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453 lines
11 KiB
C
453 lines
11 KiB
C
/**
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******************************************************************************
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*
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* @file ahrs_spi_comm.c
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* @author The OpenPilot Team, http://www.openpilot.org Copyright (C) 2010.
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* @brief AHRS SPI communications.
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*
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* @see The GNU Public License (GPL) Version 3
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*
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*****************************************************************************/
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/*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include <pios.h>
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#include "ahrs_spi_comm.h"
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#include "ahrs_spi_program.h"
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#ifdef IN_AHRS
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#include <string.h>
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#include "pios_debug.h"
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#include "pios_spi.h"
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#include "pios_irq.h"
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#include "ahrs_spi_program_slave.h"
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//#include "STM32103CB_AHRS.h"
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#endif
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/*transmit and receive packet magic numbers.
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These numbers are chosen to be very unlikely to occur due to noise.
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CRC8 does not always catch noise from cross-coupling between data lines.
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*/
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#ifdef IN_AHRS
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#define TXMAGIC 0xA55AF0C3
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#define RXMAGIC 0x3C5AA50F
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#else
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#define RXMAGIC 0xA55AF0C3
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#define TXMAGIC 0x3C5AA50F
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#endif
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//packet types
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typedef enum { COMMS_NULL, COMMS_OBJECT } COMMSCOMMAND;
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//The maximum number of objects that can be updated in one cycle.
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//Currently the link is capable of sending 3 packets per cycle but 2 is enough
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#define MAX_UPDATE_OBJECTS 2
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//Number of transmissions + 1 before we expect to see the data acknowledge
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//This is controlled by the SPI hardware.
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#define ACK_LATENCY 4
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/** All data for one object
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*/
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typedef struct {
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uint8_t done;
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uint8_t index;
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AhrsSharedData object;
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} ObjectPacketData;
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/** One complete packet.
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Other packet types are allowed for. The frame size will be the size of this
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structure.
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*/
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typedef struct {
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uint32_t magicNumber;
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COMMSCOMMAND command;
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AhrsEndStatus status;
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union { //allow for expansion to other packet types.
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ObjectPacketData objects[MAX_UPDATE_OBJECTS];
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};
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uint8_t dummy; //For some reason comms trashes the last byte
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} CommsDataPacket;
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static void FillObjectPacket();
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static void CommsCallback(uint8_t crc_ok, uint8_t crc_val);
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static void SetObjectDirty(const int idx);
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static void HandleObjectPacket();
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static void HandleRxPacket();
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static void PollEvents();
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#ifndef IN_AHRS
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static void SendPacket(void);
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static void AhrsUpdatedCb(AhrsObjHandle handle);
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#endif
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/** Receive data buffer
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*/
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static CommsDataPacket rxPacket;
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/** Transmit data buffer
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*/
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static CommsDataPacket txPacket;
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/** Objects that have changed and so should be transmitted
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*/
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static unsigned int dirtyObjects[MAX_AHRS_OBJECTS];
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/** Objects that have been updated at startup
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*/
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static bool readyObjects[MAX_AHRS_OBJECTS];
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/** List of event callbacks
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*/
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static AhrsEventCallback objCallbacks[MAX_AHRS_OBJECTS];
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/** True for objects for which new data is received and callback needs to be called
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*/
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static bool callbackPending[MAX_AHRS_OBJECTS];
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//More than this number of errors in a row will indicate the link is down
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#define MAX_CRC_ERRORS 50
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//At least this number of good frames are needed to indicate the link is up.
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#define MIN_OK_FRAMES 50
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//At least this number of empty objects are needed before the initial flood of events is over.
