej for (i = 1; i < dl->e_nsec; i++) {
582 1.8 thorpej dl->e_sections[i].s_loff =
583 1.8 thorpej dl->e_sections[i - 1].s_loff +
584 1.8 thorpej dl->e_sections[i - 1].s_fsize +
585 1.8 thorpej dl->e_sections[i - 1].s_pad;
586 1.8 thorpej }
587 1.8 thorpej
588 1.8 thorpej /* Print info about the image. */
589 1.8 thorpej printf("Elf32 image (");
590 1.8 thorpej switch (e_machine) {
591 1.8 thorpej #ifdef EM_VAX
592 1.8 thorpej case EM_VAX:
593 1.8 thorpej printf("VAX");
594 1.8 thorpej break;
595 1.8 thorpej #endif
596 1.8 thorpej default:
597 1.8 thorpej printf("machine %d", e_machine);
598 1.8 thorpej break;
599 1.8 thorpej }
600 1.8 thorpej printf(")\n");
601 1.8 thorpej printf("Transfer Address: %08x\n", dl->xferaddr);
602 1.8 thorpej printf("Program Sections: %d\n", dl->e_nsec);
603 1.8 thorpej for (i = 0; i < dl->e_nsec; i++) {
604 1.8 thorpej printf(" S%d File Size: %08x\n", i,
605 1.8 thorpej dl->e_sections[i].s_fsize);
606 1.8 thorpej printf(" S%d Pad Size: %08x\n", i,
607 1.8 thorpej dl->e_sections[i].s_pad);
608 1.8 thorpej }
609 1.9 thorpej dl->e_machine = e_machine;
610 1.8 thorpej
611 1.8 thorpej dl->e_curpos = 0;
612 1.8 thorpej dl->e_cursec = 0;
613 1.8 thorpej
614 1.8 thorpej return(0);
615 1.8 thorpej #endif /* NOELF */
616 1.8 thorpej }
617 1.8 thorpej
618 1.8 thorpej int
619 1.14 joerg CheckAOutFile(int fd)
620 1.1 cjs {
621 1.1 cjs #ifdef NOAOUT
622 1.1 cjs return(-1);
623 1.1 cjs #else
624 1.1 cjs struct exec ex, ex_swap;
625 1.1 cjs int mid = -1;
626 1.1 cjs
627 1.1 cjs if (read(fd, (char *)&ex, sizeof(ex)) != sizeof(ex))
628 1.1 cjs return(-1);
629 1.1 cjs
630 1.1 cjs (void)lseek(fd, (off_t) 0, SEEK_SET);
631 1.1 cjs
632 1.1 cjs if (read(fd, (char *)&ex_swap, sizeof(ex_swap)) != sizeof(ex_swap))
633 1.1 cjs return(-1);
634 1.1 cjs
635 1.1 cjs (void)lseek(fd, (off_t) 0, SEEK_SET);
636 1.1 cjs
637 1.1 cjs mid = getMID(mid, N_GETMID (ex));
638 1.1 cjs
639 1.1 cjs if (mid == -1) {
640 1.1 cjs mid = getMID(mid, N_GETMID (ex_swap));
641 1.1 cjs }
642 1.1 cjs
643 1.1 cjs if (mid != -1) {
644 1.1 cjs return(0);
645 1.1 cjs } else {
646 1.1 cjs return(-1);
647 1.1 cjs }
648 1.7 cgd #endif /* NOAOUT */
649 1.1 cjs }
650 1.1 cjs
651 1.1 cjs int
652 1.14 joerg GetAOutFileInfo(struct dllist *dl)
653 1.1 cjs {
654 1.1 cjs #ifdef NOAOUT
655 1.1 cjs return(-1);
656 1.1 cjs #else
657 1.1 cjs struct exec ex, ex_swap;
658 1.4 lukem u_int32_t mid = -1;
659 1.4 lukem u_int32_t magic, clbytes, clofset;
660 1.1 cjs
661 1.8 thorpej if (read(dl->ldfd, (char *)&ex, sizeof(ex)) != sizeof(ex))
662 1.1 cjs return(-1);
663 1.1 cjs
