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root/cebix/SheepShaver/src/kpx_cpu/sheepshaver_glue.cpp
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Comparing SheepShaver/src/kpx_cpu/sheepshaver_glue.cpp (file contents):
Revision 1.52 by gbeauche, 2004-11-13T14:09:16Z vs.
Revision 1.68 by gbeauche, 2006-05-03T21:45:14Z

# Line 1 | Line 1
1   /*
2   *  sheepshaver_glue.cpp - Glue Kheperix CPU to SheepShaver CPU engine interface
3   *
4 < *  SheepShaver (C) 1997-2004 Christian Bauer and Marc Hellwig
4 > *  SheepShaver (C) 1997-2005 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
# Line 42 | Line 42
42  
43   #include <stdio.h>
44   #include <stdlib.h>
45 + #ifdef HAVE_MALLOC_H
46 + #include <malloc.h>
47 + #endif
48  
49   #ifdef USE_SDL_VIDEO
50   #include <SDL_events.h>
# Line 86 | Line 89 | extern uintptr SignalStackBase();
89  
90   // From rsrc_patches.cpp
91   extern "C" void check_load_invoc(uint32 type, int16 id, uint32 h);
92 + extern "C" void named_check_load_invoc(uint32 type, uint32 name, uint32 h);
93  
94   // PowerPC EmulOp to exit from emulation looop
95   const uint32 POWERPC_EXEC_RETURN = POWERPC_EMUL_OP | 1;
96  
93 // Enable interrupt routine safety checks?
94 #define SAFE_INTERRUPT_PPC 1
95
97   // Enable Execute68k() safety checks?
98   #define SAFE_EXEC_68K 1
99  
# Line 139 | Line 140 | class sheepshaver_cpu
140          void init_decoder();
141          void execute_sheep(uint32 opcode);
142  
142        // CPU context to preserve on interrupt
143        class interrupt_context {
144                uint32 gpr[32];
145                uint32 pc;
146                uint32 lr;
147                uint32 ctr;
148                uint32 cr;
149                uint32 xer;
150                sheepshaver_cpu *cpu;
151                const char *where;
152        public:
153                interrupt_context(sheepshaver_cpu *_cpu, const char *_where);
154                ~interrupt_context();
155        };
156
143   public:
144  
145          // Constructor
# Line 180 | Line 166 | public:
166          // Execute MacOS/PPC code
167          uint32 execute_macos_code(uint32 tvect, int nargs, uint32 const *args);
168  
169 + #if PPC_ENABLE_JIT
170          // Compile one instruction
171          virtual int compile1(codegen_context_t & cg_context);
172 <
172 > #endif
173          // Resource manager thunk
174          void get_resource(uint32 old_get_resource);
175  
176          // Handle MacOS interrupt
177          void interrupt(uint32 entry);
191        void handle_interrupt();
178  
179          // Make sure the SIGSEGV handler can access CPU registers
180          friend sigsegv_return_t sigsegv_handler(sigsegv_address_t, sigsegv_address_t);
181   };
182  
197 // Memory allocator returning areas aligned on 16-byte boundaries
198 void *operator new(size_t size)
199 {
200        void *p;
201
202 #if defined(HAVE_POSIX_MEMALIGN)
203        if (posix_memalign(&p, 16, size) != 0)
204                throw std::bad_alloc();
205 #elif defined(HAVE_MEMALIGN)
206        p = memalign(16, size);
207 #elif defined(HAVE_VALLOC)
208        p = valloc(size); // page-aligned!
