281 lines
10 KiB
Scheme
281 lines
10 KiB
Scheme
; Copyright (c) 1993-1999 by Richard Kelsey and Jonathan Rees. See file COPYING.
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; [This is a kludge. Richard is loathe to include it in the
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; distribution. But now the system itself uses it, so we're stuck.]
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; Reads arch.scm and data.scm and writes out a C .h file with constants
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; and macros for dealing with Scheme 48 data structures.
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; Needs Big Scheme.
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; (make-c-header-file "scheme48.h" "scheme48.h.in"
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; "vm/arch.scm" "vm/data.scm" "rts/record.scm")
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(define (make-c-header-file c-file c-in-file arch-file data-file record-file)
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(receive (stob-list stob-data exception-list channel-status-list)
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(search-file arch-file
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'("stob enumeration"
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"(define stob-data ...)"
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"exception enumeration"
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"channel-status enumeration")
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(defines-enum? 'stob)
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enum-definition-list
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(lambda (x)
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(and (eq? (car x) 'define)
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(eq? (cadr x) 'stob-data)))
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(lambda (x) (cadr (caddr x)))
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(defines-enum? 'exception)
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enum-definition-list
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(defines-enum? 'channel-status-option)
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enum-definition-list)
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(receive (tag-list immediate-list)
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(search-file data-file
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'("tag enumeration" "imm enumeration")
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(defines-enum? 'tag)
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enum-definition-list
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(defines-enum? 'imm)
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enum-definition-list)
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(let ((record-type-fields
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(search-file record-file
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'("(define record-type-fields ...")
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(lambda (x)
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(and (eq? (car x) 'define)
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(eq? (cadr x) 'record-type-fields)))
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(lambda (x) (cadr (caddr x))))))
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(with-output-to-file c-file
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(lambda ()
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(format #t "/* This file was generated automatically.~%")
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(format #t " It's probably not a good idea to change it. */~%")
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(newline)
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(format #t "#ifndef _H_SCHEME48~%")
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(format #t "#define _H_SCHEME48~%")
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(newline)
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(copy-file c-in-file)
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(newline)
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(tag-stuff tag-list)
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(newline)
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(immediate-stuff immediate-list)
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(newline)
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(stob-stuff stob-list stob-data)
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(newline)
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(enumeration-stuff record-type-fields
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"S48_RECORD_TYPE_~A(x) S48_RECORD_REF((x), ~D)")
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(newline)
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(enumeration-stuff exception-list "S48_EXCEPTION_~A ~D")
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(newline)
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(enumeration-stuff channel-status-list
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"S48_CHANNEL_STATUS_~A S48_UNSAFE_ENTER_FIXNUM(~D)")
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(newline)
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(format #t "#endif /* _H_SCHEME48 */")
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(newline)))))))
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(define (tag-stuff tag-list)
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(do ((tags tag-list (cdr tags))
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(i 0 (+ i 1)))
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((null? tags))
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(let ((name (upcase (car tags))))
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(c-define "S48_~A_TAG ~D" name i)
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(c-define "S48_~A_P(x) (((long)(x) & 3L) == S48_~A_TAG)" name name)))
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(newline)
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(c-define "S48_UNSAFE_ENTER_FIXNUM(n) ((s48_value)((n) << 2))")
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(c-define "S48_UNSAFE_EXTRACT_FIXNUM(x) ((long)(x) >> 2)"))
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(define (immediate-stuff imm-list)
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(c-define "S48_MISC_IMMEDIATE(n) ((s48_value)(S48_IMMEDIATE_TAG | ((n) << 2)))")
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(do ((imm imm-list (cdr imm))
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(i 0 (+ i 1)))
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((null? imm))
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(let ((name (upcase (car imm))))
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(c-define "S48_~A (S48_MISC_IMMEDIATE(~D))" name i)))
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(newline)
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(c-define "S48_UNSAFE_ENTER_CHAR(c) (S48_CHAR | ((c) << 8))")
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(c-define "S48_UNSAFE_EXTRACT_CHAR(x) ((x) >> 8)")
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(c-define "S48_CHAR_P(x) ((((long) (x)) & 0xff) == S48_CHAR)"))
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(define (stob-stuff stob-list stob-data)
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(let ((type-mask (let ((len (length stob-list)))
