X-Git-Url: https://gerrit.automotivelinux.org/gerrit/gitweb?a=blobdiff_plain;f=low-can-binding%2Fcan%2Fcan-decoder.cpp;h=46976b5cb9c3816e136e6f302a2664681d46d949;hb=2f60d294b3fa4e243fa67a738f9b82a0b428a7fc;hp=0c81d7a6d3a1702f038a44c306ed85e2a6a3af0c;hpb=7aed41f1bdfc76eae902d289fce699b8fde40871;p=apps%2Fagl-service-can-low-level.git diff --git a/low-can-binding/can/can-decoder.cpp b/low-can-binding/can/can-decoder.cpp index 0c81d7a6..46976b5c 100644 --- a/low-can-binding/can/can-decoder.cpp +++ b/low-can-binding/can/can-decoder.cpp @@ -19,29 +19,29 @@ #include "canutil/read.h" #include "../utils/openxc-utils.hpp" -#include "can-message-definition.hpp" +#include "message-definition.hpp" #include "../binding/low-can-hat.hpp" -/// @brief Parse the signal's bitfield from the given data and return the raw +/// @brief Parses the signal's bitfield from the given data and returns the raw /// value. /// -/// @param[in] signal - The signal to parse from the data. +/// @param[in] signal - The signal to be parsed from the data. /// @param[in] message - can_message_t to parse /// /// @return Returns the raw value of the signal parsed as a bitfield from the given byte /// array. /// -float decoder_t::parse_signal_bitfield(can_signal_t& signal, const can_message_t& message) +float decoder_t::parse_signal_bitfield(signal_t& signal, std::shared_ptr message) { - return bitfield_parse_float(message.get_data(), CAN_MESSAGE_SIZE, + return bitfield_parse_float(message->get_data(), CAN_MESSAGE_SIZE, signal.get_bit_position(), signal.get_bit_size(), signal.get_factor(), signal.get_offset()); } -/// @brief Wrap a raw CAN signal value in a DynamicField without modification. +/// @brief Wraps a raw CAN signal value in a DynamicField without modification. /// /// This is an implementation of the Signal type signature, and can be -/// used directly in the can_signal_t.decoder field. +/// used directly in the signal_t.decoder field. /// /// @param[in] signal - The details of the signal that contains the state mapping. /// @param[in] value - The numerical value that will be wrapped in a DynamicField. @@ -52,7 +52,7 @@ float decoder_t::parse_signal_bitfield(can_signal_t& signal, const can_message_t /// its numeric value. The 'send' argument will not be modified as this decoder /// always succeeds. /// -openxc_DynamicField decoder_t::decode_noop(can_signal_t& signal, float value, bool* send) +openxc_DynamicField decoder_t::decode_noop(signal_t& signal, float value, bool* send) { openxc_DynamicField decoded_value = build_DynamicField(value); @@ -61,7 +61,7 @@ openxc_DynamicField decoder_t::decode_noop(can_signal_t& signal, float value, bo /// @brief Coerces a numerical value to a boolean. /// /// This is an implementation of the Signal type signature, and can be -/// used directly in the can_signal_t.decoder field. +/// used directly in the signal_t.decoder field. /// /// @param[in] signal - The details of the signal that contains the state mapping. /// @param[in] value - The numerical value that will be converted to a boolean. @@ -72,7 +72,7 @@ openxc_DynamicField decoder_t::decode_noop(can_signal_t& signal, float value, bo /// is 0.0, otherwise true. The 'send' argument will not be modified as this /// decoder always succeeds. /// -openxc_DynamicField decoder_t::decode_boolean(can_signal_t& signal, float value, bool* send) +openxc_DynamicField decoder_t::decode_boolean(signal_t& signal, float value, bool* send) { openxc_DynamicField decoded_value = build_DynamicField(value == 0.0 ? false : true); @@ -81,7 +81,7 @@ openxc_DynamicField decoder_t::decode_boolean(can_signal_t& signal, float value, /// @brief Update the metadata for a signal and the newly received value. /// /// This is an implementation of the Signal type signature, and can be -/// used directly in the can_signal_t.decoder field. +/// used directly in the signal_t.decoder field. /// /// This function always flips 'send' to false. /// @@ -92,7 +92,7 @@ openxc_DynamicField decoder_t::decode_boolean(can_signal_t& signal, float value, /// /// @return Return value is undefined. /// -openxc_DynamicField decoder_t::decode_ignore(can_signal_t& signal, float