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view lisp/mule/lao-util.el @ 4477:e34711681f30
Don't determine whether to call general device-type code at startup,
rather decide in the device-specific code itself.
lisp/ChangeLog addition:
2008-07-07 Aidan Kehoe <kehoea@parhasard.net>
Patch to make it up to the device-specific code whether
various Lisp functions should be called during device creation,
not relying on the startup code to decide this. Also, rename
initial-window-system to initial-device-type (which makes more
sense in this scheme), always set it.
* startup.el (command-line):
Use initial-device-type, not initial-window-system; just call
#'make-device, leave the special behaviour to be done the first
time a console type is initialised to be decided on by the
respective console code.
* x-init.el (x-app-defaults-directory): Declare that it should be
bound.
(x-define-dead-key): Have the macro take a DEVICE argument.
(x-initialize-compose): Have the function take a DEVICE argument,
and use it when checking if various keysyms are available on the
keyboard.
(x-initialize-keyboard): Have the function take a DEVICE argument,
allowing device-specific keyboard initialisation.
(make-device-early-x-entry-point-called-p): New.
(make-device-late-x-entry-point-called-p): New. Rename
pre-x-win-initted, x-win-initted.
(make-device-early-x-entry-point): Rename init-pre-x-win, take the
call to make-x-device out (it should be called from the
device-creation code, not vice-versa).
(make-device-late-x-entry-point): Rename init-post-x-win, have it
take a DEVICE argument, use that DEVICE argument when working out
what device-specific things need doing. Don't use
create-console-hook in core code.
* x-win-xfree86.el (x-win-init-xfree86): Take a DEVICE argument;
use it.
* x-win-sun.el (x-win-init-sun): Take a DEVICE argument; use it.
* mule/mule-x-init.el: Remove #'init-mule-x-win, an empty
function.
* tty-init.el (make-device-early-tty-entry-point-called-p): New.
Rename pre-tty-win-initted.
(make-device-early-tty-entry-point): New.
Rename init-pre-tty-win.
(make-frame-after-init-entry-point): New.
Rename init-post-tty-win to better reflect when it's called.
* gtk-init.el (gtk-early-lisp-options-file): New.
Move this path to a documented variable.
(gtk-command-switch-alist): Wrap the docstring to fewer than 79
columns.
(make-device-early-gtk-entry-point-called-p): New.
(make-device-late-gtk-entry-point-called-p): New.
Renamed gtk-pre-win-initted, gtk-post-win-initted to these.
(make-device-early-gtk-entry-point): New.
(make-device-late-gtk-entry-point): New.
Renamed init-pre-gtk-win, init-post-gtk-win to these.
Have make-device-late-gtk-entry-point take a device argument, and use
it; have make-device-early-gtk-entry-point load the GTK-specific
startup code, instead of doing that in C.
(init-gtk-win): Deleted, functionality moved to the GTK device
creation code.
(gtk-define-dead-key): Have it take a DEVICE argument; use this
argument.
(gtk-initialize-compose): Ditto.
* coding.el (set-terminal-coding-system):
Correct the docstring; the function isn't broken.
src/ChangeLog addition:
2008-07-07 Aidan Kehoe <kehoea@parhasard.net>
Patch to make it up to the device-specific code whether
various Lisp functions should be called during device creation,
not relying on the startup code to decide this. Also, rename
initial-window-system to initial-device-type (which makes more
sense in this scheme), always set it.
* redisplay.c (Vinitial_device_type): New.
(Vinitial_window_system): Removed.
Rename initial-window-system to initial-device type, making it
a stream if we're noninteractive. Update its docstring.
* device-x.c (Qmake_device_early_x_entry_point,
Qmake_device_late_x_entry_point): New.
Rename Qinit_pre_x_win, Qinit_post_x_win.
(x_init_device): Call #'make-device-early-x-entry-point earlier,
now we rely on it to find the application class and the
app-defaults directory.
