/[gxemul]/trunk/src/emul_parse.c
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Revision 34 - (show annotations)
Mon Oct 8 16:21:17 2007 UTC (16 years, 6 months ago) by dpavlin
File MIME type: text/plain
File size: 20788 byte(s)
++ trunk/HISTORY	(local)
$Id: HISTORY,v 1.1480 2007/02/19 01:34:42 debug Exp $
20061029	Changing usleep(1) calls in the debugger to usleep(10000)
20061107	Adding a new disk image option (-d o...) which sets the ISO9660
		filesystem base offset; also making some other hacks to allow
		NetBSD/dreamcast and homebrew demos/games to boot directly
		from a filesystem image.
		Moving Dreamcast-specific stuff in the documentation to its
		own page (dreamcast.html).
		Adding a border to the Dreamcast PVR framebuffer.
20061108	Adding a -T command line option (again?), for halting the
		emulator on unimplemented memory accesses.
20061109	Continuing on various SH4 and Dreamcast related things.
		The emulator should now halt on more unimplemented device
		accesses, instead of just printing a warning, forcing me to
		actually implement missing stuff :)
20061111	Continuing on SH4 and Dreamcast stuff.
		Adding a bogus Landisk (SH4) machine mode.
20061112	Implementing some parts of the Dreamcast GDROM device. With
		some ugly hacks, NetBSD can (barely) mount an ISO image.
20061113	NetBSD/dreamcast now starts booting from the Live CD image,
		but crashes randomly quite early on in the boot process.
20061122	Beginning on a skeleton interrupt.h and interrupt.c for the
		new interrupt subsystem.
20061124	Continuing on the new interrupt system; taking the first steps
		to attempt to connect CPUs (SuperH and MIPS) and devices
		(dev_cons and SH4 timer interrupts) to it. Many things will
		probably break from now on.
20061125	Converting dev_ns16550, dev_8253 to the new interrupt system.
		Attempting to begin to convert the ISA bus.
20061130	Incorporating a patch from Brian Foley for the configure
		script, which checks for X11 libs in /usr/X11R6/lib64 (which
		is used on some Linux systems).
20061227	Adding a note in the man page about booting from Dreamcast
		CDROM images (i.e. that no external kernel is needed).
20061229	Continuing on the interrupt system rewrite: beginning to
		convert more devices, adding abort() calls for legacy interrupt
		system calls so that everything now _has_ to be rewritten!
		Almost all machine modes are now completely broken.
20061230	More progress on removing old interrupt code, mostly related
		to the ISA bus + devices, the LCA bus (on AlphaBook1), and
		the Footbridge bus (for CATS). And some minor PCI stuff.
		Connecting the ARM cpu to the new interrupt system.
		The CATS, NetWinder, and QEMU_MIPS machine modes now work with
		the new interrupt system :)
20061231	Connecting PowerPC CPUs to the new interrupt system.
		Making PReP machines (IBM 6050) work again.
		Beginning to convert the GT PCI controller (for e.g. Malta
		and Cobalt emulation). Some things work, but not everything.
		Updating Copyright notices for 2007.
20070101	Converting dev_kn02 from legacy style to devinit; the 3max
		machine mode now works with the new interrupt system :-]
20070105	Beginning to convert the SGI O2 machine to the new interrupt
		system; finally converting O2 (IP32) devices to devinit, etc.
20070106	Continuing on the interrupt system redesign/rewrite; KN01
		(PMAX), KN230, and Dreamcast ASIC interrupts should work again,
		moving out stuff from machine.h and devices.h into the
		corresponding devices, beginning the rewrite of i80321
		interrupts, etc.
20070107	Beginning on the rewrite of Eagle interrupt stuff (PReP, etc).
20070117	Beginning the rewrite of Algor (V3) interrupts (finally
		changing dev_v3 into devinit style).
20070118	Removing the "bus" registry concept from machine.h, because
		it was practically meaningless.
		Continuing on the rewrite of Algor V3 ISA interrupts.
20070121	More work on Algor interrupts; they are now working again,
		well enough to run NetBSD/algor. :-)
20070122	Converting VR41xx (HPCmips) interrupts. NetBSD/hpcmips
		can be installed using the new interrupt system :-)
20070123	Making the testmips mode work with the new interrupt system.
20070127	Beginning to convert DEC5800 devices to devinit, and to the
		new interrupt system.
		Converting Playstation 2 devices to devinit, and converting
		the interrupt system. Also fixing a severe bug: the interrupt
		mask register on Playstation 2 is bitwise _toggled_ on writes.
20070128	Removing the dummy NetGear machine mode and the 8250 device
		(which was only used by the NetGear machine).
