1 | /* obstack.h - object stack macros
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2 | Copyright 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1996, 1997, 1998,
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3 | 1999, 2000
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4 | Free Software Foundation, Inc.
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5 |
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6 |
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7 | NOTE: The canonical source of this file is maintained with the GNU C Library.
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8 | Bugs can be reported to bug-glibc@gnu.org.
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9 |
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10 | This program is free software; you can redistribute it and/or modify it
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11 | under the terms of the GNU General Public License as published by the
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12 | Free Software Foundation; either version 2, or (at your option) any
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13 | later version.
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14 |
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15 | This program is distributed in the hope that it will be useful,
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16 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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17 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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18 | GNU General Public License for more details.
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19 |
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20 | You should have received a copy of the GNU General Public License
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21 | along with this program; if not, write to the Free Software
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22 | Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
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23 | USA. */
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24 |
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25 | /* Summary:
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26 |
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27 | All the apparent functions defined here are macros. The idea
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28 | is that you would use these pre-tested macros to solve a
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29 | very specific set of problems, and they would run fast.
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30 | Caution: no side-effects in arguments please!! They may be
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31 | evaluated MANY times!!
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32 |
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33 | These macros operate a stack of objects. Each object starts life
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34 | small, and may grow to maturity. (Consider building a word syllable
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35 | by syllable.) An object can move while it is growing. Once it has
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36 | been "finished" it never changes address again. So the "top of the
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37 | stack" is typically an immature growing object, while the rest of the
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38 | stack is of mature, fixed size and fixed address objects.
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39 |
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40 | These routines grab large chunks of memory, using a function you
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41 | supply, called `obstack_chunk_alloc'. On occasion, they free chunks,
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42 | by calling `obstack_chunk_free'. You must define them and declare
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43 | them before using any obstack macros.
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44 |
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45 | Each independent stack is represented by a `struct obstack'.
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46 | Each of the obstack macros expects a pointer to such a structure
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47 | as the first argument.
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48 |
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49 | One motivation for this package is the problem of growing char strings
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50 | in symbol tables. Unless you are "fascist pig with a read-only mind"
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51 | --Gosper's immortal quote from HAKMEM item 154, out of context--you
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52 | would not like to put any arbitrary upper limit on the length of your
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53 | symbols.
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54 |
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55 | In practice this often means you will build many short symbols and a
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56 | few long symbols. At the time you are reading a symbol you don't know
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57 | how long it is. One traditional method is to read a symbol into a
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58 | buffer, realloc()ating the buffer every time you try to read a symbol
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59 | that is longer than the buffer. This is beaut, but you still will
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60 | want to copy the symbol from the buffer to a more permanent
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61 | symbol-table entry say about half the time.
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62 |
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63 | With obstacks, you can work differently. Use one obstack for all symbol
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64 | names. As you read a symbol, grow the name in the obstack gradually.
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65 | When the name is complete, finalize it. Then, if the symbol exists already,
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66 | free the newly read name.
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67 |
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68 | The way we do this is to take a large chunk, allocating memory from
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69 | low addresses. When you want to build a symbol in the chunk you just
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70 | add chars above the current "high water mark" in the chunk. When you
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71 | have finished adding chars, because you got to the end of the symbol,
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72 | you know how long the chars are, and you can create a new object.
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73 | Mostly the chars will not burst over the highest address of the chunk,
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74 | because you would typically expect a chunk to be (say) 100 times as
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75 | long as an average object.
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76 |
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77 | In case that isn't clear, when we have enough chars to make up
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78 | the object, THEY ARE ALREADY CONTIGUOUS IN THE CHUNK (guaranteed)
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79 | so we just point to it where it lies. No moving of chars is
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80 | needed and this is the second win: potentially long strings need
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81 | never be explicitly shuffled. Once an object is formed, it does not
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82 | change its address during its lifetime.
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83 |
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84 | When the chars burst over a chunk boundary, we allocate a larger
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85 | chunk, and then copy the partly formed object from the end of the old
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86 | chunk to the beginning of the new larger chunk. We then carry on
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87 | accreting characters to the end of the object as we normally would.