(x_finish_init_device): Call #'make-device-late-x-entry-point with
the created device.
(Vx_app_defaults_directory): Always make this available, to
simplify code in x-init.el.
* device-tty.c (Qmake_device_early_tty_entry_point): New.
Rename Qinit_pre_tty_win, rename Qinit_post_tty_win and move to
frame-tty.c as Qmake_frame_after_init_entry_point.
(tty_init_device): Call #'make-device-early-tty-entry-point before
doing anything.
* frame-tty.c (Qmake_frame_after_init_entry_point): New.
* frame-tty.c (tty_after_init_frame): Have it call the
better-named #'make-frame-after-init-entry-point function
instead of #'init-post-tty-win (since it's called after frame, not
device, creation).
* device-msw.c (Qmake_device_early_mswindows_entry_point,
Qmake_device_late_mswindows_entry_point): New.
Rename Qinit_pre_mswindows_win, Qinit_post_mswindows_win.
(mswindows_init_device): Call
#'make-device-early-mswindows-entry-point here, instead of having
its predecessor call us.
(mswindows_finish_init_device): Call
#'make-device-early-mswindows-entry-point, for symmetry with the
other device types (though it's an empty function).
* device-gtk.c (Qmake_device_early_gtk_entry_point,
Qmake_device_late_gtk_entry_point): New.
Rename Qinit_pre_gtk_win, Qinit_post_gtk_win.
(gtk_init_device): Call #'make-device-early-gtk-entry-point; don't
load ~/.xemacs/gtk-options.el ourselves, leave that to lisp.
(gtk_finish_init_device): Call #'make-device-late-gtk-entry-point
with the created device as an argument.
author | Aidan Kehoe <kehoea@parhasard.net> |
---|---|
date | Wed, 09 Jul 2008 20:46:22 +0200 |
parents | 72d64d886449 |
children | 3889ef128488 308d34e9f07d |
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;;; lao-util.el --- utilities for Lao -*- coding: iso-2022-7bit; -*- ;; Copyright (C) 1997 Electrotechnical Laboratory, JAPAN. ;; Licensed to the Free Software Foundation. ;; Keywords: multilingual, Lao ;; This file is part of XEmacs. ;; XEmacs is free software; you can redistribute it and/or modify it ;; under the terms of the GNU General Public License as published by ;; the Free Software Foundation; either version 2, or (at your option) ;; any later version. ;; XEmacs is distributed in the hope that it will be useful, but ;; WITHOUT ANY WARRANTY; without even the implied warranty of ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU ;; General Public License for more details. ;; You should have received a copy of the GNU General Public License ;; along with XEmacs; see the file COPYING. If not, write to the Free ;; Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA ;; 02111-1307, USA. ;;; Synched up with: Emacs 21.1 (language/lao-util.el). ;;; Commentary: ;;; Code: ;; Setting information of Thai characters. (defconst lao-category-table (make-category-table)) (define-category ?c "Lao consonant" lao-category-table) (define-category ?s "Lao semi-vowel" lao-category-table) (define-category ?v "Lao upper/lower vowel" lao-category-table) (define-category ?t "Lao tone" lao-category-table) (let ((l '((?