removed some error vm-> functions
parent
bbdcabae9c
commit
38eb7a23f1
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@ -17,11 +17,6 @@ void factorvm::out_of_memory()
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exit(1);
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}
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void out_of_memory()
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{
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return vm->out_of_memory();
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}
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void factorvm::fatal_error(const char* msg, cell tagged)
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{
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print_string("fatal_error: "); print_string(msg);
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@ -29,11 +24,6 @@ void factorvm::fatal_error(const char* msg, cell tagged)
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exit(1);
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}
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void fatal_error(const char* msg, cell tagged)
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{
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return vm->fatal_error(msg,tagged);
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}
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void factorvm::critical_error(const char* msg, cell tagged)
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{
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print_string("You have triggered a bug in Factor. Please report.\n");
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@ -42,11 +32,6 @@ void factorvm::critical_error(const char* msg, cell tagged)
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factorbug();
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}
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void critical_error(const char* msg, cell tagged)
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{
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return vm->critical_error(msg,tagged);
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}
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void factorvm::throw_error(cell error, stack_frame *callstack_top)
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{
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/* If the error handler is set, we rewind any C stack frames and
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@ -98,10 +83,6 @@ void factorvm::general_error(vm_error_type error, cell arg1, cell arg2, stack_fr
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tag_fixnum(error),arg1,arg2),callstack_top);
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}
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void general_error(vm_error_type error, cell arg1, cell arg2, stack_frame *callstack_top)
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{
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return vm->general_error(error,arg1,arg2,callstack_top);
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}
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void factorvm::type_error(cell type, cell tagged)
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{
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@ -113,10 +94,6 @@ void factorvm::not_implemented_error()
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general_error(ERROR_NOT_IMPLEMENTED,F,F,NULL);
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}
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void not_implemented_error()
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{
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return vm->not_implemented_error();
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}
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/* Test if 'fault' is in the guard page at the top or bottom (depending on
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offset being 0 or -1) of area+area_size */
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@ -155,11 +132,6 @@ void factorvm::divide_by_zero_error()
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general_error(ERROR_DIVIDE_BY_ZERO,F,F,NULL);
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}
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void divide_by_zero_error()
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{
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return vm->divide_by_zero_error();
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}
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void factorvm::fp_trap_error(unsigned int fpu_status, stack_frame *signal_callstack_top)
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{
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general_error(ERROR_FP_TRAP,tag_fixnum(fpu_status),F,signal_callstack_top);
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@ -23,16 +23,7 @@ enum vm_error_type
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ERROR_FP_TRAP,
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};
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void out_of_memory();
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void fatal_error(const char* msg, cell tagged);
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void critical_error(const char* msg, cell tagged);
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PRIMITIVE(die);
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void general_error(vm_error_type error, cell arg1, cell arg2, stack_frame *native_stack);
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void not_implemented_error();
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void fp_trap_error(unsigned int fpu_status, stack_frame *signal_callstack_top);
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PRIMITIVE(call_clear);
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PRIMITIVE(unimplemented);
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@ -203,13 +203,13 @@ void mach_initialize ()
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/* Allocate a port on which the thread shall listen for exceptions. */
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if (mach_port_allocate (self, MACH_PORT_RIGHT_RECEIVE, &our_exception_port)
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!= KERN_SUCCESS)
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fatal_error("mach_port_allocate() failed",0);
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vm->fatal_error("mach_port_allocate() failed",0);
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/* See http://web.mit.edu/darwin/src/modules/xnu/osfmk/man/mach_port_insert_right.html. */
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if (mach_port_insert_right (self, our_exception_port, our_exception_port,
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MACH_MSG_TYPE_MAKE_SEND)
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!= KERN_SUCCESS)
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fatal_error("mach_port_insert_right() failed",0);
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vm->fatal_error("mach_port_insert_right() failed",0);
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/* The exceptions we want to catch. */
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mask = EXC_MASK_BAD_ACCESS | EXC_MASK_ARITHMETIC;
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@ -226,7 +226,7 @@ void mach_initialize ()
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if (task_set_exception_ports (self, mask, our_exception_port,
