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root/cebix/SheepShaver/src/Unix/main_unix.cpp
Revision: 1.24
Committed: 2004-01-07T18:24:45Z (20 years, 5 months ago) by gbeauche
Branch: MAIN
Changes since 1.23: +3 -0 lines
Log Message:
Also cache native routine descriptor instead of recreating them at each
invokation to ExecuteNative().

File Contents

# Content
1 /*
2 * main_unix.cpp - Emulation core, Unix implementation
3 *
4 * SheepShaver (C) 1997-2002 Christian Bauer and Marc Hellwig
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 */
20
21 /*
22 * NOTES:
23 *
24 * See main_beos.cpp for a description of the three operating modes.
25 *
26 * In addition to that, we have to handle the fact that the MacOS ABI
27 * is slightly different from the SysV ABI used by Linux:
28 * - Stack frames are different (e.g. LR is stored in 8(r1) under
29 * MacOS, but in 4(r1) under Linux)
30 * - There is no TOC under Linux; r2 is free for the user
31 * - r13 is used as a small data pointer under Linux (but appearently
32 * it is not used this way? To be sure, we specify -msdata=none
33 * in the Makefile)
34 * - As there is no TOC, there are also no TVECTs under Linux;
35 * function pointers point directly to the function code
36 * The Execute*() functions have to account for this. Additionally, we
37 * cannot simply call MacOS functions by getting their TVECT and jumping
38 * to it. Such calls are done via the call_macos*() functions in
39 * asm_linux.S that create a MacOS stack frame, load the TOC pointer
40 * and put the arguments into the right registers.
41 *
42 * As on the BeOS, we have to specify an alternate signal stack because
43 * interrupts (and, under Linux, Low Memory accesses) may occur when r1
44 * is pointing to the Kernel Data or to Low Memory. There is one
45 * problem, however, due to the alternate signal stack being global to
46 * all signal handlers. Consider the following scenario:
47 * - The main thread is executing some native PPC MacOS code in
48 * MODE_NATIVE, running on the MacOS stack (somewhere in the Mac RAM).
49 * - A SIGUSR2 interrupt occurs. The kernel switches to the signal
50 * stack and starts executing the SIGUSR2 signal handler.
51 * - The signal handler sees the MODE_NATIVE and calls ppc_interrupt()
52 * to handle a native interrupt.
53 * - ppc_interrupt() sets r1 to point to the Kernel Data and jumps to
54 * the nanokernel.
55 * - The nanokernel accesses a Low Memory global (most likely one of
56 * the XLMs), a SIGSEGV occurs.
57 * - The kernel sees that r1 does not point to the signal stack and
58 * switches to the signal stack again, thus overwriting the data that
59 * the SIGUSR2 handler put there.
60 * The same problem arises when calling ExecutePPC() inside the MODE_EMUL_OP
61 * interrupt handler.
62 *
63 * The solution is to set the signal stack to a second, "extra" stack
64 * inside the SIGUSR2 handler before entering the Nanokernel or calling
65 * ExecutePPC (or any function that might cause a mode switch). The signal
66 * stack is restored before exiting the SIGUSR2 handler.
67 *
68 * TODO:
69 * check if SIGSEGV handler works for all registers (including FP!)
70 */
71
72 #include <unistd.h>
73 #include <fcntl.h>
74 #include <time.h>
75 #include <errno.h>
76 #include <stdio.h>
77 #include <stdlib.h>
78 #include <string.h>
79 #include <pthread.h>
80 #include <sys/mman.h>
81 #include <sys/ipc.h>
82 #include <sys/shm.h>
83 #include <signal.h>
84
85 #include "sysdeps.h"
86 #include "main.h"
87 #include "version.h"
88 #include "prefs.h"
89 #include "prefs_editor.h"
90 #include "cpu_emulation.h"
91 #include "emul_op.h"
92 #include "xlowmem.h"
93 #include "xpram.h"
94 #include "timer.h"
95 #include "adb.h"
96 #include "sony.h"
97 #include "disk.h"
98 #include "cdrom.h"
99 #include "scsi.h"
100 #include "video.h"
101 #include "audio.h"
102 #include "ether.h"
103 #include "serial.h"
104 #include "clip.h"
105 #include "extfs.h"
106 #include "sys.h"
107 #include "macos_util.h"
108 #include "rom_patches.h"
109 #include "user_strings.h"
110 #include "vm_alloc.h"
111 #include "sigsegv.h"
112 #include "thunks.h"
113
114 #define DEBUG 0
115 #include "debug.h"
116
117
118 #include <X11/Xlib.h>
119
120 #ifdef ENABLE_GTK
121 #include <gtk/gtk.h>
122 #endif
123
124 #ifdef ENABLE_XF86_DGA
125 #include <X11/Xlib.h>
126 #include <X11/Xutil.h>
127 #include <X11/extensions/xf86dga.h>
128 #endif
129
130 #ifdef ENABLE_MON
131 #include "mon.h"
132 #endif
133
134
135 // Enable emulation of unaligned lmw/stmw?
136 #define EMULATE_UNALIGNED_LOADSTORE_MULTIPLE 1
137
138 // Enable Execute68k() safety checks?
139 #define SAFE_EXEC_68K 0
140
141 // Interrupts in EMUL_OP mode?
142 #define INTERRUPTS_IN_EMUL_OP_MODE 1
143
144 // Interrupts in native mode?
145 #define INTERRUPTS_IN_NATIVE_MODE 1
146
147
148 // Constants
149 const char ROM_FILE_NAME[] = "ROM";
150 const char ROM_FILE_NAME2[] = "Mac OS ROM";
151
152 const uintptr RAM_BASE = 0x20000000; // Base address of RAM
153 const uint32 SIG_STACK_SIZE = 0x10000; // Size of signal stack
154
155
156 #if !EMULATED_PPC
157 // Structure in which registers are saved in a signal handler;
158 // sigcontext->regs points to it
159 // (see arch/ppc/kernel/signal.c)
160 typedef struct {
161 uint32 u[4];
162 } __attribute((aligned(16))) vector128;
163 #include <linux/elf.h>
164
165 struct sigregs {
166 elf_gregset_t gp_regs; // Identical to pt_regs
167 double fp_regs[ELF_NFPREG]; // f0..f31 and fpsrc
168 //more (uninteresting) stuff following here
169 };
170 #endif
171
172
173 // Global variables (exported)
174 #if !EMULATED_PPC
175 void *TOC; // Small data pointer (r13)
176 #endif
177 uint32 RAMBase; // Base address of Mac RAM
178 uint32 RAMSize; // Size of Mac RAM
179 uint32 KernelDataAddr; // Address of Kernel Data
180 uint32 BootGlobsAddr; // Address of BootGlobs structure at top of Mac RAM
181 uint32 PVR; // Theoretical PVR
182 int64 CPUClockSpeed; // Processor clock speed (Hz)
183 int64 BusClockSpeed; // Bus clock speed (Hz)
184
185
186 // Global variables
187 char *x_display_name = NULL; // X11 display name
188 Display *x_display = NULL; // X11 display handle
189 #ifdef X11_LOCK_TYPE
190 X11_LOCK_TYPE x_display_lock = X11_LOCK_INIT; // X11 display lock
191 #endif
192
193 static int zero_fd = 0; // FD of /dev/zero
194 static bool lm_area_mapped = false; // Flag: Low Memory area mmap()ped
195 static int kernel_area = -1; // SHM ID of Kernel Data area
196 static bool rom_area_mapped = false; // Flag: Mac ROM mmap()ped
197 static bool ram_area_mapped = false; // Flag: Mac RAM mmap()ped
198 static KernelData *kernel_data; // Pointer to Kernel Data
199 static EmulatorData *emulator_data;
200
201 static uint8 last_xpram[XPRAM_SIZE]; // Buffer for monitoring XPRAM changes
202
203 static bool nvram_thread_active = false; // Flag: NVRAM watchdog installed
204 static pthread_t nvram_thread; // NVRAM watchdog
205 static bool tick_thread_active = false; // Flag: MacOS thread installed
206 static pthread_t tick_thread; // 60Hz thread
207 static pthread_t emul_thread; // MacOS thread
208
209 static bool ready_for_signals = false; // Handler installed, signals can be sent
210 static int64 num_segv = 0; // Number of handled SEGV signals
211
212 static struct sigaction sigusr2_action; // Interrupt signal (of emulator thread)
213 #if EMULATED_PPC
214 static uintptr sig_stack = 0; // Stack for PowerPC interrupt routine
215 #else
216 static struct sigaction sigsegv_action; // Data access exception signal (of emulator thread)
217 static struct sigaction sigill_action; // Illegal instruction signal (of emulator thread)
218 static void *sig_stack = NULL; // Stack for signal handlers
219 static void *extra_stack = NULL; // Stack for SIGSEGV inside interrupt handler
220 static bool emul_thread_fatal = false; // Flag: MacOS thread crashed, tick thread shall dump debug output
221 static sigregs sigsegv_regs; // Register dump when crashed
222 static const char *crash_reason = NULL; // Reason of the crash (SIGSEGV, SIGBUS, SIGILL)
