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root/cebix/BasiliskII/src/Unix/main_unix.cpp
Revision: 1.59
Committed: 2004-06-23T14:30:48Z (20 years, 3 months ago) by gbeauche
Branch: MAIN
Changes since 1.58: +39 -6 lines
Log Message:
Initial SDL/video support. Fix VOSF code could lead to a crash on run-time
resolution/depth switching. Rearrange blitter lookup code, aka make it cleaner.

File Contents

# User Rev Content
1 cebix 1.1 /*
2     * main_unix.cpp - Startup code for Unix
3     *
4 cebix 1.58 * Basilisk II (C) 1997-2004 Christian Bauer
5 cebix 1.1 *
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     #include "sysdeps.h"
22    
23     #include <stdio.h>
24     #include <stdlib.h>
25     #include <signal.h>
26 cebix 1.12 #include <errno.h>
27 gbeauche 1.59
28     #ifdef USE_SDL
29     # include <SDL.h>
30     #endif
31    
32     #ifndef USE_SDL_VIDEO
33     # include <X11/Xlib.h>
34     #endif
35 cebix 1.12
36     #ifdef HAVE_PTHREADS
37     # include <pthread.h>
38     #endif
39    
40 cebix 1.27 #if REAL_ADDRESSING || DIRECT_ADDRESSING
41 cebix 1.12 # include <sys/mman.h>
42     #endif
43    
44     #if !EMULATED_68K && defined(__NetBSD__)
45     # include <m68k/sync_icache.h>
46     # include <m68k/frame.h>
47     # include <sys/param.h>
48     # include <sys/sysctl.h>
49     struct sigstate {
50     int ss_flags;
51     struct frame ss_frame;
52     struct fpframe ss_fpstate;
53     };
54     # define SS_FPSTATE 0x02
55     # define SS_USERREGS 0x04
56     #endif
57    
58     #ifdef ENABLE_GTK
59     # include <gtk/gtk.h>
60 cebix 1.28 # include <gdk/gdk.h>
61 cebix 1.43 # ifdef HAVE_GNOMEUI
62     # include <gnome.h>
63     # endif
64 cebix 1.12 #endif
65    
66     #ifdef ENABLE_XF86_DGA
67     # include <X11/Xutil.h>
68     # include <X11/extensions/xf86dga.h>
69     #endif
70 cebix 1.1
71 cebix 1.48 #include <string>
72     using std::string;
73    
74 cebix 1.1 #include "cpu_emulation.h"
75     #include "sys.h"
76 cebix 1.3 #include "rom_patches.h"
77 cebix 1.1 #include "xpram.h"
78     #include "timer.h"
79     #include "video.h"
80 cebix 1.12 #include "emul_op.h"
81 cebix 1.1 #include "prefs.h"
82     #include "prefs_editor.h"
83     #include "macos_util.h"
84     #include "user_strings.h"
85     #include "version.h"
86     #include "main.h"
87 gbeauche 1.33 #include "vm_alloc.h"
88 gbeauche 1.46 #include "sigsegv.h"
89 cebix 1.1
90 gbeauche 1.50 #if USE_JIT
91 gbeauche 1.57 extern void flush_icache_range(uint32 start, uint32 size); // from compemu_support.cpp
92 gbeauche 1.50 #endif
93    
94 cebix 1.12 #ifdef ENABLE_MON
95     # include "mon.h"
96     #endif
97    
98 cebix 1.13 #define DEBUG 0
99 cebix 1.1 #include "debug.h"
100    
101    
102 cebix 1.12 // Constants
103     const char ROM_FILE_NAME[] = "ROM";
104 gbeauche 1.51 #if !EMULATED_68K
105 cebix 1.12 const int SIG_STACK_SIZE = SIGSTKSZ; // Size of signal stack
106 gbeauche 1.51 #endif
107 cebix 1.12 const int SCRATCH_MEM_SIZE = 0x10000; // Size of scratch memory area
108 cebix 1.1
109 cebix 1.4
110 cebix 1.12 #if !EMULATED_68K
111     // RAM and ROM pointers
112     uint32 RAMBaseMac; // RAM base (Mac address space)
113     uint8 *RAMBaseHost; // RAM base (host address space)
114     uint32 RAMSize; // Size of RAM
115     uint32 ROMBaseMac; // ROM base (Mac address space)
116     uint8 *ROMBaseHost; // ROM base (host address space)
117     uint32 ROMSize; // Size of ROM
118 cebix 1.9 #endif
119    
120 cebix 1.1
121     // CPU and FPU type, addressing mode
122     int CPUType;
123     bool CPUIs68060;
124     int FPUType;
125     bool TwentyFourBitAddressing;
126    
127    
128     // Global variables
129 gbeauche 1.59 #ifndef USE_SDL_VIDEO
130     extern char *x_display_name; // X11 display name
131     extern Display *x_display; // X11 display handle
132     #endif
133 cebix 1.1
134 cebix 1.41 static uint8 last_xpram[XPRAM_SIZE]; // Buffer for monitoring XPRAM changes
135 cebix 1.12
136     #ifdef HAVE_PTHREADS
137 gbeauche 1.51 #if !EMULATED_68K
138 cebix 1.12 static pthread_t emul_thread; // Handle of MacOS emulation thread (main thread)
139 gbeauche 1.51 #endif
140 cebix 1.12
141 cebix 1.1 static bool xpram_thread_active = false; // Flag: XPRAM watchdog installed
142     static volatile bool xpram_thread_cancel = false; // Flag: Cancel XPRAM thread
143     static pthread_t xpram_thread; // XPRAM watchdog
144    
145     static bool tick_thread_active = false; // Flag: 60Hz thread installed
146     static volatile bool tick_thread_cancel = false; // Flag: Cancel 60Hz thread
147     static pthread_t tick_thread; // 60Hz thread
148     static pthread_attr_t tick_thread_attr; // 60Hz thread attributes
149    
150     static pthread_mutex_t intflag_lock = PTHREAD_MUTEX_INITIALIZER; // Mutex to protect InterruptFlags
151 cebix 1.37 #define LOCK_INTFLAGS pthread_mutex_lock(&intflag_lock)
152     #define UNLOCK_INTFLAGS pthread_mutex_unlock(&intflag_lock)
153    
154     #else
155    
156     #define LOCK_INTFLAGS
157     #define UNLOCK_INTFLAGS
158    
159 cebix 1.12 #endif
160    
161     #if !EMULATED_68K
162     #define SIG_IRQ SIGUSR1
163     static struct sigaction sigirq_sa; // Virtual 68k interrupt signal
164     static struct sigaction sigill_sa; // Illegal instruction
165     static void *sig_stack = NULL; // Stack for signal handlers
166     uint16 EmulatedSR; // Emulated bits of SR (supervisor bit and interrupt mask)
167 gbeauche 1.20 #endif
168    
169     #if USE_SCRATCHMEM_SUBTERFUGE
170 cebix 1.22 uint8 *ScratchMem = NULL; // Scratch memory for Mac ROM writes
171 cebix 1.12 #endif
172    
173 gbeauche 1.51 #if !defined(HAVE_PTHREADS)
174 cebix 1.12 static struct sigaction timer_sa; // sigaction used for timer
175 cebix 1.1
176     #if defined(HAVE_TIMER_CREATE) && defined(_POSIX_REALTIME_SIGNALS)
177     #define SIG_TIMER SIGRTMIN
