2013-02-01 Jakub Jelinek Backported from mainline 2013-01-18 Jakub Jelinek PR middle-end/56015 * expr.c (expand_expr_real_2) : Handle the case where writing real complex part of target modifies op1. * gfortran.dg/pr56015.f90: New test. --- gcc/expr.c (revision 195300) +++ gcc/expr.c (revision 195301) @@ -8860,6 +8860,54 @@ expand_expr_real_2 (sepops ops, rtx targ if (!target) target = gen_reg_rtx (TYPE_MODE (type)); + else + /* If target overlaps with op1, then either we need to force + op1 into a pseudo (if target also overlaps with op0), + or write the complex parts in reverse order. */ + switch (GET_CODE (target)) + { + case CONCAT: + if (reg_overlap_mentioned_p (XEXP (target, 0), op1)) + { + if (reg_overlap_mentioned_p (XEXP (target, 1), op0)) + { + complex_expr_force_op1: + temp = gen_reg_rtx (GET_MODE_INNER (GET_MODE (target))); + emit_move_insn (temp, op1); + op1 = temp; + break; + } + complex_expr_swap_order: + /* Move the imaginary (op1) and real (op0) parts to their + location. */ + write_complex_part (target, op1, true); + write_complex_part (target, op0, false); + + return target; + } + break; + case MEM: + temp = adjust_address_nv (target, + GET_MODE_INNER (GET_MODE (target)), 0); + if (reg_overlap_mentioned_p (temp, op1)) + { + enum machine_mode imode = GET_MODE_INNER (GET_MODE (target)); + temp = adjust_address_nv (target, imode, + GET_MODE_SIZE (imode)); + if (reg_overlap_mentioned_p (temp, op0)) + goto complex_expr_force_op1; + goto complex_expr_swap_order; + } + break; + default: + if (reg_overlap_mentioned_p (target, op1)) + { + if (reg_overlap_mentioned_p (target, op0)) + goto complex_expr_force_op1; + goto complex_expr_swap_order; + } + break; + } /* Move the real (op0) and imaginary (op1) parts to their location. */ write_complex_part (target, op0, false); --- gcc/testsuite/gfortran.dg/pr56015.f90 (revision 0) +++ gcc/testsuite/gfortran.dg/pr56015.f90 (revision 195301) @@ -0,0 +1,16 @@ +! PR middle-end/56015 +! { dg-do run } +! { dg-options "-Ofast -fno-inline" } + +program pr56015 + implicit none + complex*16 p(10) + p(:) = (0.1d0, 0.2d0) + p(:) = (0.0d0, 1.0d0) * p(:) + call foo (p) +contains + subroutine foo (p) + complex*16 p(10) + if (any (p .ne. (-0.2d0, 0.1d0))) call abort + end subroutine +end program pr56015