Merge remote-tracking branch 'upstream/development' into mueller/possible-ring-buffer-fix
This commit is contained in:
commit
f598f7030f
@ -25,6 +25,8 @@ and this project adheres to [Semantic Versioning](http://semver.org/).
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- `SimpleRingBuffer::writeData` now checks if the amount is larger than the total size of the
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Buffer and rejects such writeData calls with `HasReturnvaluesIF::RETURN_FAILED`
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PR: https://egit.irs.uni-stuttgart.de/fsfw/fsfw/pulls/586
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- HAL Linux Uart: Baudrate and bits per word are enums now, avoiding misconfigurations
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PR: https://egit.irs.uni-stuttgart.de/fsfw/fsfw/pulls/585
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## Removed
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@ -148,16 +148,16 @@ void UartComIF::setDatasizeOptions(struct termios* options, UartCookie* uartCook
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/* Clear size bits */
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options->c_cflag &= ~CSIZE;
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switch (uartCookie->getBitsPerWord()) {
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case 5:
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case BitsPerWord::BITS_5:
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options->c_cflag |= CS5;
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break;
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case 6:
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case BitsPerWord::BITS_6:
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options->c_cflag |= CS6;
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break;
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case 7:
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case BitsPerWord::BITS_7:
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options->c_cflag |= CS7;
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break;
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case 8:
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case BitsPerWord::BITS_8:
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options->c_cflag |= CS8;
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break;
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default:
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@ -193,82 +193,126 @@ void UartComIF::setFixedOptions(struct termios* options) {
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void UartComIF::configureBaudrate(struct termios* options, UartCookie* uartCookie) {
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switch (uartCookie->getBaudrate()) {
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case 50:
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case UartBaudRate::RATE_50:
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cfsetispeed(options, B50);
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cfsetospeed(options, B50);
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break;
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case 75:
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case UartBaudRate::RATE_75:
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cfsetispeed(options, B75);
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cfsetospeed(options, B75);
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break;
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case 110:
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case UartBaudRate::RATE_110:
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cfsetispeed(options, B110);
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cfsetospeed(options, B110);
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break;
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case 134:
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case UartBaudRate::RATE_134:
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cfsetispeed(options, B134);
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cfsetospeed(options, B134);
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break;
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case 150:
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case UartBaudRate::RATE_150:
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cfsetispeed(options, B150);
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cfsetospeed(options, B150);
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break;
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case 200:
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case UartBaudRate::RATE_200:
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cfsetispeed(options, B200);
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cfsetospeed(options, B200);
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break;
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case 300:
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case UartBaudRate::RATE_300:
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cfsetispeed(options, B300);
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cfsetospeed(options, B300);
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break;
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case 600:
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case UartBaudRate::RATE_600:
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cfsetispeed(options, B600);
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cfsetospeed(options, B600);
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break;
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case 1200:
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case UartBaudRate::RATE_1200:
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cfsetispeed(options, B1200);
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cfsetospeed(options, B1200);
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break;
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case 1800:
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case UartBaudRate::RATE_1800:
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cfsetispeed(options, B1800);
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cfsetospeed(options, B1800);
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break;
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case 2400:
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case UartBaudRate::RATE_2400:
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cfsetispeed(options, B2400);
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cfsetospeed(options, B2400);
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break;
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case 4800:
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case UartBaudRate::RATE_4800:
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cfsetispeed(options, B4800);
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cfsetospeed(options, B4800);
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break;
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case 9600:
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case UartBaudRate::RATE_9600:
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cfsetispeed(options, B9600);
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cfsetospeed(options, B9600);
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break;
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case 19200:
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case UartBaudRate::RATE_19200:
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cfsetispeed(options, B19200);
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cfsetospeed(options, B19200);
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break;
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case 38400:
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case UartBaudRate::RATE_38400:
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cfsetispeed(options, B38400);
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cfsetospeed(options, B38400);
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break;
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case 57600:
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case UartBaudRate::RATE_57600:
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cfsetispeed(options, B57600);
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cfsetospeed(options, B57600);
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break;
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case 115200:
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case UartBaudRate::RATE_115200:
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cfsetispeed(options, B115200);
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cfsetospeed(options, B115200);
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break;
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case 230400:
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case UartBaudRate::RATE_230400:
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cfsetispeed(options, B230400);
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cfsetospeed(options, B230400);
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break;
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case 460800:
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case UartBaudRate::RATE_460800:
