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target/s390x: End the TB after EXECUTE
This split will be required for implementing EXECUTE properly. Do this now as a separate step to aid comparison of before and after TB listings. Reviewed-by: Aurelien Jarno <aurelien@aurel32.net> Signed-off-by: Richard Henderson <rth@twiddle.net>
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@ -1234,6 +1234,7 @@ void HELPER(ex)(CPUS390XState *env, uint32_t ilen, uint64_t r1, uint64_t addr)
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S390CPU *cpu = s390_env_get_cpu(env);
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uint64_t insn = cpu_lduw_code(env, addr);
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uint8_t opc = insn >> 8;
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uint32_t cc;
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/* Or in the contents of R1[56:63]. */
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insn |= r1 & 0xff;
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@ -1263,42 +1264,46 @@ void HELPER(ex)(CPUS390XState *env, uint32_t ilen, uint64_t r1, uint64_t addr)
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b2 = extract64(insn, 28, 4);
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d1 = extract64(insn, 32, 12);
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d2 = extract64(insn, 16, 12);
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cc = env->cc_op;
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switch (opc & 0xf) {
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case 0x2:
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do_helper_mvc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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break;
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case 0x4:
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env->cc_op = do_helper_nc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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cc = do_helper_nc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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break;
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case 0x5:
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env->cc_op = do_helper_clc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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cc = do_helper_clc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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break;
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case 0x6:
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env->cc_op = do_helper_oc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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cc = do_helper_oc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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break;
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case 0x7:
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env->cc_op = do_helper_xc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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cc = do_helper_xc(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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break;
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case 0xc:
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do_helper_tr(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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break;
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case 0xd:
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env->cc_op = do_helper_trt(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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return;
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cc = do_helper_trt(env, l, get_address(env, 0, b1, d1),
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get_address(env, 0, b2, d2), 0);
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break;
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default:
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goto abort;
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}
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} else if (opc == 0x0a) {
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/* supervisor call */
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env->int_svc_code = extract64(insn, 48, 8);
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env->int_svc_ilen = ilen;
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helper_exception(env, EXCP_SVC);
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return;
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g_assert_not_reached();
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} else if (opc == 0xbf) {
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uint32_t r1, r3, b2, d2;
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@ -1306,10 +1311,15 @@ void HELPER(ex)(CPUS390XState *env, uint32_t ilen, uint64_t r1, uint64_t addr)
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r3 = extract64(insn, 48, 4);
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b2 = extract64(insn, 44, 4);
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d2 = extract64(insn, 32, 12);
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env->cc_op = helper_icm(env, r1, get_address(env, 0, b2, d2), r3);
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return;
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cc = helper_icm(env, r1, get_address(env, 0, b2, d2), r3);
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} else {
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abort:
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cpu_abort(CPU(cpu),
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"EXECUTE on instruction prefix 0x%x not implemented\n",
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opc);
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g_assert_not_reached();
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}
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cpu_abort(CPU(cpu), "EXECUTE on instruction prefix 0x%x not implemented\n",
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opc);
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env->cc_op = cc;
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env->psw.addr += ilen;
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}
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@ -1168,6 +1168,8 @@ typedef enum {
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the PC (for whatever reason), so there's no need to do it again on
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exiting the TB. */
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EXIT_PC_UPDATED,
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/* We have updated the PC and CC values. */
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EXIT_PC_CC_UPDATED,
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/* We are exiting the TB, but have neither emitted a goto_tb, nor
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updated the PC for the next instruction to be executed. */
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EXIT_PC_STALE,
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@ -2221,7 +2223,7 @@ static ExitStatus op_ex(DisasContext *s, DisasOps *o)
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tcg_temp_free_i64(v1);
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}
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return NO_EXIT;
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return EXIT_PC_CC_UPDATED;
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}
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static ExitStatus op_fieb(DisasContext *s, DisasOps *o)
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@ -5494,6 +5496,8 @@ void gen_intermediate_code(CPUS390XState *env, struct TranslationBlock *tb)
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/* Next TB starts off with CC_OP_DYNAMIC, so make sure the
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cc op type is in env */
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update_cc_op(&dc);
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/* FALLTHRU */
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case EXIT_PC_CC_UPDATED:
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/* Exit the TB, either by raising a debug exception or by return. */
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if (do_debug) {
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gen_exception(EXCP_DEBUG);
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