eSpeak NG is an open source speech synthesizer that supports more than hundred languages and accents.
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translate.cpp 92KB

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  1. /***************************************************************************
  2. * Copyright (C) 2005 to 2013 by Jonathan Duddington *
  3. * email: [email protected] *
  4. * *
  5. * This program is free software; you can redistribute it and/or modify *
  6. * it under the terms of the GNU General Public License as published by *
  7. * the Free Software Foundation; either version 3 of the License, or *
  8. * (at your option) any later version. *
  9. * *
  10. * This program is distributed in the hope that it will be useful, *
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of *
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
  13. * GNU General Public License for more details. *
  14. * *
  15. * You should have received a copy of the GNU General Public License *
  16. * along with this program; if not, see: *
  17. * <http://www.gnu.org/licenses/>. *
  18. ***************************************************************************/
  19. #include "StdAfx.h"
  20. #include <stdio.h>
  21. #include <ctype.h>
  22. #include <stdlib.h>
  23. #include <string.h>
  24. #include <wctype.h>
  25. #include <wchar.h>
  26. #include "speak_lib.h"
  27. #include "speech.h"
  28. #include "phoneme.h"
  29. #include "synthesize.h"
  30. #include "voice.h"
  31. #include "translate.h"
  32. #define WORD_STRESS_CHAR '*'
  33. Translator *translator = NULL; // the main translator
  34. Translator *translator2 = NULL; // secondary translator for certain words
  35. static char translator2_language[20] = {0};
  36. FILE *f_trans = NULL; // phoneme output text
  37. int option_tone2 = 0;
  38. int option_tone_flags = 0; // bit 8=emphasize allcaps, bit 9=emphasize penultimate stress
  39. int option_phonemes = 0;
  40. int option_phoneme_events = 0;
  41. int option_quiet = 0;
  42. int option_endpause = 0; // suppress pause after end of text
  43. int option_capitals = 0;
  44. int option_punctuation = 0;
  45. int option_sayas = 0;
  46. static int option_sayas2 = 0; // used in translate_clause()
  47. static int option_emphasis = 0; // 0=normal, 1=normal, 2=weak, 3=moderate, 4=strong
  48. int option_ssml = 0;
  49. int option_phoneme_input = 0; // allow [[phonemes]] in input
  50. int option_phoneme_variants = 0; // 0= don't display phoneme variant mnemonics
  51. int option_wordgap = 0;
  52. static int count_sayas_digits;
  53. int skip_sentences;
  54. int skip_words;
  55. int skip_characters;
  56. char skip_marker[N_MARKER_LENGTH];
  57. int skipping_text; // waiting until word count, sentence count, or named marker is reached
  58. int end_character_position;
  59. int count_sentences;
  60. int count_words;
  61. int clause_start_char;
  62. int clause_start_word;
  63. int new_sentence;
  64. static int word_emphasis = 0; // set if emphasis level 3 or 4
  65. static int embedded_flag = 0; // there are embedded commands to be applied to the next phoneme, used in TranslateWord2()
  66. static int prev_clause_pause=0;
  67. static int max_clause_pause = 0;
  68. static int any_stressed_words;
  69. int pre_pause;
  70. ALPHABET *current_alphabet;
  71. // these were previously in translator class
  72. #ifdef PLATFORM_WINDOWS
  73. char word_phonemes[N_WORD_PHONEMES*2]; // longer, because snprint() is not available
  74. #else
  75. char word_phonemes[N_WORD_PHONEMES]; // a word translated into phoneme codes
  76. #endif
  77. int n_ph_list2;
  78. PHONEME_LIST2 ph_list2[N_PHONEME_LIST]; // first stage of text->phonemes
  79. wchar_t option_punctlist[N_PUNCTLIST]= {0};
  80. char ctrl_embedded = '\001'; // to allow an alternative CTRL for embedded commands
  81. int option_multibyte=espeakCHARS_AUTO; // 0=auto, 1=utf8, 2=8bit, 3=wchar, 4=16bit
  82. // these are overridden by defaults set in the "speak" file
  83. int option_linelength = 0;
  84. #define N_EMBEDDED_LIST 250
  85. static int embedded_ix;
  86. static int embedded_read;
  87. unsigned int embedded_list[N_EMBEDDED_LIST];
  88. // the source text of a single clause (UTF8 bytes)
  89. #define N_TR_SOURCE 800
  90. static char source[N_TR_SOURCE+40]; // extra space for embedded command & voice change info at end
  91. int n_replace_phonemes;
  92. REPLACE_PHONEMES replace_phonemes[N_REPLACE_PHONEMES];
  93. // brackets, also 0x2014 to 0x021f which don't need to be in this list
  94. static const unsigned short brackets[] = {
  95. '(',')','[',']','{','}','<','>','"','\'','`',
  96. 0xab,0xbb, // double angle brackets
  97. 0x300a,0x300b, // double angle brackets (ideograph)
  98. 0xe000+'<', // private usage area
  99. 0
  100. };
  101. // other characters which break a word, but don't produce a pause
  102. static const unsigned short breaks[] = {'_', 0};
  103. // treat these characters as spaces, in addition to iswspace()
  104. // static const wchar_t chars_space[] = {0x2500,0x2501,0}; // box drawing horiz
  105. // Translate character codes 0xA0 to 0xFF into their unicode values
  106. // ISO_8859_1 is set as default
  107. static const unsigned short ISO_8859_1[0x60] = {
  108. 0x00a0, 0x00a1, 0x00a2, 0x00a3, 0x00a4, 0x00a5, 0x00a6, 0x00a7, // a0
  109. 0x00a8, 0x00a9, 0x00aa, 0x00ab, 0x00ac, 0x00ad, 0x00ae, 0x00af, // a8
  110. 0x00b0, 0x00b1, 0x00b2, 0x00b3, 0x00b4, 0x00b5, 0x00b6, 0x00b7, // b0
  111. 0x00b8, 0x00b9, 0x00ba, 0x00bb, 0x00bc, 0x00bd, 0x00be, 0x00bf, // b8
  112. 0x00c0, 0x00c1, 0x00c2, 0x00c3, 0x00c4, 0x00c5, 0x00c6, 0x00c7, // c0
  113. 0x00c8, 0x00c9, 0x00ca, 0x00cb, 0x00cc, 0x00cd, 0x00ce, 0x00cf, // c8
  114. 0x00d0, 0x00d1, 0x00d2, 0x00d3, 0x00d4, 0x00d5, 0x00d6, 0x00d7, // d0
  115. 0x00d8, 0x00d9, 0x00da, 0x00db, 0x00dc, 0x00dd, 0x00de, 0x00df, // d8
  116. 0x00e0, 0x00e1, 0x00e2, 0x00e3, 0x00e4, 0x00e5, 0x00e6, 0x00e7, // e0
  117. 0x00e8, 0x00e9, 0x00ea, 0x00eb, 0x00ec, 0x00ed, 0x00ee, 0x00ef, // e8
  118. 0x00f0, 0x00f1, 0x00f2, 0x00f3, 0x00f4, 0x00f5, 0x00f6, 0x00f7, // f0
  119. 0x00f8, 0x00f9, 0x00fa, 0x00fb, 0x00fc, 0x00fd, 0x00fe, 0x00ff, // f8
  120. };
  121. static const unsigned short ISO_8859_2[0x60] = {
  122. 0x00a0, 0x0104, 0x02d8, 0x0141, 0x00a4, 0x013d, 0x015a, 0x00a7, // a0
  123. 0x00a8, 0x0160, 0x015e, 0x0164, 0x0179, 0x00ad, 0x017d, 0x017b, // a8
  124. 0x00b0, 0x0105, 0x02db, 0x0142, 0x00b4, 0x013e, 0x015b, 0x02c7, // b0
  125. 0x00b8, 0x0161, 0x015f, 0x0165, 0x017a, 0x02dd, 0x017e, 0x017c, // b8
  126. 0x0154, 0x00c1, 0x00c2, 0x0102, 0x00c4, 0x0139, 0x0106, 0x00c7, // c0
  127. 0x010c, 0x00c9, 0x0118, 0x00cb, 0x011a, 0x00cd, 0x00ce, 0x010e, // c8
  128. 0x0110, 0x0143, 0x0147, 0x00d3, 0x00d4, 0x0150, 0x00d6, 0x00d7, // d0
  129. 0x0158, 0x016e, 0x00da, 0x0170, 0x00dc, 0x00dd, 0x0162, 0x00df, // d8
  130. 0x0155, 0x00e1, 0x00e2, 0x0103, 0x00e4, 0x013a, 0x0107, 0x00e7, // e0
  131. 0x010d, 0x00e9, 0x0119, 0x00eb, 0x011b, 0x00ed, 0x00ee, 0x010f, // e8
  132. 0x0111, 0x0144, 0x0148, 0x00f3, 0x00f4, 0x0151, 0x00f6, 0x00f7, // f0
  133. 0x0159, 0x016f, 0x00fa, 0x0171, 0x00fc, 0x00fd, 0x0163, 0x02d9, // f8
  134. };
  135. static const unsigned short ISO_8859_3[0x60] = {
  136. 0x00a0, 0x0126, 0x02d8, 0x00a3, 0x00a4, 0x0000, 0x0124, 0x00a7, // a0
  137. 0x00a8, 0x0130, 0x015e, 0x011e, 0x0134, 0x00ad, 0x0000, 0x017b, // a8
  138. 0x00b0, 0x0127, 0x00b2, 0x00b3, 0x00b4, 0x00b5, 0x0125, 0x00b7, // b0
  139. 0x00b8, 0x0131, 0x015f, 0x011f, 0x0135, 0x00bd, 0x0000, 0x017c, // b8
  140. 0x00c0, 0x00c1, 0x00c2, 0x0000, 0x00c4, 0x010a, 0x0108, 0x00c7, // c0
  141. 0x00c8, 0x00c9, 0x00ca, 0x00cb, 0x00cc, 0x00cd, 0x00ce, 0x00cf, // c8
  142. 0x0000, 0x00d1, 0x00d2, 0x00d3, 0x00d4, 0x0120, 0x00d6, 0x00d7, // d0
  143. 0x011c, 0x00d9, 0x00da, 0x00db, 0x00dc, 0x016c, 0x015c, 0x00df, // d8
  144. 0x00e0, 0x00e1, 0x00e2, 0x0000, 0x00e4, 0x010b, 0x0109, 0x00e7, // e0
  145. 0x00e8, 0x00e9, 0x00ea, 0x00eb, 0x00ec, 0x00ed, 0x00ee, 0x00ef, // e8
  146. 0x0000, 0x00f1, 0x00f2, 0x00f3, 0x00f4, 0x0121, 0x00f6, 0x00f7, // f0
  147. 0x011d, 0x00f9, 0x00fa, 0x00fb, 0x00fc, 0x016d, 0x015d, 0x02d9, // f8
  148. };
  149. static const unsigned short ISO_8859_4[0x60] = {
  150. 0x00a0, 0x0104, 0x0138, 0x0156, 0x00a4, 0x0128, 0x013b, 0x00a7, // a0
  151. 0x00a8, 0x0160, 0x0112, 0x0122, 0x0166, 0x00ad, 0x017d, 0x00af, // a8
  152. 0x00b0, 0x0105, 0x02db, 0x0157, 0x00b4, 0x0129, 0x013c, 0x02c7, // b0
  153. 0x00b8, 0x0161, 0x0113, 0x0123, 0x0167, 0x014a, 0x017e, 0x014b, // b8
  154. 0x0100, 0x00c1, 0x00c2, 0x00c3, 0x00c4, 0x00c5, 0x00c6, 0x012e, // c0
  155. 0x010c, 0x00c9, 0x0118, 0x00cb, 0x0116, 0x00cd, 0x00ce, 0x012a, // c8
  156. 0x0110, 0x0145, 0x014c, 0x0136, 0x00d4, 0x00d5, 0x00d6, 0x00d7, // d0
  157. 0x00d8, 0x0172, 0x00da, 0x00db, 0x00dc, 0x0168, 0x016a, 0x00df, // d8
  158. 0x0101, 0x00e1, 0x00e2, 0x00e3, 0x00e4, 0x00e5, 0x00e6, 0x012f, // e0
  159. 0x010d, 0x00e9, 0x0119, 0x00eb, 0x0117, 0x00ed, 0x00ee, 0x012b, // e8
  160. 0x0111, 0x0146, 0x014d, 0x0137, 0x00f4, 0x00f5, 0x00f6, 0x00f7, // f0
  161. 0x00f8, 0x0173, 0x00fa, 0x00fb, 0x00fc, 0x0169, 0x016b, 0x02d9, // f8
  162. };
  163. static const unsigned short ISO_8859_5[0x60] = {
  164. 0x00a0, 0x0401, 0x0402, 0x0403, 0x0404, 0x0405, 0x0406, 0x0407, // a0 Cyrillic
  165. 0x0408, 0x0409, 0x040a, 0x040b, 0x040c, 0x00ad, 0x040e, 0x040f, // a8
  166. 0x0410, 0x0411, 0x0412, 0x0413, 0x0414, 0x0415, 0x0416, 0x0417, // b0
  167. 0x0418, 0x0419, 0x041a, 0x041b, 0x041c, 0x041d, 0x041e, 0x041f, // b8
  168. 0x0420, 0x0421, 0x0422, 0x0423, 0x0424, 0x0425, 0x0426, 0x0427, // c0
  169. 0x0428, 0x0429, 0x042a, 0x042b, 0x042c, 0x042d, 0x042e, 0x042f, // c8
  170. 0x0430, 0x0431, 0x0432, 0x0433, 0x0434, 0x0435, 0x0436, 0x0437, // d0
  171. 0x0438, 0x0439, 0x043a, 0x043b, 0x043c, 0x043d, 0x043e, 0x043f, // d8
  172. 0x0440, 0x0441, 0x0442, 0x0443, 0x0444, 0x0445, 0x0446, 0x0447, // e0
  173. 0x0448, 0x0449, 0x044a, 0x044b, 0x044c, 0x044d, 0x044e, 0x044f, // e8
  174. 0x2116, 0x0451, 0x0452, 0x0453, 0x0454, 0x0455, 0x0456, 0x0457, // f0
  175. 0x0458, 0x0459, 0x045a, 0x045b, 0x045c, 0x00a7, 0x045e, 0x045f, // f8
  176. };
  177. static const unsigned short ISO_8859_7[0x60] = {
  178. 0x00a0, 0x2018, 0x2019, 0x00a3, 0x20ac, 0x20af, 0x00a6, 0x00a7, // a0 Greek
  179. 0x00a8, 0x00a9, 0x037a, 0x00ab, 0x00ac, 0x00ad, 0x0000, 0x2015, // a8
  180. 0x00b0, 0x00b1, 0x00b2, 0x00b3, 0x0384, 0x0385, 0x0386, 0x00b7, // b0
  181. 0x0388, 0x0389, 0x038a, 0x00bb, 0x038c, 0x00bd, 0x038e, 0x038f, // b8
  182. 0x0390, 0x0391, 0x0392, 0x0393, 0x0394, 0x0395, 0x0396, 0x0397, // c0
  183. 0x0398, 0x0399, 0x039a, 0x039b, 0x039c, 0x039d, 0x039e, 0x039f, // c8
  184. 0x03a0, 0x03a1, 0x0000, 0x03a3, 0x03a4, 0x03a5, 0x03a6, 0x03a7, // d0
  185. 0x03a8, 0x03a9, 0x03aa, 0x03ab, 0x03ac, 0x03ad, 0x03ae, 0x03af, // d8
  186. 0x03b0, 0x03b1, 0x03b2, 0x03b3, 0x03b4, 0x03b5, 0x03b6, 0x03b7, // e0
  187. 0x03b8, 0x03b9, 0x03ba, 0x03bb, 0x03bc, 0x03bd, 0x03be, 0x03bf, // e8
  188. 0x03c0, 0x03c1, 0x03c2, 0x03c3, 0x03c4, 0x03c5, 0x03c6, 0x03c7, // f0
  189. 0x03c8, 0x03c9, 0x03ca, 0x03cb, 0x03cc, 0x03cd, 0x03ce, 0x0000, // f8
  190. };
  191. static const unsigned short ISO_8859_9[0x60] = {
  192. 0x00a0, 0x00a1, 0x00a2, 0x00a3, 0x00a4, 0x00a5, 0x00a6, 0x00a7, // a0
  193. 0x00a8, 0x00a9, 0x00aa, 0x00ab, 0x00ac, 0x00ad, 0x00ae, 0x00af, // a8
  194. 0x00b0, 0x00b1, 0x00b2, 0x00b3, 0x00b4, 0x00b5, 0x00b6, 0x00b7, // b0
  195. 0x00b8, 0x00b9, 0x00ba, 0x00bb, 0x00bc, 0x00bd, 0x00be, 0x00bf, // b8
  196. 0x00c0, 0x00c1, 0x00c2, 0x00c3, 0x00c4, 0x00c5, 0x00c6, 0x00c7, // c0
  197. 0x00c8, 0x00c9, 0x00ca, 0x00cb, 0x00cc, 0x00cd, 0x00ce, 0x00cf, // c8
  198. 0x011e, 0x00d1, 0x00d2, 0x00d3, 0x00d4, 0x00d5, 0x00d6, 0x00d7, // d0
  199. 0x00d8, 0x00d9, 0x00da, 0x00db, 0x00dc, 0x0130, 0x015e, 0x00df, // d8
  200. 0x00e0, 0x00e1, 0x00e2, 0x00e3, 0x00e4, 0x00e5, 0x00e6, 0x00e7, // e0
  201. 0x00e8, 0x00e9, 0x00ea, 0x00eb, 0x00ec, 0x00ed, 0x00ee, 0x00ef, // e8
