view src/cs/layer1/gtt_include/ctm/init_interleaver.h @ 629:3231dd9b38c1

armio.c: make GPIOs 8 & 13 outputs driving 1 on all "classic" targets Calypso GPIOs 8 & 13 are pinmuxed with MCUEN1 & MCUEN2, respectively, and on powerup these pins are MCUEN, i.e., outputs driving 1. TI's code for C-Sample and earlier turns them into GPIOs configured as outputs also driving 1 - so far, so good - but TI's code for BOARD 41 (which covers D-Sample, Leonardo and all real world Calypso devices derived from the latter) switches them from MCUEN to GPIOs, but then leaves them as inputs. Given that the hardware powerup state of these two pins is outputs driving 1, every Calypso board design MUST be compatible with such driving; typically these GPIO signals will be either unused and unconnected or connected as outputs driving some peripheral. Turning these pins into GPIO inputs will result in floating inputs on every reasonably-wired board, thus I am convinced that this configuration is nothing but a bug on the part of whoever wrote this code at TI. This floating input bug had already been fixed earlier for GTA modem and FCDEV3B targets; the present change makes the fix unconditional for all "classic" targets. The newly affected targets are D-Sample, Leonardo, Tango and GTM900.
author Mychaela Falconia <falcon@freecalypso.org>
date Thu, 02 Jan 2020 05:38:26 +0000
parents 945cf7f506b2
children
line wrap: on
line source

/*
*******************************************************************************
*
*      COPYRIGHT (C) 2000 BY ERICSSON EUROLAB DEUTSCHLAND GmbH
*      90411 NUERNBERG, GERMANY, Tel Int + 49 911 5217 100
*
*      The program(s) may be used and/or copied only with the
*      written permission from Ericsson or in accordance
*      with the terms and conditions stipulated in the agreement or
*      contract under which the program(s) have been supplied.
*
*******************************************************************************
*
*      File             : init_interleaver.h
*      Purpose          : initialization of the diagonal (chain) interleaver;
*                         definition of the type interleaver_state_t
*
*******************************************************************************
*/
#ifndef init_interleaver_h
#define init_interleaver_h "$Id: $"

/*
*******************************************************************************
*                         INCLUDE FILES
*******************************************************************************
*/

#include "ctm_typedefs.h"

/*
*******************************************************************************
*                         DECLARATION OF PROTOTYPES
*******************************************************************************
*/
#if (TTY_SYNC_MCU == 1)
  #define RESYNC_OFFSET 384
#endif

/* --------------------------------------------------------------------- */
/* interleaver_state_t:                                                  */
/* type definition for storing the states of the diag_interleaver and    */
/* diag_deinterleaver, respectively (each instance of                    */
/* interleavers/deinterleavers must have its own variable of this type   */ 
/* --------------------------------------------------------------------- */

typedef struct {
  WORD16 B, D;           /* dimensions of the (de)interleaver              */
  WORD16 rows;           /* Number of rows in buffer                       */
  WORD16 clmn;           /* actual index within the (de)interleaver matrix */
  WORD16 ready;          /* Number of ready rows in (de)interleaver        */
  WORD16 *vector;        /* memory of the (de)interleaver                  */
  WORD16 num_sync_lines1;/* number of preceding lines in the interl. matrix*/
  WORD16 num_sync_lines2;/* number of preceding lines in the interl. matrix*/
  WORD16 num_sync_bits;  /* number of sync bits (demodulator sync)         */
  WORD16 *sync_index_vec;/* indices of the bits for deintl. synchronization*/
  WORD16 *scramble_vec;  /* sequence for scrambling                        */
  WORD16 *sequence;      /* m-sequence for synchronisation                 */
  
} interleaver_state_t;


