346 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C++
		
	
	
			
		
		
	
	
			346 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C++
		
	
	
namespace factor
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{
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typedef unsigned char u8;
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typedef unsigned short u16;
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typedef unsigned int u32;
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typedef unsigned long long u64;
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typedef signed char s8;
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typedef signed short s16;
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typedef signed int s32;
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typedef signed long long s64;
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#ifdef _WIN64
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	typedef long long fixnum;
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	typedef unsigned long long cell;
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#else
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	typedef long fixnum;
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	typedef unsigned long cell;
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#endif
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inline static cell align(cell a, cell b)
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{
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	return (a + (b-1)) & ~(b-1);
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}
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inline static cell alignment_for(cell a, cell b)
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{
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	return align(a,b) - a;
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}
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static const cell data_alignment = 16;
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#define WORD_SIZE (signed)(sizeof(cell)*8)
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#define TAG_MASK 15
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#define TAG_BITS 4
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#define TAG(x) ((cell)(x) & TAG_MASK)
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#define UNTAG(x) ((cell)(x) & ~TAG_MASK)
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#define RETAG(x,tag) (UNTAG(x) | (tag))
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/*** Tags ***/
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#define FIXNUM_TYPE 0
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#define F_TYPE 1
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#define ARRAY_TYPE 2
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#define FLOAT_TYPE 3
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#define QUOTATION_TYPE 4
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#define BIGNUM_TYPE 5
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#define ALIEN_TYPE 6
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#define TUPLE_TYPE 7
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#define WRAPPER_TYPE 8
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#define BYTE_ARRAY_TYPE 9
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#define CALLSTACK_TYPE 10
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#define STRING_TYPE 11
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#define WORD_TYPE 12
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#define DLL_TYPE 13
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#define TYPE_COUNT 14
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enum code_block_type
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{
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	code_block_unoptimized,
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	code_block_optimized,
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	code_block_counting_profiler,
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	code_block_pic
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};
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/* Constants used when floating-point trap exceptions are thrown */
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enum
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{
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	FP_TRAP_INVALID_OPERATION = 1 << 0,
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	FP_TRAP_OVERFLOW          = 1 << 1,
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	FP_TRAP_UNDERFLOW         = 1 << 2,
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	FP_TRAP_ZERO_DIVIDE       = 1 << 3,
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	FP_TRAP_INEXACT           = 1 << 4,
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};
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/* What Factor calls 'f' */
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static const cell false_object = F_TYPE;
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inline static bool immediate_p(cell obj)
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{
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	/* We assume that fixnums have tag 0 and false_object has tag 1 */
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	return TAG(obj) <= F_TYPE;
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}
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inline static fixnum untag_fixnum(cell tagged)
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{
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#ifdef FACTOR_DEBUG
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	assert(TAG(tagged) == FIXNUM_TYPE);
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#endif
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	return ((fixnum)tagged) >> TAG_BITS;
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}
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inline static cell tag_fixnum(fixnum untagged)
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{
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	return RETAG(untagged << TAG_BITS,FIXNUM_TYPE);
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}
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#define NO_TYPE_CHECK static const cell type_number = TYPE_COUNT
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struct object {
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	NO_TYPE_CHECK;
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	cell header;
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	cell size() const;
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	template<typename Fixup> cell size(Fixup fixup) const;
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	cell binary_payload_start() const;
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	template<typename Fixup> cell binary_payload_start(Fixup fixup) const;
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	cell *slots() const { return (cell *)this; }
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	template<typename Iterator> void each_slot(Iterator &iter);
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	/* Only valid for objects in tenured space; must cast to free_heap_block
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	to do anything with it if its free */
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	bool free_p() const
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	{
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		return (header & 1) == 1;
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	}
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	cell type() const
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	{
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		return (header >> 2) & TAG_MASK;
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	}
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	void initialize(cell type)
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	{
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		header = type << 2;
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	}
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	cell hashcode() const
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	{
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		return (header >> 6);
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	}
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	void set_hashcode(cell hashcode)
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	{
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		header = (header & 0x3f) | (hashcode << 6);
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	}
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	bool forwarding_pointer_p() const
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	{
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		return (header & 2) == 2;
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	}
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	object *forwarding_pointer() const
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	{
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		return (object *)UNTAG(header);
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	}
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	void forward_to(object *pointer)
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	{
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		header = ((cell)pointer | 2);
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	}
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct array : public object {
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	static const cell type_number = ARRAY_TYPE;
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	static const cell element_size = sizeof(cell);
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	/* tagged */
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	cell capacity;
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	cell *data() const { return (cell *)(this + 1); }
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};
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/* These are really just arrays, but certain elements have special
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significance */
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struct tuple_layout : public array {
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	NO_TYPE_CHECK;
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	/* tagged */
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	cell klass;
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	/* tagged fixnum */
