FreeCalypso > hg > fc-magnetite
view src/g23m-gprs/grlc/grlc_gffs.c @ 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 | 219afcfc6250 |
| children |
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/* +----------------------------------------------------------------------------- | Project : GPRS (8441) | Modul : GRLC +----------------------------------------------------------------------------- | 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 : This module implements signal handler functions for service | GFF of entity GRLC. +----------------------------------------------------------------------------- */ #ifndef GRLC_GFFS_C #define GRLC_GFFS_C #endif #define ENTITY_GRLC /*==== INCLUDES =============================================================*/ #include "typedefs.h" /* to get Condat data types */ #include "vsi.h" /* to get a lot of macros */ #include "macdef.h" #include "gprs.h" #include "gsm.h" /* to get a lot of macros */ #include "ccdapi.h" /* to get CCD API */ #include "prim.h" /* to get the definitions of used SAP and directions */ #include "message.h" #include "grlc.h" /* to get the global entity definitions */ #include "grlc_gfff.h" /*==== CONST ================================================================*/ /*==== LOCAL VARS ===========================================================*/ /*==== PRIVATE FUNCTIONS ====================================================*/ /*==== PUBLIC FUNCTIONS =====================================================*/ #if defined REL99 AND defined TI_PS_FF_TBF_EST_PACCH /* +------------------------------------------------------------------------------ | Function : sig_tm_gff_ul_activate +------------------------------------------------------------------------------ | Description : Handles the internal signal SIG_TM_GFF_UL_ACTIVATE | | Parameters : activate_cause - added for 2 Phase Access support | +------------------------------------------------------------------------------ */ GLOBAL void sig_tm_gff_ul_activate ( UBYTE activate_cause) { TRACE_ISIG( "sig_tm_gff_ul_activate" ); switch( GET_STATE( GFF ) ) { case GFF_TWO_PHASE: if (activate_cause EQ GFF_ACTIVE) { SET_STATE(GFF,GFF_ACTIVE); } break; case GFF_ACTIVE: if ( (activate_cause EQ GFF_ACTIVE ) AND (grlc_data->gff.rlc_status EQ RLC_STATUS_DL )) { grlc_data->gff.rlc_status = RLC_STATUS_BOTH; } break; case GFF_DEACTIVE: if (activate_cause EQ GFF_TWO_PHASE) { SET_STATE(GFF,GFF_TWO_PHASE); } else if(activate_cause EQ GFF_ACTIVE ) { SET_STATE(GFF,GFF_ACTIVE); } gff_tbf_init(); grlc_data->gff.rlc_status = RLC_STATUS_UL; break; default: TRACE_ERROR( "SIG_TM_GFF_UL_ACTIVATE unexpected" ); break; } } /* sig_tm_gff_ul_activate() */ #else /* +------------------------------------------------------------------------------ | Function : sig_tm_gff_ul_activate +------------------------------------------------------------------------------ | Description : Handles the internal signal SIG_TM_GFF_UL_ACTIVATE | | Parameters : dummy - description of parameter dummy | +------------------------------------------------------------------------------ */ GLOBAL void sig_tm_gff_ul_activate ( void) { TRACE_ISIG( "sig_tm_gff_ul_activate" ); switch( GET_STATE( GFF ) ) { case GFF_ACTIVE: case GFF_DEACTIVE: if(grlc_data->gff.rlc_status EQ RLC_STATUS_DL ) { grlc_data->gff.rlc_status = RLC_STATUS_BOTH; } else if(grlc_data->gff.rlc_status EQ RLC_STATUS_NULL ) { SET_STATE(GFF,GFF_ACTIVE); gff_tbf_init(); grlc_data->gff.rlc_status = RLC_STATUS_UL; } break; default: TRACE_ERROR( "SIG_TM_GFF_UL_ACTIVATE unexpected" ); break; } } /* sig_tm_gff_ul_activate() */ #endif /* +------------------------------------------------------------------------------ | Function : sig_tm_gff_ul_deactivate +------------------------------------------------------------------------------ | Description : Handles the internal signal SIG_TM_GFF_UL_DEACTIVATE | | Parameters : dummy - description of parameter dummy | +------------------------------------------------------------------------------ */ GLOBAL void sig_tm_gff_ul_deactivate ( void) { TRACE_ISIG( "sig_tm_gff_ul_deactivate" ); grlc_data->ul_tfi = 0xFF; switch( GET_STATE( GFF ) ) { #if defined REL99 AND defined TI_PS_FF_TBF_EST_PACCH case GFF_TWO_PHASE: #endif case GFF_ACTIVE: if(grlc_data->gff.rlc_status EQ RLC_STATUS_BOTH ) grlc_data->gff.rlc_status = RLC_STATUS_DL; else { grlc_data->gff.rlc_status = RLC_STATUS_NULL; SET_STATE(GFF,GFF_DEACTIVE); } break; default: TRACE_ERROR( "SIG_TM_GFF_UL_DEACTIVATE unexpected" ); break; } } /* sig_tm_gff_ul_deactivate() */ /* +------------------------------------------------------------------------------ | Function : sig_tm_gff_dl_activate +------------------------------------------------------------------------------ | Description : Handles the internal signal SIG_TM_GFF_DL_ACTIVATE | | Parameters : dummy - description of parameter dummy | +------------------------------------------------------------------------------ */ GLOBAL void sig_tm_gff_dl_activate ( void) { TRACE_ISIG( "sig_tm_gff_dl_activate" ); switch( GET_STATE( GFF ) ) { case GFF_ACTIVE: case GFF_DEACTIVE: if(grlc_data->gff.rlc_status EQ RLC_STATUS_UL ) grlc_data->gff.rlc_status = RLC_STATUS_BOTH; else if(grlc_data->gff.rlc_status EQ RLC_STATUS_NULL ) { SET_STATE(GFF,GFF_ACTIVE); gff_tbf_init(); grlc_data->gff.rlc_status = RLC_STATUS_DL; } break; default: TRACE_ERROR( "SIG_TM_GFF_DL_ACTIVATE unexpected" ); break; } } /* sig_tm_gff_dl_activate() */ /* +------------------------------------------------------------------------------ | Function : sig_tm_gff_dl_deactivate +------------------------------------------------------------------------------ | Description : Handles the internal signal SIG_TM_GFF_DL_DEACTIVATE | | Parameters : dummy - description of parameter dummy | +------------------------------------------------------------------------------ */ GLOBAL void sig_tm_gff_dl_deactivate ( void) { TRACE_ISIG( "sig_tm_gff_dl_deactivate" ); grlc_data->dl_tfi = 0xFF; switch( GET_STATE( GFF ) ) { case GFF_ACTIVE: if(grlc_data->gff.rlc_status EQ RLC_STATUS_BOTH ) grlc_data->gff.rlc_status = RLC_STATUS_UL; else { grlc_data->gff.rlc_status = RLC_STATUS_NULL; SET_STATE(GFF,GFF_DEACTIVE); } break; default: TRACE_ERROR( "SIG_TM_GFF_DL_DEACTIVATE unexpected" ); break; } } /* sig_tm_gff_dl_deactivate() */
