view src/gpf3/ccd/bitfun.h @ 638:cab2f315827e

FFS dev.c: added Spansion PL032J to the "generic" table With the discovery of first GTM900 and then Tango, it now appears that Openmoko was not the only manuf after all who kept TI's TCS211 firmware largely intact (as opposed to changing it beyond all recognition like Compal, Chi-Mei and BenQ did), thus we are now getting new "alien" targets on which we reuse the original manuf's FFS with IMEI and RF calibration tables as if it were native. On these targets we use the original device table for FFS, even though we previously thought that it would never apply to any target other than dsample, leonardo and gtamodem. We have previously added Samsung K5L33xxCAM (a new kind of multi-ID device) to the generic table to support its use in Huawei GTM900-B modules; now we got news that some slightly older GTM900-B specimen used S71PL032J instead, so we are now adding PL032J as well.
author Mychaela Falconia <falcon@freecalypso.org>
date Thu, 30 Jan 2020 17:45:48 +0000
parents c41a534f33c6
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