llvm-project/llvm/lib/Target/SystemZ
Simon Pilgrim f9de13232f [X86] Promote i8/i16 CTTZ (BSF) instructions and remove speculation branch
This patch adds a Type operand to the TLI isCheapToSpeculateCttz/isCheapToSpeculateCtlz callbacks, allowing targets to decide whether branches should occur on a type-by-type/legality basis.

For X86, this patch proposes to allow CTTZ speculation for i8/i16 types that will lower to promoted i32 BSF instructions by masking the operand above the msb (we already do something similar for i8/i16 TZCNT). This required a minor tweak to CTTZ lowering - if the src operand is known never zero (i.e. due to the promotion masking) we can remove the CMOV zero src handling.

Although BSF isn't very fast, most CPUs from the last 20 years don't do that bad a job with it, although there are some annoying passthrough EFLAGS dependencies. Additionally, now that we emit 'REP BSF' in most cases, we are tending towards assuming this will most likely be executed as a TZCNT instruction on any semi-modern CPU.

Differential Revision: https://reviews.llvm.org/D132520
2022-08-24 17:28:18 +01:00
..
AsmParser [SystemZ] Accept (. - 0x100000000) PCRel32 constants 2022-05-02 20:57:55 +02:00
Disassembler [MCDisassembler] Disambiguate Size parameter in tryAddingSymbolicOperand() 2022-05-25 13:44:32 -07:00
MCTargetDesc [CodeGen] Move instruction predicate verification to emitInstruction 2022-07-14 09:33:28 +01:00
TargetInfo
CMakeLists.txt
README.txt
SystemZ.h
SystemZ.td
SystemZAsmPrinter.cpp [CodeGen] Move instruction predicate verification to emitInstruction 2022-07-14 09:33:28 +01:00
SystemZAsmPrinter.h [SystemZ][z/OS] Add the PPA1 to SystemZAsmPrinter 2022-05-18 14:13:17 -04:00
SystemZCallingConv.cpp [SystemZ][z/OS] Introduce CCAssignToRegAndStack to calling convention 2022-07-19 13:55:25 -04:00
SystemZCallingConv.h [SystemZ][z/OS] Introduce CCAssignToRegAndStack to calling convention 2022-07-19 13:55:25 -04:00
SystemZCallingConv.td [SystemZ][z/OS] Introduce CCAssignToRegAndStack to calling convention 2022-07-19 13:55:25 -04:00
SystemZConstantPoolValue.cpp
SystemZConstantPoolValue.h
SystemZCopyPhysRegs.cpp [SystemZ] Remove unnecessary casts to SystemZInstrInfo (NFC). 2022-06-20 14:52:06 +02:00
SystemZElimCompare.cpp [SystemZ] Remove unnecessary casts to SystemZInstrInfo (NFC). 2022-06-20 14:52:06 +02:00
SystemZFeatures.td
SystemZFrameLowering.cpp Use range-based for loops (NFC) 2022-08-20 21:18:32 -07:00
SystemZFrameLowering.h [SystemZ][z/OS] Implement detection and handling for XPLink Leaf procedures. 2022-07-17 14:30:33 -04:00
SystemZHazardRecognizer.cpp
SystemZHazardRecognizer.h
SystemZISelDAGToDAG.cpp [llvm] LLVM_FALLTHROUGH => [[fallthrough]]. NFC 2022-08-08 11:24:15 -07:00
SystemZISelLowering.cpp [llvm] LLVM_FALLTHROUGH => [[fallthrough]]. NFC 2022-08-08 11:24:15 -07:00
SystemZISelLowering.h [X86] Promote i8/i16 CTTZ (BSF) instructions and remove speculation branch 2022-08-24 17:28:18 +01:00
SystemZInstrBuilder.h
SystemZInstrDFP.td
SystemZInstrFP.td
SystemZInstrFormats.td
SystemZInstrHFP.td
SystemZInstrInfo.cpp [llvm] LLVM_FALLTHROUGH => [[fallthrough]]. NFC 2022-08-08 11:24:15 -07:00
