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[/] [scarts/] [trunk/] [toolchain/] [scarts-gcc/] [gcc-4.1.1/] [gcc/] [machmode.h] - Blame information for rev 20

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1 12 jlechner
/* Machine mode definitions for GCC; included by rtl.h and tree.h.
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   Copyright (C) 1991, 1993, 1994, 1996, 1998, 1999, 2000, 2001, 2003
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   Free Software Foundation, Inc.
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 2, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING.  If not, write to the Free
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Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301, USA.  */
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#ifndef HAVE_MACHINE_MODES
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#define HAVE_MACHINE_MODES
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/* Make an enum class that gives all the machine modes.  */
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#include "insn-modes.h"
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/* Get the name of mode MODE as a string.  */
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extern const char * const mode_name[NUM_MACHINE_MODES];
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#define GET_MODE_NAME(MODE)  mode_name[MODE]
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/* Mode classes.  */
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#include "mode-classes.def"
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#define DEF_MODE_CLASS(M) M
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enum mode_class { MODE_CLASSES, MAX_MODE_CLASS };
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#undef DEF_MODE_CLASS
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#undef MODE_CLASSES
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/* Get the general kind of object that mode MODE represents
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   (integer, floating, complex, etc.)  */
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extern const unsigned char mode_class[NUM_MACHINE_MODES];
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#define GET_MODE_CLASS(MODE)  mode_class[MODE]
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/* Nonzero if MODE is an integral mode.  */
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#define INTEGRAL_MODE_P(MODE)                   \
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  (GET_MODE_CLASS (MODE) == MODE_INT            \
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   || GET_MODE_CLASS (MODE) == MODE_PARTIAL_INT \
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   || GET_MODE_CLASS (MODE) == MODE_COMPLEX_INT \
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   || GET_MODE_CLASS (MODE) == MODE_VECTOR_INT)
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/* Nonzero if MODE is a floating-point mode.  */
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#define FLOAT_MODE_P(MODE)              \
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  (GET_MODE_CLASS (MODE) == MODE_FLOAT  \
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   || GET_MODE_CLASS (MODE) == MODE_COMPLEX_FLOAT \
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   || GET_MODE_CLASS (MODE) == MODE_VECTOR_FLOAT)
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/* Nonzero if MODE is a complex mode.  */
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#define COMPLEX_MODE_P(MODE)                    \
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  (GET_MODE_CLASS (MODE) == MODE_COMPLEX_INT    \
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   || GET_MODE_CLASS (MODE) == MODE_COMPLEX_FLOAT)
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/* Nonzero if MODE is a vector mode.  */
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#define VECTOR_MODE_P(MODE)                     \
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  (GET_MODE_CLASS (MODE) == MODE_VECTOR_INT     \
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   || GET_MODE_CLASS (MODE) == MODE_VECTOR_FLOAT)
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/* Nonzero if MODE is a scalar integral mode.  */
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#define SCALAR_INT_MODE_P(MODE)                 \
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  (GET_MODE_CLASS (MODE) == MODE_INT            \
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   || GET_MODE_CLASS (MODE) == MODE_PARTIAL_INT)
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/* Nonzero if MODE is a scalar floating point mode.  */
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#define SCALAR_FLOAT_MODE_P(MODE)               \
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  (GET_MODE_CLASS (MODE) == MODE_FLOAT)
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/* Get the size in bytes and bits of an object of mode MODE.  */
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extern CONST_MODE_SIZE unsigned char mode_size[NUM_MACHINE_MODES];
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#define GET_MODE_SIZE(MODE)    ((unsigned short) mode_size[MODE])
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#define GET_MODE_BITSIZE(MODE) ((unsigned short) (GET_MODE_SIZE (MODE) * BITS_PER_UNIT))
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/* Get the number of value bits of an object of mode MODE.  */
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extern const unsigned short mode_precision[NUM_MACHINE_MODES];
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#define GET_MODE_PRECISION(MODE)  mode_precision[MODE]
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/* Get a bitmask containing 1 for all bits in a word
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   that fit within mode MODE.  */
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extern const unsigned HOST_WIDE_INT mode_mask_array[NUM_MACHINE_MODES];
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#define GET_MODE_MASK(MODE) mode_mask_array[MODE]
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/* Return the mode of the inner elements in a vector.  */
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extern const unsigned char mode_inner[NUM_MACHINE_MODES];
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#define GET_MODE_INNER(MODE) mode_inner[MODE]
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/* Get the size in bytes of the basic parts of an object of mode MODE.  */
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#define GET_MODE_UNIT_SIZE(MODE)                \
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  (GET_MODE_INNER (MODE) == VOIDmode            \
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   ? GET_MODE_SIZE (MODE)                       \
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   : GET_MODE_SIZE (GET_MODE_INNER (MODE)))
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/* Get the number of units in the object.  */
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extern const unsigned char mode_nunits[NUM_MACHINE_MODES];
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#define GET_MODE_NUNITS(MODE)  mode_nunits[MODE]
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/* Get the next wider natural mode (eg, QI -> HI -> SI -> DI -> TI).  */
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extern const unsigned char mode_wider[NUM_MACHINE_MODES];
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#define GET_MODE_WIDER_MODE(MODE) mode_wider[MODE]
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extern const unsigned char mode_2xwider[NUM_MACHINE_MODES];
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#define GET_MODE_2XWIDER_MODE(MODE) mode_2xwider[MODE]
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/* Return the mode for data of a given size SIZE and mode class CLASS.
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   If LIMIT is nonzero, then don't use modes bigger than MAX_FIXED_MODE_SIZE.
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   The value is BLKmode if no other mode is found.  */
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extern enum machine_mode mode_for_size (unsigned int, enum mode_class, int);
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/* Similar, but find the smallest mode for a given width.  */
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extern enum machine_mode smallest_mode_for_size (unsigned int,
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                                                 enum mode_class);
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/* Return an integer mode of the exact same size as the input mode,
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   or BLKmode on failure.  */
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extern enum machine_mode int_mode_for_mode (enum machine_mode);
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/* Find the best mode to use to access a bit field.  */
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extern enum machine_mode get_best_mode (int, int, unsigned int,
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                                        enum machine_mode, int);
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/* Determine alignment, 1<=result<=BIGGEST_ALIGNMENT.  */
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extern CONST_MODE_BASE_ALIGN unsigned char mode_base_align[NUM_MACHINE_MODES];
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extern unsigned get_mode_alignment (enum machine_mode);
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#define GET_MODE_ALIGNMENT(MODE) get_mode_alignment (MODE)
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/* For each class, get the narrowest mode in that class.  */
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extern const unsigned char class_narrowest_mode[MAX_MODE_CLASS];
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#define GET_CLASS_NARROWEST_MODE(CLASS) class_narrowest_mode[CLASS]
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/* Define the integer modes whose sizes are BITS_PER_UNIT and BITS_PER_WORD
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   and the mode whose class is Pmode and whose size is POINTER_SIZE.  */
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extern enum machine_mode byte_mode;
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extern enum machine_mode word_mode;
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extern enum machine_mode ptr_mode;
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/* Target-dependent machine mode initialization - in insn-modes.c.  */
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extern void init_adjust_machine_modes (void);
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#endif /* not HAVE_MACHINE_MODES */

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