FreeCalypso > hg > fc-magnetite
view src/g23m-fad/tcpip/rnet/rnet_trace.c @ 685:3fb7384e820d
tpudrv12.h: FCDEV3B goes back to being itself
A while back we had the idea of a FreeCalypso modem family whereby our
current fcdev3b target would some day morph into fcmodem, with multiple
FC modem family products, potentially either triband or quadband, being
firmware-compatible with each other and with our original FCDEV3B. But
in light of the discovery of Tango modules that earlier idea is now being
withdrawn: instead the already existing Tango hw is being adopted into
our FreeCalypso family.
Tango cannot be firmware-compatible with triband OM/FCDEV3B targets
because the original quadband RFFE on Tango modules is wired in TI's
original Leonardo arrangement. Because this Leonardo/Tango way is now
becoming the official FreeCalypso way of driving quadband RFFEs thanks
to the adoption of Tango into our FC family, our earlier idea of
extending FIC's triband RFFE control signals with TSPACT5 no longer makes
much sense - we will probably never produce any new hardware with that
once-proposed arrangement. Therefore, that triband-or-quadband FCFAM
provision is being removed from the code base, and FCDEV3B goes back to
being treated the same way as CONFIG_TARGET_GTAMODEM for RFFE control
purposes.
author | Mychaela Falconia <falcon@freecalypso.org> |
---|---|
date | Thu, 24 Sep 2020 21:03:08 +0000 |
parents | 90eb61ecd093 |
children |
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/** * @file rnet_trace.c * * Riviera NET. * * PC trace functions. Only under Riviera Tool. * * @author Vincent Oberle (v-oberle@ti.com) * @version 0.1 */ /* * History: * * Date Author Modification * -------------------------------------------------- * 01/30/2002 Vincent Oberle Create * * (C) Copyright 2002 by Texas Instruments Incorporated, All Rights Reserved */ #include "rnet_trace_i.h" #ifdef RNET_TRACE_RET /** * Traces the return value of RNET API functions. */ void rnet_trace_ret (T_RNET_RET ret) { switch (ret) { case RNET_OK: //RNET_TRACE_LOW("RNET: OK"); break; case RNET_MEMORY_ERR: RNET_TRACE_LOW("RNET: MEMORY_ERR"); break; case RNET_INVALID_PARAMETER: RNET_TRACE_LOW("RNET: INVALID_PARAMETER"); break; case RNET_NOT_SUPPORTED: RNET_TRACE_LOW("RNET: NOT_SUPPORTED"); break; case RNET_NOT_READY: RNET_TRACE_LOW("RNET: NOT_READY"); break; case RNET_INTERNAL_ERR: RNET_TRACE_LOW("RNET: INTERNAL_ERR"); break; case RNET_IN_USE: RNET_TRACE_LOW("RNET: IN_USE"); break; case RNET_NOT_INITIALIZED: RNET_TRACE_LOW("RNET: NOT_INITIALIZED"); break; case RNET_NET_UNREACHABLE: RNET_TRACE_LOW("RNET: NET_UNREACHABLE"); break; case RNET_TIMEOUT: RNET_TRACE_LOW("RNET: TIMEOUT"); break; case RNET_CONN_REFUSED: RNET_TRACE_LOW("RNET: CONN_REFUSED"); break; case RNET_CONN_RESET: RNET_TRACE_LOW("RNET: CONN_RESET"); break; case RNET_CONN_ABORTED: RNET_TRACE_LOW("RNET: CONN_ABORTED"); break; case RNET_CONN_CLOSED: RNET_TRACE_LOW("RNET: CONN_CLOSED"); break; case RNET_MSG_SIZE: RNET_TRACE_LOW("RNET: MSG_SIZE"); break; case RNET_PARTIAL_SENT: RNET_TRACE_LOW("RNET: PARTIAL_SENT"); break; case RNET_HOST_NOT_FOUND: RNET_TRACE_LOW("RNET: HOST_NOT_FOUND"); break; default: RNET_TRACE_MEDIUM_PARAM("RNET: Unknown return value: ", ret); } } #endif