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  • /*--- ast_say_enumeration: call language-specific functions without file descriptors */
    int ast_say_enumeration(struct ast_channel *chan, int num, const char *ints, const char *language, const char *options)
    
    	return(ast_say_enumeration_full(chan, num, ints, language, options, -1, -1));
    }
    
    /*--- ast_say_enumeration_full_en: English syntax */
    /* This is the default syntax, if no other syntax defined in this file is used */
    static int ast_say_enumeration_full_en(struct ast_channel *chan, int num, const char *ints, const char *language, int audiofd, int ctrlfd)
    {
    	int res = 0, t = 0;
    
    	char fn[256] = "";
    	
    
    	while(!res && num) {
    		if (num < 0) {
    			snprintf(fn, sizeof(fn), "digits/minus"); /* kind of senseless for enumerations, but our best effort for error checking */
    			if ( num > INT_MIN ) {
    				num = -num;
    			} else {
    				num = 0;
    			}	
    
    		} else if (num < 20) {
    
    			snprintf(fn, sizeof(fn), "digits/h-%d", num);
    
    		} else if (num < 100) { 
    			int tens = num / 10;
    			num = num % 10;
    			if (num == 0) {
    				snprintf(fn, sizeof(fn), "digits/h-%d", (tens * 10));
    			} else {
    				snprintf(fn, sizeof(fn), "digits/%d", (tens * 10));
    			}
    
    		} else if (num < 1000) {
    
    			int hundreds = num / 100;
    			num = num % 100;
    			if (hundreds > 1 || t == 1) {
    				res = ast_say_number_full_en(chan, hundreds, ints, language, audiofd, ctrlfd);
    			}			
    			if (res)
    				return res;
    			if (num) {
    				snprintf(fn, sizeof(fn), "digits/hundred");
    
    				snprintf(fn, sizeof(fn), "digits/h-hundred");
    
    		} else if (num < 1000000) {
    			int thousands = num / 1000;
    			num = num % 1000;
    			if (thousands > 1 || t == 1) {
    				res = ast_say_number_full_en(chan, thousands, ints, language, audiofd, ctrlfd);
    
    			if (res)
    				return res;
    			if (num) {					
    				snprintf(fn, sizeof(fn), "digits/thousand");
    			} else {
    				snprintf(fn, sizeof(fn), "digits/h-thousand");
    
    			t = 1;
    		} else if (num < 1000000000) {
    			int millions = num / 1000000;
    			num = num % 1000000;
    			t = 1;
    			res = ast_say_number_full_en(chan, millions, ints, language, audiofd, ctrlfd);
    			if (res)
    				return res;
    			if (num) {					
    				snprintf(fn, sizeof(fn), "digits/million");
    			} else {
    				snprintf(fn, sizeof(fn), "digits/h-million");
    
    		} else if (num < INT_MAX) {
    			int billions = num / 1000000000;
    			num = num % 1000000000;
    			t = 1;
    			res = ast_say_number_full_en(chan, billions, ints, language, audiofd, ctrlfd);
    			if (res)
    				return res;
    			if (num) {					
    				snprintf(fn, sizeof(fn), "digits/billion");
    			} else {
    				snprintf(fn, sizeof(fn), "digits/h-billion");
    
    		} else if (num == INT_MAX) {
    			snprintf(fn, sizeof(fn), "digits/h-last");
    			num = 0;
    		} else {
    			ast_log(LOG_DEBUG, "Number '%d' is too big for me\n", num);
    			res = -1;
    
    		if (!res) {
    
    			if (!ast_streamfile(chan, fn, language)) {
    
    				if ((audiofd > -1) && (ctrlfd > -1)) {
    
    					res = ast_waitstream_full(chan, ints, audiofd, ctrlfd);
    				} else {
    					res = ast_waitstream(chan, ints);
    				}
    			}
    			ast_stopstream(chan);
    