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#define MIN_EMPTY_OBJECTS 10
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static uint8_t linkOk = false;
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static int okCount = MIN_OK_FRAMES;
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static int emptyCount = MIN_EMPTY_OBJECTS;
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static bool programReceive = false;
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void AhrsInitComms(void)
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{
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programReceive = false;
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AhrsInitHandles();
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memset(objCallbacks, 0, sizeof(AhrsEventCallback) * MAX_AHRS_OBJECTS);
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memset(callbackPending, 0, sizeof(bool) * MAX_AHRS_OBJECTS);
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memset(dirtyObjects, 0, sizeof(unsigned int) * MAX_AHRS_OBJECTS);
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memset(&txPacket, 0, sizeof(txPacket));
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memset(&rxPacket, 0, sizeof(rxPacket));
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memset(&readyObjects, 0, sizeof(bool) * MAX_AHRS_OBJECTS);
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txPacket.command = COMMS_NULL;
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rxPacket.command = COMMS_NULL;
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}
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static uint32_t opahrs_spi_id;
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void AhrsConnect(uint32_t spi_id)
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{
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/* Bind this comms layer to the appropriate SPI id */
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opahrs_spi_id = spi_id;
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#ifndef IN_AHRS
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/* Comms already init in OP code */
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for (int ct = 0; ct < MAX_AHRS_OBJECTS; ct++) {
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AhrsObjHandle hdl = AhrsFromIndex(ct);
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if (hdl) {
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AhrsConnectCallBack(hdl, AhrsUpdatedCb);
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}
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}
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#endif
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}
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int32_t AhrsSetData(AhrsObjHandle obj, const void *dataIn)
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{
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if (obj == NULL || dataIn == NULL || obj->data == NULL) {
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return (-1);
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}
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if (memcmp(obj->data, dataIn, obj->size) == 0) { //nothing to do, don't generate an event
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return (0);
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}
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memcpy(obj->data, dataIn, obj->size);
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SetObjectDirty(obj->index);
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return (0);
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}
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int32_t AhrsGetData(AhrsObjHandle obj, void *dataOut)
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{
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if (obj == NULL || dataOut == NULL || obj->data == NULL) {
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return (-1);
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}
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memcpy(dataOut, obj->data, obj->size);
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return (0);
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}
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/** Mark an object to be sent
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*/
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void SetObjectDirty(const int idx)
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{
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if (idx < 0 || idx >= MAX_AHRS_OBJECTS) {
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return;
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}
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dirtyObjects[idx] = ACK_LATENCY;
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}
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/** Work out what data needs to be sent.
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If an object was not sent it will be retried 4 frames later
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*/
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static void FillObjectPacket()
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{
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txPacket.command = COMMS_OBJECT;
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txPacket.magicNumber = TXMAGIC;
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int idx = 0;
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for (int ct = 0; ct < MAX_UPDATE_OBJECTS; ct++) {
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txPacket.objects[ct].index = AHRS_NO_OBJECT;
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for (; idx < MAX_AHRS_OBJECTS; idx++) {
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if (dirtyObjects[idx] > 0) {
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if (dirtyObjects[idx] == ACK_LATENCY) {
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dirtyObjects[idx]--;
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txPacket.objects[ct].index = idx;
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AhrsObjHandle hdl = AhrsFromIndex(idx);
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if (hdl) {
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memcpy(&txPacket.objects[ct].object, hdl->data, hdl->size);
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break;
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}
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} else {
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dirtyObjects[idx]--;
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if (dirtyObjects[idx] == 0) { //timed out
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dirtyObjects[idx] = ACK_LATENCY;
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txPacket.status.retries++;
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}
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}
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}
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}
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}
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for (; idx < MAX_AHRS_OBJECTS; idx++) {
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if (dirtyObjects[idx] > 0 && dirtyObjects[idx] != ACK_LATENCY) {
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dirtyObjects[idx]--;
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if (dirtyObjects[idx] == 0) { //timed out
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dirtyObjects[idx] = ACK_LATENCY;
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txPacket.status.retries++;
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}
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}
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}
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}
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/** Process a received packet
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*/
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static void HandleRxPacket()
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{
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switch (rxPacket.command) {
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case COMMS_NULL:
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// Empty packet, nothing to do
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break;
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case COMMS_OBJECT:
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HandleObjectPacket();
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break;
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default:
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txPacket.status.invalidPacket++;
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}
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}
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/** Process a received UAVObject packet
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*/
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static void HandleObjectPacket()
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{
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for (int ct = 0; ct < MAX_UPDATE_OBJECTS; ct++) {
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uint8_t idx;
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// Flag objects that have been successfully received at the other end
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idx = rxPacket.objects[ct].done;
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txPacket.objects[ct].done = AHRS_NO_OBJECT;
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if (idx < MAX_AHRS_OBJECTS) {
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if (dirtyObjects[idx] == 1) { //this ack is the correct one for the last send
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dirtyObjects[idx] = 0;
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}
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}
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// Handle received object if there is one in this packet
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idx = rxPacket.objects[ct].index;
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if (idx == AHRS_NO_OBJECT) {
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if (emptyCount > 0) {
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emptyCount--;
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}
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continue;
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}
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AhrsObjHandle obj = AhrsFromIndex(idx);
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if (obj) {
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memcpy(obj->data, &rxPacket.objects[ct].object, obj->size);
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txPacket.objects[ct].done = idx;
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callbackPending[idx] = true; // New data available, call callback
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readyObjects[idx] = true;
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} else {
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txPacket.status.invalidPacket++;
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}
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}
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#ifdef IN_AHRS
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FillObjectPacket(); //ready for the next frame
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#endif
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}
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int32_t AhrsConnectCallBack(AhrsObjHandle obj, AhrsEventCallback cb)
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{
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if (obj == NULL || obj->data == NULL) {
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return (-1);
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}
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objCallbacks[obj->index] = cb;
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return (0);
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}
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void AhrsGetStatus(AhrsCommStatus * status)
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{
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status->remote = rxPacket.status;
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status->local = txPacket.status;
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status->linkOk = linkOk;
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}
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/** Function called after an SPI transfer
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*/
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static void CommsCallback(uint8_t crc_ok, uint8_t crc_val)
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{
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#ifndef IN_AHRS
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PIOS_SPI_RC_PinSet(opahrs_spi_id, 1); //signal the end of the transfer
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#endif
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txPacket.command = COMMS_NULL; //we must send something so default to null
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// While the crc is ok, there is a magic value in the received data for extra security
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if (rxPacket.magicNumber != RXMAGIC) {
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crc_ok = false;
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}
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if (crc_ok) {
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// The received data is OK, update link state and handle data
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if (!linkOk && okCount > 0) {
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okCount--;
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if (okCount == 0) {
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linkOk = true;
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okCount = MAX_CRC_ERRORS;
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emptyCount = MIN_EMPTY_OBJECTS;
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}
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}
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HandleRxPacket();
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} else {
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// The received data is incorrect, update state
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#ifdef IN_AHRS //AHRS - do we neeed to enter program mode?
