try multi-reg dest in default_zero_call_used_regs
When the mode of regno_reg_rtx is not hard_regno_mode_ok for the target, try grouping the register with subsequent ones. This enables s16 to s31 and their hidden pairs to be zeroed with the default logic on some arm variants. for gcc/ChangeLog * targhooks.cc (default_zero_call_used_regs): Attempt to group regs that the target refuses to use in their natural modes. (zcur_select_mode_rtx): New. * regs.h (struct target_regs): Add x_hard_regno_max_nregs. (hard_regno_max_nregs): Define. * reginfo.cc (init_reg_modes_target): Set hard_regno_max_nregs.
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@ -441,10 +441,15 @@ init_reg_modes_target (void)
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{
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int i, j;
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this_target_regs->x_hard_regno_max_nregs = 1;
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for (i = 0; i < FIRST_PSEUDO_REGISTER; i++)
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for (j = 0; j < MAX_MACHINE_MODE; j++)
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this_target_regs->x_hard_regno_nregs[i][j]
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= targetm.hard_regno_nregs (i, (machine_mode) j);
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{
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unsigned char nregs = targetm.hard_regno_nregs (i, (machine_mode) j);
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this_target_regs->x_hard_regno_nregs[i][j] = nregs;
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if (nregs > this_target_regs->x_hard_regno_max_nregs)
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this_target_regs->x_hard_regno_max_nregs = nregs;
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}
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for (i = 0; i < FIRST_PSEUDO_REGISTER; i++)
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{
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@ -202,6 +202,9 @@ struct target_regs {
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registers that a given machine mode occupies. */
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unsigned char x_hard_regno_nregs[FIRST_PSEUDO_REGISTER][MAX_MACHINE_MODE];
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/* The max value found in x_hard_regno_nregs. */
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unsigned char x_hard_regno_max_nregs;
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/* For each hard register, the widest mode object that it can contain.
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This will be a MODE_INT mode if the register can hold integers. Otherwise
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it will be a MODE_FLOAT or a MODE_CC mode, whichever is valid for the
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@ -235,6 +238,8 @@ extern struct target_regs *this_target_regs;
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#else
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#define this_target_regs (&default_target_regs)
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#endif
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#define hard_regno_max_nregs \
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(this_target_regs->x_hard_regno_max_nregs)
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#define reg_raw_mode \
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(this_target_regs->x_reg_raw_mode)
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#define have_regs_of_mode \
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@ -1017,6 +1017,45 @@ default_function_value_regno_p (const unsigned int regno ATTRIBUTE_UNUSED)
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#endif
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}
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/* Choose the mode and rtx to use to zero REGNO, storing tem in PMODE and
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PREGNO_RTX and returning TRUE if successful, otherwise returning FALSE. If
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the natural mode for REGNO doesn't work, attempt to group it with subsequent
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adjacent registers set in TOZERO. */
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static inline bool
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zcur_select_mode_rtx (unsigned int regno, machine_mode *pmode,
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rtx *pregno_rtx, HARD_REG_SET tozero)
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{
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rtx regno_rtx = regno_reg_rtx[regno];
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machine_mode mode = GET_MODE (regno_rtx);
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/* If the natural mode doesn't work, try some wider mode. */
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if (!targetm.hard_regno_mode_ok (regno, mode))
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{
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bool found = false;
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for (int nregs = 2;
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!found && nregs <= hard_regno_max_nregs
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&& regno + nregs <= FIRST_PSEUDO_REGISTER
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&& TEST_HARD_REG_BIT (tozero,
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regno + nregs - 1);
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nregs++)
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{
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mode = choose_hard_reg_mode (regno, nregs, 0);
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if (mode == E_VOIDmode)
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continue;
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gcc_checking_assert (targetm.hard_regno_mode_ok (regno, mode));
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regno_rtx = gen_rtx_REG (mode, regno);
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found = true;
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}
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if (!found)
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return false;
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}
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*pmode = mode;
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*pregno_rtx = regno_rtx;
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return true;
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}
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/* The default hook for TARGET_ZERO_CALL_USED_REGS. */
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HARD_REG_SET
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@ -1035,16 +1074,28 @@ default_zero_call_used_regs (HARD_REG_SET need_zeroed_hardregs)
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if (TEST_HARD_REG_BIT (need_zeroed_hardregs, regno))
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{
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rtx_insn *last_insn = get_last_insn ();
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machine_mode mode = GET_MODE (regno_reg_rtx[regno]);
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rtx regno_rtx;
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machine_mode mode;
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if (!zcur_select_mode_rtx (regno, &mode, ®no_rtx,
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need_zeroed_hardregs))
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{
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SET_HARD_REG_BIT (failed, regno);
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continue;
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}
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rtx zero = CONST0_RTX (mode);
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rtx_insn *insn = emit_move_insn (regno_reg_rtx[regno], zero);
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rtx_insn *insn = emit_move_insn (regno_rtx, zero);
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if (!valid_insn_p (insn))
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{
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SET_HARD_REG_BIT (failed, regno);
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delete_insns_since (last_insn);
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}
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else
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progress = true;
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{
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progress = true;
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regno += hard_regno_nregs (regno, mode) - 1;
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}
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}
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/* Now retry with copies from zeroed registers, as long as we've
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@ -1060,7 +1111,18 @@ default_zero_call_used_regs (HARD_REG_SET need_zeroed_hardregs)
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for (unsigned int regno = 0; regno < FIRST_PSEUDO_REGISTER; regno++)
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if (TEST_HARD_REG_BIT (retrying, regno))
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{
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machine_mode mode = GET_MODE (regno_reg_rtx[regno]);
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rtx regno_rtx;
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machine_mode mode;
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/* This might select registers we've already zeroed. If grouping
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with them is what it takes to get regno zeroed, so be it. */
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if (!zcur_select_mode_rtx (regno, &mode, ®no_rtx,
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need_zeroed_hardregs))
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{
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SET_HARD_REG_BIT (failed, regno);
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continue;
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}
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bool success = false;
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/* Look for a source. */
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for (unsigned int src = 0; src < FIRST_PSEUDO_REGISTER; src++)
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@ -1086,8 +1148,8 @@ default_zero_call_used_regs (HARD_REG_SET need_zeroed_hardregs)
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/* SRC is usable, try to copy from it. */
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rtx_insn *last_insn = get_last_insn ();
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rtx zsrc = gen_rtx_REG (mode, src);
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rtx_insn *insn = emit_move_insn (regno_reg_rtx[regno], zsrc);
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rtx src_rtx = gen_rtx_REG (mode, src);
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rtx_insn *insn = emit_move_insn (regno_rtx, src_rtx);
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if (!valid_insn_p (insn))
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/* It didn't work, remove any inserts. We'll look
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for another SRC. */
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@ -1100,13 +1162,16 @@ default_zero_call_used_regs (HARD_REG_SET need_zeroed_hardregs)
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}
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}
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/* If nothing worked for REGNO this round, marked it to be
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/* If nothing worked for REGNO this round, mark it to be
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retried if we get another round. */
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if (!success)
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SET_HARD_REG_BIT (failed, regno);
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else
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/* Take note so as to enable another round if needed. */
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progress = true;
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{
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/* Take note so as to enable another round if needed. */
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progress = true;
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regno += hard_regno_nregs (regno, mode) - 1;
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}
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}
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}
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