223 #endif
224
225 uintptr SheepMem::zero_page = 0; // Address of ro page filled in with zeros
226 uintptr SheepMem::base = 0x60000000; // Address of SheepShaver data
227 uintptr SheepMem::top = 0; // Top of SheepShaver data (stack like storage)
228
229
230 // Prototypes
231 static void Quit(void);
232 static void *emul_func(void *arg);
233 static void *nvram_func(void *arg);
234 static void *tick_func(void *arg);
235 #if EMULATED_PPC
236 static void sigusr2_handler(int sig);
237 extern void emul_ppc(uint32 start);
238 extern void init_emul_ppc(void);
239 extern void exit_emul_ppc(void);
240 #else
241 static void sigusr2_handler(int sig, sigcontext_struct *sc);
242 static void sigsegv_handler(int sig, sigcontext_struct *sc);
243 static void sigill_handler(int sig, sigcontext_struct *sc);
244 #endif
245
246
247 // From asm_linux.S
248 #if !EMULATED_PPC
249 extern "C" void *get_toc(void);
250 extern "C" void *get_sp(void);
251 extern "C" void flush_icache_range(void *start, void *end);
252 extern "C" void jump_to_rom(uint32 entry, uint32 context);
253 extern "C" void quit_emulator(void);
254 extern "C" void execute_68k(uint32 pc, M68kRegisters *r);
255 extern "C" void ppc_interrupt(uint32 entry, uint32 kernel_data);
256 extern "C" int atomic_add(int *var, int v);
257 extern "C" int atomic_and(int *var, int v);
258 extern "C" int atomic_or(int *var, int v);
259 extern void paranoia_check(void);
260 #endif
261
262
263 #if EMULATED_PPC
264 /*
265 * Return signal stack base
266 */
267
268 uintptr SignalStackBase(void)
269 {
270 return sig_stack + SIG_STACK_SIZE;
271 }
272
273
274 /*
275 * Atomic operations
276 */
277
278 #if HAVE_SPINLOCKS
279 static spinlock_t atomic_ops_lock = SPIN_LOCK_UNLOCKED;
280 #else
281 #define spin_lock(LOCK)
282 #define spin_unlock(LOCK)
283 #endif
284
285 int atomic_add(int *var, int v)
286 {
287 spin_lock(&atomic_ops_lock);
288 int ret = *var;
289 *var += v;
290 spin_unlock(&atomic_ops_lock);
291 return ret;
292 }
293
294 int atomic_and(int *var, int v)
295 {
296 spin_lock(&atomic_ops_lock);
297 int ret = *var;
298 *var &= v;
299 spin_unlock(&atomic_ops_lock);
300 return ret;
301 }
302
303 int atomic_or(int *var, int v)
304 {
305 spin_lock(&atomic_ops_lock);
306 int ret = *var;
307 *var |= v;
308 spin_unlock(&atomic_ops_lock);
309 return ret;
310 }
311 #endif
312
313
314 /*
315 * Main program
316 */
317
318 static void usage(const char *prg_name)
319 {
320 printf("Usage: %s [OPTION...]\n", prg_name);
321 printf("\nUnix options:\n");
322 printf(" --display STRING\n X display to use\n");
323 PrefsPrintUsage();
324 exit(0);
325 }
326
327 int main(int argc, char **argv)
328 {
329 char str[256];
330 uint32 *boot_globs;
331 int16 i16;
332 int rom_fd;
333 FILE *proc_file;
334 const char *rom_path;
335 uint32 rom_size, actual;
336 uint8 *rom_tmp;
337 time_t now, expire;
338
339 // Initialize variables
340 RAMBase = 0;
341 tzset();
342
343 // Print some info
344 printf(GetString(STR_ABOUT_TEXT1), VERSION_MAJOR, VERSION_MINOR);
345 printf(" %s\n", GetString(STR_ABOUT_TEXT2));
346
347 #if !EMULATED_PPC
348 // Get TOC pointer
349 TOC = get_toc();
350 #endif
351
352 #ifdef ENABLE_GTK
353 // Init GTK
354 gtk_set_locale();
355 gtk_init(&argc, &argv);
356 #endif
357
358 // Read preferences
359 PrefsInit(argc, argv);
360
361 // Parse command line arguments
362 for (int i=1; i<argc; i++) {
363 if (strcmp(argv[i], "--help") == 0) {
364 usage(argv[0]);
365 } else if (strcmp(argv[i], "--display") == 0) {
366 i++;
367 if (i < argc)
368 x_display_name = strdup(argv[i]);
369 } else if (argv[i][0] == '-') {
370 fprintf(stderr, "Unrecognized option '%s'\n", argv[i]);
371 usage(argv[0]);
372 }
373 }
374
375 // Open display
376 x_display = XOpenDisplay(x_display_name);
377 if (x_display == NULL) {
378 char str[256];
379 sprintf(str, GetString(STR_NO_XSERVER_ERR), XDisplayName(x_display_name));
380 ErrorAlert(str);
381 goto quit;
382 }
383
384 #if defined(ENABLE_XF86_DGA) && !defined(ENABLE_MON)
385 // Fork out, so we can return from fullscreen mode when things get ugly
386 XF86DGAForkApp(DefaultScreen(x_display));
387 #endif
388
389 #ifdef ENABLE_MON
390 // Initialize mon
391 mon_init();
392 #endif
393
394 // Get system info
395 PVR = 0x00040000; // Default: 604
396 CPUClockSpeed = 100000000; // Default: 100MHz
397 BusClockSpeed = 100000000; // Default: 100MHz
398 #if !EMULATED_PPC
399 proc_file = fopen("/proc/cpuinfo", "r");
400 if (proc_file) {
401 char line[256];
402 while(fgets(line, 255, proc_file)) {
403 // Read line
404 int len = strlen(line);
405 if (len == 0)
406 continue;
407 line[len-1] = 0;
408
409 // Parse line
410 int i;
411 char value[256];
412 if (sscanf(line, "cpu : %s", value) == 1) {
413 if (strcmp(value, "601") == 0)
414 PVR = 0x00010000;
415 else if (strcmp(value, "603") == 0)
416 PVR = 0x00030000;
417 else if (strcmp(value, "604") == 0)
418 PVR = 0x00040000;
419 else if (strcmp(value, "603e") == 0)
420 PVR = 0x00060000;
421 else if (strcmp(value, "603ev") == 0)
422 PVR = 0x00070000;
423 else if (strcmp(value, "604e") == 0)
424 PVR = 0x00090000;
425 else if (strcmp(value, "604ev5") == 0)
426 PVR = 0x000a0000;
427 else if (strcmp(value, "750") == 0)
428 PVR = 0x00080000;
429 else if (strcmp(value, "821") == 0)
430 PVR = 0x00320000;
431 else if (strcmp(value, "860") == 0)
432 PVR = 0x00500000;
433 else
434 printf("WARNING: Unknown CPU type '%s', assuming 604\n", value);
435 }
436 if (sscanf(line, "clock : %dMHz", &i) == 1)
437 CPUClockSpeed = BusClockSpeed = i * 1000000;
438 }
439 fclose(proc_file);
440 } else {
441 sprintf(str, GetString(STR_PROC_CPUINFO_WARN), strerror(errno));
442 WarningAlert(str);
443 }
444 #endif
445 D(bug("PVR: %08x (assumed)\n", PVR));
446
447 // Init system routines
448 SysInit();
449
450 // Show preferences editor
451 if (!PrefsFindBool("nogui"))
452 if (!PrefsEditor())
453 goto quit;
454
455 #if !EMULATED_PPC
456 // Check some things
457 paranoia_check();
458 #endif
459
460 // Open /dev/zero
461 zero_fd = open("/dev/zero", O_RDWR);
462 if (zero_fd < 0) {
463 sprintf(str, GetString(STR_NO_DEV_ZERO_ERR), strerror(errno));
464 ErrorAlert(str);
465 goto quit;
466 }
467
468 // Create Low Memory area (0x0000..0x3000)
469 if (vm_acquire_fixed((char *)0, 0x3000) < 0) {
470 sprintf(str, GetString(STR_LOW_MEM_MMAP_ERR), strerror(errno));
471 ErrorAlert(str);
472 goto quit;
473 }
474 lm_area_mapped = true;
475
476 // Create areas for Kernel Data
477 kernel_area = shmget(IPC_PRIVATE, KERNEL_AREA_SIZE, 0600);
478 if (kernel_area == -1) {
479 sprintf(str, GetString(STR_KD_SHMGET_ERR), strerror(errno));
480 ErrorAlert(str);
481 goto quit;
482 }
483 if (shmat(kernel_area, (void *)KERNEL_DATA_BASE, 0) < 0) {
484 sprintf(str, GetString(STR_KD_SHMAT_ERR), strerror(errno));
485 ErrorAlert(str);
486 goto quit;
487 }
488 if (shmat(kernel_area, (void *)KERNEL_DATA2_BASE, 0) < 0) {
489 sprintf(str, GetString(STR_KD2_SHMAT_ERR), strerror(errno));
490 ErrorAlert(str);
491 goto quit;
492 }
493 kernel_data = (KernelData *)KERNEL_DATA_BASE;
494 emulator_data = &kernel_data->ed;
495 KernelDataAddr = KERNEL_DATA_BASE;
496 D(bug("Kernel Data at %p, Emulator Data at %p\n", kernel_data, emulator_data));
497
498 // Create area for SheepShaver data
499 if (!SheepMem::Init()) {
500 sprintf(str, GetString(STR_SHEEP_MEM_MMAP_ERR), strerror(errno));
501 ErrorAlert(str);
502 goto quit;
503 }
504
505 // Create area for Mac ROM
506 if (vm_acquire_fixed((char *)ROM_BASE, ROM_AREA_SIZE) < 0) {
507 sprintf(str, GetString(STR_ROM_MMAP_ERR), strerror(errno));
508 ErrorAlert(str);
509 goto quit;
510 }
511 #if !EMULATED_PPC || defined(__powerpc__)
512 if (vm_protect((char *)ROM_BASE, ROM_AREA_SIZE, VM_PAGE_READ | VM_PAGE_WRITE | VM_PAGE_EXECUTE) < 0) {
513 sprintf(str, GetString(STR_ROM_MMAP_ERR), strerror(errno));
514 ErrorAlert(str);
515 goto quit;
516 }
517 #endif
518 rom_area_mapped = true;
519 D(bug("ROM area at %08x\n", ROM_BASE));
520
521 // Create area for Mac RAM
522 RAMSize = PrefsFindInt32("ramsize");