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88 |
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89 | A special macro is provided to add a single char at a time to a
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90 | growing object. This allows the use of register variables, which
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91 | break the ordinary 'growth' macro.
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92 |
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93 | Summary:
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94 | We allocate large chunks.
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95 | We carve out one object at a time from the current chunk.
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96 | Once carved, an object never moves.
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97 | We are free to append data of any size to the currently
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98 | growing object.
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99 | Exactly one object is growing in an obstack at any one time.
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100 | You can run one obstack per control block.
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101 | You may have as many control blocks as you dare.
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102 | Because of the way we do it, you can `unwind' an obstack
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103 | back to a previous state. (You may remove objects much
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104 | as you would with a stack.)
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105 | */
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106 |
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107 |
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108 | /* Don't do the contents of this file more than once. */
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109 |
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110 | #ifndef _OBSTACK_H
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111 | #define _OBSTACK_H 1
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112 |
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113 | #ifdef __cplusplus
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114 | extern "C" {
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115 | #endif
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116 | |
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117 |
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118 | /* We use subtraction of (char *) 0 instead of casting to int
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119 | because on word-addressable machines a simple cast to int
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120 | may ignore the byte-within-word field of the pointer. */
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121 |
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122 | #ifndef __PTR_TO_INT
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123 | # define __PTR_TO_INT(P) ((P) - (char *) 0)
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124 | #endif
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125 |
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126 | #ifndef __INT_TO_PTR
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127 | # define __INT_TO_PTR(P) ((P) + (char *) 0)
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128 | #endif
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129 |
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130 | /* We need the type of the resulting object. If __PTRDIFF_TYPE__ is
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131 | defined, as with GNU C, use that; that way we don't pollute the
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132 | namespace with <stddef.h>'s symbols. Otherwise, if <stddef.h> is
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133 | available, include it and use ptrdiff_t. In traditional C, long is
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134 | the best that we can do. */
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135 |
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136 | #ifdef __PTRDIFF_TYPE__
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137 | # define PTR_INT_TYPE __PTRDIFF_TYPE__
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138 | #else
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139 | # ifdef HAVE_STDDEF_H
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140 | # include <stddef.h>
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141 | # define PTR_INT_TYPE ptrdiff_t
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142 | # else
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143 | # define PTR_INT_TYPE long
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144 | # endif
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145 | #endif
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146 |
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147 | #if defined _LIBC || defined HAVE_STRING_H
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148 | # include <string.h>
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149 | # if defined __STDC__ && __STDC__
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150 | # define _obstack_memcpy(To, From, N) memcpy ((To), (From), (N))
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151 | # else
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152 | # define _obstack_memcpy(To, From, N) memcpy ((To), (char *)(From), (N))
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153 | # endif
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154 | #else
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155 | # ifdef memcpy
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156 | # define _obstack_memcpy(To, From, N) memcpy ((To), (char *)(From), (N))
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157 | # else
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158 | # define _obstack_memcpy(To, From, N) bcopy ((char *)(From), (To), (N))
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159 | # endif
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160 | #endif
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161 |
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162 | struct _obstack_chunk /* Lives at front of each chunk. */
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163 | {
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164 | char *limit; /* 1 past end of this chunk */
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165 | struct _obstack_chunk *prev; /* address of prior chunk or NULL */
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166 | char contents[4]; /* objects begin here */
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167 | };
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168 |
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169 | struct obstack /* control current object in current chunk */
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170 | {
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171 | long chunk_size; /* preferred size to allocate chunks in */
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172 | struct _obstack_chunk *chunk; /* address of current struct obstack_chunk */
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173 | char *object_base; /* address of object we are building */
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174 | char *next_free; /* where to add next char to current object */
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175 | char *chunk_limit; /* address of char after current chunk */
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176 | PTR_INT_TYPE temp; /* Temporary for some macros. */
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177 | int alignment_mask; /* Mask of alignment for each object. */
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178 | #if defined __STDC__ && __STDC__
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179 | /* These prototypes vary based on `use_extra_arg', and we use
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180 | casts to the prototypeless function type in all assignments,
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181 | but having prototypes here quiets -Wstrict-prototypes. */
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182 | struct _obstack_chunk *(*chunkfun) (void *, long);
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183 | void (*freefun) (void *, struct _obstack_chunk *);
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184 | void *extra_arg; /* first arg for chunk alloc/dealloc funcs */
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185 | #else