664 1.8 thorpej (void)lseek(dl->ldfd, (off_t) 0, SEEK_SET);
665 1.1 cjs
666 1.8 thorpej if (read(dl->ldfd, (char *)&ex_swap,
667 1.8 thorpej sizeof(ex_swap)) != sizeof(ex_swap))
668 1.1 cjs return(-1);
669 1.1 cjs
670 1.1 cjs mopFileSwapX((u_char *)&ex_swap, 0, 4);
671 1.1 cjs
672 1.1 cjs mid = getMID(mid, N_GETMID (ex));
673 1.1 cjs
674 1.11 lukem if (mid == (uint32_t)-1) {
675 1.1 cjs mid = getMID(mid, N_GETMID (ex_swap));
676 1.11 lukem if (mid != (uint32_t)-1) {
677 1.1 cjs mopFileSwapX((u_char *)&ex, 0, 4);
678 1.1 cjs }
679 1.1 cjs }
680 1.1 cjs
681 1.11 lukem if (mid == (uint32_t)-1) {
682 1.1 cjs return(-1);
683 1.1 cjs }
684 1.1 cjs
685 1.1 cjs if (N_BADMAG (ex)) {
686 1.1 cjs return(-1);
687 1.1 cjs }
688 1.1 cjs
689 1.1 cjs switch (mid) {
690 1.1 cjs case MID_I386:
691 1.1 cjs #ifdef MID_NS32532
692 1.1 cjs case MID_NS32532:
693 1.1 cjs #endif
694 1.1 cjs #ifdef MID_PMAX
695 1.1 cjs case MID_PMAX:
696 1.1 cjs #endif
697 1.1 cjs #ifdef MID_VAX
698 1.1 cjs case MID_VAX:
699 1.1 cjs #endif
700 1.1 cjs #ifdef MID_ALPHA
701 1.1 cjs case MID_ALPHA:
702 1.1 cjs #endif
703 1.1 cjs #ifdef MID_ARM6
704 1.1 cjs case MID_ARM6:
705 1.1 cjs #endif
706 1.1 cjs ex.a_text = mopFileGetLX((u_char *)&ex_swap, 4, 4);
707 1.1 cjs ex.a_data = mopFileGetLX((u_char *)&ex_swap, 8, 4);
708 1.1 cjs ex.a_bss = mopFileGetLX((u_char *)&ex_swap, 12, 4);
709 1.1 cjs ex.a_syms = mopFileGetLX((u_char *)&ex_swap, 16, 4);
710 1.1 cjs ex.a_entry = mopFileGetLX((u_char *)&ex_swap, 20, 4);
711 1.1 cjs ex.a_trsize= mopFileGetLX((u_char *)&ex_swap, 24, 4);
712 1.1 cjs ex.a_drsize= mopFileGetLX((u_char *)&ex_swap, 28, 4);
713 1.1 cjs break;
714 1.1 cjs #ifdef MID_M68K
715 1.1 cjs case MID_M68K:
716 1.1 cjs #endif
717 1.1 cjs #ifdef MID_M68K4K
718 1.1 cjs case MID_M68K4K:
719 1.1 cjs #endif
720 1.1 cjs case MID_SPARC:
721 1.1 cjs #ifdef MID_MIPS
722 1.1 cjs case MID_MIPS:
723 1.1 cjs #endif
724 1.1 cjs ex.a_text = mopFileGetBX((u_char *)&ex_swap, 4, 4);
725 1.1 cjs ex.a_data = mopFileGetBX((u_char *)&ex_swap, 8, 4);
726 1.1 cjs ex.a_bss = mopFileGetBX((u_char *)&ex_swap, 12, 4);
727 1.1 cjs ex.a_syms = mopFileGetBX((u_char *)&ex_swap, 16, 4);
728 1.1 cjs ex.a_entry = mopFileGetBX((u_char *)&ex_swap, 20, 4);
729 1.1 cjs ex.a_trsize= mopFileGetBX((u_char *)&ex_swap, 24, 4);
730 1.1 cjs ex.a_drsize= mopFileGetBX((u_char *)&ex_swap, 28, 4);
731 1.1 cjs break;
732 1.1 cjs default:
733 1.5 cgd break;
734 1.1 cjs }
735 1.1 cjs
736 1.1 cjs printf("a.out image (");
737 1.1 cjs switch (N_GETMID (ex)) {
738 1.1 cjs case MID_I386:
739 1.1 cjs printf("i386");
740 1.1 cjs break;
741 1.1 cjs #ifdef MID_M68K