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cfsetispeed(options, B460800);
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cfsetospeed(options, B460800);
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break;
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case UartBaudRate::RATE_500000:
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cfsetispeed(options, B500000);
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cfsetospeed(options, B500000);
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break;
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case UartBaudRate::RATE_576000:
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cfsetispeed(options, B576000);
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cfsetospeed(options, B576000);
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break;
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case UartBaudRate::RATE_921600:
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cfsetispeed(options, B921600);
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cfsetospeed(options, B921600);
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break;
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case UartBaudRate::RATE_1000000:
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cfsetispeed(options, B1000000);
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cfsetospeed(options, B1000000);
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break;
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case UartBaudRate::RATE_1152000:
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cfsetispeed(options, B1152000);
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cfsetospeed(options, B1152000);
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break;
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case UartBaudRate::RATE_1500000:
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cfsetispeed(options, B1500000);
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cfsetospeed(options, B1500000);
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break;
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case UartBaudRate::RATE_2000000:
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cfsetispeed(options, B2000000);
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cfsetospeed(options, B2000000);
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break;
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case UartBaudRate::RATE_2500000:
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cfsetispeed(options, B2500000);
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cfsetospeed(options, B2500000);
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break;
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case UartBaudRate::RATE_3000000:
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cfsetispeed(options, B3000000);
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cfsetospeed(options, B3000000);
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break;
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case UartBaudRate::RATE_3500000:
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cfsetispeed(options, B3500000);
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cfsetospeed(options, B3500000);
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break;
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case UartBaudRate::RATE_4000000:
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cfsetispeed(options, B4000000);
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cfsetospeed(options, B4000000);
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break;
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default:
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::warning << "UartComIF::configureBaudrate: Baudrate not supported" << std::endl;
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@ -1,9 +1,9 @@
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#include "fsfw_hal/linux/uart/UartCookie.h"
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#include "UartCookie.h"
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#include <fsfw/serviceinterface.h>
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UartCookie::UartCookie(object_id_t handlerId, std::string deviceFile, UartModes uartMode,
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uint32_t baudrate, size_t maxReplyLen)
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UartBaudRate baudrate, size_t maxReplyLen)
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: handlerId(handlerId),
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deviceFile(deviceFile),
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uartMode(uartMode),
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@ -12,7 +12,7 @@ UartCookie::UartCookie(object_id_t handlerId, std::string deviceFile, UartModes
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UartCookie::~UartCookie() {}
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uint32_t UartCookie::getBaudrate() const { return baudrate; }
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UartBaudRate UartCookie::getBaudrate() const { return baudrate; }
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size_t UartCookie::getMaxReplyLen() const { return maxReplyLen; }
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@ -24,23 +24,11 @@ void UartCookie::setParityEven() { parity = Parity::EVEN; }
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Parity UartCookie::getParity() const { return parity; }
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void UartCookie::setBitsPerWord(uint8_t bitsPerWord_) {
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switch (bitsPerWord_) {
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case 5:
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case 6:
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case 7:
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case 8:
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break;
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default:
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::debug << "UartCookie::setBitsPerWord: Invalid bits per word specified" << std::endl;
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#endif
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return;
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}
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void UartCookie::setBitsPerWord(BitsPerWord bitsPerWord_) {
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bitsPerWord = bitsPerWord_;
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}
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uint8_t UartCookie::getBitsPerWord() const { return bitsPerWord; }
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BitsPerWord UartCookie::getBitsPerWord() const { return bitsPerWord; }
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StopBits UartCookie::getStopBits() const { return stopBits; }
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@ -12,6 +12,41 @@ enum class StopBits { ONE_STOP_BIT, TWO_STOP_BITS };
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enum class UartModes { CANONICAL, NON_CANONICAL };
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enum class BitsPerWord { BITS_5, BITS_6, BITS_7, BITS_8 };
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enum class UartBaudRate {
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RATE_50,
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RATE_75,
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RATE_110,
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RATE_134,
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RATE_150,
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RATE_200,
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RATE_300,
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RATE_600,
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RATE_1200,
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RATE_1800,
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RATE_2400,
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RATE_4800,
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RATE_9600,
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RATE_19200,
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RATE_38400,
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RATE_57600,
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RATE_115200,
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RATE_230400,
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RATE_460800,
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RATE_500000,
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RATE_576000,
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RATE_921600,
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RATE_1000000,
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RATE_1152000,
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RATE_1500000,
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RATE_2000000,
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RATE_2500000,
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RATE_3000000,
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RATE_3500000,
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RATE_4000000
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};
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/**
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* @brief Cookie for the UartComIF. There are many options available to configure the UART driver.
