Test program running on MAX32625MBED. Control through USB Serial commands using a terminal emulator such as teraterm or putty.

Dependencies:   MaximTinyTester CmdLine MAX541 USBDevice

Committer:
whismanoid
Date:
Fri Feb 28 07:59:58 2020 +0000
Revision:
89:20fd6ce5e4dd
Parent:
88:e4fd5033a55f
Child:
93:6b22269935a6
WIP Configure_Demo() CONVRUNoutputGetValue()

Who changed what in which revision?

UserRevisionLine numberNew contents of line
whismanoid 53:3d5a3d241a5e 1 // /*******************************************************************************
whismanoid 53:3d5a3d241a5e 2 // * Copyright (C) 2020 Maxim Integrated Products, Inc., All Rights Reserved.
whismanoid 53:3d5a3d241a5e 3 // *
whismanoid 53:3d5a3d241a5e 4 // * Permission is hereby granted, free of charge, to any person obtaining a
whismanoid 53:3d5a3d241a5e 5 // * copy of this software and associated documentation files (the "Software"),
whismanoid 53:3d5a3d241a5e 6 // * to deal in the Software without restriction, including without limitation
whismanoid 53:3d5a3d241a5e 7 // * the rights to use, copy, modify, merge, publish, distribute, sublicense,
whismanoid 53:3d5a3d241a5e 8 // * and/or sell copies of the Software, and to permit persons to whom the
whismanoid 53:3d5a3d241a5e 9 // * Software is furnished to do so, subject to the following conditions:
whismanoid 53:3d5a3d241a5e 10 // *
whismanoid 53:3d5a3d241a5e 11 // * The above copyright notice and this permission notice shall be included
whismanoid 53:3d5a3d241a5e 12 // * in all copies or substantial portions of the Software.
whismanoid 53:3d5a3d241a5e 13 // *
whismanoid 53:3d5a3d241a5e 14 // * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
whismanoid 53:3d5a3d241a5e 15 // * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
whismanoid 53:3d5a3d241a5e 16 // * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
whismanoid 53:3d5a3d241a5e 17 // * IN NO EVENT SHALL MAXIM INTEGRATED BE LIABLE FOR ANY CLAIM, DAMAGES
whismanoid 53:3d5a3d241a5e 18 // * OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
whismanoid 53:3d5a3d241a5e 19 // * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
whismanoid 53:3d5a3d241a5e 20 // * OTHER DEALINGS IN THE SOFTWARE.
whismanoid 53:3d5a3d241a5e 21 // *
whismanoid 53:3d5a3d241a5e 22 // * Except as contained in this notice, the name of Maxim Integrated
whismanoid 53:3d5a3d241a5e 23 // * Products, Inc. shall not be used except as stated in the Maxim Integrated
whismanoid 53:3d5a3d241a5e 24 // * Products, Inc. Branding Policy.
whismanoid 53:3d5a3d241a5e 25 // *
whismanoid 53:3d5a3d241a5e 26 // * The mere transfer of this software does not imply any licenses
whismanoid 53:3d5a3d241a5e 27 // * of trade secrets, proprietary technology, copyrights, patents,
whismanoid 53:3d5a3d241a5e 28 // * trademarks, maskwork rights, or any other form of intellectual
whismanoid 53:3d5a3d241a5e 29 // * property whatsoever. Maxim Integrated Products, Inc. retains all
whismanoid 53:3d5a3d241a5e 30 // * ownership rights.
whismanoid 53:3d5a3d241a5e 31 // *******************************************************************************
whismanoid 53:3d5a3d241a5e 32 // */
whismanoid 53:3d5a3d241a5e 33 //---------- CODE GENERATOR: testMainCppCodeList
whismanoid 53:3d5a3d241a5e 34 // CODE GENERATOR: example code includes
whismanoid 53:3d5a3d241a5e 35
whismanoid 53:3d5a3d241a5e 36 // example code includes
whismanoid 53:3d5a3d241a5e 37 // standard include for target platform -- Platform_Include_Boilerplate
whismanoid 53:3d5a3d241a5e 38 #include "mbed.h"
whismanoid 53:3d5a3d241a5e 39 // Platforms:
whismanoid 53:3d5a3d241a5e 40 // - MAX32625MBED
whismanoid 53:3d5a3d241a5e 41 // - supports mbed-os-5.11, requires USBDevice library
whismanoid 53:3d5a3d241a5e 42 // - add https://developer.mbed.org/teams/MaximIntegrated/code/USBDevice/
whismanoid 53:3d5a3d241a5e 43 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 44 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 45 // - MAX32600MBED
whismanoid 53:3d5a3d241a5e 46 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 47 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 48 // - Windows 10 note: Don't connect HDK until you are ready to load new firmware into the board.
whismanoid 53:3d5a3d241a5e 49 // - NUCLEO_F446RE
whismanoid 53:3d5a3d241a5e 50 // - remove USBDevice library
whismanoid 53:3d5a3d241a5e 51 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 52 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 53 // - NUCLEO_F401RE
whismanoid 53:3d5a3d241a5e 54 // - remove USBDevice library
whismanoid 53:3d5a3d241a5e 55 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 56 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 57 // - MAX32630FTHR
whismanoid 53:3d5a3d241a5e 58 // - #include "max32630fthr.h"
whismanoid 53:3d5a3d241a5e 59 // - add http://os.mbed.org/teams/MaximIntegrated/code/max32630fthr/
whismanoid 53:3d5a3d241a5e 60 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 61 // - MAX32620FTHR
whismanoid 53:3d5a3d241a5e 62 // - #include "MAX32620FTHR.h"
whismanoid 53:3d5a3d241a5e 63 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 64 // - add https://os.mbed.com/teams/MaximIntegrated/code/MAX32620FTHR/
whismanoid 53:3d5a3d241a5e 65 // - not tested yet
whismanoid 53:3d5a3d241a5e 66 // - MAX32625PICO
whismanoid 53:3d5a3d241a5e 67 // - remove max32630fthr library (if present)
whismanoid 53:3d5a3d241a5e 68 // - remove MAX32620FTHR library (if present)
whismanoid 53:3d5a3d241a5e 69 // - not tested yet
whismanoid 53:3d5a3d241a5e 70 //
whismanoid 53:3d5a3d241a5e 71 // end Platform_Include_Boilerplate
whismanoid 53:3d5a3d241a5e 72 #include "MAX11043.h"
whismanoid 53:3d5a3d241a5e 73 #include "CmdLine.h"
whismanoid 53:3d5a3d241a5e 74 #include "MaximTinyTester.h"
whismanoid 53:3d5a3d241a5e 75
whismanoid 53:3d5a3d241a5e 76 // optional: serial port
whismanoid 53:3d5a3d241a5e 77 // note: some platforms such as Nucleo-F446RE do not support the USBSerial library.
whismanoid 53:3d5a3d241a5e 78 // In those cases, remove the USBDevice lib from the project and rebuild.
whismanoid 53:3d5a3d241a5e 79 #if defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 80 #include "USBSerial.h"
whismanoid 53:3d5a3d241a5e 81 USBSerial serial; // virtual serial port over USB (DEV connector)
whismanoid 53:3d5a3d241a5e 82 #elif defined(TARGET_MAX32630MBED)
whismanoid 53:3d5a3d241a5e 83 #include "USBSerial.h"
whismanoid 53:3d5a3d241a5e 84 USBSerial serial; // virtual serial port over USB (DEV connector)
whismanoid 53:3d5a3d241a5e 85 #else
whismanoid 53:3d5a3d241a5e 86 //#include "USBSerial.h"
whismanoid 53:3d5a3d241a5e 87 Serial serial(USBTX, USBRX); // tx, rx
whismanoid 53:3d5a3d241a5e 88 #endif
whismanoid 53:3d5a3d241a5e 89
whismanoid 53:3d5a3d241a5e 90 void on_immediate_0x21(); // Unicode (U+0021) ! EXCLAMATION MARK
whismanoid 53:3d5a3d241a5e 91 void on_immediate_0x7b(); // Unicode (U+007B) { LEFT CURLY BRACKET
whismanoid 53:3d5a3d241a5e 92 void on_immediate_0x7d(); // Unicode (U+007D) } RIGHT CURLY BRACKET
whismanoid 53:3d5a3d241a5e 93
whismanoid 53:3d5a3d241a5e 94 #include "CmdLine.h"
whismanoid 53:3d5a3d241a5e 95
whismanoid 53:3d5a3d241a5e 96 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 97 CmdLine cmdLine_DAPLINKserial(DAPLINKserial, "DAPLINK");
whismanoid 53:3d5a3d241a5e 98 # endif // HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 99 CmdLine cmdLine_serial(serial, "serial");
whismanoid 53:3d5a3d241a5e 100
whismanoid 53:3d5a3d241a5e 101
whismanoid 53:3d5a3d241a5e 102 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 103
whismanoid 53:3d5a3d241a5e 104
whismanoid 53:3d5a3d241a5e 105 #if defined(TARGET)
whismanoid 53:3d5a3d241a5e 106 // TARGET_NAME macros from targets/TARGET_Maxim/TARGET_MAX32625/device/mxc_device.h
whismanoid 53:3d5a3d241a5e 107 // Create a string definition for the TARGET
whismanoid 53:3d5a3d241a5e 108 #define STRING_ARG(arg) #arg
whismanoid 53:3d5a3d241a5e 109 #define STRING_NAME(name) STRING_ARG(name)
whismanoid 53:3d5a3d241a5e 110 #define TARGET_NAME STRING_NAME(TARGET)
whismanoid 53:3d5a3d241a5e 111 #elif defined(TARGET_MAX32600)
whismanoid 53:3d5a3d241a5e 112 #define TARGET_NAME "MAX32600"
whismanoid 53:3d5a3d241a5e 113 #elif defined(TARGET_LPC1768)
whismanoid 53:3d5a3d241a5e 114 #define TARGET_NAME "LPC1768"
whismanoid 53:3d5a3d241a5e 115 #elif defined(TARGET_NUCLEO_F446RE)
whismanoid 53:3d5a3d241a5e 116 #define TARGET_NAME "NUCLEO_F446RE"
whismanoid 53:3d5a3d241a5e 117 #elif defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 118 #define TARGET_NAME "NUCLEO_F401RE"
whismanoid 53:3d5a3d241a5e 119 #else
whismanoid 53:3d5a3d241a5e 120 #error TARGET NOT DEFINED
whismanoid 53:3d5a3d241a5e 121 #endif
whismanoid 53:3d5a3d241a5e 122 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 123 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 124 // TARGET=MAX32630FTHR ARM Cortex-M4F 96MHz 2048kB Flash 512kB SRAM
whismanoid 53:3d5a3d241a5e 125 // +-------------[microUSB]-------------+
whismanoid 53:3d5a3d241a5e 126 // | J1 MAX32630FTHR J2 |
whismanoid 53:3d5a3d241a5e 127 // ______ | [ ] RST GND [ ] |
whismanoid 53:3d5a3d241a5e 128 // ______ | [ ] 3V3 BAT+[ ] |
whismanoid 53:3d5a3d241a5e 129 // ______ | [ ] 1V8 reset SW1 |
whismanoid 53:3d5a3d241a5e 130 // ______ | [ ] GND J4 J3 |
whismanoid 53:3d5a3d241a5e 131 // analogIn0/4 | [a] AIN_0 1.2Vfs (bat) SYS [ ] | switched BAT+
whismanoid 53:3d5a3d241a5e 132 // analogIn1/5 | [a] AIN_1 1.2Vfs PWR [ ] | external pwr btn
whismanoid 53:3d5a3d241a5e 133 // analogIn2 | [a] AIN_2 1.2Vfs +5V VBUS [ ] | USB +5V power
whismanoid 53:3d5a3d241a5e 134 // analogIn3 | [a] AIN_3 1.2Vfs 1-WIRE P4_0 [d] | D0 dig9
whismanoid 53:3d5a3d241a5e 135 // (I2C2.SDA) | [d] P5_7 SDA2 SRN P5_6 [d] | D1 dig8
whismanoid 53:3d5a3d241a5e 136 // (I2C2.SCL) | [d] P6_0 SCL2 SDIO3 P5_5 [d] | D2 dig7
whismanoid 53:3d5a3d241a5e 137 // D13/SCLK | [s] P5_0 SCLK SDIO2 P5_4 [d] | D3 dig6
whismanoid 53:3d5a3d241a5e 138 // D11/MOSI | [s] P5_1 MOSI SSEL P5_3 [d] | D4 dig5
whismanoid 53:3d5a3d241a5e 139 // D12/MISO | [s] P5_2 MISO RTS P3_3 [d] | D5 dig4
whismanoid 53:3d5a3d241a5e 140 // D10/CS | [s] P3_0 RX CTS P3_2 [d] | D6 dig3
whismanoid 53:3d5a3d241a5e 141 // D9 dig0 | [d] P3_1 TX SCL P3_5 [d] | D7 dig2
whismanoid 53:3d5a3d241a5e 142 // ______ | [ ] GND SDA P3_4 [d] | D8 dig1
whismanoid 53:3d5a3d241a5e 143 // | |
whismanoid 53:3d5a3d241a5e 144 // | XIP Flash MAX14690N |
whismanoid 53:3d5a3d241a5e 145 // | XIP_SCLK P1_0 SDA2 P5_7 |
whismanoid 53:3d5a3d241a5e 146 // | XIP_MOSI P1_1 SCL2 P6_0 |
whismanoid 53:3d5a3d241a5e 147 // | XIP_MISO P1_2 PMIC_INIT P3_7 |
whismanoid 53:3d5a3d241a5e 148 // | XIP_SSEL P1_3 MPC P2_7 |
whismanoid 53:3d5a3d241a5e 149 // | XIP_DIO2 P1_4 MON AIN_0 |
whismanoid 53:3d5a3d241a5e 150 // | XIP_DIO3 P1_5 |
whismanoid 53:3d5a3d241a5e 151 // | |
whismanoid 53:3d5a3d241a5e 152 // | PAN1326B MicroSD LED |
whismanoid 53:3d5a3d241a5e 153 // | BT_RX P0_0 SD_SCLK P0_4 r P2_4 |
whismanoid 53:3d5a3d241a5e 154 // | BT_TX P0_1 SD_MOSI P0_5 g P2_5 |
whismanoid 53:3d5a3d241a5e 155 // | BT_CTS P0_2 SD_MISO P0_6 b P2_6 |
whismanoid 53:3d5a3d241a5e 156 // | BT_RTS P0_3 SD_SSEL P0_7 |
whismanoid 53:3d5a3d241a5e 157 // | BT_RST P1_6 DETECT P2_2 |
whismanoid 53:3d5a3d241a5e 158 // | BT_CLK P1_7 SW2 P2_3 |
whismanoid 53:3d5a3d241a5e 159 // +------------------------------------+
whismanoid 53:3d5a3d241a5e 160 // MAX32630FTHR board has MAX14690 PMIC on I2C bus (P5_7 SDA, P6_0 SCL) at slave address 0101_000r 0x50 (or 0x28 for 7 MSbit address).