178 cebix 1.12 static timer_t timer; // 60Hz timer
179 cebix 1.1 #endif
180 gbeauche 1.51 #endif // !HAVE_PTHREADS
181 cebix 1.1
182 cebix 1.12 #ifdef ENABLE_MON
183     static struct sigaction sigint_sa; // sigaction for SIGINT handler
184 cebix 1.4 static void sigint_handler(...);
185 cebix 1.15 #endif
186    
187     #if REAL_ADDRESSING
188     static bool lm_area_mapped = false; // Flag: Low Memory area mmap()ped
189 cebix 1.22 #endif
190    
191 cebix 1.1
192     // Prototypes
193     static void *xpram_func(void *arg);
194     static void *tick_func(void *arg);
195     static void one_tick(...);
196 cebix 1.12 #if !EMULATED_68K
197     static void sigirq_handler(int sig, int code, struct sigcontext *scp);
198     static void sigill_handler(int sig, int code, struct sigcontext *scp);
199     extern "C" void EmulOpTrampoline(void);
200     #endif
201 cebix 1.1
202    
203     /*
204     * Ersatz functions
205     */
206    
207     extern "C" {
208    
209     #ifndef HAVE_STRDUP
210     char *strdup(const char *s)
211     {
212     char *n = (char *)malloc(strlen(s) + 1);
213     strcpy(n, s);
214     return n;
215     }
216     #endif
217    
218     }
219    
220    
221     /*
222 gbeauche 1.54 * SIGSEGV handler
223     */
224    
225     static sigsegv_return_t sigsegv_handler(sigsegv_address_t fault_address, sigsegv_address_t fault_instruction)
226     {
227     #if ENABLE_VOSF
228     // Handle screen fault
229     extern bool Screen_fault_handler(sigsegv_address_t, sigsegv_address_t);
230     if (Screen_fault_handler(fault_address, fault_instruction))
231     return SIGSEGV_RETURN_SUCCESS;
232     #endif
233    
234     #ifdef HAVE_SIGSEGV_SKIP_INSTRUCTION
235     // Ignore writes to ROM
236     if (((uintptr)fault_address - (uintptr)ROMBaseHost) < ROMSize)
237     return SIGSEGV_RETURN_SKIP_INSTRUCTION;
238    
239     // Ignore all other faults, if requested
240     if (PrefsFindBool("ignoresegv"))
241     return SIGSEGV_RETURN_SKIP_INSTRUCTION;
242     #endif
243    
244     return SIGSEGV_RETURN_FAILURE;
245     }
246    
247     /*
248 gbeauche 1.47 * Dump state when everything went wrong after a SEGV
249     */
250    
251     static void sigsegv_dump_state(sigsegv_address_t fault_address, sigsegv_address_t fault_instruction)
252     {
253 gbeauche 1.50 fprintf(stderr, "Caught SIGSEGV at address %p", fault_address);
254 gbeauche 1.47 if (fault_instruction != SIGSEGV_INVALID_PC)
255     fprintf(stderr, " [IP=%p]", fault_instruction);
256     fprintf(stderr, "\n");
257     #if EMULATED_68K
258     uaecptr nextpc;
259     extern void m68k_dumpstate(uaecptr *nextpc);
260     m68k_dumpstate(&nextpc);
261     #endif
262 gbeauche 1.50 #if USE_JIT && JIT_DEBUG
263     extern void compiler_dumpstate(void);
264     compiler_dumpstate();
265     #endif
266 gbeauche 1.47 VideoQuitFullScreen();
267     #ifdef ENABLE_MON
268     char *arg[4] = {"mon", "-m", "-r", NULL};
269     mon(3, arg);
270     QuitEmulator();
271     #endif
272     }
273    
274    
275     /*
276 cebix 1.1 * Main program
277     */
278    
279 cebix 1.32 static void usage(const char *prg_name)
280     {
281 cebix 1.48 printf(
282     "Usage: %s [OPTION...]\n"
283     "\nUnix options:\n"
284     " --config FILE\n read/write configuration from/to FILE\n"
285     " --display STRING\n X display to use\n"
286     " --break ADDRESS\n set ROM breakpoint\n"
287     " --rominfo\n dump ROM information\n", prg_name
288     );
289     LoadPrefs(); // read the prefs file so PrefsPrintUsage() will print the correct default values
290 cebix 1.32 PrefsPrintUsage();
291     exit(0);
292     }
293    
294 cebix 1.1 int main(int argc, char **argv)
295     {
296 cebix 1.12 char str[256];
297    
298 cebix 1.1 // Initialize variables
299     RAMBaseHost = NULL;
300     ROMBaseHost = NULL;
301     srand(time(NULL));
302     tzset();
303    
304     // Print some info
305     printf(GetString(STR_ABOUT_TEXT1), VERSION_MAJOR, VERSION_MINOR);
306     printf(" %s\n", GetString(STR_ABOUT_TEXT2));
307    
308 cebix 1.48 // Parse command line arguments
309     for (int i=1; i<argc; i++) {
310     if (strcmp(argv[i], "--help") == 0) {
311     usage(argv[0]);
312 gbeauche 1.59 #ifndef USE_SDL_VIDEO
313 cebix 1.48 } else if (strcmp(argv[i], "--display") == 0) {
314     i++; // don't remove the argument, gtk_init() needs it too
315     if (i < argc)
316     x_display_name = strdup(argv[i]);
317 gbeauche 1.59 #endif
318 cebix 1.48 } else if (strcmp(argv[i], "--break") == 0) {
319     argv[i++] = NULL;
320     if (i < argc) {
321     ROMBreakpoint = strtol(argv[i], NULL, 0);
322     argv[i] = NULL;
323     }
324     } else if (strcmp(argv[i], "--config") == 0) {
325     argv[i++] = NULL;
326     if (i < argc) {
327     extern string UserPrefsPath; // from prefs_unix.cpp
328     UserPrefsPath = argv[i];
329     argv[i] = NULL;
330     }
331     } else if (strcmp(argv[i], "--rominfo") == 0) {
332     argv[i] = NULL;
333     PrintROMInfo = true;
334     }
335     }
336    
337     // Remove processed arguments
338     for (int i=1; i<argc; i++) {
339     int k;
340     for (k=i; k<argc; k++)
341     if (argv[k] != NULL)
342     break;
343     if (k > i) {
344     k -= i;
345     for (int j=i+k; j<argc; j++)
346     argv[j-k] = argv[j];
347     argc -= k;
348     }
349     }
350    
351 cebix 1.28 #ifdef ENABLE_GTK
352 cebix 1.43 #ifdef HAVE_GNOMEUI
353     // Init GNOME/GTK
354     char version[16];
355     sprintf(version, "%d.%d", VERSION_MAJOR, VERSION_MINOR);
356     gnome_init("Basilisk II", version, argc, argv);
357     #else
358 cebix 1.28 // Init GTK
359     gtk_set_locale();
360     gtk_init(&argc, &argv);
361 cebix 1.43 #endif
362 cebix 1.28 #endif
363    
364 cebix 1.32 // Read preferences
365     PrefsInit(argc, argv);
366    
367 cebix 1.48 // Any command line arguments left?
