mirror of https://gitee.com/openkylin/qemu.git
tcg: Optimize spills of constants
While we can store constants via constrants on INDEX_op_st_i32 et al, we weren't able to spill constants to backing store. Add a new backend interface, tcg_out_sti, which may store the constant (and is allowed to fail). Rearrange the temp_* helpers so that we only attempt to directly store a constant when the temp is becoming dead/free. Signed-off-by: Richard Henderson <rth@twiddle.net>
This commit is contained in:
parent
120c1084ed
commit
59d7c14eef
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@ -716,6 +716,16 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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arg, arg1, arg2);
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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if (val == 0) {
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tcg_out_st(s, type, TCG_REG_XZR, base, ofs);
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return true;
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}
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return false;
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}
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static inline void tcg_out_bfm(TCGContext *s, TCGType ext, TCGReg rd,
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TCGReg rn, unsigned int a, unsigned int b)
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{
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@ -2046,6 +2046,12 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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tcg_out_st32(s, COND_AL, arg, arg1, arg2);
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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return false;
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}
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static inline void tcg_out_mov(TCGContext *s, TCGType type,
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TCGReg ret, TCGReg arg)
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{
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@ -710,12 +710,19 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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tcg_out_modrm_offset(s, opc, arg, arg1, arg2);
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}
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static inline void tcg_out_sti(TCGContext *s, TCGType type, TCGReg base,
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tcg_target_long ofs, tcg_target_long val)
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static bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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int opc = OPC_MOVL_EvIz + (type == TCG_TYPE_I64 ? P_REXW : 0);
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tcg_out_modrm_offset(s, opc, 0, base, ofs);
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int rexw = 0;
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if (TCG_TARGET_REG_BITS == 64 && type == TCG_TYPE_I64) {
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if (val != (int32_t)val) {
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return false;
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}
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rexw = P_REXW;
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}
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tcg_out_modrm_offset(s, OPC_MOVL_EvIz | rexw, 0, base, ofs);
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tcg_out32(s, val);
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return true;
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}
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static void tcg_out_shifti(TCGContext *s, int subopc, int reg, int count)
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@ -1321,10 +1328,10 @@ static void tcg_out_qemu_ld_slow_path(TCGContext *s, TCGLabelQemuLdst *l)
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ofs += 4;
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}
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tcg_out_sti(s, TCG_TYPE_I32, TCG_REG_ESP, ofs, oi);
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tcg_out_sti(s, TCG_TYPE_I32, oi, TCG_REG_ESP, ofs);
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ofs += 4;
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tcg_out_sti(s, TCG_TYPE_PTR, TCG_REG_ESP, ofs, (uintptr_t)l->raddr);
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tcg_out_sti(s, TCG_TYPE_PTR, (uintptr_t)l->raddr, TCG_REG_ESP, ofs);
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} else {
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tcg_out_mov(s, TCG_TYPE_PTR, tcg_target_call_iarg_regs[0], TCG_AREG0);
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/* The second argument is already loaded with addrlo. */
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@ -1413,7 +1420,7 @@ static void tcg_out_qemu_st_slow_path(TCGContext *s, TCGLabelQemuLdst *l)
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ofs += 4;
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}
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tcg_out_sti(s, TCG_TYPE_I32, TCG_REG_ESP, ofs, oi);
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tcg_out_sti(s, TCG_TYPE_I32, oi, TCG_REG_ESP, ofs);
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ofs += 4;
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retaddr = TCG_REG_EAX;
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@ -973,6 +973,16 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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}
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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if (val == 0) {
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tcg_out_st(s, type, TCG_REG_R0, base, ofs);
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return true;
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}
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return false;
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}
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static inline void tcg_out_alu(TCGContext *s, uint64_t opc_a1, uint64_t opc_a3,
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TCGReg ret, TCGArg arg1, int const_arg1,
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TCGArg arg2, int const_arg2)
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@ -576,6 +576,16 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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tcg_out_ldst(s, OPC_SW, arg, arg1, arg2);
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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if (val == 0) {
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tcg_out_st(s, type, TCG_REG_ZERO, base, ofs);
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return true;
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}
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return false;
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}
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static inline void tcg_out_addi(TCGContext *s, TCGReg reg, TCGArg val)
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{