  202. 0x011f, 0x00f1, 0x00f2, 0x00f3, 0x00f4, 0x00f5, 0x00f6, 0x00f7, // f0
  203. 0x00f8, 0x00f9, 0x00fa, 0x00fb, 0x00fc, 0x0131, 0x015f, 0x00ff, // f8
  204. };
  205. static const unsigned short ISO_8859_14[0x60] = {
  206. 0x00a0, 0x1e02, 0x1e03, 0x00a3, 0x010a, 0x010b, 0x1e0a, 0x00a7, // a0 Welsh
  207. 0x1e80, 0x00a9, 0x1e82, 0x1e0b, 0x1ef2, 0x00ad, 0x00ae, 0x0178, // a8
  208. 0x1e1e, 0x1e1f, 0x0120, 0x0121, 0x1e40, 0x1e41, 0x00b6, 0x1e56, // b0
  209. 0x1e81, 0x1e57, 0x1e83, 0x1e60, 0x1ef3, 0x1e84, 0x1e85, 0x1e61, // b8
  210. 0x00c0, 0x00c1, 0x00c2, 0x00c3, 0x00c4, 0x00c5, 0x00c6, 0x00c7, // c0
  211. 0x00c8, 0x00c9, 0x00ca, 0x00cb, 0x00cc, 0x00cd, 0x00ce, 0x00cf, // c8
  212. 0x0174, 0x00d1, 0x00d2, 0x00d3, 0x00d4, 0x00d5, 0x00d6, 0x1e6a, // d0
  213. 0x00d8, 0x00d9, 0x00da, 0x00db, 0x00dc, 0x00dd, 0x0176, 0x00df, // d8
  214. 0x00e0, 0x00e1, 0x00e2, 0x00e3, 0x00e4, 0x00e5, 0x00e6, 0x00e7, // e0
  215. 0x00e8, 0x00e9, 0x00ea, 0x00eb, 0x00ec, 0x00ed, 0x00ee, 0x00ef, // e8
  216. 0x0175, 0x00f1, 0x00f2, 0x00f3, 0x00f4, 0x00f5, 0x00f6, 0x1e6b, // f0
  217. 0x00f8, 0x00f9, 0x00fa, 0x00fb, 0x00fc, 0x00fd, 0x0177, 0x00ff, // f8
  218. };
  219. static const unsigned short KOI8_R[0x60] = {
  220. 0x2550, 0x2551, 0x2552, 0x0451, 0x2553, 0x2554, 0x2555, 0x2556, // a0 Russian
  221. 0x2557, 0x2558, 0x2559, 0x255a, 0x255b, 0x255c, 0x255d, 0x255e, // a8
  222. 0x255f, 0x2560, 0x2561, 0x0401, 0x2562, 0x2563, 0x2564, 0x2565, // b0
  223. 0x2566, 0x2567, 0x2568, 0x2569, 0x256a, 0x256b, 0x256c, 0x00a9, // b8
  224. 0x044e, 0x0430, 0x0431, 0x0446, 0x0434, 0x0435, 0x0444, 0x0433, // c0
  225. 0x0445, 0x0438, 0x0439, 0x043a, 0x043b, 0x043c, 0x043d, 0x043e, // c8
  226. 0x043f, 0x044f, 0x0440, 0x0441, 0x0442, 0x0443, 0x0436, 0x0432, // d0
  227. 0x044c, 0x044b, 0x0437, 0x0448, 0x044d, 0x0449, 0x0447, 0x044a, // d8
  228. 0x042e, 0x0410, 0x0411, 0x0426, 0x0414, 0x0415, 0x0424, 0x0413, // e0
  229. 0x0425, 0x0418, 0x0419, 0x041a, 0x041b, 0x041c, 0x041d, 0x041e, // e8
  230. 0x041f, 0x042f, 0x0420, 0x0421, 0x0422, 0x0423, 0x0416, 0x0412, // f0
  231. 0x042c, 0x042b, 0x0417, 0x0428, 0x042d, 0x0429, 0x0427, 0x042a, // f8
  232. };
  233. static const unsigned short ISCII[0x60] = {
  234. 0x0020, 0x0901, 0x0902, 0x0903, 0x0905, 0x0906, 0x0907, 0x0908, // a0
  235. 0x0909, 0x090a, 0x090b, 0x090e, 0x090f, 0x0910, 0x090d, 0x0912, // a8
  236. 0x0913, 0x0914, 0x0911, 0x0915, 0x0916, 0x0917, 0x0918, 0x0919, // b0
  237. 0x091a, 0x091b, 0x091c, 0x091d, 0x091e, 0x091f, 0x0920, 0x0921, // b8
  238. 0x0922, 0x0923, 0x0924, 0x0925, 0x0926, 0x0927, 0x0928, 0x0929, // c0
  239. 0x092a, 0x092b, 0x092c, 0x092d, 0x092e, 0x092f, 0x095f, 0x0930, // c8
  240. 0x0931, 0x0932, 0x0933, 0x0934, 0x0935, 0x0936, 0x0937, 0x0938, // d0
  241. 0x0939, 0x0020, 0x093e, 0x093f, 0x0940, 0x0941, 0x0942, 0x0943, // d8
  242. 0x0946, 0x0947, 0x0948, 0x0945, 0x094a, 0x094b, 0x094c, 0x0949, // e0
  243. 0x094d, 0x093c, 0x0964, 0x0020, 0x0020, 0x0020, 0x0020, 0x0020, // e8
  244. 0x0020, 0x0030, 0x0031, 0x0032, 0x0033, 0x0034, 0x0035, 0x0036, // f0
  245. 0x0037, 0x0038, 0x0039, 0x20, 0x20, 0x20, 0x20, 0x20, // f8
  246. };
  247. const unsigned short *charsets[N_CHARSETS] = {
  248. ISO_8859_1,
  249. ISO_8859_1,
  250. ISO_8859_2,
  251. ISO_8859_3,
  252. ISO_8859_4,
  253. ISO_8859_5,
  254. ISO_8859_1,
  255. ISO_8859_7,
  256. ISO_8859_1,
  257. ISO_8859_9,
  258. ISO_8859_1,
  259. ISO_8859_1,
  260. ISO_8859_1,
  261. ISO_8859_1,
  262. ISO_8859_14,
  263. ISO_8859_1,
  264. ISO_8859_1,
  265. ISO_8859_1,
  266. KOI8_R, // 18
  267. ISCII
  268. };
  269. // Tables of the relative lengths of vowels, depending on the
  270. // type of the two phonemes that follow
  271. // indexes are the "length_mod" value for the following phonemes
  272. // use this table if vowel is not the last in the word
  273. static unsigned char length_mods_en[100] = {
  274. /* a , t s n d z r N <- next */
  275. 100,120,100,105,100,110,110,100, 95, 100, /* a <- next2 */
  276. 105,120,105,110,125,130,135,115,125, 100, /* , */
  277. 105,120, 75,100, 75,105,120, 85, 75, 100, /* t */
  278. 105,120, 85,105, 95,115,120,100, 95, 100, /* s */
  279. 110,120, 95,105,100,115,120,100,100, 100, /* n */
  280. 105,120,100,105, 95,115,120,110, 95, 100, /* d */
  281. 105,120,100,105,105,122,125,110,105, 100, /* z */
  282. 105,120,100,105,105,122,125,110,105, 100, /* r */
  283. 105,120, 95,105,100,115,120,110,100, 100, /* N */
  284. 100,120,100,100,100,100,100,100,100, 100
  285. }; // SPARE
  286. // as above, but for the last syllable in a word
  287. static unsigned char length_mods_en0[100] = {
  288. /* a , t s n d z r N <- next */
  289. 100,150,100,105,110,115,110,110,110, 100, /* a <- next2 */
  290. 105,150,105,110,125,135,140,115,135, 100, /* , */
  291. 105,150, 90,105, 90,122,135,100, 90, 100, /* t */
  292. 105,150,100,105,100,122,135,100,100, 100, /* s */
  293. 105,150,100,105,105,115,135,110,105, 100, /* n */
  294. 105,150,100,105,105,122,130,120,125, 100, /* d */
  295. 105,150,100,105,110,122,125,115,110, 100, /* z */
  296. 105,150,100,105,105,122,135,120,105, 100, /* r */
  297. 105,150,100,105,105,115,135,110,105, 100, /* N */
  298. 100,100,100,100,100,100,100,100,100, 100
  299. }; // SPARE
  300. static unsigned char length_mods_equal[100] = {
  301. /* a , t s n d z r N <- next */
  302. 110,120,100,110,110,110,110,110,110, 110, /* a <- next2 */
  303. 110,120,100,110,110,110,110,110,110, 110, /* , */
  304. 110,120,100,110,100,110,110,110,100, 110, /* t */
  305. 110,120,100,110,110,110,110,110,110, 110, /* s */
  306. 110,120,100,110,110,110,110,110,110, 110, /* n */
  307. 110,120,100,110,110,110,110,110,110, 110, /* d */
  308. 110,120,100,110,110,110,110,110,110, 110, /* z */
  309. 110,120,100,110,110,110,110,110,110, 110, /* r */
  310. 110,120,100,110,110,110,110,110,110, 110, /* N */
  311. 110,120,100,110,110,110,110,110,110, 110
  312. }; // SPARE
  313. static unsigned char *length_mod_tabs[6] = {
  314. length_mods_en,
  315. length_mods_en, // 1
  316. length_mods_en0, // 2
  317. length_mods_equal, // 3
  318. length_mods_equal, // 4
  319. length_mods_equal // 5
  320. };
  321. void SetLengthMods(Translator *tr, int value)
  322. {//==========================================
  323. int value2;
  324. tr->langopts.length_mods0 = tr->langopts.length_mods = length_mod_tabs[value % 100];
  325. if((value2 = value / 100) != 0)
  326. {
  327. tr->langopts.length_mods0 = length_mod_tabs[value2];
  328. }
  329. }
  330. int IsAlpha(unsigned int c)
  331. {//========================
  332. // Replacement for iswalph() which also checks for some in-word symbols
  333. static const unsigned short extra_indic_alphas[] = {
  334. 0xa70,0xa71, // Gurmukhi: tippi, addak
  335. 0
  336. };
  337. if(iswalpha(c))
  338. return(1);
  339. if((c >= 0x901) && (c <= 0xdf7))
  340. {
  341. // Indic scripts: Devanagari, Tamil, etc
  342. if((c & 0x7f) < 0x64)
  343. return(1);
  344. if(lookupwchar(extra_indic_alphas, c) != 0)
  345. return(1);
  346. if((c >= 0xd7a) && (c <= 0xd7f))
  347. return(1); // malaytalam chillu characters
  348. return(0);
  349. }
  350. if((c >= 0x5b0) && (c <= 0x5c2))
  351. return(1); // Hebrew vowel marks
  352. if(c == 0x0605)
  353. return(1);
  354. if((c >= 0x64b) && (c <= 0x65e))
  355. return(1); // arabic vowel marks
  356. if((c >= 0x300) && (c <= 0x36f))
  357. return(1); // combining accents
  358. if((c >= 0x780) && (c <= 0x7b1))
  359. return(1); // taani/divehi (maldives)
  360. if((c >= 0xf40) && (c <= 0xfbc))
  361. return(1); // tibetan
  362. if((c >= 0x1100) && (c <= 0x11ff))
  363. return(1); //Korean jamo
  364. if((c >= 0x2800) && (c <= 0x28ff))
  365. return(1); // braille
  366. if((c > 0x3040) && (c <= 0xa700))
  367. return(1); // Chinese/Japanese. Should never get here, but Mac OS 10.4's iswalpha seems to be broken, so just make sure
  368. return(0);
  369. }
  370. static int IsDigit09(unsigned int c)
  371. {//=========================
  372. if((c >= '0') && (c <= '9'))
  373. return(1);
  374. return(0);
  375. }
  376. int IsDigit(unsigned int c)
  377. {//========================
  378. if(iswdigit(c))
  379. return(1);
  380. if((c >= 0x966) && (c <= 0x96f))
  381. return(1);
  382. return(0);
  383. }
  384. int IsSpace(unsigned int c)
  385. {//========================
  386. if(c == 0)
  387. return(0);
  388. if((c >= 0x2500) && (c < 0x25a0))
  389. return(1); // box drawing characters
  390. // if(wcschr(chars_space,c))
  391. // return(1);
  392. return(iswspace(c));
  393. }
  394. void DeleteTranslator(Translator *tr)
  395. {//==================================
  396. if(tr->data_dictlist != NULL)
  397. Free(tr->data_dictlist);
  398. Free(tr);
  399. }
  400. int lookupwchar(const unsigned short *list,int c)
  401. {//==============================================
  402. // Is the character c in the list ?
  403. int ix;
  404. for(ix=0; list[ix] != 0; ix++)
  405. {
  406. if(list[ix] == c)
  407. return(ix+1);
  408. }
  409. return(0);
  410. }
  411. int lookupwchar2(const unsigned short *list,int c)
  412. {//==============================================
  413. // Replace character c by another character.
  414. // Returns 0 = not found, 1 = delete character
  415. int ix;
  416. for(ix=0; list[ix] != 0; ix+=2)
  417. {
  418. if(list[ix] == c)
  419. return(list[ix+1]);
  420. }
  421. return(0);
  422. }
  423. int IsBracket(int c)
  424. {//=================
  425. if((c >= 0x2014) && (c <= 0x201f))
  426. return(1);
  427. return(lookupwchar(brackets,c));
  428. }
  429. int utf8_out(unsigned int c, char *buf)
  430. {//====================================
  431. // write a unicode character into a buffer as utf8
  432. // returns the number of bytes written
  433. int n_bytes;
  434. int j;
  435. int shift;
  436. static char unsigned code[4] = {0,0xc0,0xe0,0xf0};
  437. if(c < 0x80)
  438. {
  439. buf[0] = c;
  440. return(1);
  441. }
  442. if(c >= 0x110000)
  443. {
  444. buf[0] = ' '; // out of range character code
  445. return(1);
  446. }
  447. if(c < 0x0800)
  448. n_bytes = 1;
  449. else if(c < 0x10000)
  450. n_bytes = 2;
  451. else
  452. n_bytes = 3;
  453. shift = 6*n_bytes;
  454. buf[0] = code[n_bytes] | (c >> shift);
  455. for(j=0; j<n_bytes; j++)
  456. {
  457. shift -= 6;
  458. buf[j+1] = 0x80 + ((c >> shift) & 0x3f);
  459. }
  460. return(n_bytes+1);
  461. } // end of utf8_out
  462. int utf8_nbytes(const char *buf)
  463. {//=============================
  464. // Returns the number of bytes for the first UTF-8 character in buf
  465. unsigned char c = (unsigned char)buf[0];
  466. if(c < 0x80)
  467. return(1);
  468. if(c < 0xe0)
  469. return(2);
  470. if(c < 0xf0)
  471. return(3);
  472. return(4);
  473. }
  474. int utf8_in2(int *c, const char *buf, int backwards)
  475. {//=================================================
  476. // Read a unicode characater from a UTF8 string
  477. // Returns the number of UTF8 bytes used.
  478. // backwards: set if we are moving backwards through the UTF8 string
  479. int c1;
  480. int n_bytes;
  481. int ix;
  482. static const unsigned char mask[4] = {0xff,0x1f,0x0f,0x07};
  483. // find the start of the next/previous character
  484. while((*buf & 0xc0) == 0x80)
  485. {
  486. // skip over non-initial bytes of a multi-byte utf8 character
  487. if(backwards)
  488. buf--;
  489. else
  490. buf++;
  491. }
  492. n_bytes = 0;
  493. if((c1 = *buf++) & 0x80)
  494. {
  495. if((c1 & 0xe0) == 0xc0)
  496. n_bytes = 1;
  497. else if((c1 & 0xf0) == 0xe0)
  498. n_bytes = 2;
  499. else if((c1 & 0xf8) == 0xf0)
  500. n_bytes = 3;
  501. c1 &= mask[n_bytes];
  502. for(ix=0; ix<n_bytes; ix++)
  503. {
  504. c1 = (c1 << 6) + (*buf++ & 0x3f);
  505. }
  506. }
  507. *c = c1;
  508. return(n_bytes+1);
  509. }
  510. int utf8_in(int *c, const char *buf)
  511. {//=================================
  512. // Read a unicode characater from a UTF8 string
  513. // Returns the number of UTF8 bytes used.