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186 | struct _obstack_chunk *(*chunkfun) (); /* User's fcn to allocate a chunk. */
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187 | void (*freefun) (); /* User's function to free a chunk. */
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188 | char *extra_arg; /* first arg for chunk alloc/dealloc funcs */
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189 | #endif
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190 | unsigned use_extra_arg:1; /* chunk alloc/dealloc funcs take extra arg */
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191 | unsigned maybe_empty_object:1;/* There is a possibility that the current
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192 | chunk contains a zero-length object. This
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193 | prevents freeing the chunk if we allocate
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194 | a bigger chunk to replace it. */
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195 | unsigned alloc_failed:1; /* No longer used, as we now call the failed
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196 | handler on error, but retained for binary
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197 | compatibility. */
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198 | };
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199 |
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200 | /* Declare the external functions we use; they are in obstack.c. */
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201 |
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202 | #if defined __STDC__ && __STDC__
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203 | extern void _obstack_newchunk (struct obstack *, int);
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204 | extern void _obstack_free (struct obstack *, void *);
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205 | extern int _obstack_begin (struct obstack *, int, int,
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206 | void *(*) (long), void (*) (void *));
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207 | extern int _obstack_begin_1 (struct obstack *, int, int,
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208 | void *(*) (void *, long),
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209 | void (*) (void *, void *), void *);
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210 | extern int _obstack_memory_used (struct obstack *);
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211 | #else
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212 | extern void _obstack_newchunk ();
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213 | extern void _obstack_free ();
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214 | extern int _obstack_begin ();
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215 | extern int _obstack_begin_1 ();
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216 | extern int _obstack_memory_used ();
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217 | #endif
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218 | |
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219 |
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220 | #if defined __STDC__ && __STDC__
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221 |
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222 | /* Do the function-declarations after the structs
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223 | but before defining the macros. */
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224 |
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225 | void obstack_init (struct obstack *obstack);
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226 |
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227 | void * obstack_alloc (struct obstack *obstack, int size);
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228 |
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229 | void * obstack_copy (struct obstack *obstack, void *address, int size);
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230 | void * obstack_copy0 (struct obstack *obstack, void *address, int size);
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231 |
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232 | void obstack_free (struct obstack *obstack, void *block);
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233 |
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234 | void obstack_blank (struct obstack *obstack, int size);
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235 |
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236 | void obstack_grow (struct obstack *obstack, void *data, int size);
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237 | void obstack_grow0 (struct obstack *obstack, void *data, int size);
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238 |
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239 | void obstack_1grow (struct obstack *obstack, int data_char);
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240 | void obstack_ptr_grow (struct obstack *obstack, void *data);
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241 | void obstack_int_grow (struct obstack *obstack, int data);
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242 |
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243 | void * obstack_finish (struct obstack *obstack);
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244 |
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245 | int obstack_object_size (struct obstack *obstack);
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246 |
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247 | int obstack_room (struct obstack *obstack);
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248 | void obstack_make_room (struct obstack *obstack, int size);
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249 | void obstack_1grow_fast (struct obstack *obstack, int data_char);
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250 | void obstack_ptr_grow_fast (struct obstack *obstack, void *data);
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251 | void obstack_int_grow_fast (struct obstack *obstack, int data);
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252 | void obstack_blank_fast (struct obstack *obstack, int size);
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253 |
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254 | void * obstack_base (struct obstack *obstack);
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255 | void * obstack_next_free (struct obstack *obstack);
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256 | int obstack_alignment_mask (struct obstack *obstack);
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257 | int obstack_chunk_size (struct obstack *obstack);
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258 | int obstack_memory_used (struct obstack *obstack);
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259 |
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260 | #endif /* __STDC__ */
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261 |
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262 | /* Non-ANSI C cannot really support alternative functions for these macros,
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263 | so we do not declare them. */
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264 |
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265 | /* Error handler called when `obstack_chunk_alloc' failed to allocate
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266 | more memory. This can be set to a user defined function. The
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267 | default action is to print a message and abort. */
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268 | #if defined __STDC__ && __STDC__
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269 | extern void (*obstack_alloc_failed_handler) (void);
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270 | #else
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271 | extern void (*obstack_alloc_failed_handler) ();
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272 | #endif
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273 |
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274 | /* Exit value used when `print_and_abort' is used. */
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275 | extern int obstack_exit_failure;
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276 | |
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277 |
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278 | /* Pointer to beginning of object being allocated or to be allocated next.