(1!(B consonant "LETTER KOR KAI'" "CHICKEN") (?(1"(B consonant "LETTER KHOR KHAI'" "EGG") (?(1#(B invalid nil) (?(1$(B consonant "LETTER QHOR QHWARGN" "BUFFALO") (?(1%(B invalid nil) (? invalid nil) (?(1'(B consonant "LETTER NGOR NGUU" "SNAKE") (?(1((B consonant "LETTER JOR JUA" "BUDDHIST NOVICE") (?(1)(B invalid nil) (?(1*(B consonant "LETTER XOR X\"ARNG" "ELEPHANT") (?(1+(B invalid nil) (?(1,(B invalid nil) (?(1-(B consonant "LETTER YOR YUNG" "MOSQUITO") (?(1.(B invalid nil) (?(1.(B invalid nil) (?(1.(B invalid nil) (?(1.(B invalid nil) (?(1.(B invalid nil) (?(1.(B invalid nil) (?(14(B consonant "LETTER DOR DANG" "NOSE") (?(15(B consonant "LETTER TOR TAR" "EYE") (?(16(B consonant "LETTER THOR THUNG" "TO ASK,QUESTION") (?(17(B consonant "LETTER DHOR DHARM" "FLAG") (?(18(B invalid nil) (?(19(B consonant "LETTER NOR NOK" "BIRD") (?(1:(B consonant "LETTER BOR BED" "FISHHOOK") (?(1;(B consonant "LETTER POR PAR" "FISH") (?(1<(B consonant "LETTER HPOR HPER\"" "BEE") (?(1=(B consonant "LETTER FHOR FHAR" "WALL") (?(1>(B consonant "LETTER PHOR PHUU" "MOUNTAIN") (?(1?(B consonant "LETTER FOR FAI" "FIRE") (?(1@(B invalid nil) (?(1A(B consonant "LETTER MOR MAR\"" "HORSE") (?(1B(B consonant "LETTER GNOR GNAR" "MEDICINE") (?(1C(B consonant "LETTER ROR ROD" "CAR") (?(1D(B invalid nil) (?(1E(B consonant "LETTER LOR LIING" "MONKEY") (?(1F(B invalid nil) (?(1G(B consonant "LETTER WOR WII" "HAND FAN") (?(1H(B invalid nil) (?(1I(B invalid nil) (?(1J(B consonant "LETTER SOR SEA" "TIGER") (?(1K(B consonant "LETTER HHOR HHAI" "JAR") (?(1L(B invalid nil) (?(1M(B consonant "LETTER OR OOW" "TAKE") (?(1N(B consonant "LETTER HOR HEA" "BOAT") (?(1O(B special "ELLIPSIS") (?(1P(B vowel-base "VOWEL SIGN SARA A") (?(1Q(B vowel-upper "VOWEL SIGN MAI KAN") (?(1R(B vowel-base "VOWEL SIGN SARA AR") (?(1S(B vowel-base "VOWEL SIGN SARA AM") (?(1T(B vowel-upper "VOWEL SIGN SARA I") (?(1U(B vowel-upper "VOWEL SIGN SARA II") (?(1V(B vowel-upper "VOWEL SIGN SARA EU") (?(1W(B vowel-upper "VOWEL SIGN SARA UR") (?(1X(B vowel-lower "VOWEL SIGN SARA U") (?(1Y(B vowel-lower "VOWEL SIGN SARA UU") (?(1Z(B invalid nil) (?(1[(B vowel-upper "VOWEL SIGN MAI KONG") (?(1\(B semivowel-lower "SEMIVOWEL SIGN LO") (?(1](B vowel-base "SEMIVOWEL SIGN SARA IA") (?(1^(B invalid nil) (?(1_(B invalid nil) (?(1`(B vowel-base "VOWEL SIGN SARA EE") (?(1a(B vowel-base "VOWEL SIGN SARA AA") (?(1b(B vowel-base "VOWEL SIGN SARA OO") (?(1c(B vowel-base "VOWEL SIGN SARA EI MAI MUAN\"") (?(1d(B vowel-base "VOWEL SIGN SARA AI MAI MAY") (?(1e(B invalid nil) (?(1f(B special "KO LA (REPETITION)") (?(1g(B invalid nil) (?(1h(B tone "TONE MAI EK") (?(1i(B tone "TONE MAI THO") (?