value, bool* send) +openxc_DynamicField decoder_t::decode_ignore(signal_t& signal, float value, bool* send) { if(send) *send = false; @@ -106,7 +106,7 @@ openxc_DynamicField decoder_t::decode_ignore(can_signal_t& signal, float value, /// raw integer value. /// /// This is an implementation of the Signal type signature, and can be -/// used directly in the can_signal_t.decoder field. +/// used directly in the signal_t.decoder field. /// /// @param[in] signal - The details of the signal that contains the state mapping. /// @param[in] value - The numerical value that should map to a state. @@ -117,7 +117,7 @@ openxc_DynamicField decoder_t::decode_ignore(can_signal_t& signal, float value, /// the signal. If an equivalent isn't found, send is sent to false and the /// return value is undefined. /// -openxc_DynamicField decoder_t::decode_state(can_signal_t& signal, float value, bool* send) +openxc_DynamicField decoder_t::decode_state(signal_t& signal, float value, bool* send) { const std::string signal_state = signal.get_states((uint8_t)value); openxc_DynamicField decoded_value = build_DynamicField(signal_state); @@ -133,7 +133,7 @@ openxc_DynamicField decoder_t::decode_state(can_signal_t& signal, float value, b /// @brief Parse a signal from a CAN message, apply any required transforations /// to get a human readable value and public the result to the pipeline. /// -/// If the can_signal_t has a non-NULL 'decoder' field, the raw CAN signal value +/// If the signal_t has a non-NULL 'decoder' field, the raw CAN signal value /// will be passed to the decoder before publishing. /// /// @param[in] signal - The details of the signal to decode and forward. @@ -144,7 +144,7 @@ openxc_DynamicField decoder_t::decode_state(can_signal_t& signal, float value, b /// The decoder returns an openxc_DynamicField, which may contain a number, /// string or boolean. /// -openxc_DynamicField decoder_t::translate_signal(can_signal_t& signal, const can_message_t& message, bool* send) +openxc_DynamicField decoder_t::translate_signal(signal_t& signal, std::shared_ptr message, bool* send) { float value = decoder_t::parse_signal_bitfield(signal, message); AFB_DEBUG("Decoded message from parse_signal_bitfield: %f", value); @@ -162,7 +162,7 @@ openxc_DynamicField decoder_t::translate_signal(can_signal_t& signal, const can_ *send = false; } signal.set_last_value(value); - signal.set_timestamp(message.get_timestamp()); + signal.set_timestamp(message->get_timestamp()); signal.get_message()->set_last_value(message); return decoded_value; } @@ -170,7 +170,7 @@ openxc_DynamicField decoder_t::translate_signal(can_signal_t& signal, const can_ /// @brief Parse a signal from a CAN message and apply any required /// transforations to get a human readable value. /// -/// If the can_signal_t has a non-NULL 'decoder' field, the raw CAN signal value +/// If the signal_t has a non-NULL 'decoder' field, the raw CAN signal value /// will be passed to the decoder before returning. /// /// @param[in] signal - The details of the signal to decode and forward. @@ -181,7 +181,7 @@ openxc_DynamicField decoder_t::translate_signal(can_signal_t& signal, const can_ /// @return The decoder returns an openxc_DynamicField, which may contain a number, /// string or boolean. If 'send' is false, the return value is undefined. /// -openxc_DynamicField decoder_t::decode_signal( can_signal_t& signal, float value, bool* send) +openxc_DynamicField decoder_t::decode_signal( signal_t& signal, float value, bool* send) { signal_decoder decoder = signal.get_decoder() == nullptr ? decode_noop : signal.get_decoder(); @@ -202,7 +202,7 @@ openxc_DynamicField decoder_t::decode_signal( can_signal_t& signal, float value, /// @param[out] send - An output parameter that will be flipped to false if the value could /// not be decoded. /// -openxc_DynamicField decoder_t::decode_signal( can_signal_t& signal, const can_message_t& message, bool* send) +openxc_DynamicField decoder_t::decode_signal( signal_t& signal, std::shared_ptr message, bool* send) { float value = parse_signal_bitfield(signal, message); return decode_signal(signal, value, send);