mirror of
https://github.com/wpilibsuite/allwpilib
synced 2026-06-21 01:01:43 +00:00
This is the changes made by Patrick Plenefisch converting the native code to use CMake and the CMake Maven Plugin, as opposed to the native Maven plugin. This is to allow for compatibility with newer versions of the GCC toolchain. All the cpp sources were moved from maven style directories to cpp style directories for CMake. Change-Id: I67f5e3608948f37c83b0990d232105a3784f8593
401 lines
11 KiB
C++
401 lines
11 KiB
C++
/*----------------------------------------------------------------------------*/
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/* Copyright (c) FIRST 2008. All Rights Reserved. */
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/* Open Source Software - may be modified and shared by FRC teams. The code */
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/* must be accompanied by the FIRST BSD license file in $(WIND_BASE)/WPILib. */
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/*----------------------------------------------------------------------------*/
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#include "Dashboard.h"
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#include "DriverStation.h"
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//#include "NetworkCommunication/UsageReporting.h"
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#include "HAL/cpp/Synchronized.h"
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#include "WPIErrors.h"
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#include <string.h>
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#include <stdarg.h>
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const int32_t Dashboard::kMaxDashboardDataSize;
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/**
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* Dashboard contructor.
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*
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* This is only called once when the DriverStation constructor is called.
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*/
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Dashboard::Dashboard(MUTEX_ID statusDataSem)
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: m_userStatusData (NULL)
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, m_userStatusDataSize (0)
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, m_localBuffer (NULL)
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, m_localPrintBuffer (NULL)
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, m_packPtr (NULL)
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, m_printSemaphore (0)
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, m_statusDataSemaphore (statusDataSem)
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{
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m_userStatusData = new char[kMaxDashboardDataSize];
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m_localBuffer = new char[kMaxDashboardDataSize];
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m_localPrintBuffer = new char[kMaxDashboardDataSize * 2];
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m_localPrintBuffer[0] = 0;
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m_packPtr = m_localBuffer;
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m_printSemaphore = initializeMutexNormal();
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}
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/**
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* Dashboard destructor.
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*
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* Called only when the DriverStation class is destroyed.
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*/
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Dashboard::~Dashboard()
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{
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deleteMutex(m_printSemaphore);
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m_packPtr = NULL;
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delete [] m_localPrintBuffer;
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m_localPrintBuffer = NULL;
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delete [] m_localBuffer;
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m_localBuffer = NULL;
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delete [] m_userStatusData;
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m_userStatusData = NULL;
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}
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/**
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* Pack a signed 8-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddI8(int8_t value)
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{
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if (!ValidateAdd(sizeof(int8_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kI8);
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}
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/**
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* Pack a signed 16-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddI16(int16_t value)
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{
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if (!ValidateAdd(sizeof(int16_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kI16);
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}
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/**
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* Pack a signed 32-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddI32(int32_t value)
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{
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if (!ValidateAdd(sizeof(int32_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kI32);
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}
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/**
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* Pack an unsigned 8-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddU8(uint8_t value)
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{
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if (!ValidateAdd(sizeof(uint8_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kU8);
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}
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/**
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* Pack an unsigned 16-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddU16(uint16_t value)
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{
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if (!ValidateAdd(sizeof(uint16_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kU16);
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}
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/**
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* Pack an unsigned 32-bit int into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddU32(uint32_t value)
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{
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if (!ValidateAdd(sizeof(uint32_t))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kU32);
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}
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/**
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* Pack a 32-bit floating point number into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddFloat(float value)
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{
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if (!ValidateAdd(sizeof(float))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kFloat);
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}
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/**
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* Pack a 64-bit floating point number into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddDouble(double value)
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{
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if (!ValidateAdd(sizeof(double))) return;
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memcpy(m_packPtr, (char*)&value, sizeof(value));
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m_packPtr += sizeof(value);
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AddedElement(kDouble);
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}
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/**
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* Pack a boolean into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddBoolean(bool value)
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{
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if (!ValidateAdd(sizeof(char))) return;
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*m_packPtr = value ? 1 : 0;
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m_packPtr += sizeof(char);
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AddedElement(kBoolean);
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}
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/**
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* Pack a NULL-terminated string of 8-bit characters into the dashboard data structure.