  514. return(utf8_in2(c,buf,0));
  515. }
  516. char *strchr_w(const char *s, int c)
  517. {//=================================
  518. // return NULL for any non-ascii character
  519. if(c >= 0x80)
  520. return(NULL);
  521. return(strchr((char *)s,c)); // (char *) is needed for Borland compiler
  522. }
  523. int IsAllUpper(const char *word)
  524. {//=============================
  525. int c;
  526. while((*word != 0) && !isspace2(*word))
  527. {
  528. word += utf8_in(&c, word);
  529. if(!iswupper(c))
  530. return(0);
  531. }
  532. return(1);
  533. }
  534. static char *SpeakIndividualLetters(Translator *tr, char *word, char *phonemes, int spell_word)
  535. {//============================================================================================
  536. int posn = 0;
  537. int capitals = 0;
  538. int non_initial = 0;
  539. if (spell_word > 2)
  540. capitals = 2;
  541. while((*word != ' ') && (*word != 0))
  542. {
  543. word += TranslateLetter(tr, word, phonemes, capitals | non_initial);
  544. posn++;
  545. non_initial = 1;
  546. if(phonemes[0] == phonSWITCH)
  547. {
  548. // change to another language in order to translate this word
  549. strcpy(word_phonemes,phonemes);
  550. return(NULL);
  551. }
  552. }
  553. SetSpellingStress(tr,phonemes,spell_word,posn);
  554. return(word);
  555. } // end of SpeakIndividualLetters
  556. static int CheckDottedAbbrev(char *word1, WORD_TAB *wtab)
  557. {//=====================================================
  558. int wc;
  559. int count = 0;
  560. int nbytes;
  561. int ok;
  562. int ix;
  563. char *word;
  564. char *wbuf;
  565. char word_buf[80];
  566. word = word1;
  567. wbuf = word_buf;
  568. ix = 0;
  569. for(;;)
  570. {
  571. ok = 0;
  572. nbytes = utf8_in(&wc, word);
  573. if((word[nbytes] == ' ') && IsAlpha(wc))
  574. {
  575. if(word[nbytes+1] == '.')
  576. {
  577. if(word[nbytes+2] == ' ')
  578. ok = 1;
  579. else if(word[nbytes+2] =='\'')
  580. {
  581. nbytes += 2; // delete the final dot (eg. u.s.a.'s)
  582. ok = 2;
  583. }
  584. }
  585. else if((count > 0) && (word[nbytes] == ' '))
  586. ok = 2;
  587. }
  588. if(ok == 0)
  589. break;
  590. for(ix=0; ix < nbytes; ix++)
  591. *wbuf++ = word[ix];
  592. count++;
  593. if(ok == 2)
  594. {
  595. word += nbytes;
  596. break;
  597. }
  598. word += (nbytes + 3);
  599. }
  600. if(count > 1)
  601. {
  602. ix = wbuf - word_buf;
  603. memcpy(word1, word_buf, ix);
  604. while(&word1[ix] < word)
  605. word1[ix++] = ' ';
  606. dictionary_skipwords = (count - 1)*2;
  607. }
  608. return(count);
  609. } // end of CheckDottedAbbrev
  610. extern char *phondata_ptr;
  611. int ChangeEquivalentPhonemes(Translator *tr, int lang2, char *phonemes)
  612. {//====================================================================
  613. // tr: the original language
  614. // lang2: phoneme table number for the temporary language
  615. // phonemes: the phonemes to be replaced
  616. int ix;
  617. int len;
  618. char phon;
  619. char *p;
  620. unsigned char *pb;
  621. char *eqlist;
  622. char *p_out;
  623. char *p_in;
  624. int remove_stress = 0;
  625. char phonbuf[N_WORD_PHONEMES];
  626. // has a phoneme equivalence table been specified for thus language pair?
  627. if((ix = phoneme_tab_list[tr->phoneme_tab_ix].equivalence_tables) == 0)
  628. return(0);
  629. pb = (unsigned char *)&phondata_ptr[ix];
  630. for(;;)
  631. {
  632. if(pb[0] == 0)
  633. return(0); // table not found
  634. if(pb[0] == lang2)
  635. break;
  636. len = (pb[2] << 8) + pb[3]; // size of this table in words
  637. pb += (len * 4);
  638. }
  639. remove_stress = pb[1];
  640. if(option_phonemes == 2)
  641. {
  642. DecodePhonemes(phonemes, phonbuf);
  643. fprintf(f_trans,"(%s) %s -> (%s) ", phoneme_tab_list[lang2].name, phonbuf, phoneme_tab_list[tr->phoneme_tab_ix].name);
  644. }
  645. p_in = phonemes;
  646. eqlist = (char *)&pb[8];
  647. p_out = phonbuf;
  648. while((phon = *p_in++) != 0)
  649. {
  650. if(remove_stress && ((phon & 0xff) < phonSTRESS_PREV))
  651. continue; // remove stress marks
  652. // is there a translation for this phoneme code?
  653. p = eqlist;
  654. while(*p != 0)
  655. {
  656. len = strlen(&p[1]);
  657. if(*p == phon)
  658. {
  659. strcpy(p_out, &p[1]);
  660. p_out += len;
  661. break;
  662. }
  663. p += (len + 2);
  664. }
  665. if(*p == 0)
  666. {
  667. // no translation found
  668. *p_out++ = phon;
  669. }
  670. }
  671. *p_out = 0;
  672. if(remove_stress)
  673. {
  674. SetWordStress(tr, phonbuf, NULL, -1, 0);
  675. }
  676. strcpy(phonemes, phonbuf);
  677. if(option_phonemes == 2)
  678. {
  679. SelectPhonemeTable(tr->phoneme_tab_ix);
  680. DecodePhonemes(phonemes, phonbuf);
  681. fprintf(f_trans,"%s\n\n", phonbuf);
  682. }
  683. return(1);
  684. } // end of ChangeEquivalentPhonemes
  685. int TranslateWord(Translator *tr, char *word_start, int next_pause, WORD_TAB *wtab, char *word_out)
  686. {//==================================================================================================
  687. // word1 is terminated by space (0x20) character
  688. char *word1;
  689. int word_length;
  690. int ix;
  691. char *p;
  692. int pfix;
  693. int n_chars;
  694. unsigned int dictionary_flags[2];
  695. unsigned int dictionary_flags2[2];
  696. int end_type=0;
  697. int end_type1=0;
  698. int prefix_type=0;
  699. int prefix_stress;
  700. char *wordx;
  701. char phonemes[N_WORD_PHONEMES];
  702. char phonemes2[N_WORD_PHONEMES];
  703. char prefix_phonemes[N_WORD_PHONEMES];
  704. char unpron_phonemes[N_WORD_PHONEMES];
  705. char end_phonemes[N_WORD_PHONEMES];
  706. char end_phonemes2[N_WORD_PHONEMES];
  707. char word_copy[N_WORD_BYTES];
  708. char word_copy2[N_WORD_BYTES];
  709. int word_copy_length;
  710. char prefix_chars[0x3f + 2];
  711. int found=0;
  712. int end_flags;
  713. char c_temp; // save a character byte while we temporarily replace it with space
  714. int first_char;
  715. int last_char = 0;
  716. int add_plural_suffix = 0;
  717. int prefix_flags = 0;
  718. int more_suffixes;
  719. int confirm_prefix;
  720. int spell_word;
  721. int stress_bits;
  722. int emphasize_allcaps = 0;
  723. int wflags;
  724. int wmark;
  725. int was_unpronouncable = 0;
  726. WORD_TAB wtab_null[8];
  727. // translate these to get pronunciations of plural 's' suffix (different forms depending on
  728. // the preceding letter
  729. static char word_zz[4] = {0,'z','z',0};
  730. static char word_iz[4] = {0,'i','z',0};
  731. static char word_ss[4] = {0,'s','s',0};
  732. if(wtab == NULL)
  733. {
  734. memset(wtab_null, 0, sizeof(wtab_null));
  735. wtab = wtab_null;
  736. }
  737. wflags = wtab->flags;
  738. wmark = wtab->wmark;
  739. dictionary_flags[0] = 0;
  740. dictionary_flags[1] = 0;
  741. dictionary_flags2[0] = 0;
  742. dictionary_flags2[1] = 0;
  743. dictionary_skipwords = 0;
  744. phonemes[0] = 0;
  745. unpron_phonemes[0] = 0;
  746. prefix_phonemes[0] = 0;
  747. end_phonemes[0] = 0;
  748. if(tr->data_dictlist == NULL)
  749. {
  750. // dictionary is not loaded
  751. word_phonemes[0] = 0;
  752. return(0);
  753. }
  754. // count the length of the word
  755. word1 = word_start;
  756. if(*word1 == ' ') word1++; // possibly a dot was replaced by space: $dot
  757. wordx = word1;
  758. utf8_in(&first_char,wordx);
  759. word_length = 0;
  760. while((*wordx != 0) && (*wordx != ' '))
  761. {
  762. wordx += utf8_in(&last_char,wordx);
  763. word_length++;
  764. }
  765. word_copy_length = wordx - word_start;
  766. if(word_copy_length >= N_WORD_BYTES)
  767. word_copy_length = N_WORD_BYTES-1;
  768. memcpy(word_copy2, word_start, word_copy_length);
  769. spell_word = 0;
  770. if((word_length == 1) && (wflags & FLAG_TRANSLATOR2))
  771. {
  772. // retranslating a 1-character word using a different language, say its name
  773. spell_word = 1;
  774. }
  775. if(option_sayas == SAYAS_KEY)
  776. {
  777. if(word_length == 1)
  778. spell_word = 4;
  779. else
  780. {
  781. // is there a translation for this keyname ?
  782. word1--;
  783. *word1 = '_'; // prefix keyname with '_'
  784. found = LookupDictList(tr, &word1, phonemes, dictionary_flags, 0, wtab);
  785. }
  786. }
  787. // try an initial lookup in the dictionary list, we may find a pronunciation specified, or
  788. // we may just find some flags
  789. if(option_sayas & 0x10)
  790. {
  791. // SAYAS_CHAR, SAYAS_GYLPH, or SAYAS_SINGLE_CHAR
  792. spell_word = option_sayas & 0xf; // 2,3,4
  793. }
  794. else
  795. {
  796. if(!found)
  797. found = LookupDictList(tr, &word1, phonemes, dictionary_flags, FLAG_ALLOW_TEXTMODE, wtab); // the original word
  798. if((dictionary_flags[0] & (FLAG_ALLOW_DOT || FLAG_NEEDS_DOT)) && (wordx[1] == '.'))
  799. {
  800. wordx[1] = ' '; // remove a Dot after this word
  801. }
  802. if(dictionary_flags[0] & FLAG_TEXTMODE)
  803. {
  804. if(word_out != NULL)
  805. strcpy(word_out, word1);
  806. first_char = word1[0];
  807. stress_bits = dictionary_flags[0] & 0x7f;
  808. found = LookupDictList(tr, &word1, phonemes, dictionary_flags2, 0, wtab); // the text replacement
  809. if(dictionary_flags2[0]!=0)
  810. {
  811. dictionary_flags[0] = dictionary_flags2[0];
  812. dictionary_flags[1] = dictionary_flags2[1];
  813. if(stress_bits != 0)
  814. {
  815. // keep any stress information from the original word
  816. dictionary_flags[0] = (dictionary_flags[0] & ~0x7f) | stress_bits;
  817. }
  818. }
  819. }
  820. else if((found==0) && (dictionary_flags[0] & FLAG_SKIPWORDS))
  821. {
  822. // grouped words, but no translation. Join the words with hyphens.
  823. wordx = word1;
  824. ix = 0;
  825. while(ix < dictionary_skipwords)
  826. {
  827. if(*wordx == ' ')
  828. {
  829. *wordx = '-';
  830. ix++;
  831. }
  832. wordx++;
  833. }
  834. }
  835. if((word_length == 1) && (dictionary_skipwords == 0))
  836. {
  837. // is this a series of single letters separated by dots?
  838. if(CheckDottedAbbrev(word1, wtab))
  839. {
  840. dictionary_flags[0] = 0;
  841. dictionary_flags[1] = 0;
  842. spell_word = 1;
  843. if(dictionary_skipwords)
  844. dictionary_flags[0] = FLAG_SKIPWORDS;
  845. }
  846. }
  847. // if textmode, LookupDictList() replaces word1 by the new text and returns found=0
  848. if(phonemes[0] == phonSWITCH)
  849. {
  850. // change to another language in order to translate this word
  851. strcpy(word_phonemes,phonemes);
  852. return(0);
  853. }
  854. if((wmark > 0) && (wmark < 8))
  855. {
  856. // the stressed syllable has been specified in the text (TESTING)
  857. dictionary_flags[0] = (dictionary_flags[0] & ~0xf) | wmark;
  858. }
  859. if(!found && (dictionary_flags[0] & FLAG_ABBREV))
  860. {
  861. // the word has $abbrev flag, but no pronunciation specified. Speak as individual letters
  862. spell_word = 1;
  863. }
  864. if(!found && iswdigit(first_char))
  865. {
  866. Lookup(tr,"_0lang",word_phonemes);
  867. if(word_phonemes[0] == phonSWITCH)
  868. return(0);
  869. if((tr->langopts.numbers2 & NUM2_ENGLISH_NUMERALS) && !(wtab->flags & FLAG_CHAR_REPLACED))
  870. {
  871. // for this language, speak English numerals (0-9) with the English voice
  872. sprintf(word_phonemes,"%c",phonSWITCH);
  873. return(0);
  874. }
  875. found = TranslateNumber(tr, word1, phonemes, dictionary_flags, wtab, 0);
  876. }
  877. if(!found && ((wflags & FLAG_UPPERS) != FLAG_FIRST_UPPER))
  878. {
  879. // either all upper or all lower case
  880. if((tr->langopts.numbers & NUM_ROMAN) || ((tr->langopts.numbers & NUM_ROMAN_CAPITALS) && (wflags & FLAG_ALL_UPPER)))
  881. {
  882. if((wflags & FLAG_LAST_WORD) || !(wtab[1].flags & FLAG_NOSPACE))
  883. {
  884. // don't use Roman number if this word is not separated from the next word (eg. "XLTest")
  885. if((found = TranslateRoman(tr, word1, phonemes, wtab)) != 0)
  886. dictionary_flags[0] |= FLAG_ABBREV; // prevent emphasis if capitals
  887. }
  888. }
  889. }
  890. if((wflags & FLAG_ALL_UPPER) && (word_length > 1)&& iswalpha(first_char))
  891. {
  892. if((option_tone_flags & OPTION_EMPHASIZE_ALLCAPS) && !(dictionary_flags[0] & FLAG_ABBREV))
  893. {
  894. // emphasize words which are in capitals
  895. emphasize_allcaps = FLAG_EMPHASIZED;
  896. }
  897. else if(!found && !(dictionary_flags[0] & FLAG_SKIPWORDS) && (word_length<4) && (tr->clause_lower_count > 3)
  898. && (tr->clause_upper_count <= tr->clause_lower_count))
  899. {
  900. // An upper case word in a lower case clause. This could be an abbreviation.
  901. spell_word = 1;
  902. }
  903. }
  904. }
  905. if(spell_word > 0)
  906. {
  907. // Speak as individual letters
  908. phonemes[0] = 0;
  909. end_type = 0;
  910. if(SpeakIndividualLetters(tr, word1, phonemes, spell_word) == NULL)
  911. {
  912. if(word_length > 1)
  913. return(FLAG_SPELLWORD); // a mixture of languages, retranslate as individual letters, separated by spaces
  914. return(0);
  915. }
  916. strcpy(word_phonemes, phonemes);
  917. return(dictionary_flags[0] & FLAG_SKIPWORDS); // ??
  918. }
  919. else if(found == 0)
  920. {
  921. int posn;
  922. int non_initial;
  923. int length;
  924. // word's pronunciation is not given in the dictionary list, although
  925. // dictionary_flags may have ben set there
  926. posn = 0;
  927. non_initial = 0;
  928. length = 999;
  929. wordx = word1;
  930. while(((length < 3) && (length > 0))|| (word_length > 1 && Unpronouncable(tr, wordx, posn)))
  931. {
  932. // This word looks "unpronouncable", so speak letters individually until we
  933. // find a remainder that we can pronounce.
  934. was_unpronouncable = FLAG_WAS_UNPRONOUNCABLE;
  935. emphasize_allcaps = 0;
  936. if(wordx[0] == '\'')
  937. break;
  938. if(posn > 0)
  939. non_initial = 1;
  940. wordx += TranslateLetter(tr, wordx, unpron_phonemes, non_initial);
  941. posn++;
  942. if(unpron_phonemes[0] == phonSWITCH)
  943. {
  944. // change to another language in order to translate this word
  945. strcpy(word_phonemes,unpron_phonemes);
  946. if(strcmp(&unpron_phonemes[1],"en")==0)
  947. return(FLAG_SPELLWORD); // _^_en must have been set in TranslateLetter(), not *_rules
  948. return(0);
  949. }
  950. #ifdef deleted
  951. p = &wordx[word_length-3]; // this looks wrong. Doesn't consider multi-byte chars.
  952. if(memcmp(p,"'s ",3) == 0)
  953. {
  954. // remove a 's suffix and pronounce this separately (not as an individual letter)
  955. add_plural_suffix = 1;
  956. p[0] = ' ';
  957. p[1] = ' ';
  958. last_char = p[-1];
  959. }
  960. #endif
  961. length=0;
  962. while(wordx[length] != ' ') length++;
  963. }
  964. SetSpellingStress(tr,unpron_phonemes,0,posn);
  965. // anything left ?
