1 /* Coding system handler (conversion, detection, etc).
2 Copyright (C) 2001, 2002, 2003, 2004, 2005,
3 2006, 2007, 2008, 2009, 2010 Free Software Foundation, Inc.
4 Copyright (C) 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004,
5 2005, 2006, 2007, 2008, 2009, 2010
6 National Institute of Advanced Industrial Science and Technology (AIST)
7 Registration Number H14PRO021
9 National Institute of Advanced Industrial Science and Technology (AIST)
10 Registration Number H13PRO009
12 This file is part of GNU Emacs.
14 GNU Emacs is free software: you can redistribute it and/or modify
15 it under the terms of the GNU General Public License as published by
16 the Free Software Foundation, either version 3 of the License, or
17 (at your option) any later version.
19 GNU Emacs is distributed in the hope that it will be useful,
20 but WITHOUT ANY WARRANTY; without even the implied warranty of
21 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 GNU General Public License for more details.
24 You should have received a copy of the GNU General Public License
25 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
27 /*** TABLE OF CONTENTS ***
31 2. Emacs' internal format (emacs-utf-8) handlers
34 5. Charset-base coding systems handlers
35 6. emacs-mule (old Emacs' internal format) handlers
37 8. Shift-JIS and BIG5 handlers
39 10. C library functions
40 11. Emacs Lisp library functions
45 /*** 0. General comments ***
50 A coding system is an object for an encoding mechanism that contains
51 information about how to convert byte sequences to character
52 sequences and vice versa. When we say "decode", it means converting
53 a byte sequence of a specific coding system into a character
54 sequence that is represented by Emacs' internal coding system
55 `emacs-utf-8', and when we say "encode", it means converting a
56 character sequence of emacs-utf-8 to a byte sequence of a specific
59 In Emacs Lisp, a coding system is represented by a Lisp symbol. In
60 C level, a coding system is represented by a vector of attributes
61 stored in the hash table Vcharset_hash_table. The conversion from
62 coding system symbol to attributes vector is done by looking up
63 Vcharset_hash_table by the symbol.
65 Coding systems are classified into the following types depending on
66 the encoding mechanism. Here's a brief description of the types.
72 o Charset-base coding system
74 A coding system defined by one or more (coded) character sets.
75 Decoding and encoding are done by a code converter defined for each
78 o Old Emacs internal format (emacs-mule)
80 The coding system adopted by old versions of Emacs (20 and 21).
82 o ISO2022-base coding system
84 The most famous coding system for multiple character sets. X's
85 Compound Text, various EUCs (Extended Unix Code), and coding systems
86 used in the Internet communication such as ISO-2022-JP are all
89 o SJIS (or Shift-JIS or MS-Kanji-Code)
91 A coding system to encode character sets: ASCII, JISX0201, and
92 JISX0208. Widely used for PC's in Japan. Details are described in
97 A coding system to encode character sets: ASCII and Big5. Widely
98 used for Chinese (mainly in Taiwan and Hong Kong). Details are
99 described in section 8. In this file, when we write "big5" (all
100 lowercase), we mean the coding system, and when we write "Big5"
101 (capitalized), we mean the character set.
105 If a user wants to decode/encode text encoded in a coding system
106 not listed above, he can supply a decoder and an encoder for it in
107 CCL (Code Conversion Language) programs. Emacs executes the CCL
108 program while decoding/encoding.
112 A coding system for text containing raw eight-bit data. Emacs
113 treats each byte of source text as a character (except for
114 end-of-line conversion).
118 Like raw text, but don't do end-of-line conversion.
123 How text end-of-line is encoded depends on operating system. For
124 instance, Unix's format is just one byte of LF (line-feed) code,
125 whereas DOS's format is two-byte sequence of `carriage-return' and
126 `line-feed' codes. MacOS's format is usually one byte of
129 Since text character encoding and end-of-line encoding are
130 independent, any coding system described above can take any format
131 of end-of-line (except for no-conversion).
135 Before using a coding system for code conversion (i.e. decoding and
136 encoding), we setup a structure of type `struct coding_system'.
137 This structure keeps various information about a specific code
138 conversion (e.g. the location of source and destination data).
145 /*** GENERAL NOTES on `detect_coding_XXX ()' functions ***
147 These functions check if a byte sequence specified as a source in
148 CODING conforms to the format of XXX, and update the members of
151 Return 1 if the byte sequence conforms to XXX, otherwise return 0.
153 Below is the template of these functions. */
157 detect_coding_XXX (coding
, detect_info
)
158 struct coding_system
*coding
;
159 struct coding_detection_info
*detect_info
;
161 const unsigned char *src
= coding
->source
;
162 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
163 int multibytep
= coding
->src_multibyte
;
164 int consumed_chars
= 0;
170 /* Get one byte from the source. If the souce is exausted, jump
171 to no_more_source:. */
174 if (! __C_conforms_to_XXX___ (c
))
176 if (! __C_strongly_suggests_XXX__ (c
))
177 found
= CATEGORY_MASK_XXX
;
179 /* The byte sequence is invalid for XXX. */
180 detect_info
->rejected
|= CATEGORY_MASK_XXX
;
184 /* The source exausted successfully. */
185 detect_info
->found
|= found
;
190 /*** GENERAL NOTES on `decode_coding_XXX ()' functions ***
192 These functions decode a byte sequence specified as a source by
193 CODING. The resulting multibyte text goes to a place pointed to by
194 CODING->charbuf, the length of which should not exceed
195 CODING->charbuf_size;
197 These functions set the information of original and decoded texts in
198 CODING->consumed, CODING->consumed_char, and CODING->charbuf_used.
199 They also set CODING->result to one of CODING_RESULT_XXX indicating
200 how the decoding is finished.
202 Below is the template of these functions. */
206 decode_coding_XXXX (coding
)
207 struct coding_system
*coding
;
209 const unsigned char *src
= coding
->source
+ coding
->consumed
;
210 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
211 /* SRC_BASE remembers the start position in source in each loop.
212 The loop will be exited when there's not enough source code, or
213 when there's no room in CHARBUF for a decoded character. */
214 const unsigned char *src_base
;
215 /* A buffer to produce decoded characters. */
216 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
217 int *charbuf_end
= coding
->charbuf
+ coding
->charbuf_size
;
218 int multibytep
= coding
->src_multibyte
;
223 if (charbuf
< charbuf_end
)
224 /* No more room to produce a decoded character. */
231 if (src_base
< src_end
232 && coding
->mode
& CODING_MODE_LAST_BLOCK
)
233 /* If the source ends by partial bytes to construct a character,
234 treat them as eight-bit raw data. */
235 while (src_base
< src_end
&& charbuf
< charbuf_end
)
236 *charbuf
++ = *src_base
++;
237 /* Remember how many bytes and characters we consumed. If the
238 source is multibyte, the bytes and chars are not identical. */
239 coding
->consumed
= coding
->consumed_char
= src_base
- coding
->source
;
240 /* Remember how many characters we produced. */
241 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
245 /*** GENERAL NOTES on `encode_coding_XXX ()' functions ***
247 These functions encode SRC_BYTES length text at SOURCE of Emacs'
248 internal multibyte format by CODING. The resulting byte sequence
249 goes to a place pointed to by DESTINATION, the length of which
250 should not exceed DST_BYTES.
252 These functions set the information of original and encoded texts in
253 the members produced, produced_char, consumed, and consumed_char of
254 the structure *CODING. They also set the member result to one of
255 CODING_RESULT_XXX indicating how the encoding finished.
257 DST_BYTES zero means that source area and destination area are
258 overlapped, which means that we can produce a encoded text until it
259 reaches at the head of not-yet-encoded source text.
261 Below is a template of these functions. */
264 encode_coding_XXX (coding
)
265 struct coding_system
*coding
;
267 int multibytep
= coding
->dst_multibyte
;
268 int *charbuf
= coding
->charbuf
;
269 int *charbuf_end
= charbuf
->charbuf
+ coding
->charbuf_used
;
270 unsigned char *dst
= coding
->destination
+ coding
->produced
;
271 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
272 unsigned char *adjusted_dst_end
= dst_end
- _MAX_BYTES_PRODUCED_IN_LOOP_
;
273 int produced_chars
= 0;
275 for (; charbuf
< charbuf_end
&& dst
< adjusted_dst_end
; charbuf
++)
278 /* Encode C into DST, and increment DST. */
280 label_no_more_destination
:
281 /* How many chars and bytes we produced. */
282 coding
->produced_char
+= produced_chars
;
283 coding
->produced
= dst
- coding
->destination
;
288 /*** 1. Preamble ***/
296 #include "character.h"
299 #include "composite.h"
303 #include "termhooks.h"
305 Lisp_Object Vcoding_system_hash_table
;
307 Lisp_Object Qcoding_system
, Qcoding_aliases
, Qeol_type
;
308 Lisp_Object Qunix
, Qdos
;
309 extern Lisp_Object Qmac
; /* frame.c */
310 Lisp_Object Qbuffer_file_coding_system
;
311 Lisp_Object Qpost_read_conversion
, Qpre_write_conversion
;
312 Lisp_Object Qdefault_char
;
313 Lisp_Object Qno_conversion
, Qundecided
;
314 Lisp_Object Qcharset
, Qiso_2022
, Qutf_8
, Qutf_16
, Qshift_jis
, Qbig5
;
315 Lisp_Object Qbig
, Qlittle
;
316 Lisp_Object Qcoding_system_history
;
317 Lisp_Object Qvalid_codes
;
318 Lisp_Object QCcategory
, QCmnemonic
, QCdefault_char
;
319 Lisp_Object QCdecode_translation_table
, QCencode_translation_table
;
320 Lisp_Object QCpost_read_conversion
, QCpre_write_conversion
;
321 Lisp_Object QCascii_compatible_p
;
323 extern Lisp_Object Qinsert_file_contents
, Qwrite_region
;
324 Lisp_Object Qcall_process
, Qcall_process_region
;
325 Lisp_Object Qstart_process
, Qopen_network_stream
;
326 Lisp_Object Qtarget_idx
;
328 Lisp_Object Qinsufficient_source
, Qinconsistent_eol
, Qinvalid_source
;
329 Lisp_Object Qinterrupted
, Qinsufficient_memory
;
331 extern Lisp_Object Qcompletion_ignore_case
;
333 /* If a symbol has this property, evaluate the value to define the
334 symbol as a coding system. */
335 static Lisp_Object Qcoding_system_define_form
;
337 int coding_system_require_warning
;
339 Lisp_Object Vselect_safe_coding_system_function
;
341 /* Mnemonic string for each format of end-of-line. */
342 Lisp_Object eol_mnemonic_unix
, eol_mnemonic_dos
, eol_mnemonic_mac
;
343 /* Mnemonic string to indicate format of end-of-line is not yet
345 Lisp_Object eol_mnemonic_undecided
;
347 /* Format of end-of-line decided by system. This is Qunix on
348 Unix and Mac, Qdos on DOS/Windows.
349 This has an effect only for external encoding (i.e. for output to
350 file and process), not for in-buffer or Lisp string encoding. */
351 static Lisp_Object system_eol_type
;
355 Lisp_Object Vcoding_system_list
, Vcoding_system_alist
;
357 Lisp_Object Qcoding_system_p
, Qcoding_system_error
;
359 /* Coding system emacs-mule and raw-text are for converting only
360 end-of-line format. */
361 Lisp_Object Qemacs_mule
, Qraw_text
;
362 Lisp_Object Qutf_8_emacs
;
364 /* Coding-systems are handed between Emacs Lisp programs and C internal
365 routines by the following three variables. */
366 /* Coding-system for reading files and receiving data from process. */
367 Lisp_Object Vcoding_system_for_read
;
368 /* Coding-system for writing files and sending data to process. */
369 Lisp_Object Vcoding_system_for_write
;
370 /* Coding-system actually used in the latest I/O. */
371 Lisp_Object Vlast_coding_system_used
;
372 /* Set to non-nil when an error is detected while code conversion. */
373 Lisp_Object Vlast_code_conversion_error
;
374 /* A vector of length 256 which contains information about special
375 Latin codes (especially for dealing with Microsoft codes). */
376 Lisp_Object Vlatin_extra_code_table
;
378 /* Flag to inhibit code conversion of end-of-line format. */
379 int inhibit_eol_conversion
;
381 /* Flag to inhibit ISO2022 escape sequence detection. */
382 int inhibit_iso_escape_detection
;
384 /* Flag to inhibit detection of binary files through null bytes. */
385 int inhibit_null_byte_detection
;
387 /* Flag to make buffer-file-coding-system inherit from process-coding. */
388 int inherit_process_coding_system
;
390 /* Coding system to be used to encode text for terminal display when
391 terminal coding system is nil. */
392 struct coding_system safe_terminal_coding
;
394 Lisp_Object Vfile_coding_system_alist
;
395 Lisp_Object Vprocess_coding_system_alist
;
396 Lisp_Object Vnetwork_coding_system_alist
;
398 Lisp_Object Vlocale_coding_system
;
402 /* Flag to tell if we look up translation table on character code
404 Lisp_Object Venable_character_translation
;
405 /* Standard translation table to look up on decoding (reading). */
406 Lisp_Object Vstandard_translation_table_for_decode
;
407 /* Standard translation table to look up on encoding (writing). */
408 Lisp_Object Vstandard_translation_table_for_encode
;
410 Lisp_Object Qtranslation_table
;
411 Lisp_Object Qtranslation_table_id
;
412 Lisp_Object Qtranslation_table_for_decode
;
413 Lisp_Object Qtranslation_table_for_encode
;
415 /* Alist of charsets vs revision number. */
416 static Lisp_Object Vcharset_revision_table
;
418 /* Default coding systems used for process I/O. */
419 Lisp_Object Vdefault_process_coding_system
;
421 /* Char table for translating Quail and self-inserting input. */
422 Lisp_Object Vtranslation_table_for_input
;
424 /* Two special coding systems. */
425 Lisp_Object Vsjis_coding_system
;
426 Lisp_Object Vbig5_coding_system
;
428 /* ISO2022 section */
430 #define CODING_ISO_INITIAL(coding, reg) \
431 (XINT (AREF (AREF (CODING_ID_ATTRS ((coding)->id), \
432 coding_attr_iso_initial), \
436 #define CODING_ISO_REQUEST(coding, charset_id) \
437 (((charset_id) <= (coding)->max_charset_id \
438 ? ((coding)->safe_charsets[charset_id] != 255 \
439 ? (coding)->safe_charsets[charset_id] \
444 #define CODING_ISO_FLAGS(coding) \
445 ((coding)->spec.iso_2022.flags)
446 #define CODING_ISO_DESIGNATION(coding, reg) \
447 ((coding)->spec.iso_2022.current_designation[reg])
448 #define CODING_ISO_INVOCATION(coding, plane) \
449 ((coding)->spec.iso_2022.current_invocation[plane])
450 #define CODING_ISO_SINGLE_SHIFTING(coding) \
451 ((coding)->spec.iso_2022.single_shifting)
452 #define CODING_ISO_BOL(coding) \
453 ((coding)->spec.iso_2022.bol)
454 #define CODING_ISO_INVOKED_CHARSET(coding, plane) \
455 CODING_ISO_DESIGNATION ((coding), CODING_ISO_INVOCATION ((coding), (plane)))
456 #define CODING_ISO_CMP_STATUS(coding) \
457 (&(coding)->spec.iso_2022.cmp_status)
458 #define CODING_ISO_EXTSEGMENT_LEN(coding) \
459 ((coding)->spec.iso_2022.ctext_extended_segment_len)
460 #define CODING_ISO_EMBEDDED_UTF_8(coding) \
461 ((coding)->spec.iso_2022.embedded_utf_8)
463 /* Control characters of ISO2022. */
464 /* code */ /* function */
465 #define ISO_CODE_LF 0x0A /* line-feed */
466 #define ISO_CODE_CR 0x0D /* carriage-return */
467 #define ISO_CODE_SO 0x0E /* shift-out */
468 #define ISO_CODE_SI 0x0F /* shift-in */
469 #define ISO_CODE_SS2_7 0x19 /* single-shift-2 for 7-bit code */
470 #define ISO_CODE_ESC 0x1B /* escape */
471 #define ISO_CODE_SS2 0x8E /* single-shift-2 */
472 #define ISO_CODE_SS3 0x8F /* single-shift-3 */
473 #define ISO_CODE_CSI 0x9B /* control-sequence-introducer */
475 /* All code (1-byte) of ISO2022 is classified into one of the
477 enum iso_code_class_type
479 ISO_control_0
, /* Control codes in the range
480 0x00..0x1F and 0x7F, except for the
481 following 5 codes. */
482 ISO_shift_out
, /* ISO_CODE_SO (0x0E) */
483 ISO_shift_in
, /* ISO_CODE_SI (0x0F) */
484 ISO_single_shift_2_7
, /* ISO_CODE_SS2_7 (0x19) */
485 ISO_escape
, /* ISO_CODE_SO (0x1B) */
486 ISO_control_1
, /* Control codes in the range
487 0x80..0x9F, except for the
488 following 3 codes. */
489 ISO_single_shift_2
, /* ISO_CODE_SS2 (0x8E) */
490 ISO_single_shift_3
, /* ISO_CODE_SS3 (0x8F) */
491 ISO_control_sequence_introducer
, /* ISO_CODE_CSI (0x9B) */
492 ISO_0x20_or_0x7F
, /* Codes of the values 0x20 or 0x7F. */
493 ISO_graphic_plane_0
, /* Graphic codes in the range 0x21..0x7E. */
494 ISO_0xA0_or_0xFF
, /* Codes of the values 0xA0 or 0xFF. */
495 ISO_graphic_plane_1
/* Graphic codes in the range 0xA1..0xFE. */
498 /** The macros CODING_ISO_FLAG_XXX defines a flag bit of the
499 `iso-flags' attribute of an iso2022 coding system. */
501 /* If set, produce long-form designation sequence (e.g. ESC $ ( A)
502 instead of the correct short-form sequence (e.g. ESC $ A). */
503 #define CODING_ISO_FLAG_LONG_FORM 0x0001
505 /* If set, reset graphic planes and registers at end-of-line to the
507 #define CODING_ISO_FLAG_RESET_AT_EOL 0x0002
509 /* If set, reset graphic planes and registers before any control
510 characters to the initial state. */
511 #define CODING_ISO_FLAG_RESET_AT_CNTL 0x0004
513 /* If set, encode by 7-bit environment. */
514 #define CODING_ISO_FLAG_SEVEN_BITS 0x0008
516 /* If set, use locking-shift function. */
517 #define CODING_ISO_FLAG_LOCKING_SHIFT 0x0010
519 /* If set, use single-shift function. Overwrite
520 CODING_ISO_FLAG_LOCKING_SHIFT. */
521 #define CODING_ISO_FLAG_SINGLE_SHIFT 0x0020
523 /* If set, use designation escape sequence. */
524 #define CODING_ISO_FLAG_DESIGNATION 0x0040
526 /* If set, produce revision number sequence. */
527 #define CODING_ISO_FLAG_REVISION 0x0080
529 /* If set, produce ISO6429's direction specifying sequence. */
530 #define CODING_ISO_FLAG_DIRECTION 0x0100
532 /* If set, assume designation states are reset at beginning of line on
534 #define CODING_ISO_FLAG_INIT_AT_BOL 0x0200
536 /* If set, designation sequence should be placed at beginning of line
538 #define CODING_ISO_FLAG_DESIGNATE_AT_BOL 0x0400
540 /* If set, do not encode unsafe charactes on output. */
541 #define CODING_ISO_FLAG_SAFE 0x0800
543 /* If set, extra latin codes (128..159) are accepted as a valid code
545 #define CODING_ISO_FLAG_LATIN_EXTRA 0x1000
547 #define CODING_ISO_FLAG_COMPOSITION 0x2000
549 #define CODING_ISO_FLAG_EUC_TW_SHIFT 0x4000
551 #define CODING_ISO_FLAG_USE_ROMAN 0x8000
553 #define CODING_ISO_FLAG_USE_OLDJIS 0x10000
555 #define CODING_ISO_FLAG_FULL_SUPPORT 0x100000
557 /* A character to be produced on output if encoding of the original
558 character is prohibited by CODING_ISO_FLAG_SAFE. */
559 #define CODING_INHIBIT_CHARACTER_SUBSTITUTION '?'
562 #define CODING_UTF_8_BOM(coding) \
563 ((coding)->spec.utf_8_bom)
566 #define CODING_UTF_16_BOM(coding) \
567 ((coding)->spec.utf_16.bom)
569 #define CODING_UTF_16_ENDIAN(coding) \
570 ((coding)->spec.utf_16.endian)
572 #define CODING_UTF_16_SURROGATE(coding) \
573 ((coding)->spec.utf_16.surrogate)
577 #define CODING_CCL_DECODER(coding) \
578 AREF (CODING_ID_ATTRS ((coding)->id), coding_attr_ccl_decoder)
579 #define CODING_CCL_ENCODER(coding) \
580 AREF (CODING_ID_ATTRS ((coding)->id), coding_attr_ccl_encoder)
581 #define CODING_CCL_VALIDS(coding) \
582 (SDATA (AREF (CODING_ID_ATTRS ((coding)->id), coding_attr_ccl_valids)))
584 /* Index for each coding category in `coding_categories' */
588 coding_category_iso_7
,
589 coding_category_iso_7_tight
,
590 coding_category_iso_8_1
,
591 coding_category_iso_8_2
,
592 coding_category_iso_7_else
,
593 coding_category_iso_8_else
,
594 coding_category_utf_8_auto
,
595 coding_category_utf_8_nosig
,
596 coding_category_utf_8_sig
,
597 coding_category_utf_16_auto
,
598 coding_category_utf_16_be
,
599 coding_category_utf_16_le
,
600 coding_category_utf_16_be_nosig
,
601 coding_category_utf_16_le_nosig
,
602 coding_category_charset
,
603 coding_category_sjis
,
604 coding_category_big5
,
606 coding_category_emacs_mule
,
607 /* All above are targets of code detection. */
608 coding_category_raw_text
,
609 coding_category_undecided
,
613 /* Definitions of flag bits used in detect_coding_XXXX. */
614 #define CATEGORY_MASK_ISO_7 (1 << coding_category_iso_7)
615 #define CATEGORY_MASK_ISO_7_TIGHT (1 << coding_category_iso_7_tight)
616 #define CATEGORY_MASK_ISO_8_1 (1 << coding_category_iso_8_1)
617 #define CATEGORY_MASK_ISO_8_2 (1 << coding_category_iso_8_2)
618 #define CATEGORY_MASK_ISO_7_ELSE (1 << coding_category_iso_7_else)
619 #define CATEGORY_MASK_ISO_8_ELSE (1 << coding_category_iso_8_else)
620 #define CATEGORY_MASK_UTF_8_AUTO (1 << coding_category_utf_8_auto)
621 #define CATEGORY_MASK_UTF_8_NOSIG (1 << coding_category_utf_8_nosig)
622 #define CATEGORY_MASK_UTF_8_SIG (1 << coding_category_utf_8_sig)
623 #define CATEGORY_MASK_UTF_16_AUTO (1 << coding_category_utf_16_auto)
624 #define CATEGORY_MASK_UTF_16_BE (1 << coding_category_utf_16_be)
625 #define CATEGORY_MASK_UTF_16_LE (1 << coding_category_utf_16_le)
626 #define CATEGORY_MASK_UTF_16_BE_NOSIG (1 << coding_category_utf_16_be_nosig)
627 #define CATEGORY_MASK_UTF_16_LE_NOSIG (1 << coding_category_utf_16_le_nosig)
628 #define CATEGORY_MASK_CHARSET (1 << coding_category_charset)
629 #define CATEGORY_MASK_SJIS (1 << coding_category_sjis)
630 #define CATEGORY_MASK_BIG5 (1 << coding_category_big5)
631 #define CATEGORY_MASK_CCL (1 << coding_category_ccl)
632 #define CATEGORY_MASK_EMACS_MULE (1 << coding_category_emacs_mule)
633 #define CATEGORY_MASK_RAW_TEXT (1 << coding_category_raw_text)
635 /* This value is returned if detect_coding_mask () find nothing other
636 than ASCII characters. */
637 #define CATEGORY_MASK_ANY \
638 (CATEGORY_MASK_ISO_7 \
639 | CATEGORY_MASK_ISO_7_TIGHT \
640 | CATEGORY_MASK_ISO_8_1 \
641 | CATEGORY_MASK_ISO_8_2 \
642 | CATEGORY_MASK_ISO_7_ELSE \
643 | CATEGORY_MASK_ISO_8_ELSE \
644 | CATEGORY_MASK_UTF_8_AUTO \
645 | CATEGORY_MASK_UTF_8_NOSIG \
646 | CATEGORY_MASK_UTF_8_SIG \
647 | CATEGORY_MASK_UTF_16_AUTO \
648 | CATEGORY_MASK_UTF_16_BE \
649 | CATEGORY_MASK_UTF_16_LE \
650 | CATEGORY_MASK_UTF_16_BE_NOSIG \
651 | CATEGORY_MASK_UTF_16_LE_NOSIG \
652 | CATEGORY_MASK_CHARSET \
653 | CATEGORY_MASK_SJIS \
654 | CATEGORY_MASK_BIG5 \
655 | CATEGORY_MASK_CCL \
656 | CATEGORY_MASK_EMACS_MULE)
659 #define CATEGORY_MASK_ISO_7BIT \
660 (CATEGORY_MASK_ISO_7 | CATEGORY_MASK_ISO_7_TIGHT)
662 #define CATEGORY_MASK_ISO_8BIT \
663 (CATEGORY_MASK_ISO_8_1 | CATEGORY_MASK_ISO_8_2)
665 #define CATEGORY_MASK_ISO_ELSE \
666 (CATEGORY_MASK_ISO_7_ELSE | CATEGORY_MASK_ISO_8_ELSE)
668 #define CATEGORY_MASK_ISO_ESCAPE \
669 (CATEGORY_MASK_ISO_7 \
670 | CATEGORY_MASK_ISO_7_TIGHT \
671 | CATEGORY_MASK_ISO_7_ELSE \
672 | CATEGORY_MASK_ISO_8_ELSE)
674 #define CATEGORY_MASK_ISO \
675 ( CATEGORY_MASK_ISO_7BIT \
676 | CATEGORY_MASK_ISO_8BIT \
677 | CATEGORY_MASK_ISO_ELSE)
679 #define CATEGORY_MASK_UTF_16 \
680 (CATEGORY_MASK_UTF_16_AUTO \
681 | CATEGORY_MASK_UTF_16_BE \
682 | CATEGORY_MASK_UTF_16_LE \
683 | CATEGORY_MASK_UTF_16_BE_NOSIG \
684 | CATEGORY_MASK_UTF_16_LE_NOSIG)
686 #define CATEGORY_MASK_UTF_8 \
687 (CATEGORY_MASK_UTF_8_AUTO \
688 | CATEGORY_MASK_UTF_8_NOSIG \
689 | CATEGORY_MASK_UTF_8_SIG)
691 /* List of symbols `coding-category-xxx' ordered by priority. This
692 variable is exposed to Emacs Lisp. */
693 static Lisp_Object Vcoding_category_list
;
695 /* Table of coding categories (Lisp symbols). This variable is for
697 static Lisp_Object Vcoding_category_table
;
699 /* Table of coding-categories ordered by priority. */
700 static enum coding_category coding_priorities
[coding_category_max
];
702 /* Nth element is a coding context for the coding system bound to the
703 Nth coding category. */
704 static struct coding_system coding_categories
[coding_category_max
];
706 /*** Commonly used macros and functions ***/
709 #define min(a, b) ((a) < (b) ? (a) : (b))
712 #define max(a, b) ((a) > (b) ? (a) : (b))
715 #define CODING_GET_INFO(coding, attrs, charset_list) \
717 (attrs) = CODING_ID_ATTRS ((coding)->id); \
718 (charset_list) = CODING_ATTR_CHARSET_LIST (attrs); \
722 /* Safely get one byte from the source text pointed by SRC which ends
723 at SRC_END, and set C to that byte. If there are not enough bytes
724 in the source, it jumps to `no_more_source'. If multibytep is
725 nonzero, and a multibyte character is found at SRC, set C to the
726 negative value of the character code. The caller should declare
727 and set these variables appropriately in advance:
728 src, src_end, multibytep */
730 #define ONE_MORE_BYTE(c) \
732 if (src == src_end) \
734 if (src_base < src) \
735 record_conversion_result \
736 (coding, CODING_RESULT_INSUFFICIENT_SRC); \
737 goto no_more_source; \
740 if (multibytep && (c & 0x80)) \
742 if ((c & 0xFE) == 0xC0) \
743 c = ((c & 1) << 6) | *src++; \
747 c = - string_char (src, &src, NULL); \
748 record_conversion_result \
749 (coding, CODING_RESULT_INVALID_SRC); \
755 /* Safely get two bytes from the source text pointed by SRC which ends
756 at SRC_END, and set C1 and C2 to those bytes while skipping the
757 heading multibyte characters. If there are not enough bytes in the
758 source, it jumps to `no_more_source'. If multibytep is nonzero and
759 a multibyte character is found for C2, set C2 to the negative value
760 of the character code. The caller should declare and set these
761 variables appropriately in advance:
762 src, src_end, multibytep
763 It is intended that this macro is used in detect_coding_utf_16. */
765 #define TWO_MORE_BYTES(c1, c2) \
768 if (src == src_end) \
769 goto no_more_source; \
771 if (multibytep && (c1 & 0x80)) \
773 if ((c1 & 0xFE) == 0xC0) \
774 c1 = ((c1 & 1) << 6) | *src++; \
777 src += BYTES_BY_CHAR_HEAD (c1) - 1; \
782 if (src == src_end) \
783 goto no_more_source; \
785 if (multibytep && (c2 & 0x80)) \
787 if ((c2 & 0xFE) == 0xC0) \
788 c2 = ((c2 & 1) << 6) | *src++; \
795 #define ONE_MORE_BYTE_NO_CHECK(c) \
798 if (multibytep && (c & 0x80)) \
800 if ((c & 0xFE) == 0xC0) \
801 c = ((c & 1) << 6) | *src++; \
805 c = - string_char (src, &src, NULL); \
806 record_conversion_result \
807 (coding, CODING_RESULT_INVALID_SRC); \
814 /* Store a byte C in the place pointed by DST and increment DST to the
815 next free point, and increment PRODUCED_CHARS. The caller should
816 assure that C is 0..127, and declare and set the variable `dst'
817 appropriately in advance.
821 #define EMIT_ONE_ASCII_BYTE(c) \
828 /* Like EMIT_ONE_ASCII_BYTE byt store two bytes; C1 and C2. */
830 #define EMIT_TWO_ASCII_BYTES(c1, c2) \
832 produced_chars += 2; \
833 *dst++ = (c1), *dst++ = (c2); \
837 /* Store a byte C in the place pointed by DST and increment DST to the
838 next free point, and increment PRODUCED_CHARS. If MULTIBYTEP is
839 nonzero, store in an appropriate multibyte from. The caller should
840 declare and set the variables `dst' and `multibytep' appropriately
843 #define EMIT_ONE_BYTE(c) \
850 ch = BYTE8_TO_CHAR (ch); \
851 CHAR_STRING_ADVANCE (ch, dst); \
858 /* Like EMIT_ONE_BYTE, but emit two bytes; C1 and C2. */
860 #define EMIT_TWO_BYTES(c1, c2) \
862 produced_chars += 2; \
869 ch = BYTE8_TO_CHAR (ch); \
870 CHAR_STRING_ADVANCE (ch, dst); \
873 ch = BYTE8_TO_CHAR (ch); \
874 CHAR_STRING_ADVANCE (ch, dst); \
884 #define EMIT_THREE_BYTES(c1, c2, c3) \
886 EMIT_ONE_BYTE (c1); \
887 EMIT_TWO_BYTES (c2, c3); \
891 #define EMIT_FOUR_BYTES(c1, c2, c3, c4) \
893 EMIT_TWO_BYTES (c1, c2); \
894 EMIT_TWO_BYTES (c3, c4); \
898 /* Prototypes for static functions. */
899 static void record_conversion_result
P_ ((struct coding_system
*coding
,
900 enum coding_result_code result
));
901 static int detect_coding_utf_8
P_ ((struct coding_system
*,
902 struct coding_detection_info
*info
));
903 static void decode_coding_utf_8
P_ ((struct coding_system
*));
904 static int encode_coding_utf_8
P_ ((struct coding_system
*));
906 static int detect_coding_utf_16
P_ ((struct coding_system
*,
907 struct coding_detection_info
*info
));
908 static void decode_coding_utf_16
P_ ((struct coding_system
*));
909 static int encode_coding_utf_16
P_ ((struct coding_system
*));
911 static int detect_coding_iso_2022
P_ ((struct coding_system
*,
912 struct coding_detection_info
*info
));
913 static void decode_coding_iso_2022
P_ ((struct coding_system
*));
914 static int encode_coding_iso_2022
P_ ((struct coding_system
*));
916 static int detect_coding_emacs_mule
P_ ((struct coding_system
*,
917 struct coding_detection_info
*info
));
918 static void decode_coding_emacs_mule
P_ ((struct coding_system
*));
919 static int encode_coding_emacs_mule
P_ ((struct coding_system
*));
921 static int detect_coding_sjis
P_ ((struct coding_system
*,
922 struct coding_detection_info
*info
));
923 static void decode_coding_sjis
P_ ((struct coding_system
*));
924 static int encode_coding_sjis
P_ ((struct coding_system
*));
926 static int detect_coding_big5
P_ ((struct coding_system
*,
927 struct coding_detection_info
*info
));
928 static void decode_coding_big5
P_ ((struct coding_system
*));
929 static int encode_coding_big5
P_ ((struct coding_system
*));
931 static int detect_coding_ccl
P_ ((struct coding_system
*,
932 struct coding_detection_info
*info
));
933 static void decode_coding_ccl
P_ ((struct coding_system
*));
934 static int encode_coding_ccl
P_ ((struct coding_system
*));
936 static void decode_coding_raw_text
P_ ((struct coding_system
*));
937 static int encode_coding_raw_text
P_ ((struct coding_system
*));
939 static void coding_set_source
P_ ((struct coding_system
*));
940 static void coding_set_destination
P_ ((struct coding_system
*));
941 static void coding_alloc_by_realloc
P_ ((struct coding_system
*, EMACS_INT
));
942 static void coding_alloc_by_making_gap
P_ ((struct coding_system
*,
943 EMACS_INT
, EMACS_INT
));
944 static unsigned char *alloc_destination
P_ ((struct coding_system
*,
945 EMACS_INT
, unsigned char *));
946 static void setup_iso_safe_charsets
P_ ((Lisp_Object
));
947 static unsigned char *encode_designation_at_bol
P_ ((struct coding_system
*,
950 static int detect_eol
P_ ((const unsigned char *,
951 EMACS_INT
, enum coding_category
));
952 static Lisp_Object adjust_coding_eol_type
P_ ((struct coding_system
*, int));
953 static void decode_eol
P_ ((struct coding_system
*));
954 static Lisp_Object get_translation_table
P_ ((Lisp_Object
, int, int *));
955 static Lisp_Object get_translation
P_ ((Lisp_Object
, int *, int *));
956 static int produce_chars
P_ ((struct coding_system
*, Lisp_Object
, int));
957 static INLINE
void produce_charset
P_ ((struct coding_system
*, int *,
959 static void produce_annotation
P_ ((struct coding_system
*, EMACS_INT
));
960 static int decode_coding
P_ ((struct coding_system
*));
961 static INLINE
int *handle_composition_annotation
P_ ((EMACS_INT
, EMACS_INT
,
962 struct coding_system
*,
963 int *, EMACS_INT
*));
964 static INLINE
int *handle_charset_annotation
P_ ((EMACS_INT
, EMACS_INT
,
965 struct coding_system
*,
966 int *, EMACS_INT
*));
967 static void consume_chars
P_ ((struct coding_system
*, Lisp_Object
, int));
968 static int encode_coding
P_ ((struct coding_system
*));
969 static Lisp_Object make_conversion_work_buffer
P_ ((int));
970 static Lisp_Object code_conversion_restore
P_ ((Lisp_Object
));
971 static INLINE
int char_encodable_p
P_ ((int, Lisp_Object
));
972 static Lisp_Object make_subsidiaries
P_ ((Lisp_Object
));
975 record_conversion_result (struct coding_system
*coding
,
976 enum coding_result_code result
)
978 coding
->result
= result
;
981 case CODING_RESULT_INSUFFICIENT_SRC
:
982 Vlast_code_conversion_error
= Qinsufficient_source
;
984 case CODING_RESULT_INCONSISTENT_EOL
:
985 Vlast_code_conversion_error
= Qinconsistent_eol
;
987 case CODING_RESULT_INVALID_SRC
:
988 Vlast_code_conversion_error
= Qinvalid_source
;
990 case CODING_RESULT_INTERRUPT
:
991 Vlast_code_conversion_error
= Qinterrupted
;
993 case CODING_RESULT_INSUFFICIENT_MEM
:
994 Vlast_code_conversion_error
= Qinsufficient_memory
;
996 case CODING_RESULT_INSUFFICIENT_DST
:
997 /* Don't record this error in Vlast_code_conversion_error
998 because it happens just temporarily and is resolved when the
999 whole conversion is finished. */
1001 case CODING_RESULT_SUCCESS
:
1004 Vlast_code_conversion_error
= intern ("Unknown error");
1008 /* This wrapper macro is used to preserve validity of pointers into
1009 buffer text across calls to decode_char, which could cause
1010 relocation of buffers if it loads a charset map, because loading a
1011 charset map allocates large structures. */
1012 #define CODING_DECODE_CHAR(coding, src, src_base, src_end, charset, code, c) \
1014 charset_map_loaded = 0; \
1015 c = DECODE_CHAR (charset, code); \
1016 if (charset_map_loaded) \
1018 const unsigned char *orig = coding->source; \
1021 coding_set_source (coding); \
1022 offset = coding->source - orig; \
1024 src_base += offset; \
1025 src_end += offset; \
1030 /* If there are at least BYTES length of room at dst, allocate memory
1031 for coding->destination and update dst and dst_end. We don't have
1032 to take care of coding->source which will be relocated. It is
1033 handled by calling coding_set_source in encode_coding. */
1035 #define ASSURE_DESTINATION(bytes) \
1037 if (dst + (bytes) >= dst_end) \
1039 int more_bytes = charbuf_end - charbuf + (bytes); \
1041 dst = alloc_destination (coding, more_bytes, dst); \
1042 dst_end = coding->destination + coding->dst_bytes; \
1047 /* Store multibyte form of the character C in P, and advance P to the
1048 end of the multibyte form. This is like CHAR_STRING_ADVANCE but it
1049 never calls MAYBE_UNIFY_CHAR. */
1051 #define CHAR_STRING_ADVANCE_NO_UNIFY(c, p) \
1053 if ((c) <= MAX_1_BYTE_CHAR) \
1055 else if ((c) <= MAX_2_BYTE_CHAR) \
1056 *(p)++ = (0xC0 | ((c) >> 6)), \
1057 *(p)++ = (0x80 | ((c) & 0x3F)); \
1058 else if ((c) <= MAX_3_BYTE_CHAR) \
1059 *(p)++ = (0xE0 | ((c) >> 12)), \
1060 *(p)++ = (0x80 | (((c) >> 6) & 0x3F)), \
1061 *(p)++ = (0x80 | ((c) & 0x3F)); \
1062 else if ((c) <= MAX_4_BYTE_CHAR) \
1063 *(p)++ = (0xF0 | (c >> 18)), \
1064 *(p)++ = (0x80 | ((c >> 12) & 0x3F)), \
1065 *(p)++ = (0x80 | ((c >> 6) & 0x3F)), \
1066 *(p)++ = (0x80 | (c & 0x3F)); \
1067 else if ((c) <= MAX_5_BYTE_CHAR) \
1069 *(p)++ = (0x80 | ((c >> 18) & 0x0F)), \
1070 *(p)++ = (0x80 | ((c >> 12) & 0x3F)), \
1071 *(p)++ = (0x80 | ((c >> 6) & 0x3F)), \
1072 *(p)++ = (0x80 | (c & 0x3F)); \
1074 (p) += BYTE8_STRING ((c) - 0x3FFF80, p); \
1078 /* Return the character code of character whose multibyte form is at
1079 P, and advance P to the end of the multibyte form. This is like
1080 STRING_CHAR_ADVANCE, but it never calls MAYBE_UNIFY_CHAR. */
1082 #define STRING_CHAR_ADVANCE_NO_UNIFY(p) \
1085 : ! ((p)[0] & 0x20) \
1087 ((((p)[-2] & 0x1F) << 6) \
1088 | ((p)[-1] & 0x3F) \
1089 | ((unsigned char) ((p)[-2]) < 0xC2 ? 0x3FFF80 : 0))) \
1090 : ! ((p)[0] & 0x10) \
1092 ((((p)[-3] & 0x0F) << 12) \
1093 | (((p)[-2] & 0x3F) << 6) \
1094 | ((p)[-1] & 0x3F))) \
1095 : ! ((p)[0] & 0x08) \
1097 ((((p)[-4] & 0xF) << 18) \
1098 | (((p)[-3] & 0x3F) << 12) \
1099 | (((p)[-2] & 0x3F) << 6) \
1100 | ((p)[-1] & 0x3F))) \
1102 ((((p)[-4] & 0x3F) << 18) \
1103 | (((p)[-3] & 0x3F) << 12) \
1104 | (((p)[-2] & 0x3F) << 6) \
1105 | ((p)[-1] & 0x3F))))
1109 coding_set_source (coding
)
1110 struct coding_system
*coding
;
1112 if (BUFFERP (coding
->src_object
))
1114 struct buffer
*buf
= XBUFFER (coding
->src_object
);
1116 if (coding
->src_pos
< 0)
1117 coding
->source
= BUF_GAP_END_ADDR (buf
) + coding
->src_pos_byte
;
1119 coding
->source
= BUF_BYTE_ADDRESS (buf
, coding
->src_pos_byte
);
1121 else if (STRINGP (coding
->src_object
))
1123 coding
->source
= SDATA (coding
->src_object
) + coding
->src_pos_byte
;
1126 /* Otherwise, the source is C string and is never relocated
1127 automatically. Thus we don't have to update anything. */
1132 coding_set_destination (coding
)
1133 struct coding_system
*coding
;
1135 if (BUFFERP (coding
->dst_object
))
1137 if (coding
->src_pos
< 0)
1139 coding
->destination
= BEG_ADDR
+ coding
->dst_pos_byte
- BEG_BYTE
;
1140 coding
->dst_bytes
= (GAP_END_ADDR
1141 - (coding
->src_bytes
- coding
->consumed
)
1142 - coding
->destination
);
1146 /* We are sure that coding->dst_pos_byte is before the gap
1148 coding
->destination
= (BUF_BEG_ADDR (XBUFFER (coding
->dst_object
))
1149 + coding
->dst_pos_byte
- BEG_BYTE
);
1150 coding
->dst_bytes
= (BUF_GAP_END_ADDR (XBUFFER (coding
->dst_object
))
1151 - coding
->destination
);
1155 /* Otherwise, the destination is C string and is never relocated
1156 automatically. Thus we don't have to update anything. */
1162 coding_alloc_by_realloc (coding
, bytes
)
1163 struct coding_system
*coding
;
1166 coding
->destination
= (unsigned char *) xrealloc (coding
->destination
,
1167 coding
->dst_bytes
+ bytes
);
1168 coding
->dst_bytes
+= bytes
;
1172 coding_alloc_by_making_gap (coding
, gap_head_used
, bytes
)
1173 struct coding_system
*coding
;
1174 EMACS_INT gap_head_used
, bytes
;
1176 if (EQ (coding
->src_object
, coding
->dst_object
))
1178 /* The gap may contain the produced data at the head and not-yet
1179 consumed data at the tail. To preserve those data, we at
1180 first make the gap size to zero, then increase the gap
1182 EMACS_INT add
= GAP_SIZE
;
1184 GPT
+= gap_head_used
, GPT_BYTE
+= gap_head_used
;
1185 GAP_SIZE
= 0; ZV
+= add
; Z
+= add
; ZV_BYTE
+= add
; Z_BYTE
+= add
;
1187 GAP_SIZE
+= add
; ZV
-= add
; Z
-= add
; ZV_BYTE
-= add
; Z_BYTE
-= add
;
1188 GPT
-= gap_head_used
, GPT_BYTE
-= gap_head_used
;
1192 Lisp_Object this_buffer
;
1194 this_buffer
= Fcurrent_buffer ();
1195 set_buffer_internal (XBUFFER (coding
->dst_object
));
1197 set_buffer_internal (XBUFFER (this_buffer
));
1202 static unsigned char *
1203 alloc_destination (coding
, nbytes
, dst
)
1204 struct coding_system
*coding
;
1208 EMACS_INT offset
= dst
- coding
->destination
;
1210 if (BUFFERP (coding
->dst_object
))
1212 struct buffer
*buf
= XBUFFER (coding
->dst_object
);
1214 coding_alloc_by_making_gap (coding
, dst
- BUF_GPT_ADDR (buf
), nbytes
);
1217 coding_alloc_by_realloc (coding
, nbytes
);
1218 coding_set_destination (coding
);
1219 dst
= coding
->destination
+ offset
;
1223 /** Macros for annotations. */
1225 /* An annotation data is stored in the array coding->charbuf in this
1227 [ -LENGTH ANNOTATION_MASK NCHARS ... ]
1228 LENGTH is the number of elements in the annotation.
1229 ANNOTATION_MASK is one of CODING_ANNOTATE_XXX_MASK.
1230 NCHARS is the number of characters in the text annotated.
1232 The format of the following elements depend on ANNOTATION_MASK.
1234 In the case of CODING_ANNOTATE_COMPOSITION_MASK, these elements
1236 ... NBYTES METHOD [ COMPOSITION-COMPONENTS ... ]
1238 NBYTES is the number of bytes specified in the header part of
1239 old-style emacs-mule encoding, or 0 for the other kind of
1242 METHOD is one of enum composition_method.
1244 Optionnal COMPOSITION-COMPONENTS are characters and composition
1247 In the case of CODING_ANNOTATE_CHARSET_MASK, one element CHARSET-ID
1250 If ANNOTATION_MASK is 0, this annotation is just a space holder to
1251 recover from an invalid annotation, and should be skipped by
1252 produce_annotation. */
1254 /* Maximum length of the header of annotation data. */
1255 #define MAX_ANNOTATION_LENGTH 5
1257 #define ADD_ANNOTATION_DATA(buf, len, mask, nchars) \
1259 *(buf)++ = -(len); \
1260 *(buf)++ = (mask); \
1261 *(buf)++ = (nchars); \
1262 coding->annotated = 1; \
1265 #define ADD_COMPOSITION_DATA(buf, nchars, nbytes, method) \
1267 ADD_ANNOTATION_DATA (buf, 5, CODING_ANNOTATE_COMPOSITION_MASK, nchars); \
1273 #define ADD_CHARSET_DATA(buf, nchars, id) \
1275 ADD_ANNOTATION_DATA (buf, 4, CODING_ANNOTATE_CHARSET_MASK, nchars); \
1280 /*** 2. Emacs' internal format (emacs-utf-8) ***/
1287 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
1288 Check if a text is encoded in UTF-8. If it is, return 1, else
1291 #define UTF_8_1_OCTET_P(c) ((c) < 0x80)
1292 #define UTF_8_EXTRA_OCTET_P(c) (((c) & 0xC0) == 0x80)
1293 #define UTF_8_2_OCTET_LEADING_P(c) (((c) & 0xE0) == 0xC0)
1294 #define UTF_8_3_OCTET_LEADING_P(c) (((c) & 0xF0) == 0xE0)
1295 #define UTF_8_4_OCTET_LEADING_P(c) (((c) & 0xF8) == 0xF0)
1296 #define UTF_8_5_OCTET_LEADING_P(c) (((c) & 0xFC) == 0xF8)
1298 #define UTF_BOM 0xFEFF
1299 #define UTF_8_BOM_1 0xEF
1300 #define UTF_8_BOM_2 0xBB
1301 #define UTF_8_BOM_3 0xBF
1304 detect_coding_utf_8 (coding
, detect_info
)
1305 struct coding_system
*coding
;
1306 struct coding_detection_info
*detect_info
;
1308 const unsigned char *src
= coding
->source
, *src_base
;
1309 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
1310 int multibytep
= coding
->src_multibyte
;
1311 int consumed_chars
= 0;
1315 detect_info
->checked
|= CATEGORY_MASK_UTF_8
;
1316 /* A coding system of this category is always ASCII compatible. */
1317 src
+= coding
->head_ascii
;
1321 int c
, c1
, c2
, c3
, c4
;
1325 if (c
< 0 || UTF_8_1_OCTET_P (c
))
1328 if (c1
< 0 || ! UTF_8_EXTRA_OCTET_P (c1
))
1330 if (UTF_8_2_OCTET_LEADING_P (c
))
1336 if (c2
< 0 || ! UTF_8_EXTRA_OCTET_P (c2
))
1338 if (UTF_8_3_OCTET_LEADING_P (c
))
1341 if (src_base
== coding
->source
1342 && c
== UTF_8_BOM_1
&& c1
== UTF_8_BOM_2
&& c2
== UTF_8_BOM_3
)
1347 if (c3
< 0 || ! UTF_8_EXTRA_OCTET_P (c3
))
1349 if (UTF_8_4_OCTET_LEADING_P (c
))
1355 if (c4
< 0 || ! UTF_8_EXTRA_OCTET_P (c4
))
1357 if (UTF_8_5_OCTET_LEADING_P (c
))
1364 detect_info
->rejected
|= CATEGORY_MASK_UTF_8
;
1368 if (src_base
< src
&& coding
->mode
& CODING_MODE_LAST_BLOCK
)
1370 detect_info
->rejected
|= CATEGORY_MASK_UTF_8
;
1375 /* The first character 0xFFFE doesn't necessarily mean a BOM. */
1376 detect_info
->found
|= CATEGORY_MASK_UTF_8_SIG
| CATEGORY_MASK_UTF_8_NOSIG
;
1380 detect_info
->rejected
|= CATEGORY_MASK_UTF_8_SIG
;
1382 detect_info
->found
|= CATEGORY_MASK_UTF_8_NOSIG
;
1389 decode_coding_utf_8 (coding
)
1390 struct coding_system
*coding
;
1392 const unsigned char *src
= coding
->source
+ coding
->consumed
;
1393 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
1394 const unsigned char *src_base
;
1395 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
1396 int *charbuf_end
= coding
->charbuf
+ coding
->charbuf_size
;
1397 int consumed_chars
= 0, consumed_chars_base
= 0;
1398 int multibytep
= coding
->src_multibyte
;
1399 enum utf_bom_type bom
= CODING_UTF_8_BOM (coding
);
1400 Lisp_Object attr
, charset_list
;
1402 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
1403 int byte_after_cr
= -1;
1405 CODING_GET_INFO (coding
, attr
, charset_list
);
1407 if (bom
!= utf_without_bom
)
1413 if (! UTF_8_3_OCTET_LEADING_P (c1
))
1418 if (! UTF_8_EXTRA_OCTET_P (c2
))
1423 if (! UTF_8_EXTRA_OCTET_P (c3
))
1427 if ((c1
!= UTF_8_BOM_1
)
1428 || (c2
!= UTF_8_BOM_2
) || (c3
!= UTF_8_BOM_3
))
1431 CODING_UTF_8_BOM (coding
) = utf_without_bom
;
1436 CODING_UTF_8_BOM (coding
) = utf_without_bom
;
1442 int c
, c1
, c2
, c3
, c4
, c5
;
1445 consumed_chars_base
= consumed_chars
;
1447 if (charbuf
>= charbuf_end
)
1449 if (byte_after_cr
>= 0)
1454 if (byte_after_cr
>= 0)
1455 c1
= byte_after_cr
, byte_after_cr
= -1;
1462 else if (UTF_8_1_OCTET_P(c1
))
1464 if (eol_crlf
&& c1
== '\r')
1465 ONE_MORE_BYTE (byte_after_cr
);
1471 if (c2
< 0 || ! UTF_8_EXTRA_OCTET_P (c2
))
1473 if (UTF_8_2_OCTET_LEADING_P (c1
))
1475 c
= ((c1
& 0x1F) << 6) | (c2
& 0x3F);
1476 /* Reject overlong sequences here and below. Encoders
1477 producing them are incorrect, they can be misleading,
1478 and they mess up read/write invariance. */
1485 if (c3
< 0 || ! UTF_8_EXTRA_OCTET_P (c3
))
1487 if (UTF_8_3_OCTET_LEADING_P (c1
))
1489 c
= (((c1
& 0xF) << 12)
1490 | ((c2
& 0x3F) << 6) | (c3
& 0x3F));
1492 || (c
>= 0xd800 && c
< 0xe000)) /* surrogates (invalid) */
1498 if (c4
< 0 || ! UTF_8_EXTRA_OCTET_P (c4
))
1500 if (UTF_8_4_OCTET_LEADING_P (c1
))
1502 c
= (((c1
& 0x7) << 18) | ((c2
& 0x3F) << 12)
1503 | ((c3
& 0x3F) << 6) | (c4
& 0x3F));
1510 if (c5
< 0 || ! UTF_8_EXTRA_OCTET_P (c5
))
1512 if (UTF_8_5_OCTET_LEADING_P (c1
))
1514 c
= (((c1
& 0x3) << 24) | ((c2
& 0x3F) << 18)
1515 | ((c3
& 0x3F) << 12) | ((c4
& 0x3F) << 6)
1517 if ((c
> MAX_CHAR
) || (c
< 0x200000))
1532 consumed_chars
= consumed_chars_base
;
1534 *charbuf
++ = ASCII_BYTE_P (c
) ? c
: BYTE8_TO_CHAR (c
);
1539 coding
->consumed_char
+= consumed_chars_base
;
1540 coding
->consumed
= src_base
- coding
->source
;
1541 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
1546 encode_coding_utf_8 (coding
)
1547 struct coding_system
*coding
;
1549 int multibytep
= coding
->dst_multibyte
;
1550 int *charbuf
= coding
->charbuf
;
1551 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
1552 unsigned char *dst
= coding
->destination
+ coding
->produced
;
1553 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
1554 int produced_chars
= 0;
1557 if (CODING_UTF_8_BOM (coding
) == utf_with_bom
)
1559 ASSURE_DESTINATION (3);
1560 EMIT_THREE_BYTES (UTF_8_BOM_1
, UTF_8_BOM_2
, UTF_8_BOM_3
);
1561 CODING_UTF_8_BOM (coding
) = utf_without_bom
;
1566 int safe_room
= MAX_MULTIBYTE_LENGTH
* 2;
1568 while (charbuf
< charbuf_end
)
1570 unsigned char str
[MAX_MULTIBYTE_LENGTH
], *p
, *pend
= str
;
1572 ASSURE_DESTINATION (safe_room
);
1574 if (CHAR_BYTE8_P (c
))
1576 c
= CHAR_TO_BYTE8 (c
);
1581 CHAR_STRING_ADVANCE_NO_UNIFY (c
, pend
);
1582 for (p
= str
; p
< pend
; p
++)
1589 int safe_room
= MAX_MULTIBYTE_LENGTH
;
1591 while (charbuf
< charbuf_end
)
1593 ASSURE_DESTINATION (safe_room
);
1595 if (CHAR_BYTE8_P (c
))
1596 *dst
++ = CHAR_TO_BYTE8 (c
);
1598 CHAR_STRING_ADVANCE_NO_UNIFY (c
, dst
);
1602 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
1603 coding
->produced_char
+= produced_chars
;
1604 coding
->produced
= dst
- coding
->destination
;
1609 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
1610 Check if a text is encoded in one of UTF-16 based coding systems.
1611 If it is, return 1, else return 0. */
1613 #define UTF_16_HIGH_SURROGATE_P(val) \
1614 (((val) & 0xFC00) == 0xD800)
1616 #define UTF_16_LOW_SURROGATE_P(val) \
1617 (((val) & 0xFC00) == 0xDC00)
1619 #define UTF_16_INVALID_P(val) \
1620 (((val) == 0xFFFE) \
1621 || ((val) == 0xFFFF) \
1622 || UTF_16_LOW_SURROGATE_P (val))
1626 detect_coding_utf_16 (coding
, detect_info
)
1627 struct coding_system
*coding
;
1628 struct coding_detection_info
*detect_info
;
1630 const unsigned char *src
= coding
->source
, *src_base
= src
;
1631 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
1632 int multibytep
= coding
->src_multibyte
;
1633 int consumed_chars
= 0;
1636 detect_info
->checked
|= CATEGORY_MASK_UTF_16
;
1637 if (coding
->mode
& CODING_MODE_LAST_BLOCK
1638 && (coding
->src_chars
& 1))
1640 detect_info
->rejected
|= CATEGORY_MASK_UTF_16
;
1644 TWO_MORE_BYTES (c1
, c2
);
1645 if ((c1
== 0xFF) && (c2
== 0xFE))
1647 detect_info
->found
|= (CATEGORY_MASK_UTF_16_LE
1648 | CATEGORY_MASK_UTF_16_AUTO
);
1649 detect_info
->rejected
|= (CATEGORY_MASK_UTF_16_BE
1650 | CATEGORY_MASK_UTF_16_BE_NOSIG
1651 | CATEGORY_MASK_UTF_16_LE_NOSIG
);
1653 else if ((c1
== 0xFE) && (c2
== 0xFF))
1655 detect_info
->found
|= (CATEGORY_MASK_UTF_16_BE
1656 | CATEGORY_MASK_UTF_16_AUTO
);
1657 detect_info
->rejected
|= (CATEGORY_MASK_UTF_16_LE
1658 | CATEGORY_MASK_UTF_16_BE_NOSIG
1659 | CATEGORY_MASK_UTF_16_LE_NOSIG
);
1663 detect_info
->rejected
|= CATEGORY_MASK_UTF_16
;
1668 /* We check the dispersion of Eth and Oth bytes where E is even and
1669 O is odd. If both are high, we assume binary data.*/
1670 unsigned char e
[256], o
[256];
1671 unsigned e_num
= 1, o_num
= 1;
1678 detect_info
->rejected
|= (CATEGORY_MASK_UTF_16_AUTO
1679 |CATEGORY_MASK_UTF_16_BE
1680 | CATEGORY_MASK_UTF_16_LE
);
1682 while ((detect_info
->rejected
& CATEGORY_MASK_UTF_16
)
1683 != CATEGORY_MASK_UTF_16
)
1685 TWO_MORE_BYTES (c1
, c2
);
1693 detect_info
->rejected
|= CATEGORY_MASK_UTF_16_BE_NOSIG
;
1700 detect_info
->rejected
|= CATEGORY_MASK_UTF_16_LE_NOSIG
;
1711 decode_coding_utf_16 (coding
)
1712 struct coding_system
*coding
;
1714 const unsigned char *src
= coding
->source
+ coding
->consumed
;
1715 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
1716 const unsigned char *src_base
;
1717 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
1718 /* We may produces at most 3 chars in one loop. */
1719 int *charbuf_end
= coding
->charbuf
+ coding
->charbuf_size
- 2;
1720 int consumed_chars
= 0, consumed_chars_base
= 0;
1721 int multibytep
= coding
->src_multibyte
;
1722 enum utf_bom_type bom
= CODING_UTF_16_BOM (coding
);
1723 enum utf_16_endian_type endian
= CODING_UTF_16_ENDIAN (coding
);
1724 int surrogate
= CODING_UTF_16_SURROGATE (coding
);
1725 Lisp_Object attr
, charset_list
;
1727 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
1728 int byte_after_cr1
= -1, byte_after_cr2
= -1;
1730 CODING_GET_INFO (coding
, attr
, charset_list
);
1732 if (bom
== utf_with_bom
)
1741 if (endian
== utf_16_big_endian
1742 ? c
!= 0xFEFF : c
!= 0xFFFE)
1744 /* The first two bytes are not BOM. Treat them as bytes
1745 for a normal character. */
1749 CODING_UTF_16_BOM (coding
) = utf_without_bom
;
1751 else if (bom
== utf_detect_bom
)
1753 /* We have already tried to detect BOM and failed in
1755 CODING_UTF_16_BOM (coding
) = utf_without_bom
;
1763 consumed_chars_base
= consumed_chars
;
1765 if (charbuf
>= charbuf_end
)
1767 if (byte_after_cr1
>= 0)
1772 if (byte_after_cr1
>= 0)
1773 c1
= byte_after_cr1
, byte_after_cr1
= -1;
1781 if (byte_after_cr2
>= 0)
1782 c2
= byte_after_cr2
, byte_after_cr2
= -1;
1787 *charbuf
++ = ASCII_BYTE_P (c1
) ? c1
: BYTE8_TO_CHAR (c1
);
1791 c
= (endian
== utf_16_big_endian
1792 ? ((c1
<< 8) | c2
) : ((c2
<< 8) | c1
));
1796 if (! UTF_16_LOW_SURROGATE_P (c
))
1798 if (endian
== utf_16_big_endian
)
1799 c1
= surrogate
>> 8, c2
= surrogate
& 0xFF;
1801 c1
= surrogate
& 0xFF, c2
= surrogate
>> 8;
1805 if (UTF_16_HIGH_SURROGATE_P (c
))
1806 CODING_UTF_16_SURROGATE (coding
) = surrogate
= c
;
1812 c
= ((surrogate
- 0xD800) << 10) | (c
- 0xDC00);
1813 CODING_UTF_16_SURROGATE (coding
) = surrogate
= 0;
1814 *charbuf
++ = 0x10000 + c
;
1819 if (UTF_16_HIGH_SURROGATE_P (c
))
1820 CODING_UTF_16_SURROGATE (coding
) = surrogate
= c
;
1823 if (eol_crlf
&& c
== '\r')
1825 ONE_MORE_BYTE (byte_after_cr1
);
1826 ONE_MORE_BYTE (byte_after_cr2
);
1834 coding
->consumed_char
+= consumed_chars_base
;
1835 coding
->consumed
= src_base
- coding
->source
;
1836 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
1840 encode_coding_utf_16 (coding
)
1841 struct coding_system
*coding
;
1843 int multibytep
= coding
->dst_multibyte
;
1844 int *charbuf
= coding
->charbuf
;
1845 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
1846 unsigned char *dst
= coding
->destination
+ coding
->produced
;
1847 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
1849 enum utf_bom_type bom
= CODING_UTF_16_BOM (coding
);
1850 int big_endian
= CODING_UTF_16_ENDIAN (coding
) == utf_16_big_endian
;
1851 int produced_chars
= 0;
1852 Lisp_Object attrs
, charset_list
;
1855 CODING_GET_INFO (coding
, attrs
, charset_list
);
1857 if (bom
!= utf_without_bom
)
1859 ASSURE_DESTINATION (safe_room
);
1861 EMIT_TWO_BYTES (0xFE, 0xFF);
1863 EMIT_TWO_BYTES (0xFF, 0xFE);
1864 CODING_UTF_16_BOM (coding
) = utf_without_bom
;
1867 while (charbuf
< charbuf_end
)
1869 ASSURE_DESTINATION (safe_room
);
1871 if (c
> MAX_UNICODE_CHAR
)
1872 c
= coding
->default_char
;
1877 EMIT_TWO_BYTES (c
>> 8, c
& 0xFF);
1879 EMIT_TWO_BYTES (c
& 0xFF, c
>> 8);
1886 c1
= (c
>> 10) + 0xD800;
1887 c2
= (c
& 0x3FF) + 0xDC00;
1889 EMIT_FOUR_BYTES (c1
>> 8, c1
& 0xFF, c2
>> 8, c2
& 0xFF);
1891 EMIT_FOUR_BYTES (c1
& 0xFF, c1
>> 8, c2
& 0xFF, c2
>> 8);
1894 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
1895 coding
->produced
= dst
- coding
->destination
;
1896 coding
->produced_char
+= produced_chars
;
1901 /*** 6. Old Emacs' internal format (emacs-mule) ***/
1903 /* Emacs' internal format for representation of multiple character
1904 sets is a kind of multi-byte encoding, i.e. characters are
1905 represented by variable-length sequences of one-byte codes.
1907 ASCII characters and control characters (e.g. `tab', `newline') are
1908 represented by one-byte sequences which are their ASCII codes, in
1909 the range 0x00 through 0x7F.
1911 8-bit characters of the range 0x80..0x9F are represented by
1912 two-byte sequences of LEADING_CODE_8_BIT_CONTROL and (their 8-bit
1915 8-bit characters of the range 0xA0..0xFF are represented by
1916 one-byte sequences which are their 8-bit code.
1918 The other characters are represented by a sequence of `base
1919 leading-code', optional `extended leading-code', and one or two
1920 `position-code's. The length of the sequence is determined by the
1921 base leading-code. Leading-code takes the range 0x81 through 0x9D,
1922 whereas extended leading-code and position-code take the range 0xA0
1923 through 0xFF. See `charset.h' for more details about leading-code
1926 --- CODE RANGE of Emacs' internal format ---
1930 eight-bit-control LEADING_CODE_8_BIT_CONTROL + 0xA0..0xBF
1931 eight-bit-graphic 0xA0..0xBF
1932 ELSE 0x81..0x9D + [0xA0..0xFF]+
1933 ---------------------------------------------
1935 As this is the internal character representation, the format is
1936 usually not used externally (i.e. in a file or in a data sent to a
1937 process). But, it is possible to have a text externally in this
1938 format (i.e. by encoding by the coding system `emacs-mule').
1940 In that case, a sequence of one-byte codes has a slightly different
1943 At first, all characters in eight-bit-control are represented by
1944 one-byte sequences which are their 8-bit code.
1946 Next, character composition data are represented by the byte
1947 sequence of the form: 0x80 METHOD BYTES CHARS COMPONENT ...,
1949 METHOD is 0xF2 plus one of composition method (enum
1950 composition_method),
1952 BYTES is 0xA0 plus a byte length of this composition data,
1954 CHARS is 0xA0 plus a number of characters composed by this
1957 COMPONENTs are characters of multibye form or composition
1958 rules encoded by two-byte of ASCII codes.
1960 In addition, for backward compatibility, the following formats are
1961 also recognized as composition data on decoding.
1964 0x80 0xFF MSEQ RULE MSEQ RULE ... MSEQ
1967 MSEQ is a multibyte form but in these special format:
1968 ASCII: 0xA0 ASCII_CODE+0x80,
1969 other: LEADING_CODE+0x20 FOLLOWING-BYTE ...,
1970 RULE is a one byte code of the range 0xA0..0xF0 that
1971 represents a composition rule.
1974 char emacs_mule_bytes
[256];
1977 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
1978 Check if a text is encoded in `emacs-mule'. If it is, return 1,
1982 detect_coding_emacs_mule (coding
, detect_info
)
1983 struct coding_system
*coding
;
1984 struct coding_detection_info
*detect_info
;
1986 const unsigned char *src
= coding
->source
, *src_base
;
1987 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
1988 int multibytep
= coding
->src_multibyte
;
1989 int consumed_chars
= 0;
1993 detect_info
->checked
|= CATEGORY_MASK_EMACS_MULE
;
1994 /* A coding system of this category is always ASCII compatible. */
1995 src
+= coding
->head_ascii
;
2005 /* Perhaps the start of composite character. We simply skip
2006 it because analyzing it is too heavy for detecting. But,
2007 at least, we check that the composite character
2008 constitutes of more than 4 bytes. */
2009 const unsigned char *src_base
;
2019 if (src
- src_base
<= 4)
2021 found
= CATEGORY_MASK_EMACS_MULE
;
2029 && (c
== ISO_CODE_ESC
|| c
== ISO_CODE_SI
|| c
== ISO_CODE_SO
))
2034 int more_bytes
= emacs_mule_bytes
[c
] - 1;
2036 while (more_bytes
> 0)
2041 src
--; /* Unread the last byte. */
2046 if (more_bytes
!= 0)
2048 found
= CATEGORY_MASK_EMACS_MULE
;
2051 detect_info
->rejected
|= CATEGORY_MASK_EMACS_MULE
;
2055 if (src_base
< src
&& coding
->mode
& CODING_MODE_LAST_BLOCK
)
2057 detect_info
->rejected
|= CATEGORY_MASK_EMACS_MULE
;
2060 detect_info
->found
|= found
;
2065 /* Parse emacs-mule multibyte sequence at SRC and return the decoded
2066 character. If CMP_STATUS indicates that we must expect MSEQ or
2067 RULE described above, decode it and return the negative value of
2068 the decoded character or rule. If an invalid byte is found, return
2069 -1. If SRC is too short, return -2. */
2072 emacs_mule_char (coding
, src
, nbytes
, nchars
, id
, cmp_status
)
2073 struct coding_system
*coding
;
2074 const unsigned char *src
;
2075 int *nbytes
, *nchars
, *id
;
2076 struct composition_status
*cmp_status
;
2078 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
2079 const unsigned char *src_base
= src
;
2080 int multibytep
= coding
->src_multibyte
;
2081 struct charset
*charset
;
2084 int consumed_chars
= 0;
2091 charset
= emacs_mule_charset
[0];
2097 if (cmp_status
->state
!= COMPOSING_NO
2098 && cmp_status
->old_form
)
2100 if (cmp_status
->state
== COMPOSING_CHAR
)
2115 *nbytes
= src
- src_base
;
2116 *nchars
= consumed_chars
;
2124 switch (emacs_mule_bytes
[c
])
2127 if (! (charset
= emacs_mule_charset
[c
]))
2136 if (c
== EMACS_MULE_LEADING_CODE_PRIVATE_11
2137 || c
== EMACS_MULE_LEADING_CODE_PRIVATE_12
)
2140 if (c
< 0xA0 || ! (charset
= emacs_mule_charset
[c
]))
2149 if (! (charset
= emacs_mule_charset
[c
]))
2154 code
= (c
& 0x7F) << 8;
2164 if (c
< 0 || ! (charset
= emacs_mule_charset
[c
]))
2169 code
= (c
& 0x7F) << 8;
2178 charset
= CHARSET_FROM_ID (ASCII_BYTE_P (code
)
2179 ? charset_ascii
: charset_eight_bit
);
2185 CODING_DECODE_CHAR (coding
, src
, src_base
, src_end
, charset
, code
, c
);
2189 *nbytes
= src
- src_base
;
2190 *nchars
= consumed_chars
;
2193 return (mseq_found
? -c
: c
);
2203 /* See the above "GENERAL NOTES on `decode_coding_XXX ()' functions". */
2205 /* Handle these composition sequence ('|': the end of header elements,
2206 BYTES and CHARS >= 0xA0):
2208 (1) relative composition: 0x80 0xF2 BYTES CHARS | CHAR ...
2209 (2) altchar composition: 0x80 0xF4 BYTES CHARS | ALT ... ALT CHAR ...
2210 (3) alt&rule composition: 0x80 0xF5 BYTES CHARS | ALT RULE ... ALT CHAR ...
2214 (4) relative composition: 0x80 | MSEQ ... MSEQ
2215 (5) rulebase composition: 0x80 0xFF | MSEQ MRULE ... MSEQ
2217 When the starter 0x80 and the following header elements are found,
2218 this annotation header is produced.
2220 [ -LENGTH(==-5) CODING_ANNOTATE_COMPOSITION_MASK NCHARS NBYTES METHOD ]
2222 NCHARS is CHARS - 0xA0 for (1), (2), (3), and 0 for (4), (5).
2223 NBYTES is BYTES - 0xA0 for (1), (2), (3), and 0 for (4), (5).
2225 Then, upon reading the following elements, these codes are produced
2226 until the composition end is found:
2229 (2) ALT ... ALT CHAR ... CHAR
2230 (3) ALT -2 DECODED-RULE ALT -2 DECODED-RULE ... ALT CHAR ... CHAR
2232 (5) CHAR -2 DECODED-RULE CHAR -2 DECODED-RULE ... CHAR
2234 When the composition end is found, LENGTH and NCHARS in the
2235 annotation header is updated as below:
2237 (1) LENGTH: unchanged, NCHARS: unchanged
2238 (2) LENGTH: length of the whole sequence minus NCHARS, NCHARS: unchanged
2239 (3) LENGTH: length of the whole sequence minus NCHARS, NCHARS: unchanged
2240 (4) LENGTH: unchanged, NCHARS: number of CHARs
2241 (5) LENGTH: unchanged, NCHARS: number of CHARs
2243 If an error is found while composing, the annotation header is
2244 changed to the original composition header (plus filler -1s) as
2247 (1),(2),(3) [ 0x80 0xF2+METHOD BYTES CHARS -1 ]
2248 (5) [ 0x80 0xFF -1 -1- -1 ]
2250 and the sequence [ -2 DECODED-RULE ] is changed to the original
2251 byte sequence as below:
2252 o the original byte sequence is B: [ B -1 ]
2253 o the original byte sequence is B1 B2: [ B1 B2 ]
2255 Most of the routines are implemented by macros because many
2256 variables and labels in the caller decode_coding_emacs_mule must be
2257 accessible, and they are usually called just once (thus doesn't
2258 increase the size of compiled object). */
2260 /* Decode a composition rule represented by C as a component of
2261 composition sequence of Emacs 20 style. Set RULE to the decoded
2264 #define DECODE_EMACS_MULE_COMPOSITION_RULE_20(c, rule) \
2269 if (c < 0 || c >= 81) \
2270 goto invalid_code; \
2271 gref = c / 9, nref = c % 9; \
2272 if (gref == 4) gref = 10; \
2273 if (nref == 4) nref = 10; \
2274 rule = COMPOSITION_ENCODE_RULE (gref, nref); \
2278 /* Decode a composition rule represented by C and the following byte
2279 at SRC as a component of composition sequence of Emacs 21 style.
2280 Set RULE to the decoded rule. */
2282 #define DECODE_EMACS_MULE_COMPOSITION_RULE_21(c, rule) \
2287 if (gref < 0 || gref >= 81) \
2288 goto invalid_code; \
2289 ONE_MORE_BYTE (c); \
2291 if (nref < 0 || nref >= 81) \
2292 goto invalid_code; \
2293 rule = COMPOSITION_ENCODE_RULE (gref, nref); \
2297 /* Start of Emacs 21 style format. The first three bytes at SRC are
2298 (METHOD - 0xF2), (BYTES - 0xA0), (CHARS - 0xA0), where BYTES is the
2299 byte length of this composition information, CHARS is the number of
2300 characters composed by this composition. */
2302 #define DECODE_EMACS_MULE_21_COMPOSITION() \
2304 enum composition_method method = c - 0xF2; \
2305 int *charbuf_base = charbuf; \
2306 int nbytes, nchars; \
2308 ONE_MORE_BYTE (c); \
2310 goto invalid_code; \
2311 nbytes = c - 0xA0; \
2312 if (nbytes < 3 || (method == COMPOSITION_RELATIVE && nbytes != 4)) \
2313 goto invalid_code; \
2314 ONE_MORE_BYTE (c); \
2315 nchars = c - 0xA0; \
2316 if (nchars <= 0 || nchars >= MAX_COMPOSITION_COMPONENTS) \
2317 goto invalid_code; \
2318 cmp_status->old_form = 0; \
2319 cmp_status->method = method; \
2320 if (method == COMPOSITION_RELATIVE) \
2321 cmp_status->state = COMPOSING_CHAR; \
2323 cmp_status->state = COMPOSING_COMPONENT_CHAR; \
2324 cmp_status->length = MAX_ANNOTATION_LENGTH; \
2325 cmp_status->nchars = nchars; \
2326 cmp_status->ncomps = nbytes - 4; \
2327 ADD_COMPOSITION_DATA (charbuf, nchars, nbytes, method); \
2331 /* Start of Emacs 20 style format for relative composition. */
2333 #define DECODE_EMACS_MULE_20_RELATIVE_COMPOSITION() \
2335 cmp_status->old_form = 1; \
2336 cmp_status->method = COMPOSITION_RELATIVE; \
2337 cmp_status->state = COMPOSING_CHAR; \
2338 cmp_status->length = MAX_ANNOTATION_LENGTH; \
2339 cmp_status->nchars = cmp_status->ncomps = 0; \
2340 ADD_COMPOSITION_DATA (charbuf, 0, 0, cmp_status->method); \
2344 /* Start of Emacs 20 style format for rule-base composition. */
2346 #define DECODE_EMACS_MULE_20_RULEBASE_COMPOSITION() \
2348 cmp_status->old_form = 1; \
2349 cmp_status->method = COMPOSITION_WITH_RULE; \
2350 cmp_status->state = COMPOSING_CHAR; \
2351 cmp_status->length = MAX_ANNOTATION_LENGTH; \
2352 cmp_status->nchars = cmp_status->ncomps = 0; \
2353 ADD_COMPOSITION_DATA (charbuf, 0, 0, cmp_status->method); \
2357 #define DECODE_EMACS_MULE_COMPOSITION_START() \
2359 const unsigned char *current_src = src; \
2361 ONE_MORE_BYTE (c); \
2363 goto invalid_code; \
2364 if (c - 0xF2 >= COMPOSITION_RELATIVE \
2365 && c - 0xF2 <= COMPOSITION_WITH_RULE_ALTCHARS) \
2366 DECODE_EMACS_MULE_21_COMPOSITION (); \
2367 else if (c < 0xA0) \
2368 goto invalid_code; \
2369 else if (c < 0xC0) \
2371 DECODE_EMACS_MULE_20_RELATIVE_COMPOSITION (); \
2372 /* Re-read C as a composition component. */ \
2373 src = current_src; \
2375 else if (c == 0xFF) \
2376 DECODE_EMACS_MULE_20_RULEBASE_COMPOSITION (); \
2378 goto invalid_code; \
2381 #define EMACS_MULE_COMPOSITION_END() \
2383 int idx = - cmp_status->length; \
2385 if (cmp_status->old_form) \
2386 charbuf[idx + 2] = cmp_status->nchars; \
2387 else if (cmp_status->method > COMPOSITION_RELATIVE) \
2388 charbuf[idx] = charbuf[idx + 2] - cmp_status->length; \
2389 cmp_status->state = COMPOSING_NO; \
2394 emacs_mule_finish_composition (charbuf
, cmp_status
)
2396 struct composition_status
*cmp_status
;
2398 int idx
= - cmp_status
->length
;
2401 if (cmp_status
->old_form
&& cmp_status
->nchars
> 0)
2403 charbuf
[idx
+ 2] = cmp_status
->nchars
;
2405 if (cmp_status
->method
== COMPOSITION_WITH_RULE
2406 && cmp_status
->state
== COMPOSING_CHAR
)
2408 /* The last rule was invalid. */
2409 int rule
= charbuf
[-1] + 0xA0;
2411 charbuf
[-2] = BYTE8_TO_CHAR (rule
);
2418 charbuf
[idx
++] = BYTE8_TO_CHAR (0x80);
2420 if (cmp_status
->method
== COMPOSITION_WITH_RULE
)
2422 charbuf
[idx
++] = BYTE8_TO_CHAR (0xFF);
2423 charbuf
[idx
++] = -3;
2429 int nchars
= charbuf
[idx
+ 1] + 0xA0;
2430 int nbytes
= charbuf
[idx
+ 2] + 0xA0;
2432 charbuf
[idx
++] = BYTE8_TO_CHAR (0xF2 + cmp_status
->method
);
2433 charbuf
[idx
++] = BYTE8_TO_CHAR (nbytes
);
2434 charbuf
[idx
++] = BYTE8_TO_CHAR (nchars
);
2435 charbuf
[idx
++] = -1;
2439 cmp_status
->state
= COMPOSING_NO
;
2443 #define EMACS_MULE_MAYBE_FINISH_COMPOSITION() \
2445 if (cmp_status->state != COMPOSING_NO) \
2446 char_offset += emacs_mule_finish_composition (charbuf, cmp_status); \
2451 decode_coding_emacs_mule (coding
)
2452 struct coding_system
*coding
;
2454 const unsigned char *src
= coding
->source
+ coding
->consumed
;
2455 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
2456 const unsigned char *src_base
;
2457 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
2458 /* We may produce two annocations (charset and composition) in one
2459 loop and one more charset annocation at the end. */
2461 = coding
->charbuf
+ coding
->charbuf_size
- (MAX_ANNOTATION_LENGTH
* 3);
2462 int consumed_chars
= 0, consumed_chars_base
;
2463 int multibytep
= coding
->src_multibyte
;
2464 Lisp_Object attrs
, charset_list
;
2465 int char_offset
= coding
->produced_char
;
2466 int last_offset
= char_offset
;
2467 int last_id
= charset_ascii
;
2469 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
2470 int byte_after_cr
= -1;
2471 struct composition_status
*cmp_status
= &coding
->spec
.emacs_mule
.cmp_status
;
2473 CODING_GET_INFO (coding
, attrs
, charset_list
);
2475 if (cmp_status
->state
!= COMPOSING_NO
)
2479 for (i
= 0; i
< cmp_status
->length
; i
++)
2480 *charbuf
++ = cmp_status
->carryover
[i
];
2481 coding
->annotated
= 1;
2489 consumed_chars_base
= consumed_chars
;
2491 if (charbuf
>= charbuf_end
)
2493 if (byte_after_cr
>= 0)
2498 if (byte_after_cr
>= 0)
2499 c
= byte_after_cr
, byte_after_cr
= -1;
2503 if (c
< 0 || c
== 0x80)
2505 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2512 DECODE_EMACS_MULE_COMPOSITION_START ();
2518 if (eol_crlf
&& c
== '\r')
2519 ONE_MORE_BYTE (byte_after_cr
);
2521 if (cmp_status
->state
!= COMPOSING_NO
)
2523 if (cmp_status
->old_form
)
2524 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2525 else if (cmp_status
->state
>= COMPOSING_COMPONENT_CHAR
)
2526 cmp_status
->ncomps
--;
2532 /* emacs_mule_char can load a charset map from a file, which
2533 allocates a large structure and might cause buffer text
2534 to be relocated as result. Thus, we need to remember the
2535 original pointer to buffer text, and fixup all related
2536 pointers after the call. */
2537 const unsigned char *orig
= coding
->source
;
2540 c
= emacs_mule_char (coding
, src_base
, &nbytes
, &nchars
, &id
,
2542 offset
= coding
->source
- orig
;
2556 src
= src_base
+ nbytes
;
2557 consumed_chars
= consumed_chars_base
+ nchars
;
2558 if (cmp_status
->state
>= COMPOSING_COMPONENT_CHAR
)
2559 cmp_status
->ncomps
-= nchars
;
2562 /* Now if C >= 0, we found a normally encoded characer, if C <
2563 0, we found an old-style composition component character or
2566 if (cmp_status
->state
== COMPOSING_NO
)
2570 if (last_id
!= charset_ascii
)
2571 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
,
2574 last_offset
= char_offset
;
2579 else if (cmp_status
->state
== COMPOSING_CHAR
)
2581 if (cmp_status
->old_form
)
2585 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2592 cmp_status
->nchars
++;
2593 cmp_status
->length
++;
2594 if (cmp_status
->nchars
== MAX_COMPOSITION_COMPONENTS
)
2595 EMACS_MULE_COMPOSITION_END ();
2596 else if (cmp_status
->method
== COMPOSITION_WITH_RULE
)
2597 cmp_status
->state
= COMPOSING_RULE
;
2603 cmp_status
->length
++;
2604 cmp_status
->nchars
--;
2605 if (cmp_status
->nchars
== 0)
2606 EMACS_MULE_COMPOSITION_END ();
2609 else if (cmp_status
->state
== COMPOSING_RULE
)
2615 EMACS_MULE_COMPOSITION_END ();
2622 DECODE_EMACS_MULE_COMPOSITION_RULE_20 (c
, rule
);
2627 cmp_status
->length
+= 2;
2628 cmp_status
->state
= COMPOSING_CHAR
;
2631 else if (cmp_status
->state
== COMPOSING_COMPONENT_CHAR
)
2634 cmp_status
->length
++;
2635 if (cmp_status
->ncomps
== 0)
2636 cmp_status
->state
= COMPOSING_CHAR
;
2637 else if (cmp_status
->ncomps
> 0)
2639 if (cmp_status
->method
== COMPOSITION_WITH_RULE_ALTCHARS
)
2640 cmp_status
->state
= COMPOSING_COMPONENT_RULE
;
2643 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2645 else /* COMPOSING_COMPONENT_RULE */
2649 DECODE_EMACS_MULE_COMPOSITION_RULE_21 (c
, rule
);
2654 cmp_status
->length
+= 2;
2655 cmp_status
->ncomps
--;
2656 if (cmp_status
->ncomps
> 0)
2657 cmp_status
->state
= COMPOSING_COMPONENT_CHAR
;
2659 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2665 consumed_chars
= consumed_chars_base
;
2669 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2671 consumed_chars
= consumed_chars_base
;
2673 *charbuf
++ = ASCII_BYTE_P (c
) ? c
: BYTE8_TO_CHAR (c
);
2679 if (cmp_status
->state
!= COMPOSING_NO
)
2681 if (coding
->mode
& CODING_MODE_LAST_BLOCK
)
2682 EMACS_MULE_MAYBE_FINISH_COMPOSITION ();
2687 charbuf
-= cmp_status
->length
;
2688 for (i
= 0; i
< cmp_status
->length
; i
++)
2689 cmp_status
->carryover
[i
] = charbuf
[i
];
2692 if (last_id
!= charset_ascii
)
2693 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
2694 coding
->consumed_char
+= consumed_chars_base
;
2695 coding
->consumed
= src_base
- coding
->source
;
2696 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
2700 #define EMACS_MULE_LEADING_CODES(id, codes) \
2703 codes[0] = id, codes[1] = 0; \
2704 else if (id < 0xE0) \
2705 codes[0] = 0x9A, codes[1] = id; \
2706 else if (id < 0xF0) \
2707 codes[0] = 0x9B, codes[1] = id; \
2708 else if (id < 0xF5) \
2709 codes[0] = 0x9C, codes[1] = id; \
2711 codes[0] = 0x9D, codes[1] = id; \
2716 encode_coding_emacs_mule (coding
)
2717 struct coding_system
*coding
;
2719 int multibytep
= coding
->dst_multibyte
;
2720 int *charbuf
= coding
->charbuf
;
2721 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
2722 unsigned char *dst
= coding
->destination
+ coding
->produced
;
2723 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
2725 int produced_chars
= 0;
2726 Lisp_Object attrs
, charset_list
;
2728 int preferred_charset_id
= -1;
2730 CODING_GET_INFO (coding
, attrs
, charset_list
);
2731 if (! EQ (charset_list
, Vemacs_mule_charset_list
))
2733 CODING_ATTR_CHARSET_LIST (attrs
)
2734 = charset_list
= Vemacs_mule_charset_list
;
2737 while (charbuf
< charbuf_end
)
2739 ASSURE_DESTINATION (safe_room
);
2744 /* Handle an annotation. */
2747 case CODING_ANNOTATE_COMPOSITION_MASK
:
2748 /* Not yet implemented. */
2750 case CODING_ANNOTATE_CHARSET_MASK
:
2751 preferred_charset_id
= charbuf
[3];
2752 if (preferred_charset_id
>= 0
2753 && NILP (Fmemq (make_number (preferred_charset_id
),
2755 preferred_charset_id
= -1;
2764 if (ASCII_CHAR_P (c
))
2765 EMIT_ONE_ASCII_BYTE (c
);
2766 else if (CHAR_BYTE8_P (c
))
2768 c
= CHAR_TO_BYTE8 (c
);
2773 struct charset
*charset
;
2777 unsigned char leading_codes
[2];
2779 if (preferred_charset_id
>= 0)
2781 charset
= CHARSET_FROM_ID (preferred_charset_id
);
2782 if (CHAR_CHARSET_P (c
, charset
))
2783 code
= ENCODE_CHAR (charset
, c
);
2785 charset
= char_charset (c
, charset_list
, &code
);
2788 charset
= char_charset (c
, charset_list
, &code
);
2791 c
= coding
->default_char
;
2792 if (ASCII_CHAR_P (c
))
2794 EMIT_ONE_ASCII_BYTE (c
);
2797 charset
= char_charset (c
, charset_list
, &code
);
2799 dimension
= CHARSET_DIMENSION (charset
);
2800 emacs_mule_id
= CHARSET_EMACS_MULE_ID (charset
);
2801 EMACS_MULE_LEADING_CODES (emacs_mule_id
, leading_codes
);
2802 EMIT_ONE_BYTE (leading_codes
[0]);
2803 if (leading_codes
[1])
2804 EMIT_ONE_BYTE (leading_codes
[1]);
2806 EMIT_ONE_BYTE (code
| 0x80);
2810 EMIT_ONE_BYTE (code
>> 8);
2811 EMIT_ONE_BYTE (code
& 0xFF);
2815 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
2816 coding
->produced_char
+= produced_chars
;
2817 coding
->produced
= dst
- coding
->destination
;
2822 /*** 7. ISO2022 handlers ***/
2824 /* The following note describes the coding system ISO2022 briefly.
2825 Since the intention of this note is to help understand the
2826 functions in this file, some parts are NOT ACCURATE or are OVERLY
2827 SIMPLIFIED. For thorough understanding, please refer to the
2828 original document of ISO2022. This is equivalent to the standard
2829 ECMA-35, obtainable from <URL:http://www.ecma.ch/> (*).
2831 ISO2022 provides many mechanisms to encode several character sets
2832 in 7-bit and 8-bit environments. For 7-bit environments, all text
2833 is encoded using bytes less than 128. This may make the encoded
2834 text a little bit longer, but the text passes more easily through
2835 several types of gateway, some of which strip off the MSB (Most
2838 There are two kinds of character sets: control character sets and
2839 graphic character sets. The former contain control characters such
2840 as `newline' and `escape' to provide control functions (control
2841 functions are also provided by escape sequences). The latter
2842 contain graphic characters such as 'A' and '-'. Emacs recognizes
2843 two control character sets and many graphic character sets.
2845 Graphic character sets are classified into one of the following
2846 four classes, according to the number of bytes (DIMENSION) and
2847 number of characters in one dimension (CHARS) of the set:
2848 - DIMENSION1_CHARS94
2849 - DIMENSION1_CHARS96
2850 - DIMENSION2_CHARS94
2851 - DIMENSION2_CHARS96
2853 In addition, each character set is assigned an identification tag,
2854 unique for each set, called the "final character" (denoted as <F>
2855 hereafter). The <F> of each character set is decided by ECMA(*)
2856 when it is registered in ISO. The code range of <F> is 0x30..0x7F
2857 (0x30..0x3F are for private use only).
2859 Note (*): ECMA = European Computer Manufacturers Association
2861 Here are examples of graphic character sets [NAME(<F>)]:
2862 o DIMENSION1_CHARS94 -- ASCII('B'), right-half-of-JISX0201('I'), ...
2863 o DIMENSION1_CHARS96 -- right-half-of-ISO8859-1('A'), ...
2864 o DIMENSION2_CHARS94 -- GB2312('A'), JISX0208('B'), ...
2865 o DIMENSION2_CHARS96 -- none for the moment
2867 A code area (1 byte=8 bits) is divided into 4 areas, C0, GL, C1, and GR.
2868 C0 [0x00..0x1F] -- control character plane 0
2869 GL [0x20..0x7F] -- graphic character plane 0
2870 C1 [0x80..0x9F] -- control character plane 1
2871 GR [0xA0..0xFF] -- graphic character plane 1
2873 A control character set is directly designated and invoked to C0 or
2874 C1 by an escape sequence. The most common case is that:
2875 - ISO646's control character set is designated/invoked to C0, and
2876 - ISO6429's control character set is designated/invoked to C1,
2877 and usually these designations/invocations are omitted in encoded
2878 text. In a 7-bit environment, only C0 can be used, and a control
2879 character for C1 is encoded by an appropriate escape sequence to
2880 fit into the environment. All control characters for C1 are
2881 defined to have corresponding escape sequences.
2883 A graphic character set is at first designated to one of four
2884 graphic registers (G0 through G3), then these graphic registers are
2885 invoked to GL or GR. These designations and invocations can be
2886 done independently. The most common case is that G0 is invoked to
2887 GL, G1 is invoked to GR, and ASCII is designated to G0. Usually
2888 these invocations and designations are omitted in encoded text.