whismanoid 53:3d5a3d241a5e 161 // MAX32630FTHR board has BMI160 accelerometer on I2C bus (P5_7 SDA, P6_0 SCL) at slave address 1101_000r 0xD0 (or 0x68 for 7 MSbit address).
whismanoid 53:3d5a3d241a5e 162 // AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 163 // AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 164 // AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 165 // AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 166 // AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 167 // AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 168 // AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 169 // AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 170 // AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 171 // AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 172 // AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 173 // AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 174 // AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 175 //
whismanoid 53:3d5a3d241a5e 176 #include "max32630fthr.h"
whismanoid 53:3d5a3d241a5e 177 MAX32630FTHR pegasus(MAX32630FTHR::VIO_3V3);
whismanoid 53:3d5a3d241a5e 178 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 1
whismanoid 53:3d5a3d241a5e 179 // MAX32630FTHR board supports only internal VREF = 1.200V at bypass capacitor C15
whismanoid 53:3d5a3d241a5e 180 const float ADC_FULL_SCALE_VOLTAGE = 1.200;
whismanoid 53:3d5a3d241a5e 181 // Arduino connector
whismanoid 53:3d5a3d241a5e 182 #ifndef A0
whismanoid 53:3d5a3d241a5e 183 #define A0 AIN_0
whismanoid 53:3d5a3d241a5e 184 #endif
whismanoid 53:3d5a3d241a5e 185 #ifndef A1
whismanoid 53:3d5a3d241a5e 186 #define A1 AIN_1
whismanoid 53:3d5a3d241a5e 187 #endif
whismanoid 53:3d5a3d241a5e 188 #ifndef A2
whismanoid 53:3d5a3d241a5e 189 #define A2 AIN_2
whismanoid 53:3d5a3d241a5e 190 #endif
whismanoid 53:3d5a3d241a5e 191 #ifndef A3
whismanoid 53:3d5a3d241a5e 192 #define A3 AIN_3
whismanoid 53:3d5a3d241a5e 193 #endif
whismanoid 53:3d5a3d241a5e 194 #ifndef D0
whismanoid 53:3d5a3d241a5e 195 #define D0 P4_0
whismanoid 53:3d5a3d241a5e 196 #endif
whismanoid 53:3d5a3d241a5e 197 #ifndef D1
whismanoid 53:3d5a3d241a5e 198 #define D1 P5_6
whismanoid 53:3d5a3d241a5e 199 #endif
whismanoid 53:3d5a3d241a5e 200 #ifndef D2
whismanoid 53:3d5a3d241a5e 201 #define D2 P5_5
whismanoid 53:3d5a3d241a5e 202 #endif
whismanoid 53:3d5a3d241a5e 203 #ifndef D3
whismanoid 53:3d5a3d241a5e 204 #define D3 P5_4
whismanoid 53:3d5a3d241a5e 205 #endif
whismanoid 53:3d5a3d241a5e 206 #ifndef D4
whismanoid 53:3d5a3d241a5e 207 #define D4 P5_3
whismanoid 53:3d5a3d241a5e 208 #endif
whismanoid 53:3d5a3d241a5e 209 #ifndef D5
whismanoid 53:3d5a3d241a5e 210 #define D5 P3_3
whismanoid 53:3d5a3d241a5e 211 #endif
whismanoid 53:3d5a3d241a5e 212 #ifndef D6
whismanoid 53:3d5a3d241a5e 213 #define D6 P3_2
whismanoid 53:3d5a3d241a5e 214 #endif
whismanoid 53:3d5a3d241a5e 215 #ifndef D7
whismanoid 53:3d5a3d241a5e 216 #define D7 P3_5
whismanoid 53:3d5a3d241a5e 217 #endif
whismanoid 53:3d5a3d241a5e 218 #ifndef D8
whismanoid 53:3d5a3d241a5e 219 #define D8 P3_4
whismanoid 53:3d5a3d241a5e 220 #endif
whismanoid 53:3d5a3d241a5e 221 #ifndef D9
whismanoid 53:3d5a3d241a5e 222 #define D9 P3_1
whismanoid 53:3d5a3d241a5e 223 #endif
whismanoid 53:3d5a3d241a5e 224 #ifndef D10
whismanoid 53:3d5a3d241a5e 225 #define D10 P3_0
whismanoid 53:3d5a3d241a5e 226 #endif
whismanoid 53:3d5a3d241a5e 227 #ifndef D11
whismanoid 53:3d5a3d241a5e 228 #define D11 P5_1
whismanoid 53:3d5a3d241a5e 229 #endif
whismanoid 53:3d5a3d241a5e 230 #ifndef D12
whismanoid 53:3d5a3d241a5e 231 #define D12 P5_2
whismanoid 53:3d5a3d241a5e 232 #endif
whismanoid 53:3d5a3d241a5e 233 #ifndef D13
whismanoid 53:3d5a3d241a5e 234 #define D13 P5_0
whismanoid 53:3d5a3d241a5e 235 #endif
whismanoid 53:3d5a3d241a5e 236 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 237 #elif defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 238 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 239 // TARGET=MAX32625MBED ARM Cortex-M4F 96MHz 512kB Flash 160kB SRAM
whismanoid 53:3d5a3d241a5e 240 // +-------------------------------------+
whismanoid 53:3d5a3d241a5e 241 // | MAX32625MBED Arduino UNO header |
whismanoid 53:3d5a3d241a5e 242 // | |
whismanoid 53:3d5a3d241a5e 243 // | A5/SCL[ ] | P1_7 dig15
whismanoid 53:3d5a3d241a5e 244 // | A4/SDA[ ] | P1_6 dig14
whismanoid 53:3d5a3d241a5e 245 // | AREF=N/C[ ] |
whismanoid 53:3d5a3d241a5e 246 // | GND[ ] |
whismanoid 53:3d5a3d241a5e 247 // | [ ]N/C SCK/13[ ] | P1_0 dig13
whismanoid 53:3d5a3d241a5e 248 // | [ ]IOREF=3V3 MISO/12[ ] | P1_2 dig12
whismanoid 53:3d5a3d241a5e 249 // | [ ]RST MOSI/11[ ]~| P1_1 dig11
whismanoid 53:3d5a3d241a5e 250 // | [ ]3V3 CS/10[ ]~| P1_3 dig10
whismanoid 53:3d5a3d241a5e 251 // | [ ]5V0 9[ ]~| P1_5 dig9
whismanoid 53:3d5a3d241a5e 252 // | [ ]GND 8[ ] | P1_4 dig8
whismanoid 53:3d5a3d241a5e 253 // | [ ]GND |
whismanoid 53:3d5a3d241a5e 254 // | [ ]Vin 7[ ] | P0_7 dig7
whismanoid 53:3d5a3d241a5e 255 // | 6[ ]~| P0_6 dig6
whismanoid 53:3d5a3d241a5e 256 // AIN_0 | [ ]A0 5[ ]~| P0_5 dig5
whismanoid 53:3d5a3d241a5e 257 // AIN_1 | [ ]A1 4[ ] | P0_4 dig4
whismanoid 53:3d5a3d241a5e 258 // AIN_2 | [ ]A2 INT1/3[ ]~| P0_3 dig3
whismanoid 53:3d5a3d241a5e 259 // AIN_3 | [ ]A3 INT0/2[ ] | P0_2 dig2
whismanoid 53:3d5a3d241a5e 260 // dig16 P3_4 | [ ]A4/SDA RST SCK MISO TX>1[ ] | P0_1 dig1
whismanoid 53:3d5a3d241a5e 261 // dig17 P3_5 | [ ]A5/SCL [ ] [ ] [ ] RX<0[ ] | P0_0 dig0
whismanoid 53:3d5a3d241a5e 262 // | [ ] [ ] [ ] |
whismanoid 53:3d5a3d241a5e 263 // | UNO_R3 GND MOSI 5V ____________/
whismanoid 53:3d5a3d241a5e 264 // \_______________________/
whismanoid 53:3d5a3d241a5e 265 //
whismanoid 53:3d5a3d241a5e 266 // +------------------------+
whismanoid 53:3d5a3d241a5e 267 // | |
whismanoid 53:3d5a3d241a5e 268 // | MicroSD LED |
whismanoid 53:3d5a3d241a5e 269 // | SD_SCLK P2_4 r P3_0 |
whismanoid 53:3d5a3d241a5e 270 // | SD_MOSI P2_5 g P3_1 |
whismanoid 53:3d5a3d241a5e 271 // | SD_MISO P2_6 b P3_2 |
whismanoid 53:3d5a3d241a5e 272 // | SD_SSEL P2_7 y P3_3 |
whismanoid 53:3d5a3d241a5e 273 // | |
whismanoid 53:3d5a3d241a5e 274 // | DAPLINK BUTTONS |
whismanoid 53:3d5a3d241a5e 275 // | TX P2_1 SW3 P2_3 |
whismanoid 53:3d5a3d241a5e 276 // | RX P2_0 SW2 P2_2 |
whismanoid 53:3d5a3d241a5e 277 // +------------------------+
whismanoid 53:3d5a3d241a5e 278 //
whismanoid 53:3d5a3d241a5e 279 // AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 280 // AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 281 // AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 282 // AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 283 // AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 284 // AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 285 // AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 286 // AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 287 // AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 288 // AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 289 // AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 290 // AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 291 // AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 292 //
whismanoid 53:3d5a3d241a5e 293 //#include "max32625mbed.h" // ?
whismanoid 53:3d5a3d241a5e 294 //MAX32625MBED mbed(MAX32625MBED::VIO_3V3); // ?
whismanoid 53:3d5a3d241a5e 295 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 1
whismanoid 53:3d5a3d241a5e 296 // MAX32630FTHR board supports only internal VREF = 1.200V at bypass capacitor C15
whismanoid 53:3d5a3d241a5e 297 const float ADC_FULL_SCALE_VOLTAGE = 1.200; // TODO: ADC_FULL_SCALE_VOLTAGE Pico?
whismanoid 53:3d5a3d241a5e 298 // Arduino connector
whismanoid 53:3d5a3d241a5e 299 #ifndef A0
whismanoid 53:3d5a3d241a5e 300 #define A0 AIN_0
whismanoid 53:3d5a3d241a5e 301 #endif
whismanoid 53:3d5a3d241a5e 302 #ifndef A1
whismanoid 53:3d5a3d241a5e 303 #define A1 AIN_1
whismanoid 53:3d5a3d241a5e 304 #endif
whismanoid 53:3d5a3d241a5e 305 #ifndef A2
whismanoid 53:3d5a3d241a5e 306 #define A2 AIN_2
whismanoid 53:3d5a3d241a5e 307 #endif
whismanoid 53:3d5a3d241a5e 308 #ifndef A3
whismanoid 53:3d5a3d241a5e 309 #define A3 AIN_3
whismanoid 53:3d5a3d241a5e 310 #endif
whismanoid 53:3d5a3d241a5e 311 #ifndef D0
whismanoid 53:3d5a3d241a5e 312 #define D0 P0_0
whismanoid 53:3d5a3d241a5e 313 #endif
whismanoid 53:3d5a3d241a5e 314 #ifndef D1
whismanoid 53:3d5a3d241a5e 315 #define D1 P0_1
whismanoid 53:3d5a3d241a5e 316 #endif
whismanoid 53:3d5a3d241a5e 317 #ifndef D2
whismanoid 53:3d5a3d241a5e 318 #define D2 P0_2
whismanoid 53:3d5a3d241a5e 319 #endif
whismanoid 53:3d5a3d241a5e 320 #ifndef D3
whismanoid 53:3d5a3d241a5e 321 #define D3 P0_3
whismanoid 53:3d5a3d241a5e 322 #endif
whismanoid 53:3d5a3d241a5e 323 #ifndef D4
whismanoid 53:3d5a3d241a5e 324 #define D4 P0_4
whismanoid 53:3d5a3d241a5e 325 #endif
whismanoid 53:3d5a3d241a5e 326 #ifndef D5
whismanoid 53:3d5a3d241a5e 327 #define D5 P0_5
whismanoid 53:3d5a3d241a5e 328 #endif
whismanoid 53:3d5a3d241a5e 329 #ifndef D6
whismanoid 53:3d5a3d241a5e 330 #define D6 P0_6
whismanoid 53:3d5a3d241a5e 331 #endif
whismanoid 53:3d5a3d241a5e 332 #ifndef D7
whismanoid 53:3d5a3d241a5e 333 #define D7 P0_7
whismanoid 53:3d5a3d241a5e 334 #endif
whismanoid 53:3d5a3d241a5e 335 #ifndef D8
whismanoid 53:3d5a3d241a5e 336 #define D8 P1_4
whismanoid 53:3d5a3d241a5e 337 #endif
whismanoid 53:3d5a3d241a5e 338 #ifndef D9
whismanoid 53:3d5a3d241a5e 339 #define D9 P1_5
whismanoid 53:3d5a3d241a5e 340 #endif
whismanoid 53:3d5a3d241a5e 341 #ifndef D10
whismanoid 53:3d5a3d241a5e 342 #define D10 P1_3
whismanoid 53:3d5a3d241a5e 343 #endif
whismanoid 53:3d5a3d241a5e 344 #ifndef D11
whismanoid 53:3d5a3d241a5e 345 #define D11 P1_1
whismanoid 53:3d5a3d241a5e 346 #endif
whismanoid 53:3d5a3d241a5e 347 #ifndef D12
whismanoid 53:3d5a3d241a5e 348 #define D12 P1_2
whismanoid 53:3d5a3d241a5e 349 #endif
whismanoid 53:3d5a3d241a5e 350 #ifndef D13
whismanoid 53:3d5a3d241a5e 351 #define D13 P1_0
whismanoid 53:3d5a3d241a5e 352 #endif
whismanoid 53:3d5a3d241a5e 353 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 354 #elif defined(TARGET_MAX32600)
whismanoid 53:3d5a3d241a5e 355 // target MAX32600
whismanoid 53:3d5a3d241a5e 356 //
whismanoid 53:3d5a3d241a5e 357 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 0
whismanoid 53:3d5a3d241a5e 358 const float ADC_FULL_SCALE_VOLTAGE = 1.500;
whismanoid 53:3d5a3d241a5e 359 //
whismanoid 53:3d5a3d241a5e 360 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 361 #elif defined(TARGET_MAX32620FTHR)
whismanoid 53:3d5a3d241a5e 362 #warning "TARGET_MAX32620FTHR not previously tested; need to define pins..."