742 1.1 cjs case MID_M68K:
743 1.1 cjs printf("m68k");
744 1.1 cjs break;
745 1.1 cjs #endif
746 1.1 cjs #ifdef MID_M68K4K
747 1.1 cjs case MID_M68K4K:
748 1.1 cjs printf("m68k 4k");
749 1.1 cjs break;
750 1.1 cjs #endif
751 1.1 cjs #ifdef MID_NS32532
752 1.1 cjs case MID_NS32532:
753 1.1 cjs printf("pc532");
754 1.1 cjs break;
755 1.1 cjs #endif
756 1.1 cjs case MID_SPARC:
757 1.1 cjs printf("sparc");
758 1.1 cjs break;
759 1.1 cjs #ifdef MID_PMAX
760 1.1 cjs case MID_PMAX:
761 1.1 cjs printf("pmax");
762 1.1 cjs break;
763 1.1 cjs #endif
764 1.1 cjs #ifdef MID_VAX
765 1.1 cjs case MID_VAX:
766 1.1 cjs printf("vax");
767 1.1 cjs break;
768 1.1 cjs #endif
769 1.1 cjs #ifdef MID_ALPHA
770 1.1 cjs case MID_ALPHA:
771 1.1 cjs printf("alpha");
772 1.1 cjs break;
773 1.1 cjs #endif
774 1.1 cjs #ifdef MID_MIPS
775 1.1 cjs case MID_MIPS:
776 1.1 cjs printf("mips");
777 1.1 cjs break;
778 1.1 cjs #endif
779 1.1 cjs #ifdef MID_ARM6
780 1.1 cjs case MID_ARM6:
781 1.1 cjs printf("arm32");
782 1.1 cjs break;
783 1.1 cjs #endif
784 1.1 cjs default:
785 1.5 cgd break;
786 1.1 cjs }
787 1.1 cjs printf(") Magic: ");
788 1.1 cjs switch (N_GETMAGIC (ex)) {
789 1.1 cjs case OMAGIC:
790 1.1 cjs printf("OMAGIC");
791 1.1 cjs break;
792 1.1 cjs case NMAGIC:
793 1.1 cjs printf("NMAGIC");
794 1.1 cjs break;
795 1.1 cjs case ZMAGIC:
796 1.1 cjs printf("ZMAGIC");
797 1.1 cjs break;
798 1.1 cjs case QMAGIC:
799 1.1 cjs printf("QMAGIC");
800 1.1 cjs break;
801 1.1 cjs default:
802 1.4 lukem printf("Unknown %ld", (long) N_GETMAGIC (ex));
803 1.1 cjs }
804 1.1 cjs printf("\n");
805 1.4 lukem printf("Size of text: %08lx\n", (long)ex.a_text);
806 1.4 lukem printf("Size of data: %08lx\n", (long)ex.a_data);
807 1.4 lukem printf("Size of bss: %08lx\n", (long)ex.a_bss);
808 1.4 lukem printf("Size of symbol tab: %08lx\n", (long)ex.a_syms);
809 1.4 lukem printf("Transfer Address: %08lx\n", (long)ex.a_entry);
810 1.4 lukem printf("Size of reloc text: %08lx\n", (long)ex.a_trsize);
811 1.4 lukem printf("Size of reloc data: %08lx\n", (long)ex.a_drsize);
812 1.3 lukem
813 1.1 cjs magic = N_GETMAGIC (ex);
814 1.1 cjs clbytes = getCLBYTES(mid);
815 1.1 cjs clofset = clbytes - 1;
816 1.1 cjs
817 1.8 thorpej dl->image_type = IMAGE_TYPE_AOUT;
818 1.8 thorpej dl->loadaddr = 0;
819 1.8 thorpej dl->xferaddr = ex.a_entry;
820 1.8 thorpej
821 1.8 thorpej dl->a_text = ex.a_text;
822 1.8 thorpej if (magic == ZMAGIC || magic == NMAGIC) {
823 1.8 thorpej dl->a_text_fill = clbytes - (ex.a_text & clofset);
824 1.8 thorpej if (dl->a_text_fill == clbytes)
825 1.8 thorpej dl->a_text_fill = 0;