    /*--- ast_say_enumeration_full_da: Danish syntax */
    static int ast_say_enumeration_full_da(struct ast_channel *chan, int num, const char *ints, const char *language, const char *options, int audiofd, int ctrlfd)
    {
    	/* options can be: '' or 'm' male gender; 'f' female gender; 'n' neuter gender; 'p' plural */
    	int res = 0, t = 0;
    	char fn[256] = "", fna[256] = "";
    	char *gender;
    
    	if (options && !strncasecmp(options, "f",1)) {
    		gender = "F";
    	} else if (options && !strncasecmp(options, "n",1)) {
    		gender = "N";
    	} else {
    		gender = "";
    	}
    
    	if (!num) 
    		return ast_say_digits_full(chan, 0,ints, language, audiofd, ctrlfd);
    
    	while(!res && num) {
    		if (num < 0) {
    			snprintf(fn, sizeof(fn), "digits/minus"); /* kind of senseless for enumerations, but our best effort for error checking */
    			if ( num > INT_MIN ) {
    				num = -num;
    			} else {
    				num = 0;
    			}	
    		} else if (num < 100 && t) {
    			snprintf(fn, sizeof(fn), "digits/and");
    			t = 0;
    		} else if (num < 20) {
    			snprintf(fn, sizeof(fn), "digits/h-%d%s", num, gender);
    			num = 0;
    		} else if (num < 100) {
    			int ones = num % 10;
    			if (ones) {
    				snprintf(fn, sizeof(fn), "digits/%d-and", ones);
    				num -= ones;
    			} else {
    				snprintf(fn, sizeof(fn), "digits/h-%d%s", num, gender);
    				num = 0;
    			}
    		} else if (num == 100 && t == 0) {
    			snprintf(fn, sizeof(fn), "digits/h-hundred%s", gender);
    			num = 0;
    		} else if (num < 1000) {
    			int hundreds = num / 100;
    			num = num % 100;
    			if (hundreds == 1) {
    				snprintf(fn, sizeof(fn), "digits/1N");
    			} else {
    				snprintf(fn, sizeof(fn), "digits/%d", hundreds);
    			}
    			if (num) {					
    				snprintf(fna, sizeof(fna), "digits/hundred");
    			} else {
    				snprintf(fna, sizeof(fna), "digits/h-hundred%s", gender);
    			}
    			t = 1;
    		} else 	if (num < 1000000) {
    			int thousands = num / 1000;
    			num = num % 1000;
    			if (thousands == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/thousand");
    				} else {
    					if (t) {
    						snprintf(fn, sizeof(fn), "digits/1N");
    						snprintf(fna, sizeof(fna), "digits/h-thousand%s", gender);
    					} else {
    						snprintf(fn, sizeof(fn), "digits/h-thousand%s", gender);
    					}
    				}
    			} else {
    				res = ast_say_number_full_de(chan, thousands, ints, language, options, audiofd, ctrlfd);
    				if (res) {
    					return res;
    				}
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/thousand");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/h-thousand%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num < 1000000000) {
    			int millions = num / 1000000;
    			num = num % 1000000;
    			if (millions == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1F");
    					snprintf(fna, sizeof(fna), "digits/million");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/h-million%s", gender);
    				}
    			} else {
    				res = ast_say_number_full_de(chan, millions, ints, language, options, audiofd, ctrlfd);
    				if (res) {
    					return res;
    				}
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/millions");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/h-million%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num < INT_MAX) {
    			int billions = num / 1000000000;
    			num = num % 1000000000;
    			if (billions == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1F");
    					snprintf(fna, sizeof(fna), "digits/milliard");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/h-milliard%s", gender);
    				}
    			} else {
    				res = ast_say_number_full_de(chan, billions, ints, language, options, audiofd, ctrlfd);
    				if (res)
    					return res;
    				if (num) {					
    					snprintf(fn, sizeof(fna), "digits/milliards");
    				} else {
    					snprintf(fn, sizeof(fna), "digits/h-milliard%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num == INT_MAX) {
    			snprintf(fn, sizeof(fn), "digits/h-last%s", gender);
    			num = 0;
    		} else {
    			ast_log(LOG_DEBUG, "Number '%d' is too big for me\n", num);
    			res = -1;
    		}
    
    		if (!res) {
    			if (!ast_streamfile(chan, fn, language)) {
    				if ((audiofd > -1) && (ctrlfd > -1)) 
    					res = ast_waitstream_full(chan, ints, audiofd, ctrlfd);
    				else  
    					res = ast_waitstream(chan, ints);
    			}
    			ast_stopstream(chan);
    			if (!res) {
    				if (strlen(fna) != 0 && !ast_streamfile(chan, fna, language)) {
    					if ((audiofd > -1) && (ctrlfd > -1)) {
    						res = ast_waitstream_full(chan, ints, audiofd, ctrlfd);
    					} else {
    						res = ast_waitstream(chan, ints);
    					}
    				}
    				ast_stopstream(chan);
    				strcpy(fna, "");
    			}
    		}
    	}
    	return res;
    }
    