368 cebix 1.1 for (int i=1; i<argc; i++) {
369 cebix 1.48 if (argv[i][0] == '-') {
370 cebix 1.32 fprintf(stderr, "Unrecognized option '%s'\n", argv[i]);
371     usage(argv[0]);
372 cebix 1.28 }
373 cebix 1.1 }
374    
375 gbeauche 1.59 #ifndef USE_SDL_VIDEO
376 cebix 1.1 // Open display
377     x_display = XOpenDisplay(x_display_name);
378     if (x_display == NULL) {
379     char str[256];
380     sprintf(str, GetString(STR_NO_XSERVER_ERR), XDisplayName(x_display_name));
381     ErrorAlert(str);
382     QuitEmulator();
383     }
384    
385 cebix 1.12 #if defined(ENABLE_XF86_DGA) && !defined(ENABLE_MON)
386 cebix 1.1 // Fork out, so we can return from fullscreen mode when things get ugly
387 cebix 1.2 XF86DGAForkApp(DefaultScreen(x_display));
388 cebix 1.1 #endif
389 gbeauche 1.59 #endif
390    
391     #ifdef USE_SDL
392     // Initialize SDL system
393     int sdl_flags = 0;
394     #ifdef USE_SDL_VIDEO
395     sdl_flags |= SDL_INIT_VIDEO;
396     #endif
397     assert(sdl_flags != 0);
398     if (SDL_Init(sdl_flags) == -1) {
399     char str[256];
400     sprintf(str, "Could not initialize SDL: %s.\n", SDL_GetError());
401     ErrorAlert(str);
402     QuitEmulator();
403     }
404     #endif
405 cebix 1.1
406     // Init system routines
407     SysInit();
408    
409     // Show preferences editor
410     if (!PrefsFindBool("nogui"))
411     if (!PrefsEditor())
412     QuitEmulator();
413 gbeauche 1.46
414 gbeauche 1.54 // Install the handler for SIGSEGV
415 gbeauche 1.55 if (!sigsegv_install_handler(sigsegv_handler)) {
416     sprintf(str, GetString(STR_SIG_INSTALL_ERR), "SIGSEGV", strerror(errno));
417     ErrorAlert(str);
418     QuitEmulator();
419     }
420 gbeauche 1.54
421 gbeauche 1.47 // Register dump state function when we got mad after a segfault
422     sigsegv_set_dump_state(sigsegv_dump_state);
423 cebix 1.1
424 cebix 1.9 // Read RAM size
425 cebix 1.1 RAMSize = PrefsFindInt32("ramsize") & 0xfff00000; // Round down to 1MB boundary
426     if (RAMSize < 1024*1024) {
427     WarningAlert(GetString(STR_SMALL_RAM_WARN));
428     RAMSize = 1024*1024;
429     }
430 cebix 1.9
431 gbeauche 1.20 #if REAL_ADDRESSING || DIRECT_ADDRESSING
432 gbeauche 1.33 RAMSize = RAMSize & -getpagesize(); // Round down to page boundary
433 gbeauche 1.20 #endif
434 gbeauche 1.33
435     // Initialize VM system
436     vm_init();
437 gbeauche 1.20
438 cebix 1.12 #if REAL_ADDRESSING
439 gbeauche 1.33 // Flag: RAM and ROM are contigously allocated from address 0
440     bool memory_mapped_from_zero = false;
441    
442     // Under Solaris/SPARC and NetBSD/m68k, Basilisk II is known to crash
443     // when trying to map a too big chunk of memory starting at address 0
444 gbeauche 1.56 #if defined(OS_solaris) || defined(OS_netbsd) || defined(PAGEZERO_HACK)
445 gbeauche 1.33 const bool can_map_all_memory = false;
446 gbeauche 1.20 #else
447 gbeauche 1.33 const bool can_map_all_memory = true;
448 gbeauche 1.20 #endif
449 gbeauche 1.33
450     // Try to allocate all memory from 0x0000, if it is not known to crash
451     if (can_map_all_memory && (vm_acquire_fixed(0, RAMSize + 0x100000) == 0)) {
452 gbeauche 1.20 D(bug("Could allocate RAM and ROM from 0x0000\n"));
453     memory_mapped_from_zero = true;
454     }
455 gbeauche 1.33
456 gbeauche 1.56 #ifndef PAGEZERO_HACK
457 gbeauche 1.33 // Otherwise, just create the Low Memory area (0x0000..0x2000)
458     else if (vm_acquire_fixed(0, 0x2000) == 0) {
459 gbeauche 1.20 D(bug("Could allocate the Low Memory globals\n"));
460     lm_area_mapped = true;
461     }
462 gbeauche 1.33
463     // Exit on failure
464 gbeauche 1.20 else {
465 cebix 1.12 sprintf(str, GetString(STR_LOW_MEM_MMAP_ERR), strerror(errno));
466     ErrorAlert(str);
467     QuitEmulator();
468     }
469     #endif
470 gbeauche 1.56 #endif /* REAL_ADDRESSING */
471 cebix 1.12
472 cebix 1.9 // Create areas for Mac RAM and ROM
473 gbeauche 1.20 #if REAL_ADDRESSING
474     if (memory_mapped_from_zero) {
475     RAMBaseHost = (uint8 *)0;
476 gbeauche 1.33 ROMBaseHost = RAMBaseHost + RAMSize;
477 gbeauche 1.20 }
478     else
479     #endif
480     {
481 gbeauche 1.33 RAMBaseHost = (uint8 *)vm_acquire(RAMSize);
482     ROMBaseHost = (uint8 *)vm_acquire(0x100000);
483     if (RAMBaseHost == VM_MAP_FAILED || ROMBaseHost == VM_MAP_FAILED) {
484 cebix 1.36 ErrorAlert(STR_NO_MEM_ERR);
485 gbeauche 1.20 QuitEmulator();
486     }
487     }
488 gbeauche 1.38
489     #if USE_SCRATCHMEM_SUBTERFUGE
490     // Allocate scratch memory
491     ScratchMem = (uint8 *)vm_acquire(SCRATCH_MEM_SIZE);
492     if (ScratchMem == VM_MAP_FAILED) {
493     ErrorAlert(STR_NO_MEM_ERR);
494     QuitEmulator();
495     }
496     ScratchMem += SCRATCH_MEM_SIZE/2; // ScratchMem points to middle of block
497     #endif
498 cebix 1.22
499 gbeauche 1.20 #if DIRECT_ADDRESSING
500 gbeauche 1.33 // RAMBaseMac shall always be zero
501     MEMBaseDiff = (uintptr)RAMBaseHost;
502 gbeauche 1.20 RAMBaseMac = 0;
503 gbeauche 1.33 ROMBaseMac = Host2MacAddr(ROMBaseHost);
504 gbeauche 1.20 #endif
505 gbeauche 1.33 #if REAL_ADDRESSING
506 cebix 1.12 RAMBaseMac = (uint32)RAMBaseHost;
507     ROMBaseMac = (uint32)ROMBaseHost;
508     #endif
509     D(bug("Mac RAM starts at %p (%08x)\n", RAMBaseHost, RAMBaseMac));
510     D(bug("Mac ROM starts at %p (%08x)\n", ROMBaseHost, ROMBaseMac));
511 gbeauche 1.20
512 cebix 1.1 // Get rom file path from preferences
513     const char *rom_path = PrefsFindString("rom");
514    
515     // Load Mac ROM
516     int rom_fd = open(rom_path ? rom_path : ROM_FILE_NAME, O_RDONLY);
517     if (rom_fd < 0) {
518 cebix 1.36 ErrorAlert(STR_NO_ROM_FILE_ERR);
519 cebix 1.1 QuitEmulator();
520     }
521     printf(GetString(STR_READING_ROM_FILE));
522     ROMSize = lseek(rom_fd, 0, SEEK_END);
523     if (ROMSize != 64*1024 && ROMSize != 128*1024 && ROMSize != 256*1024 && ROMSize != 512*1024 && ROMSize != 1024*1024) {
524 cebix 1.36 ErrorAlert(STR_ROM_SIZE_ERR);
525 cebix 1.1 close(rom_fd);
526     QuitEmulator();
527     }
528     lseek(rom_fd, 0, SEEK_SET);
529     if (read(rom_fd, ROMBaseHost, ROMSize) != (ssize_t)ROMSize) {
530 cebix 1.36 ErrorAlert(STR_ROM_FILE_READ_ERR);
531 cebix 1.1 close(rom_fd);
532     QuitEmulator();
533     }
534    
535 cebix 1.12 #if !EMULATED_68K
536     // Get CPU model
537     int mib[2] = {CTL_HW, HW_MODEL};
538     char *model;
539     size_t model_len;
540     sysctl(mib, 2, NULL, &model_len, NULL, 0);
541     model = (char *)malloc(model_len);
542     sysctl(mib, 2, model, &model_len, NULL, 0);
543     D(bug("Model: %s\n", model));
544    
545     // Set CPU and FPU type
546     CPUIs68060 = false;
547     if (strstr(model, "020"))
548     CPUType = 2;
549     else if (strstr(model, "030"))
550     CPUType = 3;
551     else if (strstr(model, "040"))
552     CPUType = 4;
553     else if (strstr(model, "060")) {
554     CPUType = 4;
555     CPUIs68060 = true;
556     } else {
557     printf("WARNING: Cannot detect CPU type, assuming 68020\n");
558     CPUType = 2;
559     }
560 cebix 1.24 FPUType = 1; // NetBSD has an FPU emulation, so the FPU ought to be available at all times
561 cebix 1.12 TwentyFourBitAddressing = false;
562     #endif
563    
564 cebix 1.3 // Initialize everything
565     if (!InitAll())
566 cebix 1.1 QuitEmulator();
567 cebix 1.12 D(bug("Initialization complete\n"));
568    
569 gbeauche 1.51 #if !EMULATED_68K
570     // (Virtual) supervisor mode, disable interrupts
571     EmulatedSR = 0x2700;
572    
573 cebix 1.12 #ifdef HAVE_PTHREADS
574     // Get handle of main thread
575     emul_thread = pthread_self();
576     #endif
577    
578     // Create and install stack for signal handlers
579     sig_stack = malloc(SIG_STACK_SIZE);
580     D(bug("Signal stack at %p\n", sig_stack));
581     if (sig_stack == NULL) {
582 cebix 1.36 ErrorAlert(STR_NOT_ENOUGH_MEMORY_ERR);
583 cebix 1.12 QuitEmulator();
584     }
585     stack_t new_stack;
586     new_stack.ss_sp = sig_stack;
587     new_stack.ss_flags = 0;
588     new_stack.ss_size = SIG_STACK_SIZE;
589     if (sigaltstack(&new_stack, NULL) < 0) {
590     sprintf(str, GetString(STR_SIGALTSTACK_ERR), strerror(errno));
591     ErrorAlert(str);
592     QuitEmulator();
593     }
594    
595     // Install SIGILL handler for emulating privileged instructions and
596     // executing A-Trap and EMUL_OP opcodes
597     sigemptyset(&sigill_sa.sa_mask); // Block virtual 68k interrupts during SIGILL handling
598     sigaddset(&sigill_sa.sa_mask, SIG_IRQ);
599     sigaddset(&sigill_sa.sa_mask, SIGALRM);
600     sigill_sa.sa_handler = (void (*)(int))sigill_handler;
601     sigill_sa.sa_flags = SA_ONSTACK;
602     if (sigaction(SIGILL, &sigill_sa, NULL) < 0) {
603     sprintf(str, GetString(STR_SIG_INSTALL_ERR), "SIGILL", strerror(errno));
604     ErrorAlert(str);
605     QuitEmulator();
606     }
607    
608     // Install virtual 68k interrupt signal handler
609     sigemptyset(&sigirq_sa.sa_mask);
610     sigaddset(&sigirq_sa.sa_mask, SIGALRM);
611     sigirq_sa.sa_handler = (void (*)(int))sigirq_handler;
612     sigirq_sa.sa_flags = SA_ONSTACK | SA_RESTART;
613     if (sigaction(SIG_IRQ, &sigirq_sa, NULL) < 0) {
614     sprintf(str, GetString(STR_SIG_INSTALL_ERR), "SIG_IRQ", strerror(errno));
615     ErrorAlert(str);
616     QuitEmulator();
617     }
618     #endif
619 cebix 1.1
620 cebix 1.12 #ifdef ENABLE_MON
621     // Setup SIGINT handler to enter mon
622     sigemptyset(&sigint_sa.sa_mask);
623 cebix 1.21 sigint_sa.sa_handler = (void (*)(int))sigint_handler;
624 cebix 1.12 sigint_sa.sa_flags = 0;
625     sigaction(SIGINT, &sigint_sa, NULL);
626     #endif
627 cebix 1.1
628 cebix 1.39 #if defined(HAVE_PTHREADS)
629    
630     // POSIX threads available, start 60Hz thread
631 cebix 1.44 Set_pthread_attr(&tick_thread_attr, 0);
632 cebix 1.39 tick_thread_active = (pthread_create(&tick_thread, &tick_thread_attr, tick_func, NULL) == 0);
633     if (!tick_thread_active) {
634     sprintf(str, GetString(STR_TICK_THREAD_ERR), strerror(errno));
635     ErrorAlert(str);
636     QuitEmulator();
637     }
638     D(bug("60Hz thread started\n"));
639    
640     #elif defined(HAVE_TIMER_CREATE) && defined(_POSIX_REALTIME_SIGNALS)
641 cebix 1.12
642     // POSIX.4 timers and real-time signals available, start 60Hz timer
643 cebix 1.1 sigemptyset(&timer_sa.sa_mask);
644 cebix 1.19 timer_sa.sa_sigaction = (void (*)(int, siginfo_t *, void *))one_tick;
645 cebix 1.1 timer_sa.sa_flags = SA_SIGINFO | SA_RESTART;
646     if (sigaction(SIG_TIMER, &timer_sa, NULL) < 0) {
647 cebix 1.12 sprintf(str, GetString(STR_SIG_INSTALL_ERR), "SIG_TIMER", strerror(errno));
648     ErrorAlert(str);
649 cebix 1.1 QuitEmulator();
650     }
651     struct sigevent timer_event;
652     timer_event.sigev_notify = SIGEV_SIGNAL;
653     timer_event.sigev_signo = SIG_TIMER;
654     if (timer_create(CLOCK_REALTIME, &timer_event, &timer) < 0) {
655 cebix 1.12 sprintf(str, GetString(STR_TIMER_CREATE_ERR), strerror(errno));
656     ErrorAlert(str);
657 cebix 1.1 QuitEmulator();
658     }
659     struct itimerspec req;
660     req.it_value.tv_sec = 0;
661     req.it_value.tv_nsec = 16625000;
662     req.it_interval.tv_sec = 0;
663     req.it_interval.tv_nsec = 16625000;
664 cebix 1.10 if (timer_settime(timer, 0, &req, NULL) < 0) {
665 cebix 1.12 sprintf(str, GetString(STR_TIMER_SETTIME_ERR), strerror(errno));
666     ErrorAlert(str);
667 cebix 1.1 QuitEmulator();
668     }
669 cebix 1.12 D(bug("60Hz timer started\n"));
670 cebix 1.1
671 cebix 1.12 #else
672    
673     // Start 60Hz timer
674     sigemptyset(&timer_sa.sa_mask); // Block virtual 68k interrupts during SIGARLM handling
675 cebix 1.53 #if !EMULATED_68K
676 cebix 1.12 sigaddset(&timer_sa.sa_mask, SIG_IRQ);
677 cebix 1.53 #endif
678 cebix 1.12 timer_sa.sa_handler = one_tick;
679     timer_sa.sa_flags = SA_ONSTACK | SA_RESTART;
680     if (sigaction(SIGALRM, &timer_sa, NULL) < 0) {
681     sprintf(str, GetString(STR_SIG_INSTALL_ERR), "SIGALRM", strerror(errno));
682     ErrorAlert(str);
683 cebix 1.1 QuitEmulator();
684     }
685 cebix 1.12 struct itimerval req;
686     req.it_interval.tv_sec = req.it_value.tv_sec = 0;
687     req.it_interval.tv_usec = req.it_value.tv_usec = 16625;
688     setitimer(ITIMER_REAL, &req, NULL);
689    
690 cebix 1.1 #endif
691    
692 cebix 1.12 #ifdef HAVE_PTHREADS
693     // Start XPRAM watchdog thread
694 cebix 1.41 memcpy(last_xpram, XPRAM, XPRAM_SIZE);
695 cebix 1.12 xpram_thread_active = (pthread_create(&xpram_thread, NULL, xpram_func, NULL) == 0);
696     D(bug("XPRAM thread started\n"));
697 cebix 1.4 #endif
698    
699 cebix 1.1 // Start 68k and jump to ROM boot routine
700 cebix 1.12 D(bug("Starting emulation...\n"));
701 cebix 1.1 Start680x0();
702    
703     QuitEmulator();
704     return 0;
705     }
706    
707    
708     /*
709     * Quit emulator
710     */
711    
712     void QuitEmulator(void)
713     {
714 cebix 1.12 D(bug("QuitEmulator\n"));
715    
716     #if EMULATED_68K
717 cebix 1.1 // Exit 680x0 emulation
718     Exit680x0();
719 cebix 1.12 #endif
720 cebix 1.1
721 cebix 1.39 #if defined(HAVE_PTHREADS)
722 cebix 1.1 // Stop 60Hz thread
723     if (tick_thread_active) {
724     tick_thread_cancel = true;
725     #ifdef HAVE_PTHREAD_CANCEL
726     pthread_cancel(tick_thread);
727     #endif
728     pthread_join(tick_thread, NULL);
729     }
730 cebix 1.39 #elif defined(HAVE_TIMER_CREATE) && defined(_POSIX_REALTIME_SIGNALS)
731     // Stop 60Hz timer
732     timer_delete(timer);
733 cebix 1.12 #else
734     struct itimerval req;
735     req.it_interval.tv_sec = req.it_value.tv_sec = 0;
736     req.it_interval.tv_usec = req.it_value.tv_usec = 0;
737     setitimer(ITIMER_REAL, &req, NULL);
738 cebix 1.1 #endif
739    
740 cebix 1.12 #ifdef HAVE_PTHREADS
741 cebix 1.1 // Stop XPRAM watchdog thread
742     if (xpram_thread_active) {
743     xpram_thread_cancel = true;
744     #ifdef HAVE_PTHREAD_CANCEL
745     pthread_cancel(xpram_thread);
746     #endif
747     pthread_join(xpram_thread, NULL);
748     }
749 cebix 1.12 #endif
750 cebix 1.1
751 cebix 1.3 // Deinitialize everything
752     ExitAll();
753 cebix 1.1
754 cebix 1.22 // Free ROM/RAM areas
755 gbeauche 1.33 if (RAMBaseHost != VM_MAP_FAILED) {
756     vm_release(RAMBaseHost, RAMSize);
757 cebix 1.22 RAMBaseHost = NULL;
758 gbeauche 1.20 }
759 gbeauche 1.33 if (ROMBaseHost != VM_MAP_FAILED) {
760     vm_release(ROMBaseHost, 0x100000);
761 cebix 1.17 ROMBaseHost = NULL;
762     }
763 cebix 1.1
764 cebix 1.22 #if USE_SCRATCHMEM_SUBTERFUGE
765 cebix 1.12 // Delete scratch memory area
766 gbeauche 1.33 if (ScratchMem != (uint8 *)VM_MAP_FAILED) {
767     vm_release((void *)(ScratchMem - SCRATCH_MEM_SIZE/2), SCRATCH_MEM_SIZE);
768 cebix 1.17 ScratchMem = NULL;
769     }
770 cebix 1.12 #endif
771    
772     #if REAL_ADDRESSING
773     // Delete Low Memory area
774     if (lm_area_mapped)
775 gbeauche 1.33 vm_release(0, 0x2000);
776 cebix 1.12 #endif
777 gbeauche 1.33
778     // Exit VM wrappers
779     vm_exit();
780 cebix 1.12
781 cebix 1.1 // Exit system routines
782     SysExit();
783    
784     // Exit preferences
785     PrefsExit();
786    
787 gbeauche 1.59 #ifdef USE_SDL
788     // Exit SDL system
789     SDL_Quit();
790     #else
791 cebix 1.1 // Close X11 server connection
792     if (x_display)
793     XCloseDisplay(x_display);
794 gbeauche 1.59 #endif
795 cebix 1.1
796     exit(0);
797     }
798    
799    
800     /*
801     * Code was patched, flush caches if neccessary (i.e. when using a real 680x0
802     * or a dynamically recompiling emulator)
803     */
804    
805     void FlushCodeCache(void *start, uint32 size)
806     {
807 gbeauche 1.50 #if USE_JIT
808     if (UseJIT)
809 gbeauche 1.57 flush_icache_range((uintptr)start, size);
810 gbeauche 1.50 #endif
811 cebix 1.12 #if !EMULATED_68K && defined(__NetBSD__)
812     m68k_sync_icache(start, size);
813     #endif
814 cebix 1.4 }
815    
816    
817     /*
818     * SIGINT handler, enters mon
819     */
820    
821 cebix 1.12 #ifdef ENABLE_MON
822 cebix 1.4 static void sigint_handler(...)
823     {
824 cebix 1.12 #if EMULATED_68K
825 cebix 1.8 uaecptr nextpc;
826 cebix 1.12 extern void m68k_dumpstate(uaecptr *nextpc);
827 cebix 1.8 m68k_dumpstate(&nextpc);
828 cebix 1.34 #endif
829 cebix 1.37 VideoQuitFullScreen();
830 cebix 1.21 char *arg[4] = {"mon", "-m", "-r", NULL};
831     mon(3, arg);
832 cebix 1.4 QuitEmulator();
833 cebix 1.1 }
834     #endif
835    
836    
837 cebix 1.44 #ifdef HAVE_PTHREADS
838     /*
839 cebix 1.45 * Pthread configuration
840 cebix 1.44 */
841 cebix 1.45
842     void Set_pthread_attr(pthread_attr_t *attr, int priority)
843 cebix 1.44 {
844     pthread_attr_init(attr);
845     #if defined(_POSIX_THREAD_PRIORITY_SCHEDULING)
846     // Some of these only work for superuser
847     if (geteuid() == 0) {
848     pthread_attr_setinheritsched(attr, PTHREAD_EXPLICIT_SCHED);
849     pthread_attr_setschedpolicy(attr, SCHED_FIFO);
850     struct sched_param fifo_param;
851     fifo_param.sched_priority = ((sched_get_priority_min(SCHED_FIFO) +
852     sched_get_priority_max(SCHED_FIFO)) / 2 +
853     priority);
854     pthread_attr_setschedparam(attr, &fifo_param);
855     }
856     if (pthread_attr_setscope(attr, PTHREAD_SCOPE_SYSTEM) != 0) {
857     #ifdef PTHREAD_SCOPE_BOUND_NP
858     // If system scope is not available (eg. we're not running
859     // with CAP_SCHED_MGT capability on an SGI box), try bound
860     // scope. It exposes pthread scheduling to the kernel,
861     // without setting realtime priority.
862     pthread_attr_setscope(attr, PTHREAD_SCOPE_BOUND_NP);
863     #endif
864     }
865     #endif
866     }
867     #endif // HAVE_PTHREADS
868    
869    
870 cebix 1.1 /*
871 cebix 1.37 * Mutexes
872     */
873    
874     #ifdef HAVE_PTHREADS
875    
876     struct B2_mutex {
877 cebix 1.44 B2_mutex() {
878     pthread_mutexattr_t attr;
879     pthread_mutexattr_init(&attr);
880     // Initialize the mutex for priority inheritance --
881     // required for accurate timing.
