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tcg: Introduce INDEX_op_qemu_st8_i32
Enable this on i386 to restrict the set of input registers for an 8-bit store, as required by the architecture. This removes the last use of scratch registers for user-only mode. Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org> Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
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@ -211,6 +211,11 @@ DEF(qemu_ld_i64, DATA64_ARGS, TLADDR_ARGS, 1,
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DEF(qemu_st_i64, 0, TLADDR_ARGS + DATA64_ARGS, 1,
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TCG_OPF_CALL_CLOBBER | TCG_OPF_SIDE_EFFECTS | TCG_OPF_64BIT)
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/* Only used by i386 to cope with stupid register constraints. */
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DEF(qemu_st8_i32, 0, TLADDR_ARGS + 1, 1,
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TCG_OPF_CALL_CLOBBER | TCG_OPF_SIDE_EFFECTS |
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IMPL(TCG_TARGET_HAS_qemu_st8_i32))
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/* Host vector support. */
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#define IMPLVEC TCG_OPF_VECTOR | IMPL(TCG_TARGET_MAYBE_vec)
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@ -502,6 +502,7 @@ goto_ptr opcode, emitting this op is equivalent to emitting exit_tb(0).
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* qemu_ld_i32/i64 t0, t1, flags, memidx
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* qemu_st_i32/i64 t0, t1, flags, memidx
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* qemu_st8_i32 t0, t1, flags, memidx
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Load data at the guest address t1 into t0, or store data in t0 at guest
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address t1. The _i32/_i64 size applies to the size of the input/output
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@ -518,6 +519,10 @@ of the memory access.
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For a 32-bit host, qemu_ld/st_i64 is guaranteed to only be used with a
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64-bit memory access specified in flags.
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For i386, qemu_st8_i32 is exactly like qemu_st_i32, except the size of
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the memory operation is known to be 8-bit. This allows the backend to
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provide a different set of register constraints.
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********* Host vector operations
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All of the vector ops have two parameters, TCGOP_VECL & TCGOP_VECE.
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@ -88,6 +88,7 @@ typedef enum {
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#define TCG_TARGET_HAS_extrl_i64_i32 0
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#define TCG_TARGET_HAS_extrh_i64_i32 0
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#define TCG_TARGET_HAS_goto_ptr 1
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#define TCG_TARGET_HAS_div_i64 1
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#define TCG_TARGET_HAS_rem_i64 1
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@ -126,6 +126,7 @@ extern bool use_idiv_instructions;
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#define TCG_TARGET_HAS_rem_i32 0
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#define TCG_TARGET_HAS_goto_ptr 1
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#define TCG_TARGET_HAS_direct_jump 0
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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enum {
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TCG_AREG0 = TCG_REG_R6,
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@ -245,11 +245,21 @@ static const char *target_parse_constraint(TCGArgConstraint *ct,
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ct->regs |= ALL_VECTOR_REGS;
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break;
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/* qemu_ld/st address constraint */
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case 'L':
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/* qemu_ld/st data+address constraint */
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ct->regs = TCG_TARGET_REG_BITS == 64 ? 0xffff : 0xff;
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#ifdef CONFIG_SOFTMMU
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tcg_regset_reset_reg(ct->regs, TCG_REG_L0);
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tcg_regset_reset_reg(ct->regs, TCG_REG_L1);
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#endif
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break;
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case 's':
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/* qemu_st8_i32 data constraint */
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ct->regs = 0xf;
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#ifdef CONFIG_SOFTMMU
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tcg_regset_reset_reg(ct->regs, TCG_REG_L0);
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tcg_regset_reset_reg(ct->regs, TCG_REG_L1);
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#endif
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break;
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case 'e':
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@ -2120,7 +2130,6 @@ static void tcg_out_qemu_st_direct(TCGContext *s, TCGReg datalo, TCGReg datahi,
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TCGReg base, int index, intptr_t ofs,
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int seg, MemOp memop)
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{
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const TCGReg scratch = TCG_REG_L0;
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bool use_movbe = false;
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int movop = OPC_MOVL_EvGv;
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@ -2136,15 +2145,8 @@ static void tcg_out_qemu_st_direct(TCGContext *s, TCGReg datalo, TCGReg datahi,
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switch (memop & MO_SIZE) {
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case MO_8:
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/*
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* In 32-bit mode, 8-bit stores can only happen from [abcd]x.