    
    /*--- ast_say_enumeration_full_de: German syntax */
    static int ast_say_enumeration_full_de(struct ast_channel *chan, int num, const char *ints, const char *language, const char *options, int audiofd, int ctrlfd)
    
    	/* options can be: '' or 'm' male gender; 'f' female gender; 'n' neuter gender; 'p' plural */
    	int res = 0, t = 0;
    	char fn[256] = "", fna[256] = "";
    	char *gender;
    
    	if (options && !strncasecmp(options, "f",1)) {
    		gender = "F";
    	} else if (options && !strncasecmp(options, "n",1)) {
    		gender = "N";
    	} else {
    		gender = "";
    
    	if (!num) 
    		return ast_say_digits_full(chan, 0,ints, language, audiofd, ctrlfd);
    
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    	while(!res && num) {
    		if (num < 0) {
    			snprintf(fn, sizeof(fn), "digits/minus"); /* kind of senseless for enumerations, but our best effort for error checking */
    			if ( num > INT_MIN ) {
    				num = -num;
    			} else {
    				num = 0;
    			}	
    		} else if (num < 100 && t) {
    			snprintf(fn, sizeof(fn), "digits/and");
    			t = 0;
    		} else if (num < 20) {
    			snprintf(fn, sizeof(fn), "digits/h-%d%s", num, gender);
    			num = 0;
    		} else if (num < 100) {
    			int ones = num % 10;
    			if (ones) {
    				snprintf(fn, sizeof(fn), "digits/%d-and", ones);
    				num -= ones;
    			} else {
    				snprintf(fn, sizeof(fn), "digits/h-%d%s", num, gender);
    				num = 0;
    			}
    		} else if (num == 100 && t == 0) {
    			snprintf(fn, sizeof(fn), "digits/h-hundred%s", gender);
    			num = 0;
    		} else if (num < 1000) {
    			int hundreds = num / 100;
    			num = num % 100;
    			if (hundreds == 1) {
    				snprintf(fn, sizeof(fn), "digits/1N");
    			} else {
    				snprintf(fn, sizeof(fn), "digits/%d", hundreds);
    			}
    			if (num) {					
    				snprintf(fna, sizeof(fna), "digits/hundred");
    			} else {
    				snprintf(fna, sizeof(fna), "digits/h-hundred%s", gender);
    			}
    			t = 1;
    		} else 	if (num < 1000000) {
    			int thousands = num / 1000;
    			num = num % 1000;
    			if (thousands == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/thousand");
    				} else {
    					if (t) {
    						snprintf(fn, sizeof(fn), "digits/1N");
    						snprintf(fna, sizeof(fna), "digits/h-thousand%s", gender);
    					} else {
    						snprintf(fn, sizeof(fn), "digits/h-thousand%s", gender);
    					}
    				}
    			} else {
    				res = ast_say_number_full_de(chan, thousands, ints, language, options, audiofd, ctrlfd);
    				if (res) {
    					return res;
    				}
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/thousand");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/h-thousand%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num < 1000000000) {
    			int millions = num / 1000000;
    			num = num % 1000000;
    			if (millions == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1F");
    					snprintf(fna, sizeof(fna), "digits/million");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/h-million%s", gender);
    				}
    			} else {
    				res = ast_say_number_full_de(chan, millions, ints, language, options, audiofd, ctrlfd);
    				if (res) {
    					return res;
    				}
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/millions");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/h-million%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num < INT_MAX) {
    			int billions = num / 1000000000;
    			num = num % 1000000000;
    			if (billions == 1) {
    				if (num) {					
    					snprintf(fn, sizeof(fn), "digits/1F");
    					snprintf(fna, sizeof(fna), "digits/milliard");
    				} else {
    					snprintf(fn, sizeof(fn), "digits/1N");
    					snprintf(fna, sizeof(fna), "digits/h-milliard%s", gender);
    				}
    			} else {
    				res = ast_say_number_full_de(chan, billions, ints, language, options, audiofd, ctrlfd);
    				if (res)
    					return res;
    				if (num) {					
    					snprintf(fn, sizeof(fna), "digits/milliards");
    				} else {
    					snprintf(fn, sizeof(fna), "digits/h-milliard%s", gender);
    				}
    			}
    			t = 1;
    		} else if (num == INT_MAX) {
    			snprintf(fn, sizeof(fn), "digits/h-last%s", gender);
    			num = 0;
    		} else {
    			ast_log(LOG_DEBUG, "Number '%d' is too big for me\n", num);
    			res = -1;
    		}
    