882     #ifdef HAVE_PTHREAD_MUTEXATTR_SETPROTOCOL
883     pthread_mutexattr_setprotocol(&attr, PTHREAD_PRIO_INHERIT);
884     #endif
885     #if defined(HAVE_PTHREAD_MUTEXATTR_SETTYPE) && defined(PTHREAD_MUTEX_NORMAL)
886     pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_NORMAL);
887     #endif
888 gbeauche 1.49 #ifdef HAVE_PTHREAD_MUTEXATTR_SETPSHARED
889 cebix 1.44 pthread_mutexattr_setpshared(&attr, PTHREAD_PROCESS_PRIVATE);
890 gbeauche 1.49 #endif
891 cebix 1.44 pthread_mutex_init(&m, &attr);
892     pthread_mutexattr_destroy(&attr);
893     }
894 gbeauche 1.51 ~B2_mutex() {
895     pthread_mutex_trylock(&m); // Make sure it's locked before
896     pthread_mutex_unlock(&m); // unlocking it.
897     pthread_mutex_destroy(&m);
898     }
899 cebix 1.37 pthread_mutex_t m;
900     };
901    
902     B2_mutex *B2_create_mutex(void)
903     {
904     return new B2_mutex;
905     }
906    
907     void B2_lock_mutex(B2_mutex *mutex)
908     {
909     pthread_mutex_lock(&mutex->m);
910     }
911    
912     void B2_unlock_mutex(B2_mutex *mutex)
913     {
914     pthread_mutex_unlock(&mutex->m);
915     }
916    
917     void B2_delete_mutex(B2_mutex *mutex)
918     {
919     delete mutex;
920     }
921    
922     #else
923    
924     struct B2_mutex {
925     int dummy;
926     };
927    
928     B2_mutex *B2_create_mutex(void)
929     {
930     return new B2_mutex;
931     }
932    
933     void B2_lock_mutex(B2_mutex *mutex)
934     {
935     }
936    
937     void B2_unlock_mutex(B2_mutex *mutex)
938     {
939     }
940    
941     void B2_delete_mutex(B2_mutex *mutex)
942     {
943     delete mutex;
944     }
945    
946     #endif
947    
948    
949     /*
950 cebix 1.1 * Interrupt flags (must be handled atomically!)
951     */
952    
953     uint32 InterruptFlags = 0;
954    
955 cebix 1.12 #if EMULATED_68K
956 cebix 1.1 void SetInterruptFlag(uint32 flag)
957     {
958 cebix 1.37 LOCK_INTFLAGS;
959 cebix 1.1 InterruptFlags |= flag;
960 cebix 1.37 UNLOCK_INTFLAGS;
961 cebix 1.1 }
962    
963     void ClearInterruptFlag(uint32 flag)
964     {
965 cebix 1.37 LOCK_INTFLAGS;
966 cebix 1.1 InterruptFlags &= ~flag;
967 cebix 1.37 UNLOCK_INTFLAGS;
968 cebix 1.12 }
969     #endif
970    
971     #if !EMULATED_68K
972     void TriggerInterrupt(void)
973     {
974     #if defined(HAVE_PTHREADS)
975     pthread_kill(emul_thread, SIG_IRQ);
976     #else
977     raise(SIG_IRQ);
978     #endif
979 cebix 1.22 }
980    
981     void TriggerNMI(void)
982     {
983     // not yet supported
984 cebix 1.12 }
985     #endif
986    
987    
988     /*
989     * XPRAM watchdog thread (saves XPRAM every minute)
990     */
991    
992     static void xpram_watchdog(void)
993     {
994 cebix 1.41 if (memcmp(last_xpram, XPRAM, XPRAM_SIZE)) {
995     memcpy(last_xpram, XPRAM, XPRAM_SIZE);
996 cebix 1.12 SaveXPRAM();
997     }
998     }
999    
1000     #ifdef HAVE_PTHREADS
1001     static void *xpram_func(void *arg)
1002     {
1003     while (!xpram_thread_cancel) {
1004 cebix 1.16 for (int i=0; i<60 && !xpram_thread_cancel; i++)
1005 cebix 1.29 Delay_usec(999999); // Only wait 1 second so we quit promptly when xpram_thread_cancel becomes true
1006 cebix 1.12 xpram_watchdog();
1007     }
1008     return NULL;
1009 cebix 1.1 }
1010 cebix 1.12 #endif
1011 cebix 1.1
1012    
1013     /*
1014     * 60Hz thread (really 60.15Hz)
1015     */
1016    
1017 cebix 1.12 static void one_second(void)
1018     {
1019     // Pseudo Mac 1Hz interrupt, update local time
1020     WriteMacInt32(0x20c, TimerDateTime());
1021    
1022 cebix 1.18 SetInterruptFlag(INTFLAG_1HZ);
1023 cebix 1.14 TriggerInterrupt();
1024    
1025 cebix 1.12 #ifndef HAVE_PTHREADS
1026     static int second_counter = 0;
1027     if (++second_counter > 60) {
1028     second_counter = 0;
1029     xpram_watchdog();
1030     }
1031     #endif
1032     }
1033    
1034 cebix 1.1 static void one_tick(...)
1035     {
1036     static int tick_counter = 0;
1037     if (++tick_counter > 60) {
1038     tick_counter = 0;
1039 cebix 1.12 one_second();
1040 cebix 1.1 }
1041    
1042 gbeauche 1.59 #if !defined(HAVE_PTHREADS) && !defined(USE_SDL_VIDEO)
1043 cebix 1.40 // No threads available, perform video refresh and networking from here
1044 cebix 1.12 VideoRefresh();
1045 cebix 1.40 SetInterruptFlag(INTFLAG_ETHER);
1046 cebix 1.12 #endif
1047    
1048 cebix 1.1 // Trigger 60Hz interrupt
1049     if (ROMVersion != ROM_VERSION_CLASSIC || HasMacStarted()) {
1050     SetInterruptFlag(INTFLAG_60HZ);
1051     TriggerInterrupt();
1052     }
1053     }
1054    
1055 cebix 1.12 #ifdef HAVE_PTHREADS
1056 cebix 1.1 static void *tick_func(void *arg)
1057     {
1058 cebix 1.39 uint64 start = GetTicks_usec();
1059     int64 ticks = 0;
1060 cebix 1.16 uint64 next = GetTicks_usec();
1061 cebix 1.1 while (!tick_thread_cancel) {
1062 cebix 1.16 one_tick();
1063     next += 16625;
1064     int64 delay = next - GetTicks_usec();
1065     if (delay > 0)
1066     Delay_usec(delay);
1067     else if (delay < -16625)
1068     next = GetTicks_usec();
1069 cebix 1.39 ticks++;
1070 cebix 1.16 }
1071 cebix 1.39 uint64 end = GetTicks_usec();
1072     D(bug("%Ld ticks in %Ld usec = %f ticks/sec\n", ticks, end - start, ticks * 1000000.0 / (end - start)));
1073 cebix 1.16 return NULL;
1074     }
1075     #endif
1076 cebix 1.12
1077    
1078     #if !EMULATED_68K
1079     /*
1080     * Virtual 68k interrupt handler
1081     */
1082    
1083     static void sigirq_handler(int sig, int code, struct sigcontext *scp)
1084     {
1085     // Interrupts disabled? Then do nothing
1086     if (EmulatedSR & 0x0700)
1087     return;
1088    
1089     struct sigstate *state = (struct sigstate *)scp->sc_ap;
1090     M68kRegisters *regs = (M68kRegisters *)&state->ss_frame;
1091    
1092     // Set up interrupt frame on stack
1093     uint32 a7 = regs->a[7];
1094     a7 -= 2;
1095     WriteMacInt16(a7, 0x64);