523 if (RAMSize < 8*1024*1024) {
524 WarningAlert(GetString(STR_SMALL_RAM_WARN));
525 RAMSize = 8*1024*1024;
526 }
527
528 if (vm_acquire_fixed((char *)RAM_BASE, RAMSize) < 0) {
529 sprintf(str, GetString(STR_RAM_MMAP_ERR), strerror(errno));
530 ErrorAlert(str);
531 goto quit;
532 }
533 #if !EMULATED_PPC
534 if (vm_protect((char *)RAM_BASE, RAMSize, VM_PAGE_READ | VM_PAGE_WRITE | VM_PAGE_EXECUTE) < 0) {
535 sprintf(str, GetString(STR_RAM_MMAP_ERR), strerror(errno));
536 ErrorAlert(str);
537 goto quit;
538 }
539 #endif
540 RAMBase = RAM_BASE;
541 ram_area_mapped = true;
542 D(bug("RAM area at %08x\n", RAMBase));
543
544 if (RAMBase > ROM_BASE) {
545 ErrorAlert(GetString(STR_RAM_HIGHER_THAN_ROM_ERR));
546 goto quit;
547 }
548
549 // Load Mac ROM
550 rom_path = PrefsFindString("rom");
551 rom_fd = open(rom_path ? rom_path : ROM_FILE_NAME, O_RDONLY);
552 if (rom_fd < 0) {
553 rom_fd = open(rom_path ? rom_path : ROM_FILE_NAME2, O_RDONLY);
554 if (rom_fd < 0) {
555 ErrorAlert(GetString(STR_NO_ROM_FILE_ERR));
556 goto quit;
557 }
558 }
559 printf(GetString(STR_READING_ROM_FILE));
560 rom_size = lseek(rom_fd, 0, SEEK_END);
561 lseek(rom_fd, 0, SEEK_SET);
562 rom_tmp = new uint8[ROM_SIZE];
563 actual = read(rom_fd, (void *)rom_tmp, ROM_SIZE);
564 close(rom_fd);
565
566 // Decode Mac ROM
567 if (!DecodeROM(rom_tmp, actual)) {
568 if (rom_size != 4*1024*1024) {
569 ErrorAlert(GetString(STR_ROM_SIZE_ERR));
570 goto quit;
571 } else {
572 ErrorAlert(GetString(STR_ROM_FILE_READ_ERR));
573 goto quit;
574 }
575 }
576 delete[] rom_tmp;
577
578 // Load NVRAM
579 XPRAMInit();
580
581 // Set boot volume
582 i16 = PrefsFindInt32("bootdrive");
583 XPRAM[0x1378] = i16 >> 8;
584 XPRAM[0x1379] = i16 & 0xff;
585 i16 = PrefsFindInt32("bootdriver");
586 XPRAM[0x137a] = i16 >> 8;
587 XPRAM[0x137b] = i16 & 0xff;
588
589 // Create BootGlobs at top of Mac memory
590 memset((void *)(RAMBase + RAMSize - 4096), 0, 4096);
591 BootGlobsAddr = RAMBase + RAMSize - 0x1c;
592 boot_globs = (uint32 *)BootGlobsAddr;
593 boot_globs[-5] = htonl(RAMBase + RAMSize); // MemTop
594 boot_globs[0] = htonl(RAMBase); // First RAM bank
595 boot_globs[1] = htonl(RAMSize);
596 boot_globs[2] = htonl((uint32)-1); // End of bank table
597
598 // Init thunks
599 if (!ThunksInit())
600 goto quit;
601
602 // Init drivers
603 SonyInit();
604 DiskInit();
605 CDROMInit();
606 SCSIInit();
607
608 // Init external file system
609 ExtFSInit();
610
611 // Init ADB
612 ADBInit();
613
614 // Init audio
615 AudioInit();
616
617 // Init network
618 EtherInit();
619
620 // Init serial ports
621 SerialInit();
622
623 // Init Time Manager
624 TimerInit();
625
626 // Init clipboard
627 ClipInit();
628
629 // Init video
630 if (!VideoInit())
631 goto quit;
632
633 // Install ROM patches
634 if (!PatchROM()) {
635 ErrorAlert(GetString(STR_UNSUPPORTED_ROM_TYPE_ERR));
636 goto quit;
637 }
638
639 // Clear caches (as we loaded and patched code) and write protect ROM
640 #if !EMULATED_PPC
641 MakeExecutable(0, (void *)ROM_BASE, ROM_AREA_SIZE);
642 #endif
643 vm_protect((char *)ROM_BASE, ROM_AREA_SIZE, VM_PAGE_READ | VM_PAGE_EXECUTE);
644
645 // Initialize Kernel Data
646 memset(kernel_data, 0, sizeof(KernelData));
647 if (ROMType == ROMTYPE_NEWWORLD) {
648 uintptr of_dev_tree = SheepMem::Reserve(4 * sizeof(uint32));
649 memset((void *)of_dev_tree, 0, 4 * sizeof(uint32));
650 uintptr vector_lookup_tbl = SheepMem::Reserve(128);
651 uintptr vector_mask_tbl = SheepMem::Reserve(64);
652 memset((uint8 *)kernel_data + 0xb80, 0x3d, 0x80);
653 memset((void *)vector_lookup_tbl, 0, 128);
654 memset((void *)vector_mask_tbl, 0, 64);
655 kernel_data->v[0xb80 >> 2] = htonl(ROM_BASE);
656 kernel_data->v[0xb84 >> 2] = htonl(of_dev_tree); // OF device tree base
657 kernel_data->v[0xb90 >> 2] = htonl(vector_lookup_tbl);
658 kernel_data->v[0xb94 >> 2] = htonl(vector_mask_tbl);
659 kernel_data->v[0xb98 >> 2] = htonl(ROM_BASE); // OpenPIC base
660 kernel_data->v[0xbb0 >> 2] = htonl(0); // ADB base
661 kernel_data->v[0xc20 >> 2] = htonl(RAMSize);
662 kernel_data->v[0xc24 >> 2] = htonl(RAMSize);
663 kernel_data->v[0xc30 >> 2] = htonl(RAMSize);
664 kernel_data->v[0xc34 >> 2] = htonl(RAMSize);
665 kernel_data->v[0xc38 >> 2] = htonl(0x00010020);
666 kernel_data->v[0xc3c >> 2] = htonl(0x00200001);
667 kernel_data->v[0xc40 >> 2] = htonl(0x00010000);
668 kernel_data->v[0xc50 >> 2] = htonl(RAMBase);
669 kernel_data->v[0xc54 >> 2] = htonl(RAMSize);
670 kernel_data->v[0xf60 >> 2] = htonl(PVR);
671 kernel_data->v[0xf64 >> 2] = htonl(CPUClockSpeed);
672 kernel_data->v[0xf68 >> 2] = htonl(BusClockSpeed);
673 kernel_data->v[0xf6c >> 2] = htonl(CPUClockSpeed);
674 } else {
675 kernel_data->v[0xc80 >> 2] = htonl(RAMSize);
676 kernel_data->v[0xc84 >> 2] = htonl(RAMSize);
677 kernel_data->v[0xc90 >> 2] = htonl(RAMSize);
678 kernel_data->v[0xc94 >> 2] = htonl(RAMSize);
679 kernel_data->v[0xc98 >> 2] = htonl(0x00010020);
680 kernel_data->v[0xc9c >> 2] = htonl(0x00200001);
681 kernel_data->v[0xca0 >> 2] = htonl(0x00010000);
682 kernel_data->v[0xcb0 >> 2] = htonl(RAMBase);
683 kernel_data->v[0xcb4 >> 2] = htonl(RAMSize);
684 kernel_data->v[0xf80 >> 2] = htonl(PVR);
685 kernel_data->v[0xf84 >> 2] = htonl(CPUClockSpeed);
686 kernel_data->v[0xf88 >> 2] = htonl(BusClockSpeed);
687 kernel_data->v[0xf8c >> 2] = htonl(CPUClockSpeed);
688 }
689
690 // Initialize extra low memory
691 D(bug("Initializing Low Memory...\n"));
692 memset(NULL, 0, 0x3000);
693 WriteMacInt32(XLM_SIGNATURE, FOURCC('B','a','a','h')); // Signature to detect SheepShaver
694 WriteMacInt32(XLM_KERNEL_DATA, KernelDataAddr); // For trap replacement routines
695 WriteMacInt32(XLM_PVR, PVR); // Theoretical PVR
696 WriteMacInt32(XLM_BUS_CLOCK, BusClockSpeed); // For DriverServicesLib patch
697 WriteMacInt16(XLM_EXEC_RETURN_OPCODE, M68K_EXEC_RETURN); // For Execute68k() (RTS from the executed 68k code will jump here and end 68k mode)
698 WriteMacInt32(XLM_ZERO_PAGE, SheepMem::ZeroPage()); // Pointer to read-only page with all bits set to 0
699 #if !EMULATED_PPC
700 WriteMacInt32(XLM_TOC, (uint32)TOC); // TOC pointer of emulator
701 #endif
702 WriteMacInt32(XLM_ETHER_INIT, NativeFunction(NATIVE_ETHER_INIT)); // DLPI ethernet driver functions
703 WriteMacInt32(XLM_ETHER_TERM, NativeFunction(NATIVE_ETHER_TERM));
704 WriteMacInt32(XLM_ETHER_OPEN, NativeFunction(NATIVE_ETHER_OPEN));
705 WriteMacInt32(XLM_ETHER_CLOSE, NativeFunction(NATIVE_ETHER_CLOSE));
706 WriteMacInt32(XLM_ETHER_WPUT, NativeFunction(NATIVE_ETHER_WPUT));
707 WriteMacInt32(XLM_ETHER_RSRV, NativeFunction(NATIVE_ETHER_RSRV));
708 WriteMacInt32(XLM_VIDEO_DOIO, NativeFunction(NATIVE_VIDEO_DO_DRIVER_IO));
709 D(bug("Low Memory initialized\n"));
710
711 // Start 60Hz thread
712 tick_thread_active = (pthread_create(&tick_thread, NULL, tick_func, NULL) == 0);
713 D(bug("Tick thread installed (%ld)\n", tick_thread));
714
715 // Start NVRAM watchdog thread
716 memcpy(last_xpram, XPRAM, XPRAM_SIZE);
717 nvram_thread_active = (pthread_create(&nvram_thread, NULL, nvram_func, NULL) == 0);
718 D(bug("NVRAM thread installed (%ld)\n", nvram_thread));
719
720 #if !EMULATED_PPC
721 // Create and install stacks for signal handlers
722 sig_stack = malloc(SIG_STACK_SIZE);
723 D(bug("Signal stack at %p\n", sig_stack));
724 if (sig_stack == NULL) {
725 ErrorAlert(GetString(STR_NOT_ENOUGH_MEMORY_ERR));
726 goto quit;
727 }
728 extra_stack = malloc(SIG_STACK_SIZE);
729 D(bug("Extra stack at %p\n", extra_stack));
730 if (extra_stack == NULL) {
731 ErrorAlert(GetString(STR_NOT_ENOUGH_MEMORY_ERR));
732 goto quit;
733 }
734 struct sigaltstack new_stack;
735 new_stack.ss_sp = sig_stack;
736 new_stack.ss_flags = 0;
737 new_stack.ss_size = SIG_STACK_SIZE;
738 if (sigaltstack(&new_stack, NULL) < 0) {
739 sprintf(str, GetString(STR_SIGALTSTACK_ERR), strerror(errno));
740 ErrorAlert(str);
741 goto quit;
742 }
743 #endif
744
745 #if !EMULATED_PPC
746 // Install SIGSEGV and SIGBUS handlers
747 sigemptyset(&sigsegv_action.sa_mask); // Block interrupts during SEGV handling
