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view src/blocktype.c @ 5294:bbff29a01820
Add compiler macros and compilation sanity-checks for functions with keywords.
2010-10-25 Aidan Kehoe <kehoea@parhasard.net>
Add compiler macros and compilation sanity-checking for various
functions that take keywords.
* byte-optimize.el (side-effect-free-fns): #'symbol-value is
side-effect free and not error free.
* bytecomp.el (byte-compile-normal-call): Check keyword argument
lists for sanity; store information about the positions where
keyword arguments start using the new byte-compile-keyword-start
property.
* cl-macs.el (cl-const-expr-val): Take a new optional argument,
cl-not-constant, defaulting to nil, in this function; return it if
the expression is not constant.
(cl-non-fixnum-number-p): Make this into a separate function, we
want to pass it to #'every.
(eql): Use it.
(define-star-compiler-macros): Use the same code to generate the
member*, assoc* and rassoc* compiler macros; special-case some
code in #'add-to-list in subr.el.
(remove, remq): Add compiler macros for these two functions, in
preparation for #'remove being in C.
(define-foo-if-compiler-macros): Transform (remove-if-not ...) calls to
(remove ... :if-not) at compile time, which will be a real win
once the latter is in C.
(define-substitute-if-compiler-macros)
(define-subst-if-compiler-macros): Similarly for these functions.
(delete-duplicates): Change this compiler macro to use
#'plists-equal; if we don't have information about the type of
SEQUENCE at compile time, don't bother attempting to inline the
call, the function will be in C soon enough.
(equalp): Remove an old commented-out compiler macro for this, if
we want to see it it's in version control.
(subst-char-in-string): Transform this to a call to nsubstitute or
nsubstitute, if that is appropriate.
* cl.el (ldiff): Don't call setf here, this makes for a load-time
dependency problem in cl-macs.el
| author | Aidan Kehoe <kehoea@parhasard.net> |
|---|---|
| date | Mon, 25 Oct 2010 13:04:04 +0100 |
| parents | fdefd0186b75 |
| children | 308d34e9f07d |
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/* Fixed-size block allocator. Copyright (C) 1994 Free Software Foundation, Inc. This file is part of XEmacs. XEmacs is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2, or (at your option) any later version. XEmacs is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with XEmacs; see the file COPYING. If not, write to the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */ /* Synched up with: Not in FSF. */ /* Authorship: Ben Wing: December 1994, for 19.12. */ /* ------------------------------------------------------------------------------ A "block-type object" is used to efficiently allocate and free blocks of a particular size. Freed blocks are remembered in a free list and are reused as necessary to allocate new blocks, so as to avoid as much as possible making calls to malloc() and free(). This is a container object. Declare a block-type object of a specific type as follows: struct mytype_blocktype { Blocktype_declare (mytype); }; Use the following functions/macros: structype *Blocktype_new(structype) [MACRO] Create a new block-type object of the specified type. The argument to this call should be the type of object to be created, e.g. foobar_blocktype. type *Blocktype_alloc(b) [MACRO] Allocate a block of the proper type for the specified block-type object and return a pointer to it. Blocktype_free(b, block) Free a block of the type corresponding to the specified block-type object. Blocktype_delete(b) Destroy a block-type object and the memory allocated to it. */ /* This file has been Mule-ized. */ #include <config.h> #include "lisp.h" #include "blocktype.h" typedef struct blocktype { Blocktype_declare (void); } Blocktype; struct block_internal { void *next; }; void * Blocktype_newf (Bytecount elsize) { Blocktype *b = xnew (Blocktype); b->elsize = max (elsize, (Bytecount) sizeof (void *)); b->free = 0; return (void *) b; } void Blocktype_allocf (void *bbb) { Blocktype *b = (Blocktype *) bbb; if (b->free) { b->tempel = b->free; b->free = ((struct block_internal *) (b->free))->next; } else b->tempel = (void *) xmalloc (b->elsize); } void Blocktype_free (void *bbb, void *el) { Blocktype *b = (Blocktype *) bbb; ((struct block_internal *) el)->next = b->free; b->free = el; }