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* TODO: Adjust constraints such that this is is forced,
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* then we won't need a scratch at all for user-only.
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*/
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if (TCG_TARGET_REG_BITS == 32 && datalo >= 4) {
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tcg_out_mov(s, TCG_TYPE_I32, scratch, datalo);
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datalo = scratch;
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}
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/* This is handled with constraints on INDEX_op_qemu_st8_i32. */
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tcg_debug_assert(TCG_TARGET_REG_BITS == 64 || datalo < 4);
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tcg_out_modrm_sib_offset(s, OPC_MOVB_EvGv + P_REXB_R + seg,
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datalo, base, index, 0, ofs);
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break;
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@ -2491,6 +2493,7 @@ static inline void tcg_out_op(TCGContext *s, TCGOpcode opc,
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tcg_out_qemu_ld(s, args, 1);
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break;
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case INDEX_op_qemu_st_i32:
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case INDEX_op_qemu_st8_i32:
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tcg_out_qemu_st(s, args, 0);
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break;
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case INDEX_op_qemu_st_i64:
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@ -2949,9 +2952,11 @@ static const TCGTargetOpDef *tcg_target_op_def(TCGOpcode op)
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static const TCGTargetOpDef r_0_ci = { .args_ct_str = { "r", "0", "ci" } };
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static const TCGTargetOpDef r_L = { .args_ct_str = { "r", "L" } };
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static const TCGTargetOpDef L_L = { .args_ct_str = { "L", "L" } };
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static const TCGTargetOpDef s_L = { .args_ct_str = { "s", "L" } };
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static const TCGTargetOpDef r_L_L = { .args_ct_str = { "r", "L", "L" } };
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static const TCGTargetOpDef r_r_L = { .args_ct_str = { "r", "r", "L" } };
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static const TCGTargetOpDef L_L_L = { .args_ct_str = { "L", "L", "L" } };
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static const TCGTargetOpDef s_L_L = { .args_ct_str = { "s", "L", "L" } };
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static const TCGTargetOpDef r_r_L_L
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= { .args_ct_str = { "r", "r", "L", "L" } };
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static const TCGTargetOpDef L_L_L_L
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@ -3145,6 +3150,8 @@ static const TCGTargetOpDef *tcg_target_op_def(TCGOpcode op)
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return TARGET_LONG_BITS <= TCG_TARGET_REG_BITS ? &r_L : &r_L_L;
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case INDEX_op_qemu_st_i32:
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return TARGET_LONG_BITS <= TCG_TARGET_REG_BITS ? &L_L : &L_L_L;
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case INDEX_op_qemu_st8_i32:
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return TARGET_LONG_BITS <= TCG_TARGET_REG_BITS ? &s_L : &s_L_L;
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case INDEX_op_qemu_ld_i64:
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return (TCG_TARGET_REG_BITS == 64 ? &r_L
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: TARGET_LONG_BITS <= TCG_TARGET_REG_BITS ? &r_r_L
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@ -172,6 +172,9 @@ extern bool have_movbe;
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#define TCG_TARGET_HAS_muls2_i64 1
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#define TCG_TARGET_HAS_muluh_i64 0
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#define TCG_TARGET_HAS_mulsh_i64 0
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#else
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#define TCG_TARGET_HAS_qemu_st8_i32 1
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#endif
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/* We do not support older SSE systems, only beginning with AVX1. */
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@ -169,6 +169,7 @@ extern bool use_mips32r2_instructions;
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#define TCG_TARGET_HAS_clz_i32 use_mips32r2_instructions
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#define TCG_TARGET_HAS_ctz_i32 0
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#define TCG_TARGET_HAS_ctpop_i32 0
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#if TCG_TARGET_REG_BITS == 64
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#define TCG_TARGET_HAS_movcond_i64 use_movnz_instructions
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@ -1541,6 +1541,7 @@ void tcg_optimize(TCGContext *s)
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case INDEX_op_qemu_ld_i32:
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case INDEX_op_qemu_ld_i64:
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case INDEX_op_qemu_st_i32:
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case INDEX_op_qemu_st8_i32:
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case INDEX_op_qemu_st_i64:
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case INDEX_op_call:
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/* Opcodes that touch guest memory stop the optimization. */
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@ -108,6 +108,7 @@ extern bool have_vsx;
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#define TCG_TARGET_HAS_mulsh_i32 1
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#define TCG_TARGET_HAS_goto_ptr 1
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#define TCG_TARGET_HAS_direct_jump 1
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#if TCG_TARGET_REG_BITS == 64
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#define TCG_TARGET_HAS_add2_i32 0
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@ -119,6 +119,7 @@ typedef enum {
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#define TCG_TARGET_HAS_direct_jump 0
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#define TCG_TARGET_HAS_brcond2 1
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#define TCG_TARGET_HAS_setcond2 1
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#if TCG_TARGET_REG_BITS == 64
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#define TCG_TARGET_HAS_movcond_i64 0
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@ -97,6 +97,7 @@ extern uint64_t s390_facilities;
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#define TCG_TARGET_HAS_extrh_i64_i32 0
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#define TCG_TARGET_HAS_goto_ptr 1
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#define TCG_TARGET_HAS_direct_jump (s390_facilities & FACILITY_GEN_INST_EXT)
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#define TCG_TARGET_HAS_div2_i64 1
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#define TCG_TARGET_HAS_rot_i64 1
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@ -126,6 +126,7 @@ extern bool use_vis3_instructions;
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#define TCG_TARGET_HAS_mulsh_i32 0
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#define TCG_TARGET_HAS_goto_ptr 1
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#define TCG_TARGET_HAS_direct_jump 1
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#define TCG_TARGET_HAS_extrl_i64_i32 1
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#define TCG_TARGET_HAS_extrh_i64_i32 1
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@ -2883,7 +2883,11 @@ void tcg_gen_qemu_st_i32(TCGv_i32 val, TCGv addr, TCGArg idx, MemOp memop)
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}
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addr = plugin_prep_mem_callbacks(addr);
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gen_ldst_i32(INDEX_op_qemu_st_i32, val, addr, memop, idx);
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if (TCG_TARGET_HAS_qemu_st8_i32 && (memop & MO_SIZE) == MO_8) {
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gen_ldst_i32(INDEX_op_qemu_st8_i32, val, addr, memop, idx);
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} else {
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gen_ldst_i32(INDEX_op_qemu_st_i32, val, addr, memop, idx);
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}
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plugin_gen_mem_callbacks(addr, info);
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if (swap) {
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@ -1427,6 +1427,9 @@ bool tcg_op_supported(TCGOpcode op)
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case INDEX_op_qemu_st_i64:
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return true;
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case INDEX_op_qemu_st8_i32:
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return TCG_TARGET_HAS_qemu_st8_i32;
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case INDEX_op_goto_ptr:
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return TCG_TARGET_HAS_goto_ptr;
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@ -2087,6 +2090,7 @@ static void tcg_dump_ops(TCGContext *s, bool have_prefs)
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break;
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case INDEX_op_qemu_ld_i32:
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case INDEX_op_qemu_st_i32:
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case INDEX_op_qemu_st8_i32:
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case INDEX_op_qemu_ld_i64:
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case INDEX_op_qemu_st_i64:
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{
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@ -88,6 +88,7 @@
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#define TCG_TARGET_HAS_mulsh_i32 0
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#define TCG_TARGET_HAS_goto_ptr 0
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#define TCG_TARGET_HAS_direct_jump 1
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#define TCG_TARGET_HAS_qemu_st8_i32 0
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#if TCG_TARGET_REG_BITS == 64
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#define TCG_TARGET_HAS_extrl_i64_i32 0
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