748 sigaddset(&sigsegv_action.sa_mask, SIGUSR2);
749 sigsegv_action.sa_handler = (__sighandler_t)sigsegv_handler;
750 sigsegv_action.sa_flags = SA_ONSTACK;
751 sigsegv_action.sa_restorer = NULL;
752 if (sigaction(SIGSEGV, &sigsegv_action, NULL) < 0) {
753 sprintf(str, GetString(STR_SIGSEGV_INSTALL_ERR), strerror(errno));
754 ErrorAlert(str);
755 goto quit;
756 }
757 if (sigaction(SIGBUS, &sigsegv_action, NULL) < 0) {
758 sprintf(str, GetString(STR_SIGSEGV_INSTALL_ERR), strerror(errno));
759 ErrorAlert(str);
760 goto quit;
761 }
762
763 // Install SIGILL handler
764 sigemptyset(&sigill_action.sa_mask); // Block interrupts during ILL handling
765 sigaddset(&sigill_action.sa_mask, SIGUSR2);
766 sigill_action.sa_handler = (__sighandler_t)sigill_handler;
767 sigill_action.sa_flags = SA_ONSTACK;
768 sigill_action.sa_restorer = NULL;
769 if (sigaction(SIGILL, &sigill_action, NULL) < 0) {
770 sprintf(str, GetString(STR_SIGILL_INSTALL_ERR), strerror(errno));
771 ErrorAlert(str);
772 goto quit;
773 }
774 #endif
775
776 // Install interrupt signal handler
777 sigemptyset(&sigusr2_action.sa_mask);
778 sigusr2_action.sa_handler = (__sighandler_t)sigusr2_handler;
779 sigusr2_action.sa_flags = 0;
780 #if !EMULATED_PPC
781 sigusr2_action.sa_flags = SA_ONSTACK | SA_RESTART;
782 #endif
783 sigusr2_action.sa_restorer = NULL;
784 if (sigaction(SIGUSR2, &sigusr2_action, NULL) < 0) {
785 sprintf(str, GetString(STR_SIGUSR2_INSTALL_ERR), strerror(errno));
786 ErrorAlert(str);
787 goto quit;
788 }
789
790 // Get my thread ID and execute MacOS thread function
791 emul_thread = pthread_self();
792 D(bug("MacOS thread is %ld\n", emul_thread));
793 emul_func(NULL);
794
795 quit:
796 Quit();
797 return 0;
798 }
799
800
801 /*
802 * Cleanup and quit
803 */
804
805 static void Quit(void)
806 {
807 #if EMULATED_PPC
808 // Exit PowerPC emulation
809 exit_emul_ppc();
810 #endif
811
812 // Stop 60Hz thread
813 if (tick_thread_active) {
814 pthread_cancel(tick_thread);
815 pthread_join(tick_thread, NULL);
816 }
817
818 // Stop NVRAM watchdog thread
819 if (nvram_thread_active) {
820 pthread_cancel(nvram_thread);
821 pthread_join(nvram_thread, NULL);
822 }
823
824 #if !EMULATED_PPC
825 // Uninstall SIGSEGV and SIGBUS handlers
826 sigemptyset(&sigsegv_action.sa_mask);
827 sigsegv_action.sa_handler = SIG_DFL;
828 sigsegv_action.sa_flags = 0;
829 sigaction(SIGSEGV, &sigsegv_action, NULL);
830 sigaction(SIGBUS, &sigsegv_action, NULL);
831
832 // Uninstall SIGILL handler
833 sigemptyset(&sigill_action.sa_mask);
834 sigill_action.sa_handler = SIG_DFL;
835 sigill_action.sa_flags = 0;
836 sigaction(SIGILL, &sigill_action, NULL);
837 #endif
838
839 // Save NVRAM
840 XPRAMExit();
841
842 // Exit clipboard
843 ClipExit();
844
845 // Exit Time Manager
846 TimerExit();
847
848 // Exit serial
849 SerialExit();
850
851 // Exit network
852 EtherExit();
853
854 // Exit audio
855 AudioExit();
856
857 // Exit ADB
858 ADBExit();
859
860 // Exit video
861 VideoExit();
862
863 // Exit external file system
864 ExtFSExit();
865
866 // Exit drivers
867 SCSIExit();
868 CDROMExit();
869 DiskExit();
870 SonyExit();
871
872 // Delete thunks
873 ThunksExit();
874
875 // Delete SheepShaver globals
876 SheepMem::Exit();
877
878 // Delete RAM area
879 if (ram_area_mapped)
880 vm_release((char *)RAM_BASE, RAMSize);
881
882 // Delete ROM area
883 if (rom_area_mapped)
884 vm_release((char *)ROM_BASE, ROM_AREA_SIZE);
885
886 // Delete Kernel Data area
887 if (kernel_area >= 0) {
888 shmdt((void *)KERNEL_DATA_BASE);
889 shmdt((void *)KERNEL_DATA2_BASE);
890 shmctl(kernel_area, IPC_RMID, NULL);
891 }
892
893 // Delete Low Memory area
894 if (lm_area_mapped)
895 munmap((char *)0x0000, 0x3000);
896
897 // Close /dev/zero
898 if (zero_fd > 0)
899 close(zero_fd);
900
901 // Exit system routines
902 SysExit();
903
904 // Exit preferences
905 PrefsExit();
906
907 #ifdef ENABLE_MON
908 // Exit mon
909 mon_exit();
910 #endif
911
912 // Close X11 server connection
913 if (x_display)
914 XCloseDisplay(x_display);
915
916 exit(0);
917 }
918
919
920 /*
921 * Jump into Mac ROM, start 680x0 emulator
922 */
923
924 #if EMULATED_PPC
925 void jump_to_rom(uint32 entry)
926 {
927 init_emul_ppc();
928 emul_ppc(entry);
929 }
930 #endif
931
932
933 /*
934 * Emulator thread function
935 */
936
937 static void *emul_func(void *arg)
938 {
939 // We're now ready to receive signals
940 ready_for_signals = true;
941
942 // Decrease priority, so more time-critical things like audio will work better
943 nice(1);
944
945 // Jump to ROM boot routine
946 D(bug("Jumping to ROM\n"));
947 #if EMULATED_PPC
948 jump_to_rom(ROM_BASE + 0x310000);
949 #else
950 jump_to_rom(ROM_BASE + 0x310000, (uint32)emulator_data);
951 #endif
952 D(bug("Returned from ROM\n"));
953
954 // We're no longer ready to receive signals
955 ready_for_signals = false;
956 return NULL;
957 }
958
959
960 #if !EMULATED_PPC
961 /*
962 * Execute 68k subroutine (must be ended with RTS)
963 * This must only be called by the emul_thread when in EMUL_OP mode
964 * r->a[7] is unused, the routine runs on the caller's stack
965 */
966
967 void Execute68k(uint32 pc, M68kRegisters *r)
968 {
969 #if SAFE_EXEC_68K
970 if (ReadMacInt32(XLM_RUN_MODE) != MODE_EMUL_OP)
971 printf("FATAL: Execute68k() not called from EMUL_OP mode\n");
972 if (!pthread_equal(pthread_self(), emul_thread))
973 printf("FATAL: Execute68k() not called from emul_thread\n");
974 #endif
975 execute_68k(pc, r);
976 }
977
978
979 /*
980 * Execute 68k A-Trap from EMUL_OP routine
981 * r->a[7] is unused, the routine runs on the caller's stack
982 */
983
984 void Execute68kTrap(uint16 trap, M68kRegisters *r)
985 {
986 uint16 proc[2] = {trap, M68K_RTS};
987 Execute68k((uint32)proc, r);
988 }
989 #endif
990
991
992 /*
993 * Quit emulator (cause return from jump_to_rom)
994 */
995
996 void QuitEmulator(void)
997 {
998 #if EMULATED_PPC
999 Quit();
1000 #else
1001 quit_emulator();
1002 #endif
1003 }
1004
1005
1006 /*
1007 * Pause/resume emulator
1008 */
1009
1010 void PauseEmulator(void)
1011 {
1012 pthread_kill(emul_thread, SIGSTOP);
1013 }
1014
1015 void ResumeEmulator(void)
1016 {
1017 pthread_kill(emul_thread, SIGCONT);
1018 }
1019
1020
1021 /*
1022 * Dump 68k registers
1023 */
1024
1025 void Dump68kRegs(M68kRegisters *r)
1026 {
1027 // Display 68k registers
1028 for (int i=0; i<8; i++) {
1029 printf("d%d: %08x", i, r->d[i]);
1030 if (i == 3 || i == 7)
1031 printf("\n");
1032 else
1033 printf(", ");
1034 }
1035 for (int i=0; i<8; i++) {
1036 printf("a%d: %08x", i, r->a[i]);
1037 if (i == 3 || i == 7)
1038 printf("\n");
1039 else
1040 printf(", ");
1041 }
1042 }
1043
1044
1045 /*
1046 * Make code executable
1047 */
1048
1049 void MakeExecutable(int dummy, void *start, uint32 length)
1050 {
1051 if (((uintptr)start >= ROM_BASE) && ((uintptr)start < (ROM_BASE + ROM_SIZE)))
1052 return;
1053 #if EMULATED_PPC
1054 FlushCodeCache((uintptr)start, (uintptr)start + length);
1055 #else
1056 flush_icache_range(start, (void *)((uintptr)start + length));
1057 #endif
1058 }
1059
1060
1061 /*
1062 * Patch things after system startup (gets called by disk driver accRun routine)
1063 */
1064
1065 void PatchAfterStartup(void)
1066 {
1067 ExecuteNative(NATIVE_VIDEO_INSTALL_ACCEL);
1068 InstallExtFS();
1069 }
1070
1071
1072 /*
1073 * NVRAM watchdog thread (saves NVRAM every minute)
1074 */
1075
1076 static void *nvram_func(void *arg)
1077 {
1078 struct timespec req = {60, 0}; // 1 minute
1079
1080 for (;;) {
1081 pthread_testcancel();
1082 nanosleep(&req, NULL);
1083 pthread_testcancel();
1084 if (memcmp(last_xpram, XPRAM, XPRAM_SIZE)) {
1085 memcpy(last_xpram, XPRAM, XPRAM_SIZE);
1086 SaveXPRAM();
1087 }
1088 }
1089 return NULL;
1090 }
1091
1092
1093 /*
1094 * 60Hz thread (really 60.15Hz)
1095 */
1096
1097 static void *tick_func(void *arg)
1098 {
1099 int tick_counter = 0;
1100 struct timespec req = {0, 16625000};
1101
1102 for (;;) {
1103
1104 // Wait
1105 nanosleep(&req, NULL);
1106
1107 #if !EMULATED_PPC
1108 // Did we crash?