  966. if(*wordx != ' ')
  967. {
  968. if((unpron_phonemes[0] != 0) && (wordx[0] != '\''))
  969. {
  970. // letters which have been spoken individually from affecting the pronunciation of the pronuncable part
  971. wordx[-1] = ' ';
  972. }
  973. // Translate the stem
  974. end_type = TranslateRules(tr, wordx, phonemes, N_WORD_PHONEMES, end_phonemes, wflags, dictionary_flags);
  975. if(phonemes[0] == phonSWITCH)
  976. {
  977. // change to another language in order to translate this word
  978. strcpy(word_phonemes,phonemes);
  979. return(0);
  980. }
  981. #ifdef deleted
  982. // ?? allow $unpr while translating rules, not just on initial FLAG_UNPRON_TEST
  983. if(end_type & SUFX_UNPRON)
  984. {
  985. phonemes[0] = 0; // discard and retranslate as individual letters
  986. SpeakIndividualLetters(tr, wordx, phonemes, 0);
  987. strcpy(word_phonemes, phonemes);
  988. return(0);
  989. }
  990. #endif
  991. if((phonemes[0] == 0) && (end_phonemes[0] == 0))
  992. {
  993. int wc;
  994. // characters not recognised, speak them individually
  995. utf8_in(&wc, wordx);
  996. if((word_length == 1) && IsAlpha(wc))
  997. {
  998. if((wordx = SpeakIndividualLetters(tr, wordx, phonemes, spell_word)) == NULL)
  999. {
  1000. return(0);
  1001. }
  1002. strcpy(word_phonemes, phonemes);
  1003. return(0);
  1004. }
  1005. }
  1006. c_temp = wordx[-1];
  1007. found = 0;
  1008. confirm_prefix = 1;
  1009. for (int loopcount = 0; (loopcount < 50) && (end_type & SUFX_P); loopcount++)
  1010. {
  1011. // Found a standard prefix, remove it and retranslate
  1012. // loopcount guards against an endless loop
  1013. if(confirm_prefix && !(end_type & SUFX_B))
  1014. {
  1015. int end2;
  1016. char end_phonemes2[N_WORD_PHONEMES];
  1017. // remove any standard suffix and confirm that the prefix is still recognised
  1018. phonemes2[0] = 0;
  1019. end2 = TranslateRules(tr, wordx, phonemes2, N_WORD_PHONEMES, end_phonemes2, wflags|FLAG_NO_PREFIX|FLAG_NO_TRACE, dictionary_flags);
  1020. if(end2)
  1021. {
  1022. RemoveEnding(tr, wordx, end2, word_copy);
  1023. end_type = TranslateRules(tr, wordx, phonemes, N_WORD_PHONEMES, end_phonemes, wflags|FLAG_NO_TRACE, dictionary_flags);
  1024. memcpy(wordx,word_copy,strlen(word_copy));
  1025. if((end_type & SUFX_P) == 0)
  1026. {
  1027. // after removing the suffix, the prefix is no longer recognised.
  1028. // Keep the suffix, but don't use the prefix
  1029. end_type = end2;
  1030. strcpy(phonemes,phonemes2);
  1031. strcpy(end_phonemes,end_phonemes2);
  1032. if(option_phonemes == 2)
  1033. {
  1034. DecodePhonemes(end_phonemes,end_phonemes2);
  1035. fprintf(f_trans," suffix [%s]\n\n",end_phonemes2);
  1036. }
  1037. }
  1038. confirm_prefix = 0;
  1039. continue;
  1040. }
  1041. }
  1042. prefix_type = end_type;
  1043. if(prefix_type & SUFX_V)
  1044. {
  1045. tr->expect_verb = 1; // use the verb form of the word
  1046. }
  1047. wordx[-1] = c_temp;
  1048. if((prefix_type & SUFX_B) == 0)
  1049. {
  1050. for(ix=(prefix_type & 0xf); ix>0; ix--) // num. of characters to remove
  1051. {
  1052. wordx++;
  1053. while((*wordx & 0xc0) == 0x80) wordx++; // for multibyte characters
  1054. }
  1055. }
  1056. else
  1057. {
  1058. pfix = 1;
  1059. prefix_chars[0] = 0;
  1060. n_chars = prefix_type & 0x3f;
  1061. for(ix=0; ix < n_chars; ix++) // num. of bytes to remove
  1062. {
  1063. prefix_chars[pfix++] = *wordx++;
  1064. if((prefix_type & SUFX_B) && (ix == (n_chars-1)))
  1065. {
  1066. prefix_chars[pfix-1] = 0; // discard the last character of the prefix, this is the separator character
  1067. }
  1068. }
  1069. prefix_chars[pfix] = 0;
  1070. }
  1071. c_temp = wordx[-1];
  1072. wordx[-1] = ' ';
  1073. confirm_prefix = 1;
  1074. if(prefix_type & SUFX_B)
  1075. {
  1076. // SUFX_B is used for Turkish, tr_rules contains " ' (Pb"
  1077. // examine the prefix part
  1078. char *wordpf;
  1079. char prefix_phonemes2[12];
  1080. strncpy0(prefix_phonemes2,end_phonemes,sizeof(prefix_phonemes2));
  1081. wordpf = &prefix_chars[1];
  1082. strcpy(prefix_phonemes, phonemes);
  1083. // look for stress marker or $abbrev
  1084. found = LookupDictList(tr, &wordpf, phonemes, dictionary_flags, 0, wtab);
  1085. if(found)
  1086. {
  1087. strcpy(prefix_phonemes, phonemes);
  1088. }
  1089. if(dictionary_flags[0] & FLAG_ABBREV)
  1090. {
  1091. prefix_phonemes[0] = 0;
  1092. SpeakIndividualLetters(tr, wordpf, prefix_phonemes, 1);
  1093. }
  1094. }
  1095. else
  1096. {
  1097. strcat(prefix_phonemes,end_phonemes);
  1098. }
  1099. end_phonemes[0] = 0;
  1100. end_type = 0;
  1101. found = LookupDictList(tr, &wordx, phonemes, dictionary_flags2, SUFX_P, wtab); // without prefix
  1102. if(dictionary_flags[0]==0)
  1103. {
  1104. dictionary_flags[0] = dictionary_flags2[0];
  1105. dictionary_flags[1] = dictionary_flags2[1];
  1106. }
  1107. else
  1108. prefix_flags = 1;
  1109. if(found == 0)
  1110. {
  1111. end_type = TranslateRules(tr, wordx, phonemes, N_WORD_PHONEMES, end_phonemes, 0, dictionary_flags);
  1112. if(phonemes[0] == phonSWITCH)
  1113. {
  1114. // change to another language in order to translate this word
  1115. wordx[-1] = c_temp;
  1116. strcpy(word_phonemes,phonemes);
  1117. return(0);
  1118. }
  1119. }
  1120. }
  1121. if((end_type != 0) && !(end_type & SUFX_P))
  1122. {
  1123. end_type1 = end_type;
  1124. strcpy(phonemes2,phonemes);
  1125. // The word has a standard ending, re-translate without this ending
  1126. end_flags = RemoveEnding(tr, wordx, end_type, word_copy);
  1127. more_suffixes = 1;
  1128. while(more_suffixes)
  1129. {
  1130. more_suffixes = 0;
  1131. phonemes[0] = 0;
  1132. if(prefix_phonemes[0] != 0)
  1133. {
  1134. // lookup the stem without the prefix removed
  1135. wordx[-1] = c_temp;
  1136. found = LookupDictList(tr, &word1, phonemes, dictionary_flags2, end_flags, wtab); // include prefix, but not suffix
  1137. wordx[-1] = ' ';
  1138. if(phonemes[0] == phonSWITCH)
  1139. {
  1140. // change to another language in order to translate this word
  1141. memcpy(wordx,word_copy,strlen(word_copy));
  1142. strcpy(word_phonemes,phonemes);
  1143. return(0);
  1144. }
  1145. if(dictionary_flags[0]==0)
  1146. {
  1147. dictionary_flags[0] = dictionary_flags2[0];
  1148. dictionary_flags[1] = dictionary_flags2[1];
  1149. }
  1150. if(found)
  1151. prefix_phonemes[0] = 0; // matched whole word, don't need prefix now
  1152. if((found==0) && (dictionary_flags2[0] != 0))
  1153. prefix_flags = 1;
  1154. }
  1155. if(found == 0)
  1156. {
  1157. found = LookupDictList(tr, &wordx, phonemes, dictionary_flags2, end_flags, wtab); // without prefix and suffix
  1158. if(phonemes[0] == phonSWITCH)
  1159. {
  1160. // change to another language in order to translate this word
  1161. memcpy(wordx,word_copy,strlen(word_copy));
  1162. strcpy(word_phonemes,phonemes);
  1163. return(0);
  1164. }
  1165. if(dictionary_flags2[0] & FLAG_ABBREV)
  1166. {
  1167. // Removing the suffix leaves a word which should be spoken as individual letters
  1168. // Not yet implemented
  1169. }
  1170. if(dictionary_flags[0]==0)
  1171. {
  1172. dictionary_flags[0] = dictionary_flags2[0];
  1173. dictionary_flags[1] = dictionary_flags2[1];
  1174. }
  1175. }
  1176. if(found == 0)
  1177. {
  1178. if(end_type & SUFX_Q)
  1179. {
  1180. // don't retranslate, use the original lookup result
  1181. strcpy(phonemes,phonemes2);
  1182. }
  1183. else
  1184. {
  1185. if(end_flags & FLAG_SUFX)
  1186. wflags |= FLAG_SUFFIX_REMOVED;
  1187. if(end_type & SUFX_A)
  1188. wflags |= FLAG_SUFFIX_VOWEL;
  1189. if(end_type & SUFX_M)
  1190. {
  1191. // allow more suffixes before this suffix
  1192. strcpy(end_phonemes2, end_phonemes);
  1193. end_type = TranslateRules(tr, wordx, phonemes, N_WORD_PHONEMES, end_phonemes, wflags, dictionary_flags);
  1194. strcat(end_phonemes, end_phonemes2); // add the phonemes for the previous suffixes after this one
  1195. if((end_type != 0) && !(end_type & SUFX_P))
  1196. {
  1197. // there is another suffix
  1198. end_flags = RemoveEnding(tr, wordx, end_type, NULL);
  1199. more_suffixes = 1;
  1200. }
  1201. }
  1202. else
  1203. {
  1204. // don't remove any previous suffix
  1205. TranslateRules(tr, wordx, phonemes, N_WORD_PHONEMES, NULL, wflags, dictionary_flags);
  1206. end_type = 0;
  1207. }
  1208. if(phonemes[0] == phonSWITCH)
  1209. {
  1210. // change to another language in order to translate this word
  1211. strcpy(word_phonemes,phonemes);
  1212. memcpy(wordx,word_copy,strlen(word_copy));
  1213. wordx[-1] = c_temp;
  1214. return(0);
  1215. }
  1216. }
  1217. }
  1218. }
  1219. if((end_type1 & SUFX_T) == 0)
  1220. {
  1221. // the default is to add the suffix and then determine the word's stress pattern
  1222. AppendPhonemes(tr,phonemes, N_WORD_PHONEMES, end_phonemes);
  1223. end_phonemes[0] = 0;
  1224. }
  1225. memcpy(wordx,word_copy,strlen(word_copy));
  1226. }
  1227. wordx[-1] = c_temp;
  1228. }
  1229. }
  1230. if((add_plural_suffix) || (wflags & FLAG_HAS_PLURAL))
  1231. {
  1232. // s or 's suffix, append [s], [z] or [Iz] depending on previous letter
  1233. if(last_char == 'f')
  1234. TranslateRules(tr, &word_ss[1], phonemes, N_WORD_PHONEMES, NULL, 0, NULL);
  1235. else if((last_char==0) || (strchr_w("hsx",last_char)==NULL))
  1236. TranslateRules(tr, &word_zz[1], phonemes, N_WORD_PHONEMES, NULL, 0, NULL);
  1237. else
  1238. TranslateRules(tr, &word_iz[1], phonemes, N_WORD_PHONEMES, NULL, 0, NULL);
  1239. }
  1240. wflags |= emphasize_allcaps;
  1241. /* determine stress pattern for this word */
  1242. /******************************************/
  1243. prefix_stress = 0;
  1244. for(p = prefix_phonemes; *p != 0; p++)
  1245. {
  1246. if((*p == phonSTRESS_P) || (*p == phonSTRESS_P2))
  1247. {
  1248. prefix_stress = *p;
  1249. }
  1250. }
  1251. if(prefix_flags || (prefix_stress != 0))
  1252. {
  1253. if((tr->langopts.param[LOPT_PREFIXES]) || (prefix_type & SUFX_T))
  1254. {
  1255. char *p;
  1256. // German, keep a secondary stress on the stem
  1257. SetWordStress(tr, phonemes, dictionary_flags, 3, 0);
  1258. // reduce all but the first primary stress
  1259. ix=0;
  1260. for(p=prefix_phonemes; *p != 0; p++)
  1261. {
  1262. if(*p == phonSTRESS_P)
  1263. {
  1264. if(ix==0)
  1265. ix=1;
  1266. else
  1267. *p = phonSTRESS_3;
  1268. }
  1269. }
  1270. #ifdef PLATFORM_WINDOWS
  1271. sprintf(word_phonemes, "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1272. #else
  1273. snprintf(word_phonemes, sizeof(word_phonemes), "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1274. #endif
  1275. word_phonemes[N_WORD_PHONEMES-1] = 0;
  1276. SetWordStress(tr, word_phonemes, dictionary_flags, -1, 0);
  1277. }
  1278. else
  1279. {
  1280. // stress position affects the whole word, including prefix
  1281. #ifdef PLATFORM_WINDOWS
  1282. sprintf(word_phonemes, "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1283. #else
  1284. snprintf(word_phonemes, sizeof(word_phonemes), "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1285. #endif
  1286. word_phonemes[N_WORD_PHONEMES-1] = 0;
  1287. SetWordStress(tr, word_phonemes, dictionary_flags, -1, 0);
  1288. }
  1289. }
  1290. else
  1291. {
  1292. if(prefix_phonemes[0] == 0)
  1293. SetWordStress(tr, phonemes, dictionary_flags, -1, 0);
  1294. else
  1295. SetWordStress(tr, phonemes, dictionary_flags, -1, 0);
  1296. #ifdef PLATFORM_WINDOWS
  1297. sprintf(word_phonemes, "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1298. #else
  1299. snprintf(word_phonemes, sizeof(word_phonemes), "%s%s%s", unpron_phonemes, prefix_phonemes, phonemes);
  1300. #endif
  1301. word_phonemes[N_WORD_PHONEMES-1] = 0;
  1302. }
  1303. if(end_phonemes[0] != 0)
  1304. {
  1305. // a suffix had the SUFX_T option set, add the suffix after the stress pattern has been determined
  1306. ix = strlen(word_phonemes);
  1307. end_phonemes[N_WORD_PHONEMES-1-ix] = 0; // ensure no buffer overflow
  1308. strcpy(&word_phonemes[ix], end_phonemes);
  1309. }
  1310. if(wflags & FLAG_LAST_WORD)
  1311. {
  1312. // don't use $brk pause before the last word of a sentence
  1313. // (but allow it for emphasis, see below
  1314. dictionary_flags[0] &= ~FLAG_PAUSE1;
  1315. }
  1316. #ifdef deleted
  1317. // but it causes problems if these are not a person name
  1318. if(tr->translator_name == L('h','u'))
  1319. {
  1320. // lang=hu, If the last two words of a clause have capital letters (eg. a person name), unstress the last word.
  1321. if((wflags & (FLAG_LAST_WORD | FLAG_FIRST_UPPER | FLAG_ALL_UPPER | FLAG_FIRST_WORD)) == (FLAG_LAST_WORD | FLAG_FIRST_UPPER))
  1322. {
  1323. if(((wtab[-1].flags & (FLAG_FIRST_UPPER | FLAG_ALL_UPPER)) == FLAG_FIRST_UPPER) && ((tr->clause_terminator != 0x90028) || (wflags & FLAG_HAS_DOT)))
  1324. {
  1325. ChangeWordStress(tr,word_phonemes,3);
  1326. }
  1327. }
  1328. }
  1329. #endif
  1330. if((wflags & FLAG_HYPHEN) && (tr->langopts.stress_flags & S_HYPEN_UNSTRESS))
  1331. {
  1332. ChangeWordStress(tr,word_phonemes,3);
  1333. }
  1334. else if(wflags & FLAG_EMPHASIZED2)
  1335. {
  1336. // A word is indicated in the source text as stressed
  1337. // Give it stress level 6 (for the intonation module)
  1338. ChangeWordStress(tr,word_phonemes,6);
  1339. if(wflags & FLAG_EMPHASIZED)
  1340. dictionary_flags[0] |= FLAG_PAUSE1; // precede by short pause
  1341. }
  1342. else if(wtab[dictionary_skipwords].flags & FLAG_LAST_WORD)
  1343. {
  1344. // the word has attribute to stress or unstress when at end of clause
  1345. if(dictionary_flags[0] & (FLAG_STRESS_END | FLAG_STRESS_END2))
  1346. ChangeWordStress(tr,word_phonemes,4);
  1347. else if((dictionary_flags[0] & FLAG_UNSTRESS_END) && (any_stressed_words))
  1348. ChangeWordStress(tr,word_phonemes,3);
  1349. }
  1350. // dictionary flags for this word give a clue about which alternative pronunciations of
  1351. // following words to use.
