tcg/ppc: Use tcg_constant_vec with tcg vec expanders

Improve expand_vec_shi to use sign-extraction for MO_32.
This allows a single VSPLTISB instruction to load all of
the valid shift constants.

Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
This commit is contained in:
Richard Henderson 2020-09-07 23:46:21 +00:00
parent be986adb35
commit 44aa59a099

View File

@ -3336,13 +3336,22 @@ static void tcg_out_vec_op(TCGContext *s, TCGOpcode opc,
static void expand_vec_shi(TCGType type, unsigned vece, TCGv_vec v0,
TCGv_vec v1, TCGArg imm, TCGOpcode opci)
{
TCGv_vec t1 = tcg_temp_new_vec(type);
TCGv_vec t1;
/* Splat w/bytes for xxspltib. */
tcg_gen_dupi_vec(MO_8, t1, imm & ((8 << vece) - 1));
if (vece == MO_32) {
/*
* Only 5 bits are significant, and VSPLTISB can represent -16..15.
* So using negative numbers gets us the 4th bit easily.
*/
imm = sextract32(imm, 0, 5);
} else {
imm &= (8 << vece) - 1;
}
/* Splat w/bytes for xxspltib when 2.07 allows MO_64. */
t1 = tcg_constant_vec(type, MO_8, imm);
vec_gen_3(opci, type, vece, tcgv_vec_arg(v0),
tcgv_vec_arg(v1), tcgv_vec_arg(t1));
tcg_temp_free_vec(t1);
}
static void expand_vec_cmp(TCGType type, unsigned vece, TCGv_vec v0,
@ -3400,7 +3409,7 @@ static void expand_vec_mul(TCGType type, unsigned vece, TCGv_vec v0,
{
TCGv_vec t1 = tcg_temp_new_vec(type);
TCGv_vec t2 = tcg_temp_new_vec(type);
TCGv_vec t3, t4;
TCGv_vec c0, c16;
switch (vece) {
case MO_8:
@ -3419,21 +3428,22 @@ static void expand_vec_mul(TCGType type, unsigned vece, TCGv_vec v0,
case MO_32:
tcg_debug_assert(!have_isa_2_07);
t3 = tcg_temp_new_vec(type);
t4 = tcg_temp_new_vec(type);
tcg_gen_dupi_vec(MO_8, t4, -16);
/*
* Only 5 bits are significant, and VSPLTISB can represent -16..15.
* So using -16 is a quick way to represent 16.
*/
c16 = tcg_constant_vec(type, MO_8, -16);
c0 = tcg_constant_vec(type, MO_8, 0);
vec_gen_3(INDEX_op_rotlv_vec, type, MO_32, tcgv_vec_arg(t1),
tcgv_vec_arg(v2), tcgv_vec_arg(t4));
tcgv_vec_arg(v2), tcgv_vec_arg(c16));
vec_gen_3(INDEX_op_ppc_mulou_vec, type, MO_16, tcgv_vec_arg(t2),
tcgv_vec_arg(v1), tcgv_vec_arg(v2));
tcg_gen_dupi_vec(MO_8, t3, 0);
vec_gen_4(INDEX_op_ppc_msum_vec, type, MO_16, tcgv_vec_arg(t3),
tcgv_vec_arg(v1), tcgv_vec_arg(t1), tcgv_vec_arg(t3));
vec_gen_3(INDEX_op_shlv_vec, type, MO_32, tcgv_vec_arg(t3),
tcgv_vec_arg(t3), tcgv_vec_arg(t4));
tcg_gen_add_vec(MO_32, v0, t2, t3);
tcg_temp_free_vec(t3);
tcg_temp_free_vec(t4);
vec_gen_4(INDEX_op_ppc_msum_vec, type, MO_16, tcgv_vec_arg(t1),
tcgv_vec_arg(v1), tcgv_vec_arg(t1), tcgv_vec_arg(c0));
vec_gen_3(INDEX_op_shlv_vec, type, MO_32, tcgv_vec_arg(t1),
tcgv_vec_arg(t1), tcgv_vec_arg(c16));
tcg_gen_add_vec(MO_32, v0, t1, t2);
break;
default: