Mercurial > public > ostc4
view Small_CPU/Inc/uartProtocol_Sentinel.h @ 845:17d9d6eddd8d Evo_2_23
Added new PreDiveCheck info page:
In case a DiveO2 sensor is connected to the OSTC than the values of the DiveO2 internal pressure and temperature sensors may be used for predive checks. The pressure sensors is used for over / under pressure test and the values are visualized using a graph to make it easier to check if the pressure keeps stable. The temperature measurement gives an indication if the scrubber is getting active. This view is highly dependend on the surface temperature but may be useful e.g. for diving in european area.
In addition the values ofthe connected sensors are shown.
author | Ideenmodellierer |
---|---|
date | Sun, 21 Jan 2024 22:24:36 +0100 |
parents | c3dd461ca3f9 |
children |
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/** ****************************************************************************** * @file uartProtocol_Sentinel.h * @author heinrichs weikamp gmbh * @version V0.0.1 * @date 15-Jan-2024 * @brief Interface functionality read data from Sentinel rebreather * @verbatim ============================================================================== ##### How to use ##### ============================================================================== @endverbatim ****************************************************************************** * @attention * * <h2><center>© COPYRIGHT(c) 2014 heinrichs weikamp</center></h2> * ****************************************************************************** */ /* Define to prevent recursive inclusion -------------------------------------*/ #ifndef UART_PROTOCOL_SENTINEL_H #define UART_PROTOCOL_SENTINEL_H #ifdef __cplusplus extern "C" { #endif /* Includes ------------------------------------------------------------------*/ #include "configuration.h" #include "stm32f4xx_hal.h" typedef enum { UART_SENTINEL_INIT = 0, /* Default Status for every sensor type */ UART_SENTINEL_IDLE, /* sensor detected and no communication pending */ UART_SENTINEL_ERROR, UART_SENTINEL_OPERATING, /* normal operation */ } uartSentinelStatus_t; typedef enum { SENTRX_Ready= 0, /* Initial state */ SENTRX_DetectStart, /* validate start byte */ SENTRX_SelectData, /* Data contained in this frame */ SENTRX_Data0, /* Process incoming data */ SENTRX_Data1, SENTRX_Data2, SENTRX_Data3, SENTRX_Data4, SENTRX_Data5, SENTRX_Data6, SENTRX_Data7, SENTRX_Data8, SENTRX_Data9, SENTRX_Data10, SENTRX_Data11, SENTRX_Data12, SENTRX_DataComplete } receiveStateSentinel_t; void uartSentinel_Control(void); void uartSentinel_ProcessData(uint8_t data); uint8_t uartSentinel_isSensorConnected(); #endif /* UART_PROTOCOL_SENTINEL_H */