1109 if (emul_thread_fatal) {
1110
1111 // Yes, dump registers
1112 pt_regs *r = (pt_regs *)&sigsegv_regs;
1113 char str[256];
1114 if (crash_reason == NULL)
1115 crash_reason = "SIGSEGV";
1116 sprintf(str, "%s\n"
1117 " pc %08lx lr %08lx ctr %08lx msr %08lx\n"
1118 " xer %08lx cr %08lx \n"
1119 " r0 %08lx r1 %08lx r2 %08lx r3 %08lx\n"
1120 " r4 %08lx r5 %08lx r6 %08lx r7 %08lx\n"
1121 " r8 %08lx r9 %08lx r10 %08lx r11 %08lx\n"
1122 " r12 %08lx r13 %08lx r14 %08lx r15 %08lx\n"
1123 " r16 %08lx r17 %08lx r18 %08lx r19 %08lx\n"
1124 " r20 %08lx r21 %08lx r22 %08lx r23 %08lx\n"
1125 " r24 %08lx r25 %08lx r26 %08lx r27 %08lx\n"
1126 " r28 %08lx r29 %08lx r30 %08lx r31 %08lx\n",
1127 crash_reason,
1128 r->nip, r->link, r->ctr, r->msr,
1129 r->xer, r->ccr,
1130 r->gpr[0], r->gpr[1], r->gpr[2], r->gpr[3],
1131 r->gpr[4], r->gpr[5], r->gpr[6], r->gpr[7],
1132 r->gpr[8], r->gpr[9], r->gpr[10], r->gpr[11],
1133 r->gpr[12], r->gpr[13], r->gpr[14], r->gpr[15],
1134 r->gpr[16], r->gpr[17], r->gpr[18], r->gpr[19],
1135 r->gpr[20], r->gpr[21], r->gpr[22], r->gpr[23],
1136 r->gpr[24], r->gpr[25], r->gpr[26], r->gpr[27],
1137 r->gpr[28], r->gpr[29], r->gpr[30], r->gpr[31]);
1138 printf(str);
1139 VideoQuitFullScreen();
1140
1141 #ifdef ENABLE_MON
1142 // Start up mon in real-mode
1143 printf("Welcome to the sheep factory.\n");
1144 char *arg[4] = {"mon", "-m", "-r", NULL};
1145 mon(3, arg);
1146 #endif
1147 return NULL;
1148 }
1149 #endif
1150
1151 // Pseudo Mac 1Hz interrupt, update local time
1152 if (++tick_counter > 60) {
1153 tick_counter = 0;
1154 WriteMacInt32(0x20c, TimerDateTime());
1155 }
1156
1157 // Trigger 60Hz interrupt
1158 if (ReadMacInt32(XLM_IRQ_NEST) == 0) {
1159 SetInterruptFlag(INTFLAG_VIA);
1160 TriggerInterrupt();
1161 }
1162 }
1163 return NULL;
1164 }
1165
1166
1167 /*
1168 * Pthread configuration
1169 */
1170
1171 void Set_pthread_attr(pthread_attr_t *attr, int priority)
1172 {
1173 #ifdef HAVE_PTHREADS
1174 pthread_attr_init(attr);
1175 #if defined(_POSIX_THREAD_PRIORITY_SCHEDULING)
1176 // Some of these only work for superuser
1177 if (geteuid() == 0) {
1178 pthread_attr_setinheritsched(attr, PTHREAD_EXPLICIT_SCHED);
1179 pthread_attr_setschedpolicy(attr, SCHED_FIFO);
1180 struct sched_param fifo_param;
1181 fifo_param.sched_priority = ((sched_get_priority_min(SCHED_FIFO) +
1182 sched_get_priority_max(SCHED_FIFO)) / 2 +
1183 priority);
1184 pthread_attr_setschedparam(attr, &fifo_param);
1185 }
1186 if (pthread_attr_setscope(attr, PTHREAD_SCOPE_SYSTEM) != 0) {
1187 #ifdef PTHREAD_SCOPE_BOUND_NP
1188 // If system scope is not available (eg. we're not running
1189 // with CAP_SCHED_MGT capability on an SGI box), try bound
1190 // scope. It exposes pthread scheduling to the kernel,
1191 // without setting realtime priority.
1192 pthread_attr_setscope(attr, PTHREAD_SCOPE_BOUND_NP);
1193 #endif
1194 }
1195 #endif
1196 #endif
1197 }
1198
1199
1200 /*
1201 * Mutexes
1202 */
1203
1204 #ifdef HAVE_PTHREADS
1205
1206 struct B2_mutex {
1207 B2_mutex() {
1208 pthread_mutexattr_t attr;
1209 pthread_mutexattr_init(&attr);
1210 // Initialize the mutex for priority inheritance --
1211 // required for accurate timing.
1212 #ifdef HAVE_PTHREAD_MUTEXATTR_SETPROTOCOL
1213 pthread_mutexattr_setprotocol(&attr, PTHREAD_PRIO_INHERIT);
1214 #endif
1215 #if defined(HAVE_PTHREAD_MUTEXATTR_SETTYPE) && defined(PTHREAD_MUTEX_NORMAL)
1216 pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_NORMAL);
1217 #endif
1218 #ifdef HAVE_PTHREAD_MUTEXATTR_SETPSHARED
1219 pthread_mutexattr_setpshared(&attr, PTHREAD_PROCESS_PRIVATE);
1220 #endif
1221 pthread_mutex_init(&m, &attr);
1222 pthread_mutexattr_destroy(&attr);
1223 }
1224 ~B2_mutex() {
1225 pthread_mutex_trylock(&m); // Make sure it's locked before
1226 pthread_mutex_unlock(&m); // unlocking it.
1227 pthread_mutex_destroy(&m);
1228 }
1229 pthread_mutex_t m;
1230 };
1231
1232 B2_mutex *B2_create_mutex(void)
1233 {
1234 return new B2_mutex;
1235 }
1236
1237 void B2_lock_mutex(B2_mutex *mutex)
1238 {
1239 pthread_mutex_lock(&mutex->m);
1240 }
1241
1242 void B2_unlock_mutex(B2_mutex *mutex)
1243 {
1244 pthread_mutex_unlock(&mutex->m);
1245 }
1246
1247 void B2_delete_mutex(B2_mutex *mutex)
1248 {
1249 delete mutex;
1250 }
1251
1252 #else
1253
1254 struct B2_mutex {
1255 int dummy;
1256 };
1257
1258 B2_mutex *B2_create_mutex(void)
1259 {
1260 return new B2_mutex;
1261 }
1262
1263 void B2_lock_mutex(B2_mutex *mutex)
1264 {
1265 }
1266
1267 void B2_unlock_mutex(B2_mutex *mutex)
1268 {
1269 }
1270
1271 void B2_delete_mutex(B2_mutex *mutex)
1272 {
1273 delete mutex;
1274 }
1275
1276 #endif
1277
1278
1279 /*
1280 * Trigger signal USR2 from another thread
1281 */
1282
1283 #if !EMULATED_PPC || ASYNC_IRQ
1284 void TriggerInterrupt(void)
1285 {
1286 if (ready_for_signals)
1287 pthread_kill(emul_thread, SIGUSR2);
1288 }
1289 #endif
1290
1291
1292 /*
1293 * Interrupt flags (must be handled atomically!)
