Sample program for communicating with Fujitsuu IoT Platform using HTTP

Dependencies:   AsciiFont GR-PEACH_video GraphicsFramework LCD_shield_config R_BSP USBHost_custom easy-connect-gr-peach mbed-http picojson BM1383GLV KX022 rohm-sensor-hal rohm-bh1745

Overview

This sample program shows how to send the cognitive data and sensing data gathered by Omron HVC-P2 and Rohm Sensor Shield respectively to IoT Platform managed by FUJITSU ( http://jp.fujitsu.com/solutions/cloud/k5/function/paas/iot-platform/ ).

Required Hardware

Application Setup

  1. Configure the connection type. For details, please refer to the following link:
    https://developer.mbed.org/teams/Renesas/code/GR-PEACH_IoT_Platform_HTTP_sample/wiki/Connection-Type
  2. Configure Ethernet settings. For details, please refer to the following link:
    https://developer.mbed.org/teams/Renesas/code/GR-PEACH_IoT_Platform_HTTP_sample/wiki/Ethernet-settings
  3. Set up the Access Code of resource where the gathered data would be stored. For details on Access Code, please refer to the following links:
    https://iot-docs.jp-east-1.paas.cloud.global.fujitsu.com/en/manual/userguide_en.pdf
    https://iot-docs.jp-east-1.paas.cloud.global.fujitsu.com/en/manual/apireference_en.pdf
    https://iot-docs.jp-east-1.paas.cloud.global.fujitsu.com/en/manual/portalmanual_en.pdf
  4. Set up URI for the resource where the gathered data would be stored. For details, please refer to the following link:
    https://iot-docs.jp-east-1.paas.cloud.global.fujitsu.com/en/manual/userguide_en.pdf
    https://iot-docs.jp-east-1.paas.cloud.global.fujitsu.com/en/manual/apireference_en.pdf

Building Example

  1. Import this sample program onto mbed Compiler
  2. Configure the program in accordance with the description of Application Setup above
  3. Compile the sample program
  4. Plug the Ethernet cable into GR-PEACH if you would like Ethernet mode
  5. Plug micro-USB cable into the OpenSDA port which lies on the next to the RESET button
  6. Copy the binary previously downloaded to your PC to GR-PEACH in order to flash this program. When the copy is successfully completed, the drive named MBED should be re-mounted automatically
  7. Press the RESET button on the board to run the sample application

Data Format sent to IoT Platform

In this sample program, the cognitive data and sensing data are serialized into the following JSON format using picojson (https://developer.mbed.org/users/mimil/code/picojson/):

  • Face detection data

{
    "RecordType": "HVC-P2(face)",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "Age": xxx,
    "FaceRectangle": {
        "Height": xxx,
        "Left": xxx,
        "Top": xxx,
        "Width": xxx
    },
    "Gender": xxx,
    "Scores": {
        "Anger": xxx,
        "Happiness": xxx,
        "Neutral": xxx,
        "Sadness": xxx,
        "Surprise": xxx
    }
}
  • Body detection data

{
    "RecodeType": "HVC-P2(body)",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "BodyRectangle": {
        "Height": xxx,
        "Left": xxx,
        "Top": xxx,
        "Width": xxx
    }
}
  • Accelerometer data

{
    "RecodeType": "Accelerometer",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "data": [ acceleratoin(x-direction), acceleration(y-direction), acceleration(z-direction), null, null, null ]
}

Note that data[0], data[1] and data[2] are filled with the acceleration data in x, y and z direction respectively, and the remaining elements are filled with null.

  • Atmosphere data

{
    "RecodeType": "Atmosphere",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "data": [ atmosphere data, null, null, null, null, null ]
}

Note that data[0] is filled with atmosphere data, and the remaining elements are filled with null.

  • Color sensor data

{
    "RecodeType": "Color",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "data": [ Red, Green, Blue, Alpha, null, null]
}

Note that data[0], data[1], data[2] and data[3] are filled with Red, Green, Blue and Alpha elements of color respectively, and the remaining elements are filled with null.

  • Temperature data

{
    "RecodeType": "Temperature",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "data": [ Temperature, null, null, null, null, null ]
}

Note that data[0] is filled with temperature data, the remaining elements are filled with null.

  • Geomagnetism

{
    "RecodeType": "Geomagnetism",
    "id": "<GR-PEACH ID>-<Sensor ID>",
    "data": [ geomagnetism(x-direction), geomagnetism(y-direction), geomagnetism(z-direction), null, null, null]
}

Note that data[0], data[1] and data[2] are filled with the geomagnetism data in x, y and z direction respectively, and the remaining elements are filled with null.

Committer:
Osamu Nakamura
Date:
Thu Apr 12 19:04:23 2018 +0900
Revision:
7:9ae73f85dc04
Parent:
0:8373b6833bde
Update BM1422AGMV driver so that it can be compiled by ARMCC

Who changed what in which revision?

