40#define DEBUG_TYPE "riscv-vl-optimizer"
41#define PASS_NAME "RISC-V VL Optimizer"
50 static DemandedVL vlmax() {
62 return DemandedVL::vlmax();
66class RISCVVLOptimizerImpl {
77 DemandedVL getMinimumVLForUser(
const MachineOperand &UserOp)
const;
93 return MO.isReg() && MO.getReg().isVirtual() &&
94 RISCVRegisterInfo::isRVVRegClass(MRI->getRegClass(MO.getReg()));
123 std::optional<std::pair<unsigned, bool>> EMUL;
130 OperandInfo(std::pair<unsigned, bool> EMUL,
unsigned Log2EEW)
131 : EMUL(EMUL), Log2EEW(Log2EEW) {}
133 OperandInfo(
unsigned Log2EEW) : Log2EEW(Log2EEW) {}
135 OperandInfo() =
delete;
139 static bool areCompatible(
const OperandInfo &Def,
const OperandInfo &
User) {
140 if (Def.Log2EEW !=
User.Log2EEW)
142 if (
User.EMUL && Def.EMUL !=
User.EMUL)
154 OS <<
"EMUL: none\n";
155 OS <<
", EEW: " << (1 << Log2EEW);
161char RISCVVLOptimizerLegacy::ID = 0;
168 return new RISCVVLOptimizerLegacy();
179 const std::optional<OperandInfo> &OI) {
189static std::pair<unsigned, bool>
201 unsigned MISEW = 1 << MILog2SEW;
203 unsigned EEW = 1 << Log2EEW;
206 unsigned Num = EEW, Denom = MISEW;
207 int GCD = MILMULIsFractional ? std::gcd(Num, Denom * MILMUL)
208 : std::gcd(Num * MILMUL, Denom);
209 Num = MILMULIsFractional ? Num / GCD : Num * MILMUL / GCD;
210 Denom = MILMULIsFractional ? Denom * MILMUL / GCD : Denom / GCD;
211 return std::make_pair(Num > Denom ? Num : Denom, Denom > Num);
225 unsigned MISEW = 1 << MILog2SEW;
226 unsigned EEW = MISEW / Factor;
227 unsigned Log2EEW =
Log2_32(EEW);
232#define VSEG_CASES(Prefix, EEW) \
233 RISCV::Prefix##SEG2E##EEW##_V: \
234 case RISCV::Prefix##SEG3E##EEW##_V: \
235 case RISCV::Prefix##SEG4E##EEW##_V: \
236 case RISCV::Prefix##SEG5E##EEW##_V: \
237 case RISCV::Prefix##SEG6E##EEW##_V: \
238 case RISCV::Prefix##SEG7E##EEW##_V: \
239 case RISCV::Prefix##SEG8E##EEW##_V
240#define VSSEG_CASES(EEW) VSEG_CASES(VS, EEW)
241#define VSSSEG_CASES(EEW) VSEG_CASES(VSS, EEW)
242#define VSUXSEG_CASES(EEW) VSEG_CASES(VSUX, I##EEW)
243#define VSOXSEG_CASES(EEW) VSEG_CASES(VSOX, I##EEW)
249 RISCVVPseudosTable::getPseudoInfo(
MI.getOpcode());
250 assert(
RVV &&
"Could not find MI in PseudoTable");
265 Info.RegClass == RISCV::VMV0RegClassID)
270 switch (
RVV->BaseInstr) {
274 case RISCV::VSETIVLI:
296 case RISCV::VLSE16_V:
297 case RISCV::VSSE16_V:
303 case RISCV::VLSE32_V:
304 case RISCV::VSSE32_V:
310 case RISCV::VLSE64_V:
311 case RISCV::VSSE64_V:
319 case RISCV::VLUXEI8_V:
320 case RISCV::VLOXEI8_V:
321 case RISCV::VSUXEI8_V:
322 case RISCV::VSOXEI8_V:
329 case RISCV::VLUXEI16_V:
330 case RISCV::VLOXEI16_V:
331 case RISCV::VSUXEI16_V:
332 case RISCV::VSOXEI16_V:
339 case RISCV::VLUXEI32_V:
340 case RISCV::VLOXEI32_V:
341 case RISCV::VSUXEI32_V:
342 case RISCV::VSOXEI32_V:
349 case RISCV::VLUXEI64_V:
350 case RISCV::VLOXEI64_V:
351 case RISCV::VSUXEI64_V:
352 case RISCV::VSOXEI64_V:
367 case RISCV::VRSUB_VI:
368 case RISCV::VRSUB_VX:
392 case RISCV::VMINU_VV:
393 case RISCV::VMINU_VX:
396 case RISCV::VMAXU_VV:
397 case RISCV::VMAXU_VX:
404 case RISCV::VMULH_VV:
405 case RISCV::VMULH_VX:
406 case RISCV::VMULHU_VV:
407 case RISCV::VMULHU_VX:
408 case RISCV::VMULHSU_VV:
409 case RISCV::VMULHSU_VX:
412 case RISCV::VDIVU_VV:
413 case RISCV::VDIVU_VX:
416 case RISCV::VREMU_VV:
417 case RISCV::VREMU_VX:
422 case RISCV::VMACC_VV:
423 case RISCV::VMACC_VX:
424 case RISCV::VNMSAC_VV:
425 case RISCV::VNMSAC_VX:
426 case RISCV::VMADD_VV:
427 case RISCV::VMADD_VX:
428 case RISCV::VNMSUB_VV:
429 case RISCV::VNMSUB_VX:
434 case RISCV::VMERGE_VIM:
435 case RISCV::VMERGE_VVM:
436 case RISCV::VMERGE_VXM:
437 case RISCV::VADC_VIM:
438 case RISCV::VADC_VVM:
439 case RISCV::VADC_VXM:
440 case RISCV::VSBC_VVM:
441 case RISCV::VSBC_VXM:
450 case RISCV::VSADDU_VI:
451 case RISCV::VSADDU_VV:
452 case RISCV::VSADDU_VX:
453 case RISCV::VSADD_VI:
454 case RISCV::VSADD_VV:
455 case RISCV::VSADD_VX:
456 case RISCV::VSSUBU_VV:
457 case RISCV::VSSUBU_VX:
458 case RISCV::VSSUB_VV:
459 case RISCV::VSSUB_VX:
460 case RISCV::VAADDU_VV:
461 case RISCV::VAADDU_VX:
462 case RISCV::VAADD_VV:
463 case RISCV::VAADD_VX:
464 case RISCV::VASUBU_VV:
465 case RISCV::VASUBU_VX:
466 case RISCV::VASUB_VV:
467 case RISCV::VASUB_VX:
471 case RISCV::VSMUL_VV:
472 case RISCV::VSMUL_VX:
475 case RISCV::VSSRL_VI:
476 case RISCV::VSSRL_VV:
477 case RISCV::VSSRL_VX:
478 case RISCV::VSSRA_VI:
479 case RISCV::VSSRA_VV:
480 case RISCV::VSSRA_VX:
487 case RISCV::VFMV_F_S:
488 case RISCV::VFMV_S_F:
491 case RISCV::VSLIDEUP_VI:
492 case RISCV::VSLIDEUP_VX:
493 case RISCV::VSLIDEDOWN_VI:
494 case RISCV::VSLIDEDOWN_VX:
495 case RISCV::VSLIDE1UP_VX:
496 case RISCV::VFSLIDE1UP_VF:
497 case RISCV::VSLIDE1DOWN_VX:
498 case RISCV::VFSLIDE1DOWN_VF:
501 case RISCV::VRGATHER_VI:
502 case RISCV::VRGATHER_VV:
503 case RISCV::VRGATHER_VX:
507 case RISCV::VFADD_VF:
508 case RISCV::VFADD_VV:
509 case RISCV::VFSUB_VF:
510 case RISCV::VFSUB_VV:
511 case RISCV::VFRSUB_VF:
513 case RISCV::VFMUL_VF:
514 case RISCV::VFMUL_VV:
515 case RISCV::VFDIV_VF:
516 case RISCV::VFDIV_VV:
517 case RISCV::VFRDIV_VF:
519 case RISCV::VFMACC_VV:
520 case RISCV::VFMACC_VF:
521 case RISCV::VFNMACC_VV:
522 case RISCV::VFNMACC_VF:
523 case RISCV::VFMSAC_VV:
524 case RISCV::VFMSAC_VF:
525 case RISCV::VFNMSAC_VV:
526 case RISCV::VFNMSAC_VF:
527 case RISCV::VFMADD_VV:
528 case RISCV::VFMADD_VF:
529 case RISCV::VFNMADD_VV:
530 case RISCV::VFNMADD_VF:
531 case RISCV::VFMSUB_VV:
532 case RISCV::VFMSUB_VF:
533 case RISCV::VFNMSUB_VV:
534 case RISCV::VFNMSUB_VF:
536 case RISCV::VFSQRT_V:
