reference, declarationdefinition
definition → references, declarations, derived classes, virtual overrides
reference to multiple definitions → definitions
unreferenced
    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
   66
   67
   68
   69
   70
   71
   72
   73
   74
   75
   76
   77
   78
   79
   80
   81
   82
   83
   84
   85
   86
   87
   88
   89
   90
   91
   92
   93
   94
   95
   96
   97
   98
   99
  100
  101
  102
  103
  104
  105
  106
  107
  108
  109
  110
  111
  112
  113
  114
  115
  116
  117
  118
  119
  120
  121
  122
  123
  124
  125
  126
  127
  128
  129
  130
  131
  132
  133
  134
  135
  136
  137
  138
  139
  140
  141
  142
  143
  144
  145
  146
  147
  148
  149
  150
  151
  152
  153
  154
  155
  156
  157
  158
  159
  160
  161
  162
  163
  164
  165
  166
  167
  168
  169
  170
  171
  172
  173
  174
  175
  176
  177
  178
  179
  180
  181
  182
  183
  184
  185
  186
  187
  188
  189
  190
  191
  192
  193
  194
  195
  196
  197
  198
  199
  200
  201
  202
  203
  204
  205
  206
  207
  208
  209
  210
  211
  212
  213
  214
  215
  216
  217
  218
  219
  220
  221
  222
  223
  224
  225
  226
  227
  228
  229
  230
  231
  232
  233
  234
  235
  236
  237
  238
  239
  240
  241
  242
  243
  244
  245
  246
  247
  248
  249
  250
  251
  252
  253
  254
  255
  256
  257
  258
  259
  260
  261
  262
  263
  264
  265
  266
  267
  268
  269
  270
  271
  272
  273
  274
  275
  276
  277
  278
  279
  280
  281
  282
  283
  284
  285
  286
  287
  288
  289
  290
; Test 32-bit rotates left.
;
; RUN: llc < %s -mtriple=s390x-linux-gnu | FileCheck %s

; Check the low end of the RLL range.
define i32 @f1(i32 %a) {
; CHECK-LABEL: f1:
; CHECK: rll %r2, %r2, 1
; CHECK: br %r14
  %parta = shl i32 %a, 1
  %partb = lshr i32 %a, 31
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check the high end of the defined RLL range.
define i32 @f2(i32 %a) {
; CHECK-LABEL: f2:
; CHECK: rll %r2, %r2, 31
; CHECK: br %r14
  %parta = shl i32 %a, 31
  %partb = lshr i32 %a, 1
  %or = or i32 %parta, %partb
  ret i32 %or
}

