(unless al-loaded
(move eax-tn value)
(inst and al-tn lowtag-mask))
+ ;; FIXME: another 'optimization' which doesn't appear to work:
+ ;; prefetching the hypothetically pointed-to version should help,
+ ;; but this is in fact non-ideal in plenty of ways: we emit way too
+ ;; many of these prefetch instructions; pointed-to objects are very
+ ;; often in the cache anyway; etc. etc. Still, as proof-of-concept,
+ ;; not too bad. -- CSR, 2004-07-27
+ (when (member :prefetch *backend-subfeatures*)
+ (inst prefetchnta (make-ea :byte :base value :disp (- lowtag))))
(inst cmp al-tn lowtag)
(inst jmp (if not-p :ne :e) target))
-
-(defun %test-lowtag-and-headers (value target not-p lowtag function-p headers)
- (let ((drop-through (gen-label)))
- (%test-lowtag value (if not-p drop-through target) nil lowtag)
- (%test-headers value target not-p function-p headers drop-through t)))
-
-
+
(defun %test-headers (value target not-p function-p headers
&optional (drop-through (gen-label)) al-loaded)
(let ((lowtag (if function-p fun-pointer-lowtag other-pointer-lowtag)))
- (multiple-value-bind (equal less-or-equal when-true when-false)
- ;; EQUAL and LESS-OR-EQUAL are the conditions for branching to TARGET.
- ;; WHEN-TRUE and WHEN-FALSE are the labels to branch to when we know
- ;; it's true and when we know it's false respectively.
+ (multiple-value-bind (equal less-or-equal greater-or-equal when-true when-false)
+ ;; EQUAL, LESS-OR-EQUAL and GREATER-OR-EQUAL are the conditions for
+ ;; branching to TARGET. WHEN-TRUE and WHEN-FALSE are the
+ ;; labels to branch to when we know it's true and when we know
+ ;; it's false respectively.
(if not-p
- (values :ne :a drop-through target)
- (values :e :na target drop-through))
+ (values :ne :a :b drop-through target)
+ (values :e :na :nb target drop-through))
(%test-lowtag value when-false t lowtag al-loaded)
(inst mov al-tn (make-ea :byte :base value :disp (- lowtag)))
(do ((remaining headers (cdr remaining)))
(last (null (cdr remaining))))
(cond
((atom header)
- (inst cmp al-tn header)
- (if last
- (inst jmp equal target)
- (inst jmp :e when-true)))
+ (cond
+ ((and (not last) (null (cddr remaining))
+ (atom (cadr remaining))
+ (= (logcount (logxor header (cadr remaining))) 1))
+ ;; BASE-STRING, (VECTOR NIL), BIT-VECTOR, (VECTOR T)
+ (inst and al-tn (ldb (byte 8 0) (logeqv header (cadr remaining))))
+ (inst cmp al-tn (ldb (byte 8 0) (logand header (cadr remaining))))
+ (inst jmp equal target)
+ (return))
+ (t
+ (inst cmp al-tn header)
+ (if last
+ (inst jmp equal target)
+ (inst jmp :e when-true)))))
(t
(let ((start (car header))
(end (cdr header)))
- (unless (= start bignum-widetag)
- (inst cmp al-tn start)
- (inst jmp :b when-false)) ; was :l
- (inst cmp al-tn end)
- (if last
- (inst jmp less-or-equal target)
- (inst jmp :be when-true))))))) ; was :le
+ (cond
+ ;; LAST = don't need al-tn later
+ ((and last (not (= start bignum-widetag))
+ (= (+ start 4) end) (= (logcount (logxor start end)) 1))
+ ;; SIMPLE-STRING
+ (inst and al-tn (ldb (byte 8 0) (logeqv start end)))
+ (inst cmp al-tn (ldb (byte 8 0) (logand start end)))
+ (inst jmp equal target))
+ ((and (not last) (null (cddr remaining))
+ (= (+ start 4) end) (= (logcount (logxor start end)) 1)
+ (listp (cadr remaining))
+ (= (+ (caadr remaining) 4) (cdadr remaining))
+ (= (logcount (logxor (caadr remaining) (cdadr remaining))) 1)
+ (= (logcount (logxor (caadr remaining) start)) 1))
+ ;; STRING
+ (inst and al-tn (ldb (byte 8 0) (logeqv start (cdadr remaining))))
+ (inst cmp al-tn (ldb (byte 8 0) (logand start (cdadr remaining))))
+ (inst jmp equal target)
+ ;; we've shortcircuited the DO, so we must return.
+ ;; It's OK to do so, because (NULL (CDDR REMAINING))
+ ;; was true.