whismanoid 53:3d5a3d241a5e 363 #include "MAX32620FTHR.h"
whismanoid 53:3d5a3d241a5e 364 // Initialize I/O voltages on MAX32620FTHR board
whismanoid 53:3d5a3d241a5e 365 MAX32620FTHR fthr(MAX32620FTHR::VIO_3V3);
whismanoid 53:3d5a3d241a5e 366 //#define USE_LEDS 0 ?
whismanoid 53:3d5a3d241a5e 367 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 1
whismanoid 53:3d5a3d241a5e 368 #warning "TARGET_MAX32620FTHR not previously tested; need to verify ADC_FULL_SCALE_VOLTAGE..."
whismanoid 53:3d5a3d241a5e 369 const float ADC_FULL_SCALE_VOLTAGE = 1.200;
whismanoid 53:3d5a3d241a5e 370 //
whismanoid 53:3d5a3d241a5e 371 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 372 #elif defined(TARGET_MAX32625PICO)
whismanoid 53:3d5a3d241a5e 373 #warning "TARGET_MAX32625PICO not previously tested; need to define pins..."
whismanoid 53:3d5a3d241a5e 374 //#define USE_LEDS 0 ?
whismanoid 53:3d5a3d241a5e 375 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 1
whismanoid 53:3d5a3d241a5e 376 #warning "TARGET_MAX32625PICO not previously tested; need to verify ADC_FULL_SCALE_VOLTAGE..."
whismanoid 53:3d5a3d241a5e 377 const float ADC_FULL_SCALE_VOLTAGE = 1.200;
whismanoid 53:3d5a3d241a5e 378 //
whismanoid 53:3d5a3d241a5e 379 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 380 #elif defined(TARGET_NUCLEO_F446RE) || defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 381 // TODO1: target NUCLEO_F446RE
whismanoid 53:3d5a3d241a5e 382 //
whismanoid 53:3d5a3d241a5e 383 // USER_BUTTON PC13
whismanoid 53:3d5a3d241a5e 384 // LED1 is shared with SPI_SCK on NUCLEO_F446RE PA_5, so don't use LED1.
whismanoid 53:3d5a3d241a5e 385 #define USE_LEDS 0
whismanoid 53:3d5a3d241a5e 386 // SPI spi(SPI_MOSI, SPI_MISO, SPI_SCK);
whismanoid 53:3d5a3d241a5e 387 // Serial serial(SERIAL_TX, SERIAL_RX);
whismanoid 53:3d5a3d241a5e 388 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 0
whismanoid 53:3d5a3d241a5e 389 const float ADC_FULL_SCALE_VOLTAGE = 3.300; // TODO: ADC_FULL_SCALE_VOLTAGE Pico?
whismanoid 53:3d5a3d241a5e 390 //
whismanoid 53:3d5a3d241a5e 391 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 392 #elif defined(TARGET_LPC1768)
whismanoid 53:3d5a3d241a5e 393 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 394 // TARGET=LPC1768 ARM Cortex-M3 100 MHz 512kB flash 64kB SRAM
whismanoid 53:3d5a3d241a5e 395 // +-------------[microUSB]-------------+
whismanoid 53:3d5a3d241a5e 396 // ______ | [ ] GND +3.3V VOUT [ ] | ______
whismanoid 53:3d5a3d241a5e 397 // ______ | [ ] 4.5V<VIN<9.0V +5.0V VU [ ] | ______
whismanoid 53:3d5a3d241a5e 398 // ______ | [ ] VB USB.IF- [ ] | ______
whismanoid 53:3d5a3d241a5e 399 // ______ | [ ] nR USB.IF+ [ ] | ______
whismanoid 53:3d5a3d241a5e 400 // digitalInOut0 | [ ] p5 MOSI ETHERNET.RD- [ ] | ______
whismanoid 53:3d5a3d241a5e 401 // digitalInOut1 | [ ] p6 MISO ETHERNET.RD+ [ ] | ______
whismanoid 53:3d5a3d241a5e 402 // digitalInOut2 | [ ] p7 SCLK ETHERNET.TD- [ ] | ______
whismanoid 53:3d5a3d241a5e 403 // digitalInOut3 | [ ] p8 ETHERNET.TD+ [ ] | ______
whismanoid 53:3d5a3d241a5e 404 // digitalInOut4 | [ ] p9 TX SDA USB.D- [ ] | ______
whismanoid 53:3d5a3d241a5e 405 // digitalInOut5 | [ ] p10 RX SCL USB.D+ [ ] | ______
whismanoid 53:3d5a3d241a5e 406 // digitalInOut6 | [ ] p11 MOSI CAN-RD p30 [ ] | digitalInOut13
whismanoid 53:3d5a3d241a5e 407 // digitalInOut7 | [ ] p12 MISO CAN-TD p29 [ ] | digitalInOut12
whismanoid 53:3d5a3d241a5e 408 // digitalInOut8 | [ ] p13 TX SCLK SDA TX p28 [ ] | digitalInOut11
whismanoid 53:3d5a3d241a5e 409 // digitalInOut9 | [ ] p14 RX SCL RX p27 [ ] | digitalInOut10
whismanoid 53:3d5a3d241a5e 410 // analogIn0 | [ ] p15 AIN0 3.3Vfs PWM1 p26 [ ] | pwmDriver1
whismanoid 53:3d5a3d241a5e 411 // analogIn1 | [ ] p16 AIN1 3.3Vfs PWM2 p25 [ ] | pwmDriver2
whismanoid 53:3d5a3d241a5e 412 // analogIn2 | [ ] p17 AIN2 3.3Vfs PWM3 p24 [ ] | pwmDriver3
whismanoid 53:3d5a3d241a5e 413 // analogIn3 | [ ] p18 AIN3 AOUT PWM4 p23 [ ] | pwmDriver4
whismanoid 53:3d5a3d241a5e 414 // analogIn4 | [ ] p19 AIN4 3.3Vfs PWM5 p22 [ ] | pwmDriver5
whismanoid 53:3d5a3d241a5e 415 // analogIn5 | [ ] p20 AIN5 3.3Vfs PWM6 p21 [ ] | pwmDriver6
whismanoid 53:3d5a3d241a5e 416 // +------------------------------------+
whismanoid 53:3d5a3d241a5e 417 // AIN6 = P0.3 = TGT_SBL_RXD?
whismanoid 53:3d5a3d241a5e 418 // AIN7 = P0.2 = TGT_SBL_TXD?
whismanoid 53:3d5a3d241a5e 419 //
whismanoid 53:3d5a3d241a5e 420 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 421 // LPC1768 board uses VREF = 3.300V +A3,3V thru L1 to bypass capacitor C14
whismanoid 53:3d5a3d241a5e 422 #define analogIn4_IS_HIGH_RANGE_OF_analogIn0 0
whismanoid 53:3d5a3d241a5e 423 const float ADC_FULL_SCALE_VOLTAGE = 3.300;
whismanoid 53:3d5a3d241a5e 424 #else // not defined(TARGET_LPC1768 etc.)
whismanoid 53:3d5a3d241a5e 425 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 426 // unknown target
whismanoid 53:3d5a3d241a5e 427 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 428 #endif // target definition
whismanoid 53:3d5a3d241a5e 429
whismanoid 53:3d5a3d241a5e 430
whismanoid 53:3d5a3d241a5e 431 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 432 // Option to dedicate SPI port pins
whismanoid 53:3d5a3d241a5e 433 //
whismanoid 53:3d5a3d241a5e 434 // SPI2_MOSI = P5_1
whismanoid 53:3d5a3d241a5e 435 // SPI2_MISO = P5_2
whismanoid 53:3d5a3d241a5e 436 // SPI2_SCK = P5_0
whismanoid 53:3d5a3d241a5e 437 // On this board I'm using P3_0 as spi_cs
whismanoid 53:3d5a3d241a5e 438 // SPI2_SS = P5_3
whismanoid 53:3d5a3d241a5e 439 // SPI2_SDIO2 = P5_4
whismanoid 53:3d5a3d241a5e 440 // SPI2_SDIO3 = P5_5
whismanoid 53:3d5a3d241a5e 441 // SPI2_SRN = P5_6
whismanoid 53:3d5a3d241a5e 442 //
whismanoid 53:3d5a3d241a5e 443 #ifndef HAS_SPI
whismanoid 53:3d5a3d241a5e 444 #define HAS_SPI 1
whismanoid 53:3d5a3d241a5e 445 #endif
whismanoid 53:3d5a3d241a5e 446 #if HAS_SPI
whismanoid 53:3d5a3d241a5e 447 #define SPI_MODE0 0
whismanoid 53:3d5a3d241a5e 448 #define SPI_MODE1 1
whismanoid 53:3d5a3d241a5e 449 #define SPI_MODE2 2
whismanoid 53:3d5a3d241a5e 450 #define SPI_MODE3 3
whismanoid 53:3d5a3d241a5e 451 //
whismanoid 53:3d5a3d241a5e 452 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 453 // Before setting global variables g_SPI_SCLK_Hz and g_SPI_dataMode,
whismanoid 53:3d5a3d241a5e 454 // workaround for TARGET_MAX32630 SPI_MODE2 SPI_MODE3 problem (issue #30)
whismanoid 53:3d5a3d241a5e 455 #warning "MAX32630 SPI workaround..."
whismanoid 53:3d5a3d241a5e 456 // replace SPI_MODE2 (CPOL=1,CPHA=0) with SPI_MODE1 (CPOL=0,CPHA=1) Falling Edge stable
whismanoid 53:3d5a3d241a5e 457 // replace SPI_MODE3 (CPOL=1,CPHA=1) with SPI_MODE0 (CPOL=0,CPHA=0) Rising Edge stable
whismanoid 53:3d5a3d241a5e 458 # if ((SPI_dataMode) == (SPI_MODE2))
whismanoid 53:3d5a3d241a5e 459 #warning "MAX32630 SPI_MODE2 workaround, changing SPI_dataMode to SPI_MODE1..."
whismanoid 53:3d5a3d241a5e 460 // SPI_dataMode SPI_MODE2 // CPOL=1,CPHA=0: Falling Edge stable; SCLK idle High
whismanoid 53:3d5a3d241a5e 461 # undef SPI_dataMode
whismanoid 53:3d5a3d241a5e 462 # define SPI_dataMode SPI_MODE1 // CPOL=0,CPHA=1: Falling Edge stable; SCLK idle Low
whismanoid 53:3d5a3d241a5e 463 # elif ((SPI_dataMode) == (SPI_MODE3))
whismanoid 53:3d5a3d241a5e 464 #warning "MAX32630 SPI_MODE3 workaround, changing SPI_dataMode to SPI_MODE0..."
whismanoid 53:3d5a3d241a5e 465 // SPI_dataMode SPI_MODE3 // CPOL=1,CPHA=1: Rising Edge stable; SCLK idle High
whismanoid 53:3d5a3d241a5e 466 # undef SPI_dataMode
whismanoid 53:3d5a3d241a5e 467 # define SPI_dataMode SPI_MODE0 // CPOL=0,CPHA=0: Rising Edge stable; SCLK idle Low
whismanoid 53:3d5a3d241a5e 468 # endif // workaround for TARGET_MAX32630 SPI_MODE2 SPI_MODE3 problem
whismanoid 53:3d5a3d241a5e 469 // workaround for TARGET_MAX32630 SPI_MODE2 SPI_MODE3 problem (issue #30)
whismanoid 53:3d5a3d241a5e 470 // limit SPI SCLK speed to 6MHz or less
whismanoid 53:3d5a3d241a5e 471 # if ((SPI_SCLK_Hz) > (6000000))
whismanoid 53:3d5a3d241a5e 472 #warning "MAX32630 SPI speed workaround, changing SPI_SCLK_Hz to 6000000 or 6MHz..."
whismanoid 53:3d5a3d241a5e 473 # undef SPI_SCLK_Hz
whismanoid 53:3d5a3d241a5e 474 # define SPI_SCLK_Hz 6000000 // 6MHz
whismanoid 53:3d5a3d241a5e 475 # endif
whismanoid 53:3d5a3d241a5e 476 #endif
whismanoid 53:3d5a3d241a5e 477 //
whismanoid 61:b4f3051578ef 478 uint32_t g_SPI_SCLK_Hz = 24000000; // platform limit 24MHz intSPI_SCLK_Platform_Max_MHz * 1000000
whismanoid 53:3d5a3d241a5e 479 // TODO1: validate g_SPI_SCLK_Hz against system clock frequency SystemCoreClock F_CPU
whismanoid 53:3d5a3d241a5e 480 #if defined(TARGET_NUCLEO_F446RE) || defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 481 // Nucleo SPI frequency isn't working quite as expected...
whismanoid 53:3d5a3d241a5e 482 // Looks like STMF4 has an spi clock prescaler (2,4,8,16,32,64,128,256)
whismanoid 53:3d5a3d241a5e 483 // so 180MHz->[90.0, 45.0, 22.5, 11.25, 5.625, 2.8125, 1.40625, 0.703125]
whismanoid 53:3d5a3d241a5e 484 // %SC SCLK=1MHz sets spi frequency 703.125kHz
whismanoid 53:3d5a3d241a5e 485 // %SC SCLK=2MHz sets spi frequency 1.40625MHz
whismanoid 53:3d5a3d241a5e 486 // %SC SCLK=3MHz sets spi frequency 2.8125MHz
whismanoid 53:3d5a3d241a5e 487 // %SC SCLK=6MHz sets spi frequency 5.625MHz
whismanoid 53:3d5a3d241a5e 488 // %SC SCLK=12MHz sets spi frequency 11.25MHz
whismanoid 53:3d5a3d241a5e 489 // %SC SCLK=23MHz sets spi frequency 22.5MHz
whismanoid 53:3d5a3d241a5e 490 // %SC SCLK=45MHz sets spi frequency 45.0MHz
whismanoid 53:3d5a3d241a5e 491 // Don't know why I can't reach spi frequency 90.0MHz, but ok whatever.
whismanoid 53:3d5a3d241a5e 492 const uint32_t limit_min_SPI_SCLK_divisor = 2;
whismanoid 53:3d5a3d241a5e 493 const uint32_t limit_max_SPI_SCLK_divisor = 256;
whismanoid 53:3d5a3d241a5e 494 // not really a divisor, just a powers-of-two prescaler with no intermediate divisors.
