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input.mlir
#loop_ann = #llvm.loop_annotation<mustProgress = true>
llvm.func @plain_diamond_0(%c: i1, %a: i32, %b: i32) -> i32 {
cf.cond_br %c, ^yes, ^no
^yes:
cf.br ^exit(%a : i32)
^no:
cf.br ^exit(%b : i32)
^exit(%r: i32):
llvm.return %r : i32
}
llvm.func @counted_cycle_1(%limit: i32) -> i32 {
%zero = arith.constant 0 : i32
%step = arith.constant 1 : i32
cf.br ^header(%zero : i32)
^header(%iv: i32):
%done = arith.cmpi eq, %iv, %limit : i32
cf.cond_br %done, ^exit, ^latch
^latch:
%next = arith.addi %iv, %step : i32
cf.br ^header(%next : i32) {llvm.loop_annotation = #loop_ann}
^exit:
llvm.return %iv : i32
}
llvm.func @weighted_then_plain_2(%weighted: i1, %plain: i1, %a: i32, %b: i32) -> i32 {
cf.cond_br %weighted weights([4, 6]), ^weighted_true, ^weighted_false
^weighted_true:
cf.br ^plain_entry(%a : i32)
^weighted_false:
cf.br ^plain_entry(%b : i32)
^plain_entry(%seed: i32):
cf.cond_br %plain, ^plain_true, ^plain_false
^plain_true:
cf.br ^exit(%seed : i32)
^plain_false:
cf.br ^exit(%seed : i32)
^exit(%r: i32):
llvm.return %r : i32
}