    		if (!res) {
    			if (!ast_streamfile(chan, fn, language)) {
    
    				if ((audiofd > -1) && (ctrlfd > -1)) 
    
    					res = ast_waitstream_full(chan, ints, audiofd, ctrlfd);
    				else  
    					res = ast_waitstream(chan, ints);
    			}
    			ast_stopstream(chan);
    			if (!res) {
    				if (strlen(fna) != 0 && !ast_streamfile(chan, fna, language)) {
    
    					if ((audiofd > -1) && (ctrlfd > -1)) {
    
    						res = ast_waitstream_full(chan, ints, audiofd, ctrlfd);
    					} else {
    						res = ast_waitstream(chan, ints);
    					}
    				}
    				ast_stopstream(chan);
    				strcpy(fna, "");
    			}
    		}
    	}
    	return res;
    }
    
    int ast_say_date(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    {
    	if (!strcasecmp(lang, "en") ) {	/* English syntax */
    		return(ast_say_date_en(chan, t, ints, lang));
    
    	} else if (!strcasecmp(lang, "da") ) {	/* Danish syntax */
    		return(ast_say_date_da(chan, t, ints, lang));
    
    	} else if (!strcasecmp(lang, "de") ) {	/* German syntax */
    		return(ast_say_date_de(chan, t, ints, lang));
    	} else if (!strcasecmp(lang, "fr") ) {	/* French syntax */
    		return(ast_say_date_fr(chan, t, ints, lang));
    	} else if (!strcasecmp(lang, "nl") ) {	/* Dutch syntax */
    		return(ast_say_date_nl(chan, t, ints, lang));
    	} else if (!strcasecmp(lang, "pt") ) {	/* Portuguese syntax */
    		return(ast_say_date_pt(chan, t, ints, lang));
    
    	} else if (!strcasecmp(lang, "gr") ) {  			/* Greek syntax */
    		return(ast_say_date_gr(chan, t, ints, lang));
    
    	}
    
    	/* Default to English */
    	return(ast_say_date_en(chan, t, ints, lang));
    }
    
    /* English syntax */
    int ast_say_date_en(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    
    	if (!res)
    		res = ast_say_number(chan, tm.tm_mday, ints, lang, (char * ) NULL);
    
    	if (!res)
    		res = ast_waitstream(chan, ints);
    
    	if (!res)
    		res = ast_say_number(chan, tm.tm_year + 1900, ints, lang, (char *) NULL);
    	return res;
    }
    
    
    /* Danish syntax */
    int ast_say_date_da(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    	if (!res)
    		res = ast_say_enumeration(chan, tm.tm_mday, ints, lang, (char * ) NULL);
    	if (!res)
    		res = ast_waitstream(chan, ints);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    	if (!res) {
    		/* Year */
    		int year = tm.tm_year + 1900;
    		if (year > 1999) {	/* year 2000 and later */
    			res = ast_say_number(chan, year, ints, lang, (char *) NULL);	
    		} else {
    			if (year < 1100) {
    				/* I'm not going to handle 1100 and prior */
    				/* We'll just be silent on the year, instead of bombing out. */
    			} else {
    			    /* year 1100 to 1999. will anybody need this?!? */
    				snprintf(fn,sizeof(fn), "digits/%d", (year / 100) );
    				res = wait_file(chan, ints, fn, lang);
    				if (!res) {
    					res = wait_file(chan,ints, "digits/hundred", lang);
    					if (!res && year % 100 != 0) {
    						res = ast_say_number(chan, (year % 100), ints, lang, (char *) NULL);	
    					}
    				}
    			}
    		}
    	}
    	return res;
    }
    