		Beginning to convert the MacPPC GC (Grand Central) interrupt
		controller to the new interrupt system.
		Converting Jazz interrupts (PICA61 etc.) to the new interrupt
		system. NetBSD/arc can be installed again :-)
		Fixing the JAZZ timer (hardcoding it at 100 Hz, works with
		NetBSD and it is better than a completely dummy timer as it
		was before).
		Converting dev_mp to the new interrupt system, although I
		haven't had time to actually test it yet.
		Completely removing src/machines/interrupts.c, cpu_interrupt
		and cpu_interrupt_ack in src/cpu.c, and
		src/include/machine_interrupts.h! Adding fatal error messages
		+ abort() in the few places that are left to fix.
		Converting dev_z8530 to the new interrupt system.
		FINALLY removing the md_int struct completely from the
		machine struct.
		SH4 fixes (adding a PADDR invalidation in the ITLB replacement
		code in memory_sh.c); the NetBSD/dreamcast LiveCD now runs
		all the way to the login prompt, and can be interacted with :-)
		Converting the CPC700 controller (PCI and interrupt controller
		for PM/PPC) to the new interrupt system.
20070129	Fixing MACE ISA interrupts (SGI IP32 emulation). Both NetBSD/
		sgimips' and OpenBSD/sgi's ramdisk kernels can now be
		interacted with again.
20070130	Moving out the MIPS multi_lw and _sw instruction combinations
		so that they are auto-generated at compile time instead.
20070131	Adding detection of amd64/x86_64 hosts in the configure script,
		for doing initial experiments (again :-) with native code
		generation.
		Adding a -k command line option to set the size of the dyntrans
		cache, and a -B command line option to disable native code
		generation, even if GXemul was compiled with support for
		native code generation for the specific host CPU architecture.
20070201	Experimenting with a skeleton for native code generation.
		Changing the default behaviour, so that native code generation
		is now disabled by default, and has to be enabled by using
		-b on the command line.
20070202	Continuing the native code generation experiments.
		Making PCI interrupts work for Footbridge again.
20070203	More native code generation experiments.
		Removing most of the native code generation experimental code,
		it does not make sense to include any quick hacks like this.
		Minor cleanup/removal of some more legacy MIPS interrupt code.
20070204	Making i80321 interrupts work again (for NetBSD/evbarm etc.),
		and fixing the timer at 100 Hz.
20070206	Experimenting with removing the wdc interrupt slowness hack.
20070207	Lowering the number of dyntrans TLB entries for MIPS from
		192 to 128, resulting in a minor speed improvement.
		Minor optimization to the code invalidation routine in
		cpu_dyntrans.c.
20070208	Increasing (experimentally) the nr of dyntrans instructions per
		loop from 60 to 120.
20070210	Commenting out (experimentally) the dyntrans_device_danger
		detection in memory_rw.c.
		Changing the testmips and baremips machines to use a revision 2
		MIPS64 CPU by default, instead of revision 1.
		Removing the dummy i960, IA64, x86, AVR32, and HP PA-RISC
		files, the PC bios emulation, and the Olivetti M700 (ARC) and
		db64360 emulation modes.
20070211	Adding an "mp" demo to the demos directory, which tests the
		SMP functionality of the testmips machine.
		Fixing PReP interrupts some more. NetBSD/prep now boots again.
20070216	Adding a "nop workaround" for booting Mach/PMAX to the
		documentation; thanks to Artur Bujdoso for the values.
		Converting more of the MacPPC interrupt stuff to the new
		system.
		Beginning to convert BeBox interrupts to the new system.
		PPC603e should NOT have the PPC_NO_DEC flag! Removing it.
		Correcting BeBox clock speed (it was set to 100 in the NetBSD
		bootinfo block, but should be 33000000/4), allowing NetBSD
		to start without using the (incorrect) PPC_NO_DEC hack.
20070217	Implementing (slow) AltiVec vector loads and stores, allowing
		NetBSD/macppc to finally boot using the GENERIC kernel :-)
		Updating the documentation with install instructions for
		NetBSD/macppc.
20070218-19	Regression testing for the release.

==============  RELEASE 0.4.4  ==============


1 /*
2 * Copyright (C) 2005-2007 Anders Gavare. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions are met:
6 *
7 * 1. Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer.
9 * 2. Redistributions in binary form must reproduce the above copyright
10 * notice, this list of conditions and the following disclaimer in the
11 * documentation and/or other materials provided with the distribution.
12 * 3. The name of the author may not be used to endorse or promote products
13 * derived from this software without specific prior written permission.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 * SUCH DAMAGE.