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279 | Note that this might not be the final address of the object
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280 | because a new chunk might be needed to hold the final size. */
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281 |
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282 | #define obstack_base(h) ((h)->object_base)
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283 |
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284 | /* Size for allocating ordinary chunks. */
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285 |
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286 | #define obstack_chunk_size(h) ((h)->chunk_size)
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287 |
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288 | /* Pointer to next byte not yet allocated in current chunk. */
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289 |
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290 | #define obstack_next_free(h) ((h)->next_free)
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291 |
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292 | /* Mask specifying low bits that should be clear in address of an object. */
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293 |
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294 | #define obstack_alignment_mask(h) ((h)->alignment_mask)
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295 |
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296 | /* To prevent prototype warnings provide complete argument list in
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297 | standard C version. */
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298 | #if defined __STDC__ && __STDC__
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299 |
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300 | # define obstack_init(h) \
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301 | _obstack_begin ((h), 0, 0, \
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302 | (void *(*) (long)) obstack_chunk_alloc, (void (*) (void *)) obstack_chunk_free)
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303 |
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304 | # define obstack_begin(h, size) \
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305 | _obstack_begin ((h), (size), 0, \
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306 | (void *(*) (long)) obstack_chunk_alloc, (void (*) (void *)) obstack_chunk_free)
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307 |
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308 | # define obstack_specify_allocation(h, size, alignment, chunkfun, freefun) \
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309 | _obstack_begin ((h), (size), (alignment), \
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310 | (void *(*) (long)) (chunkfun), (void (*) (void *)) (freefun))
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311 |
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312 | # define obstack_specify_allocation_with_arg(h, size, alignment, chunkfun, freefun, arg) \
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313 | _obstack_begin_1 ((h), (size), (alignment), \
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314 | (void *(*) (void *, long)) (chunkfun), \
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315 | (void (*) (void *, void *)) (freefun), (arg))
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316 |
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317 | # define obstack_chunkfun(h, newchunkfun) \
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318 | ((h) -> chunkfun = (struct _obstack_chunk *(*)(void *, long)) (newchunkfun))
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319 |
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320 | # define obstack_freefun(h, newfreefun) \
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321 | ((h) -> freefun = (void (*)(void *, struct _obstack_chunk *)) (newfreefun))
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322 |
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323 | #else
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324 |
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325 | # define obstack_init(h) \
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326 | _obstack_begin ((h), 0, 0, \
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327 | (void *(*) ()) obstack_chunk_alloc, (void (*) ()) obstack_chunk_free)
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328 |
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329 | # define obstack_begin(h, size) \
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330 | _obstack_begin ((h), (size), 0, \
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331 | (void *(*) ()) obstack_chunk_alloc, (void (*) ()) obstack_chunk_free)
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332 |
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333 | # define obstack_specify_allocation(h, size, alignment, chunkfun, freefun) \
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334 | _obstack_begin ((h), (size), (alignment), \
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335 | (void *(*) ()) (chunkfun), (void (*) ()) (freefun))
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336 |
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337 | # define obstack_specify_allocation_with_arg(h, size, alignment, chunkfun, freefun, arg) \
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338 | _obstack_begin_1 ((h), (size), (alignment), \
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339 | (void *(*) ()) (chunkfun), (void (*) ()) (freefun), (arg))
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340 |
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341 | # define obstack_chunkfun(h, newchunkfun) \
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342 | ((h) -> chunkfun = (struct _obstack_chunk *(*)()) (newchunkfun))
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343 |
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344 | # define obstack_freefun(h, newfreefun) \
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345 | ((h) -> freefun = (void (*)()) (newfreefun))
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346 |
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347 | #endif
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348 |
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349 | #define obstack_1grow_fast(h,achar) (*((h)->next_free)++ = achar)
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350 |
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351 | #define obstack_blank_fast(h,n) ((h)->next_free += (n))
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352 |
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353 | #define obstack_memory_used(h) _obstack_memory_used (h)
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354 | |
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355 |
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356 | #if defined __GNUC__ && defined __STDC__ && __STDC__
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357 | /* NextStep 2.0 cc is really gcc 1.93 but it defines __GNUC__ = 2 and
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358 | does not implement __extension__. But that compiler doesn't define
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359 | __GNUC_MINOR__. */
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360 | # if __GNUC__ < 2 || (__NeXT__ && !__GNUC_MINOR__)
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361 | # define __extension__
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362 | # endif
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363 |
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364 | /* For GNU C, if not -traditional,
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365 | we can define these macros to compute all args only once
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366 | without using a global variable.
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367 | Also, we can avoid using the `temp' slot, to make faster code. */
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368 |
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369 | # define obstack_object_size(OBSTACK) \
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370 | __extension__ \
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371 | ({ struct obstack *__o = (OBSTACK); \
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372 | (unsigned) (__o->next_free - __o->object_base); })
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373 |
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374 | # define obstack_room(OBSTACK) \
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375 | __extension__ \
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376 | ({ struct obstack *__o = (OBSTACK); \
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377 | (unsigned) (__o->chunk_limit - __o->next_free); })
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378 |
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379 | # define obstack_make_room(OBSTACK,length) \
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380 | __extension__ \
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381 | ({ struct obstack *__o = (OBSTACK); \
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382 | int __len = (length); \
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383 | if (__o->chunk_limit - __o->next_free < __len) \
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384 | _obstack_newchunk (__o, __len); \
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385 | (void) 0; })
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386 |
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387 | # define obstack_empty_p(OBSTACK) \
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388 | __extension__ \
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389 | ({ struct obstack *__o = (OBSTACK); \
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390 | (__o->chunk->prev == 0 && __o->next_free - __o->chunk->contents == 0); })
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391 |
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392 | # define obstack_grow(OBSTACK,where,length) \
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393 | __extension__ \
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394 | ({ struct obstack *__o = (OBSTACK); \
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395 | int __len = (length); \
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396 | if (__o->next_free + __len > __o->chunk_limit) \
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397 | _obstack_newchunk (__o, __len); \
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398 | _obstack_memcpy (__o->next_free, (where), __len); \
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399 | __o->next_free += __len; \
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400 | (void) 0; })
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401 |
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402 | # define obstack_grow0(OBSTACK,where,length) \
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403 | __extension__ \
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404 | ({ struct obstack *__o = (OBSTACK); \
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405 | int __len = (length); \
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406 | if (__o->next_free + __len + 1 > __o->chunk_limit) \
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407 | _obstack_newchunk (__o, __len + 1); \
|
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408 | _obstack_memcpy (__o->next_free, (where), __len); \
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409 | __o->next_free += __len; \
|
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410 | *(__o->next_free)++ = 0; \
|
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411 | (void) 0; })
|
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412 |
|
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413 | # define obstack_1grow(OBSTACK,datum) \
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414 | __extension__ \
|
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415 | ({ struct obstack *__o = (OBSTACK); \
|
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416 | if (__o->next_free + 1 > __o->chunk_limit) \
|
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417 | _obstack_newchunk (__o, 1); \
|
---|
418 | *(__o->next_free)++ = (datum); \
|
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419 | (void) 0; })
|
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420 |
|
---|
