@@ -691,6 +691,9 @@ rori 01100 ............ 101 ..... 0010011 @sh
sext_b 011000 000100 ..... 001 ..... 0010011 @r2
sext_h 011000 000101 ..... 001 ..... 0010011 @r2
xnor 0100000 .......... 100 ..... 0110011 @r
+# The encoding for zext.h differs between RV32 and RV64.
+# zext_h_32 denotes the RV32 variant.
+zext_h_32 0000100 00000 ..... 100 ..... 0110011 @r2
# *** RV64 Zbb Standard Extension (in addition to RV32 Zbb) ***
clzw 0110000 00000 ..... 001 ..... 0011011 @r2
@@ -703,15 +706,14 @@ rev8_64 011010 111000 ..... 101 ..... 0010011 @r2
rolw 0110000 .......... 001 ..... 0111011 @r
roriw 0110000 .......... 101 ..... 0011011 @sh5
rorw 0110000 .......... 101 ..... 0111011 @r
+# The encoding for zext.h differs between RV32 and RV64.
+# When executing on RV64, the encoding used in RV32 is an illegal
+# instruction, so we use different handler functions to differentiate.
+zext_h_64 0000100 00000 ..... 100 ..... 0111011 @r2
# *** RV32B Standard Extension ***
-pack 0000100 .......... 100 ..... 0110011 @r
-packu 0100100 .......... 100 ..... 0110011 @r
-packh 0000100 .......... 111 ..... 0110011 @r
# *** RV64B Standard Extension (in addition to RV32B) ***
-packw 0000100 .......... 100 ..... 0111011 @r
-packuw 0100100 .......... 100 ..... 0111011 @r
# *** RV32 Zbc Standard Extension ***
clmul 0000101 .......... 001 ..... 0110011 @r
@@ -78,24 +78,6 @@ static bool trans_xnor(DisasContext *ctx, arg_xnor *a)
return gen_arith(ctx, a, tcg_gen_eqv_tl);
}
-static bool trans_pack(DisasContext *ctx, arg_pack *a)
-{
- REQUIRE_EXT(ctx, RVB);
- return gen_arith(ctx, a, gen_pack);
-}
-
-static bool trans_packu(DisasContext *ctx, arg_packu *a)
-{
- REQUIRE_EXT(ctx, RVB);
- return gen_arith(ctx, a, gen_packu);
-}
-
-static bool trans_packh(DisasContext *ctx, arg_packh *a)
-{
- REQUIRE_EXT(ctx, RVB);
- return gen_arith(ctx, a, gen_packh);
-}
-
static bool trans_min(DisasContext *ctx, arg_min *a)
{
REQUIRE_ZBB(ctx);
@@ -233,6 +215,20 @@ static bool trans_orc_b(DisasContext *ctx, arg_orc_b *a)
return gen_unary(ctx, a, &gen_orc_b);
}
+static bool trans_zext_h_32(DisasContext *ctx, arg_zext_h_32 *a)
+{
+ REQUIRE_32BIT(ctx);
+ REQUIRE_ZBB(ctx);
+ return gen_unary(ctx, a, &tcg_gen_ext16u_tl);
+}
+
+static bool trans_zext_h_64(DisasContext *ctx, arg_zext_h_64 *a)
+{
+ REQUIRE_64BIT(ctx);
+ REQUIRE_ZBB(ctx);
+ return gen_unary(ctx, a, &tcg_gen_ext16u_tl);
+}
+
#define GEN_TRANS_SHADD(SHAMT) \
static bool trans_sh##SHAMT##add(DisasContext *ctx, arg_sh##SHAMT##add *a) \
@@ -266,20 +262,6 @@ static bool trans_cpopw(DisasContext *ctx, arg_cpopw *a)
return gen_unary(ctx, a, gen_cpopw);
}
-static bool trans_packw(DisasContext *ctx, arg_packw *a)
-{
- REQUIRE_64BIT(ctx);
- REQUIRE_EXT(ctx, RVB);
- return gen_arith(ctx, a, gen_packw);
-}
-
-static bool trans_packuw(DisasContext *ctx, arg_packuw *a)
-{
- REQUIRE_64BIT(ctx);
- REQUIRE_EXT(ctx, RVB);
- return gen_arith(ctx, a, gen_packuw);
-}
-
static bool trans_rorw(DisasContext *ctx, arg_rorw *a)
{
REQUIRE_64BIT(ctx);
@@ -536,29 +536,6 @@ static bool gen_arith_div_uw(DisasContext *ctx, arg_r *a,
return true;
}
-static void gen_pack(TCGv ret, TCGv arg1, TCGv arg2)
-{
- tcg_gen_deposit_tl(ret, arg1, arg2,
- TARGET_LONG_BITS / 2,
- TARGET_LONG_BITS / 2);
-}
-
-static void gen_packu(TCGv ret, TCGv arg1, TCGv arg2)
-{
- TCGv t = tcg_temp_new();
- tcg_gen_shri_tl(t, arg1, TARGET_LONG_BITS / 2);
- tcg_gen_deposit_tl(ret, arg2, t, 0, TARGET_LONG_BITS / 2);
- tcg_temp_free(t);
-}
-
-static void gen_packh(TCGv ret, TCGv arg1, TCGv arg2)
-{
- TCGv t = tcg_temp_new();
- tcg_gen_ext8u_tl(t, arg2);
- tcg_gen_deposit_tl(ret, arg1, t, 8, TARGET_LONG_BITS - 8);
- tcg_temp_free(t);
-}
-
static void gen_sbop_mask(TCGv ret, TCGv shamt)
{
tcg_gen_movi_tl(ret, 1);
@@ -635,23 +612,6 @@ static void gen_cpopw(TCGv ret, TCGv arg1)
tcg_gen_ctpop_tl(ret, arg1);
}
-static void gen_packw(TCGv ret, TCGv arg1, TCGv arg2)
-{
- TCGv t = tcg_temp_new();
- tcg_gen_ext16s_tl(t, arg2);
- tcg_gen_deposit_tl(ret, arg1, t, 16, 48);
- tcg_temp_free(t);
-}
-
-static void gen_packuw(TCGv ret, TCGv arg1, TCGv arg2)
-{
- TCGv t = tcg_temp_new();
- tcg_gen_shri_tl(t, arg1, 16);
- tcg_gen_deposit_tl(ret, arg2, t, 0, 16);
- tcg_gen_ext32s_tl(ret, ret);
- tcg_temp_free(t);
-}
-
static void gen_rorw(TCGv ret, TCGv arg1, TCGv arg2)
{
TCGv_i32 t1 = tcg_temp_new_i32();