245 lines
5.8 KiB
C++
Executable File
245 lines
5.8 KiB
C++
Executable File
#include "master.hpp"
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namespace factor
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{
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/* gets the address of an object representing a C pointer, with the
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intention of storing the pointer across code which may potentially GC. */
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char *factor_vm::pinned_alien_offset(cell obj)
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{
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switch(tagged<object>(obj).type())
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{
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case ALIEN_TYPE:
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{
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alien *ptr = untag<alien>(obj);
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if(to_boolean(ptr->expired))
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general_error(ERROR_EXPIRED,obj,false_object);
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if(to_boolean(ptr->base))
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type_error(ALIEN_TYPE,obj);
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else
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return (char *)ptr->address;
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}
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case F_TYPE:
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return NULL;
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default:
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type_error(ALIEN_TYPE,obj);
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return NULL; /* can't happen */
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}
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}
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VM_C_API char *pinned_alien_offset(cell obj, factor_vm *parent)
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{
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return parent->pinned_alien_offset(obj);
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}
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/* make an alien */
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cell factor_vm::allot_alien(cell delegate_, cell displacement)
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{
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if(delegate_ == false_object && displacement == 0)
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return false_object;
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data_root<object> delegate(delegate_,this);
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data_root<alien> new_alien(allot<alien>(sizeof(alien)),this);
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if(delegate.type_p(ALIEN_TYPE))
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{
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tagged<alien> delegate_alien = delegate.as<alien>();
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displacement += delegate_alien->displacement;
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new_alien->base = delegate_alien->base;
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}
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else
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new_alien->base = delegate.value();
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new_alien->displacement = displacement;
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new_alien->expired = false_object;
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new_alien->update_address();
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return new_alien.value();
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}
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cell factor_vm::allot_alien(void *address)
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{
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return allot_alien(false_object,(cell)address);
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}
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VM_C_API cell allot_alien(void *address, factor_vm *vm)
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{
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return vm->allot_alien(address);
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}
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/* make an alien pointing at an offset of another alien */
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void factor_vm::primitive_displaced_alien()
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{
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cell alien = ctx->pop();
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cell displacement = to_cell(ctx->pop());
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switch(tagged<object>(alien).type())
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{
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case BYTE_ARRAY_TYPE:
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case ALIEN_TYPE:
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case F_TYPE:
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ctx->push(allot_alien(alien,displacement));
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break;
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default:
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type_error(ALIEN_TYPE,alien);
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break;
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}
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}
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/* address of an object representing a C pointer. Explicitly throw an error
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if the object is a byte array, as a sanity check. */
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void factor_vm::primitive_alien_address()
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{
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ctx->push(allot_cell((cell)pinned_alien_offset(ctx->pop())));
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}
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/* pop ( alien n ) from datastack, return alien's address plus n */
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void *factor_vm::alien_pointer()
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{
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fixnum offset = to_fixnum(ctx->pop());
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return alien_offset(ctx->pop()) + offset;
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}
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/* define words to read/write values at an alien address */
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#define DEFINE_ALIEN_ACCESSOR(name,type,from,to) \
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VM_C_API void primitive_alien_##name(factor_vm *parent) \
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{ \
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parent->ctx->push(from(*(type*)(parent->alien_pointer()),parent)); \
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} \
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VM_C_API void primitive_set_alien_##name(factor_vm *parent) \
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{ \
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type *ptr = (type *)parent->alien_pointer(); \
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type value = (type)to(parent->ctx->pop(),parent); \
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*ptr = value; \
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}
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EACH_ALIEN_PRIMITIVE(DEFINE_ALIEN_ACCESSOR)
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/* open a native library and push a handle */
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void factor_vm::primitive_dlopen()
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{
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data_root<byte_array> path(ctx->pop(),this);
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path.untag_check(this);
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data_root<dll> library(allot<dll>(sizeof(dll)),this);
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library->path = path.value();
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ffi_dlopen(library.untagged());
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ctx->push(library.value());
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}
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/* look up a symbol in a native library */
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void factor_vm::primitive_dlsym()
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{
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data_root<object> library(ctx->pop(),this);
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data_root<byte_array> name(ctx->pop(),this);
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name.untag_check(this);
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symbol_char *sym = name->data<symbol_char>();
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if(to_boolean(library.value()))
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{
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dll *d = untag_check<dll>(library.value());
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if(d->handle == NULL)
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ctx->push(false_object);
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else
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ctx->push(allot_alien(ffi_dlsym(d,sym)));
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}
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else
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ctx->push(allot_alien(ffi_dlsym(NULL,sym)));
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}
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/* close a native library handle */
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void factor_vm::primitive_dlclose()
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{
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dll *d = untag_check<dll>(ctx->pop());
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if(d->handle != NULL)
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ffi_dlclose(d);
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}
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void factor_vm::primitive_dll_validp()
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{
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cell library = ctx->pop();
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if(to_boolean(library))
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ctx->push(tag_boolean(untag_check<dll>(library)->handle != NULL));
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else
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ctx->push(true_object);
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}
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/* gets the address of an object representing a C pointer */
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char *factor_vm::alien_offset(cell obj)
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{
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switch(tagged<object>(obj).type())
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{
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case BYTE_ARRAY_TYPE:
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return untag<byte_array>(obj)->data<char>();
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case ALIEN_TYPE:
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return (char *)untag<alien>(obj)->address;
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case F_TYPE:
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return NULL;
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default:
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type_error(ALIEN_TYPE,obj);
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return NULL; /* can't happen */
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}
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}
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VM_C_API char *alien_offset(cell obj, factor_vm *parent)
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{
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return parent->alien_offset(obj);
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}
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/* For FFI calls passing structs by value. Cannot allocate */
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void factor_vm::to_value_struct(cell src, void *dest, cell size)
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{
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memcpy(dest,alien_offset(src),size);
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}
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VM_C_API void to_value_struct(cell src, void *dest, cell size, factor_vm *parent)
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{
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return parent->to_value_struct(src,dest,size);
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}
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/* For FFI callbacks receiving structs by value */
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cell factor_vm::from_value_struct(void *src, cell size)
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{
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byte_array *bytes = allot_byte_array(size);
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memcpy(bytes->data<void>(),src,size);
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return tag<byte_array>(bytes);
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}
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VM_C_API cell from_value_struct(void *src, cell size, factor_vm *parent)
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{
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return parent->from_value_struct(src,size);
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}
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/* On some x86 OSes, structs <= 8 bytes are returned in registers. */
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cell factor_vm::from_small_struct(cell x, cell y, cell size)
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{
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cell data[2];
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data[0] = x;
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data[1] = y;
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return from_value_struct(data,size);
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}
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VM_C_API cell from_small_struct(cell x, cell y, cell size, factor_vm *parent)
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{
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return parent->from_small_struct(x,y,size);
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}
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/* On OS X/PPC, complex numbers are returned in registers. */
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cell factor_vm::from_medium_struct(cell x1, cell x2, cell x3, cell x4, cell size)
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{
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cell data[4];
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data[0] = x1;
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data[1] = x2;
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data[2] = x3;
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data[3] = x4;
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return from_value_struct(data,size);
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}
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VM_C_API cell from_medium_struct(cell x1, cell x2, cell x3, cell x4, cell size, factor_vm *parent)
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{
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return parent->from_medium_struct(x1, x2, x3, x4, size);
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}
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}
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