26 *
27 *
28 * $Id: emul_parse.c,v 1.45 2006/12/30 13:30:52 debug Exp $
29 *
30 * Set up an emulation by parsing a config file.
31 *
32 * TODO: REWRITE THIS FROM SCRATCH! :-)
33 */
34
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <string.h>
38
39 #include "diskimage.h"
40 #include "emul.h"
41 #include "machine.h"
42 #include "misc.h"
43 #include "net.h"
44
45
46 #define is_word_char(ch) ( \
47 (ch >= 'a' && ch <= 'z') || (ch >= 'A' && ch <= 'Z') || \
48 ch == '_' || ch == '$' || (ch >= '0' && ch <= '9') )
49
50 #define MAX_WORD_LEN 200
51
52 #define EXPECT_WORD 1
53 #define EXPECT_LEFT_PARENTHESIS 2
54 #define EXPECT_RIGHT_PARENTHESIS 4
55
56 static int parenthesis_level = 0;
57
58
59 /*
60 * read_one_word():
61 *
62 * Reads the file f until it has read a complete word. Whitespace is ignored,
63 * and also any exclamation mark ('!') and anything following an exclamation
64 * mark on a line.
65 *
66 * Used internally by emul_parse_config().
67 */
68 static void read_one_word(FILE *f, char *buf, int buflen, int *line,
69 int expect)
70 {
71 int ch;
72 int done = 0;
73 int curlen = 0;
74 int in_word = 0;
75
76 while (!done) {
77 if (curlen >= buflen - 1)
78 break;
79
80 ch = fgetc(f);
81 if (ch == EOF)
82 break;
83
84 if (in_word) {
85 if (is_word_char(ch)) {
86 buf[curlen++] = ch;
87 if (curlen == buflen - 1)
88 done = 1;
89 continue;
90 } else {
91 if (ungetc(ch, f) == EOF) {
92 fatal("ungetc() failed?\n");
93 exit(1);
94 }
95 break;
96 }
97 }
98
99 if (ch == '\n') {
100 (*line) ++;
101 continue;
102 }
103
104 if (ch == '\r')
105 continue;
106
107 if (ch == '!') {
108 /* Skip until newline: */
109 while (ch != '\n' && ch != EOF)
110 ch = fgetc(f);
111 if (ch == '\n')
112 (*line) ++;
113 continue;
114 }
115
116 if (ch == '{') {
117 int depth = 1;
118
119 /* Skip until '}': */
120 while (depth > 0) {
121 ch = fgetc(f);
122 if (ch == '\n')
123 (*line) ++;
124 if (ch == '{')
125 depth ++;
126 if (ch == '}')
127 depth --;
128 if (ch == EOF) {
129 fatal("line %i: unexpected EOF inside"
130 " a nested comment\n", *line);
131 exit(1);
132 }
133 }
134 continue;
135 }
136
137 /* Whitespace? */
138 if (ch <= ' ')
139 continue;
140
141 if (ch == '"' || ch == '\'') {
142 /* This is a quoted word. */
143 int start_ch = ch;
144
145 if (expect & EXPECT_LEFT_PARENTHESIS) {
146 fatal("unexpected character '%c', line %i\n",
147 ch, *line);
148 exit(1);
149 }
150
151 while (curlen < buflen - 1) {
152 ch = fgetc(f);
153 if (ch == '\n') {
154 fatal("line %i: newline inside"
155 " quotes?\n", *line);
156 exit(1);
157 }
158 if (ch == EOF) {
159 fatal("line %i: EOF inside a quoted"
160 " string?\n", *line);
161 exit(1);
162 }
163 if (ch == start_ch)
164 break;
165 buf[curlen++] = ch;
166 }
167 break;
168 }
169
170 if ((expect & EXPECT_WORD) && is_word_char(ch)) {
171 buf[curlen++] = ch;
172 in_word = 1;
173 if (curlen == buflen - 1)
174 done = 1;
175 } else {
176 if ((expect & EXPECT_LEFT_PARENTHESIS) && ch == '(') {
177 parenthesis_level ++;
178 buf[curlen++] = ch;
179 break;
180 }
181 if ((expect & EXPECT_RIGHT_PARENTHESIS) && ch == ')') {
182 parenthesis_level --;
183 buf[curlen++] = ch;
184 break;
185 }
186
187 fatal("unexpected character '%c', line %i\n",
188 ch, *line);
189 exit(1);
190 }
191 }
192
193 buf[curlen] = '\0';
194 }
195
196
197 #define PARSESTATE_NONE 0
198 #define PARSESTATE_EMUL 1
199 #define PARSESTATE_NET 2
200 #define PARSESTATE_MACHINE 3
201
