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motohawk_no_floating_point_numbers.c
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motohawk_no_floating_point_numbers.c
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/**
* The MIT License (MIT)
*
* Copyright (c) 2018-2019 Erik Moqvist
*
* Permission is hereby granted, free of charge, to any person
* obtaining a copy of this software and associated documentation
* files (the "Software"), to deal in the Software without
* restriction, including without limitation the rights to use, copy,
* modify, merge, publish, distribute, sublicense, and/or sell copies
* of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
/**
*/
#include <string.h>
#include "motohawk.h"
static inline uint8_t pack_left_shift_u8(
uint8_t value,
uint8_t shift,
uint8_t mask)
{
return (uint8_t)((uint8_t)(value << shift) & mask);
}
static inline uint8_t pack_left_shift_u16(
uint16_t value,
uint8_t shift,
uint8_t mask)
{
return (uint8_t)((uint8_t)(value << shift) & mask);
}
static inline uint8_t pack_right_shift_u16(
uint16_t value,
uint8_t shift,
uint8_t mask)
{
return (uint8_t)((uint8_t)(value >> shift) & mask);
}
static inline uint16_t unpack_left_shift_u16(
uint8_t value,
uint8_t shift,
uint8_t mask)
{
return (uint16_t)((uint16_t)(value & mask) << shift);
}
static inline uint8_t unpack_right_shift_u8(
uint8_t value,
uint8_t shift,
uint8_t mask)
{
return (uint8_t)((uint8_t)(value & mask) >> shift);
}
static inline uint16_t unpack_right_shift_u16(
uint8_t value,
uint8_t shift,
uint8_t mask)
{
return (uint16_t)((uint16_t)(value & mask) >> shift);
}
int motohawk_example_message_pack(
uint8_t *dst_p,
const struct motohawk_example_message_t *src_p,
size_t size)
{
uint16_t temperature;
if (size < 8u) {
return (-EINVAL);
}
memset(&dst_p[0], 0, 8);
dst_p[0] |= pack_left_shift_u8(src_p->enable, 7u, 0x80u);
dst_p[0] |= pack_left_shift_u8(src_p->average_radius, 1u, 0x7eu);
temperature = (uint16_t)src_p->temperature;
dst_p[0] |= pack_right_shift_u16(temperature, 11u, 0x01u);
dst_p[1] |= pack_right_shift_u16(temperature, 3u, 0xffu);
dst_p[2] |= pack_left_shift_u16(temperature, 5u, 0xe0u);
return (8);
}
int motohawk_example_message_unpack(
struct motohawk_example_message_t *dst_p,
const uint8_t *src_p,
size_t size)
{
uint16_t temperature;
if (size < 8u) {
return (-EINVAL);
}
dst_p->enable = unpack_right_shift_u8(src_p[0], 7u, 0x80u);
dst_p->average_radius = unpack_right_shift_u8(src_p[0], 1u, 0x7eu);
temperature = unpack_left_shift_u16(src_p[0], 11u, 0x01u);
temperature |= unpack_left_shift_u16(src_p[1], 3u, 0xffu);
temperature |= unpack_right_shift_u16(src_p[2], 5u, 0xe0u);
if ((temperature & (1u << 11)) != 0u) {
temperature |= 0xf000u;
}
dst_p->temperature = (int16_t)temperature;
return (0);
}
int motohawk_example_message_init(struct motohawk_example_message_t *msg_p)
{
if (msg_p == NULL) return -1;
memset(msg_p, 0, sizeof(struct motohawk_example_message_t));
return 0;
}
bool motohawk_example_message_enable_is_in_range(uint8_t value)
{
return (value <= 1u);
}
bool motohawk_example_message_average_radius_is_in_range(uint8_t value)
{
return (value <= 50u);
}
bool motohawk_example_message_temperature_is_in_range(int16_t value)
{
return ((value >= -2048) && (value <= 2047));
}