  1352. if(end_type1 & SUFX_F)
  1353. {
  1354. // expect a verb form, with or without -s suffix
  1355. tr->expect_verb = 2;
  1356. tr->expect_verb_s = 2;
  1357. }
  1358. if(dictionary_flags[1] & FLAG_PASTF)
  1359. {
  1360. /* expect perfect tense in next two words */
  1361. tr->expect_past = 3;
  1362. tr->expect_verb = 0;
  1363. tr->expect_noun = 0;
  1364. }
  1365. else if(dictionary_flags[1] & FLAG_VERBF)
  1366. {
  1367. /* expect a verb in the next word */
  1368. tr->expect_verb = 2;
  1369. tr->expect_verb_s = 0; /* verb won't have -s suffix */
  1370. tr->expect_noun = 0;
  1371. }
  1372. else if(dictionary_flags[1] & FLAG_VERBSF)
  1373. {
  1374. // expect a verb, must have a -s suffix
  1375. tr->expect_verb = 0;
  1376. tr->expect_verb_s = 2;
  1377. tr->expect_past = 0;
  1378. tr->expect_noun = 0;
  1379. }
  1380. else if(dictionary_flags[1] & FLAG_NOUNF)
  1381. {
  1382. /* not expecting a verb next */
  1383. tr->expect_noun = 2;
  1384. tr->expect_verb = 0;
  1385. tr->expect_verb_s = 0;
  1386. tr->expect_past = 0;
  1387. }
  1388. if((wordx[0] != 0) && (!(dictionary_flags[1] & FLAG_VERB_EXT)))
  1389. {
  1390. if(tr->expect_verb > 0)
  1391. tr->expect_verb--;
  1392. if(tr->expect_verb_s > 0)
  1393. tr->expect_verb_s--;
  1394. if(tr->expect_noun >0)
  1395. tr->expect_noun--;
  1396. if(tr->expect_past > 0)
  1397. tr->expect_past--;
  1398. }
  1399. if((word_length == 1) && (tr->translator_name == L('e','n')) && iswalpha(first_char) && (first_char != 'i'))
  1400. {
  1401. // English Specific !!!!
  1402. // any single letter before a dot is an abbreviation, except 'I'
  1403. dictionary_flags[0] |= FLAG_ALLOW_DOT;
  1404. }
  1405. if((tr->langopts.param[LOPT_ALT] & 2) && ((dictionary_flags[0] & (FLAG_ALT_TRANS | FLAG_ALT2_TRANS)) != 0))
  1406. {
  1407. ApplySpecialAttribute2(tr,word_phonemes,dictionary_flags[0]);
  1408. }
  1409. dictionary_flags[0] |= was_unpronouncable;
  1410. memcpy(word_start, word_copy2, word_copy_length);
  1411. return(dictionary_flags[0]);
  1412. } // end of TranslateWord
  1413. static void SetPlist2(PHONEME_LIST2 *p, unsigned char phcode)
  1414. {//==========================================================
  1415. p->phcode = phcode;
  1416. p->stresslevel = 0;
  1417. p->tone_ph = 0;
  1418. p->synthflags = embedded_flag;
  1419. p->sourceix = 0;
  1420. embedded_flag = 0;
  1421. }
  1422. static int CountSyllables(unsigned char *phonemes)
  1423. {//===============================================
  1424. int count = 0;
  1425. int phon;
  1426. while((phon = *phonemes++) != 0)
  1427. {
  1428. if(phoneme_tab[phon]->type == phVOWEL)
  1429. count++;
  1430. }
  1431. return(count);
  1432. }
  1433. void Word_EmbeddedCmd()
  1434. {//====================
  1435. // Process embedded commands for emphasis, sayas, and break
  1436. int embedded_cmd;
  1437. int value;
  1438. do
  1439. {
  1440. embedded_cmd = embedded_list[embedded_read++];
  1441. value = embedded_cmd >> 8;
  1442. switch(embedded_cmd & 0x1f)
  1443. {
  1444. case EMBED_Y:
  1445. option_sayas = value;
  1446. break;
  1447. case EMBED_F:
  1448. option_emphasis = value;
  1449. break;
  1450. case EMBED_B:
  1451. // break command
  1452. if(value == 0)
  1453. pre_pause = 0; // break=none
  1454. else
  1455. pre_pause += value;
  1456. break;
  1457. }
  1458. } while(((embedded_cmd & 0x80) == 0) && (embedded_read < embedded_ix));
  1459. } // end of Word_EmbeddedCmd
  1460. int SetTranslator2(const char *new_language)
  1461. {//=========================================
  1462. // Set translator2 to a second language
  1463. int new_phoneme_tab;
  1464. if((new_phoneme_tab = SelectPhonemeTableName(new_language)) >= 0)
  1465. {
  1466. if((translator2 != NULL) && (strcmp(new_language,translator2_language) != 0))
  1467. {
  1468. // we already have an alternative translator, but not for the required language, delete it
  1469. DeleteTranslator(translator2);
  1470. translator2 = NULL;
  1471. }
  1472. if(translator2 == NULL)
  1473. {
  1474. translator2 = SelectTranslator(new_language);
  1475. strcpy(translator2_language,new_language);
  1476. if(LoadDictionary(translator2, new_language, 0) != 0)
  1477. {
  1478. SelectPhonemeTable(voice->phoneme_tab_ix); // revert to original phoneme table
  1479. new_phoneme_tab = -1;
  1480. translator2_language[0] = 0;
  1481. }
  1482. translator2->phoneme_tab_ix = new_phoneme_tab;
  1483. }
  1484. }
  1485. return(new_phoneme_tab);
  1486. } // end of SetTranslator2
  1487. static int TranslateWord2(Translator *tr, char *word, WORD_TAB *wtab, int pre_pause, int next_pause)
  1488. {//=================================================================================================
  1489. int flags=0;
  1490. int stress;
  1491. int next_stress;
  1492. int next_tone=0;
  1493. unsigned char *p;
  1494. int srcix;
  1495. int found_dict_flag;
  1496. unsigned char ph_code;
  1497. PHONEME_LIST2 *plist2;
  1498. PHONEME_TAB *ph;
  1499. int max_stress;
  1500. int max_stress_ix=0;
  1501. int prev_vowel = -1;
  1502. int pitch_raised = 0;
  1503. int switch_phonemes = -1;
  1504. int first_phoneme = 1;
  1505. int source_ix;
  1506. int len;
  1507. int ix;
  1508. int sylimit; // max. number of syllables in a word to be combined with a preceding preposition
  1509. const char *new_language;
  1510. unsigned char bad_phoneme[4];
  1511. int word_flags;
  1512. int word_copy_len;
  1513. char word_copy[N_WORD_BYTES+1];
  1514. char word_replaced[N_WORD_BYTES+1];
  1515. char old_dictionary_name[40];
  1516. if((f_logespeak != NULL) && (logging_type & 8))
  1517. {
  1518. fprintf(f_logespeak,"WORD: flg=%.5x len=%d '",wtab->flags,wtab->length);
  1519. for(ix=0; ix<40; ix++)
  1520. {
  1521. if(word[ix]==0) break;
  1522. fputc(word[ix], f_logespeak);
  1523. }
  1524. fprintf(f_logespeak,"'\n");
  1525. }
  1526. len = wtab->length;
  1527. if(len > 31) len = 31;
  1528. source_ix = (wtab->sourceix & 0x7ff) | (len << 11); // bits 0-10 sourceix, bits 11-15 word length
  1529. word_flags = wtab[0].flags;
  1530. if(word_flags & FLAG_EMBEDDED)
  1531. {
  1532. embedded_flag = SFLAG_EMBEDDED;
  1533. Word_EmbeddedCmd();
  1534. }
  1535. if((word[0] == 0) || (word_flags & FLAG_DELETE_WORD))
  1536. {
  1537. // nothing to translate. Add a dummy phoneme to carry any embedded commands
  1538. if(embedded_flag)
  1539. {
  1540. ph_list2[n_ph_list2].phcode = phonEND_WORD;
  1541. ph_list2[n_ph_list2].stresslevel = 0;
  1542. ph_list2[n_ph_list2].wordstress = 0;
  1543. ph_list2[n_ph_list2].tone_ph = 0;
  1544. ph_list2[n_ph_list2].synthflags = embedded_flag;
  1545. ph_list2[n_ph_list2].sourceix = 0;
  1546. n_ph_list2++;
  1547. embedded_flag = 0;
  1548. }
  1549. word_phonemes[0] = 0;
  1550. return(0);
  1551. }
  1552. // after a $pause word attribute, ignore a $pause attribute on the next two words
  1553. if(tr->prepause_timeout > 0)
  1554. tr->prepause_timeout--;
  1555. if((option_sayas & 0xf0) == 0x10)
  1556. {
  1557. if(!(word_flags & FLAG_FIRST_WORD))
  1558. {
  1559. // SAYAS_CHARS, SAYAS_GLYPHS, or SAYAS_SINGLECHARS. Pause between each word.
  1560. pre_pause += 4;
  1561. }
  1562. }
  1563. if(word_flags & FLAG_FIRST_UPPER)
  1564. {
  1565. if((option_capitals > 2) && (embedded_ix < N_EMBEDDED_LIST-6))
  1566. {
  1567. // indicate capital letter by raising pitch
  1568. if(embedded_flag)
  1569. embedded_list[embedded_ix-1] &= ~0x80; // already embedded command before this word, remove terminator
  1570. if((pitch_raised = option_capitals) == 3)
  1571. pitch_raised = 20; // default pitch raise for capitals
  1572. embedded_list[embedded_ix++] = EMBED_P+0x40+0x80 + (pitch_raised << 8); // raise pitch
  1573. embedded_flag = SFLAG_EMBEDDED;
  1574. }
  1575. }
  1576. p = (unsigned char *)word_phonemes;
  1577. if(word_flags & FLAG_PHONEMES)
  1578. {
  1579. // The input is in phoneme mnemonics, not language text
  1580. int c1;
  1581. char lang_name[12];
  1582. if(memcmp(word,"_^_",3)==0)
  1583. {
  1584. // switch languages
  1585. word+=3;
  1586. for(ix=0;;)
  1587. {
  1588. c1 = *word++;
  1589. if((c1==' ') || (c1==0))
  1590. break;
  1591. lang_name[ix++] = tolower(c1);
  1592. }
  1593. lang_name[ix] = 0;
  1594. if((ix = LookupPhonemeTable(lang_name)) > 0)
  1595. {
  1596. SelectPhonemeTable(ix);
  1597. word_phonemes[0] = phonSWITCH;
  1598. word_phonemes[1] = ix;
  1599. word_phonemes[2] = 0;
  1600. }
  1601. }
  1602. else
  1603. {
  1604. EncodePhonemes(word,word_phonemes,bad_phoneme);
  1605. }
  1606. flags = FLAG_FOUND;
  1607. }
  1608. else
  1609. {
  1610. int c2;
  1611. ix = 0;
  1612. while(((c2 = word_copy[ix] = word[ix]) != ' ') && (c2 != 0) && (ix < N_WORD_BYTES)) ix++;
  1613. word_copy_len = ix;
  1614. word_replaced[2] = 0;
  1615. flags = TranslateWord(translator, word, next_pause, wtab, &word_replaced[2]);
  1616. if(flags & FLAG_SPELLWORD)
  1617. {
  1618. // re-translate the word as individual letters, separated by spaces
  1619. memcpy(word, word_copy, word_copy_len);
  1620. return(flags);
  1621. }
  1622. if((flags & FLAG_COMBINE) && !(wtab[1].flags & FLAG_PHONEMES))
  1623. {
  1624. char *p2;
  1625. int ok = 1;
  1626. unsigned int flags2[2];
  1627. int c_word2;
  1628. char ph_buf[N_WORD_PHONEMES];
  1629. flags2[0] = 0;
  1630. sylimit = tr->langopts.param[LOPT_COMBINE_WORDS];
  1631. // LANG=cs,sk
  1632. // combine a preposition with the following word
  1633. p2 = word;
  1634. while(*p2 != ' ') p2++;
  1635. utf8_in(&c_word2, p2+1); // first character of the next word;
  1636. if(!iswalpha(c_word2))
  1637. {
  1638. ok =0;
  1639. }
  1640. if(ok != 0)
  1641. {
  1642. strcpy(ph_buf,word_phonemes);
  1643. flags2[0] = TranslateWord(translator, p2+1, 0, wtab+1, NULL);
  1644. if((flags2[0] & FLAG_WAS_UNPRONOUNCABLE) || (word_phonemes[0] == phonSWITCH))
  1645. ok = 0;
  1646. if(sylimit & 0x100)
  1647. {
  1648. // only if the second word has $alt attribute
  1649. if((flags2[0] & FLAG_ALT_TRANS) == 0)
  1650. {
  1651. ok = 0;
  1652. }
  1653. }
  1654. if((sylimit & 0x200) && ((wtab+1)->flags & FLAG_LAST_WORD))
  1655. {
  1656. // not if the next word is end-of-sentence
  1657. ok = 0;
  1658. }
  1659. if(ok == 0)
  1660. {
  1661. strcpy(word_phonemes,ph_buf);
  1662. }
  1663. }
  1664. if(ok)
  1665. {
  1666. *p2 = '-'; // replace next space by hyphen
  1667. flags = TranslateWord(translator, word, next_pause, wtab, NULL); // translate the combined word
  1668. if((sylimit > 0) && (CountSyllables(p) > (sylimit & 0x1f)))
  1669. {
  1670. // revert to separate words
  1671. *p2 = ' ';
  1672. flags = TranslateWord(translator, word, next_pause, wtab, NULL);
  1673. }
  1674. else
  1675. {
  1676. if(flags == 0)
  1677. flags = flags2[0]; // no flags for the combined word, so use flags from the second word eg. lang-hu "nem december 7-e"
  1678. flags |= FLAG_SKIPWORDS;
  1679. dictionary_skipwords = 1;
  1680. }
  1681. }
  1682. }
  1683. if(p[0]==phonSWITCH)
  1684. {
  1685. int switch_attempt;
  1686. strcpy(old_dictionary_name, dictionary_name);
  1687. for(switch_attempt=0; switch_attempt < 2; switch_attempt++)
  1688. {
  1689. // this word uses a different language
  1690. memcpy(word, word_copy, word_copy_len);
  1691. new_language = (char *)(&p[1]);
  1692. if(new_language[0]==0)
  1693. new_language = "en";
  1694. switch_phonemes = SetTranslator2(new_language);
  1695. if(switch_phonemes >= 0)
  1696. {
  1697. // re-translate the word using the new translator
  1698. wtab[0].flags |= FLAG_TRANSLATOR2;
  1699. if(word_replaced[2] != 0)
  1700. {
  1701. word_replaced[0] = 0; // byte before the start of the word
  1702. word_replaced[1] = ' ';
  1703. flags = TranslateWord(translator2, &word_replaced[1], next_pause, wtab, NULL);
  1704. }
  1705. else
  1706. flags = TranslateWord(translator2, word, next_pause, wtab, &word_replaced[2]);
  1707. }
  1708. if(p[0] != phonSWITCH)
  1709. break;
  1710. }
  1711. // strcpy((char *)p,translator2->word_phonemes);
  1712. if(p[0] == phonSWITCH)
  1713. return(FLAG_SPELLWORD);
  1714. if(switch_phonemes < 0)
  1715. {
  1716. // language code is not recognised or 2nd translator won't translate it
  1717. p[0] = phonSCHWA; // just say something
  1718. p[1] = phonSCHWA;
  1719. p[2] = 0;
  1720. }
  1721. // ?? Option to convert from language2 phonemes to the equivalent language1 phonemes
  1722. // ?? Option to set the word-stress according to language1 rules eg. lang=fr)
  1723. if(ChangeEquivalentPhonemes(tr, switch_phonemes, (char *)p))
  1724. {
  1725. // Phonemes have been converted from the foreign language to the native language
  1726. switch_phonemes = -1;
  1727. }
  1728. if(switch_phonemes == -1)
  1729. {
  1730. strcpy(dictionary_name, old_dictionary_name);
  1731. SelectPhonemeTable(voice->phoneme_tab_ix);
  1732. // leave switch_phonemes set, but use the original phoneme table number.
  1733. // This will suppress LOPT_REGRESSIVE_VOICING
  1734. switch_phonemes = voice->phoneme_tab_ix; // original phoneme table
  1735. }
  1736. }
  1737. if(!(word_flags & FLAG_HYPHEN))
  1738. {
  1739. if(flags & FLAG_PAUSE1)
  1740. {
  1741. if(pre_pause < 1)
  1742. pre_pause = 1;
  1743. }
  1744. if((flags & FLAG_PREPAUSE) && !(word_flags && (FLAG_LAST_WORD | FLAG_FIRST_WORD)) && !(wtab[-1].flags & FLAG_FIRST_WORD) && (tr->prepause_timeout == 0))
  1745. {
  1746. // the word is marked in the dictionary list with $pause
  1747. if(pre_pause < 4) pre_pause = 4;
  1748. tr->prepause_timeout = 3;
  1749. }
  1750. }
  1751. if((option_emphasis >= 3) && (pre_pause < 1))
  1752. pre_pause = 1;
  1753. }
  1754. plist2 = &ph_list2[n_ph_list2];
  1755. stress = 0;
  1756. next_stress = 1;
  1757. srcix = 0;
  1758. max_stress = -1;
  1759. found_dict_flag = 0;
  1760. if((flags & FLAG_FOUND) && !(flags & FLAG_TEXTMODE))
  1761. found_dict_flag = SFLAG_DICTIONARY;
  1762. while((pre_pause > 0) && (n_ph_list2 < N_PHONEME_LIST-4))
  1763. {
  1764. // add pause phonemes here. Either because of punctuation (brackets or quotes) in the
  1765. // text, or because the word is marked in the dictionary lookup as a conjunction
  1766. if(pre_pause > 1)
  1767. {
  1768. SetPlist2(&ph_list2[n_ph_list2++],phonPAUSE);
  1769. pre_pause -= 2;
  1770. }
  1771. else
  1772. {
  1773. SetPlist2(&ph_list2[n_ph_list2++],phonPAUSE_NOLINK);
  1774. pre_pause--;
  1775. }
  1776. tr->end_stressed_vowel = 0; // forget about the previous word
  1777. tr->prev_dict_flags[0] = 0;
  1778. tr->prev_dict_flags[1] = 0;
  1779. }
  1780. if((option_capitals==1) && (word_flags & FLAG_FIRST_UPPER))
  1781. {
  1782. SetPlist2(&ph_list2[n_ph_list2++],phonPAUSE_SHORT);
  1783. SetPlist2(&ph_list2[n_ph_list2++],phonCAPITAL);
  1784. if((word_flags & FLAG_ALL_UPPER) && IsAlpha(word[1]))
  1785. {
  1786. // word > 1 letter and all capitals
  1787. SetPlist2(&ph_list2[n_ph_list2++],phonPAUSE_SHORT);
  1788. SetPlist2(&ph_list2[n_ph_list2++],phonCAPITAL);
  1789. }
  1790. }
  1791. if(switch_phonemes >= 0)
  1792. {
  1793. if((p[0] == phonPAUSE) && (p[1] == phonSWITCH))
  1794. {
  1795. // the new word starts with a phoneme table switch, so there's no need to switch before it.