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* The constructor only requests for common options like the baudrate. Other options can
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@ -27,25 +62,23 @@ class UartCookie : public CookieIF {
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* @param uartMode Specify the UART mode. The canonical mode should be used if the
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* messages are separated by a delimited character like '\n'. See the
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* termios documentation for more information
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* @param baudrate The baudrate to use for input and output. Possible Baudrates are: 50,
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* 75, 110, 134, 150, 200, 300, 600, 1200, 1800, 2400, 4800, 9600, B19200,
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* 38400, 57600, 115200, 230400, 460800
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* @param baudrate The baudrate to use for input and output.
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* @param maxReplyLen The maximum size an object using this cookie expects
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* @details
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* Default configuration: No parity
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* 8 databits (number of bits transfered with one uart frame)
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* One stop bit
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*/
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UartCookie(object_id_t handlerId, std::string deviceFile, UartModes uartMode, uint32_t baudrate,
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size_t maxReplyLen);
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UartCookie(object_id_t handlerId, std::string deviceFile, UartModes uartMode,
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UartBaudRate baudrate, size_t maxReplyLen);
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virtual ~UartCookie();
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uint32_t getBaudrate() const;
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UartBaudRate getBaudrate() const;
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size_t getMaxReplyLen() const;
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std::string getDeviceFile() const;
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Parity getParity() const;
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uint8_t getBitsPerWord() const;
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BitsPerWord getBitsPerWord() const;
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StopBits getStopBits() const;
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UartModes getUartMode() const;
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object_id_t getHandlerId() const;
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@ -76,7 +109,7 @@ class UartCookie : public CookieIF {
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/**
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* Function two set number of bits per UART frame.
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*/
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void setBitsPerWord(uint8_t bitsPerWord_);
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void setBitsPerWord(BitsPerWord bitsPerWord_);
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/**
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* Function to specify the number of stopbits.
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@ -97,10 +130,10 @@ class UartCookie : public CookieIF {
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std::string deviceFile;
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const UartModes uartMode;
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bool flushInput = false;
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uint32_t baudrate;
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UartBaudRate baudrate;
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size_t maxReplyLen = 0;
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Parity parity = Parity::NONE;
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uint8_t bitsPerWord = 8;
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BitsPerWord bitsPerWord = BitsPerWord::BITS_8;
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uint8_t readCycles = 1;
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StopBits stopBits = StopBits::ONE_STOP_BIT;
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bool replySizeFixed = true;
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@ -47,13 +47,14 @@ LocalPoolObjectBase::LocalPoolObjectBase(object_id_t poolOwner, lp_id_t poolId,
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HasLocalDataPoolIF* hkOwner = ObjectManager::instance()->get<HasLocalDataPoolIF>(poolOwner);
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if (hkOwner == nullptr) {
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#if FSFW_CPP_OSTREAM_ENABLED == 1
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sif::error << "LocalPoolVariable: The supplied pool owner did not implement the correct "
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"interface HasLocalDataPoolIF!"
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<< std::endl;
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sif::error << "LocalPoolVariable: The supplied pool owner 0x" << std::hex << poolOwner
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<< std::dec << " did not implement the correct interface "
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<< "HasLocalDataPoolIF" << std::endl;
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#else
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sif::printError(
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"LocalPoolVariable: The supplied pool owner did not implement the correct "
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"interface HasLocalDataPoolIF!\n");
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"LocalPoolVariable: The supplied pool owner 0x%08x did not implement the correct "
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"interface HasLocalDataPoolIF\n",
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poolOwner);
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#endif
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return;
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}
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@ -46,7 +46,7 @@ class StaticLocalDataSet : public LocalPoolDataSetBase {
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}
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private:
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std::array<PoolVariableIF*, NUM_VARIABLES> poolVarList;
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std::array<PoolVariableIF*, NUM_VARIABLES> poolVarList = {};
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};
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#endif /* FSFW_DATAPOOLLOCAL_STATICLOCALDATASET_H_ */
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Loading…
Reference in New Issue
Block a user