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if (val == (int16_t)val) {
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@ -857,6 +857,12 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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tcg_out_mem_long(s, opi, opx, arg, arg1, arg2);
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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return false;
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}
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static void tcg_out_cmp(TCGContext *s, int cond, TCGArg arg1, TCGArg arg2,
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int const_arg2, int cr, TCGType type)
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{
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@ -798,6 +798,12 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg data,
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}
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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return false;
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}
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/* load data from an absolute host address */
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static void tcg_out_ld_abs(TCGContext *s, TCGType type, TCGReg dest, void *abs)
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{
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@ -504,6 +504,16 @@ static inline void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg,
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tcg_out_ldst(s, arg, arg1, arg2, (type == TCG_TYPE_I32 ? STW : STX));
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}
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static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs)
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{
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if (val == 0) {
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tcg_out_st(s, type, TCG_REG_G0, base, ofs);
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return true;
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}
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return false;
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}
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static void tcg_out_ld_ptr(TCGContext *s, TCGReg ret, uintptr_t arg)
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{
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tcg_out_movi(s, TCG_TYPE_PTR, ret, arg & ~0x3ff);
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165
tcg/tcg.c
165
tcg/tcg.c
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@ -108,6 +108,8 @@ static void tcg_out_op(TCGContext *s, TCGOpcode opc, const TCGArg *args,
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const int *const_args);
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static void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg, TCGReg arg1,
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intptr_t arg2);
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static bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
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TCGReg base, intptr_t ofs);
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static void tcg_out_call(TCGContext *s, tcg_insn_unit *target);
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static int tcg_target_const_match(tcg_target_long val, TCGType type,
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const TCGArgConstraint *arg_ct);
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@ -1680,35 +1682,89 @@ static void temp_allocate_frame(TCGContext *s, int temp)
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static void temp_load(TCGContext *, TCGTemp *, TCGRegSet, TCGRegSet);
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/* sync register 'reg' by saving it to the corresponding temporary */
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static void tcg_reg_sync(TCGContext *s, TCGReg reg, TCGRegSet allocated_regs)
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/* Mark a temporary as free or dead. If 'free_or_dead' is negative,
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mark it free; otherwise mark it dead. */
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static void temp_free_or_dead(TCGContext *s, TCGTemp *ts, int free_or_dead)
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{
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TCGTemp *ts = s->reg_to_temp[reg];
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if (ts->fixed_reg) {
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return;
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}
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if (ts->val_type == TEMP_VAL_REG) {
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s->reg_to_temp[ts->reg] = NULL;
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}
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ts->val_type = (free_or_dead < 0
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|| ts->temp_local
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|| temp_idx(s, ts) < s->nb_globals
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? TEMP_VAL_MEM : TEMP_VAL_DEAD);
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}
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tcg_debug_assert(ts->val_type == TEMP_VAL_REG);
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if (!ts->mem_coherent && !ts->fixed_reg) {
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/* Mark a temporary as dead. */
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static inline void temp_dead(TCGContext *s, TCGTemp *ts)
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{
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temp_free_or_dead(s, ts, 1);
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}
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/* Sync a temporary to memory. 'allocated_regs' is used in case a temporary
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registers needs to be allocated to store a constant. If 'free_or_dead'
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is non-zero, subsequently release the temporary; if it is positive, the
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temp is dead; if it is negative, the temp is free. */
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static void temp_sync(TCGContext *s, TCGTemp *ts,
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TCGRegSet allocated_regs, int free_or_dead)
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{
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if (ts->fixed_reg) {
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return;
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}
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if (!ts->mem_coherent) {
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if (!ts->mem_allocated) {
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temp_allocate_frame(s, temp_idx(s, ts));
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} else if (ts->indirect_reg) {
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tcg_regset_set_reg(allocated_regs, ts->reg);
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}
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if (ts->indirect_reg) {