  1796. if(ph_list2[n_ph_list2-1].phcode == phonSWITCH)
  1797. {
  1798. //previous phoneme is also a phonSWITCH, delete it
  1799. n_ph_list2--;
  1800. }
  1801. }
  1802. else
  1803. {
  1804. // this word uses a different phoneme table
  1805. if(ph_list2[n_ph_list2-1].phcode == phonSWITCH)
  1806. {
  1807. //previous phoneme is also a phonSWITCH, just change its phoneme table number
  1808. n_ph_list2--;
  1809. }
  1810. else
  1811. {
  1812. SetPlist2(&ph_list2[n_ph_list2],phonSWITCH);
  1813. }
  1814. ph_list2[n_ph_list2++].tone_ph = switch_phonemes; // temporary phoneme table number
  1815. }
  1816. }
  1817. // remove initial pause from a word if it follows a hyphen
  1818. if((word_flags & FLAG_HYPHEN) && (phoneme_tab[*p]->type == phPAUSE))
  1819. p++;
  1820. if((p[0] == 0) && (embedded_flag))
  1821. {
  1822. // no phonemes. Insert a very short pause to carry an embedded command
  1823. p[0] = phonPAUSE_VSHORT;
  1824. p[1] = 0;
  1825. }
  1826. while(((ph_code = *p++) != 0) && (n_ph_list2 < N_PHONEME_LIST-4))
  1827. {
  1828. if(ph_code == 255)
  1829. continue; // unknown phoneme
  1830. // Add the phonemes to the first stage phoneme list (ph_list2)
  1831. ph = phoneme_tab[ph_code];
  1832. if(ph_code == phonSWITCH)
  1833. {
  1834. ph_list2[n_ph_list2].phcode = ph_code;
  1835. ph_list2[n_ph_list2].sourceix = 0;
  1836. ph_list2[n_ph_list2].synthflags = embedded_flag;
  1837. ph_list2[n_ph_list2++].tone_ph = *p;
  1838. SelectPhonemeTable(*p);
  1839. p++;
  1840. }
  1841. else if(ph->type == phSTRESS)
  1842. {
  1843. // don't add stress phonemes codes to the list, but give their stress
  1844. // value to the next vowel phoneme
  1845. // std_length is used to hold stress number or (if >10) a tone number for a tone language
  1846. if(ph->program == 0)
  1847. next_stress = ph->std_length;
  1848. else
  1849. {
  1850. // for tone languages, the tone number for a syllable follows the vowel
  1851. if(prev_vowel >= 0)
  1852. {
  1853. ph_list2[prev_vowel].tone_ph = ph_code;
  1854. }
  1855. else
  1856. {
  1857. next_tone = ph_code; // no previous vowel, apply to the next vowel
  1858. }
  1859. }
  1860. }
  1861. else if(ph_code == phonSYLLABIC)
  1862. {
  1863. // mark the previous phoneme as a syllabic consonant
  1864. prev_vowel = n_ph_list2-1;
  1865. ph_list2[prev_vowel].synthflags |= SFLAG_SYLLABLE;
  1866. ph_list2[prev_vowel].stresslevel = next_stress;
  1867. }
  1868. else if(ph_code == phonLENGTHEN)
  1869. {
  1870. ph_list2[n_ph_list2-1].synthflags |= SFLAG_LENGTHEN;
  1871. }
  1872. else if(ph_code == phonEND_WORD)
  1873. {
  1874. // a || symbol in a phoneme string was used to indicate a word boundary
  1875. // Don't add this phoneme to the list, but make sure the next phoneme has
  1876. // a newword indication
  1877. srcix = source_ix+1;
  1878. }
  1879. else if(ph_code == phonX1)
  1880. {
  1881. // a language specific action
  1882. if(tr->langopts.param[LOPT_IT_DOUBLING])
  1883. {
  1884. flags |= FLAG_DOUBLING;
  1885. }
  1886. }
  1887. else
  1888. {
  1889. ph_list2[n_ph_list2].phcode = ph_code;
  1890. ph_list2[n_ph_list2].tone_ph = 0;
  1891. ph_list2[n_ph_list2].synthflags = embedded_flag | found_dict_flag;
  1892. embedded_flag = 0;
  1893. ph_list2[n_ph_list2].sourceix = srcix;
  1894. srcix = 0;
  1895. if(ph->type == phVOWEL)
  1896. {
  1897. stress = next_stress;
  1898. next_stress = 1; // default is 'unstressed'
  1899. if(stress >= 4)
  1900. {
  1901. any_stressed_words = 1;
  1902. }
  1903. if((prev_vowel >= 0) && (n_ph_list2-1) != prev_vowel)
  1904. ph_list2[n_ph_list2-1].stresslevel = stress; // set stress for previous consonant
  1905. ph_list2[n_ph_list2].synthflags |= SFLAG_SYLLABLE;
  1906. prev_vowel = n_ph_list2;
  1907. if(stress > max_stress)
  1908. {
  1909. max_stress = stress;
  1910. max_stress_ix = n_ph_list2;
  1911. }
  1912. if(next_tone != 0)
  1913. {
  1914. ph_list2[n_ph_list2].tone_ph = next_tone;
  1915. next_tone=0;
  1916. }
  1917. }
  1918. else
  1919. {
  1920. if(first_phoneme && tr->langopts.param[LOPT_IT_DOUBLING])
  1921. {
  1922. if(((tr->prev_dict_flags[0] & FLAG_DOUBLING) && (tr->langopts.param[LOPT_IT_DOUBLING] & 1)) ||
  1923. (tr->end_stressed_vowel && (tr->langopts.param[LOPT_IT_DOUBLING] & 2)))
  1924. {
  1925. // italian, double the initial consonant if the previous word ends with a
  1926. // stressed vowel, or is marked with a flag
  1927. ph_list2[n_ph_list2].synthflags |= SFLAG_LENGTHEN;
  1928. }
  1929. }
  1930. }
  1931. ph_list2[n_ph_list2].stresslevel = stress;
  1932. n_ph_list2++;
  1933. first_phoneme = 0;
  1934. }
  1935. }
  1936. if(word_flags & FLAG_COMMA_AFTER)
  1937. {
  1938. SetPlist2(&ph_list2[n_ph_list2++],phonPAUSE_CLAUSE);
  1939. }
  1940. // don't set new-word if there is a hyphen before it
  1941. if((word_flags & FLAG_HYPHEN) == 0)
  1942. {
  1943. plist2->sourceix = source_ix;
  1944. }
  1945. tr->end_stressed_vowel = 0;
  1946. if((stress >= 4) && (phoneme_tab[ph_list2[n_ph_list2-1].phcode]->type == phVOWEL))
  1947. {
  1948. tr->end_stressed_vowel = 1; // word ends with a stressed vowel
  1949. }
  1950. if(switch_phonemes >= 0)
  1951. {
  1952. // this word uses a different phoneme table, now switch back
  1953. strcpy(dictionary_name, old_dictionary_name);
  1954. SelectPhonemeTable(voice->phoneme_tab_ix);
  1955. SetPlist2(&ph_list2[n_ph_list2],phonSWITCH);
  1956. ph_list2[n_ph_list2++].tone_ph = voice->phoneme_tab_ix; // original phoneme table number
  1957. }
  1958. if(pitch_raised > 0)
  1959. {
  1960. embedded_list[embedded_ix++] = EMBED_P+0x60+0x80 + (pitch_raised << 8); // lower pitch
  1961. SetPlist2(&ph_list2[n_ph_list2],phonPAUSE_SHORT);
  1962. ph_list2[n_ph_list2++].synthflags = SFLAG_EMBEDDED;
  1963. }
  1964. if(flags & FLAG_STRESS_END2)
  1965. {
  1966. // this's word's stress could be increased later
  1967. ph_list2[max_stress_ix].synthflags |= SFLAG_PROMOTE_STRESS;
  1968. }
  1969. tr->prev_dict_flags[0] = flags;
  1970. return(flags);
  1971. } // end of TranslateWord2
  1972. static int EmbeddedCommand(unsigned int &source_index)
  1973. {//===================================================
  1974. // An embedded command to change the pitch, volume, etc.
  1975. // returns number of commands added to embedded_list
  1976. // pitch,speed,amplitude,expression,reverb,tone,voice,sayas
  1977. const char *commands = "PSARHTIVYMUBF";
  1978. int value = -1;
  1979. int sign = 0;
  1980. unsigned char c;
  1981. char *p;
  1982. int cmd;
  1983. c = source[source_index];
  1984. if(c == '+')
  1985. {
  1986. sign = 0x40;
  1987. source_index++;
  1988. }
  1989. else if(c == '-')
  1990. {
  1991. sign = 0x60;
  1992. source_index++;
  1993. }
  1994. if(isdigit(source[source_index]))
  1995. {
  1996. value = atoi(&source[source_index]);
  1997. while(isdigit(source[source_index]))
  1998. source_index++;
  1999. }
  2000. c = source[source_index++];
  2001. if(embedded_ix >= (N_EMBEDDED_LIST - 2))
  2002. return(0); // list is full
  2003. if((p = strchr_w(commands,c)) == NULL)
  2004. return(0);
  2005. cmd = (p - commands)+1;
  2006. if(value == -1)
  2007. {
  2008. value = embedded_default[cmd];
  2009. sign = 0;
  2010. }
  2011. if(cmd == EMBED_Y)
  2012. {
  2013. option_sayas2 = value;
  2014. count_sayas_digits = 0;
  2015. }
  2016. if(cmd == EMBED_F)
  2017. {
  2018. if(value >= 3)
  2019. word_emphasis = FLAG_EMPHASIZED;
  2020. else
  2021. word_emphasis = 0;
  2022. }
  2023. embedded_list[embedded_ix++] = cmd + sign + (value << 8);
  2024. return(1);
  2025. } // end of EmbeddedCommand
  2026. static int SubstituteChar(Translator *tr, unsigned int c, unsigned int next_in, int *insert, int *wordflags)
  2027. {//=========================================================================================
  2028. int ix;
  2029. unsigned int word;
  2030. unsigned int new_c, c2, c_lower;
  2031. int upper_case = 0;
  2032. static int ignore_next = 0;
  2033. const unsigned int *replace_chars;
  2034. if(ignore_next)
  2035. {
  2036. ignore_next = 0;
  2037. return(8);
  2038. }
  2039. if(c == 0) return(0);
  2040. if((replace_chars = tr->langopts.replace_chars) == NULL)
  2041. return(c);
  2042. // there is a list of character codes to be substituted with alternative codes
  2043. if(iswupper(c_lower = c))
  2044. {
  2045. c_lower = towlower(c);
  2046. upper_case = 1;
  2047. }
  2048. new_c = 0;
  2049. for(ix=0; (word = replace_chars[ix]) != 0; ix+=2)
  2050. {
  2051. if(c_lower == (word & 0xffff))
  2052. {
  2053. if((word >> 16) == 0)
  2054. {
  2055. new_c = replace_chars[ix+1];
  2056. break;
  2057. }
  2058. if((word >> 16) == (unsigned int)towlower(next_in))
  2059. {
  2060. new_c = replace_chars[ix+1];
  2061. ignore_next = 1;
  2062. break;
  2063. }
  2064. }
  2065. }
  2066. if(new_c == 0)
  2067. return(c); // no substitution
  2068. if(new_c & 0xffe00000)
  2069. {
  2070. // there is a second character to be inserted
  2071. // don't convert the case of the second character unless the next letter is also upper case
  2072. c2 = new_c >> 16;
  2073. if(upper_case && iswupper(next_in))
  2074. c2 = towupper(c2);
  2075. *insert = c2;
  2076. new_c &= 0xffff;
  2077. }
  2078. if(upper_case)
  2079. new_c = towupper(new_c);
  2080. *wordflags |= FLAG_CHAR_REPLACED;
  2081. return(new_c);
  2082. }
  2083. static int TranslateChar(Translator *tr, char *ptr, int prev_in, unsigned int c, unsigned int next_in, int *insert, int *wordflags)
  2084. {//================================================================================================================
  2085. // To allow language specific examination and replacement of characters
  2086. int code;
  2087. int initial;
  2088. int medial;
  2089. int final;
  2090. int next2;
  2091. static const unsigned char hangul_compatibility[0x34] = {
  2092. 0, 0x00,0x01,0xaa,0x02,0xac,0xad,0x03,
  2093. 0x04,0x05,0xb0,0xb1,0xb2,0xb3,0xb4,0xb4,
  2094. 0xb6,0x06,0x07,0x08,0xb9,0x09,0x0a,0xbc,
  2095. 0x0c,0x0d,0x0e,0x0f,0x10,0x11,0x12,0x61,
  2096. 0x62,0x63,0x64,0x65,0x66,0x67,0x68,0x69,
  2097. 0x6a,0x6b,0x6c,0x6d,0x6e,0x6f,0x70,0x71,
  2098. 0x72,0x73,0x74,0x75
  2099. };
  2100. switch(tr->translator_name)
  2101. {
  2102. case L('a','f'):
  2103. case L('n','l'):
  2104. // look for 'n and replace by a special character (unicode: schwa)
  2105. if(!iswalpha(prev_in))
  2106. {
  2107. utf8_in(&next2, &ptr[1]);
  2108. if((c == '\'') && IsSpace(next2))
  2109. {
  2110. if((next_in == 'n') && (tr->translator_name == L('a','f')))
  2111. {
  2112. // n preceded by either apostrophe or U2019 "right single quotation mark"
  2113. ptr[0] = ' '; // delete the n
  2114. return(0x0259); // replace ' by unicode schwa character
  2115. }
  2116. if((next_in == 'n') || (next_in == 't'))
  2117. {
  2118. // Dutch, [@n] and [@t]
  2119. return(0x0259); // replace ' by unicode schwa character
  2120. }
  2121. }
  2122. }
  2123. break;
  2124. case L('k','o'):
  2125. if(((code = c - 0xac00) >= 0) && (c <= 0xd7af))
  2126. {
  2127. // break a syllable hangul into 2 or 3 individual jamo
  2128. initial = (code/28)/21;
  2129. medial = (code/28) % 21;
  2130. final = code % 28;
  2131. if(initial == 11)
  2132. {
  2133. // null initial
  2134. c = medial + 0x1161;
  2135. if(final > 0)
  2136. *insert = final + 0x11a7;
  2137. }
  2138. else
  2139. {
  2140. // extact the initial and insert the remainder with a null initial
  2141. c = initial + 0x1100;
  2142. *insert = (11*28*21) + (medial*28) + final + 0xac00;
  2143. }
  2144. return(c);
  2145. }
  2146. else if(((code = c - 0x3130) >= 0) && (code < 0x34))
  2147. {
  2148. // Hangul compatibility jamo
  2149. return(hangul_compatibility[code] + 0x1100);
  2150. }
  2151. break;
  2152. }
  2153. return(SubstituteChar(tr, c, next_in, insert, wordflags));
  2154. }
  2155. static const char *UCase_ga[] = {"bp","bhf","dt","gc","hA","mb","nd","ng","ts","tA","nA",NULL};
  2156. int UpperCaseInWord(Translator *tr, char *word, int c)
  2157. {//=====================================================
  2158. int ix;
  2159. int len;
  2160. const char *p;
  2161. if(tr->translator_name == L('g','a'))
  2162. {
  2163. // Irish
  2164. for(ix=0; ; ix++)
  2165. {
  2166. if((p = UCase_ga[ix]) == NULL)
  2167. break;
  2168. len = strlen(p);
  2169. if((word[-len]==' ') && (memcmp(&word[-len+1], p, len-1) == 0))
  2170. {
  2171. if((c == p[len-1]) || ((p[len-1]=='A') && IsVowel(tr, c)))
  2172. return(1);
  2173. }
  2174. }
  2175. }
  2176. return(0);
  2177. }
  2178. void *TranslateClause(Translator *tr, FILE *f_text, const void *vp_input, int *tone_out, char **voice_change)
  2179. {//==========================================================================================================
  2180. int ix;
  2181. int c;
  2182. int cc;
  2183. unsigned int source_index=0;
  2184. unsigned int prev_source_index=0;
  2185. int source_index_word=0;
  2186. int prev_in;
  2187. int prev_out=' ';
  2188. int prev_out2;
  2189. int prev_in_save=0;
  2190. int next_in;
  2191. int next_in_nbytes;
  2192. int char_inserted=0;
  2193. int clause_pause;
  2194. int pre_pause_add=0;
  2195. int word_mark = 0;
  2196. int all_upper_case=FLAG_ALL_UPPER;
  2197. int finished;
  2198. int single_quoted;
  2199. int phoneme_mode = 0;
  2200. int dict_flags = 0; // returned from dictionary lookup
  2201. int word_flags; // set here
  2202. int next_word_flags;
  2203. int embedded_count = 0;
  2204. int letter_count = 0;
  2205. int space_inserted = 0;
  2206. int syllable_marked = 0;
  2207. int decimal_sep_count = 0;
  2208. char *word;
  2209. char *p;
  2210. int j, k;
  2211. int n_digits;
  2212. int charix_top=0;
  2213. short charix[N_TR_SOURCE+4];
  2214. WORD_TAB words[N_CLAUSE_WORDS];
  2215. static char voice_change_name[40];
  2216. int word_count=0; // index into words
  2217. char sbuf[N_TR_SOURCE];
  2218. int terminator;
  2219. int tone;
  2220. int tone2;
  2221. if(tr==NULL)
  2222. {
  2223. return(NULL);
  2224. }
  2225. p_textinput = (unsigned char *)vp_input;
  2226. p_wchar_input = (wchar_t *)vp_input;
  2227. embedded_ix = 0;
  2228. embedded_read = 0;
  2229. pre_pause = 0;
  2230. any_stressed_words = 0;
  2231. if((clause_start_char = count_characters) < 0)
  2232. clause_start_char = 0;
  2233. clause_start_word = count_words + 1;
  2234. for(ix=0; ix<N_TR_SOURCE; ix++)
  2235. charix[ix] = 0;
  2236. terminator = ReadClause(tr, f_text, source, charix, &charix_top, N_TR_SOURCE, &tone2, voice_change_name);
  2237. if((f_logespeak != NULL) && (logging_type & 4))
  2238. {
  2239. fprintf(f_logespeak,"CLAUSE %x:\n",terminator);
  2240. for(p=source; *p != 0; p++)
  2241. fputc(*p, f_logespeak);
  2242. fprintf(f_logespeak,"ENDCLAUSE\n");
  2243. fflush(f_logespeak);
  2244. }
  2245. p = source;
  2246. charix[charix_top+1] = 0;
  2247. charix[charix_top+2] = 0x7fff;
  2248. charix[charix_top+3] = 0;
  2249. clause_pause = (terminator & 0xfff) * 10; // mS
  2250. tone = (terminator >> 12) & 0x7;
  2251. if(tone2 != 0)
  2252. {
  2253. // override the tone type
  2254. tone = tone2;
  2255. }
  2256. for(p=source; *p != 0; p++)
  2257. {
  2258. if(!isspace2(*p))
  2259. {
  2260. break;
  2261. }
  2262. }
  2263. if(*p == 0)
  2264. {
  2265. // No characters except spaces. This is not a sentence.