whismanoid 53:3d5a3d241a5e 495 #else
whismanoid 53:3d5a3d241a5e 496 const uint32_t limit_min_SPI_SCLK_divisor = 2;
whismanoid 53:3d5a3d241a5e 497 const uint32_t limit_max_SPI_SCLK_divisor = 8191;
whismanoid 53:3d5a3d241a5e 498 #endif
whismanoid 53:3d5a3d241a5e 499 const uint32_t limit_max_SPI_SCLK_Hz = (SystemCoreClock / limit_min_SPI_SCLK_divisor); // F_CPU / 2; // 8MHz / 2 = 4MHz
whismanoid 53:3d5a3d241a5e 500 const uint32_t limit_min_SPI_SCLK_Hz = (SystemCoreClock / limit_max_SPI_SCLK_divisor); // F_CPU / 128; // 8MHz / 128 = 62.5kHz
whismanoid 53:3d5a3d241a5e 501 //
whismanoid 53:3d5a3d241a5e 502 uint8_t g_SPI_dataMode = SPI_MODE0; // TODO: missing definition SPI_dataMode;
whismanoid 53:3d5a3d241a5e 503 uint8_t g_SPI_cs_state = 1;
whismanoid 53:3d5a3d241a5e 504 //
whismanoid 53:3d5a3d241a5e 505 #endif
whismanoid 53:3d5a3d241a5e 506
whismanoid 53:3d5a3d241a5e 507
whismanoid 68:ffee1e54d3fe 508 // uncrustify-0.66.1 *INDENT-OFF*
whismanoid 68:ffee1e54d3fe 509 //--------------------------------------------------
whismanoid 68:ffee1e54d3fe 510 // Declare the DigitalInOut GPIO pins
whismanoid 68:ffee1e54d3fe 511 // Optional digitalInOut support. If there is only one it should be digitalInOut1.
whismanoid 68:ffee1e54d3fe 512 // D) Digital High/Low/Input Pin
whismanoid 68:ffee1e54d3fe 513 #if defined(TARGET_MAX32630)
whismanoid 68:ffee1e54d3fe 514 // +-------------[microUSB]-------------+
whismanoid 68:ffee1e54d3fe 515 // | J1 MAX32630FTHR J2 |
whismanoid 68:ffee1e54d3fe 516 // | [ ] RST GND [ ] |
whismanoid 68:ffee1e54d3fe 517 // | [ ] 3V3 BAT+[ ] |
whismanoid 68:ffee1e54d3fe 518 // | [ ] 1V8 reset SW1 |
whismanoid 68:ffee1e54d3fe 519 // | [ ] GND J4 J3 |
whismanoid 68:ffee1e54d3fe 520 // | [ ] AIN_0 1.2Vfs (bat) SYS [ ] |
whismanoid 68:ffee1e54d3fe 521 // | [ ] AIN_1 1.2Vfs PWR [ ] |
whismanoid 68:ffee1e54d3fe 522 // | [ ] AIN_2 1.2Vfs +5V VBUS [ ] |
whismanoid 68:ffee1e54d3fe 523 // | [ ] AIN_3 1.2Vfs 1-WIRE P4_0 [ ] | dig9
whismanoid 68:ffee1e54d3fe 524 // dig10 | [x] P5_7 SDA2 SRN P5_6 [ ] | dig8
whismanoid 68:ffee1e54d3fe 525 // dig11 | [x] P6_0 SCL2 SDIO3 P5_5 [ ] | dig7
whismanoid 68:ffee1e54d3fe 526 // dig12 | [x] P5_0 SCLK SDIO2 P5_4 [ ] | dig6
whismanoid 68:ffee1e54d3fe 527 // dig13 | [x] P5_1 MOSI SSEL P5_3 [x] | dig5
whismanoid 68:ffee1e54d3fe 528 // dig14 | [ ] P5_2 MISO RTS P3_3 [ ] | dig4
whismanoid 68:ffee1e54d3fe 529 // dig15 | [ ] P3_0 RX CTS P3_2 [ ] | dig3
whismanoid 68:ffee1e54d3fe 530 // dig0 | [ ] P3_1 TX SCL P3_5 [x] | dig2
whismanoid 68:ffee1e54d3fe 531 // | [ ] GND SDA P3_4 [x] | dig1
whismanoid 68:ffee1e54d3fe 532 // +------------------------------------+
whismanoid 68:ffee1e54d3fe 533 #define HAS_digitalInOut0 1 // P3_1 TARGET_MAX32630 J1.15
whismanoid 68:ffee1e54d3fe 534 #define HAS_digitalInOut1 1 // P3_4 TARGET_MAX32630 J3.12
whismanoid 68:ffee1e54d3fe 535 #define HAS_digitalInOut2 1 // P3_5 TARGET_MAX32630 J3.11
whismanoid 68:ffee1e54d3fe 536 #define HAS_digitalInOut3 1 // P3_2 TARGET_MAX32630 J3.10
whismanoid 68:ffee1e54d3fe 537 #define HAS_digitalInOut4 1 // P3_3 TARGET_MAX32630 J3.9
whismanoid 68:ffee1e54d3fe 538 #define HAS_digitalInOut5 1 // P5_3 TARGET_MAX32630 J3.8
whismanoid 68:ffee1e54d3fe 539 #define HAS_digitalInOut6 1 // P5_4 TARGET_MAX32630 J3.7
whismanoid 68:ffee1e54d3fe 540 #define HAS_digitalInOut7 1 // P5_5 TARGET_MAX32630 J3.6
whismanoid 68:ffee1e54d3fe 541 #define HAS_digitalInOut8 1 // P5_6 TARGET_MAX32630 J3.5
whismanoid 68:ffee1e54d3fe 542 #define HAS_digitalInOut9 1 // P4_0 TARGET_MAX32630 J3.4
whismanoid 68:ffee1e54d3fe 543 #if HAS_I2C
whismanoid 68:ffee1e54d3fe 544 // avoid resource conflict between P5_7, P6_0 I2C and DigitalInOut
whismanoid 68:ffee1e54d3fe 545 #define HAS_digitalInOut10 0 // P5_7 TARGET_MAX32630 J1.9
whismanoid 68:ffee1e54d3fe 546 #define HAS_digitalInOut11 0 // P6_0 TARGET_MAX32630 J1.10
whismanoid 68:ffee1e54d3fe 547 #else // HAS_I2C
whismanoid 68:ffee1e54d3fe 548 #define HAS_digitalInOut10 1 // P5_7 TARGET_MAX32630 J1.9
whismanoid 68:ffee1e54d3fe 549 #define HAS_digitalInOut11 1 // P6_0 TARGET_MAX32630 J1.10
whismanoid 68:ffee1e54d3fe 550 #endif // HAS_I2C
whismanoid 68:ffee1e54d3fe 551 #if HAS_SPI
whismanoid 68:ffee1e54d3fe 552 // avoid resource conflict between P5_0, P5_1, P5_2 SPI and DigitalInOut
whismanoid 68:ffee1e54d3fe 553 #define HAS_digitalInOut12 0 // P5_0 TARGET_MAX32630 J1.11
whismanoid 68:ffee1e54d3fe 554 #define HAS_digitalInOut13 0 // P5_1 TARGET_MAX32630 J1.12
whismanoid 68:ffee1e54d3fe 555 #define HAS_digitalInOut14 0 // P5_2 TARGET_MAX32630 J1.13
whismanoid 68:ffee1e54d3fe 556 #define HAS_digitalInOut15 0 // P3_0 TARGET_MAX32630 J1.14
whismanoid 68:ffee1e54d3fe 557 #else // HAS_SPI
whismanoid 68:ffee1e54d3fe 558 #define HAS_digitalInOut12 1 // P5_0 TARGET_MAX32630 J1.11
whismanoid 68:ffee1e54d3fe 559 #define HAS_digitalInOut13 1 // P5_1 TARGET_MAX32630 J1.12
whismanoid 68:ffee1e54d3fe 560 #define HAS_digitalInOut14 1 // P5_2 TARGET_MAX32630 J1.13
whismanoid 68:ffee1e54d3fe 561 #define HAS_digitalInOut15 1 // P3_0 TARGET_MAX32630 J1.14
whismanoid 68:ffee1e54d3fe 562 #endif // HAS_SPI
whismanoid 68:ffee1e54d3fe 563 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 564 DigitalInOut digitalInOut0(P3_1, PIN_INPUT, PullUp, 1); // P3_1 TARGET_MAX32630 J1.15
whismanoid 68:ffee1e54d3fe 565 #endif
whismanoid 68:ffee1e54d3fe 566 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 567 DigitalInOut digitalInOut1(P3_4, PIN_INPUT, PullUp, 1); // P3_4 TARGET_MAX32630 J3.12
whismanoid 68:ffee1e54d3fe 568 #endif
whismanoid 68:ffee1e54d3fe 569 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 570 DigitalInOut digitalInOut2(P3_5, PIN_INPUT, PullUp, 1); // P3_5 TARGET_MAX32630 J3.11
whismanoid 68:ffee1e54d3fe 571 #endif
whismanoid 68:ffee1e54d3fe 572 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 573 DigitalInOut digitalInOut3(P3_2, PIN_INPUT, PullUp, 1); // P3_2 TARGET_MAX32630 J3.10
whismanoid 68:ffee1e54d3fe 574 #endif
whismanoid 68:ffee1e54d3fe 575 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 576 DigitalInOut digitalInOut4(P3_3, PIN_INPUT, PullUp, 1); // P3_3 TARGET_MAX32630 J3.9
whismanoid 68:ffee1e54d3fe 577 #endif
whismanoid 68:ffee1e54d3fe 578 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 579 DigitalInOut digitalInOut5(P5_3, PIN_INPUT, PullUp, 1); // P5_3 TARGET_MAX32630 J3.8
whismanoid 68:ffee1e54d3fe 580 #endif
whismanoid 68:ffee1e54d3fe 581 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 582 DigitalInOut digitalInOut6(P5_4, PIN_INPUT, PullUp, 1); // P5_4 TARGET_MAX32630 J3.7
whismanoid 68:ffee1e54d3fe 583 #endif
whismanoid 68:ffee1e54d3fe 584 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 585 DigitalInOut digitalInOut7(P5_5, PIN_INPUT, PullUp, 1); // P5_5 TARGET_MAX32630 J3.6
whismanoid 68:ffee1e54d3fe 586 #endif
whismanoid 68:ffee1e54d3fe 587 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 588 DigitalInOut digitalInOut8(P5_6, PIN_INPUT, PullUp, 1); // P5_6 TARGET_MAX32630 J3.5
whismanoid 68:ffee1e54d3fe 589 #endif
whismanoid 68:ffee1e54d3fe 590 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 591 DigitalInOut digitalInOut9(P4_0, PIN_INPUT, PullUp, 1); // P4_0 TARGET_MAX32630 J3.4
whismanoid 68:ffee1e54d3fe 592 #endif
whismanoid 68:ffee1e54d3fe 593 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 594 DigitalInOut digitalInOut10(P5_7, PIN_INPUT, PullUp, 1); // P5_7 TARGET_MAX32630 J1.9
whismanoid 68:ffee1e54d3fe 595 #endif
whismanoid 68:ffee1e54d3fe 596 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 597 DigitalInOut digitalInOut11(P6_0, PIN_INPUT, PullUp, 1); // P6_0 TARGET_MAX32630 J1.10
whismanoid 68:ffee1e54d3fe 598 #endif
whismanoid 68:ffee1e54d3fe 599 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 600 DigitalInOut digitalInOut12(P5_0, PIN_INPUT, PullUp, 1); // P5_0 TARGET_MAX32630 J1.11
whismanoid 68:ffee1e54d3fe 601 #endif
whismanoid 68:ffee1e54d3fe 602 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 603 DigitalInOut digitalInOut13(P5_1, PIN_INPUT, PullUp, 1); // P5_1 TARGET_MAX32630 J1.12
whismanoid 68:ffee1e54d3fe 604 #endif
whismanoid 68:ffee1e54d3fe 605 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 606 DigitalInOut digitalInOut14(P5_2, PIN_INPUT, PullUp, 1); // P5_2 TARGET_MAX32630 J1.13
whismanoid 68:ffee1e54d3fe 607 #endif
whismanoid 68:ffee1e54d3fe 608 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 609 DigitalInOut digitalInOut15(P3_0, PIN_INPUT, PullUp, 1); // P3_0 TARGET_MAX32630 J1.14
whismanoid 68:ffee1e54d3fe 610 #endif
whismanoid 68:ffee1e54d3fe 611 //--------------------------------------------------
whismanoid 68:ffee1e54d3fe 612 #elif defined(TARGET_MAX32625MBED)
whismanoid 68:ffee1e54d3fe 613 // TARGET=MAX32625MBED ARM Cortex-M4F 96MHz 512kB Flash 160kB SRAM
whismanoid 68:ffee1e54d3fe 614 // +-------------------------------------+
whismanoid 68:ffee1e54d3fe 615 // | MAX32625MBED Arduino UNO header |
whismanoid 68:ffee1e54d3fe 616 // | |
whismanoid 68:ffee1e54d3fe 617 // | A5/SCL[ ] | P1_7 dig15
whismanoid 68:ffee1e54d3fe 618 // | A4/SDA[ ] | P1_6 dig14
whismanoid 68:ffee1e54d3fe 619 // | AREF=N/C[ ] |
whismanoid 68:ffee1e54d3fe 620 // | GND[ ] |
whismanoid 68:ffee1e54d3fe 621 // | [ ]N/C SCK/13[ ] | P1_0 dig13
whismanoid 68:ffee1e54d3fe 622 // | [ ]IOREF=3V3 MISO/12[ ] | P1_2 dig12
whismanoid 68:ffee1e54d3fe 623 // | [ ]RST MOSI/11[ ]~| P1_1 dig11
whismanoid 68:ffee1e54d3fe 624 // | [ ]3V3 CS/10[ ]~| P1_3 dig10
whismanoid 68:ffee1e54d3fe 625 // | [ ]5V0 9[ ]~| P1_5 dig9
whismanoid 68:ffee1e54d3fe 626 // | [ ]GND 8[ ] | P1_4 dig8
whismanoid 68:ffee1e54d3fe 627 // | [ ]GND |
whismanoid 68:ffee1e54d3fe 628 // | [ ]Vin 7[ ] | P0_7 dig7
whismanoid 68:ffee1e54d3fe 629 // | 6[ ]~| P0_6 dig6
whismanoid 68:ffee1e54d3fe 630 // AIN_0 | [ ]A0 5[ ]~| P0_5 dig5
whismanoid 68:ffee1e54d3fe 631 // AIN_1 | [ ]A1 4[ ] | P0_4 dig4
whismanoid 68:ffee1e54d3fe 632 // AIN_2 | [ ]A2 INT1/3[ ]~| P0_3 dig3
whismanoid 68:ffee1e54d3fe 633 // AIN_3 | [ ]A3 INT0/2[ ] | P0_2 dig2
whismanoid 68:ffee1e54d3fe 634 // dig16 P3_4 | [ ]A4/SDA RST SCK MISO TX>1[ ] | P0_1 dig1
whismanoid 68:ffee1e54d3fe 635 // dig17 P3_5 | [ ]A5/SCL [ ] [ ] [ ] RX<0[ ] | P0_0 dig0
whismanoid 68:ffee1e54d3fe 636 // | [ ] [ ] [ ] |
whismanoid 68:ffee1e54d3fe 637 // | UNO_R3 GND MOSI 5V ____________/
whismanoid 68:ffee1e54d3fe 638 // \_______________________/
whismanoid 68:ffee1e54d3fe 639 //
whismanoid 68:ffee1e54d3fe 640 #define HAS_digitalInOut0 1 // P0_0 TARGET_MAX32625MBED D0
whismanoid 68:ffee1e54d3fe 641 #define HAS_digitalInOut1 1 // P0_1 TARGET_MAX32625MBED D1
whismanoid 68:ffee1e54d3fe 642 #if APPLICATION_MAX11131
whismanoid 68:ffee1e54d3fe 643 #define HAS_digitalInOut2 0 // P0_2 TARGET_MAX32625MBED D2 -- MAX11131 EOC DigitalIn
whismanoid 68:ffee1e54d3fe 644 #else
whismanoid 68:ffee1e54d3fe 645 #define HAS_digitalInOut2 1 // P0_2 TARGET_MAX32625MBED D2
whismanoid 68:ffee1e54d3fe 646 #endif
whismanoid 68:ffee1e54d3fe 647 #define HAS_digitalInOut3 1 // P0_3 TARGET_MAX32625MBED D3
whismanoid 68:ffee1e54d3fe 648 #define HAS_digitalInOut4 1 // P0_4 TARGET_MAX32625MBED D4
whismanoid 68:ffee1e54d3fe 649 #define HAS_digitalInOut5 1 // P0_5 TARGET_MAX32625MBED D5
whismanoid 68:ffee1e54d3fe 650 #define HAS_digitalInOut6 1 // P0_6 TARGET_MAX32625MBED D6
whismanoid 68:ffee1e54d3fe 651 #define HAS_digitalInOut7 1 // P0_7 TARGET_MAX32625MBED D7
whismanoid 68:ffee1e54d3fe 652 #define HAS_digitalInOut8 1 // P1_4 TARGET_MAX32625MBED D8
whismanoid 68:ffee1e54d3fe 653 #if APPLICATION_MAX11131
whismanoid 68:ffee1e54d3fe 654 #define HAS_digitalInOut9 0 // P1_5 TARGET_MAX32625MBED D9 -- MAX11131 CNVST DigitalOut
whismanoid 68:ffee1e54d3fe 655 #else
whismanoid 68:ffee1e54d3fe 656 #define HAS_digitalInOut9 1 // P1_5 TARGET_MAX32625MBED D9