421 | /* These assume that the obstack alignment is good enough for pointers or ints,
|
---|
422 | and that the data added so far to the current object
|
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423 | shares that much alignment. */
|
---|
424 |
|
---|
425 | # define obstack_ptr_grow(OBSTACK,datum) \
|
---|
426 | __extension__ \
|
---|
427 | ({ struct obstack *__o = (OBSTACK); \
|
---|
428 | if (__o->next_free + sizeof (void *) > __o->chunk_limit) \
|
---|
429 | _obstack_newchunk (__o, sizeof (void *)); \
|
---|
430 | *((void **)__o->next_free)++ = ((void *)datum); \
|
---|
431 | (void) 0; })
|
---|
432 |
|
---|
433 | # define obstack_int_grow(OBSTACK,datum) \
|
---|
434 | __extension__ \
|
---|
435 | ({ struct obstack *__o = (OBSTACK); \
|
---|
436 | if (__o->next_free + sizeof (int) > __o->chunk_limit) \
|
---|
437 | _obstack_newchunk (__o, sizeof (int)); \
|
---|
438 | *((int *)__o->next_free)++ = ((int)datum); \
|
---|
439 | (void) 0; })
|
---|
440 |
|
---|
441 | # define obstack_ptr_grow_fast(h,aptr) (*((void **) (h)->next_free)++ = (void *)aptr)
|
---|
442 | # define obstack_int_grow_fast(h,aint) (*((int *) (h)->next_free)++ = (int) aint)
|
---|
443 |
|
---|
444 | # define obstack_blank(OBSTACK,length) \
|
---|
445 | __extension__ \
|
---|
446 | ({ struct obstack *__o = (OBSTACK); \
|
---|
447 | int __len = (length); \
|
---|
448 | if (__o->chunk_limit - __o->next_free < __len) \
|
---|
449 | _obstack_newchunk (__o, __len); \
|
---|
450 | __o->next_free += __len; \
|
---|
451 | (void) 0; })
|
---|
452 |
|
---|
453 | # define obstack_alloc(OBSTACK,length) \
|
---|
454 | __extension__ \
|
---|
455 | ({ struct obstack *__h = (OBSTACK); \
|
---|
456 | obstack_blank (__h, (length)); \
|
---|
457 | obstack_finish (__h); })
|
---|
458 |
|
---|
459 | # define obstack_copy(OBSTACK,where,length) \
|
---|
460 | __extension__ \
|
---|
461 | ({ struct obstack *__h = (OBSTACK); \
|
---|
462 | obstack_grow (__h, (where), (length)); \
|
---|
463 | obstack_finish (__h); })
|
---|
464 |
|
---|
465 | # define obstack_copy0(OBSTACK,where,length) \
|
---|
466 | __extension__ \
|
---|
467 | ({ struct obstack *__h = (OBSTACK); \
|
---|
468 | obstack_grow0 (__h, (where), (length)); \
|
---|
469 | obstack_finish (__h); })
|
---|
470 |
|
---|
471 | /* The local variable is named __o1 to avoid a name conflict
|
---|
472 | when obstack_blank is called. */
|
---|
473 | # define obstack_finish(OBSTACK) \
|
---|
474 | __extension__ \
|
---|
475 | ({ struct obstack *__o1 = (OBSTACK); \
|
---|
476 | void *value; \
|
---|
477 | value = (void *) __o1->object_base; \
|
---|
478 | if (__o1->next_free == value) \
|
---|
479 | __o1->maybe_empty_object = 1; \
|
---|
480 | __o1->next_free \
|
---|
481 | = __INT_TO_PTR ((__PTR_TO_INT (__o1->next_free)+__o1->alignment_mask)\
|
---|
482 | & ~ (__o1->alignment_mask)); \
|
---|
483 | if (__o1->next_free - (char *)__o1->chunk \
|
---|
484 | > __o1->chunk_limit - (char *)__o1->chunk) \
|
---|
485 | __o1->next_free = __o1->chunk_limit; \
|
---|
486 | __o1->object_base = __o1->next_free; \
|
---|
487 | value; })
|
---|
488 |
|
---|
489 | # define obstack_free(OBSTACK, OBJ) \
|
---|
490 | __extension__ \
|
---|
491 | ({ struct obstack *__o = (OBSTACK); \
|
---|
492 | void *__obj = (OBJ); \
|
---|
493 | if (__obj > (void *)__o->chunk && __obj < (void *)__o->chunk_limit) \
|
---|
494 | __o->next_free = __o->object_base = __obj; \
|
---|
495 | else (obstack_free) (__o, __obj); })
|
---|
496 | |
---|
497 |
|
---|
498 | #else /* not __GNUC__ or not __STDC__ */
|
---|
499 |
|
---|
500 | # define obstack_object_size(h) \
|
---|
501 | (unsigned) ((h)->next_free - (h)->object_base)
|
---|
502 |
|
---|
503 | # define obstack_room(h) \
|
---|
504 | (unsigned) ((h)->chunk_limit - (h)->next_free)
|
---|
505 |
|
---|
506 | # define obstack_empty_p(h) \
|
---|
507 | ((h)->chunk->prev == 0 && (h)->next_free - (h)->chunk->contents == 0)
|
---|
508 |
|
---|
509 | /* Note that the call to _obstack_newchunk is enclosed in (..., 0)
|
---|
510 | so that we can avoid having void expressions
|
---|
511 | in the arms of the conditional expression.
|
---|
512 | Casting the third operand to void was tried before,
|
---|
513 | but some compilers won't accept it. */
|
---|
514 |
|
---|
515 | # define obstack_make_room(h,length) \
|
---|