    
    /* German syntax */
    int ast_say_date_de(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    
    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    
    		res = ast_say_enumeration(chan, tm.tm_mday, ints, lang, (char * ) NULL);
    
    		res = ast_waitstream(chan, ints);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    	if (!res) {
    		/* Year */
    		int year = tm.tm_year + 1900;
    		if (year > 1999) {	/* year 2000 and later */
    			res = ast_say_number(chan, year, ints, lang, (char *) NULL);	
    		} else {
    			if (year < 1100) {
    				/* I'm not going to handle 1100 and prior */
    				/* We'll just be silent on the year, instead of bombing out. */
    			} else {
    			    /* year 1100 to 1999. will anybody need this?!? */
    
    			    /* say 1967 as 'neunzehn hundert sieben und sechzig' */
    
    				snprintf(fn,sizeof(fn), "digits/%d", (year / 100) );
    				res = wait_file(chan, ints, fn, lang);
    				if (!res) {
    					res = wait_file(chan,ints, "digits/hundred", lang);
    					if (!res && year % 100 != 0) {
    						res = ast_say_number(chan, (year % 100), ints, lang, (char *) NULL);	
    					}
    				}
    			}
    		}
    	}
    	return res;
    }
    
    /* French syntax */
    int ast_say_date_fr(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    
    		res = ast_say_number(chan, tm.tm_mday, ints, lang, (char * ) NULL);
    
    		res = ast_waitstream(chan, ints);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    
    	if (!res)
    		res = ast_say_number(chan, tm.tm_year + 1900, ints, lang, (char *) NULL);
    
    /* Dutch syntax */
    int ast_say_date_nl(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    
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    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    	if (!res)
    		res = ast_say_number(chan, tm.tm_mday, ints, lang, (char * ) NULL);
    	if (!res) {
    		snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    		res = ast_streamfile(chan, fn, lang);
    		if (!res)
    			res = ast_waitstream(chan, ints);
    	}
    
    	if (!res)
    		res = ast_waitstream(chan, ints);
    	if (!res)
    		res = ast_say_number(chan, tm.tm_year + 1900, ints, lang, (char *) NULL);
    	return res;
    }
    
    /* Portuguese syntax */
    int ast_say_date_pt(struct ast_channel *chan, time_t t, const char *ints, const char *lang)
    {
    	struct tm tm;
    	char fn[256];
    	int res = 0;
    	ast_localtime(&t,&tm,NULL);
    	localtime_r(&t,&tm);
    	snprintf(fn, sizeof(fn), "digits/day-%d", tm.tm_wday);
    	if (!res)
    		res = wait_file(chan, ints, fn, lang);
    	if (!res)
    		res = ast_say_number(chan, tm.tm_mday, ints, lang, (char *) NULL);
    	if (!res)
    		res = wait_file(chan, ints, "digits/pt-de", lang);
    	snprintf(fn, sizeof(fn), "digits/mon-%d", tm.tm_mon);
    	if (!res)
    		res = wait_file(chan, ints, fn, lang);
    	if (!res)
    		res = wait_file(chan, ints, "digits/pt-de", lang);
    
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    	if (!res)
    		res = ast_say_number(chan, tm.tm_year + 1900, ints, lang, (char *) NULL);
    
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    	return res;
    }
    
    
    int ast_say_date_with_format(struct ast_channel *chan, time_t time, const char *ints, const char *lang, const char *format, const char *timezone)
    
    {
    	if (!strcasecmp(lang, "en") ) {	/* English syntax */
    		return(ast_say_date_with_format_en(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "da") ) {	/* Danish syntax */
    		return(ast_say_date_with_format_da(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "de") ) {	/* German syntax */
    		return(ast_say_date_with_format_de(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "es") || !strcasecmp(lang, "mx")) {	/* Spanish syntax */
    		return(ast_say_date_with_format_es(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "fr") ) {	/* French syntax */
    		return(ast_say_date_with_format_fr(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "it") ) {  /* Italian syntax */
    		return(ast_say_date_with_format_it(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "nl") ) {	/* Dutch syntax */
    		return(ast_say_date_with_format_nl(chan, time, ints, lang, format, timezone));
    	} else if (!strcasecmp(lang, "pt") ) {	/* Portuguese syntax */
    		return(ast_say_date_with_format_pt(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "tw") ) {	/* Taiwanese syntax */
    		return(ast_say_date_with_format_tw(chan, time, ints, lang, format, timezone));
    