1096     a7 -= 4;
1097     WriteMacInt32(a7, scp->sc_pc);
1098     a7 -= 2;
1099     WriteMacInt16(a7, scp->sc_ps | EmulatedSR);
1100     scp->sc_sp = regs->a[7] = a7;
1101    
1102     // Set interrupt level
1103     EmulatedSR |= 0x2100;
1104    
1105     // Jump to MacOS interrupt handler on return
1106     scp->sc_pc = ReadMacInt32(0x64);
1107     }
1108 cebix 1.1
1109    
1110     /*
1111 cebix 1.12 * SIGILL handler, for emulation of privileged instructions and executing
1112     * A-Trap and EMUL_OP opcodes
1113 cebix 1.1 */
1114    
1115 cebix 1.12 static void sigill_handler(int sig, int code, struct sigcontext *scp)
1116 cebix 1.1 {
1117 cebix 1.12 struct sigstate *state = (struct sigstate *)scp->sc_ap;
1118     uint16 *pc = (uint16 *)scp->sc_pc;
1119     uint16 opcode = *pc;
1120     M68kRegisters *regs = (M68kRegisters *)&state->ss_frame;
1121    
1122     #define INC_PC(n) scp->sc_pc += (n)
1123    
1124     #define GET_SR (scp->sc_ps | EmulatedSR)
1125    
1126     #define STORE_SR(v) \
1127     scp->sc_ps = (v) & 0xff; \
1128 cebix 1.24 EmulatedSR = (v) & 0xe700; \
1129 cebix 1.12 if (((v) & 0x0700) == 0 && InterruptFlags) \
1130     TriggerInterrupt();
1131    
1132     //printf("opcode %04x at %p, sr %04x, emul_sr %04x\n", opcode, pc, scp->sc_ps, EmulatedSR);
1133    
1134     if ((opcode & 0xf000) == 0xa000) {
1135    
1136     // A-Line instruction, set up A-Line trap frame on stack
1137     uint32 a7 = regs->a[7];
1138     a7 -= 2;
1139     WriteMacInt16(a7, 0x28);
1140     a7 -= 4;
1141     WriteMacInt32(a7, (uint32)pc);
1142     a7 -= 2;
1143     WriteMacInt16(a7, GET_SR);
1144     scp->sc_sp = regs->a[7] = a7;
1145    
1146     // Jump to MacOS A-Line handler on return
1147     scp->sc_pc = ReadMacInt32(0x28);
1148    
1149     } else if ((opcode & 0xff00) == 0x7100) {
1150    
1151     // Extended opcode, push registers on user stack
1152     uint32 a7 = regs->a[7];
1153     a7 -= 4;
1154     WriteMacInt32(a7, (uint32)pc);
1155     a7 -= 2;
1156     WriteMacInt16(a7, scp->sc_ps);
1157     for (int i=7; i>=0; i--) {
1158     a7 -= 4;
1159     WriteMacInt32(a7, regs->a[i]);
1160     }
1161     for (int i=7; i>=0; i--) {
1162     a7 -= 4;
1163     WriteMacInt32(a7, regs->d[i]);
1164     }
1165     scp->sc_sp = regs->a[7] = a7;
1166    
1167     // Jump to EmulOp trampoline code on return
1168     scp->sc_pc = (uint32)EmulOpTrampoline;
1169    
1170     } else switch (opcode) { // Emulate privileged instructions
1171    
1172     case 0x40e7: // move sr,-(sp)
1173     regs->a[7] -= 2;
1174     WriteMacInt16(regs->a[7], GET_SR);
1175     scp->sc_sp = regs->a[7];
1176     INC_PC(2);
1177     break;
1178    
1179     case 0x46df: { // move (sp)+,sr
1180     uint16 sr = ReadMacInt16(regs->a[7]);
1181     STORE_SR(sr);
1182     regs->a[7] += 2;
1183     scp->sc_sp = regs->a[7];
1184     INC_PC(2);
1185     break;
1186     }
1187    
1188     case 0x007c: { // ori #xxxx,sr
1189     uint16 sr = GET_SR | pc[1];
1190     scp->sc_ps = sr & 0xff; // oring bits into the sr can't enable interrupts, so we don't need to call STORE_SR
1191 cebix 1.24 EmulatedSR = sr & 0xe700;
1192 cebix 1.12 INC_PC(4);
1193     break;
1194     }
1195    
1196     case 0x027c: { // andi #xxxx,sr
1197     uint16 sr = GET_SR & pc[1];
1198     STORE_SR(sr);
1199     INC_PC(4);
1200     break;
1201     }
1202    
1203     case 0x46fc: // move #xxxx,sr
1204     STORE_SR(pc[1]);
1205     INC_PC(4);
1206     break;
1207    
1208     case 0x46ef: { // move (xxxx,sp),sr
1209     uint16 sr = ReadMacInt16(regs->a[7] + (int32)(int16)pc[1]);
1210     STORE_SR(sr);
1211     INC_PC(4);
1212     break;
1213     }
1214    
1215     case 0x46d8: // move (a0)+,sr
1216     case 0x46d9: { // move (a1)+,sr
1217     uint16 sr = ReadMacInt16(regs->a[opcode & 7]);
1218     STORE_SR(sr);
1219     regs->a[opcode & 7] += 2;
1220     INC_PC(2);
1221     break;
1222     }
1223 cebix 1.1
1224 cebix 1.12 case 0x40f8: // move sr,xxxx.w
1225     WriteMacInt16(pc[1], GET_SR);
1226     INC_PC(4);
1227     break;
1228    
1229     case 0x40d0: // move sr,(a0)
1230     case 0x40d1: // move sr,(a1)
1231     case 0x40d2: // move sr,(a2)
1232     case 0x40d3: // move sr,(a3)
1233     case 0x40d4: // move sr,(a4)
1234     case 0x40d5: // move sr,(a5)
1235     case 0x40d6: // move sr,(a6)
1236     case 0x40d7: // move sr,(sp)
1237     WriteMacInt16(regs->a[opcode & 7], GET_SR);
1238     INC_PC(2);
1239     break;
1240    
1241     case 0x40c0: // move sr,d0
1242     case 0x40c1: // move sr,d1
1243     case 0x40c2: // move sr,d2
1244     case 0x40c3: // move sr,d3
1245     case 0x40c4: // move sr,d4
1246     case 0x40c5: // move sr,d5
1247     case 0x40c6: // move sr,d6
1248     case 0x40c7: // move sr,d7
1249     regs->d[opcode & 7] = GET_SR;
1250     INC_PC(2);
1251     break;
1252    
1253     case 0x46c0: // move d0,sr
1254     case 0x46c1: // move d1,sr
1255     case 0x46c2: // move d2,sr
1256     case 0x46c3: // move d3,sr
1257     case 0x46c4: // move d4,sr
1258     case 0x46c5: // move d5,sr
1259     case 0x46c6: // move d6,sr
1260     case 0x46c7: { // move d7,sr
1261     uint16 sr = regs->d[opcode & 7];
1262     STORE_SR(sr);
1263     INC_PC(2);
1264     break;
1265 cebix 1.1 }
1266 cebix 1.12
1267     case 0xf327: // fsave -(sp)
1268 cebix 1.35 regs->a[7] -= 4;
1269     WriteMacInt32(regs->a[7], 0x41000000); // Idle frame
1270 cebix 1.24 scp->sc_sp = regs->a[7];
1271     INC_PC(2);
1272     break;
1273 cebix 1.12
1274     case 0xf35f: // frestore (sp)+
1275 cebix 1.35 regs->a[7] += 4;
1276 cebix 1.24 scp->sc_sp = regs->a[7];
1277     INC_PC(2);
1278     break;
1279 cebix 1.12
1280 cebix 1.24 case 0x4e73: { // rte
1281 cebix 1.12 uint32 a7 = regs->a[7];
1282     uint16 sr = ReadMacInt16(a7);
1283     a7 += 2;
1284     scp->sc_ps = sr & 0xff;
1285 cebix 1.24 EmulatedSR = sr & 0xe700;
1286 cebix 1.12 scp->sc_pc = ReadMacInt32(a7);
1287 cebix 1.24 a7 += 4;