SystemZInstrInfo.h [SystemZ] Remove stray enum value in SystemZInstrInfo.h (NFC). 2022-06-20 14:52:06 +02:00
SystemZInstrInfo.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZInstrSystem.td
SystemZInstrVector.td
SystemZLDCleanup.cpp [SystemZ] Remove unnecessary casts to SystemZInstrInfo (NFC). 2022-06-20 14:52:06 +02:00
SystemZLongBranch.cpp
SystemZMCInstLower.cpp
SystemZMCInstLower.h
SystemZMachineFunctionInfo.cpp llvm-reduce: Add cloning of target MachineFunctionInfo 2022-06-07 10:14:48 -04:00
SystemZMachineFunctionInfo.h llvm-reduce: Add cloning of target MachineFunctionInfo 2022-06-07 10:14:48 -04:00
SystemZMachineScheduler.cpp
SystemZMachineScheduler.h
SystemZOperands.td
SystemZOperators.td
SystemZPatterns.td
SystemZPostRewrite.cpp [SystemZ] Remove unnecessary casts to SystemZInstrInfo (NFC). 2022-06-20 14:52:06 +02:00
SystemZProcessors.td [SystemZ] Add z16 scheduler description 2022-04-21 20:38:16 +02:00
SystemZRegisterInfo.cpp [SystemZ] Remove unnecessary casts to SystemZInstrInfo (NFC). 2022-06-20 14:52:06 +02:00
SystemZRegisterInfo.h Remove redundaunt override specifiers (NFC) 2022-07-24 22:28:11 -07:00
SystemZRegisterInfo.td
SystemZSchedule.td [SystemZ] Add z16 scheduler description 2022-04-21 20:38:16 +02:00
SystemZScheduleZ13.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZScheduleZ14.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZScheduleZ15.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZScheduleZ16.td [SystemZ] Add z16 scheduler description 2022-04-21 20:38:16 +02:00
SystemZScheduleZ196.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZScheduleZEC12.td [SystemZ] [z/OS] Add support for generating huge (1 MiB) stack frames in XPLINK64 2022-02-25 02:37:08 -05:00
SystemZSelectionDAGInfo.cpp [llvm] Fix comment typos (NFC) 2022-08-07 00:16:14 -07:00
SystemZSelectionDAGInfo.h [clang] Add support for __builtin_memset_inline 2022-06-10 13:13:59 +00:00
SystemZShortenInst.cpp [NFC][CodeGen] Rename some functions in MachineInstr.h and remove duplicated comments 2022-03-16 20:25:42 +08:00
SystemZSubtarget.cpp [SystemZ] Add support for tune-cpu attribute 2022-06-30 12:50:11 -04:00
SystemZSubtarget.h [SystemZ] Add support for tune-cpu attribute 2022-06-30 12:50:11 -04:00
SystemZTDC.cpp
SystemZTargetMachine.cpp [SystemZ] Add support for tune-cpu attribute 2022-06-30 12:50:11 -04:00
SystemZTargetMachine.h mark getTargetTransformInfo and getTargetIRAnalysis as const 2022-02-25 14:30:44 -05:00
SystemZTargetStreamer.h
SystemZTargetTransformInfo.cpp [TTI] Plumb through OperandValueInfo in getMemoryOpCost [NFC] 2022-08-23 07:55:42 -07:00
SystemZTargetTransformInfo.h [TTI] Plumb through OperandValueInfo in getMemoryOpCost [NFC] 2022-08-23 07:55:42 -07:00

README.txt

//===---------------------------------------------------------------------===//
// Random notes about and ideas for the SystemZ backend.
//===---------------------------------------------------------------------===//

The initial backend is deliberately restricted to z10.  We should add support
for later architectures at some point.