826 1.8 thorpej } else
827 1.8 thorpej dl->a_text_fill = 0;
828 1.8 thorpej dl->a_data = ex.a_data;
829 1.8 thorpej if (magic == ZMAGIC || magic == NMAGIC) {
830 1.8 thorpej dl->a_data_fill = clbytes - (ex.a_data & clofset);
831 1.8 thorpej if (dl->a_data_fill == clbytes)
832 1.8 thorpej dl->a_data_fill = 0;
833 1.8 thorpej } else
834 1.8 thorpej dl->a_data_fill = 0;
835 1.8 thorpej dl->a_bss = ex.a_bss;
836 1.8 thorpej if (magic == ZMAGIC || magic == NMAGIC) {
837 1.8 thorpej dl->a_bss_fill = clbytes - (ex.a_bss & clofset);
838 1.8 thorpej if (dl->a_bss_fill == clbytes)
839 1.8 thorpej dl->a_bss_fill = 0;
840 1.8 thorpej } else {
841 1.8 thorpej dl->a_bss_fill = clbytes -
842 1.8 thorpej ((ex.a_text+ex.a_data+ex.a_bss) & clofset);
843 1.8 thorpej if (dl->a_bss_fill == clbytes)
844 1.8 thorpej dl->a_bss_fill = 0;
845 1.1 cjs }
846 1.8 thorpej dl->a_mid = mid;
847 1.1 cjs
848 1.1 cjs return(0);
849 1.7 cgd #endif /* NOAOUT */
850 1.1 cjs }
851 1.1 cjs
852 1.1 cjs int
853 1.14 joerg GetFileInfo(struct dllist *dl)
854 1.1 cjs {
855 1.11 lukem int error;
856 1.1 cjs
857 1.11 lukem error = CheckElfFile(dl->ldfd);
858 1.11 lukem if (error == 0) {
859 1.11 lukem error = GetElfFileInfo(dl);
860 1.11 lukem if (error != 0) {
861 1.8 thorpej return(-1);
862 1.8 thorpej }
863 1.8 thorpej return (0);
864 1.8 thorpej }
865 1.1 cjs
866 1.11 lukem error = CheckAOutFile(dl->ldfd);
867 1.11 lukem if (error == 0) {
868 1.11 lukem error = GetAOutFileInfo(dl);
869 1.11 lukem if (error != 0) {
870 1.1 cjs return(-1);
871 1.1 cjs }
872 1.8 thorpej return (0);
873 1.8 thorpej }
874 1.8 thorpej
875 1.11 lukem error = CheckMopFile(dl->ldfd);
876 1.11 lukem if (error == 0) {
877 1.11 lukem error = GetMopFileInfo(dl);
878 1.11 lukem if (error != 0) {
879 1.1 cjs return(-1);
880 1.1 cjs }
881 1.8 thorpej return (0);
882 1.1 cjs }
883 1.1 cjs
884 1.8 thorpej /* Unknown file format. */
885 1.8 thorpej return(-1);
886 1.1 cjs }
887 1.1 cjs
888 1.1 cjs ssize_t
889 1.14 joerg mopFileRead(struct dllist *dlslot, u_char *buf)
890 1.1 cjs {
891 1.1 cjs ssize_t len, outlen;
892 1.8 thorpej int bsz, sec;
893 1.4 lukem int32_t pos, notdone, total;
894 1.8 thorpej uint32_t secoff;
895 1.1 cjs
896 1.8 thorpej switch (dlslot->image_type) {
897 1.8 thorpej case IMAGE_TYPE_MOP:
898 1.1 cjs len = read(dlslot->ldfd,buf,dlslot->dl_bsz);
899 1.8 thorpej break;
900 1.8 thorpej
901 1.8 thorpej case IMAGE_TYPE_ELF32:
902 1.8 thorpej sec = dlslot->e_cursec;
903 1.8 thorpej
904 1.8 thorpej /*
905 1.8 thorpej * We're pretty simplistic here. We do only file-backed
906 1.8 thorpej * or only zero-fill.