(1j(B tone "TONE MAI TI") (?(1k(B tone "TONE MAI JADTAWAR") (?(1l(B tone "CANCELLATION MARK") (?(1m(B vowel-upper "VOWEL SIGN SARA OR") (?(1n(B invalid nil) (?(1o(B invalid nil) (?(1p(B special "DIGIT ZERO") (?(1q(B special "DIGIT ONE") (?(1r(B special "DIGIT TWO") (?(1s(B special "DIGIT THREE") (?(1t(B special "DIGIT FOUR") (?(1u(B special "DIGIT FIVE") (?(1v(B special "DIGIT SIX") (?(1w(B special "DIGIT SEVEN") (?(1x(B special "DIGIT EIGHT") (?(1y(B special "DIGIT NINE") (?(1z(B invalid nil) (?(1{(B invalid nil) (?(1|(B consonant "LETTER NHOR NHUU" "MOUSE") (?(1}(B consonant "LETTER MHOR MHAR" "DOG") (?(1~(B invalid nil) )) elm) (while l (setq elm (car l) l (cdr l)) (let ((char (car elm)) (ptype (nth 1 elm))) (cond ((eq ptype 'consonant) (modify-category-entry char ?c lao-category-table)) ((memq ptype '(vowel-upper vowel-lower)) (modify-category-entry char ?v lao-category-table)) ((eq ptype 'semivowel-lower) (modify-category-entry char ?s lao-category-table)) ((eq ptype 'tone) (modify-category-entry char ?t lao-category-table))) (put-char-code-property char 'phonetic-type ptype) (put-char-code-property char 'name (nth 2 elm)) (put-char-code-property char 'meaning (nth 3 elm))))) ;; The general composing rules are as follows: ;; ;; T ;; V T V T ;; CV -> C, CT -> C, CVT -> C, Cv -> C, CvT -> C ;; v v ;; T ;; V T V T ;; CsV -> C, CsT -> C, CsVT -> C, Csv -> C, CvT -> C ;; s s s s s ;; v v ;; where C: consonant, V: vowel upper, v: vowel lower, ;; T: tone mark, s: semivowel lower (defvar lao-composition-pattern "\\cc\\(\\ct\\|\\cv\\ct?\\|\\cs\\(\\ct\\|\\cv\\ct?\\)?\\)" "Regular expression matching a Lao composite sequence.") ;;;###autoload (defun lao-compose-string (str) (with-category-table lao-category-table (let ((idx 0)) (while (setq idx (string-match lao-composition-pattern str idx)) (compose-string str idx (match-end 0)) (setq idx (match-end 0)))) str)) ;;; LRT: Lao <-> Roman Transcription ;; Upper vowels and tone-marks are put on the letter. ;; Semi-vowel-sign-lo and lower vowels are put under the letter. (defconst lao-transcription-consonant-alist (sort '(;; single consonants ("k" . "(1!(B") ("kh" . "(1"(B") ("qh" . "(1$(B") ("ng" . "(1'(B") ("j" . "(1((B") ("s" . "(1J(B") ("x" . "(1*(B") ("y" . "(1-(B") ("d" . "(14(B") ("t" . "(15(B") ("th" . "(16(B") ("dh" . "(17(B") ("n" . "(19(B") ("b" . "(1:(B") ("p" . "(1;(B") ("hp" . "(1<(B") ("fh" . "(1=(B") ("ph" . "(1>(B") ("f" . "(1?