whismanoid 68:ffee1e54d3fe 657 #endif
whismanoid 68:ffee1e54d3fe 658 #if HAS_SPI
whismanoid 68:ffee1e54d3fe 659 // avoid resource conflict between P5_0, P5_1, P5_2 SPI and DigitalInOut
whismanoid 68:ffee1e54d3fe 660 #define HAS_digitalInOut10 0 // P1_3 TARGET_MAX32635MBED CS/10
whismanoid 68:ffee1e54d3fe 661 #define HAS_digitalInOut11 0 // P1_1 TARGET_MAX32635MBED MOSI/11
whismanoid 68:ffee1e54d3fe 662 #define HAS_digitalInOut12 0 // P1_2 TARGET_MAX32635MBED MISO/12
whismanoid 68:ffee1e54d3fe 663 #define HAS_digitalInOut13 0 // P1_0 TARGET_MAX32635MBED SCK/13
whismanoid 68:ffee1e54d3fe 664 #else // HAS_SPI
whismanoid 68:ffee1e54d3fe 665 #define HAS_digitalInOut10 1 // P1_3 TARGET_MAX32635MBED CS/10
whismanoid 68:ffee1e54d3fe 666 #define HAS_digitalInOut11 1 // P1_1 TARGET_MAX32635MBED MOSI/11
whismanoid 68:ffee1e54d3fe 667 #define HAS_digitalInOut12 1 // P1_2 TARGET_MAX32635MBED MISO/12
whismanoid 68:ffee1e54d3fe 668 #define HAS_digitalInOut13 1 // P1_0 TARGET_MAX32635MBED SCK/13
whismanoid 68:ffee1e54d3fe 669 #endif // HAS_SPI
whismanoid 68:ffee1e54d3fe 670 #if HAS_I2C
whismanoid 68:ffee1e54d3fe 671 // avoid resource conflict between P5_7, P6_0 I2C and DigitalInOut
whismanoid 68:ffee1e54d3fe 672 #define HAS_digitalInOut14 0 // P1_6 TARGET_MAX32635MBED A4/SDA (10pin digital connector)
whismanoid 68:ffee1e54d3fe 673 #define HAS_digitalInOut15 0 // P1_7 TARGET_MAX32635MBED A5/SCL (10pin digital connector)
whismanoid 68:ffee1e54d3fe 674 #define HAS_digitalInOut16 0 // P3_4 TARGET_MAX32635MBED A4/SDA (6pin analog connector)
whismanoid 68:ffee1e54d3fe 675 #define HAS_digitalInOut17 0 // P3_5 TARGET_MAX32635MBED A5/SCL (6pin analog connector)
whismanoid 68:ffee1e54d3fe 676 #else // HAS_I2C
whismanoid 68:ffee1e54d3fe 677 #define HAS_digitalInOut14 1 // P1_6 TARGET_MAX32635MBED A4/SDA (10pin digital connector)
whismanoid 68:ffee1e54d3fe 678 #define HAS_digitalInOut15 1 // P1_7 TARGET_MAX32635MBED A5/SCL (10pin digital connector)
whismanoid 68:ffee1e54d3fe 679 #define HAS_digitalInOut16 1 // P3_4 TARGET_MAX32635MBED A4/SDA (6pin analog connector)
whismanoid 68:ffee1e54d3fe 680 #define HAS_digitalInOut17 1 // P3_5 TARGET_MAX32635MBED A5/SCL (6pin analog connector)
whismanoid 68:ffee1e54d3fe 681 #endif // HAS_I2C
whismanoid 68:ffee1e54d3fe 682 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 683 DigitalInOut digitalInOut0(P0_0, PIN_INPUT, PullUp, 1); // P0_0 TARGET_MAX32625MBED D0
whismanoid 68:ffee1e54d3fe 684 #endif
whismanoid 68:ffee1e54d3fe 685 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 686 DigitalInOut digitalInOut1(P0_1, PIN_INPUT, PullUp, 1); // P0_1 TARGET_MAX32625MBED D1
whismanoid 68:ffee1e54d3fe 687 #endif
whismanoid 68:ffee1e54d3fe 688 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 689 DigitalInOut digitalInOut2(P0_2, PIN_INPUT, PullUp, 1); // P0_2 TARGET_MAX32625MBED D2
whismanoid 68:ffee1e54d3fe 690 #endif
whismanoid 68:ffee1e54d3fe 691 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 692 DigitalInOut digitalInOut3(P0_3, PIN_INPUT, PullUp, 1); // P0_3 TARGET_MAX32625MBED D3
whismanoid 68:ffee1e54d3fe 693 #endif
whismanoid 68:ffee1e54d3fe 694 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 695 DigitalInOut digitalInOut4(P0_4, PIN_INPUT, PullUp, 1); // P0_4 TARGET_MAX32625MBED D4
whismanoid 68:ffee1e54d3fe 696 #endif
whismanoid 68:ffee1e54d3fe 697 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 698 DigitalInOut digitalInOut5(P0_5, PIN_INPUT, PullUp, 1); // P0_5 TARGET_MAX32625MBED D5
whismanoid 68:ffee1e54d3fe 699 #endif
whismanoid 68:ffee1e54d3fe 700 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 701 DigitalInOut digitalInOut6(P0_6, PIN_INPUT, PullUp, 1); // P0_6 TARGET_MAX32625MBED D6
whismanoid 68:ffee1e54d3fe 702 #endif
whismanoid 68:ffee1e54d3fe 703 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 704 DigitalInOut digitalInOut7(P0_7, PIN_INPUT, PullUp, 1); // P0_7 TARGET_MAX32625MBED D7
whismanoid 68:ffee1e54d3fe 705 #endif
whismanoid 68:ffee1e54d3fe 706 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 707 DigitalInOut digitalInOut8(P1_4, PIN_INPUT, PullUp, 1); // P1_4 TARGET_MAX32625MBED D8
whismanoid 68:ffee1e54d3fe 708 #endif
whismanoid 68:ffee1e54d3fe 709 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 710 DigitalInOut digitalInOut9(P1_5, PIN_INPUT, PullUp, 1); // P1_5 TARGET_MAX32625MBED D9
whismanoid 68:ffee1e54d3fe 711 #endif
whismanoid 68:ffee1e54d3fe 712 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 713 DigitalInOut digitalInOut10(P1_3, PIN_INPUT, PullUp, 1); // P1_3 TARGET_MAX32635MBED CS/10
whismanoid 68:ffee1e54d3fe 714 #endif
whismanoid 68:ffee1e54d3fe 715 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 716 DigitalInOut digitalInOut11(P1_1, PIN_INPUT, PullUp, 1); // P1_1 TARGET_MAX32635MBED MOSI/11
whismanoid 68:ffee1e54d3fe 717 #endif
whismanoid 68:ffee1e54d3fe 718 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 719 DigitalInOut digitalInOut12(P1_2, PIN_INPUT, PullUp, 1); // P1_2 TARGET_MAX32635MBED MISO/12
whismanoid 68:ffee1e54d3fe 720 #endif
whismanoid 68:ffee1e54d3fe 721 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 722 DigitalInOut digitalInOut13(P1_0, PIN_INPUT, PullUp, 1); // P1_0 TARGET_MAX32635MBED SCK/13
whismanoid 68:ffee1e54d3fe 723 #endif
whismanoid 68:ffee1e54d3fe 724 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 725 // Ensure that the unused I2C pins do not interfere with analog inputs A4 and A5
whismanoid 68:ffee1e54d3fe 726 // DigitalInOut mode can be one of PullUp, PullDown, PullNone, OpenDrain
whismanoid 68:ffee1e54d3fe 727 DigitalInOut digitalInOut14(P1_6, PIN_INPUT, OpenDrain, 1); // P1_6 TARGET_MAX32635MBED A4/SDA (10pin digital connector)
whismanoid 68:ffee1e54d3fe 728 #endif
whismanoid 68:ffee1e54d3fe 729 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 730 // Ensure that the unused I2C pins do not interfere with analog inputs A4 and A5
whismanoid 68:ffee1e54d3fe 731 DigitalInOut digitalInOut15(P1_7, PIN_INPUT, OpenDrain, 1); // P1_7 TARGET_MAX32635MBED A5/SCL (10pin digital connector)
whismanoid 68:ffee1e54d3fe 732 #endif
whismanoid 68:ffee1e54d3fe 733 #if HAS_digitalInOut16
whismanoid 68:ffee1e54d3fe 734 // Ensure that the unused I2C pins do not interfere with analog inputs A4 and A5
whismanoid 68:ffee1e54d3fe 735 // DigitalInOut mode can be one of PullUp, PullDown, PullNone, OpenDrain
whismanoid 68:ffee1e54d3fe 736 // PullUp-->3.4V, PullDown-->1.7V, PullNone-->3.5V, OpenDrain-->0.00V
whismanoid 68:ffee1e54d3fe 737 DigitalInOut digitalInOut16(P3_4, PIN_INPUT, OpenDrain, 0); // P3_4 TARGET_MAX32635MBED A4/SDA (6pin analog connector)
whismanoid 68:ffee1e54d3fe 738 #endif
whismanoid 68:ffee1e54d3fe 739 #if HAS_digitalInOut17
whismanoid 68:ffee1e54d3fe 740 // Ensure that the unused I2C pins do not interfere with analog inputs A4 and A5
whismanoid 68:ffee1e54d3fe 741 DigitalInOut digitalInOut17(P3_5, PIN_INPUT, OpenDrain, 0); // P3_5 TARGET_MAX32635MBED A5/SCL (6pin analog connector)
whismanoid 68:ffee1e54d3fe 742 #endif
whismanoid 68:ffee1e54d3fe 743 //--------------------------------------------------
whismanoid 68:ffee1e54d3fe 744 #elif defined(TARGET_NUCLEO_F446RE) || defined(TARGET_NUCLEO_F401RE)
whismanoid 68:ffee1e54d3fe 745 #define HAS_digitalInOut0 0 // P0_0 TARGET_MAX32625MBED D0
whismanoid 68:ffee1e54d3fe 746 #define HAS_digitalInOut1 0 // P0_1 TARGET_MAX32625MBED D1
whismanoid 68:ffee1e54d3fe 747 #if APPLICATION_MAX11131
whismanoid 68:ffee1e54d3fe 748 #define HAS_digitalInOut2 0 // P0_2 TARGET_MAX32625MBED D2 -- MAX11131 EOC DigitalIn
whismanoid 68:ffee1e54d3fe 749 #else
whismanoid 68:ffee1e54d3fe 750 #define HAS_digitalInOut2 1 // P0_2 TARGET_MAX32625MBED D2
whismanoid 68:ffee1e54d3fe 751 #endif
whismanoid 68:ffee1e54d3fe 752 #define HAS_digitalInOut3 1 // P0_3 TARGET_MAX32625MBED D3
whismanoid 68:ffee1e54d3fe 753 #define HAS_digitalInOut4 1 // P0_4 TARGET_MAX32625MBED D4
whismanoid 68:ffee1e54d3fe 754 #define HAS_digitalInOut5 1 // P0_5 TARGET_MAX32625MBED D5
whismanoid 68:ffee1e54d3fe 755 #define HAS_digitalInOut6 1 // P0_6 TARGET_MAX32625MBED D6
whismanoid 68:ffee1e54d3fe 756 #define HAS_digitalInOut7 1 // P0_7 TARGET_MAX32625MBED D7
whismanoid 68:ffee1e54d3fe 757 #if APPLICATION_MAX5715
whismanoid 68:ffee1e54d3fe 758 #define HAS_digitalInOut8 0 // P1_4 TARGET_MAX32625MBED D8 -- MAX5715 CLRb DigitalOut
whismanoid 68:ffee1e54d3fe 759 #else
whismanoid 68:ffee1e54d3fe 760 #define HAS_digitalInOut8 1 // P1_4 TARGET_MAX32625MBED D8
whismanoid 68:ffee1e54d3fe 761 #endif
whismanoid 68:ffee1e54d3fe 762 #if APPLICATION_MAX5715
whismanoid 68:ffee1e54d3fe 763 #define HAS_digitalInOut9 0 // P1_5 TARGET_MAX32625MBED D9 -- MAX5715 LDACb DigitalOut
whismanoid 68:ffee1e54d3fe 764 #elif APPLICATION_MAX11131
whismanoid 68:ffee1e54d3fe 765 #define HAS_digitalInOut9 0 // P1_5 TARGET_MAX32625MBED D9 -- MAX11131 CNVST DigitalOut
whismanoid 68:ffee1e54d3fe 766 #else
whismanoid 68:ffee1e54d3fe 767 #define HAS_digitalInOut9 1 // P1_5 TARGET_MAX32625MBED D9
whismanoid 68:ffee1e54d3fe 768 #endif
whismanoid 68:ffee1e54d3fe 769 #if HAS_SPI
whismanoid 68:ffee1e54d3fe 770 // avoid resource conflict between P5_0, P5_1, P5_2 SPI and DigitalInOut
whismanoid 68:ffee1e54d3fe 771 // Arduino digital pin D10 SPI function is CS/10
whismanoid 68:ffee1e54d3fe 772 // Arduino digital pin D11 SPI function is MOSI/11
whismanoid 68:ffee1e54d3fe 773 // Arduino digital pin D12 SPI function is MISO/12
whismanoid 68:ffee1e54d3fe 774 // Arduino digital pin D13 SPI function is SCK/13
whismanoid 68:ffee1e54d3fe 775 #define HAS_digitalInOut10 0
whismanoid 68:ffee1e54d3fe 776 #define HAS_digitalInOut11 0
whismanoid 68:ffee1e54d3fe 777 #define HAS_digitalInOut12 0
whismanoid 68:ffee1e54d3fe 778 #define HAS_digitalInOut13 0
whismanoid 68:ffee1e54d3fe 779 #else // HAS_SPI
whismanoid 68:ffee1e54d3fe 780 #define HAS_digitalInOut10 1
whismanoid 68:ffee1e54d3fe 781 #define HAS_digitalInOut11 1
whismanoid 68:ffee1e54d3fe 782 #define HAS_digitalInOut12 1
whismanoid 68:ffee1e54d3fe 783 #define HAS_digitalInOut13 1
whismanoid 68:ffee1e54d3fe 784 #endif // HAS_SPI
whismanoid 68:ffee1e54d3fe 785 #if HAS_I2C
whismanoid 68:ffee1e54d3fe 786 // avoid resource conflict between P5_7, P6_0 I2C and DigitalInOut
whismanoid 68:ffee1e54d3fe 787 // Arduino digital pin D14 I2C function is A4/SDA (10pin digital connector)
whismanoid 68:ffee1e54d3fe 788 // Arduino digital pin D15 I2C function is A5/SCL (10pin digital connector)
whismanoid 68:ffee1e54d3fe 789 // Arduino digital pin D16 I2C function is A4/SDA (6pin analog connector)
whismanoid 68:ffee1e54d3fe 790 // Arduino digital pin D17 I2C function is A5/SCL (6pin analog connector)
whismanoid 68:ffee1e54d3fe 791 #define HAS_digitalInOut14 0
whismanoid 68:ffee1e54d3fe 792 #define HAS_digitalInOut15 0
whismanoid 68:ffee1e54d3fe 793 #define HAS_digitalInOut16 0
whismanoid 68:ffee1e54d3fe 794 #define HAS_digitalInOut17 0
whismanoid 68:ffee1e54d3fe 795 #else // HAS_I2C
whismanoid 68:ffee1e54d3fe 796 #define HAS_digitalInOut14 1
whismanoid 68:ffee1e54d3fe 797 #define HAS_digitalInOut15 1
whismanoid 68:ffee1e54d3fe 798 #define HAS_digitalInOut16 0
whismanoid 68:ffee1e54d3fe 799 #define HAS_digitalInOut17 0
whismanoid 68:ffee1e54d3fe 800 #endif // HAS_I2C
whismanoid 68:ffee1e54d3fe 801 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 802 DigitalInOut digitalInOut0(D0, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 803 #endif
whismanoid 68:ffee1e54d3fe 804 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 805 DigitalInOut digitalInOut1(D1, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 806 #endif
whismanoid 68:ffee1e54d3fe 807 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 808 DigitalInOut digitalInOut2(D2, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 809 #endif