907 1.8 thorpej */
908 1.8 thorpej
909 1.8 thorpej /* Determine offset into section. */
910 1.8 thorpej secoff = dlslot->e_curpos - dlslot->e_sections[sec].s_loff;
911 1.8 thorpej
912 1.8 thorpej /*
913 1.8 thorpej * If we're in the file-backed part of the section,
914 1.8 thorpej * transmit some of the file.
915 1.8 thorpej */
916 1.8 thorpej if (secoff < dlslot->e_sections[sec].s_fsize) {
917 1.8 thorpej bsz = dlslot->e_sections[sec].s_fsize - secoff;
918 1.8 thorpej if (bsz > dlslot->dl_bsz)
919 1.8 thorpej bsz = dlslot->dl_bsz;
920 1.8 thorpej if (lseek(dlslot->ldfd,
921 1.8 thorpej dlslot->e_sections[sec].s_foff + secoff,
922 1.8 thorpej SEEK_SET) == (off_t) -1)
923 1.8 thorpej return (-1);
924 1.8 thorpej len = read(dlslot->ldfd, buf, bsz);
925 1.8 thorpej }
926 1.8 thorpej /*
927 1.8 thorpej * Otherwise, if we're in the zero-fill part of the
928 1.8 thorpej * section, transmit some zeros.
929 1.8 thorpej */
930 1.8 thorpej else if (secoff < (dlslot->e_sections[sec].s_fsize +
931 1.8 thorpej dlslot->e_sections[sec].s_pad)) {
932 1.8 thorpej bsz = dlslot->e_sections[sec].s_pad -
933 1.8 thorpej (secoff - dlslot->e_sections[sec].s_fsize);
934 1.8 thorpej if (bsz > dlslot->dl_bsz)
935 1.8 thorpej bsz = dlslot->dl_bsz;
936 1.8 thorpej memset(buf, 0, (len = bsz));
937 1.8 thorpej }
938 1.8 thorpej /*
939 1.8 thorpej * ...and if we haven't hit either of those cases,
940 1.8 thorpej * that's the end of the image.
941 1.8 thorpej */
942 1.8 thorpej else {
943 1.8 thorpej return (0);
944 1.8 thorpej }
945 1.8 thorpej /*
946 1.8 thorpej * Advance the logical image pointer.
947 1.8 thorpej */
948 1.8 thorpej dlslot->e_curpos += bsz;
949 1.8 thorpej if (dlslot->e_curpos >= (dlslot->e_sections[sec].s_loff +
950 1.8 thorpej dlslot->e_sections[sec].s_fsize +
951 1.8 thorpej dlslot->e_sections[sec].s_pad))
952 1.8 thorpej dlslot->e_cursec++;
953 1.8 thorpej break;
954 1.8 thorpej
955 1.8 thorpej case IMAGE_TYPE_AOUT:
956 1.1 cjs bsz = dlslot->dl_bsz;
957 1.1 cjs pos = dlslot->a_lseek;
958 1.1 cjs len = 0;
959 1.1 cjs
960 1.1 cjs total = dlslot->a_text;
961 1.1 cjs
962 1.1 cjs if (pos < total) {
963 1.1 cjs notdone = total - pos;
964 1.1 cjs if (notdone <= bsz) {
965 1.1 cjs outlen = read(dlslot->ldfd,&buf[len],notdone);
966 1.1 cjs } else {
967 1.1 cjs outlen = read(dlslot->ldfd,&buf[len],bsz);
968 1.1 cjs }
969 1.1 cjs len = len + outlen;
970 1.1 cjs pos = pos + outlen;
971 1.1 cjs bsz = bsz - outlen;
