view src/gpf2/ccd/bitfun.h @ 600:8f50b202e81f

board preprocessor conditionals: prep for more FC hw in the future This change eliminates the CONFIG_TARGET_FCDEV3B preprocessor symbol and all preprocessor conditionals throughout the code base that tested for it, replacing them with CONFIG_TARGET_FCFAM or CONFIG_TARGET_FCMODEM. These new symbols are specified as follows: CONFIG_TARGET_FCFAM is intended to cover all hardware designs created by Mother Mychaela under the FreeCalypso trademark. This family will include modem products (repackagings of the FCDEV3B, possibly with RFFE or even RF transceiver changes), and also my desired FreeCalypso handset product. CONFIG_TARGET_FCMODEM is intended to cover all FreeCalypso modem products (which will be firmware-compatible with the FCDEV3B if they use TI Rita transceiver, or will require a different fw build if we switch to one of Silabs Aero transceivers), but not the handset product. Right now this CONFIG_TARGET_FCMODEM preprocessor symbol is used to conditionalize everything dealing with MCSI. At the present moment the future of FC hardware evolution is still unknown: it is not known whether we will ever have any beyond-FCDEV3B hardware at all (contingent on uncertain funding), and if we do produce further FC hardware designs, it is not known whether they will retain the same FIC modem core (triband), if we are going to have a quadband design that still retains the classic Rita transceiver, or if we are going to switch to Silabs Aero II or some other transceiver. If we produce a quadband modem that still uses Rita, it will run exactly the same fw as the FCDEV3B thanks to the way we define TSPACT signals for the RF_FAM=12 && CONFIG_TARGET_FCFAM combination, and the current fcdev3b build target will be renamed to fcmodem. OTOH, if that putative quadband modem will be Aero-based, then it will require a different fw build target, the fcdev3b target will stay as it is, and the two targets will both define CONFIG_TARGET_FCFAM and CONFIG_TARGET_FCMODEM, but will have different RF_FAM numbers. But no matter which way we are going to evolve, it is not right to have conditionals on CONFIG_TARGET_FCDEV3B in places like ACI, and the present change clears the way for future evolution.
author Mychaela Falconia <falcon@freecalypso.org>
date Mon, 01 Apr 2019 01:05:24 +0000
parents 864b8cc0cf63
children
line wrap: on
line source

/* 
+----------------------------------------------------------------------------- 
|  Project :  
|  Modul   : bitfun.h
+----------------------------------------------------------------------------- 
|  Copyright 2002 Texas Instruments Berlin, AG 
|                 All rights reserved. 
| 
|                 This file is confidential and a trade secret of Texas 
|                 Instruments Berlin, AG 
|                 The receipt of or possession of this file does not convey 
|                 any rights to reproduce or disclose its contents or to 
|                 manufacture, use, or sell anything it may describe, in 
|                 whole, or in part, without the specific written consent of 
|                 Texas Instruments Berlin, AG. 
+----------------------------------------------------------------------------- 
|  Purpose :  Condat Coder Decoder
|             Prototypes of the elementary bit manipulation functions
+----------------------------------------------------------------------------- 
*/ 


#ifndef __BITFUN
#define __BITFUN


#ifndef __BITFUN_C__

EXTERN void   bf_writePadBits      (T_CCD_Globs *globs);
EXTERN void   bf_writeVal          (ULONG value, ULONG bSize, T_CCD_Globs *globs);
EXTERN ULONG  bf_getBits           (ULONG  len, T_CCD_Globs *globs);
EXTERN void   bf_writeBitStr_PER   (USHORT len, T_CCD_Globs *globs);
EXTERN void   bf_readBitStr_PER    (USHORT len, T_CCD_Globs *globs);
EXTERN void   bf_writeBits         (ULONG  len, T_CCD_Globs *globs);
EXTERN void   bf_readBits          (ULONG  len, T_CCD_Globs *globs);
EXTERN void   bf_writeBitChunk     (ULONG  len, T_CCD_Globs *globs);
EXTERN void   bf_readBitChunk      (ULONG  len, T_CCD_Globs *globs);
EXTERN BOOL   bf_readBit           (T_CCD_Globs *globs);
EXTERN void   bf_writeBit          (BOOL Bit, T_CCD_Globs *globs);
EXTERN UBYTE  bf_decodeByteNumber  (const ULONG len, T_CCD_Globs *globs);
EXTERN ULONG  bf_decodeShortNumber (const ULONG len, T_CCD_Globs *globs);
EXTERN ULONG  bf_decodeLongNumber  (UBYTE len, T_CCD_Globs *globs);
EXTERN void   bf_codeShortNumber   (UBYTE len, USHORT val, T_CCD_Globs *globs);
EXTERN void   bf_codeByteNumber    (UBYTE len, UBYTE val, T_CCD_Globs *globs);
EXTERN void   bf_codeLongNumber    (UBYTE len, ULONG val, T_CCD_Globs *globs);
EXTERN void   bf_recodeShortNumber (USHORT pos, UBYTE len, USHORT val, T_CCD_Globs *globs);
EXTERN void   bf_recodeByteNumber  (USHORT pos, UBYTE len, UBYTE  val, T_CCD_Globs *globs);
EXTERN void   bf_recodeBit         (USHORT pos, UBYTE Bit, T_CCD_Globs *globs);
EXTERN void   bf_rShift8Bit        (USHORT srcBitPos, USHORT bitLen, T_CCD_Globs *globs);

#endif /* __BITFUN_C__ */

/* a Macro for incrementing the position in the bitbuffer         */
/* _bitpos, _bytepos and _byteoffs are recalculated               */

#define bf_incBitpos(A, globs) globs->bitpos = (USHORT)(globs->bitpos+(A));\
                        globs->bytepos = (USHORT)(globs->bitpos >> 3);\
                        globs->byteoffs = (UBYTE)(globs->bitpos & 7)
#define bf_setBitpos(A, globs) globs->bitpos = (USHORT)(A);\
                        globs->bytepos = (USHORT)(globs->bitpos >> 3);\
                        globs->byteoffs = (UBYTE)(globs->bitpos & 7)

/*
 * end of bitstream if we can not read almost 4 bits
 */
#define bf_endOfBitstream(globs) (globs->bitpos >= globs->maxBitpos)

#endif