1294 */
1295
1296 volatile uint32 InterruptFlags = 0;
1297
1298 void SetInterruptFlag(uint32 flag)
1299 {
1300 atomic_or((int *)&InterruptFlags, flag);
1301 }
1302
1303 void ClearInterruptFlag(uint32 flag)
1304 {
1305 atomic_and((int *)&InterruptFlags, ~flag);
1306 }
1307
1308
1309 /*
1310 * Disable interrupts
1311 */
1312
1313 void DisableInterrupt(void)
1314 {
1315 atomic_add((int *)XLM_IRQ_NEST, 1);
1316 }
1317
1318
1319 /*
1320 * Enable interrupts
1321 */
1322
1323 void EnableInterrupt(void)
1324 {
1325 atomic_add((int *)XLM_IRQ_NEST, -1);
1326 }
1327
1328
1329 /*
1330 * USR2 handler
1331 */
1332
1333 #if EMULATED_PPC
1334 static void sigusr2_handler(int sig)
1335 {
1336 #if ASYNC_IRQ
1337 extern void HandleInterrupt(void);
1338 HandleInterrupt();
1339 #endif
1340 }
1341 #else
1342 static void sigusr2_handler(int sig, sigcontext_struct *sc)
1343 {
1344 pt_regs *r = sc->regs;
1345
1346 // Do nothing if interrupts are disabled
1347 if (*(int32 *)XLM_IRQ_NEST > 0)
1348 return;
1349
1350 // Disable MacOS stack sniffer
1351 WriteMacInt32(0x110, 0);
1352
1353 // Interrupt action depends on current run mode
1354 switch (ReadMacInt32(XLM_RUN_MODE)) {
1355 case MODE_68K:
1356 // 68k emulator active, trigger 68k interrupt level 1
1357 WriteMacInt16(ntohl(kernel_data->v[0x67c >> 2]), 1);
1358 r->ccr |= ntohl(kernel_data->v[0x674 >> 2]);
1359 break;
1360
1361 #if INTERRUPTS_IN_NATIVE_MODE
1362 case MODE_NATIVE:
1363 // 68k emulator inactive, in nanokernel?
1364 if (r->gpr[1] != KernelDataAddr) {
1365 // Prepare for 68k interrupt level 1
1366 WriteMacInt16(ntohl(kernel_data->v[0x67c >> 2]), 1);
1367 WriteMacInt32(ntohl(kernel_data->v[0x658 >> 2]) + 0xdc, ReadMacInt32(ntohl(kernel_data->v[0x658 >> 2]) + 0xdc) | ntohl(kernel_data->v[0x674 >> 2]));
1368
1369 // Execute nanokernel interrupt routine (this will activate the 68k emulator)
1370 atomic_add((int32 *)XLM_IRQ_NEST, 1);
1371 if (ROMType == ROMTYPE_NEWWORLD)
1372 ppc_interrupt(ROM_BASE + 0x312b1c, KernelDataAddr);
1373 else
1374 ppc_interrupt(ROM_BASE + 0x312a3c, KernelDataAddr);
1375 }
1376 break;
1377 #endif
1378
1379 #if INTERRUPTS_IN_EMUL_OP_MODE
1380 case MODE_EMUL_OP:
1381 // 68k emulator active, within EMUL_OP routine, execute 68k interrupt routine directly when interrupt level is 0
1382 if ((ReadMacInt32(XLM_68K_R25) & 7) == 0) {
1383
1384 // Set extra stack for SIGSEGV handler
1385 struct sigaltstack new_stack;
1386 new_stack.ss_sp = extra_stack;
1387 new_stack.ss_flags = 0;
1388 new_stack.ss_size = SIG_STACK_SIZE;
1389 sigaltstack(&new_stack, NULL);
1390 #if 1
1391 // Execute full 68k interrupt routine
1392 M68kRegisters r;
1393 uint32 old_r25 = ReadMacInt32(XLM_68K_R25); // Save interrupt level
1394 WriteMacInt32(XLM_68K_R25, 0x21); // Execute with interrupt level 1
1395 static const uint16 proc[] = {
1396 0x3f3c, 0x0000, // move.w #$0000,-(sp) (fake format word)
1397 0x487a, 0x000a, // pea @1(pc) (return address)
1398 0x40e7, // move sr,-(sp) (saved SR)
1399 0x2078, 0x0064, // move.l $64,a0
1400 0x4ed0, // jmp (a0)
1401 M68K_RTS // @1
1402 };
1403 Execute68k((uint32)proc, &r);
1404 WriteMacInt32(XLM_68K_R25, old_r25); // Restore interrupt level
1405 #else
1406 // Only update cursor
1407 if (HasMacStarted()) {
1408 if (InterruptFlags & INTFLAG_VIA) {
1409 ClearInterruptFlag(INTFLAG_VIA);
1410 ADBInterrupt();
1411 ExecuteNative(NATIVE_VIDEO_VBL);
1412 }
1413 }
1414 #endif
1415 // Reset normal signal stack
1416 new_stack.ss_sp = sig_stack;
1417 new_stack.ss_flags = 0;
1418 new_stack.ss_size = SIG_STACK_SIZE;
1419 sigaltstack(&new_stack, NULL);
1420 }
1421 break;
1422 #endif
1423 }
1424 }
1425 #endif
1426
1427
1428 /*
1429 * SIGSEGV handler
1430 */
1431
1432 #if !EMULATED_PPC
1433 static void sigsegv_handler(int sig, sigcontext_struct *sc)
1434 {
1435 pt_regs *r = sc->regs;
1436
1437 // Get effective address
1438 uint32 addr = r->dar;
1439
1440 #if ENABLE_VOSF
1441 // Handle screen fault.
1442 extern bool Screen_fault_handler(sigsegv_address_t fault_address, sigsegv_address_t fault_instruction);
1443 if (Screen_fault_handler((sigsegv_address_t)addr, (sigsegv_address_t)r->nip))
1444 return;
1445 #endif
1446
1447 num_segv++;
1448
1449 // Fault in Mac ROM or RAM?
1450 bool mac_fault = (r->nip >= ROM_BASE) && (r->nip < (ROM_BASE + ROM_AREA_SIZE)) || (r->nip >= RAMBase) && (r->nip < (RAMBase + RAMSize));
1451 if (mac_fault) {
1452
1453 // "VM settings" during MacOS 8 installation
1454 if (r->nip == ROM_BASE + 0x488160 && r->gpr[20] == 0xf8000000) {
1455 r->nip += 4;
1456 r->gpr[8] = 0;
1457 return;
1458
1459 // MacOS 8.5 installation
1460 } else if (r->nip == ROM_BASE + 0x488140 && r->gpr[16] == 0xf8000000) {
1461 r->nip += 4;
1462 r->gpr[8] = 0;
1463 return;
1464
1465 // MacOS 8 serial drivers on startup
1466 } else if (r->nip == ROM_BASE + 0x48e080 && (r->gpr[8] == 0xf3012002 || r->gpr[8] == 0xf3012000)) {
1467 r->nip += 4;
1468 r->gpr[8] = 0;
1469 return;
1470
1471 // MacOS 8.1 serial drivers on startup
1472 } else if (r->nip == ROM_BASE + 0x48c5e0 && (r->gpr[20] == 0xf3012002 || r->gpr[20] == 0xf3012000)) {
1473 r->nip += 4;
1474 return;
1475 } else if (r->nip == ROM_BASE + 0x4a10a0 && (r->gpr[20] == 0xf3012002 || r->gpr[20] == 0xf3012000)) {
1476 r->nip += 4;
1477 return;
1478 }
1479
1480 // Get opcode and divide into fields
1481 uint32 opcode = *((uint32 *)r->nip);
1482 uint32 primop = opcode >> 26;
1483 uint32 exop = (opcode >> 1) & 0x3ff;
1484 uint32 ra = (opcode >> 16) & 0x1f;
1485 uint32 rb = (opcode >> 11) & 0x1f;
1486 uint32 rd = (opcode >> 21) & 0x1f;
1487 int32 imm = (int16)(opcode & 0xffff);
1488
1489 // Analyze opcode
1490 enum {
1491 TYPE_UNKNOWN,
1492 TYPE_LOAD,
1493 TYPE_STORE
1494 } transfer_type = TYPE_UNKNOWN;
1495 enum {
1496 SIZE_UNKNOWN,
1497 SIZE_BYTE,
1498 SIZE_HALFWORD,
1499 SIZE_WORD
1500 } transfer_size = SIZE_UNKNOWN;
1501 enum {
1502 MODE_UNKNOWN,
1503 MODE_NORM,
1504 MODE_U,
1505 MODE_X,
1506 MODE_UX
1507 } addr_mode = MODE_UNKNOWN;
1508 switch (primop) {
1509 case 31:
1510 switch (exop) {
1511 case 23: // lwzx
1512 transfer_type = TYPE_LOAD; transfer_size = SIZE_WORD; addr_mode = MODE_X; break;
1513 case 55: // lwzux
1514 transfer_type = TYPE_LOAD; transfer_size = SIZE_WORD; addr_mode = MODE_UX; break;
1515 case 87: // lbzx
1516 transfer_type = TYPE_LOAD; transfer_size = SIZE_BYTE; addr_mode = MODE_X; break;