202 static char cur_net_ipv4net[50];
203 static char cur_net_ipv4len[50];
204 static char cur_net_local_port[10];
205 #define MAX_N_REMOTE 20
206 #define MAX_REMOTE_LEN 100
207 static char *cur_net_remote[MAX_N_REMOTE];
208 static int cur_net_n_remote;
209
210 static char cur_machine_name[50];
211 static char cur_machine_cpu[50];
212 static char cur_machine_type[50];
213 static char cur_machine_subtype[50];
214 static char cur_machine_bootname[150];
215 static char cur_machine_bootarg[250];
216 static char cur_machine_slowsi[10];
217 static char cur_machine_prom_emulation[10];
218 static char cur_machine_use_x11[10];
219 static char cur_machine_x11_scaledown[10];
220 static char cur_machine_byte_order[20];
221 static char cur_machine_random_mem[10];
222 static char cur_machine_random_cpu[10];
223 static char cur_machine_force_netboot[10];
224 static char cur_machine_start_paused[10];
225 static char cur_machine_ncpus[10];
226 static char cur_machine_n_gfx_cards[10];
227 static char cur_machine_serial_nr[10];
228 static char cur_machine_emulated_hz[10];
229 static char cur_machine_memory[10];
230 #define MAX_N_LOAD 15
231 #define MAX_LOAD_LEN 2000
232 static char *cur_machine_load[MAX_N_LOAD];
233 static int cur_machine_n_load;
234 #define MAX_N_DISK 10
235 #define MAX_DISK_LEN 2000
236 static char *cur_machine_disk[MAX_N_DISK];
237 static int cur_machine_n_disk;
238 #define MAX_N_DEVICE 20
239 #define MAX_DEVICE_LEN 400
240 static char *cur_machine_device[MAX_N_DISK];
241 static int cur_machine_n_device;
242 #define MAX_N_X11_DISP 5
243 #define MAX_X11_DISP_LEN 1000
244 static char *cur_machine_x11_disp[MAX_N_X11_DISP];
245 static int cur_machine_n_x11_disp;
246
247 #define WORD(w,var) { \
248 if (strcmp(word, w) == 0) { \
249 read_one_word(f, word, maxbuflen, \
250 line, EXPECT_LEFT_PARENTHESIS); \
251 read_one_word(f, var, sizeof(var), \
252 line, EXPECT_WORD); \
253 read_one_word(f, word, maxbuflen, \
254 line, EXPECT_RIGHT_PARENTHESIS); \
255 return; \
256 } \
257 }
258
259 static void parse__machine(struct emul *e, FILE *f, int *in_emul, int *line,
260 int *parsestate, char *word, size_t maxbuflen);
261
262
263 /*
264 * parse_on_off():
265 *
266 * Returns 1 for "on", "yes", "enable", or "1".
267 * Returns 0 for "off", "no", "disable", or "0".
268 * Prints a fatal warning and exit()s for other values.
269 */
270 int parse_on_off(char *s)
271 {
272 if (strcasecmp(s, "on") == 0 || strcasecmp(s, "yes") == 0 ||
273 strcasecmp(s, "enable") == 0 || strcasecmp(s, "1") == 0)
274 return 1;
275 if (strcasecmp(s, "off") == 0 || strcasecmp(s, "no") == 0 ||
276 strcasecmp(s, "disable") == 0 || strcasecmp(s, "0") == 0)
277 return 0;
278
279 fprintf(stderr, "parse_on_off(): WARNING: unknown value '%s'\n", s);
280
281 return 0;
282 }
283
284
285 /*
286 * parse__emul():
287 *
288 * name, net, machine
289 */
290 static void parse__emul(struct emul *e, FILE *f, int *in_emul, int *line,
291 int *parsestate, char *word, size_t maxbuflen)
292 {
293 if (word[0] == ')') {
294 *parsestate = PARSESTATE_NONE;
295 return;
296 }
297
298 if (strcmp(word, "name") == 0) {
299 char tmp[200];
300 read_one_word(f, word, maxbuflen,
301 line, EXPECT_LEFT_PARENTHESIS);
302 read_one_word(f, tmp, sizeof(tmp), line, EXPECT_WORD);
303 read_one_word(f, word, maxbuflen,
304 line, EXPECT_RIGHT_PARENTHESIS);
305 if (e->name != NULL) {
306 free(e->name);
307 e->name = NULL;
308 }
309 e->name = strdup(tmp);