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* @param value Data to be packed into the structure.
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*/
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void Dashboard::AddString(char* value)
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{
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AddString(value, strlen(value));
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}
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/**
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* Pack a string of 8-bit characters of specified length into the dashboard data structure.
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* @param value Data to be packed into the structure.
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* @param length The number of bytes in the string to pack.
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*/
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void Dashboard::AddString(char* value, int32_t length)
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{
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if (!ValidateAdd(length + sizeof(length))) return;
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memcpy(m_packPtr, (char*)&length, sizeof(length));
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m_packPtr += sizeof(length);
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memcpy(m_packPtr, value, length);
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m_packPtr += length;
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AddedElement(kString);
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}
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/**
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* Start an array in the packed dashboard data structure.
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*
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* After calling AddArray(), call the appropriate Add method for each element of the array.
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* Make sure you call the same add each time. An array must contain elements of the same type.
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* You can use clusters inside of arrays to make each element of the array contain a structure of values.
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* You can also nest arrays inside of other arrays.
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* Every call to AddArray() must have a matching call to FinalizeArray().
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*/
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void Dashboard::AddArray()
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{
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if (!ValidateAdd(sizeof(int32_t))) return;
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m_complexTypeStack.push(kArray);
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m_arrayElementCount.push_back(0);
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m_arraySizePtr.push_back((int32_t*)m_packPtr);
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m_packPtr += sizeof(int32_t);
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}
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/**
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* Indicate the end of an array packed into the dashboard data structure.
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*
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* After packing data into the array, call FinalizeArray().
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* Every call to AddArray() must have a matching call to FinalizeArray().
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*/
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void Dashboard::FinalizeArray()
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{
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if (m_complexTypeStack.top() != kArray)
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{
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wpi_setWPIError(MismatchedComplexTypeClose);
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return;
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}
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m_complexTypeStack.pop();
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*(m_arraySizePtr.back()) = m_arrayElementCount.back();
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m_arraySizePtr.pop_back();
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if (m_arrayElementCount.back() != 0)
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{
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m_expectedArrayElementType.pop_back();
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}
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m_arrayElementCount.pop_back();
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AddedElement(kOther);
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}
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/**
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* Start a cluster in the packed dashboard data structure.
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*
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* After calling AddCluster(), call the appropriate Add method for each element of the cluster.
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* You can use clusters inside of arrays to make each element of the array contain a structure of values.
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* Every call to AddCluster() must have a matching call to FinalizeCluster().
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*/
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void Dashboard::AddCluster()
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{
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m_complexTypeStack.push(kCluster);
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}
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/**
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* Indicate the end of a cluster packed into the dashboard data structure.
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*
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* After packing data into the cluster, call FinalizeCluster().
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* Every call to AddCluster() must have a matching call to FinalizeCluster().
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*/
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void Dashboard::FinalizeCluster()
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{
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if (m_complexTypeStack.top() != kCluster)
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{
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wpi_setWPIError(MismatchedComplexTypeClose);
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return;
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}
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m_complexTypeStack.pop();
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AddedElement(kOther);
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}
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/**
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* Print a string to the UserData text on the Dashboard.
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*
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* This will add text to the buffer to send to the dashboard.
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* You must call Finalize() periodically to actually send the buffer to the dashboard if you are not using the packed dashboard data.
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*/
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void Dashboard::Printf(const char *writeFmt, ...)
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{
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va_list args;
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int32_t size;
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// Check if the buffer has already been used for packing.