UserRevisionLine numberNew contents of line
Osamu Nakamura 0:8373b6833bde 1 /*****************************************************************************
Osamu Nakamura 0:8373b6833bde 2 BH1745NUC.h
Osamu Nakamura 0:8373b6833bde 3
Osamu Nakamura 0:8373b6833bde 4 Copyright (c) 2016 ROHM Co.,Ltd.
Osamu Nakamura 0:8373b6833bde 5
Osamu Nakamura 0:8373b6833bde 6 Permission is hereby granted, free of charge, to any person obtaining a copy
Osamu Nakamura 0:8373b6833bde 7 of this software and associated documentation files (the "Software"), to deal
Osamu Nakamura 0:8373b6833bde 8 in the Software without restriction, including without limitation the rights
Osamu Nakamura 0:8373b6833bde 9 to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
Osamu Nakamura 0:8373b6833bde 10 copies of the Software, and to permit persons to whom the Software is
Osamu Nakamura 0:8373b6833bde 11 furnished to do so, subject to the following conditions:
Osamu Nakamura 0:8373b6833bde 12
Osamu Nakamura 0:8373b6833bde 13 The above copyright notice and this permission notice shall be included in
Osamu Nakamura 0:8373b6833bde 14 all copies or substantial portions of the Software.
Osamu Nakamura 0:8373b6833bde 15
Osamu Nakamura 0:8373b6833bde 16 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
Osamu Nakamura 0:8373b6833bde 17 IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
Osamu Nakamura 0:8373b6833bde 18 FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
Osamu Nakamura 0:8373b6833bde 19 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
Osamu Nakamura 0:8373b6833bde 20 LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
Osamu Nakamura 0:8373b6833bde 21 OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
Osamu Nakamura 0:8373b6833bde 22 THE SOFTWARE.
Osamu Nakamura 0:8373b6833bde 23 ******************************************************************************/
Osamu Nakamura 0:8373b6833bde 24 #ifndef _BH1745NUC_H_
Osamu Nakamura 0:8373b6833bde 25 #define _BH1745NUC_H_
Osamu Nakamura 0:8373b6833bde 26
Osamu Nakamura 0:8373b6833bde 27 #define BH1745NUC_DEVICE_ADDRESS_38 (0x38) // 7bit Addrss
Osamu Nakamura 0:8373b6833bde 28 #define BH1745NUC_DEVICE_ADDRESS_39 (0x39) // 7bit Addrss
Osamu Nakamura 0:8373b6833bde 29 #define BH1745NUC_PART_ID_VAL (0x0B)
Osamu Nakamura 0:8373b6833bde 30 #define BH1745NUC_MANUFACT_ID_VAL (0xE0)
Osamu Nakamura 0:8373b6833bde 31
Osamu Nakamura 0:8373b6833bde 32 #define BH1745NUC_SYSTEM_CONTROL (0x40)
Osamu Nakamura 0:8373b6833bde 33 #define BH1745NUC_MODE_CONTROL1 (0x41)
Osamu Nakamura 0:8373b6833bde 34 #define BH1745NUC_MODE_CONTROL2 (0x42)
Osamu Nakamura 0:8373b6833bde 35 #define BH1745NUC_MODE_CONTROL3 (0x44)
Osamu Nakamura 0:8373b6833bde 36 #define BH1745NUC_RED_DATA_LSB (0x50)
Osamu Nakamura 0:8373b6833bde 37 #define BH1745NUC_MANUFACTURER_ID (0x92)
Osamu Nakamura 0:8373b6833bde 38
Osamu Nakamura 0:8373b6833bde 39 #define BH1745NUC_MODE_CONTROL1_MEAS_TIME160MS (0x00)
Osamu Nakamura 0:8373b6833bde 40
Osamu Nakamura 0:8373b6833bde 41 #define BH1745NUC_MODE_CONTROL2_ADC_GAIN_X1 (0)
Osamu Nakamura 0:8373b6833bde 42 #define BH1745NUC_MODE_CONTROL2_ADC_GAIN_X2 (1)
Osamu Nakamura 0:8373b6833bde 43 #define BH1745NUC_MODE_CONTROL2_ADC_GAIN_X16 (2)
Osamu Nakamura 0:8373b6833bde 44 #define BH1745NUC_MODE_CONTROL2_RGBC_EN (1 << 4)
Osamu Nakamura 0:8373b6833bde 45
Osamu Nakamura 0:8373b6833bde 46 #define BH1745NUC_MODE_CONTROL1_VAL (BH1745NUC_MODE_CONTROL1_MEAS_TIME160MS)
Osamu Nakamura 0:8373b6833bde 47 #define BH1745NUC_MODE_CONTROL2_VAL (BH1745NUC_MODE_CONTROL2_RGBC_EN | BH1745NUC_MODE_CONTROL2_ADC_GAIN_X16)
Osamu Nakamura 0:8373b6833bde 48 #define BH1745NUC_MODE_CONTROL3_VAL (0x02)
Osamu Nakamura 0:8373b6833bde 49
Osamu Nakamura 0:8373b6833bde 50 class BH1745NUC
Osamu Nakamura 0:8373b6833bde 51 {
Osamu Nakamura 0:8373b6833bde 52 public:
Osamu Nakamura 0:8373b6833bde 53 BH1745NUC(int slave_address);
Osamu Nakamura 0:8373b6833bde 54 unsigned char init(void) ;
Osamu Nakamura 0:8373b6833bde 55 unsigned char get_rawval(unsigned char *data);
Osamu Nakamura 0:8373b6833bde 56 unsigned char get_val(unsigned short *data);
Osamu Nakamura 0:8373b6833bde 57 unsigned char write(unsigned char memory_address, unsigned char *data, unsigned char size);
Osamu Nakamura 0:8373b6833bde 58 unsigned char read(unsigned char memory_address, unsigned char *data, int size);
Osamu Nakamura 0:8373b6833bde 59 private:
Osamu Nakamura 0:8373b6833bde 60 int _device_address;
Osamu Nakamura 0:8373b6833bde 61 };
Osamu Nakamura 0:8373b6833bde 62
Osamu Nakamura 0:8373b6833bde 63 #endif // _BH1745NUC_H_
Osamu Nakamura 0:8373b6833bde 64