whismanoid 68:ffee1e54d3fe 810 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 811 DigitalInOut digitalInOut3(D3, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 812 #endif
whismanoid 68:ffee1e54d3fe 813 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 814 DigitalInOut digitalInOut4(D4, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 815 #endif
whismanoid 68:ffee1e54d3fe 816 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 817 DigitalInOut digitalInOut5(D5, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 818 #endif
whismanoid 68:ffee1e54d3fe 819 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 820 DigitalInOut digitalInOut6(D6, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 821 #endif
whismanoid 68:ffee1e54d3fe 822 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 823 DigitalInOut digitalInOut7(D7, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 824 #endif
whismanoid 68:ffee1e54d3fe 825 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 826 DigitalInOut digitalInOut8(D8, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 827 #endif
whismanoid 68:ffee1e54d3fe 828 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 829 DigitalInOut digitalInOut9(D9, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 830 #endif
whismanoid 68:ffee1e54d3fe 831 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 832 // Arduino digital pin D10 SPI function is CS/10
whismanoid 68:ffee1e54d3fe 833 DigitalInOut digitalInOut10(D10, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 834 #endif
whismanoid 68:ffee1e54d3fe 835 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 836 // Arduino digital pin D11 SPI function is MOSI/11
whismanoid 68:ffee1e54d3fe 837 DigitalInOut digitalInOut11(D11, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 838 #endif
whismanoid 68:ffee1e54d3fe 839 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 840 // Arduino digital pin D12 SPI function is MISO/12
whismanoid 68:ffee1e54d3fe 841 DigitalInOut digitalInOut12(D12, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 842 #endif
whismanoid 68:ffee1e54d3fe 843 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 844 // Arduino digital pin D13 SPI function is SCK/13
whismanoid 68:ffee1e54d3fe 845 DigitalInOut digitalInOut13(D13, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 846 #endif
whismanoid 68:ffee1e54d3fe 847 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 848 // Arduino digital pin D14 I2C function is A4/SDA (10pin digital connector)
whismanoid 68:ffee1e54d3fe 849 DigitalInOut digitalInOut14(D14, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 850 #endif
whismanoid 68:ffee1e54d3fe 851 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 852 // Arduino digital pin D15 I2C function is A5/SCL (10pin digital connector)
whismanoid 68:ffee1e54d3fe 853 DigitalInOut digitalInOut15(D15, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 854 #endif
whismanoid 68:ffee1e54d3fe 855 #if HAS_digitalInOut16
whismanoid 68:ffee1e54d3fe 856 // Arduino digital pin D16 I2C function is A4/SDA (6pin analog connector)
whismanoid 68:ffee1e54d3fe 857 DigitalInOut digitalInOut16(D16, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 858 #endif
whismanoid 68:ffee1e54d3fe 859 #if HAS_digitalInOut17
whismanoid 68:ffee1e54d3fe 860 // Arduino digital pin D17 I2C function is A5/SCL (6pin analog connector)
whismanoid 68:ffee1e54d3fe 861 DigitalInOut digitalInOut17(D17, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 862 #endif
whismanoid 68:ffee1e54d3fe 863 //--------------------------------------------------
whismanoid 68:ffee1e54d3fe 864 #elif defined(TARGET_LPC1768)
whismanoid 68:ffee1e54d3fe 865 #define HAS_digitalInOut0 1
whismanoid 68:ffee1e54d3fe 866 #define HAS_digitalInOut1 1
whismanoid 68:ffee1e54d3fe 867 #define HAS_digitalInOut2 1
whismanoid 68:ffee1e54d3fe 868 #define HAS_digitalInOut3 1
whismanoid 68:ffee1e54d3fe 869 #define HAS_digitalInOut4 1
whismanoid 68:ffee1e54d3fe 870 #define HAS_digitalInOut5 1
whismanoid 68:ffee1e54d3fe 871 #define HAS_digitalInOut6 1
whismanoid 68:ffee1e54d3fe 872 #define HAS_digitalInOut7 1
whismanoid 68:ffee1e54d3fe 873 #define HAS_digitalInOut8 1
whismanoid 68:ffee1e54d3fe 874 #define HAS_digitalInOut9 1
whismanoid 68:ffee1e54d3fe 875 // #define HAS_digitalInOut10 1
whismanoid 68:ffee1e54d3fe 876 // #define HAS_digitalInOut11 1
whismanoid 68:ffee1e54d3fe 877 // #define HAS_digitalInOut12 1
whismanoid 68:ffee1e54d3fe 878 // #define HAS_digitalInOut13 1
whismanoid 68:ffee1e54d3fe 879 // #define HAS_digitalInOut14 1
whismanoid 68:ffee1e54d3fe 880 // #define HAS_digitalInOut15 1
whismanoid 68:ffee1e54d3fe 881 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 882 DigitalInOut digitalInOut0(p5, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.9/I2STX_SDA/MOSI1/MAT2.3
whismanoid 68:ffee1e54d3fe 883 #endif
whismanoid 68:ffee1e54d3fe 884 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 885 DigitalInOut digitalInOut1(p6, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.8/I2STX_WS/MISO1/MAT2.2
whismanoid 68:ffee1e54d3fe 886 #endif
whismanoid 68:ffee1e54d3fe 887 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 888 DigitalInOut digitalInOut2(p7, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.7/I2STX_CLK/SCK1/MAT2.1
whismanoid 68:ffee1e54d3fe 889 #endif
whismanoid 68:ffee1e54d3fe 890 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 891 DigitalInOut digitalInOut3(p8, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.6/I2SRX_SDA/SSEL1/MAT2.0
whismanoid 68:ffee1e54d3fe 892 #endif
whismanoid 68:ffee1e54d3fe 893 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 894 DigitalInOut digitalInOut4(p9, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.0/CAN_RX1/TXD3/SDA1
whismanoid 68:ffee1e54d3fe 895 #endif
whismanoid 68:ffee1e54d3fe 896 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 897 DigitalInOut digitalInOut5(p10, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.1/CAN_TX1/RXD3/SCL1
whismanoid 68:ffee1e54d3fe 898 #endif
whismanoid 68:ffee1e54d3fe 899 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 900 DigitalInOut digitalInOut6(p11, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.18/DCD1/MOSI0/MOSI1
whismanoid 68:ffee1e54d3fe 901 #endif
whismanoid 68:ffee1e54d3fe 902 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 903 DigitalInOut digitalInOut7(p12, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.17/CTS1/MISO0/MISO
whismanoid 68:ffee1e54d3fe 904 #endif
whismanoid 68:ffee1e54d3fe 905 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 906 DigitalInOut digitalInOut8(p13, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.15/TXD1/SCK0/SCK
whismanoid 68:ffee1e54d3fe 907 #endif
whismanoid 68:ffee1e54d3fe 908 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 909 DigitalInOut digitalInOut9(p14, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.16/RXD1/SSEL0/SSEL
whismanoid 68:ffee1e54d3fe 910 #endif
whismanoid 68:ffee1e54d3fe 911 //
whismanoid 68:ffee1e54d3fe 912 // these pins support analog input analogIn0 .. analogIn5
whismanoid 68:ffee1e54d3fe 913 //DigitalInOut digitalInOut_(p15, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.23/AD0.0/I2SRX_CLK/CAP3.0
whismanoid 68:ffee1e54d3fe 914 //DigitalInOut digitalInOut_(p16, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.24/AD0.1/I2SRX_WS/CAP3.1
whismanoid 68:ffee1e54d3fe 915 //DigitalInOut digitalInOut_(p17, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.25/AD0.2/I2SRX_SDA/TXD3
whismanoid 68:ffee1e54d3fe 916 //DigitalInOut digitalInOut_(p18, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.26/AD0.3/AOUT/RXD3
whismanoid 68:ffee1e54d3fe 917 //DigitalInOut digitalInOut_(p19, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P1.30/VBUS/AD0.4
whismanoid 68:ffee1e54d3fe 918 //DigitalInOut digitalInOut_(p20, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P1.31/SCK1/AD0.5
whismanoid 68:ffee1e54d3fe 919 //
whismanoid 68:ffee1e54d3fe 920 // these pins support PWM pwmDriver1 .. pwmDriver6
whismanoid 68:ffee1e54d3fe 921 //DigitalInOut digitalInOut_(p21, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.5/PWM1.6/DTR1/TRACEDATA0
whismanoid 68:ffee1e54d3fe 922 //DigitalInOut digitalInOut_(p22, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.4/PWM1.5/DSR1/TRACEDATA1
whismanoid 68:ffee1e54d3fe 923 //DigitalInOut digitalInOut_(p23, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.3/PWM1.4/DCD1/TRACEDATA2
whismanoid 68:ffee1e54d3fe 924 //DigitalInOut digitalInOut_(p24, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.2/PWM1.3/CTS1/TRACEDATA3
whismanoid 68:ffee1e54d3fe 925 //DigitalInOut digitalInOut_(p25, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.1/PWM1.2/RXD1
whismanoid 68:ffee1e54d3fe 926 //DigitalInOut digitalInOut_(p26, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P2.0/PWM1.1/TXD1/TRACECLK
whismanoid 68:ffee1e54d3fe 927 //
whismanoid 68:ffee1e54d3fe 928 // these could be additional digitalInOut pins
whismanoid 68:ffee1e54d3fe 929 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 930 DigitalInOut digitalInOut10(p27, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.11/RXD2/SCL2/MAT3.1
whismanoid 68:ffee1e54d3fe 931 #endif
whismanoid 68:ffee1e54d3fe 932 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 933 DigitalInOut digitalInOut11(p28, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.10/TXD2/SDA2/MAT3.0
whismanoid 68:ffee1e54d3fe 934 #endif
whismanoid 68:ffee1e54d3fe 935 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 936 DigitalInOut digitalInOut12(p29, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.5/I2SRX_WS/CAN_TX2/CAP2.1
whismanoid 68:ffee1e54d3fe 937 #endif
whismanoid 68:ffee1e54d3fe 938 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 939 DigitalInOut digitalInOut13(p30, PIN_INPUT, PullUp, 1); // TARGET_LPC1768 P0.4/I2SRX_CLK/CAN_RX2/CAP2.0
whismanoid 68:ffee1e54d3fe 940 #endif
whismanoid 68:ffee1e54d3fe 941 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 942 DigitalInOut digitalInOut14(___, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 943 #endif
whismanoid 68:ffee1e54d3fe 944 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 945 DigitalInOut digitalInOut15(___, PIN_INPUT, PullUp, 1);
whismanoid 68:ffee1e54d3fe 946 #endif
whismanoid 68:ffee1e54d3fe 947 #else
whismanoid 68:ffee1e54d3fe 948 // unknown target
whismanoid 68:ffee1e54d3fe 949 #endif
whismanoid 68:ffee1e54d3fe 950 // uncrustify-0.66.1 *INDENT-ON*
whismanoid 68:ffee1e54d3fe 951 #if HAS_digitalInOut0 || HAS_digitalInOut1 \
whismanoid 68:ffee1e54d3fe 952 || HAS_digitalInOut2 || HAS_digitalInOut3 \
whismanoid 68:ffee1e54d3fe 953 || HAS_digitalInOut4 || HAS_digitalInOut5 \
whismanoid 68:ffee1e54d3fe 954 || HAS_digitalInOut6 || HAS_digitalInOut7 \
whismanoid 68:ffee1e54d3fe 955 || HAS_digitalInOut8 || HAS_digitalInOut9 \
whismanoid 68:ffee1e54d3fe 956 || HAS_digitalInOut10 || HAS_digitalInOut11 \
whismanoid 68:ffee1e54d3fe 957 || HAS_digitalInOut12 || HAS_digitalInOut13 \
whismanoid 68:ffee1e54d3fe 958 || HAS_digitalInOut14 || HAS_digitalInOut15 \
whismanoid 68:ffee1e54d3fe 959 || HAS_digitalInOut16 || HAS_digitalInOut17
whismanoid 68:ffee1e54d3fe 960 #define HAS_digitalInOuts 1
whismanoid 68:ffee1e54d3fe 961 #endif
whismanoid 53:3d5a3d241a5e 962
whismanoid 53:3d5a3d241a5e 963 // uncrustify-0.66.1 *INDENT-OFF*
whismanoid 53:3d5a3d241a5e 964 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 965 // Declare the AnalogIn driver
whismanoid 53:3d5a3d241a5e 966 // Optional analogIn support. If there is only one it should be analogIn1.