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if (m_packPtr != m_localBuffer)
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{
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wpi_setWPIError(DashboardDataCollision);
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return;
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}
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va_start (args, writeFmt);
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{
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Synchronized sync(m_printSemaphore);
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vsprintf(m_localPrintBuffer + strlen(m_localPrintBuffer), writeFmt, args);
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size = strlen(m_localPrintBuffer);
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}
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if (size > kMaxDashboardDataSize)
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{
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wpi_setWPIError(DashboardDataOverflow);
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}
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va_end (args);
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}
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/**
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* Indicate that the packing is complete and commit the buffer to the DriverStation.
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*
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* The packing of the dashboard packet is complete.
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* If you are not using the packed dashboard data, you can call Finalize() to commit the Printf() buffer and the error string buffer.
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* In effect, you are packing an empty structure.
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* Prepares a packet to go to the dashboard...
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* @return The total size of the data packed into the userData field of the status packet.
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*/
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int32_t Dashboard::Finalize()
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{
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if (!m_complexTypeStack.empty())
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{
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wpi_setWPIError(MismatchedComplexTypeClose);
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return 0;
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}
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static bool reported = false;
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if (!reported)
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{
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HALReport(HALUsageReporting::kResourceType_Dashboard, 0);
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reported = true;
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}
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Synchronized sync(m_statusDataSemaphore);
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// Sequence number
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DriverStation::GetInstance()->IncrementUpdateNumber();
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// Packed Dashboard Data
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m_userStatusDataSize = m_packPtr - m_localBuffer;
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memcpy(m_userStatusData, m_localBuffer, m_userStatusDataSize);
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m_packPtr = m_localBuffer;
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return m_userStatusDataSize;
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}
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/**
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* Called by the DriverStation class to retrieve buffers, sizes, etc. for writing
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* to the NetworkCommunication task.
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* This function is called while holding the m_statusDataSemaphore.
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*/
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void Dashboard::GetStatusBuffer(char **userStatusData, int32_t* userStatusDataSize)
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{
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// User printed strings
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if (m_localPrintBuffer[0] != 0)
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{
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// Sequence number
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DriverStation::GetInstance()->IncrementUpdateNumber();
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int32_t printSize;
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Synchronized syncPrint(m_printSemaphore);
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printSize = strlen(m_localPrintBuffer);
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m_userStatusDataSize = printSize;
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memcpy(m_userStatusData, m_localPrintBuffer, m_userStatusDataSize);
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m_localPrintBuffer[0] = 0;
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}
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*userStatusData = m_userStatusData;
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*userStatusDataSize = m_userStatusDataSize;
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}
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/**
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* Validate that the data being packed will fit in the buffer.
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*/
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bool Dashboard::ValidateAdd(int32_t size)
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{
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if ((m_packPtr - m_localBuffer) + size > kMaxDashboardDataSize)
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{
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wpi_setWPIError(DashboardDataOverflow);
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return false;
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}
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// Make sure printf is not being used at the same time.
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if (m_localPrintBuffer[0] != 0)
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{
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wpi_setWPIError(DashboardDataCollision);
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return false;
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}
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return true;
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}
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/**
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* Check for consistent types when adding elements to an array and keep track of the number of elements in the array.
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*/
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void Dashboard::AddedElement(Type type)
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{
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if(IsArrayRoot())
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{
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if (m_arrayElementCount.back() == 0)
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{
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m_expectedArrayElementType.push_back(type);
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}
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else
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{
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if (type != m_expectedArrayElementType.back())
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{
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wpi_setWPIError(InconsistentArrayValueAdded);
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}
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}
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m_arrayElementCount.back() = m_arrayElementCount.back() + 1;
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}
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}
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/**
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* If the top of the type stack an array?
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*/
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bool Dashboard::IsArrayRoot()
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{
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return !m_complexTypeStack.empty() && m_complexTypeStack.top() == kArray;
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}
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