    	} else if (!strcasecmp(lang, "gr") ) {	/* Greek syntax */
    
    		return(ast_say_date_with_format_gr(chan, time, ints, lang, format, timezone));
    
    	}
    
    	/* Default to English */
    	return(ast_say_date_with_format_en(chan, time, ints, lang, format, timezone));
    }
    
    /* English syntax */
    
    int ast_say_date_with_format_en(struct ast_channel *chan, time_t time, const char *ints, const char *lang, const char *format, const char *timezone)
    
    {
    	struct tm tm;
    	int res=0, offset, sndoffset;
    	char sndfile[256], nextmsg[256];
    
    	ast_localtime(&time,&tm,timezone);
    
    
    	for (offset=0 ; format[offset] != '\0' ; offset++) {
    		ast_log(LOG_DEBUG, "Parsing %c (offset %d) in %s\n", format[offset], offset, format);
    		switch (format[offset]) {
    			/* NOTE:  if you add more options here, please try to be consistent with strftime(3) */
    			case '\'':
    				/* Literal name of a sound file */
    				sndoffset=0;
    				for (sndoffset=0 ; (format[++offset] != '\'') && (sndoffset < 256) ; sndoffset++)
    					sndfile[sndoffset] = format[offset];
    				sndfile[sndoffset] = '\0';
    
    				res = wait_file(chan,ints,sndfile,lang);
    
    				break;
    			case 'A':
    			case 'a':
    				/* Sunday - Saturday */
    				snprintf(nextmsg,sizeof(nextmsg), "digits/day-%d", tm.tm_wday);
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    			case 'B':
    			case 'b':
    			case 'h':
    				/* January - December */
    				snprintf(nextmsg,sizeof(nextmsg), "digits/mon-%d", tm.tm_mon);
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    
    			case 'm':
    				/* Month enumerated */
    				res = ast_say_enumeration(chan, (tm.tm_mon + 1), ints, lang, (char *) NULL);	
    				break;
    
    			case 'd':
    			case 'e':
    				/* First - Thirtyfirst */
    
    				res = ast_say_enumeration(chan, tm.tm_mday, ints, lang, (char *) NULL);	
    
    				break;
    			case 'Y':
    				/* Year */
    				if (tm.tm_year > 99) {
    
    				        res = ast_say_number(chan, tm.tm_year + 1900, ints, lang, (char *) NULL);
    