209 #else
210        /* XXX: handle padding ourselves */
211        p = malloc(size);
212 #endif
213
214        return p;
215 }
216
217 void operator delete(void *p)
218 {
219 #if defined(HAVE_MEMALIGN) || defined(HAVE_VALLOC)
220 #if defined(__GLIBC__)
221        // this is known to work only with GNU libc
222        free(p);
223 #endif
224 #else
225        free(p);
226 #endif
227 }
228
183   sheepshaver_cpu::sheepshaver_cpu()
184          : powerpc_cpu(enable_jit_p())
185   {
# Line 274 | Line 228 | void sheepshaver_cpu::execute_emul_op(ui
228          for (int i = 0; i < 7; i++)
229                  r68.a[i] = gpr(16 + i);
230          r68.a[7] = gpr(1);
231 <        uint32 saved_cr = get_cr() & CR_field<2>::mask();
231 >        uint32 saved_cr = get_cr() & 0xff9fffff; // mask_operand::compute(11, 8)
232          uint32 saved_xer = get_xer();
233          EmulOp(&r68, gpr(24), emul_op);
234          set_cr(saved_cr);
# Line 318 | Line 272 | void sheepshaver_cpu::execute_sheep(uint
272   }
273  
274   // Compile one instruction
275 + #if PPC_ENABLE_JIT
276   int sheepshaver_cpu::compile1(codegen_context_t & cg_context)
277   {
323 #if PPC_ENABLE_JIT
278          const instr_info_t *ii = cg_context.instr_info;
279          if (ii->mnemo != PPC_I(SHEEP))
280                  return COMPILE_FAILURE;
# Line 390 | Line 344 | int sheepshaver_cpu::compile1(codegen_co
344                          dg.gen_invoke_T0_T1_T2((void (*)(uint32, uint32, uint32))check_load_invoc);
345                          status = COMPILE_CODE_OK;
346                          break;
347 +                case NATIVE_NAMED_CHECK_LOAD_INVOC:
348 +                        dg.gen_load_T0_GPR(3);
349 +                        dg.gen_load_T1_GPR(4);
350 +                        dg.gen_load_T2_GPR(5);
351 +                        dg.gen_invoke_T0_T1_T2((void (*)(uint32, uint32, uint32))named_check_load_invoc);
352 +                        status = COMPILE_CODE_OK;
353 +                        break;
354   #endif
355                  case NATIVE_BITBLT:
356                          dg.gen_load_T0_GPR(3);
# Line 466 | Line 427 | int sheepshaver_cpu::compile1(codegen_co
427          }
428          }
429          return status;
469 #endif
470        return COMPILE_FAILURE;
430   }
472
473 // CPU context to preserve on interrupt
474 sheepshaver_cpu::interrupt_context::interrupt_context(sheepshaver_cpu *_cpu, const char *_where)
475 {
476 #if SAFE_INTERRUPT_PPC >= 2
477        cpu = _cpu;
478        where = _where;
479
480        // Save interrupt context
481        memcpy(&gpr[0], &cpu->gpr(0), sizeof(gpr));
482        pc = cpu->pc();
483        lr = cpu->lr();
484        ctr = cpu->ctr();
485        cr = cpu->get_cr();
486        xer = cpu->get_xer();
431   #endif
488 }
489
490 sheepshaver_cpu::interrupt_context::~interrupt_context()
491 {
492 #if SAFE_INTERRUPT_PPC >= 2
493        // Check whether CPU context was preserved by interrupt
494        if (memcmp(&gpr[0], &cpu->gpr(0), sizeof(gpr)) != 0) {
495                printf("FATAL: %s: interrupt clobbers registers\n", where);
496                for (int i = 0; i < 32; i++)
497                        if (gpr[i] != cpu->gpr(i))
498                                printf(" r%d: %08x -> %08x\n", i, gpr[i], cpu->gpr(i));
499        }
500        if (pc != cpu->pc())
501                printf("FATAL: %s: interrupt clobbers PC\n", where);
502        if (lr != cpu->lr())
503                printf("FATAL: %s: interrupt clobbers LR\n", where);
504        if (ctr != cpu->ctr())
