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  • Compute Graph Framework SDK Reference  5.8
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    dwRadarChannelNode.hpp
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    1
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    30
    31#ifndef DW_FRAMEWORK_RADAR_CHANNEL_NODE_HPP_
    32#define DW_FRAMEWORK_RADAR_CHANNEL_NODE_HPP_
    33
    34#include <dwcgf/node/Node.hpp>
    38#include <dwcgf/port/Port.hpp>
    40#include <dwcgf/pass/Pass.hpp>
    43/* Need to include the appropriate ChannelPacketTypes.hpp since port initialization requires
    44 the parameter_trait overrides. Otherwise, it will be considered as a packet of generic type. */
    46
    47#include <dw/sensors/Sensors.h>
    48#include <dw/sensors/radar/Radar.h>
    49
    50namespace dw
    51{
    52namespace framework
    53{
    54
    59{
    60public:
    61 // TODO(dwplc): FP -- This is used when the logger is called and not just at assignment.
    62 // coverity[autosar_cpp14_a0_1_1_violation]
    63 static constexpr char8_t LOG_TAG[] = "dwRadarChannelNode";
    64
    65 // TODO(dwplc): RFD -- This function returns auto as it is a wrapper for a template function.
    66 // coverity[autosar_cpp14_a7_1_5_violation] RFD Pending: TID-1984
    67 static constexpr auto describeInputPorts()
    68 {
    69 // TODO(dwplc): RFD -- user defined literal being interpreted as c style cast.
    70 // coverity[autosar_cpp14_a5_2_2_violation] RFD Pending: TID-1983
    72 DW_DESCRIBE_PORT(dwCalibratedExtrinsics, "SENSOR_EXTRINSICS"_sv),
    73 DW_DESCRIBE_PORT(dwTime_t, "VIRTUAL_SYNC_TIME"_sv),
    74 DW_DESCRIBE_PORT(dwRadarScan, "INPUT_FRAME"_sv, PortBinding::REQUIRED));
    75 };
    76 // TODO(dwplc): RFD -- This function returns auto as it is a wrapper for a template function.
    77 // coverity[autosar_cpp14_a7_1_5_violation] RFD Pending: TID-1984
    78 static constexpr auto describeOutputPorts()
    79 {
    80 // TODO(dwplc): RFD -- user defined literal being interpreted as c style cast.
    81 // coverity[autosar_cpp14_a5_2_2_violation] RFD Pending: TID-1983
    83 DW_DESCRIBE_PORT(dwSensorNodeProperties, "SENSOR_PROPERTIES"_sv),
    84 DW_DESCRIBE_PORT(dwRadarScan, "PROCESSED_DATA"_sv),
    85 DW_DESCRIBE_PORT(dwSensorTsAndID, "TIMESTAMP"_sv),
    86 DW_DESCRIBE_PORT(dwTime_t, "NEXT_TIMESTAMP"_sv));
    87 };
    88
    89 // TODO(dwplc): RFD -- This function returns auto as it is a wrapper for a template function.
    90 // coverity[autosar_cpp14_a7_1_5_violation] RFD Pending: TID-1984
    91 static constexpr auto describePasses()
    92 {
    93 // TODO(dwplc): RFD -- user defined literal being interpreted as c style cast.
    94 // coverity[autosar_cpp14_a5_2_2_violation] RFD Pending: TID-1983
    96 describePass("SETUP"_sv, DW_PROCESSOR_TYPE_CPU),
    97 describePass("PROCESSED_OUTPUT"_sv, DW_PROCESSOR_TYPE_CPU),
    98 describePass("TEARDOWN"_sv, DW_PROCESSOR_TYPE_CPU));
    99 };
    100
    101 dwSensorType getSensorType() const
    102 {
    103 return DW_SENSOR_RADAR;
    104 }
    105
    106 static std::unique_ptr<dwRadarChannelNode> create(ParameterProvider const& provider);
    107
    108 // TODO(dwplc): RFD -- This function returns auto as it is a wrapper for a template function.
    109 // coverity[autosar_cpp14_a7_1_5_violation] RFD Pending: TID-1984
    110 static constexpr auto describeParameters()
    111 {
    112 // TODO(dwplc): RFD -- user defined literal being interpreted as c style cast.
    113 // coverity[autosar_cpp14_a5_2_2_violation] RFD Pending: TID-1983
    114 return describeConstructorArguments<char8_t const*, dwRigHandle_t, dwSALHandle_t, dwContextHandle_t>(
    117 char8_t const*,
    119 "sensorId"_sv)),
    122 dwRigHandle_t)),
    125 dwSALHandle_t)),
    128 dwContextHandle_t)));
    129 }
    130
    131 dwRadarChannelNode(char8_t const* sensorName, dwConstRigHandle_t rigHandle,
    132 dwSALHandle_t sal, dwContextHandle_t ctx);
    133 dwRadarChannelNode(dwSensorParams const& params,
    134 dwSALHandle_t sal, dwContextHandle_t ctx);
    135 ~dwRadarChannelNode() override = default;
    136 dwRadarChannelNode(dwRadarChannelNode const& other) = default;
    140};
    141} // namespace framework
    142} // namespace dw
    143#endif // DW_FRAMEWORK_RADAR_CHANNEL_NODE_HPP_
    #define DW_DESCRIBE_INDEX_PARAMETER_WITH_SEMANTIC(TYPE_NAME, SEMANTIC_TYPE_NAME, args...)
    #define DW_DESCRIBE_UNNAMED_PARAMETER(TYPE_NAME, args...)
    #define DW_DESCRIBE_PORT(TYPE_NAME, args...)
    The interface to access parameter values identified by name and/or (semantic) type.
    static constexpr auto describeOutputPorts()
    dwRadarChannelNode(char8_t const *sensorName, dwConstRigHandle_t rigHandle, dwSALHandle_t sal, dwContextHandle_t ctx)
    static constexpr auto describeInputPorts()
    dwRadarChannelNode & operator=(dwRadarChannelNode &&)=default
    dwRadarChannelNode & operator=(dwRadarChannelNode const &)=default
    static constexpr auto describePasses()
    static std::unique_ptr< dwRadarChannelNode > create(ParameterProvider const &provider)
    dwRadarChannelNode(dwRadarChannelNode &&other)=default
    static constexpr char8_t LOG_TAG[]
    ~dwRadarChannelNode() override=default
    dwRadarChannelNode(dwRadarChannelNode const &other)=default
    static constexpr auto describeParameters()
    dwRadarChannelNode(dwSensorParams const &params, dwSALHandle_t sal, dwContextHandle_t ctx)
    constexpr auto describePortCollection(Args &&... args)
    constexpr std::tuple< dw::core::StringView, dwProcessorType > describePass(dw::core::StringView const &&name, dwProcessorType processorType)
    CalibratedExtrinsics { CalibrationExtrinsicProfileName extrinsicProfileName dwCalibratedExtrinsics
    dwSensorNodeProperties { uint64_t sensorId dwSensorNodeProperties
    constexpr auto describeConstructorArgument(const Args &&... args)
    dwRigHandle_t rigHandle
    Definition: dwRigNode.hpp:63
    constexpr auto describePassCollection(const Args &&... args)
    Definition: Exception.hpp:47
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