view src/g23m-gprs/grr/grr_psis.h @ 221:5bf097aeaad7

LLS: when turning off all LEDs on boot, skip LED-C Having LLS turn off LED-A and LED-B on boot is normally unnecessary (they should already be off in Iota), but it is harmless, hence this logic is kept for robustness. However, having LLS read-modify-write the BCICTL2 register (to turn off LED-C) creates a potential race condition with FCHG writes to this register, especially in the case when baseband switch-on is caused by VCHG and charging is expected to start right away. Furthermore, control of the charging LED itself (on those hw targets that have it) is the responsibility of the FCHG SWE, hence LLS should leave it alone.
author Mychaela Falconia <falcon@freecalypso.org>
date Mon, 26 Apr 2021 21:55:13 +0000
parents fa8dc04885d8
children
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/* 
+----------------------------------------------------------------------------- 
|  Project :  GPRS (8441)
|  Modul   :  GRR
+----------------------------------------------------------------------------- 
|  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 :  Definitions for service PSI.
+----------------------------------------------------------------------------- 
*/ 

#ifndef GRR_PSIS_H
#define GRR_PSIS_H

EXTERN void sig_ctrl_psi_si13_received ( T_RRGRR_GPRS_SI13_IND *rrgrr_si13_ind,
                                         BOOL                   ba_bcch_changed );

EXTERN void sig_ctrl_psi_pim ( void );

EXTERN void sig_ctrl_psi_pam ( void );

EXTERN void sig_ctrl_psi_ptm ( void );

EXTERN void sig_ctrl_psi_suspend ( void );

EXTERN void sig_ctrl_psi_resumpt ( void );

EXTERN void sig_ctrl_psi_resumpt_cc ( void );

EXTERN void sig_ctrl_psi_stop ( void );

EXTERN void sig_ctrl_psi_sync_ok (void);

EXTERN void sig_ctrl_psi_read_full_psi_in_new_cell(void);

EXTERN void sig_ctrl_psi_rel_state(T_RELEASE_STATE rel_state);

EXTERN void sig_ctrl_psi_access_disabled ( T_PSI_DISABLE_CAUSE dc );

/* GFP PTM*/
EXTERN void sig_gfp_psi_1_ptm     ( void ); 
EXTERN void sig_gfp_psi_2_ptm     ( void ); 
EXTERN void sig_gfp_psi_3_ptm     ( void ); 
EXTERN void sig_gfp_psi_3_bis_ptm ( void );
#if defined (REL99) AND defined (TI_PS_FF_EMR)
EXTERN void sig_gfp_psi_3_ter_ptm ( void );
#endif
EXTERN void sig_gfp_psi_4_ptm     ( void );
EXTERN void sig_gfp_psi_13_ptm    ( void ); 
#ifdef REL99
EXTERN void sig_gfp_psi_8_ptm     ( void ); 
#endif
/* GFP*/
EXTERN void sig_gfp_psi_1 ( void ) ;
EXTERN void sig_gfp_psi_2 ( UBYTE rel_pos_i) ;
EXTERN void sig_gfp_psi_3 ( UBYTE rel_pos_i) ;
EXTERN void sig_gfp_psi_3_bis ( UBYTE rel_pos_i );
#if defined (REL99) AND defined (TI_PS_FF_EMR)
EXTERN void sig_gfp_psi_3_ter ( UBYTE rel_pos_i );
#endif
EXTERN void sig_gfp_psi_4 ( UBYTE rel_pos_i ) ;
EXTERN void sig_gfp_psi_5 ( UBYTE rel_pos_i ) ;
EXTERN void sig_gfp_psi_prach ( void ) ;
EXTERN void sig_gfp_psi_scell_pbcch_stop_con ( T_MPHP_SCELL_PBCCH_STOP_CON *mphp_scell_pbcch_stop_con) ;
EXTERN void sig_gfp_psi_ncell_pbcch_ind ( T_MPHP_NCELL_PBCCH_IND *mphp_ncell_pbcch_ind) ;
EXTERN void sig_gfp_psi_save_persistence_level ( T_pers_lev * ptr2persistence_level_i  ); /*MODIF*/
#ifdef REL99
EXTERN void sig_gfp_psi_8 ( UBYTE rel_pos_i) ;
#endif

#endif /* !GRR_PSIS_H */