538 case RISCV::VFRSQRT7_V:
540 case RISCV::VFREC7_V:
542 case RISCV::VFMIN_VF:
543 case RISCV::VFMIN_VV:
544 case RISCV::VFMAX_VF:
545 case RISCV::VFMAX_VV:
547 case RISCV::VFSGNJ_VF:
548 case RISCV::VFSGNJ_VV:
549 case RISCV::VFSGNJN_VV:
550 case RISCV::VFSGNJN_VF:
551 case RISCV::VFSGNJX_VF:
552 case RISCV::VFSGNJX_VV:
554 case RISCV::VFCLASS_V:
556 case RISCV::VFMV_V_F:
558 case RISCV::VFCVT_XU_F_V:
559 case RISCV::VFCVT_X_F_V:
560 case RISCV::VFCVT_RTZ_XU_F_V:
561 case RISCV::VFCVT_RTZ_X_F_V:
562 case RISCV::VFCVT_F_XU_V:
563 case RISCV::VFCVT_F_X_V:
565 case RISCV::VFMERGE_VFM:
569 case RISCV::VFIRST_M:
572 case RISCV::VANDN_VV:
573 case RISCV::VANDN_VX:
577 case RISCV::VBREV8_V:
595 case RISCV::VCLMUL_VV:
596 case RISCV::VCLMUL_VX:
598 case RISCV::VCLMULH_VV:
599 case RISCV::VCLMULH_VX:
604 case RISCV::VABDU_VV:
605 case RISCV::VABDU_VX:
609 case RISCV::VWSLL_VI:
610 case RISCV::VWSLL_VX:
611 case RISCV::VWSLL_VV:
614 case RISCV::VWADDU_VV:
615 case RISCV::VWADDU_VX:
616 case RISCV::VWSUBU_VV:
617 case RISCV::VWSUBU_VX:
618 case RISCV::VWADD_VV:
619 case RISCV::VWADD_VX:
620 case RISCV::VWSUB_VV:
621 case RISCV::VWSUB_VX:
624 case RISCV::VWMUL_VV:
625 case RISCV::VWMUL_VX:
626 case RISCV::VWMULSU_VV:
627 case RISCV::VWMULSU_VX:
628 case RISCV::VWMULU_VV:
629 case RISCV::VWMULU_VX:
635 case RISCV::VWMACCU_VV:
636 case RISCV::VWMACCU_VX:
637 case RISCV::VWMACC_VV:
638 case RISCV::VWMACC_VX:
639 case RISCV::VWMACCSU_VV:
640 case RISCV::VWMACCSU_VX:
641 case RISCV::VWMACCUS_VX:
643 case RISCV::VFWMACC_VF:
644 case RISCV::VFWMACC_VV:
645 case RISCV::VFWNMACC_VF:
646 case RISCV::VFWNMACC_VV:
647 case RISCV::VFWMSAC_VF:
648 case RISCV::VFWMSAC_VV:
649 case RISCV::VFWNMSAC_VF:
650 case RISCV::VFWNMSAC_VV:
651 case RISCV::VFWMACCBF16_VV:
652 case RISCV::VFWMACCBF16_VF:
655 case RISCV::VFWADD_VV:
656 case RISCV::VFWADD_VF:
657 case RISCV::VFWSUB_VV:
658 case RISCV::VFWSUB_VF:
660 case RISCV::VFWMUL_VF:
661 case RISCV::VFWMUL_VV:
663 case RISCV::VFWCVT_XU_F_V:
664 case RISCV::VFWCVT_X_F_V:
665 case RISCV::VFWCVT_RTZ_XU_F_V:
666 case RISCV::VFWCVT_RTZ_X_F_V:
667 case RISCV::VFWCVT_F_XU_V:
668 case RISCV::VFWCVT_F_X_V:
669 case RISCV::VFWCVT_F_F_V:
670 case RISCV::VFWCVTBF16_F_F_V:
672 case RISCV::VWABDA_VV:
673 case RISCV::VWABDA_VX:
674 case RISCV::VWABDAU_VV:
675 case RISCV::VWABDAU_VX:
676 return IsMODef ? MILog2SEW + 1 : MILog2SEW;
679 case RISCV::VWADDU_WV:
680 case RISCV::VWADDU_WX:
681 case RISCV::VWSUBU_WV:
682 case RISCV::VWSUBU_WX:
683 case RISCV::VWADD_WV:
684 case RISCV::VWADD_WX:
685 case RISCV::VWSUB_WV:
686 case RISCV::VWSUB_WX:
688 case RISCV::VFWADD_WF:
689 case RISCV::VFWADD_WV:
690 case RISCV::VFWSUB_WF:
691 case RISCV::VFWSUB_WV: {
692 bool IsOp1 = (HasPassthru && !IsTied) ? MO.