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EXCEPTION_DEFAULT, MACHINE_THREAD_STATE)
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!= KERN_SUCCESS)
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fatal_error("task_set_exception_ports() failed",0);
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vm->fatal_error("task_set_exception_ports() failed",0);
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}
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}
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@ -25,7 +25,7 @@ void flush_icache(cell start, cell len)
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: "r0","r1","r2");
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if(result < 0)
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critical_error("flush_icache() failed",result);
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vm->critical_error("flush_icache() failed",result);
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}
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}
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@ -11,7 +11,7 @@ const char *vm_executable_path()
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int size = readlink("/proc/self/exe", path, PATH_MAX);
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if (size < 0)
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{
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fatal_error("Cannot read /proc/self/exe",0);
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vm->fatal_error("Cannot read /proc/self/exe",0);
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return NULL;
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}
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else
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@ -42,19 +42,19 @@ VM_C_API int inotify_rm_watch(int fd, u32 wd)
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VM_C_API int inotify_init()
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{
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not_implemented_error();
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vm->not_implemented_error();
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return -1;
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}
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VM_C_API int inotify_add_watch(int fd, const char *name, u32 mask)
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{
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not_implemented_error();
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vm->not_implemented_error();
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return -1;
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}
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VM_C_API int inotify_rm_watch(int fd, u32 wd)
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{
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not_implemented_error();
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vm->not_implemented_error();
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return -1;
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}
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@ -9,11 +9,11 @@ void start_thread(void *(*start_routine)(void *))
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pthread_t thread;
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if (pthread_attr_init (&attr) != 0)
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fatal_error("pthread_attr_init() failed",0);
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vm->fatal_error("pthread_attr_init() failed",0);
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if (pthread_attr_setdetachstate (&attr, PTHREAD_CREATE_DETACHED) != 0)
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fatal_error("pthread_attr_setdetachstate() failed",0);
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vm->fatal_error("pthread_attr_setdetachstate() failed",0);
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if (pthread_create (&thread, &attr, start_routine, NULL) != 0)
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fatal_error("pthread_create() failed",0);
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vm->fatal_error("pthread_create() failed",0);
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pthread_attr_destroy (&attr);
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}
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@ -51,7 +51,7 @@ void *ffi_dlsym(dll *dll, symbol_char *symbol)
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void ffi_dlclose(dll *dll)
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{
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if(dlclose(dll->dll))
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general_error(ERROR_FFI,F,F,NULL);
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vm->general_error(ERROR_FFI,F,F,NULL);
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dll->dll = NULL;
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}
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@ -71,13 +71,13 @@ segment *alloc_segment(cell size)
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MAP_ANON | MAP_PRIVATE,-1,0);
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if(array == (char*)-1)
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out_of_memory();
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vm->out_of_memory();
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if(mprotect(array,pagesize,PROT_NONE) == -1)
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fatal_error("Cannot protect low guard page",(cell)array);
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vm->fatal_error("Cannot protect low guard page",(cell)array);
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if(mprotect(array + pagesize + size,pagesize,PROT_NONE) == -1)
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fatal_error("Cannot protect high guard page",(cell)array);
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vm->fatal_error("Cannot protect high guard page",(cell)array);
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segment *retval = (segment *)vm->safe_malloc(sizeof(segment));
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@ -96,7 +96,7 @@ void dealloc_segment(segment *block)
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pagesize + block->size + pagesize);
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if(retval)
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fatal_error("dealloc_segment failed",0);
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vm->fatal_error("dealloc_segment failed",0);
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free(block);
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}
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@ -111,7 +111,7 @@ static stack_frame *uap_stack_pointer(void *uap)
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{
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stack_frame *ptr = (stack_frame *)ucontext_stack_pointer(uap);
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if(!ptr)
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critical_error("Invalid uap",(cell)uap);
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vm->critical_error("Invalid uap",(cell)uap);
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return ptr;
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}
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else
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@ -154,7 +154,7 @@ static void sigaction_safe(int signum, const struct sigaction *act, struct sigac
