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Update to 2018_v4 image and new build system. (#598)
* Revert "Force OpenCV to 3.1.0 (#602)"
This reverts commit 50ed55e8e2.
* Removes Simulation
* Removes old build system
* Removes old gtest
* Adds new gmock and gtest
* Updates to new ni-libraries
* removes MyRobot (to be replaced)
* moves files to new location
* Adds new sim backend and new test executables
* updates .styleguide and .gitignore
* Changes cpp WPILibVersion to a function
MSVC throws an AV with the old version.
* Disables USBCamera on all systems except for linux
* 2018 NI Libraries
* New build system
This commit is contained in:
committed by
Peter Johnson
parent
50ed55e8e2
commit
e1195e8b9d
159
hal/src/main/native/athena/SerialPort.cpp
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159
hal/src/main/native/athena/SerialPort.cpp
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/*----------------------------------------------------------------------------*/
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/* Copyright (c) FIRST 2016-2017. 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 the root directory of */
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/* the project. */
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/*----------------------------------------------------------------------------*/
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#include "HAL/SerialPort.h"
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#include <string>
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#include "HAL/cpp/SerialHelper.h"
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#include "visa/visa.h"
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static int32_t resourceManagerHandle;
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static HAL_SerialPort portHandles[4];
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extern "C" {
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void HAL_InitializeSerialPort(HAL_SerialPort port, int32_t* status) {
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std::string portName;
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if (resourceManagerHandle == 0)
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viOpenDefaultRM(reinterpret_cast<ViSession*>(&resourceManagerHandle));
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hal::SerialHelper serialHelper;
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portName = serialHelper.GetVISASerialPortName(port, status);
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if (*status < 0) {
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return;
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}
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*status = viOpen(resourceManagerHandle, const_cast<char*>(portName.c_str()),
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VI_NULL, VI_NULL,
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reinterpret_cast<ViSession*>(&portHandles[port]));
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialBaudRate(HAL_SerialPort port, int32_t baud, int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_BAUD, baud);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialDataBits(HAL_SerialPort port, int32_t bits, int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_DATA_BITS, bits);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialParity(HAL_SerialPort port, int32_t parity, int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_PARITY, parity);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialStopBits(HAL_SerialPort port, int32_t stopBits,
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int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_STOP_BITS, stopBits);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialWriteMode(HAL_SerialPort port, int32_t mode,
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int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_WR_BUF_OPER_MODE, mode);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialFlowControl(HAL_SerialPort port, int32_t flow,
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int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_FLOW_CNTRL, flow);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialTimeout(HAL_SerialPort port, double timeout,
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int32_t* status) {
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*status = viSetAttribute(portHandles[port], VI_ATTR_TMO_VALUE,
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static_cast<uint32_t>(timeout * 1e3));
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if (*status > 0) *status = 0;
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}
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void HAL_EnableSerialTermination(HAL_SerialPort port, char terminator,
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int32_t* status) {
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viSetAttribute(portHandles[port], VI_ATTR_TERMCHAR_EN, VI_TRUE);
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viSetAttribute(portHandles[port], VI_ATTR_TERMCHAR, terminator);
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*status = viSetAttribute(portHandles[port], VI_ATTR_ASRL_END_IN,
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VI_ASRL_END_TERMCHAR);
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if (*status > 0) *status = 0;
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}
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void HAL_DisableSerialTermination(HAL_SerialPort port, int32_t* status) {
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viSetAttribute(portHandles[port], VI_ATTR_TERMCHAR_EN, VI_FALSE);
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*status =
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viSetAttribute(portHandles[port], VI_ATTR_ASRL_END_IN, VI_ASRL_END_NONE);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialReadBufferSize(HAL_SerialPort port, int32_t size,
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int32_t* status) {
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*status = viSetBuf(portHandles[port], VI_READ_BUF, size);
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if (*status > 0) *status = 0;
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}
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void HAL_SetSerialWriteBufferSize(HAL_SerialPort port, int32_t size,
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int32_t* status) {
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*status = viSetBuf(portHandles[port], VI_WRITE_BUF, size);
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if (*status > 0) *status = 0;
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}
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int32_t HAL_GetSerialBytesReceived(HAL_SerialPort port, int32_t* status) {
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int32_t bytes = 0;
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*status = viGetAttribute(portHandles[port], VI_ATTR_ASRL_AVAIL_NUM, &bytes);
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if (*status > 0) *status = 0;
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return bytes;
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}
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int32_t HAL_ReadSerial(HAL_SerialPort port, char* buffer, int32_t count,
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int32_t* status) {
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uint32_t retCount = 0;
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*status =
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viRead(portHandles[port], (ViPBuf)buffer, count, (ViPUInt32)&retCount);
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if (*status == VI_ERROR_IO || *status == VI_ERROR_ASRL_OVERRUN ||
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*status == VI_ERROR_ASRL_FRAMING || *status == VI_ERROR_ASRL_PARITY) {
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int32_t localStatus = 0;
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HAL_ClearSerial(port, &localStatus);
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}
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if (*status == VI_ERROR_TMO || *status > 0) *status = 0;
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return static_cast<int32_t>(retCount);
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}
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int32_t HAL_WriteSerial(HAL_SerialPort port, const char* buffer, int32_t count,
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int32_t* status) {
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uint32_t retCount = 0;
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*status =
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viWrite(portHandles[port], (ViPBuf)buffer, count, (ViPUInt32)&retCount);
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if (*status > 0) *status = 0;
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return static_cast<int32_t>(retCount);
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}
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void HAL_FlushSerial(HAL_SerialPort port, int32_t* status) {
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*status = viFlush(portHandles[port], VI_WRITE_BUF);
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if (*status > 0) *status = 0;
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}
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void HAL_ClearSerial(HAL_SerialPort port, int32_t* status) {
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*status = viClear(portHandles[port]);
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if (*status > 0) *status = 0;
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}
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void HAL_CloseSerial(HAL_SerialPort port, int32_t* status) {
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*status = viClose(portHandles[port]);
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if (*status > 0) *status = 0;
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}
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} // extern "C"
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