getOperandNo() == 2
694 bool TwoTimes = IsMODef || IsOp1;
695 return TwoTimes ? MILog2SEW + 1 : MILog2SEW;
699 case RISCV::VZEXT_VF2:
700 case RISCV::VSEXT_VF2:
702 case RISCV::VZEXT_VF4:
703 case RISCV::VSEXT_VF4:
705 case RISCV::VZEXT_VF8:
706 case RISCV::VSEXT_VF8:
711 case RISCV::VNSRL_WX:
712 case RISCV::VNSRL_WI:
713 case RISCV::VNSRL_WV:
714 case RISCV::VNSRA_WI:
715 case RISCV::VNSRA_WV:
716 case RISCV::VNSRA_WX:
719 case RISCV::VNCLIPU_WI:
720 case RISCV::VNCLIPU_WV:
721 case RISCV::VNCLIPU_WX:
722 case RISCV::VNCLIP_WI:
723 case RISCV::VNCLIP_WV:
724 case RISCV::VNCLIP_WX:
726 case RISCV::VFNCVT_XU_F_W:
727 case RISCV::VFNCVT_X_F_W:
728 case RISCV::VFNCVT_RTZ_XU_F_W:
729 case RISCV::VFNCVT_RTZ_X_F_W:
730 case RISCV::VFNCVT_F_XU_W:
731 case RISCV::VFNCVT_F_X_W:
732 case RISCV::VFNCVT_F_F_W:
733 case RISCV::VFNCVT_ROD_F_F_W:
734 case RISCV::VFNCVTBF16_F_F_W: {
737 bool TwoTimes = IsOp1;
738 return TwoTimes ? MILog2SEW + 1 : MILog2SEW;
750 case RISCV::VMAND_MM:
751 case RISCV::VMNAND_MM:
752 case RISCV::VMANDN_MM:
753 case RISCV::VMXOR_MM:
755 case RISCV::VMNOR_MM:
756 case RISCV::VMORN_MM:
757 case RISCV::VMXNOR_MM:
760 case RISCV::VMSOF_M: {
767 case RISCV::VCOMPRESS_VM:
773 case RISCV::VIOTA_M: {
781 case RISCV::VMSEQ_VI:
782 case RISCV::VMSEQ_VV:
783 case RISCV::VMSEQ_VX:
784 case RISCV::VMSNE_VI:
785 case RISCV::VMSNE_VV:
786 case RISCV::VMSNE_VX:
787 case RISCV::VMSLTU_VV:
788 case RISCV::VMSLTU_VX:
789 case RISCV::VMSLT_VV:
790 case RISCV::VMSLT_VX:
791 case RISCV::VMSLEU_VV:
792 case RISCV::VMSLEU_VI:
793 case RISCV::VMSLEU_VX:
794 case RISCV::VMSLE_VV:
795 case RISCV::VMSLE_VI:
796 case RISCV::VMSLE_VX:
797 case RISCV::VMSGTU_VI:
798 case RISCV::VMSGTU_VX:
799 case RISCV::VMSGT_VI:
800 case RISCV::VMSGT_VX:
803 case RISCV::VMADC_VIM:
804 case RISCV::VMADC_VVM:
805 case RISCV::VMADC_VXM:
806 case RISCV::VMSBC_VVM:
807 case RISCV::VMSBC_VXM:
809 case RISCV::VMADC_VV:
810 case RISCV::VMADC_VI:
811 case RISCV::VMADC_VX:
812 case RISCV::VMSBC_VV:
813 case RISCV::VMSBC_VX:
816 case RISCV::VMFEQ_VF:
817 case RISCV::VMFEQ_VV:
818 case RISCV::VMFNE_VF:
819 case RISCV::VMFNE_VV:
820 case RISCV::VMFLT_VF:
821 case RISCV::VMFLT_VV:
822 case RISCV::VMFLE_VF:
823 case RISCV::VMFLE_VV:
824 case RISCV::VMFGT_VF:
825 case RISCV::VMFGE_VF: {
833 case RISCV::VREDAND_VS:
834 case RISCV::VREDMAX_VS:
835 case RISCV::VREDMAXU_VS:
836 case RISCV::VREDMIN_VS:
837 case RISCV::VREDMINU_VS:
838 case RISCV::VREDOR_VS:
839 case RISCV::VREDSUM_VS:
840 case RISCV::VREDXOR_VS:
842 case RISCV::VFREDMAX_VS:
843 case RISCV::VFREDMIN_VS:
844 case RISCV::VFREDOSUM_VS:
845 case RISCV::VFREDUSUM_VS: {
852 case RISCV::VWREDSUM_VS:
853 case RISCV::VWREDSUMU_VS:
855 case RISCV::VFWREDOSUM_VS:
856 case RISCV::VFWREDUSUM_VS: {
858 return TwoTimes ? MILog2SEW + 1 : MILog2SEW;
863 case RISCV::VRGATHEREI16_VV: {
877 RISCVVPseudosTable::getPseudoInfo(
MI.getOpcode());
878 assert(
RVV &&
"Could not find MI in PseudoTable");
884 switch (
RVV->BaseInstr) {
891 case RISCV::VREDAND_VS:
892 case RISCV::VREDMAX_VS:
893 case RISCV::VREDMAXU_VS:
894 case RISCV::VREDMIN_VS:
895 case RISCV::VREDMINU_VS:
896 case RISCV::VREDOR_VS:
897 case RISCV::VREDSUM_VS:
898 case RISCV::VREDXOR_VS:
899 case RISCV::VWREDSUM_VS:
900 case RISCV::VWREDSUMU_VS:
901 case RISCV::VFWREDOSUM_VS:
902 case RISCV::VFWREDUSUM_VS:
904 return OperandInfo(*Log2EEW);
915bool RISCVVLOptimizerImpl::isSupportedInstr(
const MachineInstr &
MI)
const {
923 assert(!(
MI.getNumExplicitDefs() == 0 && !