/* --------------------------------------------------------------------- */
/* init_interleaver:                                                     */
/* function for initialization of diag_interleaver and                   */
/* diag_deinterleaver, respectively. The dimensions of the interleaver   */
/* must be specified:                                                    */
/* B = (horizontal) blocklength, D = (vertical distance)                 */
/* According to this specifications, this function initializes a         */
/* variable of type interleaver_state_t.                                 */
/*                                                                       */
/* Additionally, this function adds two types of sync information to the */
/* bitstream. The first sync info is for the demodulator and consists    */
/* of a sequence of alternating bits so that the tones produced by the   */
/* modulator are not the same all the time. This is essential for the    */
/* demodulator to find the transitions between adjacent bits. The bits   */
/* for this demodulator synchronization simply precede the bitstream.    */
/* A good choice for this is e.g. num_sync_lines1=2, which results in    */
/* 14 additional bits in case of the (B=7, D=2) interleaver.             */
/*                                                                       */
/* The second sync info is for synchronizing the deinterleaver and       */
/* of a m-sequence with excellent autocorrelation properties. These bits */
/* are positioned at the locations of the dummy bits, which are not used */
/* by the interleaver. In addition, even more bits for this              */
/* can be spent by inserting additional sync bits, which precede the     */
/* interleaver's bitstream. This is indicated by chosing                 */
/* num_sync_lines2>0.                                                    */
/*                                                                       */
/* Example: (B=7, D=2)-interleaver,                                      */
/*          num_sync_lines1=2 (demodulator sync bits are marked by 'd')  */
/*          num_sync_lines2=1 (deinterleaver sync bits are marked by 'x')*/
/*                                                                       */
/*     d     d     d     d     d     d     d                             */
/*     d     d     d     d     d     d     d                             */
/*     x     x     x     x     x     x     x                             */
/*     1     x     x     x     x     x     x                             */
/*     8     x     x     x     x     x     x                             */
/*    15     2     x     x     x     x     x                             */
/*    22     9     x     x     x     x     x                             */
/*    29    16     3     x     x     x     x                             */
/*    36    23    10     x     x     x     x                             */
/*    43    30    17     4     x     x     x                             */
/*    50    37    24    11     x     x     x                             */
/*    57    44    31    18     5     x     x                             */
/*    64    51    38    25    12     x     x                             */
/*    71    58    45    32    19     6     x                             */
/*    78    65    52    39    26    13     x                             */
/*    85    72    59    46    33    20     7                             */
/*    92    79    66    53    40    27    14                             */
/*    99    86    73    60    47    34    21                             */
/* --------------------------------------------------------------------- */

void init_interleaver(interleaver_state_t *intl_state, 
                      WORD16 B, WORD16 D,
                      WORD16 num_sync_lines1, WORD16 num_sync_lines2);
/*
 ***********************************************************************
 * Shutdown_interleaver()                                              *
 * *********************                                               *
 * Deallocate dyamically created buffers.                              *
 *                                                                     *
 * Input variables:                                                    *
 * intl_state : pointer to a variable of interleaver_state_t           *
 *              containing the interleaver state machine.              *
 ***********************************************************************
*/
void Shutdown_interleaver(interleaver_state_t *intl_state);

/* --------------------------------------------------------------------- */
/* reinit_interleaver:                                                   */
/* Same as init_interleaver() but without new allocation of buffers.     */
/* This function shall be used for initiation each new burst.            */
/* --------------------------------------------------------------------- */

void reinit_interleaver(interleaver_state_t *intl_state);


void init_deinterleaver(interleaver_state_t *intl_state, 
                        WORD16 B, WORD16 D);

/*
 ***********************************************************************
 * Shutdown_deinterleaver()                                            *
 * ************************                                            *
 * Deallocate dyamically created buffers.                              *
 *                                                                     *
 * Input variables:                                                    *
 * intl_state : pointer to a variable of interleaver_state_t           *
 *              containing the deinterleaver state machine.            *
 ***********************************************************************
*/
void Shutdown_deinterleaver(interleaver_state_t *intl_state);

void reinit_deinterleaver(interleaver_state_t *intl_state);

/* --------------------------------------------------------------------- */
/* calc_mute_positions:                                                  */
/* Calculation of the indices of the bits that have to be muted within   */
/* one burst. The indices are returned in the vector mute_positions.     */
/* --------------------------------------------------------------------- */

void calc_mute_positions(WORD16 *mute_positions, 
                         WORD16 num_rows_to_mute,
                         WORD16 start_position,
                         WORD16 B, 
                         WORD16 D);

BOOL mutingRequired(WORD16  actualIndex, 
                    WORD16 *mute_positions, 
                    WORD16  length_mute_positions);

/* --------------------------------------------------------------------- */
/* generate_scrambling_sequence:                                         */
/* Generation of the sequence used for scrambling. The sequence consists */
/* of 0 and 1 elements. The sequence is stored into the vector *sequence */
/* and the length of the sequence is specified by the variable length.   */
/* --------------------------------------------------------------------- */

void generate_scrambling_sequence(WORD16 *sequence, WORD16 length);

#endif