2889 In a 7-bit environment, only GL can be used.
2891 When a graphic character set of CHARS94 is invoked to GL, codes
2892 0x20 and 0x7F of the GL area work as control characters SPACE and
2893 DEL respectively, and codes 0xA0 and 0xFF of the GR area should not
2896 There are two ways of invocation: locking-shift and single-shift.
2897 With locking-shift, the invocation lasts until the next different
2898 invocation, whereas with single-shift, the invocation affects the
2899 following character only and doesn't affect the locking-shift
2900 state. Invocations are done by the following control characters or
2903 ----------------------------------------------------------------------
2904 abbrev function cntrl escape seq description
2905 ----------------------------------------------------------------------
2906 SI/LS0 (shift-in) 0x0F none invoke G0 into GL
2907 SO/LS1 (shift-out) 0x0E none invoke G1 into GL
2908 LS2 (locking-shift-2) none ESC 'n' invoke G2 into GL
2909 LS3 (locking-shift-3) none ESC 'o' invoke G3 into GL
2910 LS1R (locking-shift-1 right) none ESC '~' invoke G1 into GR (*)
2911 LS2R (locking-shift-2 right) none ESC '}' invoke G2 into GR (*)
2912 LS3R (locking-shift 3 right) none ESC '|' invoke G3 into GR (*)
2913 SS2 (single-shift-2) 0x8E ESC 'N' invoke G2 for one char
2914 SS3 (single-shift-3) 0x8F ESC 'O' invoke G3 for one char
2915 ----------------------------------------------------------------------
2916 (*) These are not used by any known coding system.
2918 Control characters for these functions are defined by macros
2919 ISO_CODE_XXX in `coding.h'.
2921 Designations are done by the following escape sequences:
2922 ----------------------------------------------------------------------
2923 escape sequence description
2924 ----------------------------------------------------------------------
2925 ESC '(' <F> designate DIMENSION1_CHARS94<F> to G0
2926 ESC ')' <F> designate DIMENSION1_CHARS94<F> to G1
2927 ESC '*' <F> designate DIMENSION1_CHARS94<F> to G2
2928 ESC '+' <F> designate DIMENSION1_CHARS94<F> to G3
2929 ESC ',' <F> designate DIMENSION1_CHARS96<F> to G0 (*)
2930 ESC '-' <F> designate DIMENSION1_CHARS96<F> to G1
2931 ESC '.' <F> designate DIMENSION1_CHARS96<F> to G2
2932 ESC '/' <F> designate DIMENSION1_CHARS96<F> to G3
2933 ESC '$' '(' <F> designate DIMENSION2_CHARS94<F> to G0 (**)
2934 ESC '$' ')' <F> designate DIMENSION2_CHARS94<F> to G1
2935 ESC '$' '*' <F> designate DIMENSION2_CHARS94<F> to G2
2936 ESC '$' '+' <F> designate DIMENSION2_CHARS94<F> to G3
2937 ESC '$' ',' <F> designate DIMENSION2_CHARS96<F> to G0 (*)
2938 ESC '$' '-' <F> designate DIMENSION2_CHARS96<F> to G1
2939 ESC '$' '.' <F> designate DIMENSION2_CHARS96<F> to G2
2940 ESC '$' '/' <F> designate DIMENSION2_CHARS96<F> to G3
2941 ----------------------------------------------------------------------
2943 In this list, "DIMENSION1_CHARS94<F>" means a graphic character set
2944 of dimension 1, chars 94, and final character <F>, etc...
2946 Note (*): Although these designations are not allowed in ISO2022,
2947 Emacs accepts them on decoding, and produces them on encoding
2948 CHARS96 character sets in a coding system which is characterized as
2949 7-bit environment, non-locking-shift, and non-single-shift.
2951 Note (**): If <F> is '@', 'A', or 'B', the intermediate character
2952 '(' must be omitted. We refer to this as "short-form" hereafter.
2954 Now you may notice that there are a lot of ways of encoding the
2955 same multilingual text in ISO2022. Actually, there exist many
2956 coding systems such as Compound Text (used in X11's inter client
2957 communication, ISO-2022-JP (used in Japanese Internet), ISO-2022-KR
2958 (used in Korean Internet), EUC (Extended UNIX Code, used in Asian
2959 localized platforms), and all of these are variants of ISO2022.
2961 In addition to the above, Emacs handles two more kinds of escape
2962 sequences: ISO6429's direction specification and Emacs' private
2963 sequence for specifying character composition.
2965 ISO6429's direction specification takes the following form:
2966 o CSI ']' -- end of the current direction
2967 o CSI '0' ']' -- end of the current direction
2968 o CSI '1' ']' -- start of left-to-right text
2969 o CSI '2' ']' -- start of right-to-left text
2970 The control character CSI (0x9B: control sequence introducer) is
2971 abbreviated to the escape sequence ESC '[' in a 7-bit environment.
2973 Character composition specification takes the following form:
2974 o ESC '0' -- start relative composition
2975 o ESC '1' -- end composition
2976 o ESC '2' -- start rule-base composition (*)
2977 o ESC '3' -- start relative composition with alternate chars (**)
2978 o ESC '4' -- start rule-base composition with alternate chars (**)
2979 Since these are not standard escape sequences of any ISO standard,
2980 the use of them with these meanings is restricted to Emacs only.
2982 (*) This form is used only in Emacs 20.7 and older versions,
2983 but newer versions can safely decode it.
2984 (**) This form is used only in Emacs 21.1 and newer versions,
2985 and older versions can't decode it.
2987 Here's a list of example usages of these composition escape
2988 sequences (categorized by `enum composition_method').
2990 COMPOSITION_RELATIVE:
2991 ESC 0 CHAR [ CHAR ] ESC 1
2992 COMPOSITION_WITH_RULE:
2993 ESC 2 CHAR [ RULE CHAR ] ESC 1
2994 COMPOSITION_WITH_ALTCHARS:
2995 ESC 3 ALTCHAR [ ALTCHAR ] ESC 0 CHAR [ CHAR ] ESC 1
2996 COMPOSITION_WITH_RULE_ALTCHARS:
2997 ESC 4 ALTCHAR [ RULE ALTCHAR ] ESC 0 CHAR [ CHAR ] ESC 1 */
2999 enum iso_code_class_type iso_code_class
[256];
3001 #define SAFE_CHARSET_P(coding, id) \
3002 ((id) <= (coding)->max_charset_id \
3003 && (coding)->safe_charsets[id] != 255)
3006 #define SHIFT_OUT_OK(category) \
3007 (CODING_ISO_INITIAL (&coding_categories[category], 1) >= 0)
3010 setup_iso_safe_charsets (attrs
)
3013 Lisp_Object charset_list
, safe_charsets
;
3014 Lisp_Object request
;
3015 Lisp_Object reg_usage
;
3018 int flags
= XINT (AREF (attrs
, coding_attr_iso_flags
));
3021 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
3022 if ((flags
& CODING_ISO_FLAG_FULL_SUPPORT
)
3023 && ! EQ (charset_list
, Viso_2022_charset_list
))
3025 CODING_ATTR_CHARSET_LIST (attrs
)
3026 = charset_list
= Viso_2022_charset_list
;
3027 ASET (attrs
, coding_attr_safe_charsets
, Qnil
);
3030 if (STRINGP (AREF (attrs
, coding_attr_safe_charsets
)))
3034 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
3036 int id
= XINT (XCAR (tail
));
3037 if (max_charset_id
< id
)
3038 max_charset_id
= id
;
3041 safe_charsets
= make_uninit_string (max_charset_id
+ 1);
3042 memset (SDATA (safe_charsets
), 255, max_charset_id
+ 1);
3043 request
= AREF (attrs
, coding_attr_iso_request
);
3044 reg_usage
= AREF (attrs
, coding_attr_iso_usage
);
3045 reg94
= XINT (XCAR (reg_usage
));
3046 reg96
= XINT (XCDR (reg_usage
));
3048 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
3052 struct charset
*charset
;
3055 charset
= CHARSET_FROM_ID (XINT (id
));
3056 reg
= Fcdr (Fassq (id
, request
));
3058 SSET (safe_charsets
, XINT (id
), XINT (reg
));
3059 else if (charset
->iso_chars_96
)
3062 SSET (safe_charsets
, XINT (id
), reg96
);
3067 SSET (safe_charsets
, XINT (id
), reg94
);
3070 ASET (attrs
, coding_attr_safe_charsets
, safe_charsets
);
3074 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
3075 Check if a text is encoded in one of ISO-2022 based codig systems.
3076 If it is, return 1, else return 0. */
3079 detect_coding_iso_2022 (coding
, detect_info
)
3080 struct coding_system
*coding
;
3081 struct coding_detection_info
*detect_info
;
3083 const unsigned char *src
= coding
->source
, *src_base
= src
;
3084 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
3085 int multibytep
= coding
->src_multibyte
;
3086 int single_shifting
= 0;
3089 int consumed_chars
= 0;
3093 int composition_count
= -1;
3095 detect_info
->checked
|= CATEGORY_MASK_ISO
;
3097 for (i
= coding_category_iso_7
; i
<= coding_category_iso_8_else
; i
++)
3099 struct coding_system
*this = &(coding_categories
[i
]);
3100 Lisp_Object attrs
, val
;
3104 attrs
= CODING_ID_ATTRS (this->id
);
3105 if (CODING_ISO_FLAGS (this) & CODING_ISO_FLAG_FULL_SUPPORT
3106 && ! EQ (CODING_ATTR_CHARSET_LIST (attrs
), Viso_2022_charset_list
))
3107 setup_iso_safe_charsets (attrs
);
3108 val
= CODING_ATTR_SAFE_CHARSETS (attrs
);
3109 this->max_charset_id
= SCHARS (val
) - 1;
3110 this->safe_charsets
= SDATA (val
);
3113 /* A coding system of this category is always ASCII compatible. */
3114 src
+= coding
->head_ascii
;
3116 while (rejected
!= CATEGORY_MASK_ISO
)
3123 if (inhibit_iso_escape_detection
)
3125 single_shifting
= 0;
3127 if (c
>= '(' && c
<= '/')
3129 /* Designation sequence for a charset of dimension 1. */
3131 if (c1
< ' ' || c1
>= 0x80
3132 || (id
= iso_charset_table
[0][c
>= ','][c1
]) < 0)
3133 /* Invalid designation sequence. Just ignore. */
3138 /* Designation sequence for a charset of dimension 2. */
3140 if (c
>= '@' && c
<= 'B')
3141 /* Designation for JISX0208.1978, GB2312, or JISX0208. */
3142 id
= iso_charset_table
[1][0][c
];
3143 else if (c
>= '(' && c
<= '/')
3146 if (c1
< ' ' || c1
>= 0x80
3147 || (id
= iso_charset_table
[1][c
>= ','][c1
]) < 0)
3148 /* Invalid designation sequence. Just ignore. */
3152 /* Invalid designation sequence. Just ignore it. */
3155 else if (c
== 'N' || c
== 'O')
3157 /* ESC <Fe> for SS2 or SS3. */
3158 single_shifting
= 1;
3159 rejected
|= CATEGORY_MASK_ISO_7BIT
| CATEGORY_MASK_ISO_8BIT
;
3164 /* End of composition. */
3165 if (composition_count
< 0
3166 || composition_count
> MAX_COMPOSITION_COMPONENTS
)
3169 composition_count
= -1;
3170 found
|= CATEGORY_MASK_ISO
;
3172 else if (c
>= '0' && c
<= '4')
3174 /* ESC <Fp> for start/end composition. */
3175 composition_count
= 0;
3180 /* Invalid escape sequence. Just ignore it. */
3184 /* We found a valid designation sequence for CHARSET. */
3185 rejected
|= CATEGORY_MASK_ISO_8BIT
;
3186 if (SAFE_CHARSET_P (&coding_categories
[coding_category_iso_7
],
3188 found
|= CATEGORY_MASK_ISO_7
;
3190 rejected
|= CATEGORY_MASK_ISO_7
;
3191 if (SAFE_CHARSET_P (&coding_categories
[coding_category_iso_7_tight
],
3193 found
|= CATEGORY_MASK_ISO_7_TIGHT
;
3195 rejected
|= CATEGORY_MASK_ISO_7_TIGHT
;
3196 if (SAFE_CHARSET_P (&coding_categories
[coding_category_iso_7_else
],
3198 found
|= CATEGORY_MASK_ISO_7_ELSE
;
3200 rejected
|= CATEGORY_MASK_ISO_7_ELSE
;
3201 if (SAFE_CHARSET_P (&coding_categories
[coding_category_iso_8_else
],
3203 found
|= CATEGORY_MASK_ISO_8_ELSE
;
3205 rejected
|= CATEGORY_MASK_ISO_8_ELSE
;
3210 /* Locking shift out/in. */
3211 if (inhibit_iso_escape_detection
)
3213 single_shifting
= 0;
3214 rejected
|= CATEGORY_MASK_ISO_7BIT
| CATEGORY_MASK_ISO_8BIT
;
3218 /* Control sequence introducer. */
3219 single_shifting
= 0;
3220 rejected
|= CATEGORY_MASK_ISO_7BIT
| CATEGORY_MASK_ISO_7_ELSE
;
3221 found
|= CATEGORY_MASK_ISO_8_ELSE
;
3222 goto check_extra_latin
;
3227 if (inhibit_iso_escape_detection
)
3229 single_shifting
= 0;
3230 rejected
|= CATEGORY_MASK_ISO_7BIT
;
3231 if (CODING_ISO_FLAGS (&coding_categories
[coding_category_iso_8_1
])
3232 & CODING_ISO_FLAG_SINGLE_SHIFT
)
3233 found
|= CATEGORY_MASK_ISO_8_1
, single_shifting
= 1;
3234 if (CODING_ISO_FLAGS (&coding_categories
[coding_category_iso_8_2
])
3235 & CODING_ISO_FLAG_SINGLE_SHIFT
)
3236 found
|= CATEGORY_MASK_ISO_8_2
, single_shifting
= 1;
3237 if (single_shifting
)
3239 goto check_extra_latin
;
3246 if (composition_count
>= 0)
3247 composition_count
++;
3248 single_shifting
= 0;
3253 rejected
|= CATEGORY_MASK_ISO_7BIT
| CATEGORY_MASK_ISO_7_ELSE
;
3254 found
|= CATEGORY_MASK_ISO_8_1
;
3255 /* Check the length of succeeding codes of the range
3256 0xA0..0FF. If the byte length is even, we include
3257 CATEGORY_MASK_ISO_8_2 in `found'. We can check this
3258 only when we are not single shifting. */
3259 if (! single_shifting
3260 && ! (rejected
& CATEGORY_MASK_ISO_8_2
))
3263 while (src
< src_end
)
3275 if (i
& 1 && src
< src_end
)
3277 rejected
|= CATEGORY_MASK_ISO_8_2
;
3278 if (composition_count
>= 0)
3279 composition_count
+= i
;
3283 found
|= CATEGORY_MASK_ISO_8_2
;
3284 if (composition_count
>= 0)
3285 composition_count
+= i
/ 2;
3291 single_shifting
= 0;
3292 if (! VECTORP (Vlatin_extra_code_table
)
3293 || NILP (XVECTOR (Vlatin_extra_code_table
)->contents
[c
]))
3295 rejected
= CATEGORY_MASK_ISO
;
3298 if (CODING_ISO_FLAGS (&coding_categories
[coding_category_iso_8_1
])
3299 & CODING_ISO_FLAG_LATIN_EXTRA
)
3300 found
|= CATEGORY_MASK_ISO_8_1
;
3302 rejected
|= CATEGORY_MASK_ISO_8_1
;
3303 rejected
|= CATEGORY_MASK_ISO_8_2
;
3306 detect_info
->rejected
|= CATEGORY_MASK_ISO
;
3310 detect_info
->rejected
|= rejected
;
3311 detect_info
->found
|= (found
& ~rejected
);
3316 /* Set designation state into CODING. Set CHARS_96 to -1 if the
3317 escape sequence should be kept. */
3318 #define DECODE_DESIGNATION(reg, dim, chars_96, final) \
3322 if (final < '0' || final >= 128 \
3323 || ((id = ISO_CHARSET_TABLE (dim, chars_96, final)) < 0) \
3324 || !SAFE_CHARSET_P (coding, id)) \
3326 CODING_ISO_DESIGNATION (coding, reg) = -2; \
3330 prev = CODING_ISO_DESIGNATION (coding, reg); \
3331 if (id == charset_jisx0201_roman) \
3333 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_USE_ROMAN) \
3334 id = charset_ascii; \
3336 else if (id == charset_jisx0208_1978) \
3338 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_USE_OLDJIS) \
3339 id = charset_jisx0208; \
3341 CODING_ISO_DESIGNATION (coding, reg) = id; \
3342 /* If there was an invalid designation to REG previously, and this \
3343 designation is ASCII to REG, we should keep this designation \
3345 if (prev == -2 && id == charset_ascii) \
3350 /* Handle these composition sequence (ALT: alternate char):
3352 (1) relative composition: ESC 0 CHAR ... ESC 1
3353 (2) rulebase composition: ESC 2 CHAR RULE CHAR RULE ... CHAR ESC 1
3354 (3) altchar composition: ESC 3 ALT ... ALT ESC 0 CHAR ... ESC 1
3355 (4) alt&rule composition: ESC 4 ALT RULE ... ALT ESC 0 CHAR ... ESC 1
3357 When the start sequence (ESC 0/2/3/4) is found, this annotation
3360 [ -LENGTH(==-5) CODING_ANNOTATE_COMPOSITION_MASK NCHARS(==0) 0 METHOD ]
3362 Then, upon reading CHAR or RULE (one or two bytes), these codes are
3363 produced until the end sequence (ESC 1) is found:
3366 (2) CHAR -2 DECODED-RULE CHAR -2 DECODED-RULE ... CHAR
3367 (3) ALT ... ALT -1 -1 CHAR ... CHAR
3368 (4) ALT -2 DECODED-RULE ALT -2 DECODED-RULE ... ALT -1 -1 CHAR ... CHAR
3370 When the end sequence (ESC 1) is found, LENGTH and NCHARS in the
3371 annotation header is updated as below:
3373 (1) LENGTH: unchanged, NCHARS: number of CHARs
3374 (2) LENGTH: unchanged, NCHARS: number of CHARs
3375 (3) LENGTH: += number of ALTs + 2, NCHARS: number of CHARs
3376 (4) LENGTH: += number of ALTs * 3, NCHARS: number of CHARs
3378 If an error is found while composing, the annotation header is
3381 [ ESC '0'/'2'/'3'/'4' -2 0 ]
3383 and the sequence [ -2 DECODED-RULE ] is changed to the original
3384 byte sequence as below:
3385 o the original byte sequence is B: [ B -1 ]
3386 o the original byte sequence is B1 B2: [ B1 B2 ]
3387 and the sequence [ -1 -1 ] is changed to the original byte
3392 /* Decode a composition rule C1 and maybe one more byte from the
3393 source, and set RULE to the encoded composition rule, NBYTES to the
3394 length of the composition rule. If the rule is invalid, set RULE
3395 to some negative value. */
3397 #define DECODE_COMPOSITION_RULE(rule, nbytes) \
3402 if (rule < 81) /* old format (before ver.21) */ \
3404 int gref = (rule) / 9; \
3405 int nref = (rule) % 9; \
3406 if (gref == 4) gref = 10; \
3407 if (nref == 4) nref = 10; \
3408 rule = COMPOSITION_ENCODE_RULE (gref, nref); \
3411 else /* new format (after ver.21) */ \
3415 ONE_MORE_BYTE (c); \
3416 rule = COMPOSITION_ENCODE_RULE (rule - 81, c - 32); \
3418 rule += 0x100; /* to destinguish it from the old format */ \
3423 #define ENCODE_COMPOSITION_RULE(rule) \
3425 int gref = (rule % 0x100) / 12, nref = (rule % 0x100) % 12; \
3427 if (rule < 0x100) /* old format */ \
3429 if (gref == 10) gref = 4; \
3430 if (nref == 10) nref = 4; \
3431 charbuf[idx] = 32 + gref * 9 + nref; \
3432 charbuf[idx + 1] = -1; \
3435 else /* new format */ \
3437 charbuf[idx] = 32 + 81 + gref; \
3438 charbuf[idx + 1] = 32 + nref; \
3443 /* Finish the current composition as invalid. */
3445 static int finish_composition
P_ ((int *, struct composition_status
*));
3448 finish_composition (charbuf
, cmp_status
)
3450 struct composition_status
*cmp_status
;
3452 int idx
= - cmp_status
->length
;
3455 /* Recover the original ESC sequence */
3456 charbuf
[idx
++] = ISO_CODE_ESC
;
3457 charbuf
[idx
++] = (cmp_status
->method
== COMPOSITION_RELATIVE
? '0'
3458 : cmp_status
->method
== COMPOSITION_WITH_RULE
? '2'
3459 : cmp_status
->method
== COMPOSITION_WITH_ALTCHARS
? '3'
3460 /* cmp_status->method == COMPOSITION_WITH_RULE_ALTCHARS */
3462 charbuf
[idx
++] = -2;
3464 charbuf
[idx
++] = -1;
3465 new_chars
= cmp_status
->nchars
;
3466 if (cmp_status
->method
>= COMPOSITION_WITH_RULE
)
3467 for (; idx
< 0; idx
++)
3469 int elt
= charbuf
[idx
];
3473 ENCODE_COMPOSITION_RULE (charbuf
[idx
+ 1]);
3478 charbuf
[idx
++] = ISO_CODE_ESC
;
3483 cmp_status
->state
= COMPOSING_NO
;
3487 /* If characers are under composition, finish the composition. */
3488 #define MAYBE_FINISH_COMPOSITION() \
3490 if (cmp_status->state != COMPOSING_NO) \
3491 char_offset += finish_composition (charbuf, cmp_status); \
3494 /* Handle composition start sequence ESC 0, ESC 2, ESC 3, or ESC 4.
3496 ESC 0 : relative composition : ESC 0 CHAR ... ESC 1
3497 ESC 2 : rulebase composition : ESC 2 CHAR RULE CHAR RULE ... CHAR ESC 1
3498 ESC 3 : altchar composition : ESC 3 CHAR ... ESC 0 CHAR ... ESC 1
3499 ESC 4 : alt&rule composition : ESC 4 CHAR RULE ... CHAR ESC 0 CHAR ... ESC 1
3501 Produce this annotation sequence now:
3503 [ -LENGTH(==-4) CODING_ANNOTATE_COMPOSITION_MASK NCHARS(==0) METHOD ]
3506 #define DECODE_COMPOSITION_START(c1) \
3509 && ((cmp_status->state == COMPOSING_COMPONENT_CHAR \
3510 && cmp_status->method == COMPOSITION_WITH_ALTCHARS) \
3511 || (cmp_status->state == COMPOSING_COMPONENT_RULE \
3512 && cmp_status->method == COMPOSITION_WITH_RULE_ALTCHARS))) \
3516 cmp_status->state = COMPOSING_CHAR; \
3517 cmp_status->length += 2; \
3521 MAYBE_FINISH_COMPOSITION (); \
3522 cmp_status->method = (c1 == '0' ? COMPOSITION_RELATIVE \
3523 : c1 == '2' ? COMPOSITION_WITH_RULE \
3524 : c1 == '3' ? COMPOSITION_WITH_ALTCHARS \
3525 : COMPOSITION_WITH_RULE_ALTCHARS); \
3527 = (c1 <= '2' ? COMPOSING_CHAR : COMPOSING_COMPONENT_CHAR); \
3528 ADD_COMPOSITION_DATA (charbuf, 0, 0, cmp_status->method); \
3529 cmp_status->length = MAX_ANNOTATION_LENGTH; \
3530 cmp_status->nchars = cmp_status->ncomps = 0; \
3531 coding->annotated = 1; \
3536 /* Handle composition end sequence ESC 1. */
3538 #define DECODE_COMPOSITION_END() \
3540 if (cmp_status->nchars == 0 \
3541 || ((cmp_status->state == COMPOSING_CHAR) \
3542 == (cmp_status->method == COMPOSITION_WITH_RULE))) \
3544 MAYBE_FINISH_COMPOSITION (); \
3545 goto invalid_code; \
3547 if (cmp_status->method == COMPOSITION_WITH_ALTCHARS) \
3548 charbuf[- cmp_status->length] -= cmp_status->ncomps + 2; \
3549 else if (cmp_status->method == COMPOSITION_WITH_RULE_ALTCHARS) \
3550 charbuf[- cmp_status->length] -= cmp_status->ncomps * 3; \
3551 charbuf[- cmp_status->length + 2] = cmp_status->nchars; \
3552 char_offset += cmp_status->nchars; \
3553 cmp_status->state = COMPOSING_NO; \
3556 /* Store a composition rule RULE in charbuf, and update cmp_status. */
3558 #define STORE_COMPOSITION_RULE(rule) \
3561 *charbuf++ = rule; \
3562 cmp_status->length += 2; \
3563 cmp_status->state--; \
3566 /* Store a composed char or a component char C in charbuf, and update
3569 #define STORE_COMPOSITION_CHAR(c) \
3572 cmp_status->length++; \
3573 if (cmp_status->state == COMPOSING_CHAR) \
3574 cmp_status->nchars++; \
3576 cmp_status->ncomps++; \
3577 if (cmp_status->method == COMPOSITION_WITH_RULE \
3578 || (cmp_status->method == COMPOSITION_WITH_RULE_ALTCHARS \
3579 && cmp_status->state == COMPOSING_COMPONENT_CHAR)) \
3580 cmp_status->state++; \
3584 /* See the above "GENERAL NOTES on `decode_coding_XXX ()' functions". */
3587 decode_coding_iso_2022 (coding
)
3588 struct coding_system
*coding
;
3590 const unsigned char *src
= coding
->source
+ coding
->consumed
;
3591 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
3592 const unsigned char *src_base
;
3593 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
3594 /* We may produce two annocations (charset and composition) in one
3595 loop and one more charset annocation at the end. */
3597 = coding
->charbuf
+ coding
->charbuf_size
- (MAX_ANNOTATION_LENGTH
* 3);
3598 int consumed_chars
= 0, consumed_chars_base
;
3599 int multibytep
= coding
->src_multibyte
;
3600 /* Charsets invoked to graphic plane 0 and 1 respectively. */
3601 int charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3602 int charset_id_1
= CODING_ISO_INVOKED_CHARSET (coding
, 1);
3603 int charset_id_2
, charset_id_3
;
3604 struct charset
*charset
;
3606 struct composition_status
*cmp_status
= CODING_ISO_CMP_STATUS (coding
);
3607 Lisp_Object attrs
, charset_list
;
3608 int char_offset
= coding
->produced_char
;
3609 int last_offset
= char_offset
;
3610 int last_id
= charset_ascii
;
3612 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
3613 int byte_after_cr
= -1;
3616 CODING_GET_INFO (coding
, attrs
, charset_list
);
3617 setup_iso_safe_charsets (attrs
);
3618 /* Charset list may have been changed. */
3619 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
3620 coding
->safe_charsets
= SDATA (CODING_ATTR_SAFE_CHARSETS (attrs
));
3622 if (cmp_status
->state
!= COMPOSING_NO
)
3624 for (i
= 0; i
< cmp_status
->length
; i
++)
3625 *charbuf
++ = cmp_status
->carryover
[i
];
3626 coding
->annotated
= 1;
3634 consumed_chars_base
= consumed_chars
;
3636 if (charbuf
>= charbuf_end
)
3638 if (byte_after_cr
>= 0)
3643 if (byte_after_cr
>= 0)
3644 c1
= byte_after_cr
, byte_after_cr
= -1;
3650 if (CODING_ISO_EXTSEGMENT_LEN (coding
) > 0)
3652 *charbuf
++ = ASCII_BYTE_P (c1
) ? c1
: BYTE8_TO_CHAR (c1
);
3654 CODING_ISO_EXTSEGMENT_LEN (coding
)--;
3658 if (CODING_ISO_EMBEDDED_UTF_8 (coding
))
3660 if (c1
== ISO_CODE_ESC
)
3662 if (src
+ 1 >= src_end
)
3663 goto no_more_source
;
3664 *charbuf
++ = ISO_CODE_ESC
;
3666 if (src
[0] == '%' && src
[1] == '@')
3669 consumed_chars
+= 2;
3671 /* We are sure charbuf can contain two more chars. */
3674 CODING_ISO_EMBEDDED_UTF_8 (coding
) = 0;
3679 *charbuf
++ = ASCII_BYTE_P (c1
) ? c1
: BYTE8_TO_CHAR (c1
);
3685 if ((cmp_status
->state
== COMPOSING_RULE
3686 || cmp_status
->state
== COMPOSING_COMPONENT_RULE
)
3687 && c1
!= ISO_CODE_ESC
)
3691 DECODE_COMPOSITION_RULE (rule
, nbytes
);
3694 STORE_COMPOSITION_RULE (rule
);
3698 /* We produce at most one character. */
3699 switch (iso_code_class
[c1
])
3701 case ISO_0x20_or_0x7F
:
3702 if (charset_id_0
< 0
3703 || ! CHARSET_ISO_CHARS_96 (CHARSET_FROM_ID (charset_id_0
)))
3704 /* This is SPACE or DEL. */
3705 charset
= CHARSET_FROM_ID (charset_ascii
);
3707 charset
= CHARSET_FROM_ID (charset_id_0
);
3710 case ISO_graphic_plane_0
:
3711 if (charset_id_0
< 0)
3712 charset
= CHARSET_FROM_ID (charset_ascii
);
3714 charset
= CHARSET_FROM_ID (charset_id_0
);
3717 case ISO_0xA0_or_0xFF
:
3718 if (charset_id_1
< 0
3719 || ! CHARSET_ISO_CHARS_96 (CHARSET_FROM_ID (charset_id_1
))
3720 || CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SEVEN_BITS
)
3722 /* This is a graphic character, we fall down ... */
3724 case ISO_graphic_plane_1
:
3725 if (charset_id_1
< 0)
3727 charset
= CHARSET_FROM_ID (charset_id_1
);
3731 if (eol_crlf
&& c1
== '\r')
3732 ONE_MORE_BYTE (byte_after_cr
);
3733 MAYBE_FINISH_COMPOSITION ();
3734 charset
= CHARSET_FROM_ID (charset_ascii
);
3741 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_LOCKING_SHIFT
)
3742 || CODING_ISO_DESIGNATION (coding
, 1) < 0)
3744 CODING_ISO_INVOCATION (coding
, 0) = 1;
3745 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3749 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_LOCKING_SHIFT
))
3751 CODING_ISO_INVOCATION (coding
, 0) = 0;
3752 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3755 case ISO_single_shift_2_7
:
3756 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SEVEN_BITS
))
3758 case ISO_single_shift_2
:
3759 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
))
3761 /* SS2 is handled as an escape sequence of ESC 'N' */
3763 goto label_escape_sequence
;
3765 case ISO_single_shift_3
:
3766 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
))
3768 /* SS2 is handled as an escape sequence of ESC 'O' */
3770 goto label_escape_sequence
;
3772 case ISO_control_sequence_introducer
:
3773 /* CSI is handled as an escape sequence of ESC '[' ... */
3775 goto label_escape_sequence
;
3779 label_escape_sequence
:
3780 /* Escape sequences handled here are invocation,
3781 designation, direction specification, and character
3782 composition specification. */
3785 case '&': /* revision of following character set */
3787 if (!(c1
>= '@' && c1
<= '~'))
3790 if (c1
!= ISO_CODE_ESC
)
3793 goto label_escape_sequence
;
3795 case '$': /* designation of 2-byte character set */
3796 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_DESIGNATION
))
3802 if (c1
>= '@' && c1
<= 'B')
3803 { /* designation of JISX0208.1978, GB2312.1980,
3805 reg
= 0, chars96
= 0;
3807 else if (c1
>= 0x28 && c1
<= 0x2B)
3808 { /* designation of DIMENSION2_CHARS94 character set */
3809 reg
= c1
- 0x28, chars96
= 0;
3812 else if (c1
>= 0x2C && c1
<= 0x2F)
3813 { /* designation of DIMENSION2_CHARS96 character set */
3814 reg
= c1
- 0x2C, chars96
= 1;
3819 DECODE_DESIGNATION (reg
, 2, chars96
, c1
);
3820 /* We must update these variables now. */
3822 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3824 charset_id_1
= CODING_ISO_INVOKED_CHARSET (coding
, 1);
3830 case 'n': /* invocation of locking-shift-2 */
3831 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_LOCKING_SHIFT
)
3832 || CODING_ISO_DESIGNATION (coding
, 2) < 0)
3834 CODING_ISO_INVOCATION (coding
, 0) = 2;
3835 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3838 case 'o': /* invocation of locking-shift-3 */
3839 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_LOCKING_SHIFT
)
3840 || CODING_ISO_DESIGNATION (coding
, 3) < 0)
3842 CODING_ISO_INVOCATION (coding
, 0) = 3;
3843 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3846 case 'N': /* invocation of single-shift-2 */
3847 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
)
3848 || CODING_ISO_DESIGNATION (coding
, 2) < 0)
3850 charset_id_2
= CODING_ISO_DESIGNATION (coding
, 2);
3851 if (charset_id_2
< 0)
3852 charset
= CHARSET_FROM_ID (charset_ascii
);
3854 charset
= CHARSET_FROM_ID (charset_id_2
);
3856 if (c1
< 0x20 || (c1
>= 0x80 && c1
< 0xA0))
3860 case 'O': /* invocation of single-shift-3 */
3861 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
)
3862 || CODING_ISO_DESIGNATION (coding
, 3) < 0)
3864 charset_id_3
= CODING_ISO_DESIGNATION (coding
, 3);
3865 if (charset_id_3
< 0)
3866 charset
= CHARSET_FROM_ID (charset_ascii
);
3868 charset
= CHARSET_FROM_ID (charset_id_3
);
3870 if (c1
< 0x20 || (c1
>= 0x80 && c1
< 0xA0))
3874 case '0': case '2': case '3': case '4': /* start composition */
3875 if (! (coding
->common_flags
& CODING_ANNOTATE_COMPOSITION_MASK
))
3877 if (last_id
!= charset_ascii
)
3879 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
3880 last_id
= charset_ascii
;
3881 last_offset
= char_offset
;
3883 DECODE_COMPOSITION_START (c1
);
3886 case '1': /* end composition */
3887 if (cmp_status
->state
== COMPOSING_NO
)
3889 DECODE_COMPOSITION_END ();
3892 case '[': /* specification of direction */
3893 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_DIRECTION
))
3895 /* For the moment, nested direction is not supported.
3896 So, `coding->mode & CODING_MODE_DIRECTION' zero means
3897 left-to-right, and nozero means right-to-left. */
3901 case ']': /* end of the current direction */
3902 coding
->mode
&= ~CODING_MODE_DIRECTION
;
3904 case '0': /* end of the current direction */
3905 case '1': /* start of left-to-right direction */
3908 coding
->mode
&= ~CODING_MODE_DIRECTION
;
3913 case '2': /* start of right-to-left direction */
3916 coding
->mode
|= CODING_MODE_DIRECTION
;
3930 /* CTEXT extended segment:
3931 ESC % / [0-4] M L --ENCODING-NAME-- \002 --BYTES--
3932 We keep these bytes as is for the moment.
3933 They may be decoded by post-read-conversion. */
3937 ONE_MORE_BYTE (dim
);
3938 if (dim
< '0' || dim
> '4')
3946 size
= ((M
- 128) * 128) + (L
- 128);
3947 if (charbuf
+ 6 > charbuf_end
)
3949 *charbuf
++ = ISO_CODE_ESC
;
3953 *charbuf
++ = BYTE8_TO_CHAR (M
);
3954 *charbuf
++ = BYTE8_TO_CHAR (L
);
3955 CODING_ISO_EXTSEGMENT_LEN (coding
) = size
;
3959 /* XFree86 extension for embedding UTF-8 in CTEXT:
3960 ESC % G --UTF-8-BYTES-- ESC % @
3961 We keep these bytes as is for the moment.
3962 They may be decoded by post-read-conversion. */
3963 if (charbuf
+ 3 > charbuf_end
)
3965 *charbuf
++ = ISO_CODE_ESC
;
3968 CODING_ISO_EMBEDDED_UTF_8 (coding
) = 1;
3976 if (! (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_DESIGNATION
))
3981 if (c1
>= 0x28 && c1
<= 0x2B)
3982 { /* designation of DIMENSION1_CHARS94 character set */
3983 reg
= c1
- 0x28, chars96
= 0;
3986 else if (c1
>= 0x2C && c1
<= 0x2F)
3987 { /* designation of DIMENSION1_CHARS96 character set */
3988 reg
= c1
- 0x2C, chars96
= 1;
3993 DECODE_DESIGNATION (reg
, 1, chars96
, c1
);
3994 /* We must update these variables now. */
3996 charset_id_0
= CODING_ISO_INVOKED_CHARSET (coding
, 0);
3998 charset_id_1
= CODING_ISO_INVOKED_CHARSET (coding
, 1);
4006 if (cmp_status
->state
== COMPOSING_NO
4007 && charset
->id
!= charset_ascii
4008 && last_id
!= charset
->id
)
4010 if (last_id
!= charset_ascii
)
4011 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
4012 last_id
= charset
->id
;
4013 last_offset
= char_offset
;
4016 /* Now we know CHARSET and 1st position code C1 of a character.
4017 Produce a decoded character while getting 2nd and 3rd
4018 position codes C2, C3 if necessary. */
4019 if (CHARSET_DIMENSION (charset
) > 1)
4022 if (c2
< 0x20 || (c2
>= 0x80 && c2
< 0xA0)
4023 || ((c1
& 0x80) != (c2
& 0x80)))
4024 /* C2 is not in a valid range. */
4026 if (CHARSET_DIMENSION (charset
) == 2)
4027 c1
= (c1
<< 8) | c2
;
4031 if (c3
< 0x20 || (c3
>= 0x80 && c3
< 0xA0)
4032 || ((c1
& 0x80) != (c3
& 0x80)))
4033 /* C3 is not in a valid range. */
4035 c1
= (c1
<< 16) | (c2
<< 8) | c2
;
4039 CODING_DECODE_CHAR (coding
, src
, src_base
, src_end
, charset
, c1
, c
);
4042 MAYBE_FINISH_COMPOSITION ();
4043 for (; src_base
< src
; src_base
++, char_offset
++)
4045 if (ASCII_BYTE_P (*src_base
))
4046 *charbuf
++ = *src_base
;
4048 *charbuf
++ = BYTE8_TO_CHAR (*src_base
);
4051 else if (cmp_status
->state
== COMPOSING_NO
)
4056 else if ((cmp_status
->state
== COMPOSING_CHAR
4057 ? cmp_status
->nchars
4058 : cmp_status
->ncomps
)
4059 >= MAX_COMPOSITION_COMPONENTS
)
4061 /* Too long composition. */
4062 MAYBE_FINISH_COMPOSITION ();
4067 STORE_COMPOSITION_CHAR (c
);
4071 MAYBE_FINISH_COMPOSITION ();
4073 consumed_chars
= consumed_chars_base
;
4075 *charbuf
++ = c
< 0 ? -c
: ASCII_BYTE_P (c
) ? c
: BYTE8_TO_CHAR (c
);
4085 if (cmp_status
->state
!= COMPOSING_NO
)
4087 if (coding
->mode
& CODING_MODE_LAST_BLOCK
)
4088 MAYBE_FINISH_COMPOSITION ();
4091 charbuf
-= cmp_status
->length
;
4092 for (i
= 0; i
< cmp_status
->length
; i
++)
4093 cmp_status
->carryover
[i
] = charbuf
[i
];
4096 else if (last_id
!= charset_ascii
)
4097 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
4098 coding
->consumed_char
+= consumed_chars_base
;
4099 coding
->consumed
= src_base
- coding
->source
;
4100 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
4104 /* ISO2022 encoding stuff. */
4107 It is not enough to say just "ISO2022" on encoding, we have to
4108 specify more details. In Emacs, each coding system of ISO2022
4109 variant has the following specifications:
4110 1. Initial designation to G0 thru G3.
4111 2. Allows short-form designation?
4112 3. ASCII should be designated to G0 before control characters?
4113 4. ASCII should be designated to G0 at end of line?
4114 5. 7-bit environment or 8-bit environment?
4115 6. Use locking-shift?
4116 7. Use Single-shift?
4117 And the following two are only for Japanese:
4118 8. Use ASCII in place of JIS0201-1976-Roman?
4119 9. Use JISX0208-1983 in place of JISX0208-1978?
4120 These specifications are encoded in CODING_ISO_FLAGS (coding) as flag bits
4121 defined by macros CODING_ISO_FLAG_XXX. See `coding.h' for more
4125 /* Produce codes (escape sequence) for designating CHARSET to graphic
4126 register REG at DST, and increment DST. If <final-char> of CHARSET is
4127 '@', 'A', or 'B' and the coding system CODING allows, produce
4128 designation sequence of short-form. */
4130 #define ENCODE_DESIGNATION(charset, reg, coding) \
4132 unsigned char final_char = CHARSET_ISO_FINAL (charset); \
4133 char *intermediate_char_94 = "()*+"; \
4134 char *intermediate_char_96 = ",-./"; \
4135 int revision = -1; \
4138 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_REVISION) \
4139 revision = CHARSET_ISO_REVISION (charset); \
4141 if (revision >= 0) \
4143 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, '&'); \
4144 EMIT_ONE_BYTE ('@' + revision); \
4146 EMIT_ONE_ASCII_BYTE (ISO_CODE_ESC); \
4147 if (CHARSET_DIMENSION (charset) == 1) \
4149 if (! CHARSET_ISO_CHARS_96 (charset)) \
4150 c = intermediate_char_94[reg]; \
4152 c = intermediate_char_96[reg]; \
4153 EMIT_ONE_ASCII_BYTE (c); \
4157 EMIT_ONE_ASCII_BYTE ('$'); \
4158 if (! CHARSET_ISO_CHARS_96 (charset)) \
4160 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_LONG_FORM \
4162 || final_char < '@' || final_char > 'B') \
4163 EMIT_ONE_ASCII_BYTE (intermediate_char_94[reg]); \
4166 EMIT_ONE_ASCII_BYTE (intermediate_char_96[reg]); \
4168 EMIT_ONE_ASCII_BYTE (final_char); \
4170 CODING_ISO_DESIGNATION (coding, reg) = CHARSET_ID (charset); \
4174 /* The following two macros produce codes (control character or escape
4175 sequence) for ISO2022 single-shift functions (single-shift-2 and
4178 #define ENCODE_SINGLE_SHIFT_2 \
4180 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_SEVEN_BITS) \
4181 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, 'N'); \
4183 EMIT_ONE_BYTE (ISO_CODE_SS2); \
4184 CODING_ISO_SINGLE_SHIFTING (coding) = 1; \
4188 #define ENCODE_SINGLE_SHIFT_3 \
4190 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_SEVEN_BITS) \
4191 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, 'O'); \
4193 EMIT_ONE_BYTE (ISO_CODE_SS3); \
4194 CODING_ISO_SINGLE_SHIFTING (coding) = 1; \
4198 /* The following four macros produce codes (control character or
4199 escape sequence) for ISO2022 locking-shift functions (shift-in,
4200 shift-out, locking-shift-2, and locking-shift-3). */
4202 #define ENCODE_SHIFT_IN \
4204 EMIT_ONE_ASCII_BYTE (ISO_CODE_SI); \
4205 CODING_ISO_INVOCATION (coding, 0) = 0; \
4209 #define ENCODE_SHIFT_OUT \
4211 EMIT_ONE_ASCII_BYTE (ISO_CODE_SO); \
4212 CODING_ISO_INVOCATION (coding, 0) = 1; \
4216 #define ENCODE_LOCKING_SHIFT_2 \
4218 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, 'n'); \
4219 CODING_ISO_INVOCATION (coding, 0) = 2; \
4223 #define ENCODE_LOCKING_SHIFT_3 \
4225 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, 'n'); \
4226 CODING_ISO_INVOCATION (coding, 0) = 3; \
4230 /* Produce codes for a DIMENSION1 character whose character set is
4231 CHARSET and whose position-code is C1. Designation and invocation
4232 sequences are also produced in advance if necessary. */
4234 #define ENCODE_ISO_CHARACTER_DIMENSION1(charset, c1) \
4236 int id = CHARSET_ID (charset); \
4238 if ((CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_USE_ROMAN) \
4239 && id == charset_ascii) \
4241 id = charset_jisx0201_roman; \
4242 charset = CHARSET_FROM_ID (id); \
4245 if (CODING_ISO_SINGLE_SHIFTING (coding)) \
4247 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_SEVEN_BITS) \
4248 EMIT_ONE_ASCII_BYTE (c1 & 0x7F); \
4250 EMIT_ONE_BYTE (c1 | 0x80); \
4251 CODING_ISO_SINGLE_SHIFTING (coding) = 0; \
4254 else if (id == CODING_ISO_INVOKED_CHARSET (coding, 0)) \
4256 EMIT_ONE_ASCII_BYTE (c1 & 0x7F); \
4259 else if (id == CODING_ISO_INVOKED_CHARSET (coding, 1)) \
4261 EMIT_ONE_BYTE (c1 | 0x80); \
4265 /* Since CHARSET is not yet invoked to any graphic planes, we \
4266 must invoke it, or, at first, designate it to some graphic \
4267 register. Then repeat the loop to actually produce the \
4269 dst = encode_invocation_designation (charset, coding, dst, \
4274 /* Produce codes for a DIMENSION2 character whose character set is
4275 CHARSET and whose position-codes are C1 and C2. Designation and
4276 invocation codes are also produced in advance if necessary. */
4278 #define ENCODE_ISO_CHARACTER_DIMENSION2(charset, c1, c2) \
4280 int id = CHARSET_ID (charset); \
4282 if ((CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_USE_OLDJIS) \
4283 && id == charset_jisx0208) \
4285 id = charset_jisx0208_1978; \
4286 charset = CHARSET_FROM_ID (id); \
4289 if (CODING_ISO_SINGLE_SHIFTING (coding)) \
4291 if (CODING_ISO_FLAGS (coding) & CODING_ISO_FLAG_SEVEN_BITS) \
4292 EMIT_TWO_ASCII_BYTES ((c1) & 0x7F, (c2) & 0x7F); \
4294 EMIT_TWO_BYTES ((c1) | 0x80, (c2) | 0x80); \
4295 CODING_ISO_SINGLE_SHIFTING (coding) = 0; \
4298 else if (id == CODING_ISO_INVOKED_CHARSET (coding, 0)) \
4300 EMIT_TWO_ASCII_BYTES ((c1) & 0x7F, (c2) & 0x7F); \
4303 else if (id == CODING_ISO_INVOKED_CHARSET (coding, 1)) \
4305 EMIT_TWO_BYTES ((c1) | 0x80, (c2) | 0x80); \
4309 /* Since CHARSET is not yet invoked to any graphic planes, we \
4310 must invoke it, or, at first, designate it to some graphic \
4311 register. Then repeat the loop to actually produce the \
4313 dst = encode_invocation_designation (charset, coding, dst, \
4318 #define ENCODE_ISO_CHARACTER(charset, c) \
4320 int code = ENCODE_CHAR ((charset),(c)); \
4322 if (CHARSET_DIMENSION (charset) == 1) \
4323 ENCODE_ISO_CHARACTER_DIMENSION1 ((charset), code); \
4325 ENCODE_ISO_CHARACTER_DIMENSION2 ((charset), code >> 8, code & 0xFF); \
4329 /* Produce designation and invocation codes at a place pointed by DST
4330 to use CHARSET. The element `spec.iso_2022' of *CODING is updated.
