/* ==================================================================== * The Kannel Software License, Version 1.0 * * Copyright (c) 2001-2005 Kannel Group * Copyright (c) 1998-2001 WapIT Ltd. * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in * the documentation and/or other materials provided with the * distribution. * * 3. 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For more information on * the Kannel Group, please see . * * Portions of this software are based upon software originally written at * WapIT Ltd., Helsinki, Finland for the Kannel project. */ /* * * wsieee754.h * * Author: Markku Rossi * * Copyright (c) 2000 WAPIT OY LTD. * All rights reserved. * * Functions to manipulate ANSI/IEEE Std 754-1985 binary floating-point * numbers. * */ #ifndef WSIEEE754_H #define WSIEEE754_H /********************* Types and definitions ****************************/ /* Return codes for encoding and decoding functions. */ typedef enum { /* The operation was successful. */ WS_IEEE754_OK, /* The value is `Not a Number' NaN. */ WS_IEEE754_NAN, /* The valueis positive infinity. */ WS_IEEE754_POSITIVE_INF, /* The value is negative infinity. */ WS_IEEE754_NEGATIVE_INF } WsIeee754Result; /********************* Special values ***********************************/ /* `Not a Number' NaN */ extern unsigned char ws_ieee754_nan[4]; /* Positive infinity. */ extern unsigned char ws_ieee754_positive_inf[4]; /* Positive infinity. */ extern unsigned char ws_ieee754_negative_inf[4]; /********************* Global functions *********************************/ /* Encode the floating point number `value' to the IEEE-754 single precision format. The function stores the encoded value to the buffer `buf'. The buffer `buf' must have 32 bits (4 bytes) of space. The function returns WsIeee754Result return value. It describes the format of the encoded value in `buf'. In all cases, the function generates the corresponding encoded value to the buffer `buf'. */ WsIeee754Result ws_ieee754_encode_single(double value, unsigned char *buf); /* Decode the IEEE-754 encoded number `buf' into a floating point number. The argument `buf' must have 32 bits of data. The function returns a result code which describes the success of the decode operation. If the result is WS_IEEE754_OK, the resulting floating point number is returned in `value_return'. */ WsIeee754Result ws_ieee754_decode_single(unsigned char *buf, double *value_return); /* Get the sign bit from the IEEE-754 single format encoded number `buf'. The buffer `buf' must have 32 bits of data. */ WsUInt32 ws_ieee754_single_get_sign(unsigned char *buf); /* Get the exponent from the IEEE-754 single format encoded number `buf'. The buffer `buf' must have 32 bits of data. The returned value is the biased exponent. */ WsUInt32 ws_ieee754_single_get_exp(unsigned char *buf); /* Get the mantissa from the IEEE-754 single format encoded number `buf'. The buffer `buf' must have 32 bits of data. */ WsUInt32 ws_ieee754_single_get_mant(unsigned char *buf); #endif /* not WSIEEE754_H */