(B") ("m" . "(1A(B") ("gn" . "(1B(B") ("l" . "(1E(B") ("r" . "(1C(B") ("v" . "(1G(B") ("w" . "(1G(B") ("hh" . "(1K(B") ("O" . "(1M(B") ("h" . "(1N(B") ("nh" . "(1|(B") ("mh" . "(1}(B") ("lh" . ["(1K\(B"]) ;; double consonants ("ngh" . ["(1K'(B"]) ("yh" . ["(1K](B"]) ("wh" . ["(1KG(B"]) ("hl" . ["(1KE(B"]) ("hy" . ["(1K-(B"]) ("hn" . ["(1K9(B"]) ("hm" . ["(1KA(B"]) ) (function (lambda (x y) (> (length (car x)) (length (car y))))))) (defconst lao-transcription-semi-vowel-alist '(("r" . "(1\(B"))) (defconst lao-transcription-vowel-alist (sort '(("a" . "(1P(B") ("ar" . "(1R(B") ("i" . "(1T(B") ("ii" . "(1U(B") ("eu" . "(1V(B") ("ur" . "(1W(B") ("u" . "(1X(B") ("uu" . "(1Y(B") ("e" . ["(1`P(B"]) ("ee" . "(1`(B") ("ae" . ["(1aP(B"]) ("aa" . "(1a(B") ("o" . ["(1bP(B"]) ("oo" . "(1b(B") ("oe" . ["(1`RP(B"]) ("or" . "(1m(B") ("er" . ["(1`T(B"]) ("ir" . ["(1`U(B"]) ("ua" . ["(1[GP(B"]) ("uaa" . ["(1[G(B"]) ("ie" . ["(1`Q]P(B"]) ("ia" . ["(1`Q](B"]) ("ea" . ["(1`VM(B"]) ("eaa" . ["(1`WM(B"]) ("ai" . "(1d(B") ("ei" . "(1c(B") ("ao" . ["(1`[R(B"]) ("aM" . "(1S(B")) (function (lambda (x y) (> (length (car x)) (length (car y))))))) ;; Maa-sakod is put at the tail. (defconst lao-transcription-maa-sakod-alist '(("k" . "(1!(B") ("g" . "(1'(B") ("y" . "(1-(B") ("d" . "(14(B") ("n" . "(19(B") ("b" . "(1:(B") ("m" . "(1A(B") ("v" . "(1G(B") ("w" . "(1G(B") )) (defconst lao-transcription-tone-alist '(("'" . "(1h(B") ("\"" . "(1i(B") ("^" . "(1j(B") ("+" . "(1k(B") ("~" . "(1l(B"))) (defconst lao-transcription-punctuation-alist '(("\\0" . "(1p(B") ("\\1" . "(1q(B") ("\\2" . "(1r(B") ("\\3" . "(1s(B") ("\\4" . "(1t(B") ("\\5" . "(1u(B") ("\\6" . "(1v(B") ("\\7" . "(1w(B") ("\\8" . "(1x(B") ("\\9" . "(1y(B") ("\\\\" . "(1f(B") ("\\$" . "(1O(B"))) (defconst lao-transcription-pattern (concat "\\(" (mapconcat 'car lao-transcription-consonant-alist "\\|") "\\)\\(" (mapconcat 'car lao-transcription-semi-vowel-alist "\\|") "\\)?\\(\\(" (mapconcat 'car lao-transcription-vowel-alist "\\|") "\\)\\(" (mapconcat 'car lao-transcription-maa-sakod-alist "\\|") "\\)?\\(" (mapconcat (lambda (x) (regexp-quote (car x))) lao-transcription-tone-alist "\\|") "\\)?\\)?\\|" (mapconcat (lambda (x) (regexp-quote (car x))) lao-transcription-punctuation-alist "\\|") ) "Regexp of Roman transcription pattern for one Lao syllable.") ;; regexp-opt is in packages... ;(defconst lao-transcription-pattern ; (concat ; "\\(" ; (regexp-opt (mapcar 'car lao-transcription-consonant-alist)) ; "\\)\\(" ; (regexp-opt (mapcar 'car lao-transcription-semi-vowel-alist)) ; "\\)?\\(\\(" ; (regexp-opt (mapcar 'car lao-transcription-vowel-alist)) ; "\\)\\(" ; (regexp-opt (mapcar 'car lao-transcription-maa-sakod-alist)) ; "\\)?\\(" ; (regexp-opt (mapcar 'car lao-transcription-tone-alist)) ; "\\)?\\)?\\|" ; (regexp-opt (mapcar 'car lao-transcription-punctuation-alist)) ; ) ; "Regexp of Roman transcription pattern for one Lao syllable.") (defconst lao-vowel-reordering-rule '(("(1P(B" (0 ?(1P(B) (0 ?(1Q(B)) ("(1R(B" (0 ?(1R(B)) ("(1T(B" (0 ?(1U(B)) ("(1U(B" (0 ?(1U(B)) ("(1V(B" (0 ?(1V(B)) ("(1W(B" (0 ?(1W(B)) ("(1X(B" (0 ?(1X(B)) ("(1Y(B" (0 ?(1Y(B)) ("(1`P(B" (?(1`(B 0 ?(1P(B) (?(1`(B 0 ?(1Q(B)) ("(1`(B" (?(1`(B 0)) ("(1aP(B" (?(1a(B 0 ?(1P(B) (?(1a(B 0 ?