4334 encode_invocation_designation (charset
, coding
, dst
, p_nchars
)
4335 struct charset
*charset
;
4336 struct coding_system
*coding
;
4340 int multibytep
= coding
->dst_multibyte
;
4341 int produced_chars
= *p_nchars
;
4342 int reg
; /* graphic register number */
4343 int id
= CHARSET_ID (charset
);
4345 /* At first, check designations. */
4346 for (reg
= 0; reg
< 4; reg
++)
4347 if (id
== CODING_ISO_DESIGNATION (coding
, reg
))
4352 /* CHARSET is not yet designated to any graphic registers. */
4353 /* At first check the requested designation. */
4354 reg
= CODING_ISO_REQUEST (coding
, id
);
4356 /* Since CHARSET requests no special designation, designate it
4357 to graphic register 0. */
4360 ENCODE_DESIGNATION (charset
, reg
, coding
);
4363 if (CODING_ISO_INVOCATION (coding
, 0) != reg
4364 && CODING_ISO_INVOCATION (coding
, 1) != reg
)
4366 /* Since the graphic register REG is not invoked to any graphic
4367 planes, invoke it to graphic plane 0. */
4370 case 0: /* graphic register 0 */
4374 case 1: /* graphic register 1 */
4378 case 2: /* graphic register 2 */
4379 if (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
)
4380 ENCODE_SINGLE_SHIFT_2
;
4382 ENCODE_LOCKING_SHIFT_2
;
4385 case 3: /* graphic register 3 */
4386 if (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_SINGLE_SHIFT
)
4387 ENCODE_SINGLE_SHIFT_3
;
4389 ENCODE_LOCKING_SHIFT_3
;
4394 *p_nchars
= produced_chars
;
4398 /* The following three macros produce codes for indicating direction
4400 #define ENCODE_CONTROL_SEQUENCE_INTRODUCER \
4402 if (CODING_ISO_FLAGS (coding) == CODING_ISO_FLAG_SEVEN_BITS) \
4403 EMIT_TWO_ASCII_BYTES (ISO_CODE_ESC, '['); \
4405 EMIT_ONE_BYTE (ISO_CODE_CSI); \
4409 #define ENCODE_DIRECTION_R2L() \
4411 ENCODE_CONTROL_SEQUENCE_INTRODUCER (dst); \
4412 EMIT_TWO_ASCII_BYTES ('2', ']'); \
4416 #define ENCODE_DIRECTION_L2R() \
4418 ENCODE_CONTROL_SEQUENCE_INTRODUCER (dst); \
4419 EMIT_TWO_ASCII_BYTES ('0', ']'); \
4423 /* Produce codes for designation and invocation to reset the graphic
4424 planes and registers to initial state. */
4425 #define ENCODE_RESET_PLANE_AND_REGISTER() \
4428 struct charset *charset; \
4430 if (CODING_ISO_INVOCATION (coding, 0) != 0) \
4432 for (reg = 0; reg < 4; reg++) \
4433 if (CODING_ISO_INITIAL (coding, reg) >= 0 \
4434 && (CODING_ISO_DESIGNATION (coding, reg) \
4435 != CODING_ISO_INITIAL (coding, reg))) \
4437 charset = CHARSET_FROM_ID (CODING_ISO_INITIAL (coding, reg)); \
4438 ENCODE_DESIGNATION (charset, reg, coding); \
4443 /* Produce designation sequences of charsets in the line started from
4444 SRC to a place pointed by DST, and return updated DST.
4446 If the current block ends before any end-of-line, we may fail to
4447 find all the necessary designations. */
4449 static unsigned char *
4450 encode_designation_at_bol (coding
, charbuf
, charbuf_end
, dst
)
4451 struct coding_system
*coding
;
4452 int *charbuf
, *charbuf_end
;
4455 struct charset
*charset
;
4456 /* Table of charsets to be designated to each graphic register. */
4458 int c
, found
= 0, reg
;
4459 int produced_chars
= 0;
4460 int multibytep
= coding
->dst_multibyte
;
4462 Lisp_Object charset_list
;
4464 attrs
= CODING_ID_ATTRS (coding
->id
);
4465 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
4466 if (EQ (charset_list
, Qiso_2022
))
4467 charset_list
= Viso_2022_charset_list
;
4469 for (reg
= 0; reg
< 4; reg
++)
4479 charset
= char_charset (c
, charset_list
, NULL
);
4480 id
= CHARSET_ID (charset
);
4481 reg
= CODING_ISO_REQUEST (coding
, id
);
4482 if (reg
>= 0 && r
[reg
] < 0)
4491 for (reg
= 0; reg
< 4; reg
++)
4493 && CODING_ISO_DESIGNATION (coding
, reg
) != r
[reg
])
4494 ENCODE_DESIGNATION (CHARSET_FROM_ID (r
[reg
]), reg
, coding
);
4500 /* See the above "GENERAL NOTES on `encode_coding_XXX ()' functions". */
4503 encode_coding_iso_2022 (coding
)
4504 struct coding_system
*coding
;
4506 int multibytep
= coding
->dst_multibyte
;
4507 int *charbuf
= coding
->charbuf
;
4508 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
4509 unsigned char *dst
= coding
->destination
+ coding
->produced
;
4510 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
4513 = (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_DESIGNATE_AT_BOL
4514 && CODING_ISO_BOL (coding
));
4515 int produced_chars
= 0;
4516 Lisp_Object attrs
, eol_type
, charset_list
;
4517 int ascii_compatible
;
4519 int preferred_charset_id
= -1;
4521 CODING_GET_INFO (coding
, attrs
, charset_list
);
4522 eol_type
= inhibit_eol_conversion
? Qunix
: CODING_ID_EOL_TYPE (coding
->id
);
4523 if (VECTORP (eol_type
))
4526 setup_iso_safe_charsets (attrs
);
4527 /* Charset list may have been changed. */
4528 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
4529 coding
->safe_charsets
= SDATA (CODING_ATTR_SAFE_CHARSETS (attrs
));
4532 = (! NILP (CODING_ATTR_ASCII_COMPAT (attrs
))
4533 && ! (CODING_ISO_FLAGS (coding
) & (CODING_ISO_FLAG_DESIGNATION
4534 | CODING_ISO_FLAG_LOCKING_SHIFT
)));
4536 while (charbuf
< charbuf_end
)
4538 ASSURE_DESTINATION (safe_room
);
4540 if (bol_designation
)
4542 unsigned char *dst_prev
= dst
;
4544 /* We have to produce designation sequences if any now. */
4545 dst
= encode_designation_at_bol (coding
, charbuf
, charbuf_end
, dst
);
4546 bol_designation
= 0;
4547 /* We are sure that designation sequences are all ASCII bytes. */
4548 produced_chars
+= dst
- dst_prev
;
4555 /* Handle an annotation. */
4558 case CODING_ANNOTATE_COMPOSITION_MASK
:
4559 /* Not yet implemented. */
4561 case CODING_ANNOTATE_CHARSET_MASK
:
4562 preferred_charset_id
= charbuf
[2];
4563 if (preferred_charset_id
>= 0
4564 && NILP (Fmemq (make_number (preferred_charset_id
),
4566 preferred_charset_id
= -1;
4575 /* Now encode the character C. */
4576 if (c
< 0x20 || c
== 0x7F)
4579 || (c
== '\r' && EQ (eol_type
, Qmac
)))
4581 if (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_RESET_AT_EOL
)
4582 ENCODE_RESET_PLANE_AND_REGISTER ();
4583 if (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_INIT_AT_BOL
)
4587 for (i
= 0; i
< 4; i
++)
4588 CODING_ISO_DESIGNATION (coding
, i
)
4589 = CODING_ISO_INITIAL (coding
, i
);
4592 = CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_DESIGNATE_AT_BOL
;
4594 else if (CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_RESET_AT_CNTL
)
4595 ENCODE_RESET_PLANE_AND_REGISTER ();
4596 EMIT_ONE_ASCII_BYTE (c
);
4598 else if (ASCII_CHAR_P (c
))
4600 if (ascii_compatible
)
4601 EMIT_ONE_ASCII_BYTE (c
);
4604 struct charset
*charset
= CHARSET_FROM_ID (charset_ascii
);
4605 ENCODE_ISO_CHARACTER (charset
, c
);
4608 else if (CHAR_BYTE8_P (c
))
4610 c
= CHAR_TO_BYTE8 (c
);
4615 struct charset
*charset
;
4617 if (preferred_charset_id
>= 0)
4619 charset
= CHARSET_FROM_ID (preferred_charset_id
);
4620 if (! CHAR_CHARSET_P (c
, charset
))
4621 charset
= char_charset (c
, charset_list
, NULL
);
4624 charset
= char_charset (c
, charset_list
, NULL
);
4627 if (coding
->mode
& CODING_MODE_SAFE_ENCODING
)
4629 c
= CODING_INHIBIT_CHARACTER_SUBSTITUTION
;
4630 charset
= CHARSET_FROM_ID (charset_ascii
);
4634 c
= coding
->default_char
;
4635 charset
= char_charset (c
, charset_list
, NULL
);
4638 ENCODE_ISO_CHARACTER (charset
, c
);
4642 if (coding
->mode
& CODING_MODE_LAST_BLOCK
4643 && CODING_ISO_FLAGS (coding
) & CODING_ISO_FLAG_RESET_AT_EOL
)
4645 ASSURE_DESTINATION (safe_room
);
4646 ENCODE_RESET_PLANE_AND_REGISTER ();
4648 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
4649 CODING_ISO_BOL (coding
) = bol_designation
;
4650 coding
->produced_char
+= produced_chars
;
4651 coding
->produced
= dst
- coding
->destination
;
4656 /*** 8,9. SJIS and BIG5 handlers ***/
4658 /* Although SJIS and BIG5 are not ISO's coding system, they are used
4659 quite widely. So, for the moment, Emacs supports them in the bare
4660 C code. But, in the future, they may be supported only by CCL. */
4662 /* SJIS is a coding system encoding three character sets: ASCII, right
4663 half of JISX0201-Kana, and JISX0208. An ASCII character is encoded
4664 as is. A character of charset katakana-jisx0201 is encoded by
4665 "position-code + 0x80". A character of charset japanese-jisx0208
4666 is encoded in 2-byte but two position-codes are divided and shifted
4667 so that it fit in the range below.
4669 --- CODE RANGE of SJIS ---
4670 (character set) (range)
4672 KATAKANA-JISX0201 0xA0 .. 0xDF
4673 JISX0208 (1st byte) 0x81 .. 0x9F and 0xE0 .. 0xEF
4674 (2nd byte) 0x40 .. 0x7E and 0x80 .. 0xFC
4675 -------------------------------
4679 /* BIG5 is a coding system encoding two character sets: ASCII and
4680 Big5. An ASCII character is encoded as is. Big5 is a two-byte
4681 character set and is encoded in two-byte.
4683 --- CODE RANGE of BIG5 ---
4684 (character set) (range)
4686 Big5 (1st byte) 0xA1 .. 0xFE
4687 (2nd byte) 0x40 .. 0x7E and 0xA1 .. 0xFE
4688 --------------------------
4692 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
4693 Check if a text is encoded in SJIS. If it is, return
4694 CATEGORY_MASK_SJIS, else return 0. */
4697 detect_coding_sjis (coding
, detect_info
)
4698 struct coding_system
*coding
;
4699 struct coding_detection_info
*detect_info
;
4701 const unsigned char *src
= coding
->source
, *src_base
;
4702 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
4703 int multibytep
= coding
->src_multibyte
;
4704 int consumed_chars
= 0;
4707 Lisp_Object attrs
, charset_list
;
4708 int max_first_byte_of_2_byte_code
;
4710 CODING_GET_INFO (coding
, attrs
, charset_list
);
4711 max_first_byte_of_2_byte_code
4712 = (XINT (Flength (charset_list
)) > 3 ? 0xFC : 0xEF);
4714 detect_info
->checked
|= CATEGORY_MASK_SJIS
;
4715 /* A coding system of this category is always ASCII compatible. */
4716 src
+= coding
->head_ascii
;
4724 if ((c
>= 0x81 && c
<= 0x9F)
4725 || (c
>= 0xE0 && c
<= max_first_byte_of_2_byte_code
))
4728 if (c
< 0x40 || c
== 0x7F || c
> 0xFC)
4730 found
= CATEGORY_MASK_SJIS
;
4732 else if (c
>= 0xA0 && c
< 0xE0)
4733 found
= CATEGORY_MASK_SJIS
;
4737 detect_info
->rejected
|= CATEGORY_MASK_SJIS
;
4741 if (src_base
< src
&& coding
->mode
& CODING_MODE_LAST_BLOCK
)
4743 detect_info
->rejected
|= CATEGORY_MASK_SJIS
;
4746 detect_info
->found
|= found
;
4750 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
4751 Check if a text is encoded in BIG5. If it is, return
4752 CATEGORY_MASK_BIG5, else return 0. */
4755 detect_coding_big5 (coding
, detect_info
)
4756 struct coding_system
*coding
;
4757 struct coding_detection_info
*detect_info
;
4759 const unsigned char *src
= coding
->source
, *src_base
;
4760 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
4761 int multibytep
= coding
->src_multibyte
;
4762 int consumed_chars
= 0;
4766 detect_info
->checked
|= CATEGORY_MASK_BIG5
;
4767 /* A coding system of this category is always ASCII compatible. */
4768 src
+= coding
->head_ascii
;
4779 if (c
< 0x40 || (c
>= 0x7F && c
<= 0xA0))
4781 found
= CATEGORY_MASK_BIG5
;
4786 detect_info
->rejected
|= CATEGORY_MASK_BIG5
;
4790 if (src_base
< src
&& coding
->mode
& CODING_MODE_LAST_BLOCK
)
4792 detect_info
->rejected
|= CATEGORY_MASK_BIG5
;
4795 detect_info
->found
|= found
;
4799 /* See the above "GENERAL NOTES on `decode_coding_XXX ()' functions".
4800 If SJIS_P is 1, decode SJIS text, else decode BIG5 test. */
4803 decode_coding_sjis (coding
)
4804 struct coding_system
*coding
;
4806 const unsigned char *src
= coding
->source
+ coding
->consumed
;
4807 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
4808 const unsigned char *src_base
;
4809 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
4810 /* We may produce one charset annocation in one loop and one more at
4813 = coding
->charbuf
+ coding
->charbuf_size
- (MAX_ANNOTATION_LENGTH
* 2);
4814 int consumed_chars
= 0, consumed_chars_base
;
4815 int multibytep
= coding
->src_multibyte
;
4816 struct charset
*charset_roman
, *charset_kanji
, *charset_kana
;
4817 struct charset
*charset_kanji2
;
4818 Lisp_Object attrs
, charset_list
, val
;
4819 int char_offset
= coding
->produced_char
;
4820 int last_offset
= char_offset
;
4821 int last_id
= charset_ascii
;
4823 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
4824 int byte_after_cr
= -1;
4826 CODING_GET_INFO (coding
, attrs
, charset_list
);
4829 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
4830 charset_kana
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
4831 charset_kanji
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
4832 charset_kanji2
= NILP (val
) ? NULL
: CHARSET_FROM_ID (XINT (XCAR (val
)));
4837 struct charset
*charset
;
4840 consumed_chars_base
= consumed_chars
;
4842 if (charbuf
>= charbuf_end
)
4844 if (byte_after_cr
>= 0)
4849 if (byte_after_cr
>= 0)
4850 c
= byte_after_cr
, byte_after_cr
= -1;
4857 if (eol_crlf
&& c
== '\r')
4858 ONE_MORE_BYTE (byte_after_cr
);
4859 charset
= charset_roman
;
4861 else if (c
== 0x80 || c
== 0xA0)
4863 else if (c
>= 0xA1 && c
<= 0xDF)
4865 /* SJIS -> JISX0201-Kana */
4867 charset
= charset_kana
;
4871 /* SJIS -> JISX0208 */
4873 if (c1
< 0x40 || c1
== 0x7F || c1
> 0xFC)
4877 charset
= charset_kanji
;
4879 else if (c
<= 0xFC && charset_kanji2
)
4881 /* SJIS -> JISX0213-2 */
4883 if (c1
< 0x40 || c1
== 0x7F || c1
> 0xFC)
4887 charset
= charset_kanji2
;
4891 if (charset
->id
!= charset_ascii
4892 && last_id
!= charset
->id
)
4894 if (last_id
!= charset_ascii
)
4895 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
4896 last_id
= charset
->id
;
4897 last_offset
= char_offset
;
4899 CODING_DECODE_CHAR (coding
, src
, src_base
, src_end
, charset
, c
, c
);
4906 consumed_chars
= consumed_chars_base
;
4908 *charbuf
++ = c
< 0 ? -c
: BYTE8_TO_CHAR (c
);
4914 if (last_id
!= charset_ascii
)
4915 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
4916 coding
->consumed_char
+= consumed_chars_base
;
4917 coding
->consumed
= src_base
- coding
->source
;
4918 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
4922 decode_coding_big5 (coding
)
4923 struct coding_system
*coding
;
4925 const unsigned char *src
= coding
->source
+ coding
->consumed
;
4926 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
4927 const unsigned char *src_base
;
4928 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
4929 /* We may produce one charset annocation in one loop and one more at
4932 = coding
->charbuf
+ coding
->charbuf_size
- (MAX_ANNOTATION_LENGTH
* 2);
4933 int consumed_chars
= 0, consumed_chars_base
;
4934 int multibytep
= coding
->src_multibyte
;
4935 struct charset
*charset_roman
, *charset_big5
;
4936 Lisp_Object attrs
, charset_list
, val
;
4937 int char_offset
= coding
->produced_char
;
4938 int last_offset
= char_offset
;
4939 int last_id
= charset_ascii
;
4941 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
4942 int byte_after_cr
= -1;
4944 CODING_GET_INFO (coding
, attrs
, charset_list
);
4946 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
4947 charset_big5
= CHARSET_FROM_ID (XINT (XCAR (val
)));
4952 struct charset
*charset
;
4955 consumed_chars_base
= consumed_chars
;
4957 if (charbuf
>= charbuf_end
)
4959 if (byte_after_cr
>= 0)
4964 if (byte_after_cr
>= 0)
4965 c
= byte_after_cr
, byte_after_cr
= -1;
4973 if (eol_crlf
&& c
== '\r')
4974 ONE_MORE_BYTE (byte_after_cr
);
4975 charset
= charset_roman
;
4980 if (c
< 0xA1 || c
> 0xFE)
4983 if (c1
< 0x40 || (c1
> 0x7E && c1
< 0xA1) || c1
> 0xFE)
4986 charset
= charset_big5
;
4988 if (charset
->id
!= charset_ascii
4989 && last_id
!= charset
->id
)
4991 if (last_id
!= charset_ascii
)
4992 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
4993 last_id
= charset
->id
;
4994 last_offset
= char_offset
;
4996 CODING_DECODE_CHAR (coding
, src
, src_base
, src_end
, charset
, c
, c
);
5003 consumed_chars
= consumed_chars_base
;
5005 *charbuf
++ = c
< 0 ? -c
: BYTE8_TO_CHAR (c
);
5011 if (last_id
!= charset_ascii
)
5012 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
5013 coding
->consumed_char
+= consumed_chars_base
;
5014 coding
->consumed
= src_base
- coding
->source
;
5015 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
5018 /* See the above "GENERAL NOTES on `encode_coding_XXX ()' functions".
5019 This function can encode charsets `ascii', `katakana-jisx0201',
5020 `japanese-jisx0208', `chinese-big5-1', and `chinese-big5-2'. We
5021 are sure that all these charsets are registered as official charset
5022 (i.e. do not have extended leading-codes). Characters of other
5023 charsets are produced without any encoding. If SJIS_P is 1, encode
5024 SJIS text, else encode BIG5 text. */
5027 encode_coding_sjis (coding
)
5028 struct coding_system
*coding
;
5030 int multibytep
= coding
->dst_multibyte
;
5031 int *charbuf
= coding
->charbuf
;
5032 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
5033 unsigned char *dst
= coding
->destination
+ coding
->produced
;
5034 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
5036 int produced_chars
= 0;
5037 Lisp_Object attrs
, charset_list
, val
;
5038 int ascii_compatible
;
5039 struct charset
*charset_roman
, *charset_kanji
, *charset_kana
;
5040 struct charset
*charset_kanji2
;
5043 CODING_GET_INFO (coding
, attrs
, charset_list
);
5045 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
5046 charset_kana
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
5047 charset_kanji
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
5048 charset_kanji2
= NILP (val
) ? NULL
: CHARSET_FROM_ID (XINT (XCAR (val
)));
5050 ascii_compatible
= ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
));
5052 while (charbuf
< charbuf_end
)
5054 ASSURE_DESTINATION (safe_room
);
5056 /* Now encode the character C. */
5057 if (ASCII_CHAR_P (c
) && ascii_compatible
)
5058 EMIT_ONE_ASCII_BYTE (c
);
5059 else if (CHAR_BYTE8_P (c
))
5061 c
= CHAR_TO_BYTE8 (c
);
5067 struct charset
*charset
= char_charset (c
, charset_list
, &code
);
5071 if (coding
->mode
& CODING_MODE_SAFE_ENCODING
)
5073 code
= CODING_INHIBIT_CHARACTER_SUBSTITUTION
;
5074 charset
= CHARSET_FROM_ID (charset_ascii
);
5078 c
= coding
->default_char
;
5079 charset
= char_charset (c
, charset_list
, &code
);
5082 if (code
== CHARSET_INVALID_CODE (charset
))
5084 if (charset
== charset_kanji
)
5088 c1
= code
>> 8, c2
= code
& 0xFF;
5089 EMIT_TWO_BYTES (c1
, c2
);
5091 else if (charset
== charset_kana
)
5092 EMIT_ONE_BYTE (code
| 0x80);
5093 else if (charset_kanji2
&& charset
== charset_kanji2
)
5098 if (c1
== 0x21 || (c1
>= 0x23 && c1
<= 0x25)
5100 || (c1
>= 0x2C && c1
<= 0x2F) || c1
>= 0x6E)
5102 JIS_TO_SJIS2 (code
);
5103 c1
= code
>> 8, c2
= code
& 0xFF;
5104 EMIT_TWO_BYTES (c1
, c2
);
5107 EMIT_ONE_ASCII_BYTE (code
& 0x7F);
5110 EMIT_ONE_ASCII_BYTE (code
& 0x7F);
5113 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5114 coding
->produced_char
+= produced_chars
;
5115 coding
->produced
= dst
- coding
->destination
;
5120 encode_coding_big5 (coding
)
5121 struct coding_system
*coding
;
5123 int multibytep
= coding
->dst_multibyte
;
5124 int *charbuf
= coding
->charbuf
;
5125 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
5126 unsigned char *dst
= coding
->destination
+ coding
->produced
;
5127 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
5129 int produced_chars
= 0;
5130 Lisp_Object attrs
, charset_list
, val
;
5131 int ascii_compatible
;
5132 struct charset
*charset_roman
, *charset_big5
;
5135 CODING_GET_INFO (coding
, attrs
, charset_list
);
5137 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
5138 charset_big5
= CHARSET_FROM_ID (XINT (XCAR (val
)));
5139 ascii_compatible
= ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
));
5141 while (charbuf
< charbuf_end
)
5143 ASSURE_DESTINATION (safe_room
);
5145 /* Now encode the character C. */
5146 if (ASCII_CHAR_P (c
) && ascii_compatible
)
5147 EMIT_ONE_ASCII_BYTE (c
);
5148 else if (CHAR_BYTE8_P (c
))
5150 c
= CHAR_TO_BYTE8 (c
);
5156 struct charset
*charset
= char_charset (c
, charset_list
, &code
);
5160 if (coding
->mode
& CODING_MODE_SAFE_ENCODING
)
5162 code
= CODING_INHIBIT_CHARACTER_SUBSTITUTION
;
5163 charset
= CHARSET_FROM_ID (charset_ascii
);
5167 c
= coding
->default_char
;
5168 charset
= char_charset (c
, charset_list
, &code
);
5171 if (code
== CHARSET_INVALID_CODE (charset
))
5173 if (charset
== charset_big5
)
5177 c1
= code
>> 8, c2
= code
& 0xFF;
5178 EMIT_TWO_BYTES (c1
, c2
);
5181 EMIT_ONE_ASCII_BYTE (code
& 0x7F);
5184 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5185 coding
->produced_char
+= produced_chars
;
5186 coding
->produced
= dst
- coding
->destination
;
5191 /*** 10. CCL handlers ***/
5193 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
5194 Check if a text is encoded in a coding system of which
5195 encoder/decoder are written in CCL program. If it is, return
5196 CATEGORY_MASK_CCL, else return 0. */
5199 detect_coding_ccl (coding
, detect_info
)
5200 struct coding_system
*coding
;
5201 struct coding_detection_info
*detect_info
;
5203 const unsigned char *src
= coding
->source
, *src_base
;
5204 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
5205 int multibytep
= coding
->src_multibyte
;
5206 int consumed_chars
= 0;
5208 unsigned char *valids
;
5209 int head_ascii
= coding
->head_ascii
;
5212 detect_info
->checked
|= CATEGORY_MASK_CCL
;
5214 coding
= &coding_categories
[coding_category_ccl
];
5215 valids
= CODING_CCL_VALIDS (coding
);
5216 attrs
= CODING_ID_ATTRS (coding
->id
);
5217 if (! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
5226 if (c
< 0 || ! valids
[c
])
5228 if ((valids
[c
] > 1))
5229 found
= CATEGORY_MASK_CCL
;
5231 detect_info
->rejected
|= CATEGORY_MASK_CCL
;
5235 detect_info
->found
|= found
;
5240 decode_coding_ccl (coding
)
5241 struct coding_system
*coding
;
5243 const unsigned char *src
= coding
->source
+ coding
->consumed
;
5244 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
5245 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
5246 int *charbuf_end
= coding
->charbuf
+ coding
->charbuf_size
;
5247 int consumed_chars
= 0;
5248 int multibytep
= coding
->src_multibyte
;
5249 struct ccl_program
*ccl
= &coding
->spec
.ccl
->ccl
;
5250 int source_charbuf
[1024];
5251 int source_byteidx
[1025];
5252 Lisp_Object attrs
, charset_list
;
5254 CODING_GET_INFO (coding
, attrs
, charset_list
);
5258 const unsigned char *p
= src
;
5263 while (i
< 1024 && p
< src_end
)
5265 source_byteidx
[i
] = p
- src
;
5266 source_charbuf
[i
++] = STRING_CHAR_ADVANCE (p
);
5268 source_byteidx
[i
] = p
- src
;
5271 while (i
< 1024 && p
< src_end
)
5272 source_charbuf
[i
++] = *p
++;
5274 if (p
== src_end
&& coding
->mode
& CODING_MODE_LAST_BLOCK
)
5275 ccl
->last_block
= 1;
5276 ccl_driver (ccl
, source_charbuf
, charbuf
, i
, charbuf_end
- charbuf
,
5278 charbuf
+= ccl
->produced
;
5280 src
+= source_byteidx
[ccl
->consumed
];
5282 src
+= ccl
->consumed
;
5283 consumed_chars
+= ccl
->consumed
;
5284 if (p
== src_end
|| ccl
->status
!= CCL_STAT_SUSPEND_BY_SRC
)
5288 switch (ccl
->status
)
5290 case CCL_STAT_SUSPEND_BY_SRC
:
5291 record_conversion_result (coding
, CODING_RESULT_INSUFFICIENT_SRC
);
5293 case CCL_STAT_SUSPEND_BY_DST
:
5294 record_conversion_result (coding
, CODING_RESULT_INSUFFICIENT_DST
);
5297 case CCL_STAT_INVALID_CMD
:
5298 record_conversion_result (coding
, CODING_RESULT_INTERRUPT
);
5301 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5304 coding
->consumed_char
+= consumed_chars
;
5305 coding
->consumed
= src
- coding
->source
;
5306 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
5310 encode_coding_ccl (coding
)
5311 struct coding_system
*coding
;
5313 struct ccl_program
*ccl
= &coding
->spec
.ccl
->ccl
;
5314 int multibytep
= coding
->dst_multibyte
;
5315 int *charbuf
= coding
->charbuf
;
5316 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
5317 unsigned char *dst
= coding
->destination
+ coding
->produced
;
5318 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
5319 int destination_charbuf
[1024];
5320 int i
, produced_chars
= 0;
5321 Lisp_Object attrs
, charset_list
;
5323 CODING_GET_INFO (coding
, attrs
, charset_list
);
5324 if (coding
->consumed_char
== coding
->src_chars
5325 && coding
->mode
& CODING_MODE_LAST_BLOCK
)
5326 ccl
->last_block
= 1;
5328 while (charbuf
< charbuf_end
)
5330 ccl_driver (ccl
, charbuf
, destination_charbuf
,
5331 charbuf_end
- charbuf
, 1024, charset_list
);
5334 ASSURE_DESTINATION (ccl
->produced
* 2);
5335 for (i
= 0; i
< ccl
->produced
; i
++)
5336 EMIT_ONE_BYTE (destination_charbuf
[i
] & 0xFF);
5340 ASSURE_DESTINATION (ccl
->produced
);
5341 for (i
= 0; i
< ccl
->produced
; i
++)
5342 *dst
++ = destination_charbuf
[i
] & 0xFF;
5343 produced_chars
+= ccl
->produced
;
5345 charbuf
+= ccl
->consumed
;
5346 if (ccl
->status
== CCL_STAT_QUIT
5347 || ccl
->status
== CCL_STAT_INVALID_CMD
)
5351 switch (ccl
->status
)
5353 case CCL_STAT_SUSPEND_BY_SRC
:
5354 record_conversion_result (coding
, CODING_RESULT_INSUFFICIENT_SRC
);
5356 case CCL_STAT_SUSPEND_BY_DST
:
5357 record_conversion_result (coding
, CODING_RESULT_INSUFFICIENT_DST
);
5360 case CCL_STAT_INVALID_CMD
:
5361 record_conversion_result (coding
, CODING_RESULT_INTERRUPT
);
5364 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5368 coding
->produced_char
+= produced_chars
;
5369 coding
->produced
= dst
- coding
->destination
;
5375 /*** 10, 11. no-conversion handlers ***/
5377 /* See the above "GENERAL NOTES on `decode_coding_XXX ()' functions". */
5380 decode_coding_raw_text (coding
)
5381 struct coding_system
*coding
;
5384 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
5386 coding
->chars_at_source
= 1;
5387 coding
->consumed_char
= coding
->src_chars
;
5388 coding
->consumed
= coding
->src_bytes
;
5389 if (eol_crlf
&& coding
->source
[coding
->src_bytes
- 1] == '\r')
5391 coding
->consumed_char
--;
5393 record_conversion_result (coding
, CODING_RESULT_INSUFFICIENT_SRC
);
5396 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5400 encode_coding_raw_text (coding
)
5401 struct coding_system
*coding
;
5403 int multibytep
= coding
->dst_multibyte
;
5404 int *charbuf
= coding
->charbuf
;
5405 int *charbuf_end
= coding
->charbuf
+ coding
->charbuf_used
;
5406 unsigned char *dst
= coding
->destination
+ coding
->produced
;
5407 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
5408 int produced_chars
= 0;
5413 int safe_room
= MAX_MULTIBYTE_LENGTH
* 2;
5415 if (coding
->src_multibyte
)
5416 while (charbuf
< charbuf_end
)
5418 ASSURE_DESTINATION (safe_room
);
5420 if (ASCII_CHAR_P (c
))
5421 EMIT_ONE_ASCII_BYTE (c
);
5422 else if (CHAR_BYTE8_P (c
))
5424 c
= CHAR_TO_BYTE8 (c
);
5429 unsigned char str
[MAX_MULTIBYTE_LENGTH
], *p0
= str
, *p1
= str
;
5431 CHAR_STRING_ADVANCE (c
, p1
);
5434 EMIT_ONE_BYTE (*p0
);
5440 while (charbuf
< charbuf_end
)
5442 ASSURE_DESTINATION (safe_room
);
5449 if (coding
->src_multibyte
)
5451 int safe_room
= MAX_MULTIBYTE_LENGTH
;
5453 while (charbuf
< charbuf_end
)
5455 ASSURE_DESTINATION (safe_room
);
5457 if (ASCII_CHAR_P (c
))
5459 else if (CHAR_BYTE8_P (c
))
5460 *dst
++ = CHAR_TO_BYTE8 (c
);
5462 CHAR_STRING_ADVANCE (c
, dst
);
5467 ASSURE_DESTINATION (charbuf_end
- charbuf
);
5468 while (charbuf
< charbuf_end
&& dst
< dst_end
)
5469 *dst
++ = *charbuf
++;
5471 produced_chars
= dst
- (coding
->destination
+ coding
->produced
);
5473 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5474 coding
->produced_char
+= produced_chars
;
5475 coding
->produced
= dst
- coding
->destination
;
5479 /* See the above "GENERAL NOTES on `detect_coding_XXX ()' functions".
5480 Check if a text is encoded in a charset-based coding system. If it
5481 is, return 1, else return 0. */
5484 detect_coding_charset (coding
, detect_info
)
5485 struct coding_system
*coding
;
5486 struct coding_detection_info
*detect_info
;
5488 const unsigned char *src
= coding
->source
, *src_base
;
5489 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
5490 int multibytep
= coding
->src_multibyte
;
5491 int consumed_chars
= 0;
5492 Lisp_Object attrs
, valids
, name
;
5494 int head_ascii
= coding
->head_ascii
;
5495 int check_latin_extra
= 0;
5497 detect_info
->checked
|= CATEGORY_MASK_CHARSET
;
5499 coding
= &coding_categories
[coding_category_charset
];
5500 attrs
= CODING_ID_ATTRS (coding
->id
);
5501 valids
= AREF (attrs
, coding_attr_charset_valids
);
5502 name
= CODING_ID_NAME (coding
->id
);
5503 if (strncmp ((char *) SDATA (SYMBOL_NAME (name
)),
5504 "iso-8859-", sizeof ("iso-8859-") - 1) == 0
5505 || strncmp ((char *) SDATA (SYMBOL_NAME (name
)),
5506 "iso-latin-", sizeof ("iso-latin-") - 1) == 0)
5507 check_latin_extra
= 1;
5509 if (! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
5516 struct charset
*charset
;
5523 val
= AREF (valids
, c
);
5529 && check_latin_extra
5530 && (!VECTORP (Vlatin_extra_code_table
)
5531 || NILP (XVECTOR (Vlatin_extra_code_table
)->contents
[c
])))
5533 found
= CATEGORY_MASK_CHARSET
;
5537 charset
= CHARSET_FROM_ID (XFASTINT (val
));
5538 dim
= CHARSET_DIMENSION (charset
);
5539 for (idx
= 1; idx
< dim
; idx
++)
5544 if (c
< charset
->code_space
[(dim
- 1 - idx
) * 2]
5545 || c
> charset
->code_space
[(dim
- 1 - idx
) * 2 + 1])
5554 for (; CONSP (val
); val
= XCDR (val
))
5556 charset
= CHARSET_FROM_ID (XFASTINT (XCAR (val
)));
5557 dim
= CHARSET_DIMENSION (charset
);
5563 if (c
< charset
->code_space
[(dim
- 1 - idx
) * 4]
5564 || c
> charset
->code_space
[(dim
- 1 - idx
) * 4 + 1])
5579 detect_info
->rejected
|= CATEGORY_MASK_CHARSET
;
5583 detect_info
->found
|= found
;
5588 decode_coding_charset (coding
)
5589 struct coding_system
*coding
;
5591 const unsigned char *src
= coding
->source
+ coding
->consumed
;
5592 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
5593 const unsigned char *src_base
;
5594 int *charbuf
= coding
->charbuf
+ coding
->charbuf_used
;
5595 /* We may produce one charset annocation in one loop and one more at
5598 = coding
->charbuf
+ coding
->charbuf_size
- (MAX_ANNOTATION_LENGTH
* 2);
5599 int consumed_chars
= 0, consumed_chars_base
;
5600 int multibytep
= coding
->src_multibyte
;
5601 Lisp_Object attrs
, charset_list
, valids
;
5602 int char_offset
= coding
->produced_char
;
5603 int last_offset
= char_offset
;
5604 int last_id
= charset_ascii
;
5606 !inhibit_eol_conversion
&& EQ (CODING_ID_EOL_TYPE (coding
->id
), Qdos
);
5607 int byte_after_cr
= -1;
5609 CODING_GET_INFO (coding
, attrs
, charset_list
);
5610 valids
= AREF (attrs
, coding_attr_charset_valids
);
5616 struct charset
*charset
;
5622 consumed_chars_base
= consumed_chars
;
5624 if (charbuf
>= charbuf_end
)
5626 if (byte_after_cr
>= 0)
5631 if (byte_after_cr
>= 0)
5639 if (eol_crlf
&& c
== '\r')
5640 ONE_MORE_BYTE (byte_after_cr
);
5646 val
= AREF (valids
, c
);
5647 if (! INTEGERP (val
) && ! CONSP (val
))
5651 charset
= CHARSET_FROM_ID (XFASTINT (val
));
5652 dim
= CHARSET_DIMENSION (charset
);
5656 code
= (code
<< 8) | c
;
5659 CODING_DECODE_CHAR (coding
, src
, src_base
, src_end
,
5664 /* VAL is a list of charset IDs. It is assured that the
5665 list is sorted by charset dimensions (smaller one
5669 charset
= CHARSET_FROM_ID (XFASTINT (XCAR (val
)));
5670 dim
= CHARSET_DIMENSION (charset
);
5674 code
= (code
<< 8) | c
;
5677 CODING_DECODE_CHAR (coding
, src
, src_base
,
5678 src_end
, charset
, code
, c
);
5686 if (charset
->id
!= charset_ascii
5687 && last_id
!= charset
->id
)
5689 if (last_id
!= charset_ascii
)
5690 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
5691 last_id
= charset
->id
;
5692 last_offset
= char_offset
;
5701 consumed_chars
= consumed_chars_base
;
5703 *charbuf
++ = c
< 0 ? -c
: ASCII_BYTE_P (c
) ? c
: BYTE8_TO_CHAR (c
);
5709 if (last_id
!= charset_ascii
)
5710 ADD_CHARSET_DATA (charbuf
, char_offset
- last_offset
, last_id
);
5711 coding
->consumed_char
+= consumed_chars_base
;
5712 coding
->consumed
= src_base
- coding
->source
;
5713 coding
->charbuf_used
= charbuf
- coding
->charbuf
;
5717 encode_coding_charset (coding
)
5718 struct coding_system
*coding
;
5720 int multibytep
= coding
->dst_multibyte
;
5721 int *charbuf
= coding
->charbuf
;
5722 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
5723 unsigned char *dst
= coding
->destination
+ coding
->produced
;
5724 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
5725 int safe_room
= MAX_MULTIBYTE_LENGTH
;
5726 int produced_chars
= 0;
5727 Lisp_Object attrs
, charset_list
;
5728 int ascii_compatible
;
5731 CODING_GET_INFO (coding
, attrs
, charset_list
);
5732 ascii_compatible
= ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
));
5734 while (charbuf
< charbuf_end
)
5736 struct charset
*charset
;
5739 ASSURE_DESTINATION (safe_room
);
5741 if (ascii_compatible
&& ASCII_CHAR_P (c
))
5742 EMIT_ONE_ASCII_BYTE (c
);
5743 else if (CHAR_BYTE8_P (c
))
5745 c
= CHAR_TO_BYTE8 (c
);
5750 charset
= char_charset (c
, charset_list
, &code
);
5753 if (CHARSET_DIMENSION (charset
) == 1)
5754 EMIT_ONE_BYTE (code
);
5755 else if (CHARSET_DIMENSION (charset
) == 2)
5756 EMIT_TWO_BYTES (code
>> 8, code
& 0xFF);
5757 else if (CHARSET_DIMENSION (charset
) == 3)
5758 EMIT_THREE_BYTES (code
>> 16, (code
>> 8) & 0xFF, code
& 0xFF);
5760 EMIT_FOUR_BYTES (code
>> 24, (code
>> 16) & 0xFF,
5761 (code
>> 8) & 0xFF, code
& 0xFF);
5765 if (coding
->mode
& CODING_MODE_SAFE_ENCODING
)
5766 c
= CODING_INHIBIT_CHARACTER_SUBSTITUTION
;
5768 c
= coding
->default_char
;
5774 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
5775 coding
->produced_char
+= produced_chars
;
5776 coding
->produced
= dst
- coding
->destination
;
5781 /*** 7. C library functions ***/
5783 /* Setup coding context CODING from information about CODING_SYSTEM.