516 | ( (h)->temp = (length), \
|
---|
517 | (((h)->next_free + (h)->temp > (h)->chunk_limit) \
|
---|
518 | ? (_obstack_newchunk ((h), (h)->temp), 0) : 0))
|
---|
519 |
|
---|
520 | # define obstack_grow(h,where,length) \
|
---|
521 | ( (h)->temp = (length), \
|
---|
522 | (((h)->next_free + (h)->temp > (h)->chunk_limit) \
|
---|
523 | ? (_obstack_newchunk ((h), (h)->temp), 0) : 0), \
|
---|
524 | _obstack_memcpy ((h)->next_free, (where), (h)->temp), \
|
---|
525 | (h)->next_free += (h)->temp)
|
---|
526 |
|
---|
527 | # define obstack_grow0(h,where,length) \
|
---|
528 | ( (h)->temp = (length), \
|
---|
529 | (((h)->next_free + (h)->temp + 1 > (h)->chunk_limit) \
|
---|
530 | ? (_obstack_newchunk ((h), (h)->temp + 1), 0) : 0), \
|
---|
531 | _obstack_memcpy ((h)->next_free, (where), (h)->temp), \
|
---|
532 | (h)->next_free += (h)->temp, \
|
---|
533 | *((h)->next_free)++ = 0)
|
---|
534 |
|
---|
535 | # define obstack_1grow(h,datum) \
|
---|
536 | ( (((h)->next_free + 1 > (h)->chunk_limit) \
|
---|
537 | ? (_obstack_newchunk ((h), 1), 0) : 0), \
|
---|
538 | (*((h)->next_free)++ = (datum)))
|
---|
539 |
|
---|
540 | # define obstack_ptr_grow(h,datum) \
|
---|
541 | ( (((h)->next_free + sizeof (char *) > (h)->chunk_limit) \
|
---|
542 | ? (_obstack_newchunk ((h), sizeof (char *)), 0) : 0), \
|
---|
543 | (*((char **) (((h)->next_free+=sizeof(char *))-sizeof(char *))) = ((char *) datum)))
|
---|
544 |
|
---|
545 | # define obstack_int_grow(h,datum) \
|
---|
546 | ( (((h)->next_free + sizeof (int) > (h)->chunk_limit) \
|
---|
547 | ? (_obstack_newchunk ((h), sizeof (int)), 0) : 0), \
|
---|
548 | (*((int *) (((h)->next_free+=sizeof(int))-sizeof(int))) = ((int) datum)))
|
---|
549 |
|
---|
550 | # define obstack_ptr_grow_fast(h,aptr) (*((char **) (h)->next_free)++ = (char *) aptr)
|
---|
551 | # define obstack_int_grow_fast(h,aint) (*((int *) (h)->next_free)++ = (int) aint)
|
---|
552 |
|
---|
553 | # define obstack_blank(h,length) \
|
---|
554 | ( (h)->temp = (length), \
|
---|
555 | (((h)->chunk_limit - (h)->next_free < (h)->temp) \
|
---|
556 | ? (_obstack_newchunk ((h), (h)->temp), 0) : 0), \
|
---|
557 | ((h)->next_free += (h)->temp))
|
---|
558 |
|
---|
559 | # define obstack_alloc(h,length) \
|
---|
560 | (obstack_blank ((h), (length)), obstack_finish ((h)))
|
---|
561 |
|
---|
562 | # define obstack_copy(h,where,length) \
|
---|
563 | (obstack_grow ((h), (where), (length)), obstack_finish ((h)))
|
---|
564 |
|
---|
565 | # define obstack_copy0(h,where,length) \
|
---|
566 | (obstack_grow0 ((h), (where), (length)), obstack_finish ((h)))
|
---|
567 |
|
---|
568 | # define obstack_finish(h) \
|
---|
569 | ( ((h)->next_free == (h)->object_base \
|
---|
570 | ? (((h)->maybe_empty_object = 1), 0) \
|
---|
571 | : 0), \
|
---|
572 | (h)->temp = __PTR_TO_INT ((h)->object_base), \
|
---|
573 | (h)->next_free \
|
---|
574 | = __INT_TO_PTR ((__PTR_TO_INT ((h)->next_free)+(h)->alignment_mask) \
|
---|
575 | & ~ ((h)->alignment_mask)), \
|
---|
576 | (((h)->next_free - (char *) (h)->chunk \
|
---|
577 | > (h)->chunk_limit - (char *) (h)->chunk) \
|
---|
578 | ? ((h)->next_free = (h)->chunk_limit) : 0), \
|
---|
579 | (h)->object_base = (h)->next_free, \
|
---|
580 | __INT_TO_PTR ((h)->temp))
|
---|
581 |
|
---|
582 | # if defined __STDC__ && __STDC__
|
---|
583 | # define obstack_free(h,obj) \
|
---|
584 | ( (h)->temp = (char *) (obj) - (char *) (h)->chunk, \
|
---|
585 | (((h)->temp > 0 && (h)->temp < (h)->chunk_limit - (char *) (h)->chunk)\
|
---|
586 | ? (int) ((h)->next_free = (h)->object_base \
|
---|
587 | = (h)->temp + (char *) (h)->chunk) \
|
---|
588 | : (((obstack_free) ((h), (h)->temp + (char *) (h)->chunk), 0), 0)))
|
---|
589 | # else
|
---|
590 | # define obstack_free(h,obj) \
|
---|
591 | ( (h)->temp = (char *) (obj) - (char *) (h)->chunk, \
|
---|
592 | (((h)->temp > 0 && (h)->temp < (h)->chunk_limit - (char *) (h)->chunk)\
|
---|
593 | ? (int) ((h)->next_free = (h)->object_base \
|
---|
594 | = (h)->temp + (char *) (h)->chunk) \
|
---|
595 | : (_obstack_free ((h), (h)->temp + (char *) (h)->chunk), 0)))
|
---|
596 | # endif
|
---|
597 |
|
---|
598 | #endif /* not __GNUC__ or not __STDC__ */
|
---|
599 |
|
---|
600 | #ifdef __cplusplus
|
---|
601 | } /* C++ */
|
---|
602 | #endif
|
---|
603 |
|
---|
604 | #endif /* obstack.h */
|
---|