505                printf("FATAL: %s: interrupt clobbers CTR\n", where);
506        if (cr != cpu->get_cr())
507                printf("FATAL: %s: interrupt clobbers CR\n", where);
508        if (xer != cpu->get_xer())
509                printf("FATAL: %s: interrupt clobbers XER\n", where);
510 #endif
511 }
432  
433   // Handle MacOS interrupt
434   void sheepshaver_cpu::interrupt(uint32 entry)
# Line 518 | Line 438 | void sheepshaver_cpu::interrupt(uint32 e
438          const clock_t interrupt_start = clock();
439   #endif
440  
521 #if SAFE_INTERRUPT_PPC
522        static int depth = 0;
523        if (depth != 0)
524                printf("FATAL: sheepshaver_cpu::interrupt() called more than once: %d\n", depth);
525        depth++;
526 #endif
527
441          // Save program counters and branch registers
442          uint32 saved_pc = pc();
443          uint32 saved_lr = lr();
# Line 578 | Line 491 | void sheepshaver_cpu::interrupt(uint32 e
491   #if EMUL_TIME_STATS
492          interrupt_time += (clock() - interrupt_start);
493   #endif
581
582 #if SAFE_INTERRUPT_PPC
583        depth--;
584 #endif
494   }
495  
496   // Execute 68k routine
# Line 859 | Line 768 | sigsegv_return_t sigsegv_handler(sigsegv
768   #error "FIXME: You don't have the capability to skip instruction within signal handlers"
769   #endif
770  
771 <        printf("SIGSEGV\n");
772 <        printf("  pc %p\n", fault_instruction);
773 <        printf("  ea %p\n", fault_address);
771 >        fprintf(stderr, "SIGSEGV\n");
772 >        fprintf(stderr, "  pc %p\n", fault_instruction);
773 >        fprintf(stderr, "  ea %p\n", fault_address);
774          dump_registers();
775          ppc_cpu->dump_log();
776          enter_mon();
# Line 925 | Line 834 | void exit_emul_ppc(void)
834   #endif
835  
836          delete ppc_cpu;
837 +        ppc_cpu = NULL;
838   }
839  
840   #if PPC_ENABLE_JIT && PPC_REENTRANT_JIT
# Line 972 | Line 882 | void emul_ppc(uint32 entry)
882  
883   void TriggerInterrupt(void)
884   {
885 +        idle_resume();
886   #if 0
887    WriteMacInt32(0x16a, ReadMacInt32(0x16a) + 1);
888   #else
# Line 981 | Line 892 | void TriggerInterrupt(void)
892   #endif
893   }
894  
895 < void sheepshaver_cpu::handle_interrupt(void)
895 > void HandleInterrupt(powerpc_registers *r)
896   {
897   #ifdef USE_SDL_VIDEO
898          // We must fill in the events queue in the same thread that did call SDL_SetVideoMode()
# Line 992 | Line 903 | void sheepshaver_cpu::handle_interrupt(v
903          if (int32(ReadMacInt32(XLM_IRQ_NEST)) > 0)
904                  return;
905  
906 <        // Current interrupt nest level
996 <        static int interrupt_depth = 0;
997 <        ++interrupt_depth;
906 >        // Update interrupt count
907   #if EMUL_TIME_STATS
908          interrupt_count++;
909   #endif
910  
1002        // Disable MacOS stack sniffer
1003        WriteMacInt32(0x110, 0);
1004
911          // Interrupt action depends on current run mode
912          switch (ReadMacInt32(XLM_RUN_MODE)) {
913          case MODE_68K:
914                  // 68k emulator active, trigger 68k interrupt level 1
915                  WriteMacInt16(tswap32(kernel_data->v[0x67c >> 2]), 1);
916 <                set_cr(get_cr() | tswap32(kernel_data->v[0x674 >> 2]));
916 >                r->cr.set(r->cr.get() | tswap32(kernel_data->v[0x674 >> 2]));
917                  break;
918      
919   #if INTERRUPTS_IN_NATIVE_MODE
920          case MODE_NATIVE:
921                  // 68k emulator inactive, in nanokernel?