5784 If CODING_SYSTEM is nil, `no-conversion' is assumed. If
5785 CODING_SYSTEM is invalid, signal an error. */
5788 setup_coding_system (coding_system
, coding
)
5789 Lisp_Object coding_system
;
5790 struct coding_system
*coding
;
5793 Lisp_Object eol_type
;
5794 Lisp_Object coding_type
;
5797 if (NILP (coding_system
))
5798 coding_system
= Qundecided
;
5800 CHECK_CODING_SYSTEM_GET_ID (coding_system
, coding
->id
);
5802 attrs
= CODING_ID_ATTRS (coding
->id
);
5803 eol_type
= inhibit_eol_conversion
? Qunix
: CODING_ID_EOL_TYPE (coding
->id
);
5806 coding
->head_ascii
= -1;
5807 if (VECTORP (eol_type
))
5808 coding
->common_flags
= (CODING_REQUIRE_DECODING_MASK
5809 | CODING_REQUIRE_DETECTION_MASK
);
5810 else if (! EQ (eol_type
, Qunix
))
5811 coding
->common_flags
= (CODING_REQUIRE_DECODING_MASK
5812 | CODING_REQUIRE_ENCODING_MASK
);
5814 coding
->common_flags
= 0;
5815 if (! NILP (CODING_ATTR_POST_READ (attrs
)))
5816 coding
->common_flags
|= CODING_REQUIRE_DECODING_MASK
;
5817 if (! NILP (CODING_ATTR_PRE_WRITE (attrs
)))
5818 coding
->common_flags
|= CODING_REQUIRE_ENCODING_MASK
;
5819 if (! NILP (CODING_ATTR_FOR_UNIBYTE (attrs
)))
5820 coding
->common_flags
|= CODING_FOR_UNIBYTE_MASK
;
5822 val
= CODING_ATTR_SAFE_CHARSETS (attrs
);
5823 coding
->max_charset_id
= SCHARS (val
) - 1;
5824 coding
->safe_charsets
= SDATA (val
);
5825 coding
->default_char
= XINT (CODING_ATTR_DEFAULT_CHAR (attrs
));
5826 coding
->carryover_bytes
= 0;
5828 coding_type
= CODING_ATTR_TYPE (attrs
);
5829 if (EQ (coding_type
, Qundecided
))
5831 coding
->detector
= NULL
;
5832 coding
->decoder
= decode_coding_raw_text
;
5833 coding
->encoder
= encode_coding_raw_text
;
5834 coding
->common_flags
|= CODING_REQUIRE_DETECTION_MASK
;
5836 else if (EQ (coding_type
, Qiso_2022
))
5839 int flags
= XINT (AREF (attrs
, coding_attr_iso_flags
));
5841 /* Invoke graphic register 0 to plane 0. */
5842 CODING_ISO_INVOCATION (coding
, 0) = 0;
5843 /* Invoke graphic register 1 to plane 1 if we can use 8-bit. */
5844 CODING_ISO_INVOCATION (coding
, 1)
5845 = (flags
& CODING_ISO_FLAG_SEVEN_BITS
? -1 : 1);
5846 /* Setup the initial status of designation. */
5847 for (i
= 0; i
< 4; i
++)
5848 CODING_ISO_DESIGNATION (coding
, i
) = CODING_ISO_INITIAL (coding
, i
);
5849 /* Not single shifting initially. */
5850 CODING_ISO_SINGLE_SHIFTING (coding
) = 0;
5851 /* Beginning of buffer should also be regarded as bol. */
5852 CODING_ISO_BOL (coding
) = 1;
5853 coding
->detector
= detect_coding_iso_2022
;
5854 coding
->decoder
= decode_coding_iso_2022
;
5855 coding
->encoder
= encode_coding_iso_2022
;
5856 if (flags
& CODING_ISO_FLAG_SAFE
)
5857 coding
->mode
|= CODING_MODE_SAFE_ENCODING
;
5858 coding
->common_flags
5859 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
5860 | CODING_REQUIRE_FLUSHING_MASK
);
5861 if (flags
& CODING_ISO_FLAG_COMPOSITION
)
5862 coding
->common_flags
|= CODING_ANNOTATE_COMPOSITION_MASK
;
5863 if (flags
& CODING_ISO_FLAG_DESIGNATION
)
5864 coding
->common_flags
|= CODING_ANNOTATE_CHARSET_MASK
;
5865 if (flags
& CODING_ISO_FLAG_FULL_SUPPORT
)
5867 setup_iso_safe_charsets (attrs
);
5868 val
= CODING_ATTR_SAFE_CHARSETS (attrs
);
5869 coding
->max_charset_id
= SCHARS (val
) - 1;
5870 coding
->safe_charsets
= SDATA (val
);
5872 CODING_ISO_FLAGS (coding
) = flags
;
5873 CODING_ISO_CMP_STATUS (coding
)->state
= COMPOSING_NO
;
5874 CODING_ISO_CMP_STATUS (coding
)->method
= COMPOSITION_NO
;
5875 CODING_ISO_EXTSEGMENT_LEN (coding
) = 0;
5876 CODING_ISO_EMBEDDED_UTF_8 (coding
) = 0;
5878 else if (EQ (coding_type
, Qcharset
))
5880 coding
->detector
= detect_coding_charset
;
5881 coding
->decoder
= decode_coding_charset
;
5882 coding
->encoder
= encode_coding_charset
;
5883 coding
->common_flags
5884 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5886 else if (EQ (coding_type
, Qutf_8
))
5888 val
= AREF (attrs
, coding_attr_utf_bom
);
5889 CODING_UTF_8_BOM (coding
) = (CONSP (val
) ? utf_detect_bom
5890 : EQ (val
, Qt
) ? utf_with_bom
5892 coding
->detector
= detect_coding_utf_8
;
5893 coding
->decoder
= decode_coding_utf_8
;
5894 coding
->encoder
= encode_coding_utf_8
;
5895 coding
->common_flags
5896 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5897 if (CODING_UTF_8_BOM (coding
) == utf_detect_bom
)
5898 coding
->common_flags
|= CODING_REQUIRE_DETECTION_MASK
;
5900 else if (EQ (coding_type
, Qutf_16
))
5902 val
= AREF (attrs
, coding_attr_utf_bom
);
5903 CODING_UTF_16_BOM (coding
) = (CONSP (val
) ? utf_detect_bom
5904 : EQ (val
, Qt
) ? utf_with_bom
5906 val
= AREF (attrs
, coding_attr_utf_16_endian
);
5907 CODING_UTF_16_ENDIAN (coding
) = (EQ (val
, Qbig
) ? utf_16_big_endian
5908 : utf_16_little_endian
);
5909 CODING_UTF_16_SURROGATE (coding
) = 0;
5910 coding
->detector
= detect_coding_utf_16
;
5911 coding
->decoder
= decode_coding_utf_16
;
5912 coding
->encoder
= encode_coding_utf_16
;
5913 coding
->common_flags
5914 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5915 if (CODING_UTF_16_BOM (coding
) == utf_detect_bom
)
5916 coding
->common_flags
|= CODING_REQUIRE_DETECTION_MASK
;
5918 else if (EQ (coding_type
, Qccl
))
5920 coding
->detector
= detect_coding_ccl
;
5921 coding
->decoder
= decode_coding_ccl
;
5922 coding
->encoder
= encode_coding_ccl
;
5923 coding
->common_flags
5924 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
5925 | CODING_REQUIRE_FLUSHING_MASK
);
5927 else if (EQ (coding_type
, Qemacs_mule
))
5929 coding
->detector
= detect_coding_emacs_mule
;
5930 coding
->decoder
= decode_coding_emacs_mule
;
5931 coding
->encoder
= encode_coding_emacs_mule
;
5932 coding
->common_flags
5933 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5934 coding
->spec
.emacs_mule
.full_support
= 1;
5935 if (! NILP (AREF (attrs
, coding_attr_emacs_mule_full
))
5936 && ! EQ (CODING_ATTR_CHARSET_LIST (attrs
), Vemacs_mule_charset_list
))
5938 Lisp_Object tail
, safe_charsets
;
5939 int max_charset_id
= 0;
5941 for (tail
= Vemacs_mule_charset_list
; CONSP (tail
);
5943 if (max_charset_id
< XFASTINT (XCAR (tail
)))
5944 max_charset_id
= XFASTINT (XCAR (tail
));
5945 safe_charsets
= make_uninit_string (max_charset_id
+ 1);
5946 memset (SDATA (safe_charsets
), 255, max_charset_id
+ 1);
5947 for (tail
= Vemacs_mule_charset_list
; CONSP (tail
);
5949 SSET (safe_charsets
, XFASTINT (XCAR (tail
)), 0);
5950 coding
->max_charset_id
= max_charset_id
;
5951 coding
->safe_charsets
= SDATA (safe_charsets
);
5952 coding
->spec
.emacs_mule
.full_support
= 1;
5954 coding
->spec
.emacs_mule
.cmp_status
.state
= COMPOSING_NO
;
5955 coding
->spec
.emacs_mule
.cmp_status
.method
= COMPOSITION_NO
;
5957 else if (EQ (coding_type
, Qshift_jis
))
5959 coding
->detector
= detect_coding_sjis
;
5960 coding
->decoder
= decode_coding_sjis
;
5961 coding
->encoder
= encode_coding_sjis
;
5962 coding
->common_flags
5963 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5965 else if (EQ (coding_type
, Qbig5
))
5967 coding
->detector
= detect_coding_big5
;
5968 coding
->decoder
= decode_coding_big5
;
5969 coding
->encoder
= encode_coding_big5
;
5970 coding
->common_flags
5971 |= (CODING_REQUIRE_DECODING_MASK
| CODING_REQUIRE_ENCODING_MASK
);
5973 else /* EQ (coding_type, Qraw_text) */
5975 coding
->detector
= NULL
;
5976 coding
->decoder
= decode_coding_raw_text
;
5977 coding
->encoder
= encode_coding_raw_text
;
5978 if (! EQ (eol_type
, Qunix
))
5980 coding
->common_flags
|= CODING_REQUIRE_DECODING_MASK
;
5981 if (! VECTORP (eol_type
))
5982 coding
->common_flags
|= CODING_REQUIRE_ENCODING_MASK
;
5990 /* Return a list of charsets supported by CODING. */
5993 coding_charset_list (coding
)
5994 struct coding_system
*coding
;
5996 Lisp_Object attrs
, charset_list
;
5998 CODING_GET_INFO (coding
, attrs
, charset_list
);
5999 if (EQ (CODING_ATTR_TYPE (attrs
), Qiso_2022
))
6001 int flags
= XINT (AREF (attrs
, coding_attr_iso_flags
));
6003 if (flags
& CODING_ISO_FLAG_FULL_SUPPORT
)
6004 charset_list
= Viso_2022_charset_list
;
6006 else if (EQ (CODING_ATTR_TYPE (attrs
), Qemacs_mule
))
6008 charset_list
= Vemacs_mule_charset_list
;
6010 return charset_list
;
6014 /* Return a list of charsets supported by CODING-SYSTEM. */
6017 coding_system_charset_list (coding_system
)
6018 Lisp_Object coding_system
;
6021 Lisp_Object attrs
, charset_list
;
6023 CHECK_CODING_SYSTEM_GET_ID (coding_system
, id
);
6024 attrs
= CODING_ID_ATTRS (id
);
6026 if (EQ (CODING_ATTR_TYPE (attrs
), Qiso_2022
))
6028 int flags
= XINT (AREF (attrs
, coding_attr_iso_flags
));
6030 if (flags
& CODING_ISO_FLAG_FULL_SUPPORT
)
6031 charset_list
= Viso_2022_charset_list
;
6033 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
6035 else if (EQ (CODING_ATTR_TYPE (attrs
), Qemacs_mule
))
6037 charset_list
= Vemacs_mule_charset_list
;
6041 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
6043 return charset_list
;
6047 /* Return raw-text or one of its subsidiaries that has the same
6048 eol_type as CODING-SYSTEM. */
6051 raw_text_coding_system (coding_system
)
6052 Lisp_Object coding_system
;
6054 Lisp_Object spec
, attrs
;
6055 Lisp_Object eol_type
, raw_text_eol_type
;
6057 if (NILP (coding_system
))
6059 spec
= CODING_SYSTEM_SPEC (coding_system
);
6060 attrs
= AREF (spec
, 0);
6062 if (EQ (CODING_ATTR_TYPE (attrs
), Qraw_text
))
6063 return coding_system
;
6065 eol_type
= AREF (spec
, 2);
6066 if (VECTORP (eol_type
))
6068 spec
= CODING_SYSTEM_SPEC (Qraw_text
);
6069 raw_text_eol_type
= AREF (spec
, 2);
6070 return (EQ (eol_type
, Qunix
) ? AREF (raw_text_eol_type
, 0)
6071 : EQ (eol_type
, Qdos
) ? AREF (raw_text_eol_type
, 1)
6072 : AREF (raw_text_eol_type
, 2));
6076 /* If CODING_SYSTEM doesn't specify end-of-line format but PARENT
6077 does, return one of the subsidiary that has the same eol-spec as
6078 PARENT. Otherwise, return CODING_SYSTEM. If PARENT is nil,
6079 inherit end-of-line format from the system's setting
6080 (system_eol_type). */
6083 coding_inherit_eol_type (coding_system
, parent
)
6084 Lisp_Object coding_system
, parent
;
6086 Lisp_Object spec
, eol_type
;
6088 if (NILP (coding_system
))
6089 coding_system
= Qraw_text
;
6090 spec
= CODING_SYSTEM_SPEC (coding_system
);
6091 eol_type
= AREF (spec
, 2);
6092 if (VECTORP (eol_type
))
6094 Lisp_Object parent_eol_type
;
6096 if (! NILP (parent
))
6098 Lisp_Object parent_spec
;
6100 parent_spec
= CODING_SYSTEM_SPEC (parent
);
6101 parent_eol_type
= AREF (parent_spec
, 2);
6104 parent_eol_type
= system_eol_type
;
6105 if (EQ (parent_eol_type
, Qunix
))
6106 coding_system
= AREF (eol_type
, 0);
6107 else if (EQ (parent_eol_type
, Qdos
))
6108 coding_system
= AREF (eol_type
, 1);
6109 else if (EQ (parent_eol_type
, Qmac
))
6110 coding_system
= AREF (eol_type
, 2);
6112 return coding_system
;
6115 /* Emacs has a mechanism to automatically detect a coding system if it
6116 is one of Emacs' internal format, ISO2022, SJIS, and BIG5. But,
6117 it's impossible to distinguish some coding systems accurately
6118 because they use the same range of codes. So, at first, coding
6119 systems are categorized into 7, those are:
6121 o coding-category-emacs-mule
6123 The category for a coding system which has the same code range
6124 as Emacs' internal format. Assigned the coding-system (Lisp
6125 symbol) `emacs-mule' by default.
6127 o coding-category-sjis
6129 The category for a coding system which has the same code range
6130 as SJIS. Assigned the coding-system (Lisp
6131 symbol) `japanese-shift-jis' by default.
6133 o coding-category-iso-7
6135 The category for a coding system which has the same code range
6136 as ISO2022 of 7-bit environment. This doesn't use any locking
6137 shift and single shift functions. This can encode/decode all
6138 charsets. Assigned the coding-system (Lisp symbol)
6139 `iso-2022-7bit' by default.
6141 o coding-category-iso-7-tight
6143 Same as coding-category-iso-7 except that this can
6144 encode/decode only the specified charsets.
6146 o coding-category-iso-8-1
6148 The category for a coding system which has the same code range
6149 as ISO2022 of 8-bit environment and graphic plane 1 used only
6150 for DIMENSION1 charset. This doesn't use any locking shift
6151 and single shift functions. Assigned the coding-system (Lisp
6152 symbol) `iso-latin-1' by default.
6154 o coding-category-iso-8-2
6156 The category for a coding system which has the same code range
6157 as ISO2022 of 8-bit environment and graphic plane 1 used only
6158 for DIMENSION2 charset. This doesn't use any locking shift
6159 and single shift functions. Assigned the coding-system (Lisp
6160 symbol) `japanese-iso-8bit' by default.
6162 o coding-category-iso-7-else
6164 The category for a coding system which has the same code range
6165 as ISO2022 of 7-bit environemnt but uses locking shift or
6166 single shift functions. Assigned the coding-system (Lisp
6167 symbol) `iso-2022-7bit-lock' by default.
6169 o coding-category-iso-8-else
6171 The category for a coding system which has the same code range
6172 as ISO2022 of 8-bit environemnt but uses locking shift or
6173 single shift functions. Assigned the coding-system (Lisp
6174 symbol) `iso-2022-8bit-ss2' by default.
6176 o coding-category-big5
6178 The category for a coding system which has the same code range
6179 as BIG5. Assigned the coding-system (Lisp symbol)
6180 `cn-big5' by default.
6182 o coding-category-utf-8
6184 The category for a coding system which has the same code range
6185 as UTF-8 (cf. RFC3629). Assigned the coding-system (Lisp
6186 symbol) `utf-8' by default.
6188 o coding-category-utf-16-be
6190 The category for a coding system in which a text has an
6191 Unicode signature (cf. Unicode Standard) in the order of BIG
6192 endian at the head. Assigned the coding-system (Lisp symbol)
6193 `utf-16-be' by default.
6195 o coding-category-utf-16-le
6197 The category for a coding system in which a text has an
6198 Unicode signature (cf. Unicode Standard) in the order of
6199 LITTLE endian at the head. Assigned the coding-system (Lisp
6200 symbol) `utf-16-le' by default.
6202 o coding-category-ccl
6204 The category for a coding system of which encoder/decoder is
6205 written in CCL programs. The default value is nil, i.e., no
6206 coding system is assigned.
6208 o coding-category-binary
6210 The category for a coding system not categorized in any of the
6211 above. Assigned the coding-system (Lisp symbol)
6212 `no-conversion' by default.
6214 Each of them is a Lisp symbol and the value is an actual
6215 `coding-system's (this is also a Lisp symbol) assigned by a user.
6216 What Emacs does actually is to detect a category of coding system.
6217 Then, it uses a `coding-system' assigned to it. If Emacs can't
6218 decide only one possible category, it selects a category of the
6219 highest priority. Priorities of categories are also specified by a
6220 user in a Lisp variable `coding-category-list'.
6224 #define EOL_SEEN_NONE 0
6225 #define EOL_SEEN_LF 1
6226 #define EOL_SEEN_CR 2
6227 #define EOL_SEEN_CRLF 4
6229 /* Detect how end-of-line of a text of length SRC_BYTES pointed by
6230 SOURCE is encoded. If CATEGORY is one of
6231 coding_category_utf_16_XXXX, assume that CR and LF are encoded by
6232 two-byte, else they are encoded by one-byte.
6234 Return one of EOL_SEEN_XXX. */
6236 #define MAX_EOL_CHECK_COUNT 3
6239 detect_eol (source
, src_bytes
, category
)
6240 const unsigned char *source
;
6241 EMACS_INT src_bytes
;
6242 enum coding_category category
;
6244 const unsigned char *src
= source
, *src_end
= src
+ src_bytes
;
6247 int eol_seen
= EOL_SEEN_NONE
;
6249 if ((1 << category
) & CATEGORY_MASK_UTF_16
)
6253 msb
= category
== (coding_category_utf_16_le
6254 | coding_category_utf_16_le_nosig
);
6257 while (src
+ 1 < src_end
)
6260 if (src
[msb
] == 0 && (c
== '\n' || c
== '\r'))
6265 this_eol
= EOL_SEEN_LF
;
6266 else if (src
+ 3 >= src_end
6267 || src
[msb
+ 2] != 0
6268 || src
[lsb
+ 2] != '\n')
6269 this_eol
= EOL_SEEN_CR
;
6272 this_eol
= EOL_SEEN_CRLF
;
6276 if (eol_seen
== EOL_SEEN_NONE
)
6277 /* This is the first end-of-line. */
6278 eol_seen
= this_eol
;
6279 else if (eol_seen
!= this_eol
)
6281 /* The found type is different from what found before.
6282 Allow for stray ^M characters in DOS EOL files. */
6283 if (eol_seen
== EOL_SEEN_CR
&& this_eol
== EOL_SEEN_CRLF
6284 || eol_seen
== EOL_SEEN_CRLF
&& this_eol
== EOL_SEEN_CR
)
6285 eol_seen
= EOL_SEEN_CRLF
;
6288 eol_seen
= EOL_SEEN_LF
;
6292 if (++total
== MAX_EOL_CHECK_COUNT
)
6300 while (src
< src_end
)
6303 if (c
== '\n' || c
== '\r')
6308 this_eol
= EOL_SEEN_LF
;
6309 else if (src
>= src_end
|| *src
!= '\n')
6310 this_eol
= EOL_SEEN_CR
;
6312 this_eol
= EOL_SEEN_CRLF
, src
++;
6314 if (eol_seen
== EOL_SEEN_NONE
)
6315 /* This is the first end-of-line. */
6316 eol_seen
= this_eol
;
6317 else if (eol_seen
!= this_eol
)
6319 /* The found type is different from what found before.
6320 Allow for stray ^M characters in DOS EOL files. */
6321 if (eol_seen
== EOL_SEEN_CR
&& this_eol
== EOL_SEEN_CRLF
6322 || eol_seen
== EOL_SEEN_CRLF
&& this_eol
== EOL_SEEN_CR
)
6323 eol_seen
= EOL_SEEN_CRLF
;
6326 eol_seen
= EOL_SEEN_LF
;
6330 if (++total
== MAX_EOL_CHECK_COUNT
)
6340 adjust_coding_eol_type (coding
, eol_seen
)
6341 struct coding_system
*coding
;
6344 Lisp_Object eol_type
;
6346 eol_type
= CODING_ID_EOL_TYPE (coding
->id
);
6347 if (eol_seen
& EOL_SEEN_LF
)
6349 coding
->id
= CODING_SYSTEM_ID (AREF (eol_type
, 0));
6352 else if (eol_seen
& EOL_SEEN_CRLF
)
6354 coding
->id
= CODING_SYSTEM_ID (AREF (eol_type
, 1));
6357 else if (eol_seen
& EOL_SEEN_CR
)
6359 coding
->id
= CODING_SYSTEM_ID (AREF (eol_type
, 2));
6365 /* Detect how a text specified in CODING is encoded. If a coding
6366 system is detected, update fields of CODING by the detected coding
6370 detect_coding (coding
)
6371 struct coding_system
*coding
;
6373 const unsigned char *src
, *src_end
;
6374 int saved_mode
= coding
->mode
;
6376 coding
->consumed
= coding
->consumed_char
= 0;
6377 coding
->produced
= coding
->produced_char
= 0;
6378 coding_set_source (coding
);
6380 src_end
= coding
->source
+ coding
->src_bytes
;
6381 coding
->head_ascii
= 0;
6383 /* If we have not yet decided the text encoding type, detect it
6385 if (EQ (CODING_ATTR_TYPE (CODING_ID_ATTRS (coding
->id
)), Qundecided
))
6388 struct coding_detection_info detect_info
;
6389 int null_byte_found
= 0, eight_bit_found
= 0;
6391 detect_info
.checked
= detect_info
.found
= detect_info
.rejected
= 0;
6392 for (src
= coding
->source
; src
< src_end
; src
++)
6397 eight_bit_found
= 1;
6398 if (null_byte_found
)
6403 if ((c
== ISO_CODE_ESC
|| c
== ISO_CODE_SI
|| c
== ISO_CODE_SO
)
6404 && ! inhibit_iso_escape_detection
6405 && ! detect_info
.checked
)
6407 if (detect_coding_iso_2022 (coding
, &detect_info
))
6409 /* We have scanned the whole data. */
6410 if (! (detect_info
.rejected
& CATEGORY_MASK_ISO_7_ELSE
))
6412 /* We didn't find an 8-bit code. We may
6413 have found a null-byte, but it's very
6414 rare that a binary file confirm to
6417 coding
->head_ascii
= src
- coding
->source
;
6419 detect_info
.rejected
|= ~CATEGORY_MASK_ISO_ESCAPE
;
6423 else if (! c
&& !inhibit_null_byte_detection
)
6425 null_byte_found
= 1;
6426 if (eight_bit_found
)
6429 if (! eight_bit_found
)
6430 coding
->head_ascii
++;
6432 else if (! eight_bit_found
)
6433 coding
->head_ascii
++;
6436 if (null_byte_found
|| eight_bit_found
6437 || coding
->head_ascii
< coding
->src_bytes
6438 || detect_info
.found
)
6440 enum coding_category category
;
6441 struct coding_system
*this;
6443 if (coding
->head_ascii
== coding
->src_bytes
)
6444 /* As all bytes are 7-bit, we can ignore non-ISO-2022 codings. */
6445 for (i
= 0; i
< coding_category_raw_text
; i
++)
6447 category
= coding_priorities
[i
];
6448 this = coding_categories
+ category
;
6449 if (detect_info
.found
& (1 << category
))
6454 if (null_byte_found
)
6456 detect_info
.checked
|= ~CATEGORY_MASK_UTF_16
;
6457 detect_info
.rejected
|= ~CATEGORY_MASK_UTF_16
;
6459 for (i
= 0; i
< coding_category_raw_text
; i
++)
6461 category
= coding_priorities
[i
];
6462 this = coding_categories
+ category
;
6465 /* No coding system of this category is defined. */
6466 detect_info
.rejected
|= (1 << category
);
6468 else if (category
>= coding_category_raw_text
)
6470 else if (detect_info
.checked
& (1 << category
))
6472 if (detect_info
.found
& (1 << category
))
6475 else if ((*(this->detector
)) (coding
, &detect_info
)
6476 && detect_info
.found
& (1 << category
))
6478 if (category
== coding_category_utf_16_auto
)
6480 if (detect_info
.found
& CATEGORY_MASK_UTF_16_LE
)
6481 category
= coding_category_utf_16_le
;
6483 category
= coding_category_utf_16_be
;
6490 if (i
< coding_category_raw_text
)
6491 setup_coding_system (CODING_ID_NAME (this->id
), coding
);
6492 else if (null_byte_found
)
6493 setup_coding_system (Qno_conversion
, coding
);
6494 else if ((detect_info
.rejected
& CATEGORY_MASK_ANY
)
6495 == CATEGORY_MASK_ANY
)
6496 setup_coding_system (Qraw_text
, coding
);
6497 else if (detect_info
.rejected
)
6498 for (i
= 0; i
< coding_category_raw_text
; i
++)
6499 if (! (detect_info
.rejected
& (1 << coding_priorities
[i
])))
6501 this = coding_categories
+ coding_priorities
[i
];
6502 setup_coding_system (CODING_ID_NAME (this->id
), coding
);
6507 else if (XINT (CODING_ATTR_CATEGORY (CODING_ID_ATTRS (coding
->id
)))
6508 == coding_category_utf_8_auto
)
6510 Lisp_Object coding_systems
;
6511 struct coding_detection_info detect_info
;
6514 = AREF (CODING_ID_ATTRS (coding
->id
), coding_attr_utf_bom
);
6515 detect_info
.found
= detect_info
.rejected
= 0;
6516 coding
->head_ascii
= 0;
6517 if (CONSP (coding_systems
)
6518 && detect_coding_utf_8 (coding
, &detect_info
))
6520 if (detect_info
.found
& CATEGORY_MASK_UTF_8_SIG
)
6521 setup_coding_system (XCAR (coding_systems
), coding
);
6523 setup_coding_system (XCDR (coding_systems
), coding
);
6526 else if (XINT (CODING_ATTR_CATEGORY (CODING_ID_ATTRS (coding
->id
)))
6527 == coding_category_utf_16_auto
)
6529 Lisp_Object coding_systems
;
6530 struct coding_detection_info detect_info
;
6533 = AREF (CODING_ID_ATTRS (coding
->id
), coding_attr_utf_bom
);
6534 detect_info
.found
= detect_info
.rejected
= 0;
6535 coding
->head_ascii
= 0;
6536 if (CONSP (coding_systems
)
6537 && detect_coding_utf_16 (coding
, &detect_info
))
6539 if (detect_info
.found
& CATEGORY_MASK_UTF_16_LE
)
6540 setup_coding_system (XCAR (coding_systems
), coding
);
6541 else if (detect_info
.found
& CATEGORY_MASK_UTF_16_BE
)
6542 setup_coding_system (XCDR (coding_systems
), coding
);
6545 coding
->mode
= saved_mode
;
6551 struct coding_system
*coding
;
6553 Lisp_Object eol_type
;
6554 unsigned char *p
, *pbeg
, *pend
;
6556 eol_type
= CODING_ID_EOL_TYPE (coding
->id
);
6557 if (EQ (eol_type
, Qunix
) || inhibit_eol_conversion
)
6560 if (NILP (coding
->dst_object
))
6561 pbeg
= coding
->destination
;
6563 pbeg
= BYTE_POS_ADDR (coding
->dst_pos_byte
);
6564 pend
= pbeg
+ coding
->produced
;
6566 if (VECTORP (eol_type
))
6568 int eol_seen
= EOL_SEEN_NONE
;
6570 for (p
= pbeg
; p
< pend
; p
++)
6573 eol_seen
|= EOL_SEEN_LF
;
6574 else if (*p
== '\r')
6576 if (p
+ 1 < pend
&& *(p
+ 1) == '\n')
6578 eol_seen
|= EOL_SEEN_CRLF
;
6582 eol_seen
|= EOL_SEEN_CR
;
6585 /* Handle DOS-style EOLs in a file with stray ^M characters. */
6586 if ((eol_seen
& EOL_SEEN_CRLF
) != 0
6587 && (eol_seen
& EOL_SEEN_CR
) != 0
6588 && (eol_seen
& EOL_SEEN_LF
) == 0)
6589 eol_seen
= EOL_SEEN_CRLF
;
6590 else if (eol_seen
!= EOL_SEEN_NONE
6591 && eol_seen
!= EOL_SEEN_LF
6592 && eol_seen
!= EOL_SEEN_CRLF
6593 && eol_seen
!= EOL_SEEN_CR
)
6594 eol_seen
= EOL_SEEN_LF
;
6595 if (eol_seen
!= EOL_SEEN_NONE
)
6596 eol_type
= adjust_coding_eol_type (coding
, eol_seen
);
6599 if (EQ (eol_type
, Qmac
))
6601 for (p
= pbeg
; p
< pend
; p
++)
6605 else if (EQ (eol_type
, Qdos
))
6609 if (NILP (coding
->dst_object
))
6611 /* Start deleting '\r' from the tail to minimize the memory
6613 for (p
= pend
- 2; p
>= pbeg
; p
--)
6616 safe_bcopy ((char *) (p
+ 1), (char *) p
, pend
-- - p
- 1);
6622 int pos_byte
= coding
->dst_pos_byte
;
6623 int pos
= coding
->dst_pos
;
6624 int pos_end
= pos
+ coding
->produced_char
- 1;
6626 while (pos
< pos_end
)
6628 p
= BYTE_POS_ADDR (pos_byte
);
6629 if (*p
== '\r' && p
[1] == '\n')
6631 del_range_2 (pos
, pos_byte
, pos
+ 1, pos_byte
+ 1, 0);
6636 if (coding
->dst_multibyte
)
6637 pos_byte
+= BYTES_BY_CHAR_HEAD (*p
);
6642 coding
->produced
-= n
;
6643 coding
->produced_char
-= n
;
6648 /* Return a translation table (or list of them) from coding system
6649 attribute vector ATTRS for encoding (ENCODEP is nonzero) or
6650 decoding (ENCODEP is zero). */
6653 get_translation_table (attrs
, encodep
, max_lookup
)
6655 int encodep
, *max_lookup
;
6657 Lisp_Object standard
, translation_table
;
6660 if (NILP (Venable_character_translation
))
6667 translation_table
= CODING_ATTR_ENCODE_TBL (attrs
),
6668 standard
= Vstandard_translation_table_for_encode
;
6670 translation_table
= CODING_ATTR_DECODE_TBL (attrs
),
6671 standard
= Vstandard_translation_table_for_decode
;
6672 if (NILP (translation_table
))
6673 translation_table
= standard
;
6676 if (SYMBOLP (translation_table
))
6677 translation_table
= Fget (translation_table
, Qtranslation_table
);
6678 else if (CONSP (translation_table
))
6680 translation_table
= Fcopy_sequence (translation_table
);
6681 for (val
= translation_table
; CONSP (val
); val
= XCDR (val
))
6682 if (SYMBOLP (XCAR (val
)))
6683 XSETCAR (val
, Fget (XCAR (val
), Qtranslation_table
));
6685 if (CHAR_TABLE_P (standard
))
6687 if (CONSP (translation_table
))
6688 translation_table
= nconc2 (translation_table
,
6689 Fcons (standard
, Qnil
));
6691 translation_table
= Fcons (translation_table
,
6692 Fcons (standard
, Qnil
));
6699 if (CHAR_TABLE_P (translation_table
)
6700 && CHAR_TABLE_EXTRA_SLOTS (XCHAR_TABLE (translation_table
)) > 1)
6702 val
= XCHAR_TABLE (translation_table
)->extras
[1];
6703 if (NATNUMP (val
) && *max_lookup
< XFASTINT (val
))
6704 *max_lookup
= XFASTINT (val
);
6706 else if (CONSP (translation_table
))
6708 Lisp_Object tail
, val
;
6710 for (tail
= translation_table
; CONSP (tail
); tail
= XCDR (tail
))
6711 if (CHAR_TABLE_P (XCAR (tail
))
6712 && CHAR_TABLE_EXTRA_SLOTS (XCHAR_TABLE (XCAR (tail
))) > 1)
6714 val
= XCHAR_TABLE (XCAR (tail
))->extras
[1];
6715 if (NATNUMP (val
) && *max_lookup
< XFASTINT (val
))
6716 *max_lookup
= XFASTINT (val
);
6720 return translation_table
;
6723 #define LOOKUP_TRANSLATION_TABLE(table, c, trans) \
6726 if (CHAR_TABLE_P (table)) \
6728 trans = CHAR_TABLE_REF (table, c); \
6729 if (CHARACTERP (trans)) \
6730 c = XFASTINT (trans), trans = Qnil; \
6732 else if (CONSP (table)) \
6736 for (tail = table; CONSP (tail); tail = XCDR (tail)) \
6737 if (CHAR_TABLE_P (XCAR (tail))) \
6739 trans = CHAR_TABLE_REF (XCAR (tail), c); \
6740 if (CHARACTERP (trans)) \
6741 c = XFASTINT (trans), trans = Qnil; \
6742 else if (! NILP (trans)) \
6749 /* Return a translation of character(s) at BUF according to TRANS.
6750 TRANS is TO-CHAR or ((FROM . TO) ...) where
6751 FROM = [FROM-CHAR ...], TO is TO-CHAR or [TO-CHAR ...].
6752 The return value is TO-CHAR or ([FROM-CHAR ...] . TO) if a
6753 translation is found, and Qnil if not found..
6754 If BUF is too short to lookup characters in FROM, return Qt. */
6757 get_translation (trans
, buf
, buf_end
)
6762 if (INTEGERP (trans
))
6764 for (; CONSP (trans
); trans
= XCDR (trans
))
6766 Lisp_Object val
= XCAR (trans
);
6767 Lisp_Object from
= XCAR (val
);
6768 int len
= ASIZE (from
);
6771 for (i
= 0; i
< len
; i
++)
6773 if (buf
+ i
== buf_end
)
6775 if (XINT (AREF (from
, i
)) != buf
[i
])
6786 produce_chars (coding
, translation_table
, last_block
)
6787 struct coding_system
*coding
;
6788 Lisp_Object translation_table
;
6791 unsigned char *dst
= coding
->destination
+ coding
->produced
;
6792 unsigned char *dst_end
= coding
->destination
+ coding
->dst_bytes
;
6794 EMACS_INT produced_chars
= 0;
6797 if (! coding
->chars_at_source
)
6799 /* Source characters are in coding->charbuf. */
6800 int *buf
= coding
->charbuf
;
6801 int *buf_end
= buf
+ coding
->charbuf_used
;
6803 if (EQ (coding
->src_object
, coding
->dst_object
))
6805 coding_set_source (coding
);
6806 dst_end
= ((unsigned char *) coding
->source
) + coding
->consumed
;
6809 while (buf
< buf_end
)
6815 int from_nchars
= 1, to_nchars
= 1;
6816 Lisp_Object trans
= Qnil
;
6818 LOOKUP_TRANSLATION_TABLE (translation_table
, c
, trans
);
6821 trans
= get_translation (trans
, buf
, buf_end
);
6822 if (INTEGERP (trans
))
6824 else if (CONSP (trans
))
6826 from_nchars
= ASIZE (XCAR (trans
));
6827 trans
= XCDR (trans
);
6828 if (INTEGERP (trans
))
6832 to_nchars
= ASIZE (trans
);
6833 c
= XINT (AREF (trans
, 0));
6836 else if (EQ (trans
, Qt
) && ! last_block
)
6840 if (dst
+ MAX_MULTIBYTE_LENGTH
* to_nchars
> dst_end
)
6842 dst
= alloc_destination (coding
,
6844 + MAX_MULTIBYTE_LENGTH
* to_nchars
,
6846 if (EQ (coding
->src_object
, coding
->dst_object
))
6848 coding_set_source (coding
);
6849 dst_end
= (((unsigned char *) coding
->source
)
6850 + coding
->consumed
);
6853 dst_end
= coding
->destination
+ coding
->dst_bytes
;
6856 for (i
= 0; i
< to_nchars
; i
++)
6859 c
= XINT (AREF (trans
, i
));
6860 if (coding
->dst_multibyte
6861 || ! CHAR_BYTE8_P (c
))
6862 CHAR_STRING_ADVANCE_NO_UNIFY (c
, dst
);
6864 *dst
++ = CHAR_TO_BYTE8 (c
);
6866 produced_chars
+= to_nchars
;
6870 /* This is an annotation datum. (-C) is the length. */
6873 carryover
= buf_end
- buf
;
6877 /* Source characters are at coding->source. */
6878 const unsigned char *src
= coding
->source
;
6879 const unsigned char *src_end
= src
+ coding
->consumed
;
6881 if (EQ (coding
->dst_object
, coding
->src_object
))
6882 dst_end
= (unsigned char *) src
;
6883 if (coding
->src_multibyte
!= coding
->dst_multibyte
)
6885 if (coding
->src_multibyte
)
6888 EMACS_INT consumed_chars
= 0;
6892 const unsigned char *src_base
= src
;
6898 if (EQ (coding
->src_object
, coding
->dst_object
))
6899 dst_end
= (unsigned char *) src
;
6902 EMACS_INT offset
= src
- coding
->source
;
6904 dst
= alloc_destination (coding
, src_end
- src
+ 1,
6906 dst_end
= coding
->destination
+ coding
->dst_bytes
;
6907 coding_set_source (coding
);
6908 src
= coding
->source
+ offset
;
6909 src_end
= coding
->source
+ coding
->src_bytes
;
6910 if (EQ (coding
->src_object
, coding
->dst_object
))
6911 dst_end
= (unsigned char *) src
;
6921 while (src
< src_end
)
6926 if (dst
>= dst_end
- 1)
6928 if (EQ (coding
->src_object
, coding
->dst_object
))
6929 dst_end
= (unsigned char *) src
;
6930 if (dst
>= dst_end
- 1)
6932 EMACS_INT offset
= src
- coding
->source
;
6933 EMACS_INT more_bytes
;
6935 if (EQ (coding
->src_object
, coding
->dst_object
))
6936 more_bytes
= ((src_end
- src
) / 2) + 2;
6938 more_bytes
= src_end
- src
+ 2;
6939 dst
= alloc_destination (coding
, more_bytes
, dst
);
6940 dst_end
= coding
->destination
+ coding
->dst_bytes
;
6941 coding_set_source (coding
);
6942 src
= coding
->source
+ offset
;
6943 src_end
= coding
->source
+ coding
->src_bytes
;
6944 if (EQ (coding
->src_object
, coding
->dst_object
))
6945 dst_end
= (unsigned char *) src
;
6953 if (!EQ (coding
->src_object
, coding
->dst_object
))
6955 EMACS_INT require
= coding
->src_bytes
- coding
->dst_bytes
;
6959 EMACS_INT offset
= src
- coding
->source
;
6961 dst
= alloc_destination (coding
, require
, dst
);
6962 coding_set_source (coding
);
6963 src
= coding
->source
+ offset
;
6964 src_end
= coding
->source
+ coding
->src_bytes
;
6967 produced_chars
= coding
->consumed_char
;
6968 while (src
< src_end
)
6973 produced
= dst
- (coding
->destination
+ coding
->produced
);
6974 if (BUFFERP (coding
->dst_object
) && produced_chars
> 0)
6975 insert_from_gap (produced_chars
, produced
);
6976 coding
->produced
+= produced
;
6977 coding
->produced_char
+= produced_chars
;
6981 /* Compose text in CODING->object according to the annotation data at
6982 CHARBUF. CHARBUF is an array:
6983 [ -LENGTH ANNOTATION_MASK NCHARS NBYTES METHOD [ COMPONENTS... ] ]
6987 produce_composition (coding
, charbuf
, pos
)
6988 struct coding_system
*coding
;
6994 enum composition_method method
;
6995 Lisp_Object components
;
6997 len
= -charbuf
[0] - MAX_ANNOTATION_LENGTH
;
6998 to
= pos
+ charbuf
[2];
6999 method
= (enum composition_method
) (charbuf
[4]);
7001 if (method
== COMPOSITION_RELATIVE
)
7005 Lisp_Object args
[MAX_COMPOSITION_COMPONENTS
* 2 - 1];
7008 if (method
== COMPOSITION_WITH_RULE
)
7009 len
= charbuf
[2] * 3 - 2;
7010 charbuf
+= MAX_ANNOTATION_LENGTH
;
7011 /* charbuf = [ CHRA ... CHAR] or [ CHAR -2 RULE ... CHAR ] */
7012 for (i
= j
= 0; i
< len
&& charbuf
[i
] != -1; i
++, j
++)
7014 if (charbuf
[i
] >= 0)
7015 args
[j
] = make_number (charbuf
[i
]);
7019 args
[j
] = make_number (charbuf
[i
] % 0x100);
7022 components
= (i
== j
? Fstring (j
, args
) : Fvector (j
, args
));
7024 compose_text (pos
, to
, components
, Qnil
, coding
->dst_object
);
7028 /* Put `charset' property on text in CODING->object according to
7029 the annotation data at CHARBUF. CHARBUF is an array:
7030 [ -LENGTH ANNOTATION_MASK NCHARS CHARSET-ID ]
7034 produce_charset (coding
, charbuf
, pos
)
7035 struct coding_system
*coding
;
7039 EMACS_INT from
= pos
- charbuf
[2];
7040 struct charset
*charset
= CHARSET_FROM_ID (charbuf
[3]);
7042 Fput_text_property (make_number (from
), make_number (pos
),
7043 Qcharset
, CHARSET_NAME (charset
),
7044 coding
->dst_object
);
7048 #define CHARBUF_SIZE 0x4000
7050 #define ALLOC_CONVERSION_WORK_AREA(coding) \
7052 int size = CHARBUF_SIZE; \
7054 coding->charbuf = NULL; \
7055 while (size > 1024) \
7057 coding->charbuf = (int *) alloca (sizeof (int) * size); \
7058 if (coding->charbuf) \
7062 if (! coding->charbuf) \
7064 record_conversion_result (coding, CODING_RESULT_INSUFFICIENT_MEM); \
7065 return coding->result; \
7067 coding->charbuf_size = size; \
7072 produce_annotation (coding
, pos
)
7073 struct coding_system
*coding
;
7076 int *charbuf
= coding
->charbuf
;
7077 int *charbuf_end
= charbuf
+ coding
->charbuf_used
;
7079 if (NILP (coding
->dst_object
))
7082 while (charbuf
< charbuf_end
)
7088 int len
= -*charbuf
;
7093 case CODING_ANNOTATE_COMPOSITION_MASK
:
7094 produce_composition (coding
, charbuf
, pos
);
7096 case CODING_ANNOTATE_CHARSET_MASK
:
7097 produce_charset (coding
, charbuf
, pos
);
7105 /* Decode the data at CODING->src_object into CODING->dst_object.
7106 CODING->src_object is a buffer, a string, or nil.
7107 CODING->dst_object is a buffer.
7109 If CODING->src_object is a buffer, it must be the current buffer.
7110 In this case, if CODING->src_pos is positive, it is a position of
7111 the source text in the buffer, otherwise, the source text is in the
7112 gap area of the buffer, and CODING->src_pos specifies the offset of
7113 the text from GPT (which must be the same as PT). If this is the
7114 same buffer as CODING->dst_object, CODING->src_pos must be
7117 If CODING->src_object is a string, CODING->src_pos is an index to
7120 If CODING->src_object is nil, CODING->source must already point to
7121 the non-relocatable memory area. In this case, CODING->src_pos is
7122 an offset from CODING->source.
7124 The decoded data is inserted at the current point of the buffer
7129 decode_coding (coding
)
7130 struct coding_system
*coding
;
7133 Lisp_Object undo_list
;
7134 Lisp_Object translation_table
;
7135 struct ccl_spec cclspec
;
7139 if (BUFFERP (coding
->src_object
)
7140 && coding
->src_pos
> 0
7141 && coding
->src_pos
< GPT
7142 && coding
->src_pos
+ coding
->src_chars
> GPT
)
7143 move_gap_both (coding
->src_pos
, coding
->src_pos_byte
);
7146 if (BUFFERP (coding
->dst_object
))
7148 if (current_buffer
!= XBUFFER (coding
->dst_object
))
7149 set_buffer_internal (XBUFFER (coding
->dst_object
));
7151 move_gap_both (PT
, PT_BYTE
);
7152 undo_list
= current_buffer
->undo_list
;
7153 current_buffer
->undo_list
= Qt
;
7156 coding
->consumed
= coding
->consumed_char
= 0;
7157 coding
->produced
= coding
->produced_char
= 0;
7158 coding
->chars_at_source
= 0;
7159 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
7162 ALLOC_CONVERSION_WORK_AREA (coding
);
7164 attrs
= CODING_ID_ATTRS (coding
->id
);
7165 translation_table
= get_translation_table (attrs
, 0, NULL
);
7168 if (coding
->decoder
== decode_coding_ccl
)
7170 coding
->spec
.ccl
= &cclspec
;
7171 setup_ccl_program (&cclspec
.ccl
, CODING_CCL_DECODER (coding
));
7175 EMACS_INT pos
= coding
->dst_pos
+ coding
->produced_char
;
7177 coding_set_source (coding
);
7178 coding
->annotated
= 0;
7179 coding
->charbuf_used
= carryover
;
7180 (*(coding
->decoder
)) (coding
);
7181 coding_set_destination (coding
);
7182 carryover
= produce_chars (coding
, translation_table
, 0);
7183 if (coding
->annotated
)
7184 produce_annotation (coding
, pos
);
7185 for (i
= 0; i
< carryover
; i
++)
7187 = coding
->charbuf
[coding
->charbuf_used
- carryover
+ i
];
7189 while (coding
->result
== CODING_RESULT_INSUFFICIENT_DST
7190 || (coding
->consumed
< coding
->src_bytes
7191 && (coding
->result
== CODING_RESULT_SUCCESS
7192 || coding
->result
== CODING_RESULT_INVALID_SRC
)));
7196 coding_set_destination (coding
);
7197 coding
->charbuf_used
= carryover
;
7198 produce_chars (coding
, translation_table
, 1);
7201 coding
->carryover_bytes
= 0;
7202 if (coding
->consumed
< coding
->src_bytes
)
7204 int nbytes
= coding
->src_bytes
- coding
->consumed
;
7205 const unsigned char *src
;
7207 coding_set_source (coding
);
7208 coding_set_destination (coding
);
7209 src
= coding
->source
+ coding
->consumed
;
7211 if (coding
->mode
& CODING_MODE_LAST_BLOCK
)
7213 /* Flush out unprocessed data as binary chars. We are sure
7214 that the number of data is less than the size of
7216 coding
->charbuf_used
= 0;
7217 coding
->chars_at_source
= 0;
7219 while (nbytes
-- > 0)
7224 c
= BYTE8_TO_CHAR (c
);
7225 coding
->charbuf
[coding
->charbuf_used
++] = c
;
7227 produce_chars (coding
, Qnil
, 1);
7231 /* Record unprocessed bytes in coding->carryover. We are
7232 sure that the number of data is less than the size of
7233 coding->carryover. */
7234 unsigned char *p
= coding
->carryover
;
7236 if (nbytes
> sizeof coding
->carryover
)
7237 nbytes
= sizeof coding
->carryover
;
7238 coding
->carryover_bytes
= nbytes
;
7239 while (nbytes
-- > 0)
7242 coding
->consumed
= coding
->src_bytes
;
7245 if (! EQ (CODING_ID_EOL_TYPE (coding
->id
), Qunix
)
7246 && !inhibit_eol_conversion
)
7247 decode_eol (coding
);
7248 if (BUFFERP (coding
->dst_object
))
7250 current_buffer
->undo_list
= undo_list
;
7251 record_insert (coding
->dst_pos
, coding
->produced_char
);
7253 return coding
->result
;
7257 /* Extract an annotation datum from a composition starting at POS and
7258 ending before LIMIT of CODING->src_object (buffer or string), store
7259 the data in BUF, set *STOP to a starting position of the next
7260 composition (if any) or to LIMIT, and return the address of the
7261 next element of BUF.