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if (memcmp(&rxPacket, SPI_PROGRAM_REQUEST, SPI_PROGRAM_REQUEST_LENGTH) == 0)
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{
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rxPacket.magicNumber = 0;
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programReceive = true; //flag it to be executed in program space
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return;
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}
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#endif
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txPacket.status.crcErrors++;
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if (linkOk && okCount > 0) {
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okCount--;
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if (okCount == 0) {
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linkOk = false;
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okCount = MIN_OK_FRAMES;
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}
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}
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}
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rxPacket.magicNumber = 0;
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#ifdef IN_AHRS
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/*queue next frame
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If PIOS_SPI_TransferBlock() fails for any reason, comms will stop working.
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In that case, AhrsPoll() should kick start things again.
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*/
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PIOS_SPI_TransferBlock(opahrs_spi_id, (uint8_t *) & txPacket, (uint8_t *) & rxPacket, sizeof(CommsDataPacket), &CommsCallback);
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#endif
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}
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/** Call callbacks for object where new data is received
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*/
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static void PollEvents(void)
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{
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for (int idx = 0; idx < MAX_AHRS_OBJECTS; idx++) {
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if (objCallbacks[idx]) {
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PIOS_IRQ_Disable();
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if (callbackPending[idx]) {
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callbackPending[idx] = false;
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PIOS_IRQ_Enable();
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objCallbacks[idx] (AhrsFromIndex(idx));
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} else {
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PIOS_IRQ_Enable();
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}
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}
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}
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}
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#ifdef IN_AHRS
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void AhrsPoll()
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{
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if(programReceive)
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{
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AhrsProgramReceive(opahrs_spi_id);
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programReceive = false;
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}
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PollEvents();
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if (PIOS_SPI_Busy(opahrs_spi_id) != 0) { //Everything is working correctly
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return;
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}
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txPacket.status.kickStarts++;
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//comms have broken down - try kick starting it.
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txPacket.command = COMMS_NULL; //we must send something so default to null
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PIOS_SPI_TransferBlock(opahrs_spi_id, (uint8_t *) & txPacket, (uint8_t *) & rxPacket, sizeof(CommsDataPacket), &CommsCallback);
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}
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bool AhrsLinkReady(void)
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{
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for (int ct = 0; ct < MAX_AHRS_OBJECTS; ct++) {
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if (!readyObjects[ct]) {
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return (false);
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}
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}
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return (linkOk);
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}
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#else
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void AhrsSendObjects(void)
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{
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static bool oldLink = false;
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PollEvents();
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if (oldLink != linkOk) {
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oldLink = linkOk;
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if (linkOk) {
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for (int ct = 0; ct < MAX_AHRS_OBJECTS; ct++) {
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AhrsObjHandle hdl = AhrsFromIndex(ct);
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if (!hdl) { //paranoid - shouldn't ever happen
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continue;
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}
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AhrsSharedData data;
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UAVObjGetData(hdl->uavHandle, &data);
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AhrsSetData(hdl, &data);
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SetObjectDirty(ct); //force even unchanged data to be sent
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}
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}
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}
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FillObjectPacket();
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SendPacket();
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}
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void SendPacket(void)
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{
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#ifndef IN_AHRS
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PIOS_SPI_RC_PinSet(opahrs_spi_id, 0);
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#endif
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//no point checking if this failed. There isn't much we could do about it if it did fail
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PIOS_SPI_TransferBlock(opahrs_spi_id, (uint8_t *) & txPacket, (uint8_t *) & rxPacket, sizeof(CommsDataPacket), &CommsCallback);
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}
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static void AhrsUpdatedCb(AhrsObjHandle handle)
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{
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UAVObjSetData(handle->uavHandle, handle->data);
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return;
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}
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#endif
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