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if (ts->val_type == TEMP_VAL_REG) {
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tcg_regset_set_reg(allocated_regs, ts->reg);
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}
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temp_load(s, ts->mem_base,
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tcg_target_available_regs[TCG_TYPE_PTR],
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allocated_regs);
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}
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tcg_out_st(s, ts->type, reg, ts->mem_base->reg, ts->mem_offset);
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switch (ts->val_type) {
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case TEMP_VAL_CONST:
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/* If we're going to free the temp immediately, then we won't
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require it later in a register, so attempt to store the
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constant to memory directly. */
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if (free_or_dead
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&& tcg_out_sti(s, ts->type, ts->val,
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ts->mem_base->reg, ts->mem_offset)) {
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break;
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}
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temp_load(s, ts, tcg_target_available_regs[ts->type],
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allocated_regs);
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/* fallthrough */
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case TEMP_VAL_REG:
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tcg_out_st(s, ts->type, ts->reg,
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ts->mem_base->reg, ts->mem_offset);
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break;
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case TEMP_VAL_MEM:
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break;
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case TEMP_VAL_DEAD:
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default:
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tcg_abort();
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}
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ts->mem_coherent = 1;
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}
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if (free_or_dead) {
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temp_free_or_dead(s, ts, free_or_dead);
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}
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ts->mem_coherent = 1;
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}
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/* free register 'reg' by spilling the corresponding temporary if necessary */
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static void tcg_reg_free(TCGContext *s, TCGReg reg, TCGRegSet allocated_regs)
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{
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TCGTemp *ts = s->reg_to_temp[reg];
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if (ts != NULL) {
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tcg_reg_sync(s, reg, allocated_regs);
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ts->val_type = TEMP_VAL_MEM;
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s->reg_to_temp[reg] = NULL;
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temp_sync(s, ts, allocated_regs, -1);
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}
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}
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@ -1778,45 +1834,9 @@ static void temp_load(TCGContext *s, TCGTemp *ts, TCGRegSet desired_regs,
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s->reg_to_temp[reg] = ts;
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}
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/* mark a temporary as dead. */
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static inline void temp_dead(TCGContext *s, TCGTemp *ts)
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{
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if (ts->fixed_reg) {
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return;
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}
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if (ts->val_type == TEMP_VAL_REG) {
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s->reg_to_temp[ts->reg] = NULL;
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}
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ts->val_type = (temp_idx(s, ts) < s->nb_globals || ts->temp_local
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? TEMP_VAL_MEM : TEMP_VAL_DEAD);
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}
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/* sync a temporary to memory. 'allocated_regs' is used in case a
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temporary registers needs to be allocated to store a constant. */
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static void temp_sync(TCGContext *s, TCGTemp *ts, TCGRegSet allocated_regs)
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{
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if (ts->fixed_reg) {
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return;
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}
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switch (ts->val_type) {
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case TEMP_VAL_CONST:
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temp_load(s, ts, tcg_target_available_regs[ts->type], allocated_regs);
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/* fallthrough */
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case TEMP_VAL_REG:
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tcg_reg_sync(s, ts->reg, allocated_regs);
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break;
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case TEMP_VAL_DEAD:
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case TEMP_VAL_MEM:
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break;
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default:
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tcg_abort();
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}
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}
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/* save a temporary to memory. 'allocated_regs' is used in case a
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temporary registers needs to be allocated to store a constant. */
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static inline void temp_save(TCGContext *s, TCGTemp *ts,
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TCGRegSet allocated_regs)
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/* Save a temporary to memory. 'allocated_regs' is used in case a
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temporary registers needs to be allocated to store a constant. */