7263 If such an annotation is not found, set *STOP to a starting
7264 position of a composition after POS (if any) or to LIMIT, and
7268 handle_composition_annotation (pos
, limit
, coding
, buf
, stop
)
7269 EMACS_INT pos
, limit
;
7270 struct coding_system
*coding
;
7274 EMACS_INT start
, end
;
7277 if (! find_composition (pos
, limit
, &start
, &end
, &prop
, coding
->src_object
)
7280 else if (start
> pos
)
7286 /* We found a composition. Store the corresponding
7287 annotation data in BUF. */
7289 enum composition_method method
= COMPOSITION_METHOD (prop
);
7290 int nchars
= COMPOSITION_LENGTH (prop
);
7292 ADD_COMPOSITION_DATA (buf
, nchars
, 0, method
);
7293 if (method
!= COMPOSITION_RELATIVE
)
7295 Lisp_Object components
;
7298 components
= COMPOSITION_COMPONENTS (prop
);
7299 if (VECTORP (components
))
7301 len
= XVECTOR (components
)->size
;
7302 for (i
= 0; i
< len
; i
++)
7303 *buf
++ = XINT (AREF (components
, i
));
7305 else if (STRINGP (components
))
7307 len
= SCHARS (components
);
7311 FETCH_STRING_CHAR_ADVANCE (*buf
, components
, i
, i_byte
);
7315 else if (INTEGERP (components
))
7318 *buf
++ = XINT (components
);
7320 else if (CONSP (components
))
7322 for (len
= 0; CONSP (components
);
7323 len
++, components
= XCDR (components
))
7324 *buf
++ = XINT (XCAR (components
));
7332 if (find_composition (end
, limit
, &start
, &end
, &prop
,
7343 /* Extract an annotation datum from a text property `charset' at POS of
7344 CODING->src_object (buffer of string), store the data in BUF, set
7345 *STOP to the position where the value of `charset' property changes
7346 (limiting by LIMIT), and return the address of the next element of
7349 If the property value is nil, set *STOP to the position where the
7350 property value is non-nil (limiting by LIMIT), and return BUF. */
7353 handle_charset_annotation (pos
, limit
, coding
, buf
, stop
)
7354 EMACS_INT pos
, limit
;
7355 struct coding_system
*coding
;
7359 Lisp_Object val
, next
;
7362 val
= Fget_text_property (make_number (pos
), Qcharset
, coding
->src_object
);
7363 if (! NILP (val
) && CHARSETP (val
))
7364 id
= XINT (CHARSET_SYMBOL_ID (val
));
7367 ADD_CHARSET_DATA (buf
, 0, id
);
7368 next
= Fnext_single_property_change (make_number (pos
), Qcharset
,
7370 make_number (limit
));
7371 *stop
= XINT (next
);
7377 consume_chars (coding
, translation_table
, max_lookup
)
7378 struct coding_system
*coding
;
7379 Lisp_Object translation_table
;
7382 int *buf
= coding
->charbuf
;
7383 int *buf_end
= coding
->charbuf
+ coding
->charbuf_size
;
7384 const unsigned char *src
= coding
->source
+ coding
->consumed
;
7385 const unsigned char *src_end
= coding
->source
+ coding
->src_bytes
;
7386 EMACS_INT pos
= coding
->src_pos
+ coding
->consumed_char
;
7387 EMACS_INT end_pos
= coding
->src_pos
+ coding
->src_chars
;
7388 int multibytep
= coding
->src_multibyte
;
7389 Lisp_Object eol_type
;
7391 EMACS_INT stop
, stop_composition
, stop_charset
;
7392 int *lookup_buf
= NULL
;
7394 if (! NILP (translation_table
))
7395 lookup_buf
= alloca (sizeof (int) * max_lookup
);
7397 eol_type
= inhibit_eol_conversion
? Qunix
: CODING_ID_EOL_TYPE (coding
->id
);
7398 if (VECTORP (eol_type
))
7401 /* Note: composition handling is not yet implemented. */
7402 coding
->common_flags
&= ~CODING_ANNOTATE_COMPOSITION_MASK
;
7404 if (NILP (coding
->src_object
))
7405 stop
= stop_composition
= stop_charset
= end_pos
;
7408 if (coding
->common_flags
& CODING_ANNOTATE_COMPOSITION_MASK
)
7409 stop
= stop_composition
= pos
;
7411 stop
= stop_composition
= end_pos
;
7412 if (coding
->common_flags
& CODING_ANNOTATE_CHARSET_MASK
)
7413 stop
= stop_charset
= pos
;
7415 stop_charset
= end_pos
;
7418 /* Compensate for CRLF and conversion. */
7419 buf_end
-= 1 + MAX_ANNOTATION_LENGTH
;
7420 while (buf
< buf_end
)
7428 if (pos
== stop_composition
)
7429 buf
= handle_composition_annotation (pos
, end_pos
, coding
,
7430 buf
, &stop_composition
);
7431 if (pos
== stop_charset
)
7432 buf
= handle_charset_annotation (pos
, end_pos
, coding
,
7433 buf
, &stop_charset
);
7434 stop
= (stop_composition
< stop_charset
7435 ? stop_composition
: stop_charset
);
7442 if (coding
->encoder
== encode_coding_raw_text
7443 || coding
->encoder
== encode_coding_ccl
)
7445 else if ((bytes
= MULTIBYTE_LENGTH (src
, src_end
)) > 0)
7446 c
= STRING_CHAR_ADVANCE_NO_UNIFY (src
), pos
+= bytes
;
7448 c
= BYTE8_TO_CHAR (*src
), src
++, pos
++;
7451 c
= STRING_CHAR_ADVANCE_NO_UNIFY (src
), pos
++;
7452 if ((c
== '\r') && (coding
->mode
& CODING_MODE_SELECTIVE_DISPLAY
))
7454 if (! EQ (eol_type
, Qunix
))
7458 if (EQ (eol_type
, Qdos
))
7466 LOOKUP_TRANSLATION_TABLE (translation_table
, c
, trans
);
7471 int from_nchars
= 1, to_nchars
= 1;
7472 int *lookup_buf_end
;
7473 const unsigned char *p
= src
;
7477 for (i
= 1; i
< max_lookup
&& p
< src_end
; i
++)
7478 lookup_buf
[i
] = STRING_CHAR_ADVANCE (p
);
7479 lookup_buf_end
= lookup_buf
+ i
;
7480 trans
= get_translation (trans
, lookup_buf
, lookup_buf_end
);
7481 if (INTEGERP (trans
))
7483 else if (CONSP (trans
))
7485 from_nchars
= ASIZE (XCAR (trans
));
7486 trans
= XCDR (trans
);
7487 if (INTEGERP (trans
))
7491 to_nchars
= ASIZE (trans
);
7492 if (buf
+ to_nchars
> buf_end
)
7494 c
= XINT (AREF (trans
, 0));
7500 for (i
= 1; i
< to_nchars
; i
++)
7501 *buf
++ = XINT (AREF (trans
, i
));
7502 for (i
= 1; i
< from_nchars
; i
++, pos
++)
7503 src
+= MULTIBYTE_LENGTH_NO_CHECK (src
);
7507 coding
->consumed
= src
- coding
->source
;
7508 coding
->consumed_char
= pos
- coding
->src_pos
;
7509 coding
->charbuf_used
= buf
- coding
->charbuf
;
7510 coding
->chars_at_source
= 0;
7514 /* Encode the text at CODING->src_object into CODING->dst_object.
7515 CODING->src_object is a buffer or a string.
7516 CODING->dst_object is a buffer or nil.
7518 If CODING->src_object is a buffer, it must be the current buffer.
7519 In this case, if CODING->src_pos is positive, it is a position of
7520 the source text in the buffer, otherwise. the source text is in the
7521 gap area of the buffer, and coding->src_pos specifies the offset of
7522 the text from GPT (which must be the same as PT). If this is the
7523 same buffer as CODING->dst_object, CODING->src_pos must be
7524 negative and CODING should not have `pre-write-conversion'.
7526 If CODING->src_object is a string, CODING should not have
7527 `pre-write-conversion'.
7529 If CODING->dst_object is a buffer, the encoded data is inserted at
7530 the current point of that buffer.
7532 If CODING->dst_object is nil, the encoded data is placed at the
7533 memory area specified by CODING->destination. */
7536 encode_coding (coding
)
7537 struct coding_system
*coding
;
7540 Lisp_Object translation_table
;
7542 struct ccl_spec cclspec
;
7544 attrs
= CODING_ID_ATTRS (coding
->id
);
7545 if (coding
->encoder
== encode_coding_raw_text
)
7546 translation_table
= Qnil
, max_lookup
= 0;
7548 translation_table
= get_translation_table (attrs
, 1, &max_lookup
);
7550 if (BUFFERP (coding
->dst_object
))
7552 set_buffer_internal (XBUFFER (coding
->dst_object
));
7553 coding
->dst_multibyte
7554 = ! NILP (current_buffer
->enable_multibyte_characters
);
7557 coding
->consumed
= coding
->consumed_char
= 0;
7558 coding
->produced
= coding
->produced_char
= 0;
7559 record_conversion_result (coding
, CODING_RESULT_SUCCESS
);
7562 ALLOC_CONVERSION_WORK_AREA (coding
);
7564 if (coding
->encoder
== encode_coding_ccl
)
7566 coding
->spec
.ccl
= &cclspec
;
7567 setup_ccl_program (&cclspec
.ccl
, CODING_CCL_ENCODER (coding
));
7570 coding_set_source (coding
);
7571 consume_chars (coding
, translation_table
, max_lookup
);
7572 coding_set_destination (coding
);
7573 (*(coding
->encoder
)) (coding
);
7574 } while (coding
->consumed_char
< coding
->src_chars
);
7576 if (BUFFERP (coding
->dst_object
) && coding
->produced_char
> 0)
7577 insert_from_gap (coding
->produced_char
, coding
->produced
);
7579 return (coding
->result
);
7583 /* Name (or base name) of work buffer for code conversion. */
7584 static Lisp_Object Vcode_conversion_workbuf_name
;
7586 /* A working buffer used by the top level conversion. Once it is
7587 created, it is never destroyed. It has the name
7588 Vcode_conversion_workbuf_name. The other working buffers are
7589 destroyed after the use is finished, and their names are modified
7590 versions of Vcode_conversion_workbuf_name. */
7591 static Lisp_Object Vcode_conversion_reused_workbuf
;
7593 /* 1 iff Vcode_conversion_reused_workbuf is already in use. */
7594 static int reused_workbuf_in_use
;
7597 /* Return a working buffer of code convesion. MULTIBYTE specifies the
7598 multibyteness of returning buffer. */
7601 make_conversion_work_buffer (multibyte
)
7604 Lisp_Object name
, workbuf
;
7605 struct buffer
*current
;
7607 if (reused_workbuf_in_use
++)
7609 name
= Fgenerate_new_buffer_name (Vcode_conversion_workbuf_name
, Qnil
);
7610 workbuf
= Fget_buffer_create (name
);
7614 if (NILP (Fbuffer_live_p (Vcode_conversion_reused_workbuf
)))
7615 Vcode_conversion_reused_workbuf
7616 = Fget_buffer_create (Vcode_conversion_workbuf_name
);
7617 workbuf
= Vcode_conversion_reused_workbuf
;
7619 current
= current_buffer
;
7620 set_buffer_internal (XBUFFER (workbuf
));
7621 /* We can't allow modification hooks to run in the work buffer. For
7622 instance, directory_files_internal assumes that file decoding
7623 doesn't compile new regexps. */
7624 Fset (Fmake_local_variable (Qinhibit_modification_hooks
), Qt
);
7626 current_buffer
->undo_list
= Qt
;
7627 current_buffer
->enable_multibyte_characters
= multibyte
? Qt
: Qnil
;
7628 set_buffer_internal (current
);
7634 code_conversion_restore (arg
)
7637 Lisp_Object current
, workbuf
;
7638 struct gcpro gcpro1
;
7641 current
= XCAR (arg
);
7642 workbuf
= XCDR (arg
);
7643 if (! NILP (workbuf
))
7645 if (EQ (workbuf
, Vcode_conversion_reused_workbuf
))
7646 reused_workbuf_in_use
= 0;
7647 else if (! NILP (Fbuffer_live_p (workbuf
)))
7648 Fkill_buffer (workbuf
);
7650 set_buffer_internal (XBUFFER (current
));
7656 code_conversion_save (with_work_buf
, multibyte
)
7657 int with_work_buf
, multibyte
;
7659 Lisp_Object workbuf
= Qnil
;
7662 workbuf
= make_conversion_work_buffer (multibyte
);
7663 record_unwind_protect (code_conversion_restore
,
7664 Fcons (Fcurrent_buffer (), workbuf
));
7669 decode_coding_gap (coding
, chars
, bytes
)
7670 struct coding_system
*coding
;
7671 EMACS_INT chars
, bytes
;
7673 int count
= specpdl_ptr
- specpdl
;
7676 code_conversion_save (0, 0);
7678 coding
->src_object
= Fcurrent_buffer ();
7679 coding
->src_chars
= chars
;
7680 coding
->src_bytes
= bytes
;
7681 coding
->src_pos
= -chars
;
7682 coding
->src_pos_byte
= -bytes
;
7683 coding
->src_multibyte
= chars
< bytes
;
7684 coding
->dst_object
= coding
->src_object
;
7685 coding
->dst_pos
= PT
;
7686 coding
->dst_pos_byte
= PT_BYTE
;
7687 coding
->dst_multibyte
= ! NILP (current_buffer
->enable_multibyte_characters
);
7689 if (CODING_REQUIRE_DETECTION (coding
))
7690 detect_coding (coding
);
7692 coding
->mode
|= CODING_MODE_LAST_BLOCK
;
7693 current_buffer
->text
->inhibit_shrinking
= 1;
7694 decode_coding (coding
);
7695 current_buffer
->text
->inhibit_shrinking
= 0;
7697 attrs
= CODING_ID_ATTRS (coding
->id
);
7698 if (! NILP (CODING_ATTR_POST_READ (attrs
)))
7700 EMACS_INT prev_Z
= Z
, prev_Z_BYTE
= Z_BYTE
;
7703 TEMP_SET_PT_BOTH (coding
->dst_pos
, coding
->dst_pos_byte
);
7704 val
= call1 (CODING_ATTR_POST_READ (attrs
),
7705 make_number (coding
->produced_char
));
7707 coding
->produced_char
+= Z
- prev_Z
;
7708 coding
->produced
+= Z_BYTE
- prev_Z_BYTE
;
7711 unbind_to (count
, Qnil
);
7712 return coding
->result
;
7716 encode_coding_gap (coding
, chars
, bytes
)
7717 struct coding_system
*coding
;
7718 EMACS_INT chars
, bytes
;
7720 int count
= specpdl_ptr
- specpdl
;
7722 code_conversion_save (0, 0);
7724 coding
->src_object
= Fcurrent_buffer ();
7725 coding
->src_chars
= chars
;
7726 coding
->src_bytes
= bytes
;
7727 coding
->src_pos
= -chars
;
7728 coding
->src_pos_byte
= -bytes
;
7729 coding
->src_multibyte
= chars
< bytes
;
7730 coding
->dst_object
= coding
->src_object
;
7731 coding
->dst_pos
= PT
;
7732 coding
->dst_pos_byte
= PT_BYTE
;
7734 encode_coding (coding
);
7736 unbind_to (count
, Qnil
);
7737 return coding
->result
;
7741 /* Decode the text in the range FROM/FROM_BYTE and TO/TO_BYTE in
7742 SRC_OBJECT into DST_OBJECT by coding context CODING.
7744 SRC_OBJECT is a buffer, a string, or Qnil.
7746 If it is a buffer, the text is at point of the buffer. FROM and TO
7747 are positions in the buffer.
7749 If it is a string, the text is at the beginning of the string.
7750 FROM and TO are indices to the string.
7752 If it is nil, the text is at coding->source. FROM and TO are
7753 indices to coding->source.
7755 DST_OBJECT is a buffer, Qt, or Qnil.
7757 If it is a buffer, the decoded text is inserted at point of the
7758 buffer. If the buffer is the same as SRC_OBJECT, the source text
7761 If it is Qt, a string is made from the decoded text, and
7762 set in CODING->dst_object.
7764 If it is Qnil, the decoded text is stored at CODING->destination.
7765 The caller must allocate CODING->dst_bytes bytes at
7766 CODING->destination by xmalloc. If the decoded text is longer than
7767 CODING->dst_bytes, CODING->destination is relocated by xrealloc.
7771 decode_coding_object (coding
, src_object
, from
, from_byte
, to
, to_byte
,
7773 struct coding_system
*coding
;
7774 Lisp_Object src_object
;
7775 EMACS_INT from
, from_byte
, to
, to_byte
;
7776 Lisp_Object dst_object
;
7778 int count
= specpdl_ptr
- specpdl
;
7779 unsigned char *destination
;
7780 EMACS_INT dst_bytes
;
7781 EMACS_INT chars
= to
- from
;
7782 EMACS_INT bytes
= to_byte
- from_byte
;
7784 int saved_pt
= -1, saved_pt_byte
;
7785 int need_marker_adjustment
= 0;
7786 Lisp_Object old_deactivate_mark
;
7788 old_deactivate_mark
= Vdeactivate_mark
;
7790 if (NILP (dst_object
))
7792 destination
= coding
->destination
;
7793 dst_bytes
= coding
->dst_bytes
;
7796 coding
->src_object
= src_object
;
7797 coding
->src_chars
= chars
;
7798 coding
->src_bytes
= bytes
;
7799 coding
->src_multibyte
= chars
< bytes
;
7801 if (STRINGP (src_object
))
7803 coding
->src_pos
= from
;
7804 coding
->src_pos_byte
= from_byte
;
7806 else if (BUFFERP (src_object
))
7808 set_buffer_internal (XBUFFER (src_object
));
7810 move_gap_both (from
, from_byte
);
7811 if (EQ (src_object
, dst_object
))
7813 struct Lisp_Marker
*tail
;
7815 for (tail
= BUF_MARKERS (current_buffer
); tail
; tail
= tail
->next
)
7817 tail
->need_adjustment
7818 = tail
->charpos
== (tail
->insertion_type
? from
: to
);
7819 need_marker_adjustment
|= tail
->need_adjustment
;
7821 saved_pt
= PT
, saved_pt_byte
= PT_BYTE
;
7822 TEMP_SET_PT_BOTH (from
, from_byte
);
7823 current_buffer
->text
->inhibit_shrinking
= 1;
7824 del_range_both (from
, from_byte
, to
, to_byte
, 1);
7825 coding
->src_pos
= -chars
;
7826 coding
->src_pos_byte
= -bytes
;
7830 coding
->src_pos
= from
;
7831 coding
->src_pos_byte
= from_byte
;
7835 if (CODING_REQUIRE_DETECTION (coding
))
7836 detect_coding (coding
);
7837 attrs
= CODING_ID_ATTRS (coding
->id
);
7839 if (EQ (dst_object
, Qt
)
7840 || (! NILP (CODING_ATTR_POST_READ (attrs
))
7841 && NILP (dst_object
)))
7843 coding
->dst_multibyte
= !CODING_FOR_UNIBYTE (coding
);
7844 coding
->dst_object
= code_conversion_save (1, coding
->dst_multibyte
);
7845 coding
->dst_pos
= BEG
;
7846 coding
->dst_pos_byte
= BEG_BYTE
;
7848 else if (BUFFERP (dst_object
))
7850 code_conversion_save (0, 0);
7851 coding
->dst_object
= dst_object
;
7852 coding
->dst_pos
= BUF_PT (XBUFFER (dst_object
));
7853 coding
->dst_pos_byte
= BUF_PT_BYTE (XBUFFER (dst_object
));
7854 coding
->dst_multibyte
7855 = ! NILP (XBUFFER (dst_object
)->enable_multibyte_characters
);
7859 code_conversion_save (0, 0);
7860 coding
->dst_object
= Qnil
;
7861 /* Most callers presume this will return a multibyte result, and they
7862 won't use `binary' or `raw-text' anyway, so let's not worry about
7863 CODING_FOR_UNIBYTE. */
7864 coding
->dst_multibyte
= 1;
7867 decode_coding (coding
);
7869 if (BUFFERP (coding
->dst_object
))
7870 set_buffer_internal (XBUFFER (coding
->dst_object
));
7872 if (! NILP (CODING_ATTR_POST_READ (attrs
)))
7874 struct gcpro gcpro1
, gcpro2
, gcpro3
, gcpro4
, gcpro5
;
7875 EMACS_INT prev_Z
= Z
, prev_Z_BYTE
= Z_BYTE
;
7878 TEMP_SET_PT_BOTH (coding
->dst_pos
, coding
->dst_pos_byte
);
7879 GCPRO5 (coding
->src_object
, coding
->dst_object
, src_object
, dst_object
,
7880 old_deactivate_mark
);
7881 val
= safe_call1 (CODING_ATTR_POST_READ (attrs
),
7882 make_number (coding
->produced_char
));
7885 coding
->produced_char
+= Z
- prev_Z
;
7886 coding
->produced
+= Z_BYTE
- prev_Z_BYTE
;
7889 if (EQ (dst_object
, Qt
))
7891 coding
->dst_object
= Fbuffer_string ();
7893 else if (NILP (dst_object
) && BUFFERP (coding
->dst_object
))
7895 set_buffer_internal (XBUFFER (coding
->dst_object
));
7896 if (dst_bytes
< coding
->produced
)
7898 destination
= xrealloc (destination
, coding
->produced
);
7901 record_conversion_result (coding
,
7902 CODING_RESULT_INSUFFICIENT_MEM
);
7903 unbind_to (count
, Qnil
);
7906 if (BEGV
< GPT
&& GPT
< BEGV
+ coding
->produced_char
)
7907 move_gap_both (BEGV
, BEGV_BYTE
);
7908 bcopy (BEGV_ADDR
, destination
, coding
->produced
);
7909 coding
->destination
= destination
;
7915 /* This is the case of:
7916 (BUFFERP (src_object) && EQ (src_object, dst_object))
7917 As we have moved PT while replacing the original buffer
7918 contents, we must recover it now. */
7919 set_buffer_internal (XBUFFER (src_object
));
7920 current_buffer
->text
->inhibit_shrinking
= 0;
7921 if (saved_pt
< from
)
7922 TEMP_SET_PT_BOTH (saved_pt
, saved_pt_byte
);
7923 else if (saved_pt
< from
+ chars
)
7924 TEMP_SET_PT_BOTH (from
, from_byte
);
7925 else if (! NILP (current_buffer
->enable_multibyte_characters
))
7926 TEMP_SET_PT_BOTH (saved_pt
+ (coding
->produced_char
- chars
),
7927 saved_pt_byte
+ (coding
->produced
- bytes
));
7929 TEMP_SET_PT_BOTH (saved_pt
+ (coding
->produced
- bytes
),
7930 saved_pt_byte
+ (coding
->produced
- bytes
));
7932 if (need_marker_adjustment
)
7934 struct Lisp_Marker
*tail
;
7936 for (tail
= BUF_MARKERS (current_buffer
); tail
; tail
= tail
->next
)
7937 if (tail
->need_adjustment
)
7939 tail
->need_adjustment
= 0;
7940 if (tail
->insertion_type
)
7942 tail
->bytepos
= from_byte
;
7943 tail
->charpos
= from
;
7947 tail
->bytepos
= from_byte
+ coding
->produced
;
7949 = (NILP (current_buffer
->enable_multibyte_characters
)
7950 ? tail
->bytepos
: from
+ coding
->produced_char
);
7956 Vdeactivate_mark
= old_deactivate_mark
;
7957 unbind_to (count
, coding
->dst_object
);
7962 encode_coding_object (coding
, src_object
, from
, from_byte
, to
, to_byte
,
7964 struct coding_system
*coding
;
7965 Lisp_Object src_object
;
7966 EMACS_INT from
, from_byte
, to
, to_byte
;
7967 Lisp_Object dst_object
;
7969 int count
= specpdl_ptr
- specpdl
;
7970 EMACS_INT chars
= to
- from
;
7971 EMACS_INT bytes
= to_byte
- from_byte
;
7973 int saved_pt
= -1, saved_pt_byte
;
7974 int need_marker_adjustment
= 0;
7975 int kill_src_buffer
= 0;
7976 Lisp_Object old_deactivate_mark
;
7978 old_deactivate_mark
= Vdeactivate_mark
;
7980 coding
->src_object
= src_object
;
7981 coding
->src_chars
= chars
;
7982 coding
->src_bytes
= bytes
;
7983 coding
->src_multibyte
= chars
< bytes
;
7985 attrs
= CODING_ID_ATTRS (coding
->id
);
7987 if (EQ (src_object
, dst_object
))
7989 struct Lisp_Marker
*tail
;
7991 for (tail
= BUF_MARKERS (current_buffer
); tail
; tail
= tail
->next
)
7993 tail
->need_adjustment
7994 = tail
->charpos
== (tail
->insertion_type
? from
: to
);
7995 need_marker_adjustment
|= tail
->need_adjustment
;
7999 if (! NILP (CODING_ATTR_PRE_WRITE (attrs
)))
8001 coding
->src_object
= code_conversion_save (1, coding
->src_multibyte
);
8002 set_buffer_internal (XBUFFER (coding
->src_object
));
8003 if (STRINGP (src_object
))
8004 insert_from_string (src_object
, from
, from_byte
, chars
, bytes
, 0);
8005 else if (BUFFERP (src_object
))
8006 insert_from_buffer (XBUFFER (src_object
), from
, chars
, 0);
8008 insert_1_both (coding
->source
+ from
, chars
, bytes
, 0, 0, 0);
8010 if (EQ (src_object
, dst_object
))
8012 set_buffer_internal (XBUFFER (src_object
));
8013 saved_pt
= PT
, saved_pt_byte
= PT_BYTE
;
8014 del_range_both (from
, from_byte
, to
, to_byte
, 1);
8015 set_buffer_internal (XBUFFER (coding
->src_object
));
8019 Lisp_Object args
[3];
8020 struct gcpro gcpro1
, gcpro2
, gcpro3
, gcpro4
, gcpro5
;
8022 GCPRO5 (coding
->src_object
, coding
->dst_object
, src_object
, dst_object
,
8023 old_deactivate_mark
);
8024 args
[0] = CODING_ATTR_PRE_WRITE (attrs
);
8025 args
[1] = make_number (BEG
);
8026 args
[2] = make_number (Z
);
8027 safe_call (3, args
);
8030 if (XBUFFER (coding
->src_object
) != current_buffer
)
8031 kill_src_buffer
= 1;
8032 coding
->src_object
= Fcurrent_buffer ();
8034 move_gap_both (BEG
, BEG_BYTE
);
8035 coding
->src_chars
= Z
- BEG
;
8036 coding
->src_bytes
= Z_BYTE
- BEG_BYTE
;
8037 coding
->src_pos
= BEG
;
8038 coding
->src_pos_byte
= BEG_BYTE
;
8039 coding
->src_multibyte
= Z
< Z_BYTE
;
8041 else if (STRINGP (src_object
))
8043 code_conversion_save (0, 0);
8044 coding
->src_pos
= from
;
8045 coding
->src_pos_byte
= from_byte
;
8047 else if (BUFFERP (src_object
))
8049 code_conversion_save (0, 0);
8050 set_buffer_internal (XBUFFER (src_object
));
8051 if (EQ (src_object
, dst_object
))
8053 saved_pt
= PT
, saved_pt_byte
= PT_BYTE
;
8054 coding
->src_object
= del_range_1 (from
, to
, 1, 1);
8055 coding
->src_pos
= 0;
8056 coding
->src_pos_byte
= 0;
8060 if (from
< GPT
&& to
>= GPT
)
8061 move_gap_both (from
, from_byte
);
8062 coding
->src_pos
= from
;
8063 coding
->src_pos_byte
= from_byte
;
8067 code_conversion_save (0, 0);
8069 if (BUFFERP (dst_object
))
8071 coding
->dst_object
= dst_object
;
8072 if (EQ (src_object
, dst_object
))
8074 coding
->dst_pos
= from
;
8075 coding
->dst_pos_byte
= from_byte
;
8079 struct buffer
*current
= current_buffer
;
8081 set_buffer_temp (XBUFFER (dst_object
));
8082 coding
->dst_pos
= PT
;
8083 coding
->dst_pos_byte
= PT_BYTE
;
8084 move_gap_both (coding
->dst_pos
, coding
->dst_pos_byte
);
8085 set_buffer_temp (current
);
8087 coding
->dst_multibyte
8088 = ! NILP (XBUFFER (dst_object
)->enable_multibyte_characters
);
8090 else if (EQ (dst_object
, Qt
))
8092 coding
->dst_object
= Qnil
;
8093 coding
->dst_bytes
= coding
->src_chars
;
8094 if (coding
->dst_bytes
== 0)
8095 coding
->dst_bytes
= 1;
8096 coding
->destination
= (unsigned char *) xmalloc (coding
->dst_bytes
);
8097 coding
->dst_multibyte
= 0;
8101 coding
->dst_object
= Qnil
;
8102 coding
->dst_multibyte
= 0;
8105 encode_coding (coding
);
8107 if (EQ (dst_object
, Qt
))
8109 if (BUFFERP (coding
->dst_object
))
8110 coding
->dst_object
= Fbuffer_string ();
8114 = make_unibyte_string ((char *) coding
->destination
,
8116 xfree (coding
->destination
);
8122 /* This is the case of:
8123 (BUFFERP (src_object) && EQ (src_object, dst_object))
8124 As we have moved PT while replacing the original buffer
8125 contents, we must recover it now. */
8126 set_buffer_internal (XBUFFER (src_object
));
8127 if (saved_pt
< from
)
8128 TEMP_SET_PT_BOTH (saved_pt
, saved_pt_byte
);
8129 else if (saved_pt
< from
+ chars
)
8130 TEMP_SET_PT_BOTH (from
, from_byte
);
8131 else if (! NILP (current_buffer
->enable_multibyte_characters
))
8132 TEMP_SET_PT_BOTH (saved_pt
+ (coding
->produced_char
- chars
),
8133 saved_pt_byte
+ (coding
->produced
- bytes
));
8135 TEMP_SET_PT_BOTH (saved_pt
+ (coding
->produced
- bytes
),
8136 saved_pt_byte
+ (coding
->produced
- bytes
));
8138 if (need_marker_adjustment
)
8140 struct Lisp_Marker
*tail
;
8142 for (tail
= BUF_MARKERS (current_buffer
); tail
; tail
= tail
->next
)
8143 if (tail
->need_adjustment
)
8145 tail
->need_adjustment
= 0;
8146 if (tail
->insertion_type
)
8148 tail
->bytepos
= from_byte
;
8149 tail
->charpos
= from
;
8153 tail
->bytepos
= from_byte
+ coding
->produced
;
8155 = (NILP (current_buffer
->enable_multibyte_characters
)
8156 ? tail
->bytepos
: from
+ coding
->produced_char
);
8162 if (kill_src_buffer
)
8163 Fkill_buffer (coding
->src_object
);
8165 Vdeactivate_mark
= old_deactivate_mark
;
8166 unbind_to (count
, Qnil
);
8171 preferred_coding_system ()
8173 int id
= coding_categories
[coding_priorities
[0]].id
;
8175 return CODING_ID_NAME (id
);
8180 /*** 8. Emacs Lisp library functions ***/
8182 DEFUN ("coding-system-p", Fcoding_system_p
, Scoding_system_p
, 1, 1, 0,
8183 doc
: /* Return t if OBJECT is nil or a coding-system.
8184 See the documentation of `define-coding-system' for information
8185 about coding-system objects. */)
8190 || CODING_SYSTEM_ID (object
) >= 0)
8192 if (! SYMBOLP (object
)
8193 || NILP (Fget (object
, Qcoding_system_define_form
)))
8198 DEFUN ("read-non-nil-coding-system", Fread_non_nil_coding_system
,
8199 Sread_non_nil_coding_system
, 1, 1, 0,
8200 doc
: /* Read a coding system from the minibuffer, prompting with string PROMPT. */)
8207 val
= Fcompleting_read (prompt
, Vcoding_system_alist
, Qnil
,
8208 Qt
, Qnil
, Qcoding_system_history
, Qnil
, Qnil
);
8210 while (SCHARS (val
) == 0);
8211 return (Fintern (val
, Qnil
));
8214 DEFUN ("read-coding-system", Fread_coding_system
, Sread_coding_system
, 1, 2, 0,
8215 doc
: /* Read a coding system from the minibuffer, prompting with string PROMPT.
8216 If the user enters null input, return second argument DEFAULT-CODING-SYSTEM.
8217 Ignores case when completing coding systems (all Emacs coding systems
8218 are lower-case). */)
8219 (prompt
, default_coding_system
)
8220 Lisp_Object prompt
, default_coding_system
;
8223 int count
= SPECPDL_INDEX ();
8225 if (SYMBOLP (default_coding_system
))
8226 default_coding_system
= SYMBOL_NAME (default_coding_system
);
8227 specbind (Qcompletion_ignore_case
, Qt
);
8228 val
= Fcompleting_read (prompt
, Vcoding_system_alist
, Qnil
,
8229 Qt
, Qnil
, Qcoding_system_history
,
8230 default_coding_system
, Qnil
);
8231 unbind_to (count
, Qnil
);
8232 return (SCHARS (val
) == 0 ? Qnil
: Fintern (val
, Qnil
));
8235 DEFUN ("check-coding-system", Fcheck_coding_system
, Scheck_coding_system
,
8237 doc
: /* Check validity of CODING-SYSTEM.
8238 If valid, return CODING-SYSTEM, else signal a `coding-system-error' error.
8239 It is valid if it is nil or a symbol defined as a coding system by the
8240 function `define-coding-system'. */)
8242 Lisp_Object coding_system
;
8244 Lisp_Object define_form
;
8246 define_form
= Fget (coding_system
, Qcoding_system_define_form
);
8247 if (! NILP (define_form
))
8249 Fput (coding_system
, Qcoding_system_define_form
, Qnil
);
8250 safe_eval (define_form
);
8252 if (!NILP (Fcoding_system_p (coding_system
)))
8253 return coding_system
;
8254 xsignal1 (Qcoding_system_error
, coding_system
);
8258 /* Detect how the bytes at SRC of length SRC_BYTES are encoded. If
8259 HIGHEST is nonzero, return the coding system of the highest
8260 priority among the detected coding systems. Otherwize return a
8261 list of detected coding systems sorted by their priorities. If
8262 MULTIBYTEP is nonzero, it is assumed that the bytes are in correct
8263 multibyte form but contains only ASCII and eight-bit chars.
8264 Otherwise, the bytes are raw bytes.
8266 CODING-SYSTEM controls the detection as below:
8268 If it is nil, detect both text-format and eol-format. If the
8269 text-format part of CODING-SYSTEM is already specified
8270 (e.g. `iso-latin-1'), detect only eol-format. If the eol-format
8271 part of CODING-SYSTEM is already specified (e.g. `undecided-unix'),
8272 detect only text-format. */
8275 detect_coding_system (src
, src_chars
, src_bytes
, highest
, multibytep
,
8277 const unsigned char *src
;
8278 EMACS_INT src_chars
, src_bytes
;
8281 Lisp_Object coding_system
;
8283 const unsigned char *src_end
= src
+ src_bytes
;
8284 Lisp_Object attrs
, eol_type
;
8285 Lisp_Object val
= Qnil
;
8286 struct coding_system coding
;
8288 struct coding_detection_info detect_info
;
8289 enum coding_category base_category
;
8290 int null_byte_found
= 0, eight_bit_found
= 0;
8292 if (NILP (coding_system
))
8293 coding_system
= Qundecided
;
8294 setup_coding_system (coding_system
, &coding
);
8295 attrs
= CODING_ID_ATTRS (coding
.id
);
8296 eol_type
= CODING_ID_EOL_TYPE (coding
.id
);
8297 coding_system
= CODING_ATTR_BASE_NAME (attrs
);
8299 coding
.source
= src
;
8300 coding
.src_chars
= src_chars
;
8301 coding
.src_bytes
= src_bytes
;
8302 coding
.src_multibyte
= multibytep
;
8303 coding
.consumed
= 0;
8304 coding
.mode
|= CODING_MODE_LAST_BLOCK
;
8305 coding
.head_ascii
= 0;
8307 detect_info
.checked
= detect_info
.found
= detect_info
.rejected
= 0;
8309 /* At first, detect text-format if necessary. */
8310 base_category
= XINT (CODING_ATTR_CATEGORY (attrs
));
8311 if (base_category
== coding_category_undecided
)
8313 enum coding_category category
;
8314 struct coding_system
*this;
8317 /* Skip all ASCII bytes except for a few ISO2022 controls. */
8318 for (; src
< src_end
; src
++)
8323 eight_bit_found
= 1;
8324 if (null_byte_found
)
8329 if ((c
== ISO_CODE_ESC
|| c
== ISO_CODE_SI
|| c
== ISO_CODE_SO
)
8330 && ! inhibit_iso_escape_detection
8331 && ! detect_info
.checked
)
8333 if (detect_coding_iso_2022 (&coding
, &detect_info
))
8335 /* We have scanned the whole data. */
8336 if (! (detect_info
.rejected
& CATEGORY_MASK_ISO_7_ELSE
))
8338 /* We didn't find an 8-bit code. We may
8339 have found a null-byte, but it's very
8340 rare that a binary file confirm to
8343 coding
.head_ascii
= src
- coding
.source
;
8345 detect_info
.rejected
|= ~CATEGORY_MASK_ISO_ESCAPE
;
8349 else if (! c
&& !inhibit_null_byte_detection
)
8351 null_byte_found
= 1;
8352 if (eight_bit_found
)
8355 if (! eight_bit_found
)
8356 coding
.head_ascii
++;
8358 else if (! eight_bit_found
)
8359 coding
.head_ascii
++;
8362 if (null_byte_found
|| eight_bit_found
8363 || coding
.head_ascii
< coding
.src_bytes
8364 || detect_info
.found
)
8366 if (coding
.head_ascii
== coding
.src_bytes
)
8367 /* As all bytes are 7-bit, we can ignore non-ISO-2022 codings. */
8368 for (i
= 0; i
< coding_category_raw_text
; i
++)
8370 category
= coding_priorities
[i
];
8371 this = coding_categories
+ category
;
8372 if (detect_info
.found
& (1 << category
))
8377 if (null_byte_found
)
8379 detect_info
.checked
|= ~CATEGORY_MASK_UTF_16
;
8380 detect_info
.rejected
|= ~CATEGORY_MASK_UTF_16
;
8382 for (i
= 0; i
< coding_category_raw_text
; i
++)
8384 category
= coding_priorities
[i
];
8385 this = coding_categories
+ category
;
8389 /* No coding system of this category is defined. */
8390 detect_info
.rejected
|= (1 << category
);
8392 else if (category
>= coding_category_raw_text
)
8394 else if (detect_info
.checked
& (1 << category
))
8397 && (detect_info
.found
& (1 << category
)))
8400 else if ((*(this->detector
)) (&coding
, &detect_info
)
8402 && (detect_info
.found
& (1 << category
)))
8404 if (category
== coding_category_utf_16_auto
)
8406 if (detect_info
.found
& CATEGORY_MASK_UTF_16_LE
)
8407 category
= coding_category_utf_16_le
;
8409 category
= coding_category_utf_16_be
;
8417 if ((detect_info
.rejected
& CATEGORY_MASK_ANY
) == CATEGORY_MASK_ANY
8420 detect_info
.found
= CATEGORY_MASK_RAW_TEXT
;
8421 id
= CODING_SYSTEM_ID (Qno_conversion
);
8422 val
= Fcons (make_number (id
), Qnil
);
8424 else if (! detect_info
.rejected
&& ! detect_info
.found
)
8426 detect_info
.found
= CATEGORY_MASK_ANY
;
8427 id
= coding_categories
[coding_category_undecided
].id
;
8428 val
= Fcons (make_number (id
), Qnil
);
8432 if (detect_info
.found
)
8434 detect_info
.found
= 1 << category
;
8435 val
= Fcons (make_number (this->id
), Qnil
);
8438 for (i
= 0; i
< coding_category_raw_text
; i
++)
8439 if (! (detect_info
.rejected
& (1 << coding_priorities
[i
])))
8441 detect_info
.found
= 1 << coding_priorities
[i
];
8442 id
= coding_categories
[coding_priorities
[i
]].id
;
8443 val
= Fcons (make_number (id
), Qnil
);
8449 int mask
= detect_info
.rejected
| detect_info
.found
;
8452 for (i
= coding_category_raw_text
- 1; i
>= 0; i
--)
8454 category
= coding_priorities
[i
];
8455 if (! (mask
& (1 << category
)))
8457 found
|= 1 << category
;
8458 id
= coding_categories
[category
].id
;
8460 val
= Fcons (make_number (id
), val
);
8463 for (i
= coding_category_raw_text
- 1; i
>= 0; i
--)
8465 category
= coding_priorities
[i
];
8466 if (detect_info
.found
& (1 << category
))
8468 id
= coding_categories
[category
].id
;
8469 val
= Fcons (make_number (id
), val
);
8472 detect_info
.found
|= found
;
8475 else if (base_category
== coding_category_utf_8_auto
)
8477 if (detect_coding_utf_8 (&coding
, &detect_info
))
8479 struct coding_system
*this;
8481 if (detect_info
.found
& CATEGORY_MASK_UTF_8_SIG
)
8482 this = coding_categories
+ coding_category_utf_8_sig
;
8484 this = coding_categories
+ coding_category_utf_8_nosig
;
8485 val
= Fcons (make_number (this->id
), Qnil
);
8488 else if (base_category
== coding_category_utf_16_auto
)
8490 if (detect_coding_utf_16 (&coding
, &detect_info
))
8492 struct coding_system
*this;
8494 if (detect_info
.found
& CATEGORY_MASK_UTF_16_LE
)
8495 this = coding_categories
+ coding_category_utf_16_le
;
8496 else if (detect_info
.found
& CATEGORY_MASK_UTF_16_BE
)
8497 this = coding_categories
+ coding_category_utf_16_be
;
8498 else if (detect_info
.rejected
& CATEGORY_MASK_UTF_16_LE_NOSIG
)
8499 this = coding_categories
+ coding_category_utf_16_be_nosig
;
8501 this = coding_categories
+ coding_category_utf_16_le_nosig
;
8502 val
= Fcons (make_number (this->id
), Qnil
);
8507 detect_info
.found
= 1 << XINT (CODING_ATTR_CATEGORY (attrs
));
8508 val
= Fcons (make_number (coding
.id
), Qnil
);
8511 /* Then, detect eol-format if necessary. */
8513 int normal_eol
= -1, utf_16_be_eol
= -1, utf_16_le_eol
= -1;
8516 if (VECTORP (eol_type
))
8518 if (detect_info
.found
& ~CATEGORY_MASK_UTF_16
)
8520 if (null_byte_found
)
8521 normal_eol
= EOL_SEEN_LF
;
8523 normal_eol
= detect_eol (coding
.source
, src_bytes
,
8524 coding_category_raw_text
);
8526 if (detect_info
.found
& (CATEGORY_MASK_UTF_16_BE
8527 | CATEGORY_MASK_UTF_16_BE_NOSIG
))
8528 utf_16_be_eol
= detect_eol (coding
.source
, src_bytes
,
8529 coding_category_utf_16_be
);
8530 if (detect_info
.found
& (CATEGORY_MASK_UTF_16_LE
8531 | CATEGORY_MASK_UTF_16_LE_NOSIG
))
8532 utf_16_le_eol
= detect_eol (coding
.source
, src_bytes
,
8533 coding_category_utf_16_le
);
8537 if (EQ (eol_type
, Qunix
))
8538 normal_eol
= utf_16_be_eol
= utf_16_le_eol
= EOL_SEEN_LF
;
8539 else if (EQ (eol_type
, Qdos
))
8540 normal_eol
= utf_16_be_eol
= utf_16_le_eol
= EOL_SEEN_CRLF
;
8542 normal_eol
= utf_16_be_eol
= utf_16_le_eol
= EOL_SEEN_CR
;
8545 for (tail
= val
; CONSP (tail
); tail
= XCDR (tail
))
8547 enum coding_category category
;
8550 id
= XINT (XCAR (tail
));
8551 attrs
= CODING_ID_ATTRS (id
);
8552 category
= XINT (CODING_ATTR_CATEGORY (attrs
));
8553 eol_type
= CODING_ID_EOL_TYPE (id
);
8554 if (VECTORP (eol_type
))
8556 if (category
== coding_category_utf_16_be
8557 || category
== coding_category_utf_16_be_nosig
)
8558 this_eol
= utf_16_be_eol
;
8559 else if (category
== coding_category_utf_16_le
8560 || category
== coding_category_utf_16_le_nosig
)
8561 this_eol
= utf_16_le_eol
;
8563 this_eol
= normal_eol
;
8565 if (this_eol
== EOL_SEEN_LF
)
8566 XSETCAR (tail
, AREF (eol_type
, 0));
8567 else if (this_eol
== EOL_SEEN_CRLF
)
8568 XSETCAR (tail
, AREF (eol_type
, 1));
8569 else if (this_eol
== EOL_SEEN_CR
)
8570 XSETCAR (tail
, AREF (eol_type
, 2));
8572 XSETCAR (tail
, CODING_ID_NAME (id
));
8575 XSETCAR (tail
, CODING_ID_NAME (id
));
8579 return (highest
? (CONSP (val
) ? XCAR (val
) : Qnil
) : val
);
8583 DEFUN ("detect-coding-region", Fdetect_coding_region
, Sdetect_coding_region
,
8585 doc
: /* Detect coding system of the text in the region between START and END.
8586 Return a list of possible coding systems ordered by priority.
8587 The coding systems to try and their priorities follows what
8588 the function `coding-system-priority-list' (which see) returns.
8590 If only ASCII characters are found (except for such ISO-2022 control
8591 characters as ESC), it returns a list of single element `undecided'
8592 or its subsidiary coding system according to a detected end-of-line
8595 If optional argument HIGHEST is non-nil, return the coding system of
8596 highest priority. */)
8597 (start
, end
, highest
)
8598 Lisp_Object start
, end
, highest
;
8601 int from_byte
, to_byte
;
8603 CHECK_NUMBER_COERCE_MARKER (start
);
8604 CHECK_NUMBER_COERCE_MARKER (end
);
8606 validate_region (&start
, &end
);
8607 from
= XINT (start
), to
= XINT (end
);
8608 from_byte
= CHAR_TO_BYTE (from
);
8609 to_byte
= CHAR_TO_BYTE (to
);
8611 if (from
< GPT
&& to
>= GPT
)
8612 move_gap_both (to
, to_byte
);
8614 return detect_coding_system (BYTE_POS_ADDR (from_byte
),
8615 to
- from
, to_byte
- from_byte
,
8617 !NILP (current_buffer
8618 ->enable_multibyte_characters
),
8622 DEFUN ("detect-coding-string", Fdetect_coding_string
, Sdetect_coding_string
,
8624 doc
: /* Detect coding system of the text in STRING.