; We don't generate shifts by out-of-range values.
define i32 @f3(i32 %a) {
; CHECK-LABEL: f3:
; CHECK-NOT: rll
; CHECK: br %r14
  %parta = shl i32 %a, 32
  %partb = lshr i32 %a, 0
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check variable shifts.
define i32 @f4(i32 %a, i32 %amt) {
; CHECK-LABEL: f4:
; CHECK: rll %r2, %r2, 0(%r3)
; CHECK: br %r14
  %amtb = sub i32 32, %amt
  %parta = shl i32 %a, %amt
  %partb = lshr i32 %a, %amtb
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check shift amounts that have a constant term.
define i32 @f5(i32 %a, i32 %amt) {
; CHECK-LABEL: f5:
; CHECK: rll %r2, %r2, 10(%r3)
; CHECK: br %r14
  %add = add i32 %amt, 10
  %sub = sub i32 32, %add
  %parta = shl i32 %a, %add
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; ...and again with a truncated 64-bit shift amount.
define i32 @f6(i32 %a, i64 %amt) {
; CHECK-LABEL: f6:
; CHECK: rll %r2, %r2, 10(%r3)
; CHECK: br %r14
  %add = add i64 %amt, 10
  %addtrunc = trunc i64 %add to i32
  %sub = sub i32 32, %addtrunc
  %parta = shl i32 %a, %addtrunc
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; ...and again with a different truncation representation.
define i32 @f7(i32 %a, i64 %amt) {
; CHECK-LABEL: f7:
; CHECK: rll %r2, %r2, 10(%r3)
; CHECK: br %r14
  %add = add i64 %amt, 10
  %sub = sub i64 32, %add
  %addtrunc = trunc i64 %add to i32
  %subtrunc = trunc i64 %sub to i32
  %parta = shl i32 %a, %addtrunc
  %partb = lshr i32 %a, %subtrunc
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check shift amounts that have the largest in-range constant term.  We could
; mask the amount instead.
define i32 @f8(i32 %a, i32 %amt) {
; CHECK-LABEL: f8:
; CHECK: rll %r2, %r2, 524287(%r3)
; CHECK: br %r14
  %add = add i32 %amt, 524287
  %sub = sub i32 32, %add
  %parta = shl i32 %a, %add
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check the next value up, which without masking must use a separate
; addition.
define i32 @f9(i32 %a, i32 %amt) {
; CHECK-LABEL: f9:
; CHECK: afi %r3, 524288
; CHECK: rll %r2, %r2, 0(%r3)
; CHECK: br %r14
  %add = add i32 %amt, 524288
  %sub = sub i32 32, %add
  %parta = shl i32 %a, %add
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check cases where 1 is subtracted from the shift amount.
define i32 @f10(i32 %a, i32 %amt) {
; CHECK-LABEL: f10:
; CHECK: rll %r2, %r2, -1(%r3)
; CHECK: br %r14
  %suba = sub i32 %amt, 1
  %subb = sub i32 32, %suba
  %parta = shl i32 %a, %suba
  %partb = lshr i32 %a, %subb
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check the lowest value that can be subtracted from the shift amount.
; Again, we could mask the shift amount instead.
define i32 @f11(i32 %a, i32 %amt) {
; CHECK-LABEL: f11:
; CHECK: rll %r2, %r2, -524288(%r3)
; CHECK: br %r14
  %suba = sub i32 %amt, 524288
  %subb = sub i32 32, %suba
  %parta = shl i32 %a, %suba
  %partb = lshr i32 %a, %subb
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check the next value down, which without masking must use a separate
; addition.
define i32 @f12(i32 %a, i32 %amt) {
; CHECK-LABEL: f12:
; CHECK: afi %r3, -524289
; CHECK: rll %r2, %r2, 0(%r3)
; CHECK: br %r14
  %suba = sub i32 %amt, 524289
  %subb = sub i32 32, %suba
  %parta = shl i32 %a, %suba
  %partb = lshr i32 %a, %subb
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check that we don't try to generate "indexed" shifts.
define i32 @f13(i32 %a, i32 %b, i32 %c) {
; CHECK-LABEL: f13:
; CHECK: ar {{%r3, %r4|%r4, %r3}}
; CHECK: rll %r2, %r2, 0({{%r[34]}})
; CHECK: br %r14
  %add = add i32 %b, %c
  %sub = sub i32 32, %add
  %parta = shl i32 %a, %add
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check that the shift amount uses an address register.  It cannot be in %r0.
define i32 @f14(i32 %a, i32 *%ptr) {
; CHECK-LABEL: f14:
; CHECK: l %r1, 0(%r3)
; CHECK: rll %r2, %r2, 0(%r1)
; CHECK: br %r14
  %amt = load i32, i32 *%ptr
  %amtb = sub i32 32, %amt
  %parta = shl i32 %a, %amt
  %partb = lshr i32 %a, %amtb
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check another form of f5, which is the one produced by running f5 through
; instcombine.
define i32 @f15(i32 %a, i32 %amt) {
; CHECK-LABEL: f15:
; CHECK: rll %r2, %r2, 10(%r3)
; CHECK: br %r14
  %add = add i32 %amt, 10
  %sub = sub i32 22, %amt
  %parta = shl i32 %a, %add
  %partb = lshr i32 %a, %sub
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Likewise for f7.
define i32 @f16(i32 %a, i64 %amt) {
; CHECK-LABEL: f16:
; CHECK: rll %r2, %r2, 10(%r3)
; CHECK: br %r14
  %add = add i64 %amt, 10
  %sub = sub i64 22, %amt
  %addtrunc = trunc i64 %add to i32
  %subtrunc = trunc i64 %sub to i32
  %parta = shl i32 %a, %addtrunc
  %partb = lshr i32 %a, %subtrunc
  %or = or i32 %parta, %partb
  ret i32 %or
}

; Check cases where (-x & 31) is used instead of 32 - x.
define i32 @f17(i32 %x, i32 %y) {
; CHECK-LABEL: f17:
; CHECK: rll %r2, %r2, 0(%r3)
; CHECK: br %r14
entry:
  %shl = shl i32 %x, %y
  %sub = sub i32 0, %y
  %and = and i32 %sub, 31
  %shr = lshr i32 %x, %and
  %or = or i32 %shr, %shl
  ret i32 %or
}

; ...and again with ((32 - x) & 31).
define i32 @f18(i32 %x, i32 %y) {
; CHECK-LABEL: f18:
; CHECK: rll %r2, %r2, 0(%r3)
; CHECK: br %r14
entry:
  %shl = shl i32 %x, %y
  %sub = sub i32 32, %y
  %and = and i32 %sub, 31
  %shr = lshr i32 %x, %and
  %or = or i32 %shr, %shl
  ret i32 %or
}

; This is not a rotation.
define i32 @f19(i32 %x, i32 %y) {
; CHECK-LABEL: f19:
; CHECK-NOT: rll
; CHECK: br %r14
entry:
  %shl = shl i32 %x, %y
  %sub = sub i32 16, %y
  %and = and i32 %sub, 31
  %shr = lshr i32 %x, %and
  %or = or i32 %shr, %shl
  ret i32 %or
}

; Repeat f17 with an addition on the shift count.
define i32 @f20(i32 %x, i32 %y) {
; CHECK-LABEL: f20:
; CHECK: rll %r2, %r2, 199(%r3)
; CHECK: br %r14
entry:
  %add = add i32 %y, 199
  %shl = shl i32 %x, %add
  %sub = sub i32 0, %add
  %and = and i32 %sub, 31
  %shr = lshr i32 %x, %and
  %or = or i32 %shr, %shl
  ret i32 %or
}

; ...and again with the InstCombine version.
define i32 @f21(i32 %x, i32 %y) {
; CHECK-LABEL: f21:
; CHECK: rll %r2, %r2, 199(%r3)
; CHECK: br %r14
entry:
  %add = add i32 %y, 199
  %shl = shl i32 %x, %add
  %sub = sub i32 -199, %y
  %and = and i32 %sub, 31
  %shr = lshr i32 %x, %and
  %or = or i32 %shr, %shl
  ret i32 %or
}