MI.mayStore() &&
925 "No defs but elements don't depend on VL?");
929 if (RVVOpc == RISCV::VMV_S_X || RVVOpc == RISCV::VFMV_S_F)
945 RISCVVPseudosTable::getPseudoInfo(
MI->getOpcode());
950 switch (
RVV->BaseInstr) {
952 case RISCV::VREDAND_VS:
953 case RISCV::VREDMAX_VS:
954 case RISCV::VREDMAXU_VS:
955 case RISCV::VREDMIN_VS:
956 case RISCV::VREDMINU_VS:
957 case RISCV::VREDOR_VS:
958 case RISCV::VREDSUM_VS:
959 case RISCV::VREDXOR_VS:
960 case RISCV::VWREDSUM_VS:
961 case RISCV::VWREDSUMU_VS:
962 case RISCV::VFREDMAX_VS:
963 case RISCV::VFREDMIN_VS:
964 case RISCV::VFREDOSUM_VS:
965 case RISCV::VFREDUSUM_VS:
966 case RISCV::VFWREDOSUM_VS:
967 case RISCV::VFWREDUSUM_VS:
970 case RISCV::VFMV_F_S:
977bool RISCVVLOptimizerImpl::isCandidate(
const MachineInstr &
MI)
const {
978 const MCInstrDesc &
Desc =
MI.getDesc();
982 if (
MI.getNumExplicitDefs() != 1)
987 if (!
MI.allImplicitDefsAreDead()) {
988 LLVM_DEBUG(
dbgs() <<
"Not a candidate because has non-dead implicit def\n");
992 if (
MI.mayRaiseFPException()) {
993 LLVM_DEBUG(
dbgs() <<
"Not a candidate because may raise FP exception\n");
997 for (
const MachineMemOperand *MMO :
MI.memoperands()) {
998 if (MMO->isVolatile()) {
999 LLVM_DEBUG(
dbgs() <<
"Not a candidate because contains volatile MMO\n");
1004 if (!isSupportedInstr(
MI)) {
1005 LLVM_DEBUG(
dbgs() <<
"Not a candidate due to unsupported instruction: "
1012 "Instruction shouldn't be supported if elements depend on VL");
1016 "All supported instructions produce a vector register result");
1018 LLVM_DEBUG(
dbgs() <<
"Found a candidate for VL reduction: " <<
MI <<
"\n");
1033static std::optional<DemandedVL>
1038 return std::nullopt;
1041 return std::nullopt;
1045 return std::nullopt;
1049 return std::nullopt;
1051 if (!SlideAmtDef || SlideAmtDef->
getOpcode() != RISCV::ADDI ||
1054 return std::nullopt;
1059RISCVVLOptimizerImpl::getMinimumVLForUser(
const MachineOperand &UserOp)
const {
1060 const MachineInstr &UserMI = *UserOp.
getParent();
1064 return DemandedVLs.lookup(&UserMI);
1069 return DemandedVL::vlmax();
1077 LLVM_DEBUG(
dbgs() <<
" Abort because used by unsafe instruction\n");
1078 return DemandedVL::vlmax();
1082 const MachineOperand &VLOp = UserMI.
getOperand(VLOpNum);
1085 "Did not expect X0 VL");
1094 "instruction with demanded tail\n");
1095 return DemandedVL::vlmax();
1102 LLVM_DEBUG(
dbgs() <<
" Used this operand as a scalar operand\n");
1109 return DemandedVLs.lookup(&UserMI);
1118 if (!