972 1.1 cjs }
973 1.1 cjs
974 1.1 cjs total = total + dlslot->a_text_fill;
975 1.1 cjs
976 1.1 cjs if ((bsz > 0) && (pos < total)) {
977 1.1 cjs notdone = total - pos;
978 1.1 cjs if (notdone <= bsz) {
979 1.1 cjs outlen = notdone;
980 1.1 cjs } else {
981 1.1 cjs outlen = bsz;
982 1.1 cjs }
983 1.4 lukem memset(&buf[len], 0, outlen);
984 1.1 cjs len = len + outlen;
985 1.1 cjs pos = pos + outlen;
986 1.1 cjs bsz = bsz - outlen;
987 1.1 cjs }
988 1.1 cjs
989 1.1 cjs total = total + dlslot->a_data;
990 1.1 cjs
991 1.1 cjs if ((bsz > 0) && (pos < total)) {
992 1.1 cjs notdone = total - pos;
993 1.1 cjs if (notdone <= bsz) {
994 1.1 cjs outlen = read(dlslot->ldfd,&buf[len],notdone);
995 1.1 cjs } else {
996 1.1 cjs outlen = read(dlslot->ldfd,&buf[len],bsz);
997 1.1 cjs }
998 1.1 cjs len = len + outlen;
999 1.1 cjs pos = pos + outlen;
1000 1.1 cjs bsz = bsz - outlen;
1001 1.1 cjs }
1002 1.1 cjs
1003 1.1 cjs total = total + dlslot->a_data_fill;
1004 1.1 cjs
1005 1.1 cjs if ((bsz > 0) && (pos < total)) {
1006 1.1 cjs notdone = total - pos;
1007 1.1 cjs if (notdone <= bsz) {
1008 1.1 cjs outlen = notdone;
1009 1.1 cjs } else {
1010 1.1 cjs outlen = bsz;
1011 1.1 cjs }
1012 1.4 lukem memset(&buf[len], 0, outlen);
1013 1.1 cjs len = len + outlen;
1014 1.1 cjs pos = pos + outlen;
1015 1.1 cjs bsz = bsz - outlen;
1016 1.1 cjs }
1017 1.1 cjs
1018 1.1 cjs total = total + dlslot->a_bss;
1019 1.1 cjs
1020 1.1 cjs if ((bsz > 0) && (pos < total)) {
1021 1.1 cjs notdone = total - pos;
1022 1.1 cjs if (notdone <= bsz) {
1023 1.1 cjs outlen = notdone;
1024 1.1 cjs } else {
1025 1.1 cjs outlen = bsz;
1026 1.1 cjs }
1027 1.4 lukem memset(&buf[len], 0, outlen);
1028 1.1 cjs len = len + outlen;
1029 1.1 cjs pos = pos + outlen;
1030 1.1 cjs bsz = bsz - outlen;
1031 1.1 cjs }
1032 1.1 cjs
1033 1.1 cjs total = total + dlslot->a_bss_fill;
1034 1.1 cjs
1035 1.1 cjs if ((bsz > 0) && (pos < total)) {
1036 1.1 cjs notdone = total - pos;
1037 1.1 cjs if (notdone <= bsz) {
1038 1.1 cjs outlen = notdone;
1039 1.1 cjs } else {
1040 1.1 cjs outlen = bsz;
1041 1.1 cjs }
1042 1.4 lukem memset(&buf[len], 0, outlen);
1043 1.1 cjs len = len + outlen;
1044 1.1 cjs pos = pos + outlen;
1045 1.1 cjs bsz = bsz - outlen;
1046 1.1 cjs }
1047 1.1 cjs
1048 1.1 cjs dlslot->a_lseek = pos;
1049 1.8 thorpej break;
1050 1.10 thorpej
1051 1.10 thorpej default:
1052 1.10 thorpej abort();
1053 1.1 cjs }
1054 1.1 cjs
1055 1.1 cjs return(len);
1056 1.1 cjs }
1057