1517 case 119: // lbzux
1518 transfer_type = TYPE_LOAD; transfer_size = SIZE_BYTE; addr_mode = MODE_UX; break;
1519 case 151: // stwx
1520 transfer_type = TYPE_STORE; transfer_size = SIZE_WORD; addr_mode = MODE_X; break;
1521 case 183: // stwux
1522 transfer_type = TYPE_STORE; transfer_size = SIZE_WORD; addr_mode = MODE_UX; break;
1523 case 215: // stbx
1524 transfer_type = TYPE_STORE; transfer_size = SIZE_BYTE; addr_mode = MODE_X; break;
1525 case 247: // stbux
1526 transfer_type = TYPE_STORE; transfer_size = SIZE_BYTE; addr_mode = MODE_UX; break;
1527 case 279: // lhzx
1528 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_X; break;
1529 case 311: // lhzux
1530 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_UX; break;
1531 case 343: // lhax
1532 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_X; break;
1533 case 375: // lhaux
1534 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_UX; break;
1535 case 407: // sthx
1536 transfer_type = TYPE_STORE; transfer_size = SIZE_HALFWORD; addr_mode = MODE_X; break;
1537 case 439: // sthux
1538 transfer_type = TYPE_STORE; transfer_size = SIZE_HALFWORD; addr_mode = MODE_UX; break;
1539 }
1540 break;
1541
1542 case 32: // lwz
1543 transfer_type = TYPE_LOAD; transfer_size = SIZE_WORD; addr_mode = MODE_NORM; break;
1544 case 33: // lwzu
1545 transfer_type = TYPE_LOAD; transfer_size = SIZE_WORD; addr_mode = MODE_U; break;
1546 case 34: // lbz
1547 transfer_type = TYPE_LOAD; transfer_size = SIZE_BYTE; addr_mode = MODE_NORM; break;
1548 case 35: // lbzu
1549 transfer_type = TYPE_LOAD; transfer_size = SIZE_BYTE; addr_mode = MODE_U; break;
1550 case 36: // stw
1551 transfer_type = TYPE_STORE; transfer_size = SIZE_WORD; addr_mode = MODE_NORM; break;
1552 case 37: // stwu
1553 transfer_type = TYPE_STORE; transfer_size = SIZE_WORD; addr_mode = MODE_U; break;
1554 case 38: // stb
1555 transfer_type = TYPE_STORE; transfer_size = SIZE_BYTE; addr_mode = MODE_NORM; break;
1556 case 39: // stbu
1557 transfer_type = TYPE_STORE; transfer_size = SIZE_BYTE; addr_mode = MODE_U; break;
1558 case 40: // lhz
1559 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_NORM; break;
1560 case 41: // lhzu
1561 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_U; break;
1562 case 42: // lha
1563 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_NORM; break;
1564 case 43: // lhau
1565 transfer_type = TYPE_LOAD; transfer_size = SIZE_HALFWORD; addr_mode = MODE_U; break;
1566 case 44: // sth
1567 transfer_type = TYPE_STORE; transfer_size = SIZE_HALFWORD; addr_mode = MODE_NORM; break;
1568 case 45: // sthu
1569 transfer_type = TYPE_STORE; transfer_size = SIZE_HALFWORD; addr_mode = MODE_U; break;
1570 #if EMULATE_UNALIGNED_LOADSTORE_MULTIPLE
1571 case 46: // lmw
1572 if (sig == SIGBUS) {
1573 uint32 ea = (ra == 0 ? 0 : r->gpr[ra]) + imm;
1574 D(bug("WARNING: unaligned lmw to EA=%08x from IP=%08x\n", ea, r->nip));
1575 for (int i = rd; i <= 31; i++) {
1576 r->gpr[i] = ReadMacInt32(ea);
1577 ea += 4;
1578 }
1579 r->nip += 4;
1580 goto rti;
1581 }
1582 break;
1583 case 47: // stmw
1584 if (sig == SIGBUS) {
1585 uint32 ea = (ra == 0 ? 0 : r->gpr[ra]) + imm;
1586 D(bug("WARNING: unaligned stmw to EA=%08x from IP=%08x\n", ea, r->nip));
1587 for (int i = rd; i <= 31; i++) {
1588 WriteMacInt32(ea, r->gpr[i]);
1589 ea += 4;
1590 }
1591 r->nip += 4;
1592 goto rti;
1593 }
1594 break;
1595 #endif
1596 }
1597
1598 // Ignore ROM writes
1599 if (transfer_type == TYPE_STORE && addr >= ROM_BASE && addr < ROM_BASE + ROM_SIZE) {
1600 // D(bug("WARNING: %s write access to ROM at %08lx, pc %08lx\n", transfer_size == SIZE_BYTE ? "Byte" : transfer_size == SIZE_HALFWORD ? "Halfword" : "Word", addr, r->nip));
1601 if (addr_mode == MODE_U || addr_mode == MODE_UX)
1602 r->gpr[ra] = addr;
1603 r->nip += 4;
1604 goto rti;
1605 }
1606
1607 // Ignore illegal memory accesses?
1608 if (PrefsFindBool("ignoresegv")) {
1609 if (addr_mode == MODE_U || addr_mode == MODE_UX)
1610 r->gpr[ra] = addr;
1611 if (transfer_type == TYPE_LOAD)
1612 r->gpr[rd] = 0;
1613 r->nip += 4;
1614 goto rti;
1615 }
1616
1617 // In GUI mode, show error alert
1618 if (!PrefsFindBool("nogui")) {
1619 char str[256];
1620 if (transfer_type == TYPE_LOAD || transfer_type == TYPE_STORE)
1621 sprintf(str, GetString(STR_MEM_ACCESS_ERR), transfer_size == SIZE_BYTE ? "byte" : transfer_size == SIZE_HALFWORD ? "halfword" : "word", transfer_type == TYPE_LOAD ? GetString(STR_MEM_ACCESS_READ) : GetString(STR_MEM_ACCESS_WRITE), addr, r->nip, r->gpr[24], r->gpr[1]);
1622 else
1623 sprintf(str, GetString(STR_UNKNOWN_SEGV_ERR), r->nip, r->gpr[24], r->gpr[1], opcode);
1624 ErrorAlert(str);
1625 QuitEmulator();
1626 return;
1627 }
1628 }
1629
1630 // For all other errors, jump into debugger (sort of...)
1631 crash_reason = (sig == SIGBUS) ? "SIGBUS" : "SIGSEGV";
1632 if (!ready_for_signals) {
1633 printf("%s\n");
1634 printf(" sigcontext %p, pt_regs %p\n", sc, r);
1635 printf(
1636 " pc %08lx lr %08lx ctr %08lx msr %08lx\n"
1637 " xer %08lx cr %08lx \n"
1638 " r0 %08lx r1 %08lx r2 %08lx r3 %08lx\n"
1639 " r4 %08lx r5 %08lx r6 %08lx r7 %08lx\n"
1640 " r8 %08lx r9 %08lx r10 %08lx r11 %08lx\n"
1641 " r12 %08lx r13 %08lx r14 %08lx r15 %08lx\n"
1642 " r16 %08lx r17 %08lx r18 %08lx r19 %08lx\n"
1643 " r20 %08lx r21 %08lx r22 %08lx r23 %08lx\n"
1644 " r24 %08lx r25 %08lx r26 %08lx r27 %08lx\n"
1645 " r28 %08lx r29 %08lx r30 %08lx r31 %08lx\n",
1646 crash_reason,
1647 r->nip, r->link, r->ctr, r->msr,
1648 r->xer, r->ccr,
1649 r->gpr[0], r->gpr[1], r->gpr[2], r->gpr[3],
1650 r->gpr[4], r->gpr[5], r->gpr[6], r->gpr[7],
1651 r->gpr[8], r->gpr[9], r->gpr[10], r->gpr[11],
1652 r->gpr[12], r->gpr[13], r->gpr[14], r->gpr[15],
1653 r->gpr[16], r->gpr[17], r->gpr[18], r->gpr[19],
1654 r->gpr[20], r->gpr[21], r->gpr[22], r->gpr[23],
1655 r->gpr[24], r->gpr[25], r->gpr[26], r->gpr[27],
1656 r->gpr[28], r->gpr[29], r->gpr[30], r->gpr[31]);
1657 exit(1);
1658 QuitEmulator();
1659 return;
1660 } else {
1661 // We crashed. Save registers, tell tick thread and loop forever
1662 sigsegv_regs = *(sigregs *)r;
1663 emul_thread_fatal = true;
1664 for (;;) ;
1665 }
1666 rti:;
1667 }
1668
1669
1670 /*
1671 * SIGILL handler
1672 */
1673
1674 static void sigill_handler(int sig, sigcontext_struct *sc)
1675 {
1676 pt_regs *r = sc->regs;
1677 char str[256];
1678
1679 // Fault in Mac ROM or RAM?