MI.isInsertSubreg())
1132 unsigned SubRegIdx =
MI.getOperand(3).getImm();
1134 assert(!IsFractional &&
"unexpected LMUL for tuple register classes");
1162bool RISCVVLOptimizerImpl::checkUsers(
const MachineInstr &
MI)
const {
1166 SmallSetVector<MachineOperand *, 8> OpWorklist;
1167 SmallPtrSet<const MachineInstr *, 4> PHISeen;
1168 for (
auto &UserOp : MRI->
use_operands(
MI.getOperand(0).getReg()))
1169 OpWorklist.
insert(&UserOp);
1171 while (!OpWorklist.
empty()) {
1173 const MachineInstr &UserMI = *UserOp.
getParent();
1184 LLVM_DEBUG(
dbgs().indent(4) <<
"Peeking through uses of INSERT_SUBREG\n");
1185 for (MachineOperand &UseOp :
1187 const MachineInstr &CandidateMI = *UseOp.getParent();
1195 OpWorklist.
insert(&UseOp);
1200 if (UserMI.
isPHI()) {
1202 if (!PHISeen.
insert(&UserMI).second)
1215 std::optional<OperandInfo> ConsumerInfo =
getOperandInfo(UserOp);
1216 std::optional<OperandInfo> ProducerInfo =
getOperandInfo(
MI.getOperand(0));
1217 if (!ConsumerInfo || !ProducerInfo) {
1218 LLVM_DEBUG(
dbgs() <<
" Abort due to unknown operand information.\n");
1219 LLVM_DEBUG(
dbgs() <<
" ConsumerInfo is: " << ConsumerInfo <<
"\n");
1220 LLVM_DEBUG(
dbgs() <<
" ProducerInfo is: " << ProducerInfo <<
"\n");
1224 if (!OperandInfo::areCompatible(*ProducerInfo, *ConsumerInfo)) {
1227 <<
" Abort due to incompatible information for EMUL or EEW.\n");
1228 LLVM_DEBUG(
dbgs() <<
" ConsumerInfo is: " << ConsumerInfo <<
"\n");
1229 LLVM_DEBUG(
dbgs() <<
" ProducerInfo is: " << ProducerInfo <<
"\n");
1237bool RISCVVLOptimizerImpl::tryReduceVL(MachineInstr &
MI,
1238 MachineOperand CommonVL)
const {
1242 MachineOperand &VLOp =
MI.getOperand(VLOpNum);
1245 "Expected VL to be an Imm or virtual Reg");
1249 if (CommonVL.
isReg()) {
1251 if (VLMI && RISCVInstrInfo::isFaultOnlyFirstLoad(*VLMI) &&
1263 dbgs() <<
" Abort due to CommonVL == VLOp, no point in reducing.\n");
1267 if (CommonVL.
isImm()) {
1269 << CommonVL.
getImm() <<
" for " <<
MI <<
"\n");
1277 auto VLDominates = [
this, &VLMI](
const MachineInstr &
MI) {
1280 if (!VLDominates(
MI)) {
1281 assert(
MI.getNumExplicitDefs() == 1);
1284 return Use.getParent() ==
MI.getParent();
1287 all_of(UsesSameBB, VLDominates) &&
1298 <<
" for " <<
MI <<
"\n");
1311void RISCVVLOptimizerImpl::transfer(
const MachineInstr &
MI) {
1313 DemandedVLs[&
MI] = DemandedVL::vlmax();
1315 for (
const MachineOperand &MO : virtual_vec_uses(
MI)) {
1317 DemandedVL Prev = DemandedVLs[
Def];
1318 DemandedVLs[
Def] = DemandedVLs[
Def].max(*MRI, getMinimumVLForUser(MO));
1319 if (DemandedVLs[Def] != Prev)
1320 Worklist.insert(Def);
1328 if (!
ST.hasVInstructions())
1331 TII =
ST.getInstrInfo();
1333 assert(DemandedVLs.empty());
1340 if (!
MI.isDebugInstr())
1341 Worklist.insert(&
MI);
1344 while (!Worklist.empty()) {
1345 const MachineInstr *
MI = Worklist.front();
1346 Worklist.remove(
MI);
1352 bool MadeChange =
false;
1353 for (
auto &[
MI, VL] : DemandedVLs) {
1357 if (!tryReduceVL(*
const_cast<MachineInstr *
>(
MI), VL.VL))
1362 DemandedVLs.clear();
1366bool RISCVVLOptimizerLegacy::runOnMachineFunction(
MachineFunction &MF) {
1370 auto *MDT = &getAnalysis<MachineDominatorTreeWrapperPass>().getDomTree();
1371 return RISCVVLOptimizerImpl(MDT).run(MF);
1378 bool Changed = RISCVVLOptimizerImpl(MDT).run(MF);
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
const HexagonInstrInfo * TII
static bool isCandidate(const MachineInstr *MI, Register &DefedReg, Register FrameReg)
Register const TargetRegisterInfo * TRI
#define INITIALIZE_PASS_DEPENDENCY(depName)
#define INITIALIZE_PASS_END(passName, arg, name, cfg, analysis)
#define INITIALIZE_PASS_BEGIN(passName, arg, name, cfg, analysis)
This file builds on the ADT/GraphTraits.h file to build a generic graph post order iterator.