8625 Return a list of possible coding systems ordered by priority.
8626 The coding systems to try and their priorities follows what
8627 the function `coding-system-priority-list' (which see) returns.
8629 If only ASCII characters are found (except for such ISO-2022 control
8630 characters as ESC), it returns a list of single element `undecided'
8631 or its subsidiary coding system according to a detected end-of-line
8634 If optional argument HIGHEST is non-nil, return the coding system of
8635 highest priority. */)
8637 Lisp_Object string
, highest
;
8639 CHECK_STRING (string
);
8641 return detect_coding_system (SDATA (string
),
8642 SCHARS (string
), SBYTES (string
),
8643 !NILP (highest
), STRING_MULTIBYTE (string
),
8649 char_encodable_p (c
, attrs
)
8654 struct charset
*charset
;
8655 Lisp_Object translation_table
;
8657 translation_table
= CODING_ATTR_TRANS_TBL (attrs
);
8658 if (! NILP (translation_table
))
8659 c
= translate_char (translation_table
, c
);
8660 for (tail
= CODING_ATTR_CHARSET_LIST (attrs
);
8661 CONSP (tail
); tail
= XCDR (tail
))
8663 charset
= CHARSET_FROM_ID (XINT (XCAR (tail
)));
8664 if (CHAR_CHARSET_P (c
, charset
))
8667 return (! NILP (tail
));
8671 /* Return a list of coding systems that safely encode the text between
8672 START and END. If EXCLUDE is non-nil, it is a list of coding
8673 systems not to check. The returned list doesn't contain any such
8674 coding systems. In any case, if the text contains only ASCII or is
8675 unibyte, return t. */
8677 DEFUN ("find-coding-systems-region-internal",
8678 Ffind_coding_systems_region_internal
,
8679 Sfind_coding_systems_region_internal
, 2, 3, 0,
8680 doc
: /* Internal use only. */)
8681 (start
, end
, exclude
)
8682 Lisp_Object start
, end
, exclude
;
8684 Lisp_Object coding_attrs_list
, safe_codings
;
8685 EMACS_INT start_byte
, end_byte
;
8686 const unsigned char *p
, *pbeg
, *pend
;
8688 Lisp_Object tail
, elt
, work_table
;
8690 if (STRINGP (start
))
8692 if (!STRING_MULTIBYTE (start
)
8693 || SCHARS (start
) == SBYTES (start
))
8696 end_byte
= SBYTES (start
);
8700 CHECK_NUMBER_COERCE_MARKER (start
);
8701 CHECK_NUMBER_COERCE_MARKER (end
);
8702 if (XINT (start
) < BEG
|| XINT (end
) > Z
|| XINT (start
) > XINT (end
))
8703 args_out_of_range (start
, end
);
8704 if (NILP (current_buffer
->enable_multibyte_characters
))
8706 start_byte
= CHAR_TO_BYTE (XINT (start
));
8707 end_byte
= CHAR_TO_BYTE (XINT (end
));
8708 if (XINT (end
) - XINT (start
) == end_byte
- start_byte
)
8711 if (XINT (start
) < GPT
&& XINT (end
) > GPT
)
8713 if ((GPT
- XINT (start
)) < (XINT (end
) - GPT
))
8714 move_gap_both (XINT (start
), start_byte
);
8716 move_gap_both (XINT (end
), end_byte
);
8720 coding_attrs_list
= Qnil
;
8721 for (tail
= Vcoding_system_list
; CONSP (tail
); tail
= XCDR (tail
))
8723 || NILP (Fmemq (XCAR (tail
), exclude
)))
8727 attrs
= AREF (CODING_SYSTEM_SPEC (XCAR (tail
)), 0);
8728 if (EQ (XCAR (tail
), CODING_ATTR_BASE_NAME (attrs
))
8729 && ! EQ (CODING_ATTR_TYPE (attrs
), Qundecided
))
8731 ASET (attrs
, coding_attr_trans_tbl
,
8732 get_translation_table (attrs
, 1, NULL
));
8733 coding_attrs_list
= Fcons (attrs
, coding_attrs_list
);
8737 if (STRINGP (start
))
8738 p
= pbeg
= SDATA (start
);
8740 p
= pbeg
= BYTE_POS_ADDR (start_byte
);
8741 pend
= p
+ (end_byte
- start_byte
);
8743 while (p
< pend
&& ASCII_BYTE_P (*p
)) p
++;
8744 while (p
< pend
&& ASCII_BYTE_P (*(pend
- 1))) pend
--;
8746 work_table
= Fmake_char_table (Qnil
, Qnil
);
8749 if (ASCII_BYTE_P (*p
))
8753 c
= STRING_CHAR_ADVANCE (p
);
8754 if (!NILP (char_table_ref (work_table
, c
)))
8755 /* This character was already checked. Ignore it. */
8758 charset_map_loaded
= 0;
8759 for (tail
= coding_attrs_list
; CONSP (tail
);)
8764 else if (char_encodable_p (c
, elt
))
8766 else if (CONSP (XCDR (tail
)))
8768 XSETCAR (tail
, XCAR (XCDR (tail
)));
8769 XSETCDR (tail
, XCDR (XCDR (tail
)));
8773 XSETCAR (tail
, Qnil
);
8777 if (charset_map_loaded
)
8779 EMACS_INT p_offset
= p
- pbeg
, pend_offset
= pend
- pbeg
;
8781 if (STRINGP (start
))
8782 pbeg
= SDATA (start
);
8784 pbeg
= BYTE_POS_ADDR (start_byte
);
8785 p
= pbeg
+ p_offset
;
8786 pend
= pbeg
+ pend_offset
;
8788 char_table_set (work_table
, c
, Qt
);
8792 safe_codings
= list2 (Qraw_text
, Qno_conversion
);
8793 for (tail
= coding_attrs_list
; CONSP (tail
); tail
= XCDR (tail
))
8794 if (! NILP (XCAR (tail
)))
8795 safe_codings
= Fcons (CODING_ATTR_BASE_NAME (XCAR (tail
)), safe_codings
);
8797 return safe_codings
;
8801 DEFUN ("unencodable-char-position", Funencodable_char_position
,
8802 Sunencodable_char_position
, 3, 5, 0,
8804 Return position of first un-encodable character in a region.
8805 START and END specify the region and CODING-SYSTEM specifies the
8806 encoding to check. Return nil if CODING-SYSTEM does encode the region.
8808 If optional 4th argument COUNT is non-nil, it specifies at most how
8809 many un-encodable characters to search. In this case, the value is a
8812 If optional 5th argument STRING is non-nil, it is a string to search
8813 for un-encodable characters. In that case, START and END are indexes
8815 (start
, end
, coding_system
, count
, string
)
8816 Lisp_Object start
, end
, coding_system
, count
, string
;
8819 struct coding_system coding
;
8820 Lisp_Object attrs
, charset_list
, translation_table
;
8821 Lisp_Object positions
;
8823 const unsigned char *p
, *stop
, *pend
;
8824 int ascii_compatible
;
8826 setup_coding_system (Fcheck_coding_system (coding_system
), &coding
);
8827 attrs
= CODING_ID_ATTRS (coding
.id
);
8828 if (EQ (CODING_ATTR_TYPE (attrs
), Qraw_text
))
8830 ascii_compatible
= ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
));
8831 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
8832 translation_table
= get_translation_table (attrs
, 1, NULL
);
8836 validate_region (&start
, &end
);
8837 from
= XINT (start
);
8839 if (NILP (current_buffer
->enable_multibyte_characters
)
8840 || (ascii_compatible
8841 && (to
- from
) == (CHAR_TO_BYTE (to
) - (CHAR_TO_BYTE (from
)))))
8843 p
= CHAR_POS_ADDR (from
);
8844 pend
= CHAR_POS_ADDR (to
);
8845 if (from
< GPT
&& to
>= GPT
)
8852 CHECK_STRING (string
);
8853 CHECK_NATNUM (start
);
8855 from
= XINT (start
);
8858 || to
> SCHARS (string
))
8859 args_out_of_range_3 (string
, start
, end
);
8860 if (! STRING_MULTIBYTE (string
))
8862 p
= SDATA (string
) + string_char_to_byte (string
, from
);
8863 stop
= pend
= SDATA (string
) + string_char_to_byte (string
, to
);
8864 if (ascii_compatible
&& (to
- from
) == (pend
- p
))
8872 CHECK_NATNUM (count
);
8881 if (ascii_compatible
)
8882 while (p
< stop
&& ASCII_BYTE_P (*p
))
8892 c
= STRING_CHAR_ADVANCE (p
);
8893 if (! (ASCII_CHAR_P (c
) && ascii_compatible
)
8894 && ! char_charset (translate_char (translation_table
, c
),
8895 charset_list
, NULL
))
8897 positions
= Fcons (make_number (from
), positions
);
8906 return (NILP (count
) ? Fcar (positions
) : Fnreverse (positions
));
8910 DEFUN ("check-coding-systems-region", Fcheck_coding_systems_region
,
8911 Scheck_coding_systems_region
, 3, 3, 0,
8912 doc
: /* Check if the region is encodable by coding systems.
8914 START and END are buffer positions specifying the region.
8915 CODING-SYSTEM-LIST is a list of coding systems to check.
8917 The value is an alist ((CODING-SYSTEM POS0 POS1 ...) ...), where
8918 CODING-SYSTEM is a member of CODING-SYSTEM-LIST and can't encode the
8919 whole region, POS0, POS1, ... are buffer positions where non-encodable
8920 characters are found.
8922 If all coding systems in CODING-SYSTEM-LIST can encode the region, the
8925 START may be a string. In that case, check if the string is
8926 encodable, and the value contains indices to the string instead of
8927 buffer positions. END is ignored.
8929 If the current buffer (or START if it is a string) is unibyte, the value
8931 (start
, end
, coding_system_list
)
8932 Lisp_Object start
, end
, coding_system_list
;
8935 EMACS_INT start_byte
, end_byte
;
8937 const unsigned char *p
, *pbeg
, *pend
;
8939 Lisp_Object tail
, elt
, attrs
;
8941 if (STRINGP (start
))
8943 if (!STRING_MULTIBYTE (start
)
8944 || SCHARS (start
) == SBYTES (start
))
8947 end_byte
= SBYTES (start
);
8952 CHECK_NUMBER_COERCE_MARKER (start
);
8953 CHECK_NUMBER_COERCE_MARKER (end
);
8954 if (XINT (start
) < BEG
|| XINT (end
) > Z
|| XINT (start
) > XINT (end
))
8955 args_out_of_range (start
, end
);
8956 if (NILP (current_buffer
->enable_multibyte_characters
))
8958 start_byte
= CHAR_TO_BYTE (XINT (start
));
8959 end_byte
= CHAR_TO_BYTE (XINT (end
));
8960 if (XINT (end
) - XINT (start
) == end_byte
- start_byte
)
8963 if (XINT (start
) < GPT
&& XINT (end
) > GPT
)
8965 if ((GPT
- XINT (start
)) < (XINT (end
) - GPT
))
8966 move_gap_both (XINT (start
), start_byte
);
8968 move_gap_both (XINT (end
), end_byte
);
8974 for (tail
= coding_system_list
; CONSP (tail
); tail
= XCDR (tail
))
8977 attrs
= AREF (CODING_SYSTEM_SPEC (elt
), 0);
8978 ASET (attrs
, coding_attr_trans_tbl
,
8979 get_translation_table (attrs
, 1, NULL
));
8980 list
= Fcons (Fcons (elt
, Fcons (attrs
, Qnil
)), list
);
8983 if (STRINGP (start
))
8984 p
= pbeg
= SDATA (start
);
8986 p
= pbeg
= BYTE_POS_ADDR (start_byte
);
8987 pend
= p
+ (end_byte
- start_byte
);
8989 while (p
< pend
&& ASCII_BYTE_P (*p
)) p
++, pos
++;
8990 while (p
< pend
&& ASCII_BYTE_P (*(pend
- 1))) pend
--;
8994 if (ASCII_BYTE_P (*p
))
8998 c
= STRING_CHAR_ADVANCE (p
);
9000 charset_map_loaded
= 0;
9001 for (tail
= list
; CONSP (tail
); tail
= XCDR (tail
))
9003 elt
= XCDR (XCAR (tail
));
9004 if (! char_encodable_p (c
, XCAR (elt
)))
9005 XSETCDR (elt
, Fcons (make_number (pos
), XCDR (elt
)));
9007 if (charset_map_loaded
)
9009 EMACS_INT p_offset
= p
- pbeg
, pend_offset
= pend
- pbeg
;
9011 if (STRINGP (start
))
9012 pbeg
= SDATA (start
);
9014 pbeg
= BYTE_POS_ADDR (start_byte
);
9015 p
= pbeg
+ p_offset
;
9016 pend
= pbeg
+ pend_offset
;
9024 for (; CONSP (tail
); tail
= XCDR (tail
))
9027 if (CONSP (XCDR (XCDR (elt
))))
9028 list
= Fcons (Fcons (XCAR (elt
), Fnreverse (XCDR (XCDR (elt
)))),
9037 code_convert_region (start
, end
, coding_system
, dst_object
, encodep
, norecord
)
9038 Lisp_Object start
, end
, coding_system
, dst_object
;
9039 int encodep
, norecord
;
9041 struct coding_system coding
;
9042 EMACS_INT from
, from_byte
, to
, to_byte
;
9043 Lisp_Object src_object
;
9045 CHECK_NUMBER_COERCE_MARKER (start
);
9046 CHECK_NUMBER_COERCE_MARKER (end
);
9047 if (NILP (coding_system
))
9048 coding_system
= Qno_conversion
;
9050 CHECK_CODING_SYSTEM (coding_system
);
9051 src_object
= Fcurrent_buffer ();
9052 if (NILP (dst_object
))
9053 dst_object
= src_object
;
9054 else if (! EQ (dst_object
, Qt
))
9055 CHECK_BUFFER (dst_object
);
9057 validate_region (&start
, &end
);
9058 from
= XFASTINT (start
);
9059 from_byte
= CHAR_TO_BYTE (from
);
9060 to
= XFASTINT (end
);
9061 to_byte
= CHAR_TO_BYTE (to
);
9063 setup_coding_system (coding_system
, &coding
);
9064 coding
.mode
|= CODING_MODE_LAST_BLOCK
;
9067 encode_coding_object (&coding
, src_object
, from
, from_byte
, to
, to_byte
,
9070 decode_coding_object (&coding
, src_object
, from
, from_byte
, to
, to_byte
,
9073 Vlast_coding_system_used
= CODING_ID_NAME (coding
.id
);
9075 return (BUFFERP (dst_object
)
9076 ? make_number (coding
.produced_char
)
9077 : coding
.dst_object
);
9081 DEFUN ("decode-coding-region", Fdecode_coding_region
, Sdecode_coding_region
,
9082 3, 4, "r\nzCoding system: ",
9083 doc
: /* Decode the current region from the specified coding system.
9084 When called from a program, takes four arguments:
9085 START, END, CODING-SYSTEM, and DESTINATION.
9086 START and END are buffer positions.
9088 Optional 4th arguments DESTINATION specifies where the decoded text goes.
9089 If nil, the region between START and END is replaced by the decoded text.
9090 If buffer, the decoded text is inserted in that buffer after point (point
9092 In those cases, the length of the decoded text is returned.
9093 If DESTINATION is t, the decoded text is returned.
9095 This function sets `last-coding-system-used' to the precise coding system
9096 used (which may be different from CODING-SYSTEM if CODING-SYSTEM is
9097 not fully specified.) */)
9098 (start
, end
, coding_system
, destination
)
9099 Lisp_Object start
, end
, coding_system
, destination
;
9101 return code_convert_region (start
, end
, coding_system
, destination
, 0, 0);
9104 DEFUN ("encode-coding-region", Fencode_coding_region
, Sencode_coding_region
,
9105 3, 4, "r\nzCoding system: ",
9106 doc
: /* Encode the current region by specified coding system.
9107 When called from a program, takes four arguments:
9108 START, END, CODING-SYSTEM and DESTINATION.
9109 START and END are buffer positions.
9111 Optional 4th arguments DESTINATION specifies where the encoded text goes.
9112 If nil, the region between START and END is replace by the encoded text.
9113 If buffer, the encoded text is inserted in that buffer after point (point
9115 In those cases, the length of the encoded text is returned.
9116 If DESTINATION is t, the encoded text is returned.
9118 This function sets `last-coding-system-used' to the precise coding system
9119 used (which may be different from CODING-SYSTEM if CODING-SYSTEM is
9120 not fully specified.) */)
9121 (start
, end
, coding_system
, destination
)
9122 Lisp_Object start
, end
, coding_system
, destination
;
9124 return code_convert_region (start
, end
, coding_system
, destination
, 1, 0);
9128 code_convert_string (string
, coding_system
, dst_object
,
9129 encodep
, nocopy
, norecord
)
9130 Lisp_Object string
, coding_system
, dst_object
;
9131 int encodep
, nocopy
, norecord
;
9133 struct coding_system coding
;
9134 EMACS_INT chars
, bytes
;
9136 CHECK_STRING (string
);
9137 if (NILP (coding_system
))
9140 Vlast_coding_system_used
= Qno_conversion
;
9141 if (NILP (dst_object
))
9142 return (nocopy
? Fcopy_sequence (string
) : string
);
9145 if (NILP (coding_system
))
9146 coding_system
= Qno_conversion
;
9148 CHECK_CODING_SYSTEM (coding_system
);
9149 if (NILP (dst_object
))
9151 else if (! EQ (dst_object
, Qt
))
9152 CHECK_BUFFER (dst_object
);
9154 setup_coding_system (coding_system
, &coding
);
9155 coding
.mode
|= CODING_MODE_LAST_BLOCK
;
9156 chars
= SCHARS (string
);
9157 bytes
= SBYTES (string
);
9159 encode_coding_object (&coding
, string
, 0, 0, chars
, bytes
, dst_object
);
9161 decode_coding_object (&coding
, string
, 0, 0, chars
, bytes
, dst_object
);
9163 Vlast_coding_system_used
= CODING_ID_NAME (coding
.id
);
9165 return (BUFFERP (dst_object
)
9166 ? make_number (coding
.produced_char
)
9167 : coding
.dst_object
);
9171 /* Encode or decode STRING according to CODING_SYSTEM.
9172 Do not set Vlast_coding_system_used.
9174 This function is called only from macros DECODE_FILE and
9175 ENCODE_FILE, thus we ignore character composition. */
9178 code_convert_string_norecord (string
, coding_system
, encodep
)
9179 Lisp_Object string
, coding_system
;
9182 return code_convert_string (string
, coding_system
, Qt
, encodep
, 0, 1);
9186 DEFUN ("decode-coding-string", Fdecode_coding_string
, Sdecode_coding_string
,
9188 doc
: /* Decode STRING which is encoded in CODING-SYSTEM, and return the result.
9190 Optional third arg NOCOPY non-nil means it is OK to return STRING itself
9191 if the decoding operation is trivial.
9193 Optional fourth arg BUFFER non-nil means that the decoded text is
9194 inserted in that buffer after point (point does not move). In this
9195 case, the return value is the length of the decoded text.
9197 This function sets `last-coding-system-used' to the precise coding system
9198 used (which may be different from CODING-SYSTEM if CODING-SYSTEM is
9199 not fully specified.) */)
9200 (string
, coding_system
, nocopy
, buffer
)
9201 Lisp_Object string
, coding_system
, nocopy
, buffer
;
9203 return code_convert_string (string
, coding_system
, buffer
,
9204 0, ! NILP (nocopy
), 0);
9207 DEFUN ("encode-coding-string", Fencode_coding_string
, Sencode_coding_string
,
9209 doc
: /* Encode STRING to CODING-SYSTEM, and return the result.
9211 Optional third arg NOCOPY non-nil means it is OK to return STRING
9212 itself if the encoding operation is trivial.
9214 Optional fourth arg BUFFER non-nil means that the encoded text is
9215 inserted in that buffer after point (point does not move). In this
9216 case, the return value is the length of the encoded text.
9218 This function sets `last-coding-system-used' to the precise coding system
9219 used (which may be different from CODING-SYSTEM if CODING-SYSTEM is
9220 not fully specified.) */)
9221 (string
, coding_system
, nocopy
, buffer
)
9222 Lisp_Object string
, coding_system
, nocopy
, buffer
;
9224 return code_convert_string (string
, coding_system
, buffer
,
9225 1, ! NILP (nocopy
), 1);
9229 DEFUN ("decode-sjis-char", Fdecode_sjis_char
, Sdecode_sjis_char
, 1, 1, 0,
9230 doc
: /* Decode a Japanese character which has CODE in shift_jis encoding.
9231 Return the corresponding character. */)
9235 Lisp_Object spec
, attrs
, val
;
9236 struct charset
*charset_roman
, *charset_kanji
, *charset_kana
, *charset
;
9239 CHECK_NATNUM (code
);
9240 c
= XFASTINT (code
);
9241 CHECK_CODING_SYSTEM_GET_SPEC (Vsjis_coding_system
, spec
);
9242 attrs
= AREF (spec
, 0);
9244 if (ASCII_BYTE_P (c
)
9245 && ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
9248 val
= CODING_ATTR_CHARSET_LIST (attrs
);
9249 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
9250 charset_kana
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
9251 charset_kanji
= CHARSET_FROM_ID (XINT (XCAR (val
)));
9254 charset
= charset_roman
;
9255 else if (c
>= 0xA0 && c
< 0xDF)
9257 charset
= charset_kana
;
9262 int s1
= c
>> 8, s2
= c
& 0xFF;
9264 if (s1
< 0x81 || (s1
> 0x9F && s1
< 0xE0) || s1
> 0xEF
9265 || s2
< 0x40 || s2
== 0x7F || s2
> 0xFC)
9266 error ("Invalid code: %d", code
);
9268 charset
= charset_kanji
;
9270 c
= DECODE_CHAR (charset
, c
);
9272 error ("Invalid code: %d", code
);
9273 return make_number (c
);
9277 DEFUN ("encode-sjis-char", Fencode_sjis_char
, Sencode_sjis_char
, 1, 1, 0,
9278 doc
: /* Encode a Japanese character CH to shift_jis encoding.
9279 Return the corresponding code in SJIS. */)
9283 Lisp_Object spec
, attrs
, charset_list
;
9285 struct charset
*charset
;
9288 CHECK_CHARACTER (ch
);
9290 CHECK_CODING_SYSTEM_GET_SPEC (Vsjis_coding_system
, spec
);
9291 attrs
= AREF (spec
, 0);
9293 if (ASCII_CHAR_P (c
)
9294 && ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
9297 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
9298 charset
= char_charset (c
, charset_list
, &code
);
9299 if (code
== CHARSET_INVALID_CODE (charset
))
9300 error ("Can't encode by shift_jis encoding: %d", c
);
9303 return make_number (code
);
9306 DEFUN ("decode-big5-char", Fdecode_big5_char
, Sdecode_big5_char
, 1, 1, 0,
9307 doc
: /* Decode a Big5 character which has CODE in BIG5 coding system.
9308 Return the corresponding character. */)
9312 Lisp_Object spec
, attrs
, val
;
9313 struct charset
*charset_roman
, *charset_big5
, *charset
;
9316 CHECK_NATNUM (code
);
9317 c
= XFASTINT (code
);
9318 CHECK_CODING_SYSTEM_GET_SPEC (Vbig5_coding_system
, spec
);
9319 attrs
= AREF (spec
, 0);
9321 if (ASCII_BYTE_P (c
)
9322 && ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
9325 val
= CODING_ATTR_CHARSET_LIST (attrs
);
9326 charset_roman
= CHARSET_FROM_ID (XINT (XCAR (val
))), val
= XCDR (val
);
9327 charset_big5
= CHARSET_FROM_ID (XINT (XCAR (val
)));
9330 charset
= charset_roman
;
9333 int b1
= c
>> 8, b2
= c
& 0x7F;
9334 if (b1
< 0xA1 || b1
> 0xFE
9335 || b2
< 0x40 || (b2
> 0x7E && b2
< 0xA1) || b2
> 0xFE)
9336 error ("Invalid code: %d", code
);
9337 charset
= charset_big5
;
9339 c
= DECODE_CHAR (charset
, (unsigned )c
);
9341 error ("Invalid code: %d", code
);
9342 return make_number (c
);
9345 DEFUN ("encode-big5-char", Fencode_big5_char
, Sencode_big5_char
, 1, 1, 0,
9346 doc
: /* Encode the Big5 character CH to BIG5 coding system.
9347 Return the corresponding character code in Big5. */)
9351 Lisp_Object spec
, attrs
, charset_list
;
9352 struct charset
*charset
;
9356 CHECK_CHARACTER (ch
);
9358 CHECK_CODING_SYSTEM_GET_SPEC (Vbig5_coding_system
, spec
);
9359 attrs
= AREF (spec
, 0);
9360 if (ASCII_CHAR_P (c
)
9361 && ! NILP (CODING_ATTR_ASCII_COMPAT (attrs
)))
9364 charset_list
= CODING_ATTR_CHARSET_LIST (attrs
);
9365 charset
= char_charset (c
, charset_list
, &code
);
9366 if (code
== CHARSET_INVALID_CODE (charset
))
9367 error ("Can't encode by Big5 encoding: %d", c
);
9369 return make_number (code
);
9373 DEFUN ("set-terminal-coding-system-internal", Fset_terminal_coding_system_internal
,
9374 Sset_terminal_coding_system_internal
, 1, 2, 0,
9375 doc
: /* Internal use only. */)
9376 (coding_system
, terminal
)
9377 Lisp_Object coding_system
;
9378 Lisp_Object terminal
;
9380 struct coding_system
*terminal_coding
= TERMINAL_TERMINAL_CODING (get_terminal (terminal
, 1));
9381 CHECK_SYMBOL (coding_system
);
9382 setup_coding_system (Fcheck_coding_system (coding_system
), terminal_coding
);
9383 /* We had better not send unsafe characters to terminal. */
9384 terminal_coding
->mode
|= CODING_MODE_SAFE_ENCODING
;
9385 /* Characer composition should be disabled. */
9386 terminal_coding
->common_flags
&= ~CODING_ANNOTATE_COMPOSITION_MASK
;
9387 terminal_coding
->src_multibyte
= 1;
9388 terminal_coding
->dst_multibyte
= 0;
9392 DEFUN ("set-safe-terminal-coding-system-internal",
9393 Fset_safe_terminal_coding_system_internal
,
9394 Sset_safe_terminal_coding_system_internal
, 1, 1, 0,
9395 doc
: /* Internal use only. */)
9397 Lisp_Object coding_system
;
9399 CHECK_SYMBOL (coding_system
);
9400 setup_coding_system (Fcheck_coding_system (coding_system
),
9401 &safe_terminal_coding
);
9402 /* Characer composition should be disabled. */
9403 safe_terminal_coding
.common_flags
&= ~CODING_ANNOTATE_COMPOSITION_MASK
;
9404 safe_terminal_coding
.src_multibyte
= 1;
9405 safe_terminal_coding
.dst_multibyte
= 0;
9409 DEFUN ("terminal-coding-system", Fterminal_coding_system
,
9410 Sterminal_coding_system
, 0, 1, 0,
9411 doc
: /* Return coding system specified for terminal output on the given terminal.
9412 TERMINAL may be a terminal object, a frame, or nil for the selected
9413 frame's terminal device. */)
9415 Lisp_Object terminal
;
9417 struct coding_system
*terminal_coding
9418 = TERMINAL_TERMINAL_CODING (get_terminal (terminal
, 1));
9419 Lisp_Object coding_system
= CODING_ID_NAME (terminal_coding
->id
);
9421 /* For backward compatibility, return nil if it is `undecided'. */
9422 return (! EQ (coding_system
, Qundecided
) ? coding_system
: Qnil
);
9425 DEFUN ("set-keyboard-coding-system-internal", Fset_keyboard_coding_system_internal
,
9426 Sset_keyboard_coding_system_internal
, 1, 2, 0,
9427 doc
: /* Internal use only. */)
9428 (coding_system
, terminal
)
9429 Lisp_Object coding_system
;
9430 Lisp_Object terminal
;
9432 struct terminal
*t
= get_terminal (terminal
, 1);
9433 CHECK_SYMBOL (coding_system
);
9434 if (NILP (coding_system
))
9435 coding_system
= Qno_conversion
;
9437 Fcheck_coding_system (coding_system
);
9438 setup_coding_system (coding_system
, TERMINAL_KEYBOARD_CODING (t
));
9439 /* Characer composition should be disabled. */
9440 TERMINAL_KEYBOARD_CODING (t
)->common_flags
9441 &= ~CODING_ANNOTATE_COMPOSITION_MASK
;
9445 DEFUN ("keyboard-coding-system",
9446 Fkeyboard_coding_system
, Skeyboard_coding_system
, 0, 1, 0,
9447 doc
: /* Return coding system specified for decoding keyboard input. */)
9449 Lisp_Object terminal
;
9451 return CODING_ID_NAME (TERMINAL_KEYBOARD_CODING
9452 (get_terminal (terminal
, 1))->id
);
9456 DEFUN ("find-operation-coding-system", Ffind_operation_coding_system
,
9457 Sfind_operation_coding_system
, 1, MANY
, 0,
9458 doc
: /* Choose a coding system for an operation based on the target name.
9459 The value names a pair of coding systems: (DECODING-SYSTEM . ENCODING-SYSTEM).
9460 DECODING-SYSTEM is the coding system to use for decoding
9461 \(in case OPERATION does decoding), and ENCODING-SYSTEM is the coding system
9462 for encoding (in case OPERATION does encoding).
9464 The first argument OPERATION specifies an I/O primitive:
9465 For file I/O, `insert-file-contents' or `write-region'.
9466 For process I/O, `call-process', `call-process-region', or `start-process'.
9467 For network I/O, `open-network-stream'.
9469 The remaining arguments should be the same arguments that were passed
9470 to the primitive. Depending on which primitive, one of those arguments
9471 is selected as the TARGET. For example, if OPERATION does file I/O,
9472 whichever argument specifies the file name is TARGET.
9474 TARGET has a meaning which depends on OPERATION:
9475 For file I/O, TARGET is a file name (except for the special case below).
9476 For process I/O, TARGET is a process name.
9477 For network I/O, TARGET is a service name or a port number.
9479 This function looks up what is specified for TARGET in
9480 `file-coding-system-alist', `process-coding-system-alist',
9481 or `network-coding-system-alist' depending on OPERATION.
9482 They may specify a coding system, a cons of coding systems,
9483 or a function symbol to call.
9484 In the last case, we call the function with one argument,
9485 which is a list of all the arguments given to this function.
9486 If the function can't decide a coding system, it can return
9487 `undecided' so that the normal code-detection is performed.
9489 If OPERATION is `insert-file-contents', the argument corresponding to
9490 TARGET may be a cons (FILENAME . BUFFER). In that case, FILENAME is a
9491 file name to look up, and BUFFER is a buffer that contains the file's
9492 contents (not yet decoded). If `file-coding-system-alist' specifies a
9493 function to call for FILENAME, that function should examine the
9494 contents of BUFFER instead of reading the file.
9496 usage: (find-operation-coding-system OPERATION ARGUMENTS...) */)
9501 Lisp_Object operation
, target_idx
, target
, val
;
9502 register Lisp_Object chain
;
9505 error ("Too few arguments");
9506 operation
= args
[0];
9507 if (!SYMBOLP (operation
)
9508 || !INTEGERP (target_idx
= Fget (operation
, Qtarget_idx
)))
9509 error ("Invalid first argument");
9510 if (nargs
< 1 + XINT (target_idx
))
9511 error ("Too few arguments for operation: %s",
9512 SDATA (SYMBOL_NAME (operation
)));
9513 target
= args
[XINT (target_idx
) + 1];
9514 if (!(STRINGP (target
)
9515 || (EQ (operation
, Qinsert_file_contents
) && CONSP (target
)
9516 && STRINGP (XCAR (target
)) && BUFFERP (XCDR (target
)))
9517 || (EQ (operation
, Qopen_network_stream
) && INTEGERP (target
))))
9518 error ("Invalid %dth argument", XINT (target_idx
) + 1);
9520 target
= XCAR (target
);
9522 chain
= ((EQ (operation
, Qinsert_file_contents
)
9523 || EQ (operation
, Qwrite_region
))
9524 ? Vfile_coding_system_alist
9525 : (EQ (operation
, Qopen_network_stream
)
9526 ? Vnetwork_coding_system_alist
9527 : Vprocess_coding_system_alist
));
9531 for (; CONSP (chain
); chain
= XCDR (chain
))
9537 && ((STRINGP (target
)
9538 && STRINGP (XCAR (elt
))
9539 && fast_string_match (XCAR (elt
), target
) >= 0)
9540 || (INTEGERP (target
) && EQ (target
, XCAR (elt
)))))
9543 /* Here, if VAL is both a valid coding system and a valid
9544 function symbol, we return VAL as a coding system. */
9547 if (! SYMBOLP (val
))
9549 if (! NILP (Fcoding_system_p (val
)))
9550 return Fcons (val
, val
);
9551 if (! NILP (Ffboundp (val
)))
9553 /* We use call1 rather than safe_call1
9554 so as to get bug reports about functions called here
9555 which don't handle the current interface. */
9556 val
= call1 (val
, Flist (nargs
, args
));
9559 if (SYMBOLP (val
) && ! NILP (Fcoding_system_p (val
)))
9560 return Fcons (val
, val
);
9568 DEFUN ("set-coding-system-priority", Fset_coding_system_priority
,
9569 Sset_coding_system_priority
, 0, MANY
, 0,
9570 doc
: /* Assign higher priority to the coding systems given as arguments.
9571 If multiple coding systems belong to the same category,
9572 all but the first one are ignored.
9574 usage: (set-coding-system-priority &rest coding-systems) */)
9580 int changed
[coding_category_max
];
9581 enum coding_category priorities
[coding_category_max
];
9583 bzero (changed
, sizeof changed
);
9585 for (i
= j
= 0; i
< nargs
; i
++)
9587 enum coding_category category
;
9588 Lisp_Object spec
, attrs
;
9590 CHECK_CODING_SYSTEM_GET_SPEC (args
[i
], spec
);
9591 attrs
= AREF (spec
, 0);
9592 category
= XINT (CODING_ATTR_CATEGORY (attrs
));
9593 if (changed
[category
])
9594 /* Ignore this coding system because a coding system of the
9595 same category already had a higher priority. */
9597 changed
[category
] = 1;
9598 priorities
[j
++] = category
;
9599 if (coding_categories
[category
].id
>= 0
9600 && ! EQ (args
[i
], CODING_ID_NAME (coding_categories
[category
].id
)))
9601 setup_coding_system (args
[i
], &coding_categories
[category
]);
9602 Fset (AREF (Vcoding_category_table
, category
), args
[i
]);
9605 /* Now we have decided top J priorities. Reflect the order of the
9606 original priorities to the remaining priorities. */
9608 for (i
= j
, j
= 0; i
< coding_category_max
; i
++, j
++)
9610 while (j
< coding_category_max
9611 && changed
[coding_priorities
[j
]])
9613 if (j
== coding_category_max
)
9615 priorities
[i
] = coding_priorities
[j
];
9618 bcopy (priorities
, coding_priorities
, sizeof priorities
);
9620 /* Update `coding-category-list'. */
9621 Vcoding_category_list
= Qnil
;
9622 for (i
= coding_category_max
- 1; i
>= 0; i
--)
9623 Vcoding_category_list
9624 = Fcons (AREF (Vcoding_category_table
, priorities
[i
]),
9625 Vcoding_category_list
);
9630 DEFUN ("coding-system-priority-list", Fcoding_system_priority_list
,
9631 Scoding_system_priority_list
, 0, 1, 0,
9632 doc
: /* Return a list of coding systems ordered by their priorities.
9633 The list contains a subset of coding systems; i.e. coding systems
9634 assigned to each coding category (see `coding-category-list').
9636 HIGHESTP non-nil means just return the highest priority one. */)
9638 Lisp_Object highestp
;
9643 for (i
= 0, val
= Qnil
; i
< coding_category_max
; i
++)
9645 enum coding_category category
= coding_priorities
[i
];
9646 int id
= coding_categories
[category
].id
;
9651 attrs
= CODING_ID_ATTRS (id
);
9652 if (! NILP (highestp
))
9653 return CODING_ATTR_BASE_NAME (attrs
);
9654 val
= Fcons (CODING_ATTR_BASE_NAME (attrs
), val
);
9656 return Fnreverse (val
);
9659 static const char *const suffixes
[] = { "-unix", "-dos", "-mac" };
9662 make_subsidiaries (base
)
9665 Lisp_Object subsidiaries
;
9666 int base_name_len
= SBYTES (SYMBOL_NAME (base
));
9667 char *buf
= (char *) alloca (base_name_len
+ 6);
9670 bcopy (SDATA (SYMBOL_NAME (base
)), buf
, base_name_len
);
9671 subsidiaries
= Fmake_vector (make_number (3), Qnil
);
9672 for (i
= 0; i
< 3; i
++)
9674 bcopy (suffixes
[i
], buf
+ base_name_len
, strlen (suffixes
[i
]) + 1);
9675 ASET (subsidiaries
, i
, intern (buf
));
9677 return subsidiaries
;
9681 DEFUN ("define-coding-system-internal", Fdefine_coding_system_internal
,
9682 Sdefine_coding_system_internal
, coding_arg_max
, MANY
, 0,
9683 doc
: /* For internal use only.
9684 usage: (define-coding-system-internal ...) */)
9690 Lisp_Object spec_vec
; /* [ ATTRS ALIASE EOL_TYPE ] */
9691 Lisp_Object attrs
; /* Vector of attributes. */
9692 Lisp_Object eol_type
;
9693 Lisp_Object aliases
;
9694 Lisp_Object coding_type
, charset_list
, safe_charsets
;
9695 enum coding_category category
;
9696 Lisp_Object tail
, val
;
9697 int max_charset_id
= 0;
9700 if (nargs
< coding_arg_max
)
9703 attrs
= Fmake_vector (make_number (coding_attr_last_index
), Qnil
);
9705 name
= args
[coding_arg_name
];
9706 CHECK_SYMBOL (name
);
9707 CODING_ATTR_BASE_NAME (attrs
) = name
;
9709 val
= args
[coding_arg_mnemonic
];
9710 if (! STRINGP (val
))
9711 CHECK_CHARACTER (val
);
9712 CODING_ATTR_MNEMONIC (attrs
) = val
;
9714 coding_type
= args
[coding_arg_coding_type
];
9715 CHECK_SYMBOL (coding_type
);
9716 CODING_ATTR_TYPE (attrs
) = coding_type
;
9718 charset_list
= args
[coding_arg_charset_list
];
9719 if (SYMBOLP (charset_list
))
9721 if (EQ (charset_list
, Qiso_2022
))
9723 if (! EQ (coding_type
, Qiso_2022
))
9724 error ("Invalid charset-list");
9725 charset_list
= Viso_2022_charset_list
;
9727 else if (EQ (charset_list
, Qemacs_mule
))
9729 if (! EQ (coding_type
, Qemacs_mule
))
9730 error ("Invalid charset-list");
9731 charset_list
= Vemacs_mule_charset_list
;
9733 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
9734 if (max_charset_id
< XFASTINT (XCAR (tail
)))
9735 max_charset_id
= XFASTINT (XCAR (tail
));
9739 charset_list
= Fcopy_sequence (charset_list
);
9740 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
9742 struct charset
*charset
;
9745 CHECK_CHARSET_GET_CHARSET (val
, charset
);
9746 if (EQ (coding_type
, Qiso_2022
)
9747 ? CHARSET_ISO_FINAL (charset
) < 0
9748 : EQ (coding_type
, Qemacs_mule
)
9749 ? CHARSET_EMACS_MULE_ID (charset
) < 0
9751 error ("Can't handle charset `%s'",
9752 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
9754 XSETCAR (tail
, make_number (charset
->id
));
9755 if (max_charset_id
< charset
->id
)
9756 max_charset_id
= charset
->id
;
9759 CODING_ATTR_CHARSET_LIST (attrs
) = charset_list
;
9761 safe_charsets
= make_uninit_string (max_charset_id
+ 1);
9762 memset (SDATA (safe_charsets
), 255, max_charset_id
+ 1);
9763 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
9764 SSET (safe_charsets
, XFASTINT (XCAR (tail
)), 0);
9765 CODING_ATTR_SAFE_CHARSETS (attrs
) = safe_charsets
;
9767 CODING_ATTR_ASCII_COMPAT (attrs
) = args
[coding_arg_ascii_compatible_p
];
9769 val
= args
[coding_arg_decode_translation_table
];
9770 if (! CHAR_TABLE_P (val
) && ! CONSP (val
))
9772 CODING_ATTR_DECODE_TBL (attrs
) = val
;
9774 val
= args
[coding_arg_encode_translation_table
];
9775 if (! CHAR_TABLE_P (val
) && ! CONSP (val
))
9777 CODING_ATTR_ENCODE_TBL (attrs
) = val
;
9779 val
= args
[coding_arg_post_read_conversion
];
9781 CODING_ATTR_POST_READ (attrs
) = val
;
9783 val
= args
[coding_arg_pre_write_conversion
];
9785 CODING_ATTR_PRE_WRITE (attrs
) = val
;
9787 val
= args
[coding_arg_default_char
];
9789 CODING_ATTR_DEFAULT_CHAR (attrs
) = make_number (' ');
9792 CHECK_CHARACTER (val
);
9793 CODING_ATTR_DEFAULT_CHAR (attrs
) = val
;
9796 val
= args
[coding_arg_for_unibyte
];
9797 CODING_ATTR_FOR_UNIBYTE (attrs
) = NILP (val
) ? Qnil
: Qt
;
9799 val
= args
[coding_arg_plist
];
9801 CODING_ATTR_PLIST (attrs
) = val
;
9803 if (EQ (coding_type
, Qcharset
))
9805 /* Generate a lisp vector of 256 elements. Each element is nil,
9806 integer, or a list of charset IDs.
9808 If Nth element is nil, the byte code N is invalid in this
9811 If Nth element is a number NUM, N is the first byte of a
9812 charset whose ID is NUM.