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(do ((i 2 (* i 2)))
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((>= i len) (- i 1))))))
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(c-define "S48_ADDRESS_AFTER_HEADER(x, type) ((type *)((x) - S48_STOB_TAG))")
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(c-define "S48_STOB_REF(x, i) (S48_ADDRESS_AFTER_HEADER(x, s48_value)[i])")
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(c-define (string-append
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"S48_STOB_BYTE_REF(x, i) "
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"(((char *)S48_ADDRESS_AFTER_HEADER(x, s48_value))[i])"))
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(c-define (string-append
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"S48_STOB_SET(x, i, v) "
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"do { "
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"s48_value __stob_set_x = (x); "
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"long __stob_set_i = (i); "
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"s48_value __stob_set_v = (v); "
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"if (S48_STOB_IMMUTABLEP(__stob_set_x)) "
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"s48_raise_argument_type_error(__stob_set_x); "
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"else { "
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"S48_WRITE_BARRIER((__stob_set_x), "
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"(char *) (&S48_STOB_REF((__stob_set_x), (__stob_set_i))),"
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"(__stob_set_v)); "
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"*(&S48_STOB_REF((__stob_set_x), (__stob_set_i))) = (__stob_set_v); "
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"} "
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"} while (0)"))
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(c-define (string-append
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"S48_STOB_BYTE_SET(x, i, v) "
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"do { "
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"s48_value __stob_set_x = (x); "
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"long __stob_set_i = (i); "
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"char __stob_set_v = (v); "
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"if (S48_STOB_IMMUTABLEP(__stob_set_x)) "
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"s48_raise_argument_type_error(__stob_set_x); "
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"else "
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"*(&S48_STOB_BYTE_REF((__stob_set_x), (__stob_set_i))) = (__stob_set_v); "
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"} while (0)"))
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(c-define "S48_STOB_TYPE(x) ((S48_STOB_HEADER(x)>>2)&~D)" type-mask)
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(c-define "S48_STOB_HEADER(x) (S48_STOB_REF((x),-1))")
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(c-define "S48_STOB_ADDRESS(x) (&(S48_STOB_HEADER(x)))")
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(c-define "S48_STOB_BYTE_LENGTH(x) (S48_STOB_HEADER(x) >> 8)")
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(c-define "S48_STOB_DESCRIPTOR_LENGTH(x) (S48_STOB_HEADER(x) >> 10)")
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(c-define "S48_STOB_IMMUTABLEP(x) ((S48_STOB_HEADER(x)>>7) & 1)")
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(c-define "S48_STOB_MAKE_IMMUTABLE(x) ((S48_STOB_HEADER(x)) |= (1<<7))")
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(newline)
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(do ((stob stob-list (cdr stob))
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(i 0 (+ i 1)))
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((null? stob))
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(let ((name (upcase (car stob))))
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(c-define "S48_STOBTYPE_~A ~D" name i)
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(c-define "S48_~A_P(x) (s48_stob_has_type(x, ~D))" name i)))
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(newline)
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(for-each (lambda (data)
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(let ((type (upcase (car data))))
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(do ((accs (cdddr data) (cdr accs))
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(i 0 (+ i 1)))
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((null? accs))
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(let ((name (upcase (caar accs))))
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(c-define "S48_~A_OFFSET ~D" name i)
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(c-define "S48_~A(x) (s48_stob_ref((x), S48_STOBTYPE_~A, ~D))"
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name type i)
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(c-define "S48_UNSAFE_~A(x) (S48_STOB_REF((x), ~D))" name i))
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(if (not (null? (cdar accs)))
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(let ((name (upcase (cadar accs))))
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(c-define "S48_~A(x, v) (s48_stob_set((x), S48_STOBTYPE_~A, ~D, (v)))"
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name type i)
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(c-define "S48_UNSAFE_~A(x, v) S48_STOB_SET((x), ~D, (v))" name i))))))
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stob-data)
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(newline)
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(for-each (lambda (type index)
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(c-define "S48_~A_LENGTH(x) (s48_stob_length((x), S48_STOBTYPE_~A))"
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type type)
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(c-define "S48_UNSAFE_~A_LENGTH(x) (STOB_DESCRIPTOR_LENGTH(x))"
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type)
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(c-define "S48_~A_REF(x, i) (s48_stob_ref((x), S48_STOBTYPE_~A, ~A))"
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type type index)
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(c-define "S48_~A_SET(x, i, v) (s48_stob_set((x), S48_STOBTYPE_~A, ~A, (v)))"
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type type index)
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(c-define "S48_UNSAFE_~A_REF(x, i) (S48_STOB_REF((x), ~A))"
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type index)
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(c-define "S48_UNSAFE_~A_SET(x, i, v) S48_STOB_SET((x), ~A, (v))"
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type index))
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'("VECTOR" "RECORD")
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'("(i)" "(i) + 1"))
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(c-define "S48_RECORD_TYPE(x) (s48_stob_ref((x), S48_STOBTYPE_RECORD))")
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(c-define "S48_UNSAFE_RECORD_TYPE(x) (STOB_REF((x), 0))")
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(for-each (lambda (type)
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(c-define "S48_~A_LENGTH(x) (s48_stob_byte_length((x), S48_STOBTYPE_~A))"
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type type)