310 if (e->name == NULL) {
311 fprintf(stderr, "out of memory in parse__emul()\n");
312 exit(1);
313 }
314 debug("name: \"%s\"\n", e->name);
315 return;
316 }
317
318 if (strcmp(word, "net") == 0) {
319 *parsestate = PARSESTATE_NET;
320 read_one_word(f, word, maxbuflen,
321 line, EXPECT_LEFT_PARENTHESIS);
322
323 /* Default net: */
324 strlcpy(cur_net_ipv4net, NET_DEFAULT_IPV4_MASK,
325 sizeof(cur_net_ipv4net));
326 snprintf(cur_net_ipv4len, sizeof(cur_net_ipv4len), "%i",
327 NET_DEFAULT_IPV4_LEN);
328 strlcpy(cur_net_local_port, "", sizeof(cur_net_local_port));
329 cur_net_n_remote = 0;
330 return;
331 }
332
333 if (strcmp(word, "machine") == 0) {
334 *parsestate = PARSESTATE_MACHINE;
335 read_one_word(f, word, maxbuflen,
336 line, EXPECT_LEFT_PARENTHESIS);
337
338 /* A "zero state": */
339 cur_machine_name[0] = '\0';
340 cur_machine_cpu[0] = '\0';
341 cur_machine_type[0] = '\0';
342 cur_machine_subtype[0] = '\0';
343 cur_machine_bootname[0] = '\0';
344 cur_machine_bootarg[0] = '\0';
345 cur_machine_n_load = 0;
346 cur_machine_n_disk = 0;
347 cur_machine_n_device = 0;
348 cur_machine_n_x11_disp = 0;
349 cur_machine_slowsi[0] = '\0';
350 cur_machine_prom_emulation[0] = '\0';
351 cur_machine_use_x11[0] = '\0';
352 cur_machine_x11_scaledown[0] = '\0';
353 cur_machine_byte_order[0] = '\0';
354 cur_machine_random_mem[0] = '\0';
355 cur_machine_random_cpu[0] = '\0';
356 cur_machine_force_netboot[0] = '\0';
357 cur_machine_start_paused[0] = '\0';
358 cur_machine_ncpus[0] = '\0';
359 cur_machine_n_gfx_cards[0] = '\0';
360 cur_machine_serial_nr[0] = '\0';
361 cur_machine_emulated_hz[0] = '\0';
362 cur_machine_memory[0] = '\0';
363 return;
364 }
365
366 fatal("line %i: not expecting '%s' in an 'emul' section\n",
367 *line, word);
368 exit(1);
369 }
370
371
372 /*
373 * parse__net():
374 *
375 * Simple words: ipv4net, ipv4len, local_port
376 *
377 * Complex: add_remote
378 *
379 * TODO: more words? for example an option to disable the gateway? that would
380 * have to be implemented correctly in src/net.c first.
381 */
382 static void parse__net(struct emul *e, FILE *f, int *in_emul, int *line,
383 int *parsestate, char *word, size_t maxbuflen)
384 {
385 int i;
386
387 if (word[0] == ')') {
388 /* Finished with the 'net' section. Let's create the net: */
389 if (e->net != NULL) {
390 fatal("line %i: more than one net isn't really "
391 "supported yet\n", *line);
392 exit(1);
393 }
394
395 if (!cur_net_local_port[0])
396 strlcpy(cur_net_local_port, "0",
397 sizeof(cur_net_local_port));
398
399 e->net = net_init(e, NET_INIT_FLAG_GATEWAY,
400 cur_net_ipv4net, atoi(cur_net_ipv4len),
401 cur_net_remote, cur_net_n_remote,
402 atoi(cur_net_local_port), NULL);
403
404 if (e->net == NULL) {
405 fatal("line %i: fatal error: could not create"
406 " the net (?)\n", *line);
407 exit(1);
408 }
409
410 for (i=0; i<cur_net_n_remote; i++) {
411 free(cur_net_remote[i]);
412 cur_net_remote[i] = NULL;
413 }
414
415 *parsestate = PARSESTATE_EMUL;
416 return;
417 }
418
419 WORD("ipv4net", cur_net_ipv4net);
420 WORD("ipv4len", cur_net_ipv4len);
421 WORD("local_port", cur_net_local_port);
422
423 if (strcmp(word, "add_remote") == 0) {
424 read_one_word(f, word, maxbuflen,
425 line, EXPECT_LEFT_PARENTHESIS);
426 if (cur_net_n_remote >= MAX_N_REMOTE) {
427 fprintf(stderr, "too many remote networks\n");
428 exit(1);
429 }
430 cur_net_remote[cur_net_n_remote] = malloc(MAX_REMOTE_LEN);