1288     uint16 format = ReadMacInt16(a7) >> 12;
1289     a7 += 2;
1290     static const int frame_adj[16] = {
1291     0, 0, 4, 4, 8, 0, 0, 52, 50, 12, 24, 84, 16, 0, 0, 0
1292     };
1293     scp->sc_sp = regs->a[7] = a7 + frame_adj[format];
1294 cebix 1.12 break;
1295 cebix 1.1 }
1296 cebix 1.12
1297     case 0x4e7a: // movec cr,x
1298     switch (pc[1]) {
1299     case 0x0002: // movec cacr,d0
1300     regs->d[0] = 0x3111;
1301     break;
1302     case 0x1002: // movec cacr,d1
1303     regs->d[1] = 0x3111;
1304     break;
1305     case 0x0003: // movec tc,d0
1306 cebix 1.24 case 0x0004: // movec itt0,d0
1307     case 0x0005: // movec itt1,d0
1308     case 0x0006: // movec dtt0,d0
1309     case 0x0007: // movec dtt1,d0
1310     case 0x0806: // movec urp,d0
1311     case 0x0807: // movec srp,d0
1312 cebix 1.12 regs->d[0] = 0;
1313     break;
1314 cebix 1.24 case 0x1000: // movec sfc,d1
1315     case 0x1001: // movec dfc,d1
1316 cebix 1.12 case 0x1003: // movec tc,d1
1317 cebix 1.24 case 0x1801: // movec vbr,d1
1318 cebix 1.12 regs->d[1] = 0;
1319     break;
1320 cebix 1.24 case 0x8801: // movec vbr,a0
1321     regs->a[0] = 0;
1322     break;
1323     case 0x9801: // movec vbr,a1
1324     regs->a[1] = 0;
1325     break;
1326 cebix 1.12 default:
1327     goto ill;
1328     }
1329     INC_PC(4);
1330     break;
1331    
1332     case 0x4e7b: // movec x,cr
1333     switch (pc[1]) {
1334 cebix 1.24 case 0x1000: // movec d1,sfc
1335     case 0x1001: // movec d1,dfc
1336 cebix 1.12 case 0x0801: // movec d0,vbr
1337 cebix 1.24 case 0x1801: // movec d1,vbr
1338 cebix 1.12 break;
1339     case 0x0002: // movec d0,cacr
1340     case 0x1002: // movec d1,cacr
1341     FlushCodeCache(NULL, 0);
1342     break;
1343     default:
1344     goto ill;
1345     }
1346     INC_PC(4);
1347     break;
1348    
1349     case 0xf478: // cpusha dc
1350     case 0xf4f8: // cpusha dc/ic
1351     FlushCodeCache(NULL, 0);
1352     INC_PC(2);
1353     break;
1354    
1355     default:
1356     ill: printf("SIGILL num %d, code %d\n", sig, code);
1357     printf(" context %p:\n", scp);
1358     printf(" onstack %08x\n", scp->sc_onstack);
1359     printf(" sp %08x\n", scp->sc_sp);
1360     printf(" fp %08x\n", scp->sc_fp);
1361     printf(" pc %08x\n", scp->sc_pc);
1362     printf(" opcode %04x\n", opcode);
1363     printf(" sr %08x\n", scp->sc_ps);
1364     printf(" state %p:\n", state);
1365     printf(" flags %d\n", state->ss_flags);
1366     for (int i=0; i<8; i++)
1367     printf(" d%d %08x\n", i, state->ss_frame.f_regs[i]);
1368     for (int i=0; i<8; i++)
1369     printf(" a%d %08x\n", i, state->ss_frame.f_regs[i+8]);
1370    
1371 cebix 1.37 VideoQuitFullScreen();
1372 cebix 1.12 #ifdef ENABLE_MON
1373 cebix 1.21 char *arg[4] = {"mon", "-m", "-r", NULL};
1374     mon(3, arg);
1375 cebix 1.12 #endif
1376     QuitEmulator();
1377     break;
1378 cebix 1.1 }
1379     }
1380 cebix 1.12 #endif
1381 cebix 1.1
1382    
1383     /*
1384     * Display alert
1385     */
1386    
1387 cebix 1.12 #ifdef ENABLE_GTK
1388 cebix 1.1 static void dl_destroyed(void)
1389     {
1390     gtk_main_quit();
1391     }
1392    
1393     static void dl_quit(GtkWidget *dialog)
1394     {
1395     gtk_widget_destroy(dialog);
1396     }
1397    
1398     void display_alert(int title_id, int prefix_id, int button_id, const char *text)
1399     {
1400     char str[256];
1401     sprintf(str, GetString(prefix_id), text);
1402    
1403     GtkWidget *dialog = gtk_dialog_new();
1404     gtk_window_set_title(GTK_WINDOW(dialog), GetString(title_id));
1405     gtk_container_border_width(GTK_CONTAINER(dialog), 5);
1406     gtk_widget_set_uposition(GTK_WIDGET(dialog), 100, 150);
1407     gtk_signal_connect(GTK_OBJECT(dialog), "destroy", GTK_SIGNAL_FUNC(dl_destroyed), NULL);
1408    
1409     GtkWidget *label = gtk_label_new(str);
1410     gtk_widget_show(label);
1411     gtk_box_pack_start(GTK_BOX(GTK_DIALOG(dialog)->vbox), label, TRUE, TRUE, 0);
1412    
1413     GtkWidget *button = gtk_button_new_with_label(GetString(button_id));
1414     gtk_widget_show(button);
1415     gtk_signal_connect_object(GTK_OBJECT(button), "clicked", GTK_SIGNAL_FUNC(dl_quit), GTK_OBJECT(dialog));
1416     gtk_box_pack_start(GTK_BOX(GTK_DIALOG(dialog)->action_area), button, FALSE, FALSE, 0);
1417     GTK_WIDGET_SET_FLAGS(button, GTK_CAN_DEFAULT);
1418     gtk_widget_grab_default(button);
1419     gtk_widget_show(dialog);
1420    
1421     gtk_main();
1422     }
1423     #endif
1424    
1425    
1426     /*
1427     * Display error alert
1428     */
1429    
1430     void ErrorAlert(const char *text)
1431     {
1432 gbeauche 1.59 #if defined(ENABLE_GTK) && !defined(USE_SDL_VIDEO)
1433 cebix 1.1 if (PrefsFindBool("nogui") || x_display == NULL) {
1434     printf(GetString(STR_SHELL_ERROR_PREFIX), text);
1435     return;
1436     }
1437     VideoQuitFullScreen();
1438     display_alert(STR_ERROR_ALERT_TITLE, STR_GUI_ERROR_PREFIX, STR_QUIT_BUTTON, text);
1439     #else
1440     printf(GetString(STR_SHELL_ERROR_PREFIX), text);
1441     #endif
1442     }
1443    
1444    
1445     /*
1446     * Display warning alert
1447     */
1448    
1449     void WarningAlert(const char *text)
1450     {
1451 gbeauche 1.59 #if defined(ENABLE_GTK) && !defined(USE_SDL_VIDEO)
1452 cebix 1.1 if (PrefsFindBool("nogui") || x_display == NULL) {
1453     printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1454     return;
1455     }
1456     display_alert(STR_WARNING_ALERT_TITLE, STR_GUI_WARNING_PREFIX, STR_OK_BUTTON, text);
1457     #else
1458     printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1459     #endif
1460     }
1461    
1462    
1463     /*
1464     * Display choice alert
1465     */
1466    
1467     bool ChoiceAlert(const char *text, const char *pos, const char *neg)
1468     {
1469     printf(GetString(STR_SHELL_WARNING_PREFIX), text);
1470     return false; //!!
1471     }