File: align-2d-gep.ll

package info (click to toggle)
llvm-toolchain-17 1%3A17.0.6-22
  • links: PTS, VCS
  • area: main
  • in suites: forky, sid, trixie
  • size: 1,799,624 kB
  • sloc: cpp: 6,428,607; ansic: 1,383,196; asm: 793,408; python: 223,504; objc: 75,364; f90: 60,502; lisp: 33,869; pascal: 15,282; sh: 9,684; perl: 7,453; ml: 4,937; awk: 3,523; makefile: 2,889; javascript: 2,149; xml: 888; fortran: 619; cs: 573
file content (65 lines) | stat: -rw-r--r-- 2,769 bytes parent folder | download | duplicates (4)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
; RUN: opt < %s -passes=instcombine -S | FileCheck %s
target datalayout = "E-p:64:64:64-a0:0:8-f32:32:32-f64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-v64:64:64-v128:128:128"

; A multi-dimensional array in a nested loop doing vector stores that
; aren't yet aligned. Instcombine can understand the addressing in the
; Nice case to prove 16 byte alignment. In the Awkward case, the inner
; array dimension is not even, so the stores to it won't always be
; aligned. Instcombine should prove alignment in exactly one of the two
; stores.

@Nice    = global [1001 x [20000 x double]] zeroinitializer, align 32
@Awkward = global [1001 x [20001 x double]] zeroinitializer, align 32

define void @foo() nounwind  {
; CHECK-LABEL: @foo(
; CHECK-NEXT:  entry:
; CHECK-NEXT:    br label [[BB7_OUTER:%.*]]
; CHECK:       bb7.outer:
; CHECK-NEXT:    [[I:%.*]] = phi i64 [ 0, [[ENTRY:%.*]] ], [ [[INDVAR_NEXT26:%.*]], [[BB11:%.*]] ]
; CHECK-NEXT:    br label [[BB1:%.*]]
; CHECK:       bb1:
; CHECK-NEXT:    [[J:%.*]] = phi i64 [ 0, [[BB7_OUTER]] ], [ [[INDVAR_NEXT:%.*]], [[BB1]] ]
; CHECK-NEXT:    [[T4:%.*]] = getelementptr [1001 x [20000 x double]], ptr @Nice, i64 0, i64 [[I]], i64 [[J]]
; CHECK-NEXT:    store <2 x double> zeroinitializer, ptr [[T4]], align 16
; CHECK-NEXT:    [[S4:%.*]] = getelementptr [1001 x [20001 x double]], ptr @Awkward, i64 0, i64 [[I]], i64 [[J]]
; CHECK-NEXT:    store <2 x double> zeroinitializer, ptr [[S4]], align 8
; CHECK-NEXT:    [[INDVAR_NEXT]] = add i64 [[J]], 2
; CHECK-NEXT:    [[EXITCOND:%.*]] = icmp eq i64 [[INDVAR_NEXT]], 556
; CHECK-NEXT:    br i1 [[EXITCOND]], label [[BB11]], label [[BB1]]
; CHECK:       bb11:
; CHECK-NEXT:    [[INDVAR_NEXT26]] = add i64 [[I]], 1
; CHECK-NEXT:    [[EXITCOND27:%.*]] = icmp eq i64 [[INDVAR_NEXT26]], 991
; CHECK-NEXT:    br i1 [[EXITCOND27]], label [[RETURN_SPLIT:%.*]], label [[BB7_OUTER]]
; CHECK:       return.split:
; CHECK-NEXT:    ret void
;
entry:
  br label %bb7.outer

bb7.outer:
  %i = phi i64 [ 0, %entry ], [ %indvar.next26, %bb11 ]
  br label %bb1

bb1:
  %j = phi i64 [ 0, %bb7.outer ], [ %indvar.next, %bb1 ]

  %t4 = getelementptr [1001 x [20000 x double]], ptr @Nice, i64 0, i64 %i, i64 %j
  store <2 x double><double 0.0, double 0.0>, ptr %t4, align 8

  %s4 = getelementptr [1001 x [20001 x double]], ptr @Awkward, i64 0, i64 %i, i64 %j
  store <2 x double><double 0.0, double 0.0>, ptr %s4, align 8

  %indvar.next = add i64 %j, 2
  %exitcond = icmp eq i64 %indvar.next, 556
  br i1 %exitcond, label %bb11, label %bb1

bb11:
  %indvar.next26 = add i64 %i, 1
  %exitcond27 = icmp eq i64 %indvar.next26, 991
  br i1 %exitcond27, label %return.split, label %bb7.outer

return.split:
  ret void
}