431 if (cur_net_remote[cur_net_n_remote] == NULL) {
432 fprintf(stderr, "out of memory\n");
433 exit(1);
434 }
435 read_one_word(f, cur_net_remote[cur_net_n_remote],
436 MAX_REMOTE_LEN, line, EXPECT_WORD);
437 cur_net_n_remote ++;
438 read_one_word(f, word, maxbuflen, line,
439 EXPECT_RIGHT_PARENTHESIS);
440 return;
441 }
442
443 fatal("line %i: not expecting '%s' in a 'net' section\n", *line, word);
444 exit(1);
445 }
446
447
448 /*
449 * parse__machine():
450 */
451 static void parse__machine(struct emul *e, FILE *f, int *in_emul, int *line,
452 int *parsestate, char *word, size_t maxbuflen)
453 {
454 int r, i;
455
456 if (word[0] == ')') {
457 /* Finished with the 'machine' section. */
458 struct machine *m;
459
460 if (!cur_machine_name[0])
461 strlcpy(cur_machine_name, "no_name",
462 sizeof(cur_machine_name));
463
464 m = emul_add_machine(e, cur_machine_name);
465
466 r = machine_name_to_type(cur_machine_type, cur_machine_subtype,
467 &m->machine_type, &m->machine_subtype, &m->arch);
468 if (!r)
469 exit(1);
470
471 if (cur_machine_cpu[0])
472 m->cpu_name = strdup(cur_machine_cpu);
473
474 if (!cur_machine_use_x11[0])
475 strlcpy(cur_machine_use_x11, "no",
476 sizeof(cur_machine_use_x11));
477 m->use_x11 = parse_on_off(cur_machine_use_x11);
478
479 if (!cur_machine_slowsi[0])
480 strlcpy(cur_machine_slowsi, "no",
481 sizeof(cur_machine_slowsi));
482 m->slow_serial_interrupts_hack_for_linux =
483 parse_on_off(cur_machine_slowsi);
484
485 if (!cur_machine_prom_emulation[0])
486 strlcpy(cur_machine_prom_emulation, "yes",
487 sizeof(cur_machine_prom_emulation));
488 m->prom_emulation = parse_on_off(cur_machine_prom_emulation);
489
490 if (!cur_machine_random_mem[0])
491 strlcpy(cur_machine_random_mem, "no",
492 sizeof(cur_machine_random_mem));
493 m->random_mem_contents =
494 parse_on_off(cur_machine_random_mem);
495
496 if (!cur_machine_random_cpu[0])
497 strlcpy(cur_machine_random_cpu, "no",
498 sizeof(cur_machine_random_cpu));
499 m->use_random_bootstrap_cpu =
500 parse_on_off(cur_machine_random_cpu);
501
502 m->byte_order_override = NO_BYTE_ORDER_OVERRIDE;
503 if (cur_machine_byte_order[0]) {
504 if (strncasecmp(cur_machine_byte_order, "big", 3) == 0)
505 m->byte_order_override = EMUL_BIG_ENDIAN;
506 else if (strncasecmp(cur_machine_byte_order, "little",
507 6) == 0)
508 m->byte_order_override = EMUL_LITTLE_ENDIAN;
509 else {
510 fatal("Byte order must be big-endian or"
511 " little-endian\n");
512 exit(1);
513 }
514 }
515
516 if (!cur_machine_force_netboot[0])
517 strlcpy(cur_machine_force_netboot, "no",
518 sizeof(cur_machine_force_netboot));
519 m->force_netboot = parse_on_off(cur_machine_force_netboot);
520
521 if (!cur_machine_start_paused[0])
522 strlcpy(cur_machine_start_paused, "no",
523 sizeof(cur_machine_start_paused));
524 m->start_paused = parse_on_off(cur_machine_start_paused);
525
526 /* NOTE: Default nr of CPUs is 0: */
527 if (!cur_machine_ncpus[0])
528 strlcpy(cur_machine_ncpus, "0",
529 sizeof(cur_machine_ncpus));
530 m->ncpus = atoi(cur_machine_ncpus);
531
532 if (cur_machine_n_gfx_cards[0])
533 m->n_gfx_cards = atoi(cur_machine_n_gfx_cards);
534
535 if (cur_machine_serial_nr[0]) {
536 m->serial_nr = atoi(cur_machine_serial_nr);
537 e->next_serial_nr = m->serial_nr+1;
538 }
539
540 if (cur_machine_emulated_hz[0]) {
541 m->emulated_hz = mystrtoull(cur_machine_emulated_hz,
542 NULL, 0);
543 }
544
545 /* NOTE: Default nr of CPUs is 0: */