    				} else {
    					if (tm.tm_year < 1) {
    						/* I'm not going to handle 1900 and prior */
    						/* We'll just be silent on the year, instead of bombing out. */
    					} else {
    						res = wait_file(chan,ints, "digits/19",lang);
    						if (!res) {
    							if (tm.tm_year <= 9) {
    								/* 1901 - 1909 */
    								res = wait_file(chan,ints, "digits/oh",lang);
    								if (!res) {
    									snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_year);
    									res = wait_file(chan,ints,nextmsg,lang);
    								}
    							} else if (tm.tm_year <= 20) {
    								/* 1910 - 1920 */
    								snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_year);
    								res = wait_file(chan,ints,nextmsg,lang);
    							} else {
    								/* 1921 - 1999 */
    								int ten, one;
    								ten = tm.tm_year / 10;
    								one = tm.tm_year % 10;
    								snprintf(nextmsg,sizeof(nextmsg), "digits/%d", ten * 10);
    								res = wait_file(chan,ints,nextmsg,lang);
    								if (!res) {
    									if (one != 0) {
    										snprintf(nextmsg,sizeof(nextmsg), "digits/%d", one);
    										res = wait_file(chan,ints,nextmsg,lang);
    									}
    								}
    							}
    						}
    					}
    				}
    				break;
    			case 'I':
    			case 'l':
    				/* 12-Hour */
    				if (tm.tm_hour == 0)
    					snprintf(nextmsg,sizeof(nextmsg), "digits/12");
    				else if (tm.tm_hour > 12)
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_hour - 12);
    				else
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_hour);
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    			case 'H':
    			case 'k':
    				/* 24-Hour */
    				if (format[offset] == 'H') {
    					/* e.g. oh-eight */
    					if (tm.tm_hour < 10) {
    						res = wait_file(chan,ints, "digits/oh",lang);
    					}
    				} else {
    					/* e.g. eight */
    					if (tm.tm_hour == 0) {
    						res = wait_file(chan,ints, "digits/oh",lang);
    					}
    				}
    				if (!res) {
    					if (tm.tm_hour != 0) {
    						int remainder = tm.tm_hour;
    						if (tm.tm_hour > 20) {
    							res = wait_file(chan,ints, "digits/20",lang);
    							remainder -= 20;
    						}
    						if (!res) {
    							snprintf(nextmsg,sizeof(nextmsg), "digits/%d", remainder);
    							res = wait_file(chan,ints,nextmsg,lang);
    						}
    					}
    				}
    				break;
    			case 'M':
    				/* Minute */
    				if (tm.tm_min == 0) {
    					res = wait_file(chan,ints, "digits/oclock",lang);
    				} else if (tm.tm_min < 10) {
    					res = wait_file(chan,ints, "digits/oh",lang);
    					if (!res) {
    						snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_min);
    						res = wait_file(chan,ints,nextmsg,lang);
    					}
    				} else if ((tm.tm_min < 21) || (tm.tm_min % 10 == 0)) {
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_min);
    					res = wait_file(chan,ints,nextmsg,lang);
    				} else {
    					int ten, one;
    					ten = (tm.tm_min / 10) * 10;
    					one = (tm.tm_min % 10);
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", ten);
    					res = wait_file(chan,ints,nextmsg,lang);
    					if (!res) {
    						/* Fifty, not fifty-zero */
    						if (one != 0) {
    							snprintf(nextmsg,sizeof(nextmsg), "digits/%d", one);
    							res = wait_file(chan,ints,nextmsg,lang);
    						}
    					}
    				}
    				break;
    			case 'P':
    			case 'p':
    				/* AM/PM */
    
    				if (tm.tm_hour > 11)
    					snprintf(nextmsg,sizeof(nextmsg), "digits/p-m");
    				else
    					snprintf(nextmsg,sizeof(nextmsg), "digits/a-m");
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    			case 'Q':
    				/* Shorthand for "Today", "Yesterday", or ABdY */
    				{
    					struct timeval now;
    					struct tm tmnow;
    					time_t beg_today;
    
    					gettimeofday(&now,NULL);
    					ast_localtime(&now.tv_sec,&tmnow,timezone);
    					/* This might be slightly off, if we transcend a leap second, but never more off than 1 second */
    					/* In any case, it saves not having to do ast_mktime() */
    					beg_today = now.tv_sec - (tmnow.tm_hour * 3600) - (tmnow.tm_min * 60) - (tmnow.tm_sec);
    					if (beg_today < time) {
    						/* Today */
    						res = wait_file(chan,ints, "digits/today",lang);
    					} else if (beg_today - 86400 < time) {
    						/* Yesterday */
    						res = wait_file(chan,ints, "digits/yesterday",lang);
    					} else {
    						res = ast_say_date_with_format(chan, time, ints, lang, "ABdY", timezone);
    					}
    				}
    				break;
    			case 'q':
    				/* Shorthand for "" (today), "Yesterday", A (weekday), or ABdY */
    				{
    					struct timeval now;
    					struct tm tmnow;
    					time_t beg_today;
    