  2266. // Don't add this pause, just make up the previous pause to this value;
  2267. clause_pause -= max_clause_pause;
  2268. if(clause_pause < 0)
  2269. clause_pause = 0;
  2270. terminator &= ~CLAUSE_BIT_SENTENCE; // clear sentence bit
  2271. max_clause_pause += clause_pause;
  2272. }
  2273. else
  2274. {
  2275. max_clause_pause = clause_pause;
  2276. }
  2277. tr->clause_terminator = terminator;
  2278. if(new_sentence)
  2279. {
  2280. count_sentences++;
  2281. if(skip_sentences > 0)
  2282. {
  2283. skip_sentences--;
  2284. if(skip_sentences == 0)
  2285. skipping_text = 0;
  2286. }
  2287. }
  2288. memset(&ph_list2[0],0,sizeof(ph_list2[0]));
  2289. ph_list2[0].phcode = phonPAUSE_SHORT;
  2290. n_ph_list2 = 1;
  2291. tr->prev_last_stress = 0;
  2292. tr->prepause_timeout = 0;
  2293. tr->expect_verb=0;
  2294. tr->expect_noun=0;
  2295. tr->expect_past=0;
  2296. tr->expect_verb_s=0;
  2297. tr->phonemes_repeat_count = 0;
  2298. tr->end_stressed_vowel=0;
  2299. tr->prev_dict_flags[0] = 0;
  2300. tr->prev_dict_flags[1] = 0;
  2301. word_count = 0;
  2302. single_quoted = 0;
  2303. word_flags = 0;
  2304. next_word_flags = 0;
  2305. sbuf[0] = 0;
  2306. sbuf[1] = ' ';
  2307. sbuf[2] = ' ';
  2308. ix = 3;
  2309. prev_in = ' ';
  2310. words[0].start = ix;
  2311. words[0].flags = 0;
  2312. finished = 0;
  2313. for(j=0; charix[j]<=0; j++);
  2314. words[0].sourceix = charix[j];
  2315. k = 0;
  2316. while(charix[j] != 0)
  2317. {
  2318. // count the number of characters (excluding multibyte continuation bytes)
  2319. if(charix[j++] != -1)
  2320. k++;
  2321. }
  2322. words[0].length = k;
  2323. while(!finished && (ix < (int)sizeof(sbuf))&& (n_ph_list2 < N_PHONEME_LIST-4))
  2324. {
  2325. prev_out2 = prev_out;
  2326. utf8_in2(&prev_out,&sbuf[ix-1],1); // prev_out = sbuf[ix-1];
  2327. if(tr->langopts.tone_numbers && IsDigit09(prev_out) && IsAlpha(prev_out2))
  2328. {
  2329. // tone numbers can be part of a word, consider them as alphabetic
  2330. prev_out = 'a';
  2331. }
  2332. if(prev_in_save != 0)
  2333. {
  2334. prev_in = prev_in_save;
  2335. prev_in_save = 0;
  2336. }
  2337. else if(source_index > 0)
  2338. {
  2339. utf8_in2(&prev_in,&source[source_index-1],1); // prev_in = source[source_index-1];
  2340. }
  2341. prev_source_index = source_index;
  2342. if(char_inserted)
  2343. {
  2344. c = char_inserted;
  2345. char_inserted = 0;
  2346. }
  2347. else
  2348. {
  2349. source_index += utf8_in(&cc,&source[source_index]); // cc = source[source_index++];
  2350. c = cc;
  2351. }
  2352. next_in_nbytes = utf8_in(&next_in,&source[source_index]);
  2353. if(c == 0)
  2354. {
  2355. finished = 1;
  2356. c = ' ';
  2357. }
  2358. if((c == CTRL_EMBEDDED) || (c == ctrl_embedded))
  2359. {
  2360. // start of embedded command in the text
  2361. int srcix = source_index-1;
  2362. if(prev_in != ' ')
  2363. {
  2364. c = ' ';
  2365. prev_in_save = c;
  2366. source_index--;
  2367. }
  2368. else
  2369. {
  2370. embedded_count += EmbeddedCommand(source_index);
  2371. prev_in_save = prev_in;
  2372. // replace the embedded command by spaces
  2373. memset(&source[srcix],' ',source_index-srcix);
  2374. source_index = srcix;
  2375. continue;
  2376. }
  2377. }
  2378. if((option_sayas2 == SAYAS_KEY) && (c != ' '))
  2379. {
  2380. if((prev_in == ' ') && (next_in == ' '))
  2381. option_sayas2 = SAYAS_SINGLE_CHARS; // single character, speak its name
  2382. c = towlower2(c);
  2383. }
  2384. if(phoneme_mode)
  2385. {
  2386. all_upper_case = FLAG_PHONEMES;
  2387. if((c == ']') && (next_in == ']'))
  2388. {
  2389. phoneme_mode = 0;
  2390. source_index++;
  2391. c = ' ';
  2392. }
  2393. }
  2394. else if((option_sayas2 & 0xf0) == SAYAS_DIGITS)
  2395. {
  2396. if(iswdigit(c))
  2397. {
  2398. count_sayas_digits++;
  2399. if(count_sayas_digits > (option_sayas2 & 0xf))
  2400. {
  2401. // break after the specified number of digits
  2402. c = ' ';
  2403. space_inserted = 1;
  2404. count_sayas_digits = 0;
  2405. }
  2406. }
  2407. else
  2408. {
  2409. count_sayas_digits = 0;
  2410. if(iswdigit(prev_out))
  2411. {
  2412. c = ' ';
  2413. space_inserted = 1;
  2414. }
  2415. }
  2416. }
  2417. else if((option_sayas2 & 0x10) == 0)
  2418. {
  2419. // speak as words
  2420. #ifdef deleted
  2421. if((c == '/') && (tr->langopts.testing & 2) && IsDigit09(next_in) && IsAlpha(prev_out))
  2422. {
  2423. // TESTING, explicit indication of stressed syllable by /2 after the word
  2424. word_mark = next_in-'0';
  2425. source_index++;
  2426. c = ' ';
  2427. }
  2428. #endif
  2429. if((c == 0x92) || (c == 0xb4) || (c == 0x2019) || (c == 0x2032))
  2430. c = '\''; // 'microsoft' quote or sexed closing single quote, or prime - possibly used as apostrophe
  2431. if(((c == 0x2018) || (c == '?')) && IsAlpha(prev_out) && IsAlpha(next_in))
  2432. {
  2433. // ? between two letters may be a smart-quote replaced by ?
  2434. c = '\'';
  2435. }
  2436. if(c == CHAR_EMPHASIS)
  2437. {
  2438. // this character is a marker that the previous word is the focus of the clause
  2439. c = ' ';
  2440. word_flags |= FLAG_FOCUS;
  2441. }
  2442. if(c == CHAR_COMMA_BREAK)
  2443. {
  2444. c = ' ';
  2445. word_flags |= FLAG_COMMA_AFTER;
  2446. }
  2447. c = TranslateChar(tr, &source[source_index], prev_in,c, next_in, &char_inserted, &word_flags); // optional language specific function
  2448. if(c == 8)
  2449. continue; // ignore this character
  2450. if(char_inserted)
  2451. next_in = char_inserted;
  2452. // allow certain punctuation within a word (usually only apostrophe)
  2453. if(!IsAlpha(c) && !IsSpace(c) && (wcschr(tr->punct_within_word,c) == 0))
  2454. {
  2455. if(IsAlpha(prev_out))
  2456. {
  2457. if(tr->langopts.tone_numbers && IsDigit09(c) && !IsDigit09(next_in))
  2458. {
  2459. // allow a tone number as part of the word
  2460. }
  2461. else
  2462. {
  2463. c = ' '; // ensure we have an end-of-word terminator
  2464. space_inserted = 1;
  2465. }
  2466. }
  2467. }
  2468. if(iswdigit(prev_out))
  2469. {
  2470. if(!iswdigit(c) && (c != '.') && (c != ',') && (c != ' '))
  2471. {
  2472. c = ' '; // terminate digit string with a space
  2473. space_inserted = 1;
  2474. }
  2475. }
  2476. else
  2477. {
  2478. if(prev_in != ',')
  2479. {
  2480. decimal_sep_count = 0;
  2481. }
  2482. }
  2483. if(c == '[')
  2484. {
  2485. if((next_in == '\002') || ((next_in == '[') && option_phoneme_input))
  2486. {
  2487. // "[\002" is used internally to start phoneme mode
  2488. phoneme_mode = FLAG_PHONEMES;
  2489. source_index++;
  2490. continue;
  2491. }
  2492. }
  2493. if(IsAlpha(c))
  2494. {
  2495. if(!IsAlpha(prev_out) || (tr->langopts.ideographs && ((c > 0x3040) || (prev_out > 0x3040))))
  2496. {
  2497. if(wcschr(tr->punct_within_word,prev_out) == 0)
  2498. letter_count = 0; // don't reset count for an apostrophy within a word
  2499. if((prev_out != ' ') && (wcschr(tr->punct_within_word,prev_out) == 0))
  2500. {
  2501. // start of word, insert space if not one there already
  2502. c = ' ';
  2503. space_inserted = 1;
  2504. if(!IsBracket(prev_out)) // ?? perhaps only set FLAG_NOSPACE for . - / (hyphenated words, URLs, etc)
  2505. {
  2506. next_word_flags |= FLAG_NOSPACE;
  2507. }
  2508. }
  2509. else
  2510. {
  2511. if(iswupper(c))
  2512. word_flags |= FLAG_FIRST_UPPER;
  2513. if((prev_out == ' ') && iswdigit(sbuf[ix-2]) && !iswdigit(prev_in))
  2514. {
  2515. // word, following a number, but with a space between
  2516. // Add an extra space, to distinguish "2 a" from "2a"
  2517. sbuf[ix++] = ' ';
  2518. words[word_count].start++;
  2519. }
  2520. }
  2521. }
  2522. letter_count++;
  2523. if(tr->letter_bits_offset > 0)
  2524. {
  2525. if(((c < 0x250) && (prev_out >= tr->letter_bits_offset)) ||
  2526. ((c >= tr->letter_bits_offset) && (letter_count > 1) && (prev_out < 0x250)))
  2527. {
  2528. // Don't mix native and Latin characters in the same word
  2529. // Break into separate words
  2530. c = ' ';
  2531. space_inserted = 1;
  2532. word_flags |= FLAG_HYPHEN_AFTER;
  2533. next_word_flags |= FLAG_HYPHEN;
  2534. }
  2535. }
  2536. if(iswupper(c))
  2537. {
  2538. c = towlower2(c);
  2539. if((j = tr->langopts.param[LOPT_CAPS_IN_WORD]) > 0)
  2540. {
  2541. if((j == 2) && (syllable_marked == 0))
  2542. {
  2543. char_inserted = c;
  2544. c = 0x2c8; // stress marker
  2545. syllable_marked = 1;
  2546. }
  2547. }
  2548. else
  2549. {
  2550. if(iswlower(prev_in))
  2551. {
  2552. // lower case followed by upper case in a word
  2553. if(UpperCaseInWord(tr, &sbuf[ix], c) == 1)
  2554. {
  2555. // convert to lower case and continue
  2556. c = towlower(c);
  2557. }
  2558. else
  2559. {
  2560. c = ' '; // lower case followed by upper case, treat as new word
  2561. space_inserted = 1;
  2562. prev_in_save = c;
  2563. // next_word_flags |= FLAG_NOSPACE; // problem: prevents FLAG_HAS_DOT being set
  2564. }
  2565. }
  2566. else if((c != ' ') && iswupper(prev_in) && iswlower(next_in))
  2567. {
  2568. int next2_in;
  2569. utf8_in(&next2_in,&source[source_index + next_in_nbytes]);
  2570. if(IsAlpha(next2_in))
  2571. {
  2572. // changing from upper to lower case, start new word at the last uppercase, if 3 or more letters
  2573. c = ' ';
  2574. space_inserted = 1;
  2575. prev_in_save = c;
  2576. next_word_flags |= FLAG_NOSPACE;
  2577. }
  2578. }
  2579. }
  2580. }
  2581. else
  2582. {
  2583. if((all_upper_case) && (letter_count > 2))
  2584. {
  2585. if((c == 's') && (next_in==' '))
  2586. {
  2587. c = ' ';
  2588. all_upper_case |= FLAG_HAS_PLURAL;
  2589. if(sbuf[ix-1] == '\'')
  2590. sbuf[ix-1] = ' ';
  2591. }
  2592. else
  2593. all_upper_case = 0; // current word contains lower case letters, not "'s"
  2594. }
  2595. else
  2596. all_upper_case = 0;
  2597. }
  2598. }
  2599. else if(c=='-')
  2600. {
  2601. if(!IsSpace(prev_in) && IsAlpha(next_in))
  2602. {
  2603. if(prev_out != ' ')
  2604. {
  2605. // previous 'word' not yet ended (not alpha or numeric), start new word now.
  2606. c = ' ';
  2607. space_inserted = 1;
  2608. }
  2609. else
  2610. {
  2611. // '-' between two letters is a hyphen, treat as a space
  2612. word_flags |= FLAG_HYPHEN;
  2613. if(word_count > 0)
  2614. words[word_count-1].flags |= FLAG_HYPHEN_AFTER;
  2615. c = ' ';
  2616. }
  2617. }
  2618. else if((prev_in==' ') && (next_in==' '))
  2619. {
  2620. // ' - ' dash between two spaces, treat as pause
  2621. c = ' ';
  2622. pre_pause_add = 4;
  2623. }
  2624. else if(next_in=='-')
  2625. {
  2626. // double hyphen, treat as pause
  2627. source_index++;
  2628. c = ' ';
  2629. pre_pause_add = 4;
  2630. }
  2631. else if((prev_out == ' ') && IsAlpha(sbuf[ix-2]) && !IsAlpha(prev_in))
  2632. {
  2633. // insert extra space between a word + space + hyphen, to distinguish 'a -2' from 'a-2'
  2634. sbuf[ix++] = ' ';
  2635. words[word_count].start++;
  2636. }
  2637. }
  2638. else if(c == '.')