546 if (!cur_machine_memory[0])
547 strlcpy(cur_machine_memory, "0",
548 sizeof(cur_machine_memory));
549 m->physical_ram_in_mb = atoi(cur_machine_memory);
550
551 if (!cur_machine_x11_scaledown[0])
552 m->x11_scaledown = 1;
553 else {
554 m->x11_scaledown = atoi(cur_machine_x11_scaledown);
555 if (m->x11_scaledown < 0) {
556 m->x11_scaleup = 0 - m->x11_scaledown;
557 m->x11_scaledown = 1;
558 }
559 if (m->x11_scaledown < 1) {
560 fprintf(stderr, "Invalid scaledown value"
561 " (%i)\n", m->x11_scaledown);
562 exit(1);
563 }
564 }
565
566 for (i=0; i<cur_machine_n_disk; i++) {
567 diskimage_add(m, cur_machine_disk[i]);
568 free(cur_machine_disk[i]);
569 cur_machine_disk[i] = NULL;
570 }
571
572 m->boot_kernel_filename = strdup(cur_machine_bootname);
573
574 if (cur_machine_bootarg[0])
575 m->boot_string_argument = strdup(cur_machine_bootarg);
576
577 for (i=0; i<cur_machine_n_x11_disp; i++) {
578 m->x11_n_display_names ++;
579 m->x11_display_names = realloc(
580 m->x11_display_names, m->x11_n_display_names
581 * sizeof(char *));
582 if (m->x11_display_names == NULL) {
583 printf("out of memory\n");
584 exit(1);
585 }
586 m->x11_display_names[m->x11_n_display_names-1] =
587 strdup(cur_machine_x11_disp[i]);
588 if (m->x11_display_names
589 [m->x11_n_display_names-1] == NULL) {
590 printf("out of memory\n");
591 exit(1);
592 }
593 free(cur_machine_x11_disp[i]);
594 cur_machine_x11_disp[i] = NULL;
595 }
596
597 emul_machine_setup(m,
598 cur_machine_n_load, cur_machine_load,
599 cur_machine_n_device, cur_machine_device);
600
601 for (i=0; i<cur_machine_n_device; i++) {
602 free(cur_machine_device[i]);
603 cur_machine_device[i] = NULL;
604 }
605
606 for (i=0; i<cur_machine_n_load; i++) {
607 free(cur_machine_load[i]);
608 cur_machine_load[i] = NULL;
609 }
610
611 *parsestate = PARSESTATE_EMUL;
612 return;
613 }
614
615 WORD("name", cur_machine_name);
616 WORD("cpu", cur_machine_cpu);
617 WORD("type", cur_machine_type);
618 WORD("subtype", cur_machine_subtype);
619 WORD("bootname", cur_machine_bootname);
620 WORD("bootarg", cur_machine_bootarg);
621 WORD("slow_serial_interrupts_hack_for_linux", cur_machine_slowsi);
622 WORD("prom_emulation", cur_machine_prom_emulation);
623 WORD("use_x11", cur_machine_use_x11);
624 WORD("x11_scaledown", cur_machine_x11_scaledown);
625 WORD("byte_order", cur_machine_byte_order);
626 WORD("random_mem_contents", cur_machine_random_mem);
627 WORD("use_random_bootstrap_cpu", cur_machine_random_cpu);
628 WORD("force_netboot", cur_machine_force_netboot);
629 WORD("ncpus", cur_machine_ncpus);
630 WORD("serial_nr", cur_machine_serial_nr);
631 WORD("n_gfx_cards", cur_machine_n_gfx_cards);
632 WORD("emulated_hz", cur_machine_emulated_hz);
633 WORD("memory", cur_machine_memory);
634 WORD("start_paused", cur_machine_start_paused);
635
636 if (strcmp(word, "load") == 0) {
637 read_one_word(f, word, maxbuflen,
638 line, EXPECT_LEFT_PARENTHESIS);
639 if (cur_machine_n_load >= MAX_N_LOAD) {
640 fprintf(stderr, "too many loads\n");
641 exit(1);
642 }
643 cur_machine_load[cur_machine_n_load] = malloc(MAX_LOAD_LEN);
644 if (cur_machine_load[cur_machine_n_load] == NULL) {
645 fprintf(stderr, "out of memory\n");
646 exit(1);
647 }
648 read_one_word(f, cur_machine_load[cur_machine_n_load],
649 MAX_LOAD_LEN, line, EXPECT_WORD);
650 cur_machine_n_load ++;
651 read_one_word(f, word, maxbuflen,
652 line, EXPECT_RIGHT_PARENTHESIS);
653 return;