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(c-define "S48_~A_REF(x, i) (s48_stob_byte_ref((x), S48_STOBTYPE_~A, (i)))"
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type type)
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(c-define "S48_~A_SET(x, i, v) (s48_stob_byte_set((x), S48_STOBTYPE_~A, (i), (v)))"
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type type)
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(c-define "S48_UNSAFE_~A_REF(x, i) (S48_STOB_BYTE_REF((x), (i)))"
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type)
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(c-define "S48_UNSAFE_~A_SET(x, i, v) S48_STOB_BYTE_SET((x), (i), (v))"
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type))
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'("BYTE_VECTOR" "STRING"))
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(c-define "S48_UNSAFE_BYTE_VECTOR_LENGTH(x) (S48_STOB_BYTE_LENGTH(x))")
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(c-define "S48_UNSAFE_STRING_LENGTH(x) (S48_STOB_BYTE_LENGTH(x) - 1)")
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(c-define "S48_UNSAFE_EXTRACT_STRING(x) (S48_ADDRESS_AFTER_HEADER((x), char))")
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(c-define "S48_UNSAFE_EXTRACT_BYTE_VECTOR(x) (S48_ADDRESS_AFTER_HEADER((x), char))")
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(c-define (string-append "S48_EXTRACT_EXTERNAL_OBJECT(x, type) "
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"((type *)(S48_ADDRESS_AFTER_HEADER(x, long)+1))"))))
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(define (enumeration-stuff names format-string)
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(do ((names names (cdr names))
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(i 0 (+ 1 i)))
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((null? names))
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(let ((name (upcase (car names))))
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(c-define format-string name i))))
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; - becomes _ > becomes TO_ (so -> turns into _TO_)
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; ? becomes P
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; ! disappears
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(define (upcase symbol)
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(do ((chars (string->list (symbol->string symbol)) (cdr chars))
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(res '() (case (car chars)
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((#\>) (append (string->list "_OT") res))
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((#\-) (cons #\_ res))
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((#\?) (cons #\P res))
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((#\/ #\!) res)
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(else (cons (char-upcase (car chars)) res)))))
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((null? chars)
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(list->string (reverse res)))))
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(define (c-define string . stuff)
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(format #t "#define ~?~%" string stuff))
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(define (defines-enum? name)
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(lambda (x)
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(and (eq? (car x) 'define-enumeration)
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(eq? (cadr x) name))))
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(define enum-definition-list caddr)
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; Copy the file to the current-output-file.
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(define (copy-file filename)
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(call-with-input-file filename
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(lambda (in)
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(let loop ()
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(let ((c (read-char in)))
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(if (not (eof-object? c))
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(begin
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(write-char c)
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(loop))))))))
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; WHAT-FOR is a list of names, used only for debugging.
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; PRED+EXTRACT is a list of <predicate0> <extract0> <predicate1> <extract1> ... .
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; Each form in the file is read and passed to the predicates that haven't yet
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; matched. If the predicate matches the corresponding extractor is called on
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; the form. The results of the extractors are returned.
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;
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; STUFF is list of ((predicate . extract) . name). <name> is replaced
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; with the value when it is found.
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(define (search-file file what-for . pred+extract)
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(let ((stuff (do ((p+e pred+extract (cddr p+e))
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(names what-for (cdr names))
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(ps '() (cons (cons (cons (car p+e) (cadr p+e))
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(car names))
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ps)))
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((null? p+e) (reverse ps)))))
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(define (search next not-found)
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(let loop ((n-f not-found) (checked '()))
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(cond ((null? n-f)
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#f)
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(((caaar n-f) next)
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(set-cdr! (car n-f) ((cdaar n-f) next))
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(append (reverse checked) (cdr n-f)))
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(else
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(loop (cdr n-f) (cons (car n-f) checked))))))
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(with-input-from-file file
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(lambda ()
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(let loop ((not-found stuff))
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(let ((next (read)))
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(cond ((null? not-found)
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(apply values (map cdr stuff)))
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((eof-object? next)
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(error "file ~S doesn't have ~A" file (cdar not-found)))
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(else
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(loop (or (and (pair? next)
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(search next not-found))
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not-found))))))))))
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