  2639. {
  2640. if(prev_out == '.')
  2641. {
  2642. // multiple dots, separate by spaces. Note >3 dots has been replaced by elipsis
  2643. c = ' ';
  2644. space_inserted = 1;
  2645. }
  2646. else if((word_count > 0) && !(words[word_count-1].flags & FLAG_NOSPACE) && IsAlpha(prev_in))
  2647. {
  2648. // dot after a word, with space following, probably an abbreviation
  2649. words[word_count-1].flags |= FLAG_HAS_DOT;
  2650. if(IsSpace(next_in) || (next_in == '-'))
  2651. c = ' '; // remove the dot if it's followed by a space or hyphen, so that it's not pronounced
  2652. }
  2653. }
  2654. else if(c == '\'')
  2655. {
  2656. if(((prev_in == '.') || iswalnum(prev_in)) && IsAlpha(next_in))
  2657. {
  2658. // between two letters, or in an abbreviation (eg. u.s.a.'s). Consider the apostrophe as part of the word
  2659. single_quoted = 0;
  2660. }
  2661. else if((tr->langopts.param[LOPT_APOSTROPHE] & 1) && IsAlpha(next_in))
  2662. {
  2663. single_quoted = 0; // apostrophe at start of word is part of the word
  2664. }
  2665. else if((tr->langopts.param[LOPT_APOSTROPHE] & 2) && IsAlpha(prev_in))
  2666. {
  2667. single_quoted = 0; // apostrophe at end of word is part of the word
  2668. }
  2669. else if((wcschr(tr->char_plus_apostrophe,prev_in) != 0) && (prev_out2 == ' '))
  2670. {
  2671. // consider single character plus apostrophe as a word
  2672. single_quoted = 0;
  2673. if(next_in == ' ')
  2674. {
  2675. source_index++; // skip following space
  2676. }
  2677. }
  2678. else
  2679. {
  2680. if((prev_out == 's') && (single_quoted==0))
  2681. {
  2682. // looks like apostrophe after an 's'
  2683. c = ' ';
  2684. }
  2685. else
  2686. {
  2687. if(IsSpace(prev_out))
  2688. single_quoted = 1;
  2689. else
  2690. single_quoted = 0;
  2691. pre_pause_add = 4; // single quote
  2692. c = ' ';
  2693. }
  2694. }
  2695. }
  2696. else
  2697. #ifdef deleted
  2698. // Brackets are now recognised in TranslateRules()
  2699. if(IsBracket(c))
  2700. {
  2701. pre_pause_add = 4;
  2702. c = ' ';
  2703. }
  2704. else
  2705. #endif
  2706. if(lookupwchar(breaks,c) != 0)
  2707. {
  2708. c = ' '; // various characters to treat as space
  2709. }
  2710. else if(iswdigit(c))
  2711. {
  2712. if(tr->langopts.tone_numbers && IsAlpha(prev_out) && !IsDigit(next_in))
  2713. {
  2714. }
  2715. else if((prev_out != ' ') && !iswdigit(prev_out))
  2716. {
  2717. if((prev_out != tr->langopts.decimal_sep) || ((decimal_sep_count > 0) && (tr->langopts.decimal_sep == ',')))
  2718. {
  2719. c = ' ';
  2720. space_inserted = 1;
  2721. }
  2722. else
  2723. {
  2724. decimal_sep_count = 1;
  2725. }
  2726. }
  2727. else if((prev_out == ' ') && IsAlpha(sbuf[ix-2]) && !IsAlpha(prev_in))
  2728. {
  2729. // insert extra space between a word and a number, to distinguish 'a 2' from 'a2'
  2730. sbuf[ix++] = ' ';
  2731. words[word_count].start++;
  2732. }
  2733. }
  2734. }
  2735. if(IsSpace(c))
  2736. {
  2737. if(prev_out == ' ')
  2738. {
  2739. word_flags |= FLAG_MULTIPLE_SPACES;
  2740. continue; // multiple spaces
  2741. }
  2742. if((cc == 0x09) || (cc == 0x0a))
  2743. {
  2744. next_word_flags |= FLAG_MULTIPLE_SPACES; // tab or newline, not a simple space
  2745. }
  2746. if(space_inserted)
  2747. {
  2748. // count the number of characters since the start of the word
  2749. j = 0;
  2750. k = source_index - 1;
  2751. while((k >= source_index_word) && (charix[k] != 0))
  2752. {
  2753. if(charix[k] > 0) // don't count initial bytes of multi-byte character
  2754. j++;
  2755. k--;
  2756. }
  2757. words[word_count].length = j;
  2758. }
  2759. source_index_word = source_index;
  2760. // end of 'word'
  2761. sbuf[ix++] = ' ';
  2762. if((word_count < N_CLAUSE_WORDS-1) && (ix > words[word_count].start))
  2763. {
  2764. if(embedded_count > 0)
  2765. {
  2766. // there are embedded commands before this word
  2767. embedded_list[embedded_ix-1] |= 0x80; // terminate list of commands for this word
  2768. words[word_count].flags |= FLAG_EMBEDDED;
  2769. embedded_count = 0;
  2770. }
  2771. words[word_count].pre_pause = pre_pause;
  2772. words[word_count].flags |= (all_upper_case | word_flags | word_emphasis);
  2773. words[word_count].wmark = word_mark;
  2774. if(pre_pause > 0)
  2775. {
  2776. // insert an extra space before the word, to prevent influence from previous word across the pause
  2777. for(j=ix; j>words[word_count].start; j--)
  2778. {
  2779. sbuf[j] = sbuf[j-1];
  2780. }
  2781. sbuf[j] = ' ';
  2782. words[word_count].start++;
  2783. ix++;
  2784. }
  2785. word_count++;
  2786. words[word_count].start = ix;
  2787. words[word_count].flags = 0;
  2788. for(j=source_index; charix[j] <= 0; j++); // skip blanks
  2789. words[word_count].sourceix = charix[j];
  2790. k = 0;
  2791. while(charix[j] != 0)
  2792. {
  2793. // count the number of characters (excluding multibyte continuation bytes)
  2794. if(charix[j++] != -1)
  2795. k++;
  2796. }
  2797. words[word_count].length = k;
  2798. word_flags = next_word_flags;
  2799. next_word_flags = 0;
  2800. pre_pause = 0;
  2801. word_mark = 0;
  2802. all_upper_case = FLAG_ALL_UPPER;
  2803. syllable_marked = 0;
  2804. }
  2805. if(space_inserted)
  2806. {
  2807. source_index = prev_source_index; // rewind to the previous character
  2808. char_inserted = 0;
  2809. space_inserted = 0;
  2810. }
  2811. }
  2812. else
  2813. {
  2814. if((ix < (N_TR_SOURCE - 4)))
  2815. ix += utf8_out(c,&sbuf[ix]); // sbuf[ix++] = c;
  2816. }
  2817. if(pre_pause_add > pre_pause)
  2818. pre_pause = pre_pause_add;
  2819. pre_pause_add = 0;
  2820. }
  2821. if((word_count==0) && (embedded_count > 0))
  2822. {
  2823. // add a null 'word' to carry the embedded command flag
  2824. embedded_list[embedded_ix-1] |= 0x80;
  2825. words[word_count].flags |= FLAG_EMBEDDED;
  2826. word_count = 1;
  2827. }
  2828. tr->clause_end = &sbuf[ix-1];
  2829. sbuf[ix] = 0;
  2830. words[0].pre_pause = 0; // don't add extra pause at beginning of clause
  2831. words[word_count].pre_pause = 8;
  2832. if(word_count > 0)
  2833. {
  2834. ix = word_count-1;
  2835. while((ix > 0) && (IsBracket(sbuf[words[ix].start])))
  2836. ix--; // the last word is a bracket, mark the previous word as last
  2837. words[ix].flags |= FLAG_LAST_WORD;
  2838. // FLAG_NOSPACE check to avoid recognizing .mr -mr
  2839. if((terminator & CLAUSE_DOT) && !(words[word_count-1].flags & FLAG_NOSPACE))
  2840. words[word_count-1].flags |= FLAG_HAS_DOT;
  2841. }
  2842. words[0].flags |= FLAG_FIRST_WORD;
  2843. for(ix=0; ix < word_count; ix++)
  2844. {
  2845. int nx;
  2846. int c_temp;
  2847. char *pn;
  2848. char *pw;
  2849. int nw;
  2850. char number_buf[150];
  2851. WORD_TAB num_wtab[50]; // copy of 'words', when splitting numbers into parts
  2852. // start speaking at a specified word position in the text?
  2853. count_words++;
  2854. if(skip_words > 0)
  2855. {
  2856. skip_words--;
  2857. if(skip_words == 0)
  2858. skipping_text = 0;
  2859. }
  2860. if(skipping_text)
  2861. continue;
  2862. current_alphabet = NULL;
  2863. // digits should have been converted to Latin alphabet ('0' to '9')
  2864. word = pw = &sbuf[words[ix].start];
  2865. if(iswdigit(word[0]) && (tr->langopts.break_numbers != BREAK_THOUSANDS))
  2866. {
  2867. // Languages with 100000 numbers. Remove thousands separators so that we can insert them again later
  2868. pn = number_buf;
  2869. while(pn < &number_buf[sizeof(number_buf)-20])
  2870. {
  2871. if(iswdigit(*pw))
  2872. {
  2873. *pn++ = *pw++;
  2874. }
  2875. else if((*pw == tr->langopts.thousands_sep) && (pw[1] == ' ')
  2876. && iswdigit(pw[2]) && (pw[3] != ' ') && (pw[4] != ' ')) // don't allow only 1 or 2 digits in the final part
  2877. {
  2878. pw += 2;
  2879. ix++; // skip "word"
  2880. }
  2881. else
  2882. {
  2883. nx = pw - word;
  2884. memset(word,' ',nx);
  2885. nx = pn - number_buf;
  2886. memcpy(word,number_buf,nx);
  2887. break;
  2888. }
  2889. }
  2890. pw = word;
  2891. }
  2892. for(n_digits=0; iswdigit(word[n_digits]); n_digits++); // count consecutive digits
  2893. if(n_digits > 4)
  2894. {
  2895. // word is entirely digits, insert commas and break into 3 digit "words"
  2896. number_buf[0] = ' ';
  2897. pn = &number_buf[1];
  2898. nx = n_digits;
  2899. nw = 0;
  2900. if((n_digits > tr->langopts.max_digits) || (word[0] == '0'))
  2901. words[ix].flags |= FLAG_INDIVIDUAL_DIGITS;
  2902. while(pn < &number_buf[sizeof(number_buf)-20])
  2903. {
  2904. if(!isdigit(c = *pw++) && (c != tr->langopts.decimal_sep))
  2905. break;
  2906. *pn++ = c;
  2907. nx--;
  2908. if((nx > 0) && (tr->langopts.break_numbers & (1 << nx)))
  2909. {
  2910. memcpy(&num_wtab[nw++], &words[ix], sizeof(WORD_TAB)); // copy the 'words' entry for each word of numbers
  2911. if(tr->langopts.thousands_sep != ' ')
  2912. {
  2913. *pn++ = tr->langopts.thousands_sep;
  2914. }
  2915. *pn++ = ' ';
  2916. if((words[ix].flags & FLAG_INDIVIDUAL_DIGITS) == 0)
  2917. {
  2918. if(tr->langopts.break_numbers & (1 << (nx-1)))
  2919. {
  2920. // the next group only has 1 digits, make it three
  2921. *pn++ = '0';
  2922. *pn++ = '0';
  2923. }
  2924. if(tr->langopts.break_numbers & (1 << (nx-2)))
  2925. {
  2926. // the next group only has 2 digits (eg. Indian languages), make it three
  2927. *pn++ = '0';
  2928. }
  2929. }
  2930. }
  2931. }
  2932. pw--;
  2933. memcpy(&num_wtab[nw], &words[ix], sizeof(WORD_TAB)*2); // the original number word, and the word after it
  2934. for(j=1; j<=nw; j++)
  2935. {
  2936. num_wtab[j].flags &= ~(FLAG_MULTIPLE_SPACES | FLAG_EMBEDDED); // don't use these flags for subsequent parts when splitting a number
  2937. }
  2938. // include the next few characters, in case there are an ordinal indicator or other suffix
  2939. memcpy(pn, pw, 16);
  2940. pn[16] = 0;
  2941. nw = 0;
  2942. for(pw = &number_buf[1]; pw < pn;)
  2943. {
  2944. // keep wflags for each part, for FLAG_HYPHEN_AFTER
  2945. dict_flags = TranslateWord2(tr, pw, &num_wtab[nw++], words[ix].pre_pause,0 );
  2946. while(*pw++ != ' ');
  2947. words[ix].pre_pause = 0;
  2948. }
  2949. }
  2950. else
  2951. {
  2952. pre_pause = 0;
  2953. dict_flags = TranslateWord2(tr, word, &words[ix], words[ix].pre_pause, words[ix+1].pre_pause);
  2954. if(pre_pause > words[ix+1].pre_pause)
  2955. {
  2956. words[ix+1].pre_pause = pre_pause;
  2957. pre_pause = 0;
  2958. }
  2959. if(dict_flags & FLAG_SPELLWORD)
  2960. {
  2961. // redo the word, speaking single letters
  2962. for(pw = word; *pw != ' ';)
  2963. {
  2964. memset(number_buf,' ',9);
  2965. nx = utf8_in(&c_temp, pw);
  2966. memcpy(&number_buf[2],pw,nx);
  2967. TranslateWord2(tr, &number_buf[2], &words[ix], 0, 0 );
  2968. pw += nx;
  2969. }
  2970. }
  2971. if((dict_flags & (FLAG_ALLOW_DOT | FLAG_NEEDS_DOT)) && (ix == word_count - 1 - dictionary_skipwords) && (terminator & CLAUSE_DOT))
  2972. {
  2973. // probably an abbreviation such as Mr. or B. rather than end of sentence
  2974. clause_pause = 10;
  2975. tone = 4;
  2976. }
  2977. }
  2978. if(dict_flags & FLAG_SKIPWORDS)
  2979. {
  2980. // dictionary indicates skip next word(s)
  2981. while(dictionary_skipwords > 0)
  2982. {
  2983. words[ix+dictionary_skipwords].flags |= FLAG_DELETE_WORD;
  2984. dictionary_skipwords--;
  2985. }
  2986. }
  2987. }
  2988. if(embedded_read < embedded_ix)
  2989. {
  2990. // any embedded commands not yet processed?
  2991. Word_EmbeddedCmd();
  2992. }
  2993. for(ix=0; ix<2; ix++)
  2994. {
  2995. // terminate the clause with 2 PAUSE phonemes
  2996. PHONEME_LIST2 *p2;
  2997. p2 = &ph_list2[n_ph_list2 + ix];
  2998. p2->phcode = phonPAUSE;
  2999. p2->stresslevel = 0;
  3000. p2->sourceix = source_index;
  3001. p2->synthflags = 0;
  3002. }
  3003. n_ph_list2 += 2;
  3004. if(count_words == 0)
  3005. {
  3006. clause_pause = 0;
  3007. }
  3008. if(Eof() && ((word_count == 0) || (option_endpause==0)))
  3009. {
  3010. clause_pause = 10;
  3011. }
  3012. MakePhonemeList(tr, clause_pause, new_sentence);
  3013. phoneme_list[N_PHONEME_LIST].ph = NULL; // recognize end of phoneme_list array, in Generate()
  3014. phoneme_list[N_PHONEME_LIST].sourceix = 1;
  3015. if(embedded_count) // ???? is this needed
  3016. {
  3017. phoneme_list[n_phoneme_list-2].synthflags = SFLAG_EMBEDDED;
  3018. embedded_list[embedded_ix-1] |= 0x80;
  3019. embedded_list[embedded_ix] = 0x80;
  3020. }
  3021. prev_clause_pause = clause_pause;
  3022. *tone_out = tone;
  3023. new_sentence = 0;
  3024. if(terminator & CLAUSE_BIT_SENTENCE)
  3025. {
  3026. new_sentence = 1; // next clause is a new sentence
  3027. }
  3028. if(voice_change != NULL)
  3029. {
  3030. // return new voice name if an embedded voice change command terminated the clause
  3031. if(terminator & CLAUSE_BIT_VOICE)
  3032. *voice_change = voice_change_name;
  3033. else
  3034. *voice_change = NULL;
  3035. }
  3036. if(Eof() || (vp_input==NULL))
  3037. return(NULL);
  3038. if(option_multibyte == espeakCHARS_WCHAR)
  3039. return((void *)p_wchar_input);
  3040. else
  3041. return((void *)p_textinput);
  3042. } // end of TranslateClause
  3043. void InitText(int control)
  3044. {//=======================
  3045. count_sentences = 0;
  3046. count_words = 0;
  3047. end_character_position = 0;
  3048. skip_sentences = 0;
  3049. skip_marker[0] = 0;
  3050. skip_words = 0;
  3051. skip_characters = 0;
  3052. skipping_text = 0;
  3053. new_sentence = 1;
  3054. prev_clause_pause = 0;
  3055. option_sayas = 0;
  3056. option_sayas2 = 0;
  3057. option_emphasis = 0;
  3058. word_emphasis = 0;
  3059. embedded_flag = 0;
  3060. InitText2();
  3061. if((control & espeakKEEP_NAMEDATA) == 0)
  3062. {
  3063. InitNamedata();
  3064. }
  3065. }