654 }
655
656 if (strcmp(word, "disk") == 0) {
657 read_one_word(f, word, maxbuflen,
658 line, EXPECT_LEFT_PARENTHESIS);
659 if (cur_machine_n_disk >= MAX_N_DISK) {
660 fprintf(stderr, "too many disks\n");
661 exit(1);
662 }
663 cur_machine_disk[cur_machine_n_disk] = malloc(MAX_DISK_LEN);
664 if (cur_machine_disk[cur_machine_n_disk] == NULL) {
665 fprintf(stderr, "out of memory\n");
666 exit(1);
667 }
668 read_one_word(f, cur_machine_disk[cur_machine_n_disk],
669 MAX_DISK_LEN, line, EXPECT_WORD);
670 cur_machine_n_disk ++;
671 read_one_word(f, word, maxbuflen,
672 line, EXPECT_RIGHT_PARENTHESIS);
673 return;
674 }
675
676 if (strcmp(word, "device") == 0) {
677 read_one_word(f, word, maxbuflen,
678 line, EXPECT_LEFT_PARENTHESIS);
679 if (cur_machine_n_device >= MAX_N_DEVICE) {
680 fprintf(stderr, "too many devices\n");
681 exit(1);
682 }
683 cur_machine_device[cur_machine_n_device] =
684 malloc(MAX_DEVICE_LEN);
685 if (cur_machine_device[cur_machine_n_device] == NULL) {
686 fprintf(stderr, "out of memory\n");
687 exit(1);
688 }
689 read_one_word(f, cur_machine_device[cur_machine_n_device],
690 MAX_DEVICE_LEN, line, EXPECT_WORD);
691 cur_machine_n_device ++;
692 read_one_word(f, word, maxbuflen,
693 line, EXPECT_RIGHT_PARENTHESIS);
694 return;
695 }
696
697 if (strcmp(word, "add_x11_display") == 0) {
698 read_one_word(f, word, maxbuflen,
699 line, EXPECT_LEFT_PARENTHESIS);
700 if (cur_machine_n_x11_disp >= MAX_N_X11_DISP) {
701 fprintf(stderr, "too many x11 displays\n");
702 exit(1);
703 }
704 cur_machine_x11_disp[cur_machine_n_x11_disp] =
705 malloc(MAX_X11_DISP_LEN);
706 if (cur_machine_x11_disp[cur_machine_n_x11_disp] == NULL) {
707 fprintf(stderr, "out of memory\n");
708 exit(1);
709 }
710 read_one_word(f, cur_machine_x11_disp[cur_machine_n_x11_disp],
711 MAX_X11_DISP_LEN, line, EXPECT_WORD);
712 cur_machine_n_x11_disp ++;
713 read_one_word(f, word, maxbuflen,
714 line, EXPECT_RIGHT_PARENTHESIS);
715 return;
716 }
717
718 fatal("line %i: not expecting '%s' in a 'machine' section\n",
719 *line, word);
720 exit(1);
721 }
722
723
724 /*
725 * emul_parse_config():
726 *
727 * Set up an emulation by parsing a config file.
728 */
729 void emul_parse_config(struct emul *e, char *fname)
730 {
731 FILE *f = fopen(fname, "r");
732 char word[MAX_WORD_LEN];
733 int in_emul = 0;
734 int line = 1;
735 int parsestate = PARSESTATE_EMUL;
736
737 /* debug("emul_parse_config()\n"); */
738 if (f == NULL) {
739 perror(fname);
740 exit(1);
741 }
742
743 while (!feof(f)) {
744 read_one_word(f, word, sizeof(word), &line,
745 EXPECT_WORD | EXPECT_RIGHT_PARENTHESIS);
746 if (!word[0])
747 break;
748
749 /* debug("word = '%s'\n", word); */
750
751 switch (parsestate) {
752 case PARSESTATE_EMUL:
753 parse__emul(e, f, &in_emul, &line, &parsestate,
754 word, sizeof(word));
755 break;
756 case PARSESTATE_NET:
757 parse__net(e, f, &in_emul, &line, &parsestate,
758 word, sizeof(word));
759 break;
760 case PARSESTATE_MACHINE:
761 parse__machine(e, f, &in_emul, &line, &parsestate,
762 word, sizeof(word));
763 break;
764 case PARSESTATE_NONE:
765 break;
766 default:
767 fatal("INTERNAL ERROR in emul_parse.c ("
768 "parsestate %i is not imlemented yet?)\n",
769 parsestate);
770 exit(1);
771 }
772 }
773
774 if (parenthesis_level != 0) {
775 fatal("EOF but not enough right parentheses?\n");
776 exit(1);
777 }
778
779 fclose(f);
780 }
781

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