mirror of https://github.com/llvm/torch-mlir
137 lines
3.4 KiB
Python
137 lines
3.4 KiB
Python
# RUN: %PYTHON %s | npcomp-opt -split-input-file | FileCheck %s --dump-input=fail
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from npcomp.compiler.frontend import *
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def import_global(f):
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fe = ImportFrontend()
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fe.import_global_function(f)
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print("// -----")
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print(fe.ir_module.to_asm())
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return f
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# CHECK-LABEL: func @binary_lt_
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@import_global
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def binary_lt_():
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# CHECK: %[[A:.*]] = constant 1 : i64
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# CHECK: %[[B:.*]] = constant 2 : i64
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare %[[A]] "Lt" %[[B]] : i64, i64
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return x < y
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# CHECK-LABEL: func @binary_gt_
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@import_global
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def binary_gt_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "Gt" {{.*}} : i64, i64
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return x > y
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# CHECK-LABEL: func @binary_lte_
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@import_global
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def binary_lte_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "LtE" {{.*}} : i64, i64
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return x <= y
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# CHECK-LABEL: func @binary_gte_
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@import_global
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def binary_gte_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "GtE" {{.*}} : i64, i64
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return x >= y
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# CHECK-LABEL: func @binary_eq_
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@import_global
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def binary_eq_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "Eq" {{.*}} : i64, i64
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return x == y
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# CHECK-LABEL: func @binary_neq_
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@import_global
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def binary_neq_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "NotEq" {{.*}} : i64, i64
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return x != y
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# CHECK-LABEL: func @binary_is_
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@import_global
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def binary_is_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "Is" {{.*}} : i64, i64
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return x is y
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# CHECK-LABEL: func @binary_is_not_
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@import_global
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def binary_is_not_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "IsNot" {{.*}} : i64, i64
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return x is not y
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# CHECK-LABEL: func @binary_in_
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@import_global
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def binary_in_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "In" {{.*}} : i64, i64
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return x in y
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# CHECK-LABEL: func @binary_not_in_
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@import_global
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def binary_not_in_():
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x = 1
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y = 2
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# CHECK: {{.*}} = basicpy.binary_compare {{.*}} "NotIn" {{.*}} : i64, i64
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return x not in y
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@import_global
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def short_circuit():
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# CHECK: %[[X:.*]] = constant 1 : i64
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# CHECK: %[[Y:.*]] = constant 2 : i64
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# CHECK: %[[Z:.*]] = constant 3 : i64
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# CHECK: %[[OMEGA:.*]] = constant 5 : i64
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x = 1
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y = 2
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z = 3
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omega = 5
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# CHECK: %[[FALSE:.*]] = basicpy.bool_constant false
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# CHECK: %[[CMP0:.*]] = basicpy.binary_compare %[[X]] "Lt" %[[Y]]
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# CHECK: %[[CMP0_CAST:.*]] = basicpy.bool_cast %[[CMP0]] : !basicpy.BoolType -> i1
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# CHECK: %[[IF0:.*]] = scf.if %[[CMP0_CAST]] -> (!basicpy.BoolType) {
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# CHECK: %[[CMP1:.*]] = basicpy.binary_compare %[[Y]] "Eq" %[[Z]]
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# CHECK: %[[CMP1_CAST:.*]] = basicpy.bool_cast %[[CMP1]] : !basicpy.BoolType -> i1
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# CHECK: %[[IF1:.*]] = scf.if %[[CMP1_CAST]] {{.*}} {
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# CHECK: %[[CMP2:.*]] = basicpy.binary_compare %[[Z]] "GtE" %[[OMEGA]]
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# CHECK: scf.yield %[[CMP2]]
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# CHECK: } else {
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# CHECK: scf.yield %[[FALSE]]
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# CHECK: }
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# CHECK: scf.yield %[[IF1]]
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# CHECK: } else {
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# CHECK: scf.yield %[[FALSE]]
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# CHECK: }
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# CHECK: %[[RESULT:.*]] = basicpy.unknown_cast %[[IF0]]
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# CHECK: return %[[RESULT]]
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return x < y == z >= omega
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# CHECK-LABEL: nested_short_circuit_expression
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@import_global
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def nested_short_circuit_expression():
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x = 1
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y = 2
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z = 3
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# Verify that the (z + 5) gets nested into the if.
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# CHECK: scf.if {{.*}} {
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# CHECK-NEXT: constant 6
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# CHECK-NEXT: binary_expr
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return x < y == (z + 6)
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