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	cell size;
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	/* tagged fixnum */
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	cell echelon;
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};
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struct bignum : public object {
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	static const cell type_number = BIGNUM_TYPE;
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	static const cell element_size = sizeof(cell);
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	/* tagged */
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	cell capacity;
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	cell *data() const { return (cell *)(this + 1); }
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};
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struct byte_array : public object {
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	static const cell type_number = BYTE_ARRAY_TYPE;
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	static const cell element_size = 1;
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	/* tagged */
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	cell capacity;
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#ifndef FACTOR_64
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	cell padding0;
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	cell padding1;
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#endif
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	template<typename Scalar> Scalar *data() const { return (Scalar *)(this + 1); }
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct string : public object {
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	static const cell type_number = STRING_TYPE;
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	/* tagged num of chars */
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	cell length;
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	/* tagged */
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	cell aux;
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	/* tagged */
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	cell hashcode;
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	u8 *data() const { return (u8 *)(this + 1); }
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};
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struct code_block;
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/* Assembly code makes assumptions about the layout of this struct */
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struct word : public object {
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	static const cell type_number = WORD_TYPE;
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	/* TAGGED hashcode */
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	cell hashcode;
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	/* TAGGED word name */
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	cell name;
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	/* TAGGED word vocabulary */
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	cell vocabulary;
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	/* TAGGED definition */
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	cell def;
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	/* TAGGED property assoc for library code */
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	cell props;
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	/* TAGGED alternative entry point for direct non-tail calls. Used for inline caching */
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	cell pic_def;
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	/* TAGGED alternative entry point for direct tail calls. Used for inline caching */
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	cell pic_tail_def;
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	/* TAGGED call count for counting_profiler */
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	cell counter;
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	/* TAGGED machine code for sub-primitive */
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	cell subprimitive;
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	/* UNTAGGED entry point: jump here to execute word */
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	void *entry_point;
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	/* UNTAGGED compiled code block */
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	code_block *code;
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	/* UNTAGGED counting_profiler stub */
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	code_block *counting_profiler;
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct wrapper : public object {
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	static const cell type_number = WRAPPER_TYPE;
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	cell object;
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct boxed_float : object {
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	static const cell type_number = FLOAT_TYPE;
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#ifndef FACTOR_64
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	cell padding;
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#endif
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	double n;
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct quotation : public object {
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	static const cell type_number = QUOTATION_TYPE;
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	/* tagged */
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	cell array;
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	/* tagged */
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	cell cached_effect;
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	/* tagged */
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	cell cache_counter;
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	/* UNTAGGED entry point; jump here to call quotation */
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	void *entry_point;
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	/* UNTAGGED compiled code block */
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	code_block *code;
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};
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/* Assembly code makes assumptions about the layout of this struct */
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struct alien : public object {
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	static const cell type_number = ALIEN_TYPE;
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	/* tagged */
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	cell base;
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	/* tagged */
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	cell expired;
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	/* untagged */
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	cell displacement;
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	/* untagged */
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	cell address;
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	void update_address()
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	{
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		if(base == false_object)
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			address = displacement;
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		else
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			address = UNTAG(base) + sizeof(byte_array) + displacement;
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	}
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};
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struct dll : public object {
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	static const cell type_number = DLL_TYPE;
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	/* tagged byte array holding a C string */
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	cell path;
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	/* OS-specific handle */
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	void *handle;
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};
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struct stack_frame {
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	/* Updated by procedure prologue with procedure start address */
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	void *entry_point;
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	/* Frame size in bytes */
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	cell size;
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};
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struct callstack : public object {
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	static const cell type_number = CALLSTACK_TYPE;
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	/* tagged */
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	cell length;
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	stack_frame *frame_at(cell offset) const
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	{
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		return (stack_frame *)((char *)(this + 1) + offset);
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	}
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	stack_frame *top() const { return (stack_frame *)(this + 1); }
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	stack_frame *bottom() const { return (stack_frame *)((cell)(this + 1) + untag_fixnum(length)); }
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};
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struct tuple : public object {
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	static const cell type_number = TUPLE_TYPE;
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	/* tagged layout */
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	cell layout;
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	cell *data() const { return (cell *)(this + 1); }
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};
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struct data_root_range {
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	cell *start;
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	cell len;
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	explicit data_root_range(cell *start_, cell len_) :
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		start(start_), len(len_) {}
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};
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}
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