static std::optional< DemandedVL > getMinimumVLForVSLIDEDOWN_VX(const MachineOperand &UserOp, const MachineRegisterInfo *MRI)
Given a vslidedown.vx like:
static unsigned getIntegerExtensionOperandEEW(unsigned Factor, const MachineInstr &MI, const MachineOperand &MO)
Dest has EEW=SEW.
static std::optional< OperandInfo > getOperandInfo(const MachineOperand &MO)
#define VSOXSEG_CASES(EEW)
static bool isSegmentedStoreInstr(const MachineInstr &MI)
static bool isVectorOpUsedAsScalarOp(const MachineOperand &MO)
Return true if MO is a vector operand but is used as a scalar operand.
static std::optional< unsigned > getOperandLog2EEW(const MachineOperand &MO)
static std::pair< unsigned, bool > getEMULEqualsEEWDivSEWTimesLMUL(unsigned Log2EEW, const MachineInstr &MI)
Return EMUL = (EEW / SEW) * LMUL where EEW comes from Log2EEW and LMUL and SEW are from the TSFlags o...
#define VSUXSEG_CASES(EEW)
static bool isPhysical(const MachineOperand &MO)
#define VSSSEG_CASES(EEW)
static bool isTupleInsertInstr(const MachineInstr &MI)
Return true if MI is an instruction used for assembling registers for segmented store instructions,...
Remove Loads Into Fake Uses
This file implements a set that has insertion order iteration characteristics.
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
Represent the analysis usage information of a pass.
AnalysisUsage & addRequired()
AnalysisUsage & addPreserved()
Add the specified Pass class to the set of analyses preserved by this pass.
LLVM_ABI void setPreservesCFG()
This function should be called by the pass, iff they do not:
Represents analyses that only rely on functions' control flow.
bool isReachableFromEntry(const NodeT *A) const
isReachableFromEntry - Return true if A is dominated by the entry block of the function containing it...
FunctionPass class - This class is used to implement most global optimizations.
Describe properties that are true of each instruction in the target description file.
This holds information about one operand of a machine instruction, indicating the register class for ...
const uint8_t TSFlags
Configurable target specific flags.
const MachineFunction * getParent() const
Return the MachineFunction containing this basic block.
void splice(iterator Where, MachineBasicBlock *Other, iterator From)
Take an instruction from MBB 'Other' at the position From, and insert it into this MBB right before '...
Analysis pass which computes a MachineDominatorTree.
Analysis pass which computes a MachineDominatorTree.
DominatorTree Class - Concrete subclass of DominatorTreeBase that is used to compute a normal dominat...
bool dominates(const MachineInstr *A, const MachineInstr *B) const
MachineFunctionPass - This class adapts the FunctionPass interface to allow convenient creation of pa...
void getAnalysisUsage(AnalysisUsage &AU) const override
getAnalysisUsage - Subclasses that override getAnalysisUsage must call this.
const TargetSubtargetInfo & getSubtarget() const
getSubtarget - Return the subtarget for which this machine code is being compiled.
MachineRegisterInfo & getRegInfo()
getRegInfo - Return information about the registers currently in use.
Function & getFunction()
Return the LLVM function that this machine code represents.
Representation of each machine instruction.
unsigned getOpcode() const
Returns the opcode of this MachineInstr.
const MachineBasicBlock * getParent() const
const MCInstrDesc & getDesc() const
Returns the target instruction descriptor of this MachineInstr.
LLVM_ABI unsigned getNumExplicitDefs() const
Returns the number of non-implicit definitions.
const MachineOperand & getOperand(unsigned i) const
MachineOperand class - Representation of each machine instruction operand.
LLVM_ABI unsigned getOperandNo() const
Returns the index of this operand in the instruction that it belongs to.
bool isReg() const
isReg - Tests if this is a MO_Register operand.
bool isImm() const
isImm - Tests if this is a MO_Immediate operand.
LLVM_ABI void ChangeToImmediate(int64_t ImmVal, unsigned TargetFlags=0)
ChangeToImmediate - Replace this operand with a new immediate operand of the specified value.
LLVM_ABI void ChangeToRegister(Register Reg, bool isDef, bool isImp=false, bool isKill=false, bool isDead=false, bool isUndef=false, bool isDebug=false)
ChangeToRegister - Replace this operand with a new register operand of the specified value.
MachineInstr * getParent()
getParent - Return the instruction that this operand belongs to.
static MachineOperand CreateImm(int64_t Val)
Register getReg() const
getReg - Returns the register number.
LLVM_ABI bool isIdenticalTo(const MachineOperand &Other) const
Returns true if this operand is identical to the specified operand except for liveness related flags ...
MachineRegisterInfo - Keep track of information for virtual and physical registers,...
const TargetRegisterClass * getRegClass(Register Reg) const
Return the register class of the specified virtual register.