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static void temp_save(TCGContext *s, TCGTemp *ts, TCGRegSet allocated_regs)
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{
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#ifdef USE_LIVENESS_ANALYSIS
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/* ??? Liveness does not yet incorporate indirect bases. */
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@ -1827,8 +1847,7 @@ static inline void temp_save(TCGContext *s, TCGTemp *ts,
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return;
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}
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#endif
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temp_sync(s, ts, allocated_regs);
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temp_dead(s, ts);
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temp_sync(s, ts, allocated_regs, 1);
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}
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/* save globals to their canonical location and assume they can be
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@ -1861,7 +1880,7 @@ static void sync_globals(TCGContext *s, TCGRegSet allocated_regs)
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continue;
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}
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#endif
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temp_sync(s, ts, allocated_regs);
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temp_sync(s, ts, allocated_regs, 0);
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}
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}
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@ -1905,21 +1924,21 @@ static void tcg_reg_alloc_movi(TCGContext *s, const TCGArg *args,
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val = args[1];
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if (ots->fixed_reg) {
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/* for fixed registers, we do not do any constant
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propagation */
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/* For fixed registers, we do not do any constant propagation. */
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tcg_out_movi(s, ots->type, ots->reg, val);
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} else {
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/* The movi is not explicitly generated here */
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if (ots->val_type == TEMP_VAL_REG) {
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s->reg_to_temp[ots->reg] = NULL;
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}
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ots->val_type = TEMP_VAL_CONST;
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ots->val = val;
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return;
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}
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/* The movi is not explicitly generated here. */
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if (ots->val_type == TEMP_VAL_REG) {
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s->reg_to_temp[ots->reg] = NULL;
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}
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ots->val_type = TEMP_VAL_CONST;
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ots->val = val;
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ots->mem_coherent = 0;
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if (NEED_SYNC_ARG(0)) {
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temp_sync(s, ots, s->reserved_regs);
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}
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if (IS_DEAD_ARG(0)) {
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temp_sync(s, ots, s->reserved_regs, IS_DEAD_ARG(0));
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} else if (IS_DEAD_ARG(0)) {
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temp_dead(s, ots);
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}
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}
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@ -2004,7 +2023,7 @@ static void tcg_reg_alloc_mov(TCGContext *s, const TCGOpDef *def,
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ots->mem_coherent = 0;
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s->reg_to_temp[ots->reg] = ots;
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if (NEED_SYNC_ARG(0)) {
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tcg_reg_sync(s, ots->reg, allocated_regs);
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temp_sync(s, ots, allocated_regs, 0);
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}
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}
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}
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@ -2163,9 +2182,8 @@ static void tcg_reg_alloc_op(TCGContext *s,
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tcg_out_mov(s, ts->type, ts->reg, reg);
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}
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if (NEED_SYNC_ARG(i)) {
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tcg_reg_sync(s, reg, allocated_regs);
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}
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if (IS_DEAD_ARG(i)) {
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temp_sync(s, ts, allocated_regs, IS_DEAD_ARG(i));
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} else if (IS_DEAD_ARG(i)) {
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temp_dead(s, ts);
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}
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}
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@ -2298,9 +2316,8 @@ static void tcg_reg_alloc_call(TCGContext *s, int nb_oargs, int nb_iargs,
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ts->mem_coherent = 0;
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s->reg_to_temp[reg] = ts;
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if (NEED_SYNC_ARG(i)) {
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tcg_reg_sync(s, reg, allocated_regs);
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}
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if (IS_DEAD_ARG(i)) {
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temp_sync(s, ts, allocated_regs, IS_DEAD_ARG(i));
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} else if (IS_DEAD_ARG(i)) {
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temp_dead(s, ts);
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}
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||||
}
|
||||
|
|
|
@ -834,6 +834,12 @@ static void tcg_out_st(TCGContext *s, TCGType type, TCGReg arg, TCGReg arg1,
|
|||
old_code_ptr[1] = s->code_ptr - old_code_ptr;
|
||||
}
|
||||
|
||||
static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
|
||||
TCGReg base, intptr_t ofs)
|
||||
{
|
||||
return false;
|
||||
}
|
||||
|
||||
/* Test if a constant matches the constraint. */
|
||||
static int tcg_target_const_match(tcg_target_long val, TCGType type,
|
||||
const TCGArgConstraint *arg_ct)
|
||||
|
|
Loading…
Reference in New Issue