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
|
// RUN: mlir-opt -allow-unregistered-dialect %s -affine-super-vectorizer-test -compose-maps -split-input-file 2>&1 | FileCheck %s
// For all these cases, the test traverses the `test_affine_map` ops and
// composes them in order one-by-one.
// For instance, the pseudo-sequence:
// "test_affine_map"() { affine_map = f } : () -> ()
// "test_affine_map"() { affine_map = g } : () -> ()
// "test_affine_map"() { affine_map = h } : () -> ()
// will produce the sequence of compositions: f, g(f), h(g(f)) and print the
// AffineMap h(g(f)), which is what FileCheck checks against.
func.func @simple1() {
// CHECK: Composed map: (d0) -> (d0)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 1)> } : () -> ()
return
}
// -----
func.func @simple2() {
// CHECK: Composed map: (d0)[s0, s1] -> (d0 - s0 + s1)
"test_affine_map"() { affine_map = affine_map<(d0)[s0] -> (d0 + s0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0)[s0] -> (d0 - s0 + 1)> } : () -> ()
return
}
// -----
func.func @simple3a() {
// CHECK: Composed map: (d0, d1)[s0, s1, s2, s3] -> ((d0 ceildiv s2) * s0, (d1 ceildiv s3) * s1)
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> (d0 ceildiv s0, d1 ceildiv s1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> (d0 * s0, d1 * s1)> } : () -> ()
return
}
// -----
func.func @simple3b() {
// CHECK: Composed map: (d0, d1)[s0, s1] -> (d0 mod s0, d1 mod s1)
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> (d0 mod s0, d1 mod s1)> } : () -> ()
return
}
// -----
func.func @simple3c() {
// CHECK: Composed map: (d0, d1)[s0, s1, s2, s3, s4, s5] -> ((d0 ceildiv s4) * s4 + d0 mod s2, (d1 ceildiv s5) * s5 + d1 mod s3)
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> ((d0 ceildiv s0) * s0, (d1 ceildiv s1) * s1, d0, d1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1, d2, d3)[s0, s1, s2, s3] -> (d0 + d2 mod s2, d1 + d3 mod s3)> } : () -> ()
return
}
// -----
func.func @simple4() {
// CHECK: Composed map: (d0, d1)[s0, s1] -> (d1 * s1, d0 ceildiv s0)
"test_affine_map"() { affine_map = affine_map<(d0, d1) -> (d1, d0)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> (d0 * s1, d1 ceildiv s0)> } : () -> ()
return
}
// -----
func.func @simple5a() {
// CHECK: Composed map: (d0) -> (d0 * 3 + 18)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 7)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 * 24)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 ceildiv 8)> } : () -> ()
return
}
// -----
func.func @simple5b() {
// CHECK: Composed map: (d0) -> ((d0 + 6) ceildiv 2)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 7)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 * 4)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 ceildiv 8)> } : () -> ()
return
}
// -----
func.func @simple5c() {
// CHECK: Composed map: (d0) -> (d0 * 8 + 48)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 7)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 * 24)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 floordiv 3)> } : () -> ()
return
}
// -----
func.func @simple5d() {
// CHECK: Composed map: (d0) -> ((d0 * 4) floordiv 3 + 8)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 7)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 * 4)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 floordiv 3)> } : () -> ()
return
}
// -----
func.func @simple5e() {
// CHECK: Composed map: (d0) -> ((d0 + 6) ceildiv 8)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 + 7)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 ceildiv 8)> } : () -> ()
return
}
// -----
func.func @simple5f() {
// CHECK: Composed map: (d0) -> ((d0 * 4 - 4) floordiv 3)
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 - 1)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 * 4)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0) -> (d0 floordiv 3)> } : () -> ()
return
}
// -----
func.func @perm_and_proj() {
// CHECK: Composed map: (d0, d1, d2, d3) -> (d1, d3, d0)
"test_affine_map"() { affine_map = affine_map<(d0, d1, d2, d3) -> (d3, d1, d2, d0)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1, d2, d3) -> (d1, d0, d3)> } : () -> ()
return
}
// -----
func.func @symbols1() {
// CHECK: Composed map: (d0)[s0] -> (d0 + s0 + 1, d0 - s0 - 1)
"test_affine_map"() { affine_map = affine_map<(d0)[s0] -> (d0 + s0, d0 - s0)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1) -> (d0 + 1, d1 - 1)> } : () -> ()
return
}
// -----
func.func @drop() {
// CHECK: Composed map: (d0, d1, d2)[s0, s1] -> (d0 * 2 + d1 + d2 + s1)
"test_affine_map"() { affine_map = affine_map<(d0, d1, d2)[s0, s1] -> (d0 + s1, d1 + s0, d0 + d1 + d2)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1, d2) -> (d0 + d2)> } : () -> ()
return
}
// -----
func.func @multi_symbols() {
// CHECK: Composed map: (d0)[s0, s1, s2] -> (d0 + s1 + s2 + 1, d0 - s0 - s2 - 1)
"test_affine_map"() { affine_map = affine_map<(d0)[s0] -> (d0 + s0, d0 - s0)> } : () -> ()
"test_affine_map"() { affine_map = affine_map<(d0, d1)[s0, s1] -> (d0 + 1 + s1, d1 - 1 - s0)> } : () -> ()
return
}
// -----
// CHECK-LABEL: @no_affine_maps
func.func @no_affine_maps() {
// CHECK: return
return
}
|