--

If an inline asm ties an i32 "r" result to an i64 input, the input
will be treated as an i32, leaving the upper bits uninitialised.
For example:

define void @f4(i32 *%dst) {
  %val = call i32 asm "blah $0", "=r,0" (i64 103)
  store i32 %val, i32 *%dst
  ret void
}

from CodeGen/SystemZ/asm-09.ll will use LHI rather than LGHI.
to load 103.  This seems to be a general target-independent problem.

--

The tuning of the choice between LOAD ADDRESS (LA) and addition in
SystemZISelDAGToDAG.cpp is suspect.  It should be tweaked based on
performance measurements.

--

There is no scheduling support.

--

We don't use the BRANCH ON INDEX instructions.

--

We only use MVC, XC and CLC for constant-length block operations.
We could extend them to variable-length operations too,
using EXECUTE RELATIVE LONG.

MVCIN, MVCLE and CLCLE may be worthwhile too.

--

We don't use CUSE or the TRANSLATE family of instructions for string
operations.  The TRANSLATE ones are probably more difficult to exploit.

--

We don't take full advantage of builtins like fabsl because the calling
conventions require f128s to be returned by invisible reference.

--

ADD LOGICAL WITH SIGNED IMMEDIATE could be useful when we need to
produce a carry.  SUBTRACT LOGICAL IMMEDIATE could be useful when we
need to produce a borrow.  (Note that there are no memory forms of
ADD LOGICAL WITH CARRY and SUBTRACT LOGICAL WITH BORROW, so the high
part of 128-bit memory operations would probably need to be done
via a register.)

--

We don't use ICM, STCM, or CLM.

--

We don't use ADD (LOGICAL) HIGH, SUBTRACT (LOGICAL) HIGH,
or COMPARE (LOGICAL) HIGH yet.

--

DAGCombiner doesn't yet fold truncations of extended loads.  Functions like:

    unsigned long f (unsigned long x, unsigned short *y)
    {
      return (x << 32) | *y;
    }

therefore end up as:

        sllg    %r2, %r2, 32
        llgh    %r0, 0(%r3)
        lr      %r2, %r0
        br      %r14

but truncating the load would give:

        sllg    %r2, %r2, 32
        lh      %r2, 0(%r3)
        br      %r14

--

Functions like:

define i64 @f1(i64 %a) {
  %and = and i64 %a, 1
  ret i64 %and
}

ought to be implemented as:

        lhi     %r0, 1
        ngr     %r2, %r0
        br      %r14

but two-address optimizations reverse the order of the AND and force:

        lhi     %r0, 1
        ngr     %r0, %r2
        lgr     %r2, %r0
        br      %r14

CodeGen/SystemZ/and-04.ll has several examples of this.

--

Out-of-range displacements are usually handled by loading the full
address into a register.  In many cases it would be better to create
an anchor point instead.  E.g. for:

define void @f4a(i128 *%aptr, i64 %base) {
  %addr = add i64 %base, 524288
  %bptr = inttoptr i64 %addr to i128 *
  %a = load volatile i128 *%aptr
  %b = load i128 *%bptr
  %add = add i128 %a, %b
  store i128 %add, i128 *%aptr
  ret void
}

(from CodeGen/SystemZ/int-add-08.ll) we load %base+524288 and %base+524296
into separate registers, rather than using %base+524288 as a base for both.

--

Dynamic stack allocations round the size to 8 bytes and then allocate
that rounded amount.  It would be simpler to subtract the unrounded
size from the copy of the stack pointer and then align the result.
See CodeGen/SystemZ/alloca-01.ll for an example.

--

If needed, we can support 16-byte atomics using LPQ, STPQ and CSDG.

--

We might want to model all access registers and use them to spill
32-bit values.

--

We might want to use the 'overflow' condition of eg. AR to support
llvm.sadd.with.overflow.i32 and related instructions - the generated code
for signed overflow check is currently quite bad.  This would improve
the results of using -ftrapv.