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while(ret == -1 && errno == EINTR);
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if(ret == -1)
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fatal_error("sigaction failed", 0);
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vm->fatal_error("sigaction failed", 0);
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}
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void unix_init_signals()
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@ -216,7 +216,7 @@ extern "C" {
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void safe_close(int fd)
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{
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if(close(fd) < 0)
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fatal_error("error closing fd",errno);
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vm->fatal_error("error closing fd",errno);
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}
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bool check_write(int fd, void *data, ssize_t size)
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@ -235,7 +235,7 @@ bool check_write(int fd, void *data, ssize_t size)
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void safe_write(int fd, void *data, ssize_t size)
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{
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if(!check_write(fd,data,size))
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fatal_error("error writing fd",errno);
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vm->fatal_error("error writing fd",errno);
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}
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bool safe_read(int fd, void *data, ssize_t size)
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@ -247,7 +247,7 @@ bool safe_read(int fd, void *data, ssize_t size)
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return safe_read(fd,data,size);
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else
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{
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fatal_error("error reading fd",errno);
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vm->fatal_error("error reading fd",errno);
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return false;
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}
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}
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@ -266,7 +266,7 @@ void *stdin_loop(void *arg)
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break;
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if(buf[0] != 'X')
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fatal_error("stdin_loop: bad data on control fd",buf[0]);
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vm->fatal_error("stdin_loop: bad data on control fd",buf[0]);
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for(;;)
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{
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@ -303,19 +303,19 @@ void open_console()
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int filedes[2];
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if(pipe(filedes) < 0)
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fatal_error("Error opening control pipe",errno);
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vm->fatal_error("Error opening control pipe",errno);
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control_read = filedes[0];
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control_write = filedes[1];
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if(pipe(filedes) < 0)
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fatal_error("Error opening size pipe",errno);
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vm->fatal_error("Error opening size pipe",errno);
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size_read = filedes[0];
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size_write = filedes[1];
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if(pipe(filedes) < 0)
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fatal_error("Error opening stdin pipe",errno);
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vm->fatal_error("Error opening stdin pipe",errno);
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stdin_read = filedes[0];
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stdin_write = filedes[1];
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if(errno == EINTR)
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wait_for_stdin();
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else
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fatal_error("Error writing control fd",errno);
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vm->fatal_error("Error writing control fd",errno);
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}
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}
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@ -26,13 +26,13 @@ void flush_icache(cell start, cell end)
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char *getenv(char *name)
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{
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not_implemented_error();
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vm->not_implemented_error();
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return 0; /* unreachable */
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}
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PRIMITIVE(os_envs)
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{
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not_implemented_error();
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vm->not_implemented_error();
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}
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void c_to_factor_toplevel(cell quot)
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@ -68,14 +68,14 @@ struct factorvm {
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void memory_protection_error(cell addr, stack_frame *native_stack);
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void signal_error(int signal, stack_frame *native_stack);
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void divide_by_zero_error();
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void fp_trap_error(stack_frame *signal_callstack_top);
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void fp_trap_error(unsigned int fpu_status, stack_frame *signal_callstack_top);
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inline void vmprim_call_clear();
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inline void vmprim_unimplemented();
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void memory_signal_handler_impl();
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void misc_signal_handler_impl();
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void fp_signal_handler_impl();
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void type_error(cell type, cell tagged);
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void general_error(vm_error_type error, cell arg1, cell arg2, stack_frame *callstack_top);
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void general_error(vm_error_type error, cell arg1, cell arg2, stack_frame *native_stack);
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//callstack
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