whismanoid 53:3d5a3d241a5e 967 // A) analog input
whismanoid 53:3d5a3d241a5e 968 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 969 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 970 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 971 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 972 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 973 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 974 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 975 #define HAS_analogIn6 1
whismanoid 53:3d5a3d241a5e 976 #define HAS_analogIn7 1
whismanoid 53:3d5a3d241a5e 977 #define HAS_analogIn8 1
whismanoid 53:3d5a3d241a5e 978 #define HAS_analogIn9 1
whismanoid 53:3d5a3d241a5e 979 // #define HAS_analogIn10 0
whismanoid 53:3d5a3d241a5e 980 // #define HAS_analogIn11 0
whismanoid 53:3d5a3d241a5e 981 // #define HAS_analogIn12 0
whismanoid 53:3d5a3d241a5e 982 // #define HAS_analogIn13 0
whismanoid 53:3d5a3d241a5e 983 // #define HAS_analogIn14 0
whismanoid 53:3d5a3d241a5e 984 // #define HAS_analogIn15 0
whismanoid 53:3d5a3d241a5e 985 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 986 AnalogIn analogIn0(AIN_0); // TARGET_MAX32630 J1.5 AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 987 #endif
whismanoid 53:3d5a3d241a5e 988 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 989 AnalogIn analogIn1(AIN_1); // TARGET_MAX32630 J1.6 AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 990 #endif
whismanoid 53:3d5a3d241a5e 991 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 992 AnalogIn analogIn2(AIN_2); // TARGET_MAX32630 J1.7 AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 993 #endif
whismanoid 53:3d5a3d241a5e 994 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 995 AnalogIn analogIn3(AIN_3); // TARGET_MAX32630 J1.8 AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 996 #endif
whismanoid 53:3d5a3d241a5e 997 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 998 AnalogIn analogIn4(AIN_4); // TARGET_MAX32630 J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 999 #endif
whismanoid 53:3d5a3d241a5e 1000 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1001 AnalogIn analogIn5(AIN_5); // TARGET_MAX32630 J1.6 AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1002 #endif
whismanoid 53:3d5a3d241a5e 1003 #if HAS_analogIn6
whismanoid 53:3d5a3d241a5e 1004 AnalogIn analogIn6(AIN_6); // TARGET_MAX32630 AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1005 #endif
whismanoid 53:3d5a3d241a5e 1006 #if HAS_analogIn7
whismanoid 53:3d5a3d241a5e 1007 AnalogIn analogIn7(AIN_7); // TARGET_MAX32630 AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1008 #endif
whismanoid 53:3d5a3d241a5e 1009 #if HAS_analogIn8
whismanoid 53:3d5a3d241a5e 1010 AnalogIn analogIn8(AIN_8); // TARGET_MAX32630 AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1011 #endif
whismanoid 53:3d5a3d241a5e 1012 #if HAS_analogIn9
whismanoid 53:3d5a3d241a5e 1013 AnalogIn analogIn9(AIN_9); // TARGET_MAX32630 AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 1014 #endif
whismanoid 53:3d5a3d241a5e 1015 #if HAS_analogIn10
whismanoid 53:3d5a3d241a5e 1016 AnalogIn analogIn10(____); // TARGET_MAX32630 AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 1017 #endif
whismanoid 53:3d5a3d241a5e 1018 #if HAS_analogIn11
whismanoid 53:3d5a3d241a5e 1019 AnalogIn analogIn11(____); // TARGET_MAX32630 AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1020 #endif
whismanoid 53:3d5a3d241a5e 1021 #if HAS_analogIn12
whismanoid 53:3d5a3d241a5e 1022 AnalogIn analogIn12(____); // TARGET_MAX32630 AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1023 #endif
whismanoid 53:3d5a3d241a5e 1024 #if HAS_analogIn13
whismanoid 53:3d5a3d241a5e 1025 AnalogIn analogIn13(____);
whismanoid 53:3d5a3d241a5e 1026 #endif
whismanoid 53:3d5a3d241a5e 1027 #if HAS_analogIn14
whismanoid 53:3d5a3d241a5e 1028 AnalogIn analogIn14(____);
whismanoid 53:3d5a3d241a5e 1029 #endif
whismanoid 53:3d5a3d241a5e 1030 #if HAS_analogIn15
whismanoid 53:3d5a3d241a5e 1031 AnalogIn analogIn15(____);
whismanoid 53:3d5a3d241a5e 1032 #endif
whismanoid 53:3d5a3d241a5e 1033 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1034 #elif defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 1035 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1036 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1037 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1038 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1039 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1040 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1041 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1042 AnalogIn analogIn0(AIN_0); // TARGET_MAX32630 J1.5 AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1043 #endif
whismanoid 53:3d5a3d241a5e 1044 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1045 AnalogIn analogIn1(AIN_1); // TARGET_MAX32630 J1.6 AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1046 #endif
whismanoid 53:3d5a3d241a5e 1047 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1048 AnalogIn analogIn2(AIN_2); // TARGET_MAX32630 J1.7 AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1049 #endif
whismanoid 53:3d5a3d241a5e 1050 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1051 AnalogIn analogIn3(AIN_3); // TARGET_MAX32630 J1.8 AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1052 #endif
whismanoid 53:3d5a3d241a5e 1053 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1054 AnalogIn analogIn4(AIN_4); // TARGET_MAX32630 J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1055 #endif
whismanoid 53:3d5a3d241a5e 1056 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1057 AnalogIn analogIn5(AIN_5); // TARGET_MAX32630 J1.6 AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1058 #endif
whismanoid 53:3d5a3d241a5e 1059 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1060 #elif defined(TARGET_MAX32620FTHR)
whismanoid 53:3d5a3d241a5e 1061 #warning "TARGET_MAX32620FTHR not previously tested; need to verify analogIn0..."
whismanoid 53:3d5a3d241a5e 1062 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1063 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1064 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1065 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1066 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1067 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1068 #define HAS_analogIn6 1
whismanoid 53:3d5a3d241a5e 1069 #define HAS_analogIn7 1
whismanoid 53:3d5a3d241a5e 1070 #define HAS_analogIn8 1
whismanoid 53:3d5a3d241a5e 1071 #define HAS_analogIn9 1
whismanoid 53:3d5a3d241a5e 1072 // #define HAS_analogIn10 0
whismanoid 53:3d5a3d241a5e 1073 // #define HAS_analogIn11 0
whismanoid 53:3d5a3d241a5e 1074 // #define HAS_analogIn12 0
whismanoid 53:3d5a3d241a5e 1075 // #define HAS_analogIn13 0
whismanoid 53:3d5a3d241a5e 1076 // #define HAS_analogIn14 0
whismanoid 53:3d5a3d241a5e 1077 // #define HAS_analogIn15 0
whismanoid 53:3d5a3d241a5e 1078 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1079 AnalogIn analogIn0(AIN_0); // TARGET_MAX32620FTHR J1.5 AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1080 #endif
whismanoid 53:3d5a3d241a5e 1081 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1082 AnalogIn analogIn1(AIN_1); // TARGET_MAX32620FTHR J1.6 AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1083 #endif
whismanoid 53:3d5a3d241a5e 1084 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1085 AnalogIn analogIn2(AIN_2); // TARGET_MAX32620FTHR J1.7 AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1086 #endif
whismanoid 53:3d5a3d241a5e 1087 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1088 AnalogIn analogIn3(AIN_3); // TARGET_MAX32620FTHR J1.8 AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1089 #endif
whismanoid 53:3d5a3d241a5e 1090 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1091 AnalogIn analogIn4(AIN_4); // TARGET_MAX32620FTHR J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1092 #endif
whismanoid 53:3d5a3d241a5e 1093 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1094 AnalogIn analogIn5(AIN_5); // TARGET_MAX32620FTHR J1.6 AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1095 #endif
whismanoid 53:3d5a3d241a5e 1096 #if HAS_analogIn6
whismanoid 53:3d5a3d241a5e 1097 AnalogIn analogIn6(AIN_6); // TARGET_MAX32620FTHR AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1098 #endif
whismanoid 53:3d5a3d241a5e 1099 #if HAS_analogIn7
whismanoid 53:3d5a3d241a5e 1100 AnalogIn analogIn7(AIN_7); // TARGET_MAX32620FTHR AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1101 #endif
whismanoid 53:3d5a3d241a5e 1102 #if HAS_analogIn8
whismanoid 53:3d5a3d241a5e 1103 AnalogIn analogIn8(AIN_8); // TARGET_MAX32620FTHR AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1104 #endif
whismanoid 53:3d5a3d241a5e 1105 #if HAS_analogIn9
whismanoid 53:3d5a3d241a5e 1106 AnalogIn analogIn9(AIN_9); // TARGET_MAX32620FTHR AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 1107 #endif
whismanoid 53:3d5a3d241a5e 1108 #if HAS_analogIn10
whismanoid 53:3d5a3d241a5e 1109 AnalogIn analogIn10(____); // TARGET_MAX32620FTHR AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 1110 #endif
whismanoid 53:3d5a3d241a5e 1111 #if HAS_analogIn11
whismanoid 53:3d5a3d241a5e 1112 AnalogIn analogIn11(____); // TARGET_MAX32620FTHR AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1113 #endif
whismanoid 53:3d5a3d241a5e 1114 #if HAS_analogIn12
whismanoid 53:3d5a3d241a5e 1115 AnalogIn analogIn12(____); // TARGET_MAX32620FTHR AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1116 #endif
whismanoid 53:3d5a3d241a5e 1117 #if HAS_analogIn13
whismanoid 53:3d5a3d241a5e 1118 AnalogIn analogIn13(____);
whismanoid 53:3d5a3d241a5e 1119 #endif
whismanoid 53:3d5a3d241a5e 1120 #if HAS_analogIn14
whismanoid 53:3d5a3d241a5e 1121 AnalogIn analogIn14(____);
whismanoid 53:3d5a3d241a5e 1122 #endif
whismanoid 53:3d5a3d241a5e 1123 #if HAS_analogIn15
whismanoid 53:3d5a3d241a5e 1124 AnalogIn analogIn15(____);
whismanoid 53:3d5a3d241a5e 1125 #endif
whismanoid 53:3d5a3d241a5e 1126 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1127 #elif defined(TARGET_MAX32625PICO)
whismanoid 53:3d5a3d241a5e 1128 #warning "TARGET_MAX32625PICO not previously tested; need to verify analogIn0..."
