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llvm-mirror/test/CodeGen/Hexagon/swp-epilog-reuse.ll
Brendon Cahoon e37295579e MachinePipeliner pass that implements Swing Modulo Scheduling
Software pipelining is an optimization for improving ILP by
overlapping loop iterations. Swing Modulo Scheduling (SMS) is
an implementation of software pipelining that attempts to
reduce register pressure and generate efficient pipelines with
a low compile-time cost.

This implementaion of SMS is a target-independent back-end pass.
When enabled, the pass should run just prior to the register
allocation pass, while the machine IR is in SSA form. If the pass
is successful, then the original loop is replaced by the optimized
loop. The optimized loop contains one or more prolog blocks, the
pipelined kernel, and one or more epilog blocks.

This pass is enabled for Hexagon only. To enable for other targets,
a couple of target specific hooks must be implemented, and the
pass needs to be called from the target's TargetMachine
implementation.

Differential Review: http://reviews.llvm.org/D16829

llvm-svn: 277169
2016-07-29 16:44:44 +00:00

66 lines
3.1 KiB
LLVM

; RUN: llc -fp-contract=fast -O3 -march=hexagon -mcpu=hexagonv5 < %s
; REQUIRES: asserts
; Test that the pipeliner doesn't ICE due because the PHI generation
; code in the epilog does not attempt to reuse an existing PHI.
define void @test(float* noalias %srcImg, i32 %width, float* noalias %dstImg) {
entry.split:
%shr = lshr i32 %width, 1
%incdec.ptr253 = getelementptr inbounds float, float* %dstImg, i32 2
br i1 undef, label %for.body, label %for.end
for.body:
%dst.21518.reg2mem.0 = phi float* [ null, %while.end712 ], [ %incdec.ptr253, %entry.split ]
%dstEnd.01519 = phi float* [ %add.ptr725, %while.end712 ], [ undef, %entry.split ]
%add.ptr367 = getelementptr inbounds float, float* %srcImg, i32 undef
%dst.31487 = getelementptr inbounds float, float* %dst.21518.reg2mem.0, i32 1
br i1 undef, label %while.body661.preheader, label %while.end712
while.body661.preheader:
%scevgep1941 = getelementptr float, float* %add.ptr367, i32 1
br label %while.body661.ur
while.body661.ur:
%lsr.iv1942 = phi float* [ %scevgep1941, %while.body661.preheader ], [ undef, %while.body661.ur ]
%col1.31508.reg2mem.0.ur = phi float [ %col3.31506.reg2mem.0.ur, %while.body661.ur ], [ undef, %while.body661.preheader ]
%col4.31507.reg2mem.0.ur = phi float [ %add710.ur, %while.body661.ur ], [ 0.000000e+00, %while.body661.preheader ]
%col3.31506.reg2mem.0.ur = phi float [ %add689.ur, %while.body661.ur ], [ undef, %while.body661.preheader ]
%dst.41511.ur = phi float* [ %incdec.ptr674.ur, %while.body661.ur ], [ %dst.31487, %while.body661.preheader ]
%mul662.ur = fmul float %col1.31508.reg2mem.0.ur, 4.000000e+00
%add663.ur = fadd float undef, %mul662.ur
%add665.ur = fadd float %add663.ur, undef
%add667.ur = fadd float undef, %add665.ur
%add669.ur = fadd float undef, %add667.ur
%add670.ur = fadd float %col4.31507.reg2mem.0.ur, %add669.ur
%conv673.ur = fmul float %add670.ur, 3.906250e-03
%incdec.ptr674.ur = getelementptr inbounds float, float* %dst.41511.ur, i32 1
store float %conv673.ur, float* %dst.41511.ur, align 4
%scevgep1959 = getelementptr float, float* %lsr.iv1942, i32 -1
%0 = load float, float* %scevgep1959, align 4
%mul680.ur = fmul float %0, 4.000000e+00
%add681.ur = fadd float undef, %mul680.ur
%add684.ur = fadd float undef, %add681.ur
%add687.ur = fadd float undef, %add684.ur
%add689.ur = fadd float undef, %add687.ur
%add699.ur = fadd float undef, undef
%add703.ur = fadd float undef, %add699.ur
%add707.ur = fadd float undef, %add703.ur
%add710.ur = fadd float undef, %add707.ur
%cmp660.ur = icmp ult float* %incdec.ptr674.ur, %dstEnd.01519
br i1 %cmp660.ur, label %while.body661.ur, label %while.end712
while.end712:
%dst.4.lcssa.reg2mem.0 = phi float* [ %dst.31487, %for.body ], [ undef, %while.body661.ur ]
%conv721 = fpext float undef to double
%mul722 = fmul double %conv721, 0x3F7111112119E8FB
%conv723 = fptrunc double %mul722 to float
store float %conv723, float* %dst.4.lcssa.reg2mem.0, align 4
%add.ptr725 = getelementptr inbounds float, float* %dstEnd.01519, i32 %shr
%cmp259 = icmp ult i32 undef, undef
br i1 %cmp259, label %for.body, label %for.end
for.end:
ret void
}