(1Q(B)) ("(1a(B" (?(1a(B 0)) ("(1bP(B" (?(1b(B 0 ?(1P(B) (0 ?(1[(B) (?(1-(B ?(1b(B 0 ?(1Q(B) (?(1G(B ?(1b(B 0 ?(1Q(B)) ("(1b(B" (?(1b(B 0)) ("(1`RP(B" (?(1`(B 0 ?(1R(B ?(1P(B) (0 ?(1Q(B ?(1M(B)) ("(1m(B" (0 ?(1m(B) (0 ?(1M(B)) ("(1`T(B" (?(1`(B 0 ?(1T(B)) ("(1`U(B" (?(1`(B 0 ?(1U(B)) ("(1[GP(B" (0 ?(1[(B ?(1G(B ?(1P(B) (0 ?(1Q(B ?(1G(B)) ("(1[G(B" (0 ?(1[(B ?(1G(B) (0 ?(1G(B)) ("(1`Q]P(B" (?(1`(B 0 ?(1Q(B ?(1](B ?(1P(B) (0 ?(1Q(B ?(1](B)) ("(1`Q](B" (?(1`(B 0 ?(1Q(B ?(1](B) (0 ?(1](B)) ("(1`VM(B" (?(1`(B 0 ?(1V(B ?(1M(B)) ("(1`WM(B" (?(1`(B 0 ?(1W(B ?(1M(B)) ("(1d(B" (?(1d(B 0)) ("(1c(B" (?(1c(B 0)) ("(1`[R(B" (?(1`(B 0 ?(1[(B ?(1R(B)) ("(1S(B" (0 ?(1S(B))) "Alist of Lao vowel string vs the corresponding re-ordering rule. Each element has this form: (VOWEL NO-MAA-SAKOD-RULE WITH-MAA-SAKOD-RULE (MAA-SAKOD-0 RULE-0) ...) VOWEL is a vowel string (e.g. \"(1`Q]P(B\"). NO-MAA-SAKOD-RULE is a rule to re-order and modify VOWEL following a consonant. It is a list vowel characters or 0. The element 0 indicate the place to embed a consonant. Optional WITH-MAA-SAKOD-RULE is a rule to re-order and modify VOWEL follwoing a consonant and preceding a maa-sakod character. If it is nil, NO-MAA-SAKOD-RULE is used. The maa-sakod character is alwasy appended at the tail. For instance, rule `(\"(1`WM(B\" (?(1`(B t ?(1W(B ?(1M(B))' tells that this vowel string following a consonant `(1!(B' should be re-ordered as \"(1`!WM(B\". Optional (MAA-SAKOD-n RULE-n) are rules specially applied to maa-sakod character MAA-SAKOD-n.") ;;;###autoload (defun lao-transcribe-single-roman-syllable-to-lao (from to &optional str) "Transcribe a Romanized Lao syllable in the region FROM and TO to Lao string. Only the first syllable is transcribed. The value has the form: (START END LAO-STRING), where START and END are the beggining and end positions of the Roman Lao syllable, LAO-STRING is the Lao character transcription of it. Optional 3rd arg STR, if non-nil, is a string to search for Roman Lao syllable. In that case, FROM and TO are indexes to STR." (if str (if (setq from (string-match lao-transcription-pattern str from)) (progn (if (>= from to) (setq from nil) (setq to (match-end 0))))) (save-excursion (goto-char from) (if (setq to (re-search-forward lao-transcription-pattern to t)) (setq from (match-beginning 0)) (setq from nil)))) (if from (let* ((consonant (match-string 1 str)) (semivowel (match-string 3 str)) (vowel (match-string 5 str)) (maa-sakod (match-string 8 str)) (tone (match-string 9 str)) lao-consonant lao-semivowel lao-vowel lao-maa-sakod lao-tone clen cidx) (setq to (match-end 0)) (if (not consonant) (setq str (cdr (assoc (match-string 0 str) lao-transcription-punctuation-alist))) (setq lao-consonant (cdr (assoc consonant lao-transcription-consonant-alist))) (if (vectorp lao-consonant) (setq lao-consonant (aref lao-consonant 0))) (setq clen (length lao-consonant)) (if semivowel ;; Include semivowel in STR. (setq lao-semivowel (cdr (assoc semivowel lao-transcription-semi-vowel-alist)) str (if (= clen 1) (concat lao-consonant lao-semivowel) (concat (substring lao-consonant 0 1) lao-semivowel (substring lao-consonant 1)))) (setq str lao-consonant)) (if vowel (let (rule) (setq lao-vowel (cdr (assoc vowel lao-transcription-vowel-alist))) (if (vectorp lao-vowel) (setq lao-vowel (aref lao-vowel 0))) (setq rule (assoc lao-vowel lao-vowel-reordering-rule)) (if (null maa-sakod) (setq rule (nth 1 rule)) (setq lao-maa-sakod (cdr (assoc maa-sakod lao-transcription-maa-sakod-alist)) rule (or (cdr (assq (aref lao-maa-sakod 0) (nthcdr 2 rule))) (nth 2 rule) (nth 1 rule)))) (or rule (error "Lao vowel %S has no re-ordering rule" lao-vowel)) (setq lao-consonant str str "") (while rule (if (= (car rule) 0) (setq str (concat str lao-consonant) cidx (length str)) (setq str (concat str (list (car rule))))) (setq rule (cdr rule))) (or cidx (error "Lao vowel %S has malformed re-ordering rule" vowel)) ;; Set CIDX to after upper or lower vowel if any. (let ((len (length str))) (while (and (< cidx len) (memq (get-char-code-property (aref str cidx) 'phonetic-type) '(vowel-lower vowel-upper))) (setq cidx (1+ cidx)))) (if lao-maa-sakod (setq str (concat str lao-maa-sakod))) (if tone (setq lao-tone (cdr (assoc tone lao-transcription-tone-alist)) str (concat (substring str 0 cidx) lao-tone (substring str cidx))))))) (list from to (lao-compose-string str))))) ;;;###autoload (defun lao-transcribe-roman-to-lao-string (str) "Transcribe Romanized Lao string STR to Lao character string." (let ((from 0) (to (length str)) (lao-str "") val) (while (setq val (lao-transcribe-single-roman-syllable-to-lao from to str)) (let ((start (car val)) (end (nth 1 val)) (lao (nth 2 val))) (if (> start from) (setq lao-str (concat lao-str (substring str from start) lao)) (setq lao-str (concat lao-str lao))) (setq from end))) (if (< from to) (concat lao-str (substring str from to)) lao-str))) ;;;###autoload (defun lao-composition-function (from to pattern &optional string) "Compose Lao text in the region FROM and TO. The text matches the regular expression PATTERN. Optional 4th argument STRING, if non-nil, is a string containing text to compose. The return value is number of composed characters." (if (< (1+ from) to) (prog1 (- to from) (if string (compose-string string from to) (compose-region from to)) (- to from)))) ;;;###autoload (defun lao-compose-region (from to) (interactive "r") (save-restriction (narrow-to-region from to) (goto-char (point-min)) (with-category-table lao-category-table (while (re-search-forward lao-composition-pattern nil t) (compose-region (match-beginning 0) (point)))))) ;; (provide 'lao-util) ;;; lao-util.el ends here