(in-package "SB!VM") (define-vop (reset-stack-pointer) (:args (ptr :scs (any-reg))) (:generator 1 (move ptr csp-tn))) (define-vop (%%pop-dx) (:args (ptr :scs (any-reg))) (:ignore ptr) (:generator 1 (bug "VOP %%POP-DX is not implemented."))) (define-vop (%%nip-dx) (:args (last-nipped-ptr :scs (any-reg) :target dest) (last-preserved-ptr :scs (any-reg) :target src) (moved-ptrs :scs (any-reg) :more t)) (:results (r-moved-ptrs :scs (any-reg) :more t)) (:temporary (:sc any-reg) src) (:temporary (:sc any-reg) dest) (:temporary (:sc non-descriptor-reg) temp) (:ignore r-moved-ptrs last-nipped-ptr last-preserved-ptr moved-ptrs src dest temp) (:generator 1 (bug "VOP %%NIP-DX is not implemented."))) (define-vop (%%nip-values) (:args (last-nipped-ptr :scs (any-reg) :target dest) (last-preserved-ptr :scs (any-reg) :target src) (moved-ptrs :scs (any-reg) :more t)) (:results (r-moved-ptrs :scs (any-reg) :more t)) (:temporary (:sc any-reg) src) (:temporary (:sc any-reg) dest) (:temporary (:sc non-descriptor-reg) temp) (:ignore r-moved-ptrs) (:generator 1 (move last-preserved-ptr src) (move last-nipped-ptr dest) (inst comb :>= src csp-tn DONE :nullify t) LOOP (inst ldwm n-word-bytes src temp) (inst addi n-word-bytes dest dest) (storew temp dest -1) (inst comb :> csp-tn src LOOP) (inst nop) DONE (move dest csp-tn) (inst sub src dest src) (loop for moved = moved-ptrs then (tn-ref-across moved) while moved do (sc-case (tn-ref-tn moved) ((descriptor-reg any-reg) (inst sub (tn-ref-tn moved) src (tn-ref-tn moved))) ((control-stack) (load-stack-tn temp (tn-ref-tn moved)) (inst sub temp src temp) (store-stack-tn (tn-ref-tn moved) temp)))))) ;;; Push some values onto the stack, returning the start and number of values ;;; pushed as results. It is assumed that the Vals are wired to the standard ;;; argument locations. Nvals is the number of values to push. ;;; ;;; The generator cost is pseudo-random. We could get it right by defining a ;;; bogus SC that reflects the costs of the memory-to-memory moves for each ;;; operand, but this seems unworthwhile. ;;; (define-vop (push-values) (:args (vals :more t)) (:results (start :scs (any-reg)) (count :scs (any-reg))) (:info nvals) (:temporary (:scs (descriptor-reg)) temp) (:temporary (:scs (descriptor-reg) :to (:result 0) :target start) start-temp) (:generator 20 (move csp-tn start-temp) (inst addi (* nvals n-word-bytes) csp-tn csp-tn) (do ((val vals (tn-ref-across val)) (i 0 (1+ i))) ((null val)) (let ((tn (tn-ref-tn val))) (sc-case tn (descriptor-reg (storew tn start-temp i)) (control-stack (load-stack-tn temp tn) (storew temp start-temp i))))) (move start-temp start) (inst li (fixnumize nvals) count))) ;;; Push a list of values on the stack, returning Start and Count as used in ;;; unknown values continuations. ;;; (define-vop (values-list) (:args (arg :scs (descriptor-reg) :target list)) (:arg-types list) (:policy :fast-safe) (:results (start :scs (any-reg)) (count :scs (any-reg))) (:temporary (:scs (descriptor-reg) :type list :from (:argument 0)) list) (:temporary (:scs (descriptor-reg)) temp) (:temporary (:scs (non-descriptor-reg)) ndescr) (:vop-var vop) (:save-p :compute-only) (:generator 0 (move arg list) (move csp-tn start) LOOP (inst comb := list null-tn done) (loadw temp list cons-car-slot list-pointer-lowtag) (loadw list list cons-cdr-slot list-pointer-lowtag) (inst addi n-word-bytes csp-tn csp-tn) (storew temp csp-tn -1) (inst extru list 31 n-lowtag-bits ndescr) (inst comib := list-pointer-lowtag ndescr loop) (inst nop) (error-call vop bogus-arg-to-values-list-error list) DONE (inst sub csp-tn start count))) ;;; Copy the more arg block to the top of the stack so we can use them ;;; as function arguments. ;;; (define-vop (%more-arg-values) (:args (context :scs (descriptor-reg any-reg) :target src) (skip :scs (any-reg zero immediate)) (num :scs (any-reg) :target count)) (:arg-types * positive-fixnum positive-fixnum) (:temporary (:sc any-reg :from (:argument 0)) src) (:temporary (:sc any-reg :from (:argument 2)) dst end) (:temporary (:sc descriptor-reg :from (:argument 1)) temp) (:results (start :scs (any-reg)) (count :scs (any-reg))) (:generator 20 (sc-case skip (zero (move context src)) (immediate (inst addi (* (tn-value skip) n-word-bytes) context src)) (any-reg (inst add skip context src))) (move num count) (inst comb := num zero-tn done) (move csp-tn start t) (move csp-tn dst) (inst add count csp-tn csp-tn) (inst addi (- n-word-bytes) csp-tn end) LOOP (inst ldwm n-word-bytes src temp) (inst comb :<> dst end loop) (inst stwm temp n-word-bytes dst) DONE))