9814 If Nth element is a list of charset IDs, N is the first byte
9815 of one of them. The list is sorted by dimensions of the
9816 charsets. A charset of smaller dimension comes firtst. */
9817 val
= Fmake_vector (make_number (256), Qnil
);
9819 for (tail
= charset_list
; CONSP (tail
); tail
= XCDR (tail
))
9821 struct charset
*charset
= CHARSET_FROM_ID (XFASTINT (XCAR (tail
)));
9822 int dim
= CHARSET_DIMENSION (charset
);
9823 int idx
= (dim
- 1) * 4;
9825 if (CHARSET_ASCII_COMPATIBLE_P (charset
))
9826 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
9828 for (i
= charset
->code_space
[idx
];
9829 i
<= charset
->code_space
[idx
+ 1]; i
++)
9831 Lisp_Object tmp
, tmp2
;
9834 tmp
= AREF (val
, i
);
9837 else if (NUMBERP (tmp
))
9839 dim2
= CHARSET_DIMENSION (CHARSET_FROM_ID (XFASTINT (tmp
)));
9841 tmp
= Fcons (XCAR (tail
), Fcons (tmp
, Qnil
));
9843 tmp
= Fcons (tmp
, Fcons (XCAR (tail
), Qnil
));
9847 for (tmp2
= tmp
; CONSP (tmp2
); tmp2
= XCDR (tmp2
))
9849 dim2
= CHARSET_DIMENSION (CHARSET_FROM_ID (XFASTINT (XCAR (tmp2
))));
9854 tmp
= nconc2 (tmp
, Fcons (XCAR (tail
), Qnil
));
9857 XSETCDR (tmp2
, Fcons (XCAR (tmp2
), XCDR (tmp2
)));
9858 XSETCAR (tmp2
, XCAR (tail
));
9864 ASET (attrs
, coding_attr_charset_valids
, val
);
9865 category
= coding_category_charset
;
9867 else if (EQ (coding_type
, Qccl
))
9871 if (nargs
< coding_arg_ccl_max
)
9874 val
= args
[coding_arg_ccl_decoder
];
9875 CHECK_CCL_PROGRAM (val
);
9877 val
= Fcopy_sequence (val
);
9878 ASET (attrs
, coding_attr_ccl_decoder
, val
);
9880 val
= args
[coding_arg_ccl_encoder
];
9881 CHECK_CCL_PROGRAM (val
);
9883 val
= Fcopy_sequence (val
);
9884 ASET (attrs
, coding_attr_ccl_encoder
, val
);
9886 val
= args
[coding_arg_ccl_valids
];
9887 valids
= Fmake_string (make_number (256), make_number (0));
9888 for (tail
= val
; !NILP (tail
); tail
= Fcdr (tail
))
9895 from
= to
= XINT (val
);
9896 if (from
< 0 || from
> 255)
9897 args_out_of_range_3 (val
, make_number (0), make_number (255));
9902 CHECK_NATNUM_CAR (val
);
9903 CHECK_NATNUM_CDR (val
);
9904 from
= XINT (XCAR (val
));
9906 args_out_of_range_3 (XCAR (val
),
9907 make_number (0), make_number (255));
9908 to
= XINT (XCDR (val
));
9909 if (to
< from
|| to
> 255)
9910 args_out_of_range_3 (XCDR (val
),
9911 XCAR (val
), make_number (255));
9913 for (i
= from
; i
<= to
; i
++)
9914 SSET (valids
, i
, 1);
9916 ASET (attrs
, coding_attr_ccl_valids
, valids
);
9918 category
= coding_category_ccl
;
9920 else if (EQ (coding_type
, Qutf_16
))
9922 Lisp_Object bom
, endian
;
9924 CODING_ATTR_ASCII_COMPAT (attrs
) = Qnil
;
9926 if (nargs
< coding_arg_utf16_max
)
9929 bom
= args
[coding_arg_utf16_bom
];
9930 if (! NILP (bom
) && ! EQ (bom
, Qt
))
9934 CHECK_CODING_SYSTEM (val
);
9936 CHECK_CODING_SYSTEM (val
);
9938 ASET (attrs
, coding_attr_utf_bom
, bom
);
9940 endian
= args
[coding_arg_utf16_endian
];
9941 CHECK_SYMBOL (endian
);
9944 else if (! EQ (endian
, Qbig
) && ! EQ (endian
, Qlittle
))
9945 error ("Invalid endian: %s", SDATA (SYMBOL_NAME (endian
)));
9946 ASET (attrs
, coding_attr_utf_16_endian
, endian
);
9948 category
= (CONSP (bom
)
9949 ? coding_category_utf_16_auto
9951 ? (EQ (endian
, Qbig
)
9952 ? coding_category_utf_16_be_nosig
9953 : coding_category_utf_16_le_nosig
)
9954 : (EQ (endian
, Qbig
)
9955 ? coding_category_utf_16_be
9956 : coding_category_utf_16_le
));
9958 else if (EQ (coding_type
, Qiso_2022
))
9960 Lisp_Object initial
, reg_usage
, request
, flags
;
9963 if (nargs
< coding_arg_iso2022_max
)
9966 initial
= Fcopy_sequence (args
[coding_arg_iso2022_initial
]);
9967 CHECK_VECTOR (initial
);
9968 for (i
= 0; i
< 4; i
++)
9970 val
= Faref (initial
, make_number (i
));
9973 struct charset
*charset
;
9975 CHECK_CHARSET_GET_CHARSET (val
, charset
);
9976 ASET (initial
, i
, make_number (CHARSET_ID (charset
)));
9977 if (i
== 0 && CHARSET_ASCII_COMPATIBLE_P (charset
))
9978 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
9981 ASET (initial
, i
, make_number (-1));
9984 reg_usage
= args
[coding_arg_iso2022_reg_usage
];
9985 CHECK_CONS (reg_usage
);
9986 CHECK_NUMBER_CAR (reg_usage
);
9987 CHECK_NUMBER_CDR (reg_usage
);
9989 request
= Fcopy_sequence (args
[coding_arg_iso2022_request
]);
9990 for (tail
= request
; ! NILP (tail
); tail
= Fcdr (tail
))
9998 CHECK_CHARSET_GET_ID (tmp
, id
);
9999 CHECK_NATNUM_CDR (val
);
10000 if (XINT (XCDR (val
)) >= 4)
10001 error ("Invalid graphic register number: %d", XINT (XCDR (val
)));
10002 XSETCAR (val
, make_number (id
));
10005 flags
= args
[coding_arg_iso2022_flags
];
10006 CHECK_NATNUM (flags
);
10008 if (EQ (args
[coding_arg_charset_list
], Qiso_2022
))
10009 flags
= make_number (i
| CODING_ISO_FLAG_FULL_SUPPORT
);
10011 ASET (attrs
, coding_attr_iso_initial
, initial
);
10012 ASET (attrs
, coding_attr_iso_usage
, reg_usage
);
10013 ASET (attrs
, coding_attr_iso_request
, request
);
10014 ASET (attrs
, coding_attr_iso_flags
, flags
);
10015 setup_iso_safe_charsets (attrs
);
10017 if (i
& CODING_ISO_FLAG_SEVEN_BITS
)
10018 category
= ((i
& (CODING_ISO_FLAG_LOCKING_SHIFT
10019 | CODING_ISO_FLAG_SINGLE_SHIFT
))
10020 ? coding_category_iso_7_else
10021 : EQ (args
[coding_arg_charset_list
], Qiso_2022
)
10022 ? coding_category_iso_7
10023 : coding_category_iso_7_tight
);
10026 int id
= XINT (AREF (initial
, 1));
10028 category
= (((i
& CODING_ISO_FLAG_LOCKING_SHIFT
)
10029 || EQ (args
[coding_arg_charset_list
], Qiso_2022
)
10031 ? coding_category_iso_8_else
10032 : (CHARSET_DIMENSION (CHARSET_FROM_ID (id
)) == 1)
10033 ? coding_category_iso_8_1
10034 : coding_category_iso_8_2
);
10036 if (category
!= coding_category_iso_8_1
10037 && category
!= coding_category_iso_8_2
)
10038 CODING_ATTR_ASCII_COMPAT (attrs
) = Qnil
;
10040 else if (EQ (coding_type
, Qemacs_mule
))
10042 if (EQ (args
[coding_arg_charset_list
], Qemacs_mule
))
10043 ASET (attrs
, coding_attr_emacs_mule_full
, Qt
);
10044 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
10045 category
= coding_category_emacs_mule
;
10047 else if (EQ (coding_type
, Qshift_jis
))
10050 struct charset
*charset
;
10052 if (XINT (Flength (charset_list
)) != 3
10053 && XINT (Flength (charset_list
)) != 4)
10054 error ("There should be three or four charsets");
10056 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10057 if (CHARSET_DIMENSION (charset
) != 1)
10058 error ("Dimension of charset %s is not one",
10059 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10060 if (CHARSET_ASCII_COMPATIBLE_P (charset
))
10061 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
10063 charset_list
= XCDR (charset_list
);
10064 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10065 if (CHARSET_DIMENSION (charset
) != 1)
10066 error ("Dimension of charset %s is not one",
10067 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10069 charset_list
= XCDR (charset_list
);
10070 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10071 if (CHARSET_DIMENSION (charset
) != 2)
10072 error ("Dimension of charset %s is not two",
10073 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10075 charset_list
= XCDR (charset_list
);
10076 if (! NILP (charset_list
))
10078 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10079 if (CHARSET_DIMENSION (charset
) != 2)
10080 error ("Dimension of charset %s is not two",
10081 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10084 category
= coding_category_sjis
;
10085 Vsjis_coding_system
= name
;
10087 else if (EQ (coding_type
, Qbig5
))
10089 struct charset
*charset
;
10091 if (XINT (Flength (charset_list
)) != 2)
10092 error ("There should be just two charsets");
10094 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10095 if (CHARSET_DIMENSION (charset
) != 1)
10096 error ("Dimension of charset %s is not one",
10097 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10098 if (CHARSET_ASCII_COMPATIBLE_P (charset
))
10099 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
10101 charset_list
= XCDR (charset_list
);
10102 charset
= CHARSET_FROM_ID (XINT (XCAR (charset_list
)));
10103 if (CHARSET_DIMENSION (charset
) != 2)
10104 error ("Dimension of charset %s is not two",
10105 SDATA (SYMBOL_NAME (CHARSET_NAME (charset
))));
10107 category
= coding_category_big5
;
10108 Vbig5_coding_system
= name
;
10110 else if (EQ (coding_type
, Qraw_text
))
10112 category
= coding_category_raw_text
;
10113 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
10115 else if (EQ (coding_type
, Qutf_8
))
10119 CODING_ATTR_ASCII_COMPAT (attrs
) = Qt
;
10121 if (nargs
< coding_arg_utf8_max
)
10124 bom
= args
[coding_arg_utf8_bom
];
10125 if (! NILP (bom
) && ! EQ (bom
, Qt
))
10129 CHECK_CODING_SYSTEM (val
);
10131 CHECK_CODING_SYSTEM (val
);
10133 ASET (attrs
, coding_attr_utf_bom
, bom
);
10135 category
= (CONSP (bom
) ? coding_category_utf_8_auto
10136 : NILP (bom
) ? coding_category_utf_8_nosig
10137 : coding_category_utf_8_sig
);
10139 else if (EQ (coding_type
, Qundecided
))
10140 category
= coding_category_undecided
;
10142 error ("Invalid coding system type: %s",
10143 SDATA (SYMBOL_NAME (coding_type
)));
10145 CODING_ATTR_CATEGORY (attrs
) = make_number (category
);
10146 CODING_ATTR_PLIST (attrs
)
10147 = Fcons (QCcategory
, Fcons (AREF (Vcoding_category_table
, category
),
10148 CODING_ATTR_PLIST (attrs
)));
10149 CODING_ATTR_PLIST (attrs
)
10150 = Fcons (QCascii_compatible_p
,
10151 Fcons (CODING_ATTR_ASCII_COMPAT (attrs
),
10152 CODING_ATTR_PLIST (attrs
)));
10154 eol_type
= args
[coding_arg_eol_type
];
10155 if (! NILP (eol_type
)
10156 && ! EQ (eol_type
, Qunix
)
10157 && ! EQ (eol_type
, Qdos
)
10158 && ! EQ (eol_type
, Qmac
))
10159 error ("Invalid eol-type");
10161 aliases
= Fcons (name
, Qnil
);
10163 if (NILP (eol_type
))
10165 eol_type
= make_subsidiaries (name
);
10166 for (i
= 0; i
< 3; i
++)
10168 Lisp_Object this_spec
, this_name
, this_aliases
, this_eol_type
;
10170 this_name
= AREF (eol_type
, i
);
10171 this_aliases
= Fcons (this_name
, Qnil
);
10172 this_eol_type
= (i
== 0 ? Qunix
: i
== 1 ? Qdos
: Qmac
);
10173 this_spec
= Fmake_vector (make_number (3), attrs
);
10174 ASET (this_spec
, 1, this_aliases
);
10175 ASET (this_spec
, 2, this_eol_type
);
10176 Fputhash (this_name
, this_spec
, Vcoding_system_hash_table
);
10177 Vcoding_system_list
= Fcons (this_name
, Vcoding_system_list
);
10178 val
= Fassoc (Fsymbol_name (this_name
), Vcoding_system_alist
);
10180 Vcoding_system_alist
10181 = Fcons (Fcons (Fsymbol_name (this_name
), Qnil
),
10182 Vcoding_system_alist
);
10186 spec_vec
= Fmake_vector (make_number (3), attrs
);
10187 ASET (spec_vec
, 1, aliases
);
10188 ASET (spec_vec
, 2, eol_type
);
10190 Fputhash (name
, spec_vec
, Vcoding_system_hash_table
);
10191 Vcoding_system_list
= Fcons (name
, Vcoding_system_list
);
10192 val
= Fassoc (Fsymbol_name (name
), Vcoding_system_alist
);
10194 Vcoding_system_alist
= Fcons (Fcons (Fsymbol_name (name
), Qnil
),
10195 Vcoding_system_alist
);
10198 int id
= coding_categories
[category
].id
;
10200 if (id
< 0 || EQ (name
, CODING_ID_NAME (id
)))
10201 setup_coding_system (name
, &coding_categories
[category
]);
10207 return Fsignal (Qwrong_number_of_arguments
,
10208 Fcons (intern ("define-coding-system-internal"),
10209 make_number (nargs
)));
10213 DEFUN ("coding-system-put", Fcoding_system_put
, Scoding_system_put
,
10215 doc
: /* Change value in CODING-SYSTEM's property list PROP to VAL. */)
10216 (coding_system
, prop
, val
)
10217 Lisp_Object coding_system
, prop
, val
;
10219 Lisp_Object spec
, attrs
;
10221 CHECK_CODING_SYSTEM_GET_SPEC (coding_system
, spec
);
10222 attrs
= AREF (spec
, 0);
10223 if (EQ (prop
, QCmnemonic
))
10225 if (! STRINGP (val
))
10226 CHECK_CHARACTER (val
);
10227 CODING_ATTR_MNEMONIC (attrs
) = val
;
10229 else if (EQ (prop
, QCdefault_char
))
10232 val
= make_number (' ');
10234 CHECK_CHARACTER (val
);
10235 CODING_ATTR_DEFAULT_CHAR (attrs
) = val
;
10237 else if (EQ (prop
, QCdecode_translation_table
))
10239 if (! CHAR_TABLE_P (val
) && ! CONSP (val
))
10240 CHECK_SYMBOL (val
);
10241 CODING_ATTR_DECODE_TBL (attrs
) = val
;
10243 else if (EQ (prop
, QCencode_translation_table
))
10245 if (! CHAR_TABLE_P (val
) && ! CONSP (val
))
10246 CHECK_SYMBOL (val
);
10247 CODING_ATTR_ENCODE_TBL (attrs
) = val
;
10249 else if (EQ (prop
, QCpost_read_conversion
))
10251 CHECK_SYMBOL (val
);
10252 CODING_ATTR_POST_READ (attrs
) = val
;
10254 else if (EQ (prop
, QCpre_write_conversion
))
10256 CHECK_SYMBOL (val
);
10257 CODING_ATTR_PRE_WRITE (attrs
) = val
;
10259 else if (EQ (prop
, QCascii_compatible_p
))
10261 CODING_ATTR_ASCII_COMPAT (attrs
) = val
;
10264 CODING_ATTR_PLIST (attrs
)
10265 = Fplist_put (CODING_ATTR_PLIST (attrs
), prop
, val
);
10270 DEFUN ("define-coding-system-alias", Fdefine_coding_system_alias
,
10271 Sdefine_coding_system_alias
, 2, 2, 0,
10272 doc
: /* Define ALIAS as an alias for CODING-SYSTEM. */)
10273 (alias
, coding_system
)
10274 Lisp_Object alias
, coding_system
;
10276 Lisp_Object spec
, aliases
, eol_type
, val
;
10278 CHECK_SYMBOL (alias
);
10279 CHECK_CODING_SYSTEM_GET_SPEC (coding_system
, spec
);
10280 aliases
= AREF (spec
, 1);
10281 /* ALIASES should be a list of length more than zero, and the first
10282 element is a base coding system. Append ALIAS at the tail of the
10284 while (!NILP (XCDR (aliases
)))
10285 aliases
= XCDR (aliases
);
10286 XSETCDR (aliases
, Fcons (alias
, Qnil
));
10288 eol_type
= AREF (spec
, 2);
10289 if (VECTORP (eol_type
))
10291 Lisp_Object subsidiaries
;
10294 subsidiaries
= make_subsidiaries (alias
);
10295 for (i
= 0; i
< 3; i
++)
10296 Fdefine_coding_system_alias (AREF (subsidiaries
, i
),
10297 AREF (eol_type
, i
));
10300 Fputhash (alias
, spec
, Vcoding_system_hash_table
);
10301 Vcoding_system_list
= Fcons (alias
, Vcoding_system_list
);
10302 val
= Fassoc (Fsymbol_name (alias
), Vcoding_system_alist
);
10304 Vcoding_system_alist
= Fcons (Fcons (Fsymbol_name (alias
), Qnil
),
10305 Vcoding_system_alist
);
10310 DEFUN ("coding-system-base", Fcoding_system_base
, Scoding_system_base
,
10312 doc
: /* Return the base of CODING-SYSTEM.
10313 Any alias or subsidiary coding system is not a base coding system. */)
10315 Lisp_Object coding_system
;
10317 Lisp_Object spec
, attrs
;
10319 if (NILP (coding_system
))
10320 return (Qno_conversion
);
10321 CHECK_CODING_SYSTEM_GET_SPEC (coding_system
, spec
);
10322 attrs
= AREF (spec
, 0);
10323 return CODING_ATTR_BASE_NAME (attrs
);
10326 DEFUN ("coding-system-plist", Fcoding_system_plist
, Scoding_system_plist
,
10328 doc
: "Return the property list of CODING-SYSTEM.")
10330 Lisp_Object coding_system
;
10332 Lisp_Object spec
, attrs
;
10334 if (NILP (coding_system
))
10335 coding_system
= Qno_conversion
;
10336 CHECK_CODING_SYSTEM_GET_SPEC (coding_system
, spec
);
10337 attrs
= AREF (spec
, 0);
10338 return CODING_ATTR_PLIST (attrs
);
10342 DEFUN ("coding-system-aliases", Fcoding_system_aliases
, Scoding_system_aliases
,
10344 doc
: /* Return the list of aliases of CODING-SYSTEM. */)
10346 Lisp_Object coding_system
;
10350 if (NILP (coding_system
))
10351 coding_system
= Qno_conversion
;
10352 CHECK_CODING_SYSTEM_GET_SPEC (coding_system
, spec
);
10353 return AREF (spec
, 1);
10356 DEFUN ("coding-system-eol-type", Fcoding_system_eol_type
,
10357 Scoding_system_eol_type
, 1, 1, 0,
10358 doc
: /* Return eol-type of CODING-SYSTEM.
10359 An eol-type is an integer 0, 1, 2, or a vector of coding systems.
10361 Integer values 0, 1, and 2 indicate a format of end-of-line; LF, CRLF,
10362 and CR respectively.
10364 A vector value indicates that a format of end-of-line should be
10365 detected automatically. Nth element of the vector is the subsidiary
10366 coding system whose eol-type is N. */)
10368 Lisp_Object coding_system
;
10370 Lisp_Object spec
, eol_type
;
10373 if (NILP (coding_system
))
10374 coding_system
= Qno_conversion
;
10375 if (! CODING_SYSTEM_P (coding_system
))
10377 spec
= CODING_SYSTEM_SPEC (coding_system
);
10378 eol_type
= AREF (spec
, 2);
10379 if (VECTORP (eol_type
))
10380 return Fcopy_sequence (eol_type
);
10381 n
= EQ (eol_type
, Qunix
) ? 0 : EQ (eol_type
, Qdos
) ? 1 : 2;
10382 return make_number (n
);
10388 /*** 9. Post-amble ***/
10391 init_coding_once ()
10395 for (i
= 0; i
< coding_category_max
; i
++)
10397 coding_categories
[i
].id
= -1;
10398 coding_priorities
[i
] = i
;
10401 /* ISO2022 specific initialize routine. */
10402 for (i
= 0; i
< 0x20; i
++)
10403 iso_code_class
[i
] = ISO_control_0
;
10404 for (i
= 0x21; i
< 0x7F; i
++)
10405 iso_code_class
[i
] = ISO_graphic_plane_0
;
10406 for (i
= 0x80; i
< 0xA0; i
++)
10407 iso_code_class
[i
] = ISO_control_1
;
10408 for (i
= 0xA1; i
< 0xFF; i
++)
10409 iso_code_class
[i
] = ISO_graphic_plane_1
;
10410 iso_code_class
[0x20] = iso_code_class
[0x7F] = ISO_0x20_or_0x7F
;
10411 iso_code_class
[0xA0] = iso_code_class
[0xFF] = ISO_0xA0_or_0xFF
;
10412 iso_code_class
[ISO_CODE_SO
] = ISO_shift_out
;
10413 iso_code_class
[ISO_CODE_SI
] = ISO_shift_in
;
10414 iso_code_class
[ISO_CODE_SS2_7
] = ISO_single_shift_2_7
;
10415 iso_code_class
[ISO_CODE_ESC
] = ISO_escape
;
10416 iso_code_class
[ISO_CODE_SS2
] = ISO_single_shift_2
;
10417 iso_code_class
[ISO_CODE_SS3
] = ISO_single_shift_3
;
10418 iso_code_class
[ISO_CODE_CSI
] = ISO_control_sequence_introducer
;
10420 for (i
= 0; i
< 256; i
++)
10422 emacs_mule_bytes
[i
] = 1;
10424 emacs_mule_bytes
[EMACS_MULE_LEADING_CODE_PRIVATE_11
] = 3;
10425 emacs_mule_bytes
[EMACS_MULE_LEADING_CODE_PRIVATE_12
] = 3;
10426 emacs_mule_bytes
[EMACS_MULE_LEADING_CODE_PRIVATE_21
] = 4;
10427 emacs_mule_bytes
[EMACS_MULE_LEADING_CODE_PRIVATE_22
] = 4;
10435 staticpro (&Vcoding_system_hash_table
);
10437 Lisp_Object args
[2];
10440 Vcoding_system_hash_table
= Fmake_hash_table (2, args
);
10443 staticpro (&Vsjis_coding_system
);
10444 Vsjis_coding_system
= Qnil
;
10446 staticpro (&Vbig5_coding_system
);
10447 Vbig5_coding_system
= Qnil
;
10449 staticpro (&Vcode_conversion_reused_workbuf
);
10450 Vcode_conversion_reused_workbuf
= Qnil
;
10452 staticpro (&Vcode_conversion_workbuf_name
);
10453 Vcode_conversion_workbuf_name
= make_pure_c_string (" *code-conversion-work*");
10455 reused_workbuf_in_use
= 0;
10457 DEFSYM (Qcharset
, "charset");
10458 DEFSYM (Qtarget_idx
, "target-idx");
10459 DEFSYM (Qcoding_system_history
, "coding-system-history");
10460 Fset (Qcoding_system_history
, Qnil
);
10462 /* Target FILENAME is the first argument. */
10463 Fput (Qinsert_file_contents
, Qtarget_idx
, make_number (0));
10464 /* Target FILENAME is the third argument. */
10465 Fput (Qwrite_region
, Qtarget_idx
, make_number (2));
10467 DEFSYM (Qcall_process
, "call-process");
10468 /* Target PROGRAM is the first argument. */
10469 Fput (Qcall_process
, Qtarget_idx
, make_number (0));
10471 DEFSYM (Qcall_process_region
, "call-process-region");
10472 /* Target PROGRAM is the third argument. */
10473 Fput (Qcall_process_region
, Qtarget_idx
, make_number (2));
10475 DEFSYM (Qstart_process
, "start-process");
10476 /* Target PROGRAM is the third argument. */
10477 Fput (Qstart_process
, Qtarget_idx
, make_number (2));
10479 DEFSYM (Qopen_network_stream
, "open-network-stream");
10480 /* Target SERVICE is the fourth argument. */
10481 Fput (Qopen_network_stream
, Qtarget_idx
, make_number (3));
10483 DEFSYM (Qcoding_system
, "coding-system");
10484 DEFSYM (Qcoding_aliases
, "coding-aliases");
10486 DEFSYM (Qeol_type
, "eol-type");
10487 DEFSYM (Qunix
, "unix");
10488 DEFSYM (Qdos
, "dos");
10490 DEFSYM (Qbuffer_file_coding_system
, "buffer-file-coding-system");
10491 DEFSYM (Qpost_read_conversion
, "post-read-conversion");
10492 DEFSYM (Qpre_write_conversion
, "pre-write-conversion");
10493 DEFSYM (Qdefault_char
, "default-char");
10494 DEFSYM (Qundecided
, "undecided");
10495 DEFSYM (Qno_conversion
, "no-conversion");
10496 DEFSYM (Qraw_text
, "raw-text");
10498 DEFSYM (Qiso_2022
, "iso-2022");
10500 DEFSYM (Qutf_8
, "utf-8");
10501 DEFSYM (Qutf_8_emacs
, "utf-8-emacs");
10503 DEFSYM (Qutf_16
, "utf-16");
10504 DEFSYM (Qbig
, "big");
10505 DEFSYM (Qlittle
, "little");
10507 DEFSYM (Qshift_jis
, "shift-jis");
10508 DEFSYM (Qbig5
, "big5");
10510 DEFSYM (Qcoding_system_p
, "coding-system-p");
10512 DEFSYM (Qcoding_system_error
, "coding-system-error");
10513 Fput (Qcoding_system_error
, Qerror_conditions
,
10514 pure_cons (Qcoding_system_error
, pure_cons (Qerror
, Qnil
)));
10515 Fput (Qcoding_system_error
, Qerror_message
,
10516 make_pure_c_string ("Invalid coding system"));
10518 /* Intern this now in case it isn't already done.
10519 Setting this variable twice is harmless.
10520 But don't staticpro it here--that is done in alloc.c. */
10521 Qchar_table_extra_slots
= intern_c_string ("char-table-extra-slots");
10523 DEFSYM (Qtranslation_table
, "translation-table");
10524 Fput (Qtranslation_table
, Qchar_table_extra_slots
, make_number (2));
10525 DEFSYM (Qtranslation_table_id
, "translation-table-id");
10526 DEFSYM (Qtranslation_table_for_decode
, "translation-table-for-decode");
10527 DEFSYM (Qtranslation_table_for_encode
, "translation-table-for-encode");
10529 DEFSYM (Qvalid_codes
, "valid-codes");
10531 DEFSYM (Qemacs_mule
, "emacs-mule");
10533 DEFSYM (QCcategory
, ":category");
10534 DEFSYM (QCmnemonic
, ":mnemonic");
10535 DEFSYM (QCdefault_char
, ":default-char");
10536 DEFSYM (QCdecode_translation_table
, ":decode-translation-table");
10537 DEFSYM (QCencode_translation_table
, ":encode-translation-table");
10538 DEFSYM (QCpost_read_conversion
, ":post-read-conversion");
10539 DEFSYM (QCpre_write_conversion
, ":pre-write-conversion");
10540 DEFSYM (QCascii_compatible_p
, ":ascii-compatible-p");
10542 Vcoding_category_table
10543 = Fmake_vector (make_number (coding_category_max
), Qnil
);
10544 staticpro (&Vcoding_category_table
);
10545 /* Followings are target of code detection. */
10546 ASET (Vcoding_category_table
, coding_category_iso_7
,
10547 intern_c_string ("coding-category-iso-7"));
10548 ASET (Vcoding_category_table
, coding_category_iso_7_tight
,
10549 intern_c_string ("coding-category-iso-7-tight"));
10550 ASET (Vcoding_category_table
, coding_category_iso_8_1
,
10551 intern_c_string ("coding-category-iso-8-1"));
10552 ASET (Vcoding_category_table
, coding_category_iso_8_2
,
10553 intern_c_string ("coding-category-iso-8-2"));
10554 ASET (Vcoding_category_table
, coding_category_iso_7_else
,
10555 intern_c_string ("coding-category-iso-7-else"));
10556 ASET (Vcoding_category_table
, coding_category_iso_8_else
,
10557 intern_c_string ("coding-category-iso-8-else"));
10558 ASET (Vcoding_category_table
, coding_category_utf_8_auto
,
10559 intern_c_string ("coding-category-utf-8-auto"));
10560 ASET (Vcoding_category_table
, coding_category_utf_8_nosig
,
10561 intern_c_string ("coding-category-utf-8"));
10562 ASET (Vcoding_category_table
, coding_category_utf_8_sig
,
10563 intern_c_string ("coding-category-utf-8-sig"));
10564 ASET (Vcoding_category_table
, coding_category_utf_16_be
,
10565 intern_c_string ("coding-category-utf-16-be"));
10566 ASET (Vcoding_category_table
, coding_category_utf_16_auto
,
10567 intern_c_string ("coding-category-utf-16-auto"));
10568 ASET (Vcoding_category_table
, coding_category_utf_16_le
,
10569 intern_c_string ("coding-category-utf-16-le"));
10570 ASET (Vcoding_category_table
, coding_category_utf_16_be_nosig
,
10571 intern_c_string ("coding-category-utf-16-be-nosig"));
10572 ASET (Vcoding_category_table
, coding_category_utf_16_le_nosig
,
10573 intern_c_string ("coding-category-utf-16-le-nosig"));
10574 ASET (Vcoding_category_table
, coding_category_charset
,
10575 intern_c_string ("coding-category-charset"));
10576 ASET (Vcoding_category_table
, coding_category_sjis
,
10577 intern_c_string ("coding-category-sjis"));
10578 ASET (Vcoding_category_table
, coding_category_big5
,
10579 intern_c_string ("coding-category-big5"));
10580 ASET (Vcoding_category_table
, coding_category_ccl
,
10581 intern_c_string ("coding-category-ccl"));
10582 ASET (Vcoding_category_table
, coding_category_emacs_mule
,
10583 intern_c_string ("coding-category-emacs-mule"));
10584 /* Followings are NOT target of code detection. */
10585 ASET (Vcoding_category_table
, coding_category_raw_text
,
10586 intern_c_string ("coding-category-raw-text"));
10587 ASET (Vcoding_category_table
, coding_category_undecided
,
10588 intern_c_string ("coding-category-undecided"));
10590 DEFSYM (Qinsufficient_source
, "insufficient-source");
10591 DEFSYM (Qinconsistent_eol
, "inconsistent-eol");
10592 DEFSYM (Qinvalid_source
, "invalid-source");
10593 DEFSYM (Qinterrupted
, "interrupted");
10594 DEFSYM (Qinsufficient_memory
, "insufficient-memory");
10595 DEFSYM (Qcoding_system_define_form
, "coding-system-define-form");
10597 defsubr (&Scoding_system_p
);
10598 defsubr (&Sread_coding_system
);
10599 defsubr (&Sread_non_nil_coding_system
);
10600 defsubr (&Scheck_coding_system
);
10601 defsubr (&Sdetect_coding_region
);
10602 defsubr (&Sdetect_coding_string
);
10603 defsubr (&Sfind_coding_systems_region_internal
);
10604 defsubr (&Sunencodable_char_position
);
10605 defsubr (&Scheck_coding_systems_region
);
10606 defsubr (&Sdecode_coding_region
);
10607 defsubr (&Sencode_coding_region
);
10608 defsubr (&Sdecode_coding_string
);
10609 defsubr (&Sencode_coding_string
);
10610 defsubr (&Sdecode_sjis_char
);
10611 defsubr (&Sencode_sjis_char
);
10612 defsubr (&Sdecode_big5_char
);
10613 defsubr (&Sencode_big5_char
);
10614 defsubr (&Sset_terminal_coding_system_internal
);
10615 defsubr (&Sset_safe_terminal_coding_system_internal
);
10616 defsubr (&Sterminal_coding_system
);
10617 defsubr (&Sset_keyboard_coding_system_internal
);
10618 defsubr (&Skeyboard_coding_system
);
10619 defsubr (&Sfind_operation_coding_system
);
10620 defsubr (&Sset_coding_system_priority
);
10621 defsubr (&Sdefine_coding_system_internal
);
10622 defsubr (&Sdefine_coding_system_alias
);
10623 defsubr (&Scoding_system_put
);
10624 defsubr (&Scoding_system_base
);
10625 defsubr (&Scoding_system_plist
);
10626 defsubr (&Scoding_system_aliases
);
10627 defsubr (&Scoding_system_eol_type
);
10628 defsubr (&Scoding_system_priority_list
);
10630 DEFVAR_LISP ("coding-system-list", &Vcoding_system_list
,
10631 doc
: /* List of coding systems.
10633 Do not alter the value of this variable manually. This variable should be
10634 updated by the functions `define-coding-system' and
10635 `define-coding-system-alias'. */);
10636 Vcoding_system_list
= Qnil
;
10638 DEFVAR_LISP ("coding-system-alist", &Vcoding_system_alist
,
10639 doc
: /* Alist of coding system names.
10640 Each element is one element list of coding system name.
10641 This variable is given to `completing-read' as COLLECTION argument.
10643 Do not alter the value of this variable manually. This variable should be
10644 updated by the functions `make-coding-system' and
10645 `define-coding-system-alias'. */);
10646 Vcoding_system_alist
= Qnil
;
10648 DEFVAR_LISP ("coding-category-list", &Vcoding_category_list
,
10649 doc
: /* List of coding-categories (symbols) ordered by priority.
10651 On detecting a coding system, Emacs tries code detection algorithms
10652 associated with each coding-category one by one in this order. When
10653 one algorithm agrees with a byte sequence of source text, the coding
10654 system bound to the corresponding coding-category is selected.
10656 Don't modify this variable directly, but use `set-coding-priority'. */);
10660 Vcoding_category_list
= Qnil
;
10661 for (i
= coding_category_max
- 1; i
>= 0; i
--)
10662 Vcoding_category_list
10663 = Fcons (XVECTOR (Vcoding_category_table
)->contents
[i
],
10664 Vcoding_category_list
);
10667 DEFVAR_LISP ("coding-system-for-read", &Vcoding_system_for_read
,
10668 doc
: /* Specify the coding system for read operations.
10669 It is useful to bind this variable with `let', but do not set it globally.
10670 If the value is a coding system, it is used for decoding on read operation.
10671 If not, an appropriate element is used from one of the coding system alists.
10672 There are three such tables: `file-coding-system-alist',
10673 `process-coding-system-alist', and `network-coding-system-alist'. */);
10674 Vcoding_system_for_read
= Qnil
;
10676 DEFVAR_LISP ("coding-system-for-write", &Vcoding_system_for_write
,
10677 doc
: /* Specify the coding system for write operations.
10678 Programs bind this variable with `let', but you should not set it globally.
10679 If the value is a coding system, it is used for encoding of output,
10680 when writing it to a file and when sending it to a file or subprocess.
10682 If this does not specify a coding system, an appropriate element
10683 is used from one of the coding system alists.
10684 There are three such tables: `file-coding-system-alist',
10685 `process-coding-system-alist', and `network-coding-system-alist'.
10686 For output to files, if the above procedure does not specify a coding system,
10687 the value of `buffer-file-coding-system' is used. */);
10688 Vcoding_system_for_write
= Qnil
;
10690 DEFVAR_LISP ("last-coding-system-used", &Vlast_coding_system_used
,
10692 Coding system used in the latest file or process I/O. */);
10693 Vlast_coding_system_used
= Qnil
;
10695 DEFVAR_LISP ("last-code-conversion-error", &Vlast_code_conversion_error
,
10697 Error status of the last code conversion.
10699 When an error was detected in the last code conversion, this variable
10700 is set to one of the following symbols.
10701 `insufficient-source'
10705 `insufficient-memory'
10706 When no error was detected, the value doesn't change. So, to check
10707 the error status of a code conversion by this variable, you must
10708 explicitly set this variable to nil before performing code
10710 Vlast_code_conversion_error
= Qnil
;
10712 DEFVAR_BOOL ("inhibit-eol-conversion", &inhibit_eol_conversion
,
10714 *Non-nil means always inhibit code conversion of end-of-line format.
10715 See info node `Coding Systems' and info node `Text and Binary' concerning
10716 such conversion. */);
10717 inhibit_eol_conversion
= 0;
10719 DEFVAR_BOOL ("inherit-process-coding-system", &inherit_process_coding_system
,
10721 Non-nil means process buffer inherits coding system of process output.
10722 Bind it to t if the process output is to be treated as if it were a file
10723 read from some filesystem. */);
10724 inherit_process_coding_system
= 0;
10726 DEFVAR_LISP ("file-coding-system-alist", &Vfile_coding_system_alist
,
10728 Alist to decide a coding system to use for a file I/O operation.
10729 The format is ((PATTERN . VAL) ...),
10730 where PATTERN is a regular expression matching a file name,
10731 VAL is a coding system, a cons of coding systems, or a function symbol.
10732 If VAL is a coding system, it is used for both decoding and encoding
10734 If VAL is a cons of coding systems, the car part is used for decoding,
10735 and the cdr part is used for encoding.
10736 If VAL is a function symbol, the function must return a coding system
10737 or a cons of coding systems which are used as above. The function is
10738 called with an argument that is a list of the arguments with which
10739 `find-operation-coding-system' was called. If the function can't decide
10740 a coding system, it can return `undecided' so that the normal
10741 code-detection is performed.
10743 See also the function `find-operation-coding-system'
10744 and the variable `auto-coding-alist'. */);
10745 Vfile_coding_system_alist
= Qnil
;
10747 DEFVAR_LISP ("process-coding-system-alist", &Vprocess_coding_system_alist
,
10749 Alist to decide a coding system to use for a process I/O operation.
10750 The format is ((PATTERN . VAL) ...),
10751 where PATTERN is a regular expression matching a program name,
10752 VAL is a coding system, a cons of coding systems, or a function symbol.
10753 If VAL is a coding system, it is used for both decoding what received
10754 from the program and encoding what sent to the program.
10755 If VAL is a cons of coding systems, the car part is used for decoding,
10756 and the cdr part is used for encoding.
10757 If VAL is a function symbol, the function must return a coding system
10758 or a cons of coding systems which are used as above.
10760 See also the function `find-operation-coding-system'. */);
10761 Vprocess_coding_system_alist
= Qnil
;
10763 DEFVAR_LISP ("network-coding-system-alist", &Vnetwork_coding_system_alist
,
10765 Alist to decide a coding system to use for a network I/O operation.
10766 The format is ((PATTERN . VAL) ...),
10767 where PATTERN is a regular expression matching a network service name
10768 or is a port number to connect to,
10769 VAL is a coding system, a cons of coding systems, or a function symbol.
10770 If VAL is a coding system, it is used for both decoding what received
10771 from the network stream and encoding what sent to the network stream.
10772 If VAL is a cons of coding systems, the car part is used for decoding,
10773 and the cdr part is used for encoding.
10774 If VAL is a function symbol, the function must return a coding system
10775 or a cons of coding systems which are used as above.
10777 See also the function `find-operation-coding-system'. */);
10778 Vnetwork_coding_system_alist
= Qnil
;
10780 DEFVAR_LISP ("locale-coding-system", &Vlocale_coding_system
,
10781 doc
: /* Coding system to use with system messages.
10782 Also used for decoding keyboard input on X Window system. */);
10783 Vlocale_coding_system
= Qnil
;
10785 /* The eol mnemonics are reset in startup.el system-dependently. */
10786 DEFVAR_LISP ("eol-mnemonic-unix", &eol_mnemonic_unix
,
10788 *String displayed in mode line for UNIX-like (LF) end-of-line format. */);
10789 eol_mnemonic_unix
= make_pure_c_string (":");
10791 DEFVAR_LISP ("eol-mnemonic-dos", &eol_mnemonic_dos
,
10793 *String displayed in mode line for DOS-like (CRLF) end-of-line format. */);
10794 eol_mnemonic_dos
= make_pure_c_string ("\\");
10796 DEFVAR_LISP ("eol-mnemonic-mac", &eol_mnemonic_mac
,
10798 *String displayed in mode line for MAC-like (CR) end-of-line format. */);
10799 eol_mnemonic_mac
= make_pure_c_string ("/");
10801 DEFVAR_LISP ("eol-mnemonic-undecided", &eol_mnemonic_undecided
,
10803 *String displayed in mode line when end-of-line format is not yet determined. */);
10804 eol_mnemonic_undecided
= make_pure_c_string (":");
10806 DEFVAR_LISP ("enable-character-translation", &Venable_character_translation
,
10808 *Non-nil enables character translation while encoding and decoding. */);
10809 Venable_character_translation
= Qt
;
10811 DEFVAR_LISP ("standard-translation-table-for-decode",
10812 &Vstandard_translation_table_for_decode
,
10813 doc
: /* Table for translating characters while decoding. */);
10814 Vstandard_translation_table_for_decode
= Qnil
;
10816 DEFVAR_LISP ("standard-translation-table-for-encode",
10817 &Vstandard_translation_table_for_encode
,
10818 doc
: /* Table for translating characters while encoding. */);
10819 Vstandard_translation_table_for_encode
= Qnil
;
10821 DEFVAR_LISP ("charset-revision-table", &Vcharset_revision_table
,
10822 doc
: /* Alist of charsets vs revision numbers.
10823 While encoding, if a charset (car part of an element) is found,
10824 designate it with the escape sequence identifying revision (cdr part
10825 of the element). */);
10826 Vcharset_revision_table
= Qnil
;
10828 DEFVAR_LISP ("default-process-coding-system",
10829 &Vdefault_process_coding_system
,
10830 doc
: /* Cons of coding systems used for process I/O by default.
10831 The car part is used for decoding a process output,
10832 the cdr part is used for encoding a text to be sent to a process. */);
10833 Vdefault_process_coding_system
= Qnil
;
10835 DEFVAR_LISP ("latin-extra-code-table", &Vlatin_extra_code_table
,
10837 Table of extra Latin codes in the range 128..159 (inclusive).
10838 This is a vector of length 256.
10839 If Nth element is non-nil, the existence of code N in a file
10840 \(or output of subprocess) doesn't prevent it to be detected as
10841 a coding system of ISO 2022 variant which has a flag
10842 `accept-latin-extra-code' t (e.g. iso-latin-1) on reading a file
10843 or reading output of a subprocess.
10844 Only 128th through 159th elements have a meaning. */);
10845 Vlatin_extra_code_table
= Fmake_vector (make_number (256), Qnil
);
10847 DEFVAR_LISP ("select-safe-coding-system-function",
10848 &Vselect_safe_coding_system_function
,
10850 Function to call to select safe coding system for encoding a text.
10852 If set, this function is called to force a user to select a proper
10853 coding system which can encode the text in the case that a default
10854 coding system used in each operation can't encode the text. The
10855 function should take care that the buffer is not modified while
10856 the coding system is being selected.
10858 The default value is `select-safe-coding-system' (which see). */);
10859 Vselect_safe_coding_system_function
= Qnil
;
10861 DEFVAR_BOOL ("coding-system-require-warning",
10862 &coding_system_require_warning
,
10863 doc
: /* Internal use only.
10864 If non-nil, on writing a file, `select-safe-coding-system-function' is
10865 called even if `coding-system-for-write' is non-nil. The command
10866 `universal-coding-system-argument' binds this variable to t temporarily. */);
10867 coding_system_require_warning
= 0;
10870 DEFVAR_BOOL ("inhibit-iso-escape-detection",
10871 &inhibit_iso_escape_detection
,
10873 If non-nil, Emacs ignores ISO-2022 escape sequences during code detection.
10875 When Emacs reads text, it tries to detect how the text is encoded.
10876 This code detection is sensitive to escape sequences. If Emacs sees
10877 a valid ISO-2022 escape sequence, it assumes the text is encoded in one
10878 of the ISO2022 encodings, and decodes text by the corresponding coding
10879 system (e.g. `iso-2022-7bit').
10881 However, there may be a case that you want to read escape sequences in
10882 a file as is. In such a case, you can set this variable to non-nil.
10883 Then the code detection will ignore any escape sequences, and no text is
10884 detected as encoded in some ISO-2022 encoding. The result is that all
10885 escape sequences become visible in a buffer.
10887 The default value is nil, and it is strongly recommended not to change
10888 it. That is because many Emacs Lisp source files that contain
10889 non-ASCII characters are encoded by the coding system `iso-2022-7bit'
10890 in Emacs's distribution, and they won't be decoded correctly on
10891 reading if you suppress escape sequence detection.
10893 The other way to read escape sequences in a file without decoding is
10894 to explicitly specify some coding system that doesn't use ISO-2022
10895 escape sequence (e.g `latin-1') on reading by \\[universal-coding-system-argument]. */);
10896 inhibit_iso_escape_detection
= 0;
10898 DEFVAR_BOOL ("inhibit-null-byte-detection",
10899 &inhibit_null_byte_detection
,
10900 doc
: /* If non-nil, Emacs ignores null bytes on code detection.
10901 By default, Emacs treats it as binary data, and does not attempt to
10902 decode it. The effect is as if you specified `no-conversion' for
10905 Set this to non-nil when a regular text happens to include null bytes.
10906 Examples are Index nodes of Info files and null-byte delimited output
10907 from GNU Find and GNU Grep. Emacs will then ignore the null bytes and
10908 decode text as usual. */);
10909 inhibit_null_byte_detection
= 0;
10911 DEFVAR_LISP ("translation-table-for-input", &Vtranslation_table_for_input
,
10912 doc
: /* Char table for translating self-inserting characters.
10913 This is applied to the result of input methods, not their input.
10914 See also `keyboard-translate-table'.
10916 Use of this variable for character code unification was rendered
10917 obsolete in Emacs 23.1 and later, since Unicode is now the basis of
10918 internal character representation. */);
10919 Vtranslation_table_for_input
= Qnil
;
10922 Lisp_Object args
[coding_arg_max
];
10923 Lisp_Object plist
[16];
10926 for (i
= 0; i
< coding_arg_max
; i
++)
10929 plist
[0] = intern_c_string (":name");
10930 plist
[1] = args
[coding_arg_name
] = Qno_conversion
;
10931 plist
[2] = intern_c_string (":mnemonic");
10932 plist
[3] = args
[coding_arg_mnemonic
] = make_number ('=');
10933 plist
[4] = intern_c_string (":coding-type");
10934 plist
[5] = args
[coding_arg_coding_type
] = Qraw_text
;
10935 plist
[6] = intern_c_string (":ascii-compatible-p");
10936 plist
[7] = args
[coding_arg_ascii_compatible_p
] = Qt
;
10937 plist
[8] = intern_c_string (":default-char");
10938 plist
[9] = args
[coding_arg_default_char
] = make_number (0);
10939 plist
[10] = intern_c_string (":for-unibyte");
10940 plist
[11] = args
[coding_arg_for_unibyte
] = Qt
;
10941 plist
[12] = intern_c_string (":docstring");
10942 plist
[13] = make_pure_c_string ("Do no conversion.\n\
10944 When you visit a file with this coding, the file is read into a\n\
10945 unibyte buffer as is, thus each byte of a file is treated as a\n\
10947 plist
[14] = intern_c_string (":eol-type");
10948 plist
[15] = args
[coding_arg_eol_type
] = Qunix
;
10949 args
[coding_arg_plist
] = Flist (16, plist
);
10950 Fdefine_coding_system_internal (coding_arg_max
, args
);
10952 plist
[1] = args
[coding_arg_name
] = Qundecided
;
10953 plist
[3] = args
[coding_arg_mnemonic
] = make_number ('-');
10954 plist
[5] = args
[coding_arg_coding_type
] = Qundecided
;
10955 /* This is already set.
10956 plist[7] = args[coding_arg_ascii_compatible_p] = Qt; */
10957 plist
[8] = intern_c_string (":charset-list");
10958 plist
[9] = args
[coding_arg_charset_list
] = Fcons (Qascii
, Qnil
);
10959 plist
[11] = args
[coding_arg_for_unibyte
] = Qnil
;
10960 plist
[13] = make_pure_c_string ("No conversion on encoding, automatic conversion on decoding.");
10961 plist
[15] = args
[coding_arg_eol_type
] = Qnil
;
10962 args
[coding_arg_plist
] = Flist (16, plist
);
10963 Fdefine_coding_system_internal (coding_arg_max
, args
);
10966 setup_coding_system (Qno_conversion
, &safe_terminal_coding
);
10971 for (i
= 0; i
< coding_category_max
; i
++)
10972 Fset (AREF (Vcoding_category_table
, i
), Qno_conversion
);
10974 #if defined (MSDOS) || defined (WINDOWSNT)
10975 system_eol_type
= Qdos
;
10977 system_eol_type
= Qunix
;
10979 staticpro (&system_eol_type
);
10983 emacs_strerror (error_number
)
10988 synchronize_system_messages_locale ();
10989 str
= strerror (error_number
);
10991 if (! NILP (Vlocale_coding_system
))
10993 Lisp_Object dec
= code_convert_string_norecord (build_string (str
),
10994 Vlocale_coding_system
,
10996 str
= (char *) SDATA (dec
);
11004 /* arch-tag: 3a3a2b01-5ff6-4071-9afe-f5b808d9229d
11005 (do not change this comment) */