LLVM_ABI LLVM_READONLY MachineInstr * getVRegDef(Register Reg) const
getVRegDef - Return the machine instr that defines the specified virtual register or null if none is ...
iterator_range< use_instr_iterator > use_instructions(Register Reg) const
const TargetRegisterInfo * getTargetRegisterInfo() const
LLVM_ABI const TargetRegisterClass * constrainRegClass(Register Reg, const TargetRegisterClass *RC, unsigned MinNumRegs=0)
constrainRegClass - Constrain the register class of the specified virtual register to be a common sub...
iterator_range< use_iterator > use_operands(Register Reg) const
This class implements a map that also provides access to all stored values in a deterministic order.
A set of analyses that are preserved following a run of a transformation pass.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
PreservedAnalyses & preserveSet()
Mark an analysis set as preserved.
PreservedAnalyses & preserve()
Mark an analysis as preserved.
static bool isSafeToMove(const MachineInstr &From, const MachineBasicBlock::iterator &To)
Return true if moving From down to To won't cause any physical register reads or writes to be clobber...
PreservedAnalyses run(MachineFunction &MF, MachineFunctionAnalysisManager &MFAM)
constexpr bool isVirtual() const
Return true if the specified register number is in the virtual register namespace.
constexpr bool isPhysical() const
Return true if the specified register number is in the physical register namespace.
A vector that has set insertion semantics.
void insert_range(Range &&R)
bool empty() const
Determine if the SetVector is empty or not.
bool insert(const value_type &X)
Insert a new element into the SetVector.
value_type pop_back_val()
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
Represent a constant reference to a string, i.e.
TargetInstrInfo - Interface to description of machine instruction set.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
self_iterator getIterator()
This class implements an extremely fast bulk output stream that can only output to a stream.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
static bool readsPastVL(uint64_t TSFlags)
static bool isTiedPseudo(uint64_t TSFlags)
static RISCVVType::VLMUL getLMul(uint64_t TSFlags)
static unsigned getVLOpNum(const MCInstrDesc &Desc)
static bool hasVLOp(uint64_t TSFlags)
static unsigned getSEWOpNum(const MCInstrDesc &Desc)
static bool elementsDependOnVL(uint64_t TSFlags)
static bool hasSEWOp(uint64_t TSFlags)
static bool isFirstDefTiedToFirstUse(const MCInstrDesc &Desc)
static unsigned getNF(uint8_t TSFlags)
static bool isVRegClass(uint8_t TSFlags)
static RISCVVType::VLMUL getLMul(uint8_t TSFlags)
LLVM_ABI std::pair< unsigned, bool > decodeVLMUL(VLMUL VLMul)
unsigned getRVVMCOpcode(unsigned RVVPseudoOpcode)
static constexpr unsigned RVVBitsPerBlock
static constexpr int64_t VLMaxSentinel
bool isVLKnownLE(const MachineRegisterInfo &MRI, const MachineOperand &LHS, const MachineOperand &RHS)
Given two VL operands, do we know that LHS <= RHS?
NodeAddr< DefNode * > Def
NodeAddr< UseNode * > Use
This is an optimization pass for GlobalISel generic memory operations.
bool all_of(R &&range, UnaryPredicate P)
Provide wrappers to std::all_of which take ranges instead of having to pass begin/end explicitly.
Printable print(const GCNRegPressure &RP, const GCNSubtarget *ST=nullptr, unsigned DynamicVGPRBlockSize=0)
bool operator!=(uint64_t V1, const APInt &V2)
AnalysisManager< MachineFunction > MachineFunctionAnalysisManager
LLVM_ABI PreservedAnalyses getMachineFunctionPassPreservedAnalyses()
Returns the minimum set of Analyses that all machine function passes must preserve.
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
unsigned Log2_32(uint32_t Value)
Return the floor log base 2 of the specified value, -1 if the value is zero.
auto reverse(ContainerTy &&C)
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
iterator_range< filter_iterator< detail::IterOfRange< RangeT >, PredicateT > > make_filter_range(RangeT &&Range, PredicateT Pred)
Convenience function that takes a range of elements and a predicate, and return a new filter_iterator...
auto post_order(const T &G)
Post-order traversal of a graph.
constexpr NextUseDistance max(NextUseDistance A, NextUseDistance B)
raw_ostream & operator<<(raw_ostream &OS, const APFixedPoint &FX)
iterator_range< pointer_iterator< WrappedIteratorT > > make_pointer_range(RangeT &&Range)
FunctionPass * createRISCVVLOptimizerLegacyPass()
LLVM_ABI Printable printReg(Register Reg, const TargetRegisterInfo *TRI=nullptr, unsigned SubIdx=0, const MachineRegisterInfo *MRI=nullptr)
Prints virtual and physical registers with or without a TRI instance.
MCRegisterClass TargetRegisterClass