+ (return))
+ (t
+ (unless (= start bignum-widetag)
+ (inst cmp al-tn start)
+ (if (= end complex-array-widetag)
+ (progn
+ (aver last)
+ (inst jmp greater-or-equal target))
+ (inst jmp :b when-false))) ; was :l
+ (unless (= end complex-array-widetag)
+ (inst cmp al-tn end)
+ (if last
+ (inst jmp less-or-equal target)
+ (inst jmp :be when-true)))))))))) ; was :le
(emit-label drop-through))))
-
\f
;;;; type checking and testing
(:info target not-p)
(:policy :fast-safe))
-;;; FIXME: DEF-TYPE-VOPS and DEF-SIMPLE-TYPE-VOPS are only used in
-;;; this file, so they should be in the EVAL-WHEN above, or otherwise
-;;; tweaked so that they don't appear in the target system.
-
(defun cost-to-test-types (type-codes)
(+ (* 2 (length type-codes))
(if (> (apply #'max type-codes) lowtag-limit) 7 2)))
-(defmacro def-type-vops (pred-name check-name ptype error-code
- &rest type-codes)
- (let ((cost (cost-to-test-types (mapcar #'eval type-codes))))
+(defmacro !define-type-vops (pred-name check-name ptype error-code
+ (&rest type-codes)
+ &key (variant nil variant-p) &allow-other-keys)
+ ;; KLUDGE: UGH. Why do we need this eval? Can't we put this in the
+ ;; expansion?
+ (let* ((cost (cost-to-test-types (mapcar #'eval type-codes)))
+ (prefix (if variant-p
+ (concatenate 'string (string variant) "-")
+ "")))
`(progn
,@(when pred-name
- `((define-vop (,pred-name type-predicate)
+ `((define-vop (,pred-name ,(intern (concatenate 'string prefix "TYPE-PREDICATE")))
(:translate ,pred-name)
(:generator ,cost
- (test-type value target not-p ,@type-codes)))))
+ (test-type value target not-p (,@type-codes))))))
,@(when check-name
- `((define-vop (,check-name check-type)
+ `((define-vop (,check-name ,(intern (concatenate 'string prefix "CHECK-TYPE")))
(:generator ,cost
(let ((err-lab
(generate-error-code vop ,error-code value)))
- (test-type value err-lab t ,@type-codes)
- (move result value))))))
- ,@(when ptype
- `((primitive-type-vop ,check-name (:check) ,ptype))))))
-
-(defmacro def-simple-type-vops (pred-name check-name ptype error-code
- &rest type-codes)
- (let ((cost (cost-to-test-types (mapcar #'eval type-codes))))
- `(progn
- ,@(when pred-name
- `((define-vop (,pred-name simple-type-predicate)
- (:translate ,pred-name)
- (:generator ,cost
- (test-type value target not-p ,@type-codes)))))
- ,@(when check-name
- `((define-vop (,check-name simple-check-type)
- (:generator ,cost
- (let ((err-lab
- (generate-error-code vop ,error-code value)))
- (test-type value err-lab t ,@type-codes)
+ (test-type value err-lab t (,@type-codes))
(move result value))))))
,@(when ptype
`((primitive-type-vop ,check-name (:check) ,ptype))))))
\f
;;;; other integer ranges
+(define-vop (fixnump/unsigned-byte-32 simple-type-predicate)
+ (:args (value :scs (unsigned-reg)))
+ (:arg-types unsigned-num)
+ (:translate fixnump)
+ (:generator 5
+ (inst cmp value #.sb!xc:most-positive-fixnum)
+ (inst jmp (if not-p :a :be) target)))
+
;;; A (SIGNED-BYTE 32) can be represented with either fixnum or a bignum with
;;; exactly one digit.
(let ((is-symbol-label (if not-p drop-thru target)))
(inst cmp value nil-value)
(inst jmp :e is-symbol-label)
- (test-type value target not-p symbol-header-widetag))
+ (test-type value target not-p (symbol-header-widetag)))
DROP-THRU))
(define-vop (check-symbol check-type)
(let ((error (generate-error-code vop object-not-symbol-error value)))
(inst cmp value nil-value)
(inst jmp :e drop-thru)
- (test-type value error t symbol-header-widetag))
+ (test-type value error t (symbol-header-widetag)))
DROP-THRU
(move result value)))
(let ((is-not-cons-label (if not-p target drop-thru)))
(inst cmp value nil-value)
(inst jmp :e is-not-cons-label)
- (test-type value target not-p list-pointer-lowtag))
+ (test-type value target not-p (list-pointer-lowtag)))
DROP-THRU))
(define-vop (check-cons check-type)
(let ((error (generate-error-code vop object-not-cons-error value)))
(inst cmp value nil-value)
(inst jmp :e error)
- (test-type value error t list-pointer-lowtag)
+ (test-type value error t (list-pointer-lowtag))
(move result value))))