    					gettimeofday(&now,NULL);
    					ast_localtime(&now.tv_sec,&tmnow,timezone);
    					/* This might be slightly off, if we transcend a leap second, but never more off than 1 second */
    					/* In any case, it saves not having to do ast_mktime() */
    					beg_today = now.tv_sec - (tmnow.tm_hour * 3600) - (tmnow.tm_min * 60) - (tmnow.tm_sec);
    					if (beg_today < time) {
    						/* Today */
    					} else if ((beg_today - 86400) < time) {
    						/* Yesterday */
    						res = wait_file(chan,ints, "digits/yesterday",lang);
    					} else if (beg_today - 86400 * 6 < time) {
    						/* Within the last week */
    						res = ast_say_date_with_format(chan, time, ints, lang, "A", timezone);
    					} else {
    						res = ast_say_date_with_format(chan, time, ints, lang, "ABdY", timezone);
    					}
    				}
    				break;
    			case 'R':
    				res = ast_say_date_with_format(chan, time, ints, lang, "HM", timezone);
    				break;
    			case 'S':
    				/* Seconds */
    				if (tm.tm_sec == 0) {
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_sec);
    					res = wait_file(chan,ints,nextmsg,lang);
    				} else if (tm.tm_sec < 10) {
    					res = wait_file(chan,ints, "digits/oh",lang);
    					if (!res) {
    						snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_sec);
    						res = wait_file(chan,ints,nextmsg,lang);
    					}
    				} else if ((tm.tm_sec < 21) || (tm.tm_sec % 10 == 0)) {
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", tm.tm_sec);
    					res = wait_file(chan,ints,nextmsg,lang);
    				} else {
    					int ten, one;
    					ten = (tm.tm_sec / 10) * 10;
    					one = (tm.tm_sec % 10);
    					snprintf(nextmsg,sizeof(nextmsg), "digits/%d", ten);
    					res = wait_file(chan,ints,nextmsg,lang);
    					if (!res) {
    						/* Fifty, not fifty-zero */
    						if (one != 0) {
    							snprintf(nextmsg,sizeof(nextmsg), "digits/%d", one);
    							res = wait_file(chan,ints,nextmsg,lang);
    						}
    					}
    				}
    				break;
    			case 'T':
    				res = ast_say_date_with_format(chan, time, ints, lang, "HMS", timezone);
    				break;
    			case ' ':
    			case '	':
    				/* Just ignore spaces and tabs */
    				break;
    			default:
    				/* Unknown character */
    				ast_log(LOG_WARNING, "Unknown character in datetime format %s: %c at pos %d\n", format, format[offset], offset);
    		}
    		/* Jump out on DTMF */
    		if (res) {
    			break;
    		}
    	}
    	return res;
    }
    
    
    /* Danish syntax */
    int ast_say_date_with_format_da(struct ast_channel *chan, time_t time, const char *ints, const char *lang, const char *format, const char *timezone)
    {
    	struct tm tm;
    	int res=0, offset, sndoffset;
    	char sndfile[256], nextmsg[256];
    
    	ast_localtime(&time,&tm,timezone);
    
    	for (offset=0 ; format[offset] != '\0' ; offset++) {
    		ast_log(LOG_DEBUG, "Parsing %c (offset %d) in %s\n", format[offset], offset, format);
    		switch (format[offset]) {
    			/* NOTE:  if you add more options here, please try to be consistent with strftime(3) */
    			case '\'':
    				/* Literal name of a sound file */
    				sndoffset=0;
    				for (sndoffset=0 ; (format[++offset] != '\'') && (sndoffset < 256) ; sndoffset++)
    					sndfile[sndoffset] = format[offset];
    				sndfile[sndoffset] = '\0';
    				res = wait_file(chan,ints,sndfile,lang);
    				break;
    			case 'A':
    			case 'a':
    				/* Sunday - Saturday */
    				snprintf(nextmsg,sizeof(nextmsg), "digits/day-%d", tm.tm_wday);
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    			case 'B':
    			case 'b':
    			case 'h':
    				/* January - December */
    				snprintf(nextmsg,sizeof(nextmsg), "digits/mon-%d", tm.tm_mon);
    				res = wait_file(chan,ints,nextmsg,lang);
    				break;
    			case 'm':
    				/* Month enumerated */
    				res = ast_say_enumeration(chan, (tm.tm_mon + 1), ints, lang, "m");	
    				break;
    			case 'd':
    			case 'e':
    				/* First - Thirtyfirst */
    				res = ast_say_enumeration(chan, tm.tm_mday, ints, lang, "m");	
    				break;
    			case 'Y':
    				/* Year */
    				{
    					int year = tm.tm_year + 1900;
    					if (year > 1999) {	/* year 2000 and later */
    						res = ast_say_number(chan, year, ints, lang, (char *) NULL);	
    					} else {
    						if (year < 1100) {
    							/* I'm not going to handle 1100 and prior */