return (INTVAL (andop) & ~ shift_mask) == 0;
}
+
+/* Return 1 if REGNO (reg1) == REGNO (reg2) - 1 making them candidates
+ for lfq and stfq insns.
+
+ Note reg1 and reg2 *must* be hard registers. To be sure we will
+ abort if we are passed pseudo registers. */
+
+int
+registers_ok_for_quad_peep (reg1, reg2)
+ rtx reg1, reg2;
+{
+ /* We might have been passed a SUBREG. */
+ if (GET_CODE (reg1) != REG || GET_CODE (reg2) != REG)
+ return 0;
+
+ return (REGNO (reg1) == REGNO (reg2) - 1);
+}
+
+/* Return 1 if addr1 and addr2 are suitable for lfq or stfq insn. addr1 and
+ addr2 must be in consecutive memory locations (addr2 == addr1 + 8). */
+
+int
+addrs_ok_for_quad_peep (addr1, addr2)
+ register rtx addr1;
+ register rtx addr2;
+{
+ int reg1;
+ int offset1;
+
+ /* Extract an offset (if used) from the first addr. */
+ if (GET_CODE (addr1) == PLUS)
+ {
+ /* If not a REG, return zero. */
+ if (GET_CODE (XEXP (addr1, 0)) != REG)
+ return 0;
+ else
+ {
+ reg1 = REGNO (XEXP (addr1, 0));
+ /* The offset must be constant! */
+ if (GET_CODE (XEXP (addr1, 1)) != CONST_INT)
+ return 0;
+ offset1 = INTVAL (XEXP (addr1, 1));
+ }
+ }
+ else if (GET_CODE (addr1) != REG)
+ return 0;
+ else
+ {
+ reg1 = REGNO (addr1);
+ /* This was a simple (mem (reg)) expression. Offset is 0. */
+ offset1 = 0;
+ }
+
+ /* Make sure the second address is a (mem (plus (reg) (const_int). */
+ if (GET_CODE (addr2) != PLUS)
+ return 0;
+
+ if (GET_CODE (XEXP (addr2, 0)) != REG
+ || GET_CODE (XEXP (addr2, 1)) != CONST_INT)
+ return 0;
+
+ if (reg1 != REGNO (XEXP (addr2, 0)))
+ return 0;
+
+ /* The offset for the second addr must be 8 more than the first addr. */
+ if (INTVAL (XEXP (addr2, 1)) != offset1 + 8)
+ return 0;
+
+ /* All the tests passed. addr1 and addr2 are valid for lfq or stfq
+ instructions. */
+ return 1;
+}
\f
/* Return the register class of a scratch register needed to copy IN into
or out of a register in CLASS in MODE. If it can be done directly,
asm_fprintf (file, "\t{stu|stwu} 1,%d(1)\n", - total_size);
else
{
- asm_fprintf (file, "\t{cau 0,0,%d|lis 0,%d}\n\t{oril|ori} 0,0,%d\n",
+ asm_fprintf (file, "\t{liu|lis} 0,%d\n\t{oril|ori} 0,0,%d\n",
(total_size >> 16) & 0xffff, total_size & 0xffff);
if (TARGET_POWERPC)
asm_fprintf (file, "\tsubf 12,0,1\n");