922 <                if (gpr(1) != KernelDataAddr && interrupt_depth == 1) {
1017 <                        interrupt_context ctx(this, "PowerPC mode");
922 >                if (r->gpr[1] != KernelDataAddr) {
923  
924                          // Prepare for 68k interrupt level 1
925                          WriteMacInt16(tswap32(kernel_data->v[0x67c >> 2]), 1);
# Line 1036 | Line 941 | void sheepshaver_cpu::handle_interrupt(v
941          case MODE_EMUL_OP:
942                  // 68k emulator active, within EMUL_OP routine, execute 68k interrupt routine directly when interrupt level is 0
943                  if ((ReadMacInt32(XLM_68K_R25) & 7) == 0) {
1039                        interrupt_context ctx(this, "68k mode");
944   #if EMUL_TIME_STATS
945                          const clock_t interrupt_start = clock();
946   #endif
# Line 1045 | Line 949 | void sheepshaver_cpu::handle_interrupt(v
949                          M68kRegisters r;
950                          uint32 old_r25 = ReadMacInt32(XLM_68K_R25);     // Save interrupt level
951                          WriteMacInt32(XLM_68K_R25, 0x21);                       // Execute with interrupt level 1
952 <                        static const uint8 proc[] = {
952 >                        static const uint8 proc_template[] = {
953                                  0x3f, 0x3c, 0x00, 0x00,                 // move.w       #$0000,-(sp)    (fake format word)
954                                  0x48, 0x7a, 0x00, 0x0a,                 // pea          @1(pc)                  (return address)
955                                  0x40, 0xe7,                                             // move         sr,-(sp)                (saved SR)
# Line 1053 | Line 957 | void sheepshaver_cpu::handle_interrupt(v
957                                  0x4e, 0xd0,                                             // jmp          (a0)
958                                  M68K_RTS >> 8, M68K_RTS & 0xff  // @1
959                          };
960 <                        Execute68k(Host2MacAddr((uint8 *)proc), &r);
960 >                        BUILD_SHEEPSHAVER_PROCEDURE(proc);
961 >                        Execute68k(proc, &r);
962                          WriteMacInt32(XLM_68K_R25, old_r25);            // Restore interrupt level
963   #else
964                          // Only update cursor
# Line 1072 | Line 977 | void sheepshaver_cpu::handle_interrupt(v
977                  break;
978   #endif
979          }
1075
1076        // We are done with this interrupt
1077        --interrupt_depth;
980   }
981  
1080 static void get_resource(void);
1081 static void get_1_resource(void);
1082 static void get_ind_resource(void);
1083 static void get_1_ind_resource(void);
1084 static void r_get_resource(void);
1085
982   // Execute NATIVE_OP routine
983   void sheepshaver_cpu::execute_native_op(uint32 selector)
984   {
# Line 1104 | Line 1000 | void sheepshaver_cpu::execute_native_op(
1000          case NATIVE_VIDEO_DO_DRIVER_IO:
1001                  gpr(3) = (int32)(int16)VideoDoDriverIO(gpr(3), gpr(4), gpr(5), gpr(6), gpr(7));
1002                  break;
1003 < #ifdef WORDS_BIGENDIAN
1003 >        case NATIVE_ETHER_AO_GET_HWADDR:
1004 >                AO_get_ethernet_address(gpr(3));
1005 >                break;
1006 >        case NATIVE_ETHER_AO_ADD_MULTI:
1007 >                AO_enable_multicast(gpr(3));
1008 >                break;
1009 >        case NATIVE_ETHER_AO_DEL_MULTI:
1010 >                AO_disable_multicast(gpr(3));
1011 >                break;
1012 >        case NATIVE_ETHER_AO_SEND_PACKET:
1013 >                AO_transmit_packet(gpr(3));
1014 >                break;
1015          case NATIVE_ETHER_IRQ:
1016                  EtherIRQ();
1017                  break;
# Line 1126 | Line 1033 | void sheepshaver_cpu::execute_native_op(
1033          case NATIVE_ETHER_RSRV:
1034                  gpr(3) = ether_rsrv((queue_t *)gpr(3));
1035                  break;
1129 #else
1130        case NATIVE_ETHER_INIT:
1131                // FIXME: needs more complicated thunks
1132                gpr(3) = false;
1133                break;
1134 #endif
1036          case NATIVE_SYNC_HOOK:
1037                  gpr(3) = NQD_sync_hook(gpr(3));
1038                  break;
# Line 1171 | Line 1072 | void sheepshaver_cpu::execute_native_op(
1072                  break;
1073          }
1074          case NATIVE_GET_RESOURCE:
1075 +                get_resource(ReadMacInt32(XLM_GET_RESOURCE));
1076 +                break;
1077          case NATIVE_GET_1_RESOURCE:
1078 +                get_resource(ReadMacInt32(XLM_GET_1_RESOURCE));
1079 +                break;
1080          case NATIVE_GET_IND_RESOURCE:
1081 +                get_resource(ReadMacInt32(XLM_GET_IND_RESOURCE));
1082 +                break;
1083          case NATIVE_GET_1_IND_RESOURCE:
1084 <        case NATIVE_R_GET_RESOURCE: {
1085 <                typedef void (*GetResourceCallback)(void);
1086 <                static const GetResourceCallback get_resource_callbacks[] = {
1087 <                        ::get_resource,
1181 <                        ::get_1_resource,
1182 <                        ::get_ind_resource,
1183 <                        ::get_1_ind_resource,
1184 <                        ::r_get_resource
1185 <                };
1186 <                get_resource_callbacks[selector - NATIVE_GET_RESOURCE]();
1084 >                get_resource(ReadMacInt32(XLM_GET_1_IND_RESOURCE));
1085 >                break;
1086 >        case NATIVE_R_GET_RESOURCE:
1087 >                get_resource(ReadMacInt32(XLM_R_GET_RESOURCE));
1088                  break;
1188        }
1089          case NATIVE_MAKE_EXECUTABLE:
1090                  MakeExecutable(0, gpr(4), gpr(5));
1091                  break;
1092          case NATIVE_CHECK_LOAD_INVOC:
1093                  check_load_invoc(gpr(3), gpr(4), gpr(5));
1094                  break;
1095 +        case NATIVE_NAMED_CHECK_LOAD_INVOC:
1096 +                named_check_load_invoc(gpr(3), gpr(4), gpr(5));
1097 +                break;
1098          default:
1099                  printf("FATAL: NATIVE_OP called with bogus selector %d\n", selector);
1100                  QuitEmulator();
# Line 1278 | Line 1181 | uint32 call_macos7(uint32 tvect, uint32
1181          const uint32 args[] = { arg1, arg2, arg3, arg4, arg5, arg6, arg7 };
1182          return ppc_cpu->execute_macos_code(tvect, sizeof(args)/sizeof(args[0]), args);
1183   }
1281
1282 /*
1283 *  Resource Manager thunks
1284 */
1285
1286 void get_resource(void)
1287 {
1288        ppc_cpu->get_resource(ReadMacInt32(XLM_GET_RESOURCE));
1289 }
1290
1291 void get_1_resource(void)
1292 {
1293        ppc_cpu->get_resource(ReadMacInt32(XLM_GET_1_RESOURCE));
1294 }
1295
1296 void get_ind_resource(void)
1297 {
1298        ppc_cpu->get_resource(ReadMacInt32(XLM_GET_IND_RESOURCE));
1299 }
1300
1301 void get_1_ind_resource(void)
1302 {
1303        ppc_cpu->get_resource(ReadMacInt32(XLM_GET_1_IND_RESOURCE));
1304 }
1305
1306 void r_get_resource(void)
1307 {
1308        ppc_cpu->get_resource(ReadMacInt32(XLM_R_GET_RESOURCE));
1309 }

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