mirror of https://github.com/ARMmbed/mbed-os.git
Moved specialized functions to CPP file
Template specialized functions are moved to cpp file, to add MbedCRC.h in mbed.h. Else linker shall multiple definition error.pull/5911/head
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/* mbed Microcontroller Library
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* Copyright (c) 2018 ARM Limited
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <stddef.h>
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#include "drivers/TableCRC.h"
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#include "drivers/MbedCRC.h"
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namespace mbed {
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/** \addtogroup drivers */
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/** @{*/
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/* Default values for different types of polynomials
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*/
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template <uint32_t polynomial, uint8_t width>
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MbedCRC<polynomial, width>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder), _crc_table(NULL)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_32BIT_ANSI, 32>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_32bit_ANSI)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_8BIT_CCITT, 8>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_8bit_CCITT)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_7BIT_SD, 7>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_7Bit_SD)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_CCITT, 16>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_16bit_CCITT)
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{
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}
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template<>
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MbedCRC<POLY_16BIT_IBM, 16>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_16bit_IBM)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_32BIT_ANSI, 32>::MbedCRC():
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_initial_value(~(0x0)), _final_xor(~(0x0)), _reflect_data(true), _reflect_remainder(true),
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_crc_table((uint32_t *)Table_CRC_32bit_ANSI)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_IBM, 16>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(true), _reflect_remainder(true),
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_crc_table((uint32_t *)Table_CRC_16bit_IBM)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_CCITT, 16>::MbedCRC():
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_initial_value(~(0x0)), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_16bit_CCITT)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_7BIT_SD, 7>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_7Bit_SD)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_8BIT_CCITT, 8>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_8bit_CCITT)
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{
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mbed_crc_ctor();
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}
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/** @}*/
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} // namespace mbed
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@ -404,94 +404,6 @@ private:
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}
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};
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/* Default values for different types of polynomials
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*/
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template <uint32_t polynomial, uint8_t width>
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MbedCRC<polynomial, width>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder), _crc_table(NULL)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_32BIT_ANSI, 32>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_32bit_ANSI)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_8BIT_CCITT, 8>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_8bit_CCITT)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_7BIT_SD, 7>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_7Bit_SD)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_CCITT, 16>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_16bit_CCITT)
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{
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}
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template<>
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MbedCRC<POLY_16BIT_IBM, 16>::MbedCRC(uint32_t initial_xor, uint32_t final_xor, bool reflect_data, bool reflect_remainder):
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_initial_value(initial_xor), _final_xor(final_xor), _reflect_data(reflect_data), _reflect_remainder(reflect_remainder),
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_crc_table((uint32_t *)Table_CRC_16bit_IBM)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_32BIT_ANSI, 32>::MbedCRC():
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_initial_value(~(0x0)), _final_xor(~(0x0)), _reflect_data(true), _reflect_remainder(true),
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_crc_table((uint32_t *)Table_CRC_32bit_ANSI)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_IBM, 16>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(true), _reflect_remainder(true),
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_crc_table((uint32_t *)Table_CRC_16bit_IBM)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_16BIT_CCITT, 16>::MbedCRC():
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_initial_value(~(0x0)), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_16bit_CCITT)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_7BIT_SD, 7>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_7Bit_SD)
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{
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mbed_crc_ctor();
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}
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template<>
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MbedCRC<POLY_8BIT_CCITT, 8>::MbedCRC():
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_initial_value(0), _final_xor(0), _reflect_data(false), _reflect_remainder(false),
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_crc_table((uint32_t *)Table_CRC_8bit_CCITT)
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{
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mbed_crc_ctor();
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}
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#if defined ( __CC_ARM )
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#elif defined ( __GNUC__ )
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#pragma GCC diagnostic pop
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