Sign repetitions are perforce all identical, whether they are 1 or 0.
Bitwise operations preserve the relative quantity of the repetitions.
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
---
tcg/optimize.c | 29 +++++++++++++++++++++++++++++
1 file changed, 29 insertions(+)
diff --git a/tcg/optimize.c b/tcg/optimize.c
index 742417ca1e..311d9779f2 100644
--- a/tcg/optimize.c
+++ b/tcg/optimize.c
@@ -966,6 +966,13 @@ static bool fold_and(OptContext *ctx, TCGOp *op)
z2 = arg_info(op->args[2])->z_mask;
ctx->z_mask = z1 & z2;
+ /*
+ * Sign repetitions are perforce all identical, whether they are 1 or 0.
+ * Bitwise operations preserve the relative quantity of the repetitions.
+ */
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
+
/*
* Known-zeros does not imply known-ones. Therefore unless
* arg2 is constant, we can't infer affected bits from it.
@@ -1001,6 +1008,8 @@ static bool fold_andc(OptContext *ctx, TCGOp *op)
}
ctx->z_mask = z1;
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return fold_masks(ctx, op);
}
@@ -1299,6 +1308,9 @@ static bool fold_eqv(OptContext *ctx, TCGOp *op)
fold_xi_to_not(ctx, op, 0)) {
return true;
}
+
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return false;
}
@@ -1486,6 +1498,8 @@ static bool fold_movcond(OptContext *ctx, TCGOp *op)
ctx->z_mask = arg_info(op->args[3])->z_mask
| arg_info(op->args[4])->z_mask;
+ ctx->s_mask = arg_info(op->args[3])->s_mask
+ & arg_info(op->args[4])->s_mask;
if (arg_is_const(op->args[3]) && arg_is_const(op->args[4])) {
uint64_t tv = arg_info(op->args[3])->val;
@@ -1584,6 +1598,9 @@ static bool fold_nand(OptContext *ctx, TCGOp *op)
fold_xi_to_not(ctx, op, -1)) {
return true;
}
+
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return false;
}
@@ -1613,6 +1630,9 @@ static bool fold_nor(OptContext *ctx, TCGOp *op)
fold_xi_to_not(ctx, op, 0)) {
return true;
}
+
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return false;
}
@@ -1622,6 +1642,8 @@ static bool fold_not(OptContext *ctx, TCGOp *op)
return true;
}
+ ctx->s_mask = arg_info(op->args[1])->s_mask;
+
/* Because of fold_to_not, we want to always return true, via finish. */
finish_folding(ctx, op);
return true;
@@ -1637,6 +1659,8 @@ static bool fold_or(OptContext *ctx, TCGOp *op)
ctx->z_mask = arg_info(op->args[1])->z_mask
| arg_info(op->args[2])->z_mask;
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return fold_masks(ctx, op);
}
@@ -1648,6 +1672,9 @@ static bool fold_orc(OptContext *ctx, TCGOp *op)
fold_ix_to_not(ctx, op, 0)) {
return true;
}
+
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return false;
}
@@ -1921,6 +1948,8 @@ static bool fold_xor(OptContext *ctx, TCGOp *op)
ctx->z_mask = arg_info(op->args[1])->z_mask
| arg_info(op->args[2])->z_mask;
+ ctx->s_mask = arg_info(op->args[1])->s_mask
+ & arg_info(op->args[2])->s_mask;
return fold_masks(ctx, op);
}
--
2.25.1