1680 bool mac_fault = (r->nip >= ROM_BASE) && (r->nip < (ROM_BASE + ROM_AREA_SIZE)) || (r->nip >= RAMBase) && (r->nip < (RAMBase + RAMSize));
1681 if (mac_fault) {
1682
1683 // Get opcode and divide into fields
1684 uint32 opcode = *((uint32 *)r->nip);
1685 uint32 primop = opcode >> 26;
1686 uint32 exop = (opcode >> 1) & 0x3ff;
1687 uint32 ra = (opcode >> 16) & 0x1f;
1688 uint32 rb = (opcode >> 11) & 0x1f;
1689 uint32 rd = (opcode >> 21) & 0x1f;
1690 int32 imm = (int16)(opcode & 0xffff);
1691
1692 switch (primop) {
1693 case 9: // POWER instructions
1694 case 22:
1695 power_inst: sprintf(str, GetString(STR_POWER_INSTRUCTION_ERR), r->nip, r->gpr[1], opcode);
1696 ErrorAlert(str);
1697 QuitEmulator();
1698 return;
1699
1700 case 31:
1701 switch (exop) {
1702 case 83: // mfmsr
1703 r->gpr[rd] = 0xf072;
1704 r->nip += 4;
1705 goto rti;
1706
1707 case 210: // mtsr
1708 case 242: // mtsrin
1709 case 306: // tlbie
1710 r->nip += 4;
1711 goto rti;
1712
1713 case 339: { // mfspr
1714 int spr = ra | (rb << 5);
1715 switch (spr) {
1716 case 0: // MQ
1717 case 22: // DEC
1718 case 952: // MMCR0
1719 case 953: // PMC1
1720 case 954: // PMC2
1721 case 955: // SIA
1722 case 956: // MMCR1
1723 case 957: // PMC3
1724 case 958: // PMC4
1725 case 959: // SDA
1726 r->nip += 4;
1727 goto rti;
1728 case 25: // SDR1
1729 r->gpr[rd] = 0xdead001f;
1730 r->nip += 4;
1731 goto rti;
1732 case 287: // PVR
1733 r->gpr[rd] = PVR;
1734 r->nip += 4;
1735 goto rti;
1736 }
1737 break;
1738 }
1739
1740 case 467: { // mtspr
1741 int spr = ra | (rb << 5);
1742 switch (spr) {
1743 case 0: // MQ
1744 case 22: // DEC
1745 case 275: // SPRG3
1746 case 528: // IBAT0U
1747 case 529: // IBAT0L
1748 case 530: // IBAT1U
1749 case 531: // IBAT1L
1750 case 532: // IBAT2U
1751 case 533: // IBAT2L
1752 case 534: // IBAT3U
1753 case 535: // IBAT3L
1754 case 536: // DBAT0U
1755 case 537: // DBAT0L
1756 case 538: // DBAT1U
1757 case 539: // DBAT1L
1758 case 540: // DBAT2U
1759 case 541: // DBAT2L
1760 case 542: // DBAT3U
1761 case 543: // DBAT3L
1762 case 952: // MMCR0
1763 case 953: // PMC1
1764 case 954: // PMC2
1765 case 955: // SIA
1766 case 956: // MMCR1
1767 case 957: // PMC3
1768 case 958: // PMC4
1769 case 959: // SDA
1770 r->nip += 4;
1771 goto rti;
1772 }
1773 break;
1774 }
1775
1776 case 29: case 107: case 152: case 153: // POWER instructions
1777 case 184: case 216: case 217: case 248:
1778 case 264: case 277: case 331: case 360:
1779 case 363: case 488: case 531: case 537:
1780 case 541: case 664: case 665: case 696:
1781 case 728: case 729: case 760: case 920:
1782 case 921: case 952:
1783 goto power_inst;
1784 }
1785 }
1786
1787 // In GUI mode, show error alert
1788 if (!PrefsFindBool("nogui")) {
1789 sprintf(str, GetString(STR_UNKNOWN_SEGV_ERR), r->nip, r->gpr[24], r->gpr[1], opcode);
1790 ErrorAlert(str);
1791 QuitEmulator();
1792 return;
1793 }
1794 }
1795
1796 // For all other errors, jump into debugger (sort of...)
1797 crash_reason = "SIGILL";
1798 if (!ready_for_signals) {
1799 printf("%s\n");
1800 printf(" sigcontext %p, pt_regs %p\n", sc, r);
1801 printf(
1802 " pc %08lx lr %08lx ctr %08lx msr %08lx\n"
1803 " xer %08lx cr %08lx \n"
1804 " r0 %08lx r1 %08lx r2 %08lx r3 %08lx\n"
1805 " r4 %08lx r5 %08lx r6 %08lx r7 %08lx\n"
1806 " r8 %08lx r9 %08lx r10 %08lx r11 %08lx\n"
1807 " r12 %08lx r13 %08lx r14 %08lx r15 %08lx\n"
1808 " r16 %08lx r17 %08lx r18 %08lx r19 %08lx\n"
1809 " r20 %08lx r21 %08lx r22 %08lx r23 %08lx\n"
1810 " r24 %08lx r25 %08lx r26 %08lx r27 %08lx\n"
1811 " r28 %08lx r29 %08lx r30 %08lx r31 %08lx\n",
1812 crash_reason,
1813 r->nip, r->link, r->ctr, r->msr,
1814 r->xer, r->ccr,
1815 r->gpr[0], r->gpr[1], r->gpr[2], r->gpr[3],
1816 r->gpr[4], r->gpr[5], r->gpr[6], r->gpr[7],
1817 r->gpr[8], r->gpr[9], r->gpr[10], r->gpr[11],
1818 r->gpr[12], r->gpr[13], r->gpr[14], r->gpr[15],
1819 r->gpr[16], r->gpr[17], r->gpr[18], r->gpr[19],
1820 r->gpr[20], r->gpr[21], r->gpr[22], r->gpr[23],
1821 r->gpr[24], r->gpr[25], r->gpr[26], r->gpr[27],
1822 r->gpr[28], r->gpr[29], r->gpr[30], r->gpr[31]);
1823 exit(1);
1824 QuitEmulator();
1825 return;
1826 } else {
1827 // We crashed. Save registers, tell tick thread and loop forever
1828 sigsegv_regs = *(sigregs *)r;
1829 emul_thread_fatal = true;
1830 for (;;) ;
1831 }
1832 rti:;
1833 }
1834 #endif
1835
1836
1837 /*
1838 * Helpers to share 32-bit addressable data with MacOS
1839 */
1840
1841 bool SheepMem::Init(void)
1842 {
1843 const int page_size = getpagesize();
1844
1845 // Allocate SheepShaver globals
1846 if (vm_acquire_fixed((char *)base, size) < 0)
1847 return false;
1848
1849 // Allocate page with all bits set to 0
1850 zero_page = base + size;
1851 if (vm_acquire_fixed((char *)zero_page, page_size) < 0)
1852 return false;
1853 memset((char *)zero_page, 0, page_size);
1854 if (vm_protect((char *)zero_page, page_size, VM_PAGE_READ) < 0)
1855 return false;
1856
1857 #if EMULATED_PPC
1858 // Allocate alternate stack for PowerPC interrupt routine
1859 sig_stack = zero_page + page_size;
1860 if (vm_acquire_fixed((char *)sig_stack, SIG_STACK_SIZE) < 0)
1861 return false;
1862 #endif
1863
1864 top = base + size;
1865 return true;
1866 }
1867
1868 void SheepMem::Exit(void)
1869 {
1870 if (top) {
1871 const int page_size = getpagesize();
1872
1873 // Delete SheepShaver globals
1874 vm_release((void *)base, size);
1875
1876 // Delete zero page
1877 vm_release((void *)zero_page, page_size);
1878
1879 #if EMULATED_PPC
1880 // Delete alternate stack for PowerPC interrupt routine
1881 vm_release((void *)sig_stack, SIG_STACK_SIZE);
1882 #endif
1883 }
1884 }
1885
1886
1887 /*
1888 * Display alert
1889 */
1890
1891 #ifdef ENABLE_GTK
1892 static void dl_destroyed(void)
1893 {
1894 gtk_main_quit();
1895 }
1896
1897 static void dl_quit(GtkWidget *dialog)
1898 {
1899 gtk_widget_destroy(dialog);
1900 }
1901
1902 void display_alert(int title_id, int prefix_id, int button_id, const char *text)
1903 {
1904 char str[256];
1905 sprintf(str, GetString(prefix_id), text);
1906
1907 GtkWidget *dialog = gtk_dialog_new();
1908 gtk_window_set_title(GTK_WINDOW(dialog), GetString(title_id));
1909 gtk_container_border_width(GTK_CONTAINER(dialog), 5);
1910 gtk_widget_set_uposition(GTK_WIDGET(dialog), 100, 150);
1911 gtk_signal_connect(GTK_OBJECT(dialog), "destroy", GTK_SIGNAL_FUNC(dl_destroyed), NULL);
1912
1913 GtkWidget *label = gtk_label_new(str);
1914 gtk_widget_show(label);
1915 gtk_box_pack_start(GTK_BOX(GTK_DIALOG(dialog)->vbox), label, TRUE, TRUE, 0);
1916
1917 GtkWidget *button = gtk_button_new_with_label(GetString(button_id));
1918 gtk_widget_show(button);
1919 gtk_signal_connect_object(GTK_OBJECT(button), "clicked", GTK_SIGNAL_FUNC(dl_quit), GTK_OBJECT(dialog));
1920 gtk_box_pack_start(GTK_BOX(GTK_DIALOG(dialog)->action_area), button, FALSE, FALSE, 0);
1921 GTK_WIDGET_SET_FLAGS(button, GTK_CAN_DEFAULT);
1922 gtk_widget_grab_default(button);
1923 gtk_widget_show(dialog);
1924
1925 gtk_main();
1926 }
1927 #endif
1928
1929
1930 /*
1931 * Display error alert
1932 */
1933
1934 void ErrorAlert(const char *text)
1935 {
1936 #ifdef ENABLE_GTK
1937 if (PrefsFindBool("nogui") || x_display == NULL) {
1938 printf(GetString(STR_SHELL_ERROR_PREFIX), text);
1939 return;
1940 }
1941 VideoQuitFullScreen();
1942 display_alert(STR_ERROR_ALERT_TITLE, STR_GUI_ERROR_PREFIX, STR_QUIT_BUTTON, text);
1943 #else
1944 printf(GetString(STR_SHELL_ERROR_PREFIX), text);
1945 #endif
1946 }
1947
1948
1949 /*
1950 * Display warning alert
1951 */
1952
1953 void WarningAlert(const char *text)
1954 {
1955 #ifdef ENABLE_GTK
1956 if (PrefsFindBool("nogui") || x_display == NULL) {
1957 printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1958 return;
1959 }
1960 display_alert(STR_WARNING_ALERT_TITLE, STR_GUI_WARNING_PREFIX, STR_OK_BUTTON, text);
1961 #else
1962 printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1963 #endif
1964 }
1965
1966
1967 /*
1968 * Display choice alert
1969 */
1970
1971 bool ChoiceAlert(const char *text, const char *pos, const char *neg)
1972 {
1973 printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1974 return false; //!!
1975 }