whismanoid 53:3d5a3d241a5e 1129 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1130 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1131 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1132 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1133 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1134 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1135 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1136 AnalogIn analogIn0(AIN_0); // TARGET_MAX32630 J1.5 AIN_0 = AIN0 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1137 #endif
whismanoid 53:3d5a3d241a5e 1138 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1139 AnalogIn analogIn1(AIN_1); // TARGET_MAX32630 J1.6 AIN_1 = AIN1 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1140 #endif
whismanoid 53:3d5a3d241a5e 1141 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1142 AnalogIn analogIn2(AIN_2); // TARGET_MAX32630 J1.7 AIN_2 = AIN2 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1143 #endif
whismanoid 53:3d5a3d241a5e 1144 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1145 AnalogIn analogIn3(AIN_3); // TARGET_MAX32630 J1.8 AIN_3 = AIN3 pin fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1146 #endif
whismanoid 53:3d5a3d241a5e 1147 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1148 AnalogIn analogIn4(AIN_4); // TARGET_MAX32630 J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1149 #endif
whismanoid 53:3d5a3d241a5e 1150 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1151 AnalogIn analogIn5(AIN_5); // TARGET_MAX32630 J1.6 AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1152 #endif
whismanoid 53:3d5a3d241a5e 1153 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1154 #elif defined(TARGET_MAX32600)
whismanoid 53:3d5a3d241a5e 1155 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1156 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1157 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1158 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1159 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1160 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1161 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1162 AnalogIn analogIn0(A0);
whismanoid 53:3d5a3d241a5e 1163 #endif
whismanoid 53:3d5a3d241a5e 1164 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1165 AnalogIn analogIn1(A1);
whismanoid 53:3d5a3d241a5e 1166 #endif
whismanoid 53:3d5a3d241a5e 1167 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1168 AnalogIn analogIn2(A2);
whismanoid 53:3d5a3d241a5e 1169 #endif
whismanoid 53:3d5a3d241a5e 1170 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1171 AnalogIn analogIn3(A3);
whismanoid 53:3d5a3d241a5e 1172 #endif
whismanoid 53:3d5a3d241a5e 1173 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1174 AnalogIn analogIn4(A4);
whismanoid 53:3d5a3d241a5e 1175 #endif
whismanoid 53:3d5a3d241a5e 1176 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1177 AnalogIn analogIn5(A5);
whismanoid 53:3d5a3d241a5e 1178 #endif
whismanoid 53:3d5a3d241a5e 1179 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1180 #elif defined(TARGET_NUCLEO_F446RE)
whismanoid 53:3d5a3d241a5e 1181 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1182 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1183 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1184 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1185 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1186 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1187 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1188 AnalogIn analogIn0(A0);
whismanoid 53:3d5a3d241a5e 1189 #endif
whismanoid 53:3d5a3d241a5e 1190 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1191 AnalogIn analogIn1(A1);
whismanoid 53:3d5a3d241a5e 1192 #endif
whismanoid 53:3d5a3d241a5e 1193 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1194 AnalogIn analogIn2(A2);
whismanoid 53:3d5a3d241a5e 1195 #endif
whismanoid 53:3d5a3d241a5e 1196 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1197 AnalogIn analogIn3(A3);
whismanoid 53:3d5a3d241a5e 1198 #endif
whismanoid 53:3d5a3d241a5e 1199 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1200 AnalogIn analogIn4(A4);
whismanoid 53:3d5a3d241a5e 1201 #endif
whismanoid 53:3d5a3d241a5e 1202 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1203 AnalogIn analogIn5(A5);
whismanoid 53:3d5a3d241a5e 1204 #endif
whismanoid 53:3d5a3d241a5e 1205 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1206 #elif defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 1207 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1208 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1209 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1210 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1211 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1212 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1213 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1214 AnalogIn analogIn0(A0);
whismanoid 53:3d5a3d241a5e 1215 #endif
whismanoid 53:3d5a3d241a5e 1216 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1217 AnalogIn analogIn1(A1);
whismanoid 53:3d5a3d241a5e 1218 #endif
whismanoid 53:3d5a3d241a5e 1219 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1220 AnalogIn analogIn2(A2);
whismanoid 53:3d5a3d241a5e 1221 #endif
whismanoid 53:3d5a3d241a5e 1222 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1223 AnalogIn analogIn3(A3);
whismanoid 53:3d5a3d241a5e 1224 #endif
whismanoid 53:3d5a3d241a5e 1225 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1226 AnalogIn analogIn4(A4);
whismanoid 53:3d5a3d241a5e 1227 #endif
whismanoid 53:3d5a3d241a5e 1228 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1229 AnalogIn analogIn5(A5);
whismanoid 53:3d5a3d241a5e 1230 #endif
whismanoid 53:3d5a3d241a5e 1231 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1232 // TODO1: TARGET=MAX32625MBED ARM Cortex-M4F 96MHz 512kB Flash 160kB SRAM
whismanoid 53:3d5a3d241a5e 1233 #elif defined(TARGET_LPC1768)
whismanoid 53:3d5a3d241a5e 1234 #define HAS_analogIn0 1
whismanoid 53:3d5a3d241a5e 1235 #define HAS_analogIn1 1
whismanoid 53:3d5a3d241a5e 1236 #define HAS_analogIn2 1
whismanoid 53:3d5a3d241a5e 1237 #define HAS_analogIn3 1
whismanoid 53:3d5a3d241a5e 1238 #define HAS_analogIn4 1
whismanoid 53:3d5a3d241a5e 1239 #define HAS_analogIn5 1
whismanoid 53:3d5a3d241a5e 1240 // #define HAS_analogIn6 1
whismanoid 53:3d5a3d241a5e 1241 // #define HAS_analogIn7 1
whismanoid 53:3d5a3d241a5e 1242 // #define HAS_analogIn8 1
whismanoid 53:3d5a3d241a5e 1243 // #define HAS_analogIn9 1
whismanoid 53:3d5a3d241a5e 1244 // #define HAS_analogIn10 1
whismanoid 53:3d5a3d241a5e 1245 // #define HAS_analogIn11 1
whismanoid 53:3d5a3d241a5e 1246 // #define HAS_analogIn12 1
whismanoid 53:3d5a3d241a5e 1247 // #define HAS_analogIn13 1
whismanoid 53:3d5a3d241a5e 1248 // #define HAS_analogIn14 1
whismanoid 53:3d5a3d241a5e 1249 // #define HAS_analogIn15 1
whismanoid 53:3d5a3d241a5e 1250 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1251 AnalogIn analogIn0(p15); // TARGET_LPC1768 P0.23/AD0.0/I2SRX_CLK/CAP3.0
whismanoid 53:3d5a3d241a5e 1252 #endif
whismanoid 53:3d5a3d241a5e 1253 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1254 AnalogIn analogIn1(p16); // TARGET_LPC1768 P0.24/AD0.1/I2SRX_WS/CAP3.1
whismanoid 53:3d5a3d241a5e 1255 #endif
whismanoid 53:3d5a3d241a5e 1256 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1257 AnalogIn analogIn2(p17); // TARGET_LPC1768 P0.25/AD0.2/I2SRX_SDA/TXD3
whismanoid 53:3d5a3d241a5e 1258 #endif
whismanoid 53:3d5a3d241a5e 1259 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1260 AnalogIn analogIn3(p18); // TARGET_LPC1768 P0.26/AD0.3/AOUT/RXD3
whismanoid 53:3d5a3d241a5e 1261 #endif
whismanoid 53:3d5a3d241a5e 1262 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1263 AnalogIn analogIn4(p19); // TARGET_LPC1768 P1.30/VBUS/AD0.4
whismanoid 53:3d5a3d241a5e 1264 #endif
whismanoid 53:3d5a3d241a5e 1265 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1266 AnalogIn analogIn5(p20); // TARGET_LPC1768 P1.31/SCK1/AD0.5
whismanoid 53:3d5a3d241a5e 1267 #endif
whismanoid 53:3d5a3d241a5e 1268 #if HAS_analogIn6
whismanoid 53:3d5a3d241a5e 1269 AnalogIn analogIn6(____);
whismanoid 53:3d5a3d241a5e 1270 #endif
whismanoid 53:3d5a3d241a5e 1271 #if HAS_analogIn7
whismanoid 53:3d5a3d241a5e 1272 AnalogIn analogIn7(____);
whismanoid 53:3d5a3d241a5e 1273 #endif
whismanoid 53:3d5a3d241a5e 1274 #if HAS_analogIn8
whismanoid 53:3d5a3d241a5e 1275 AnalogIn analogIn8(____);
whismanoid 53:3d5a3d241a5e 1276 #endif
whismanoid 53:3d5a3d241a5e 1277 #if HAS_analogIn9
whismanoid 53:3d5a3d241a5e 1278 AnalogIn analogIn9(____);
whismanoid 53:3d5a3d241a5e 1279 #endif
whismanoid 53:3d5a3d241a5e 1280 #if HAS_analogIn10
whismanoid 53:3d5a3d241a5e 1281 AnalogIn analogIn10(____);
whismanoid 53:3d5a3d241a5e 1282 #endif
whismanoid 53:3d5a3d241a5e 1283 #if HAS_analogIn11
whismanoid 53:3d5a3d241a5e 1284 AnalogIn analogIn11(____);
whismanoid 53:3d5a3d241a5e 1285 #endif
whismanoid 53:3d5a3d241a5e 1286 #if HAS_analogIn12
whismanoid 53:3d5a3d241a5e 1287 AnalogIn analogIn12(____);
whismanoid 53:3d5a3d241a5e 1288 #endif
whismanoid 53:3d5a3d241a5e 1289 #if HAS_analogIn13
whismanoid 53:3d5a3d241a5e 1290 AnalogIn analogIn13(____);
whismanoid 53:3d5a3d241a5e 1291 #endif
whismanoid 53:3d5a3d241a5e 1292 #if HAS_analogIn14
whismanoid 53:3d5a3d241a5e 1293 AnalogIn analogIn14(____);
whismanoid 53:3d5a3d241a5e 1294 #endif
whismanoid 53:3d5a3d241a5e 1295 #if HAS_analogIn15
whismanoid 53:3d5a3d241a5e 1296 AnalogIn analogIn15(____);
whismanoid 53:3d5a3d241a5e 1297 #endif
whismanoid 53:3d5a3d241a5e 1298 #else
whismanoid 53:3d5a3d241a5e 1299 // unknown target
whismanoid 53:3d5a3d241a5e 1300 #endif
whismanoid 53:3d5a3d241a5e 1301 // uncrustify-0.66.1 *INDENT-ON*
whismanoid 53:3d5a3d241a5e 1302 #if HAS_analogIn0 || HAS_analogIn1 \
whismanoid 53:3d5a3d241a5e 1303 || HAS_analogIn2 || HAS_analogIn3 \
whismanoid 53:3d5a3d241a5e 1304 || HAS_analogIn4 || HAS_analogIn5 \
whismanoid 53:3d5a3d241a5e 1305 || HAS_analogIn6 || HAS_analogIn7 \
whismanoid 53:3d5a3d241a5e 1306 || HAS_analogIn8 || HAS_analogIn9 \
whismanoid 53:3d5a3d241a5e 1307 || HAS_analogIn10 || HAS_analogIn11 \
whismanoid 53:3d5a3d241a5e 1308 || HAS_analogIn12 || HAS_analogIn13 \
whismanoid 53:3d5a3d241a5e 1309 || HAS_analogIn14 || HAS_analogIn15
whismanoid 53:3d5a3d241a5e 1310 #define HAS_analogIns 1
whismanoid 53:3d5a3d241a5e 1311 #endif
whismanoid 53:3d5a3d241a5e 1312
whismanoid 68:ffee1e54d3fe 1313 // DigitalInOut pin resource: print the pin index names to serial
whismanoid 68:ffee1e54d3fe 1314 #if HAS_digitalInOuts
whismanoid 68:ffee1e54d3fe 1315 void list_digitalInOutPins(Stream& serialStream)
whismanoid 68:ffee1e54d3fe 1316 {
whismanoid 68:ffee1e54d3fe 1317 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 1318 serialStream.printf(" 0");
whismanoid 68:ffee1e54d3fe 1319 #endif
whismanoid 68:ffee1e54d3fe 1320 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 1321 serialStream.printf(" 1");
whismanoid 68:ffee1e54d3fe 1322 #endif
whismanoid 68:ffee1e54d3fe 1323 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 1324 serialStream.printf(" 2");
whismanoid 68:ffee1e54d3fe 1325 #endif
whismanoid 68:ffee1e54d3fe 1326 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 1327 serialStream.printf(" 3");
whismanoid 68:ffee1e54d3fe 1328 #endif
whismanoid 68:ffee1e54d3fe 1329 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 1330 serialStream.printf(" 4");
whismanoid 68:ffee1e54d3fe 1331 #endif
whismanoid 68:ffee1e54d3fe 1332 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 1333 serialStream.printf(" 5");
whismanoid 68:ffee1e54d3fe 1334 #endif
whismanoid 68:ffee1e54d3fe 1335 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 1336 serialStream.printf(" 6");
whismanoid 68:ffee1e54d3fe 1337 #endif
whismanoid 68:ffee1e54d3fe 1338 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 1339 serialStream.printf(" 7");
whismanoid 68:ffee1e54d3fe 1340 #endif
whismanoid 68:ffee1e54d3fe 1341 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 1342 serialStream.printf(" 8");
whismanoid 68:ffee1e54d3fe 1343 #endif
whismanoid 68:ffee1e54d3fe 1344 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 1345 serialStream.printf(" 9");
whismanoid 68:ffee1e54d3fe 1346 #endif
whismanoid 68:ffee1e54d3fe 1347 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 1348 serialStream.printf(" 10");
whismanoid 68:ffee1e54d3fe 1349 #endif
whismanoid 68:ffee1e54d3fe 1350 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 1351 serialStream.printf(" 11");
whismanoid 68:ffee1e54d3fe 1352 #endif
whismanoid 68:ffee1e54d3fe 1353 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 1354 serialStream.printf(" 12");
whismanoid 68:ffee1e54d3fe 1355 #endif
whismanoid 68:ffee1e54d3fe 1356 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 1357 serialStream.printf(" 13");
whismanoid 68:ffee1e54d3fe 1358 #endif
whismanoid 68:ffee1e54d3fe 1359 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 1360 serialStream.printf(" 14");
whismanoid 68:ffee1e54d3fe 1361 #endif
whismanoid 68:ffee1e54d3fe 1362 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 1363 serialStream.printf(" 15");
whismanoid 68:ffee1e54d3fe 1364 #endif
whismanoid 68:ffee1e54d3fe 1365 #if HAS_digitalInOut16
whismanoid 68:ffee1e54d3fe 1366 serialStream.printf(" 16");
whismanoid 68:ffee1e54d3fe 1367 #endif
whismanoid 68:ffee1e54d3fe 1368 #if HAS_digitalInOut17
whismanoid 68:ffee1e54d3fe 1369 serialStream.printf(" 17");
whismanoid 68:ffee1e54d3fe 1370 #endif
whismanoid 68:ffee1e54d3fe 1371 }
whismanoid 68:ffee1e54d3fe 1372 #endif
whismanoid 68:ffee1e54d3fe 1373
whismanoid 68:ffee1e54d3fe 1374
whismanoid 68:ffee1e54d3fe 1375 // DigitalInOut pin resource: search index
whismanoid 68:ffee1e54d3fe 1376 #if HAS_digitalInOuts
whismanoid 68:ffee1e54d3fe 1377 DigitalInOut& find_digitalInOutPin(int cPinIndex)
whismanoid 68:ffee1e54d3fe 1378 {
whismanoid 68:ffee1e54d3fe 1379 switch (cPinIndex)
whismanoid 68:ffee1e54d3fe 1380 {
whismanoid 68:ffee1e54d3fe 1381 default: // default to the first defined digitalInOut pin
whismanoid 68:ffee1e54d3fe 1382 #if HAS_digitalInOut0
whismanoid 68:ffee1e54d3fe 1383 case '0': case 0x00: return digitalInOut0;
whismanoid 68:ffee1e54d3fe 1384 #endif
whismanoid 68:ffee1e54d3fe 1385 #if HAS_digitalInOut1
whismanoid 68:ffee1e54d3fe 1386 case '1': case 0x01: return digitalInOut1;
whismanoid 68:ffee1e54d3fe 1387 #endif
whismanoid 68:ffee1e54d3fe 1388 #if HAS_digitalInOut2
whismanoid 68:ffee1e54d3fe 1389 case '2': case 0x02: return digitalInOut2;
whismanoid 68:ffee1e54d3fe 1390 #endif
whismanoid 68:ffee1e54d3fe 1391 #if HAS_digitalInOut3
whismanoid 68:ffee1e54d3fe 1392 case '3': case 0x03: return digitalInOut3;
whismanoid 68:ffee1e54d3fe 1393 #endif
whismanoid 68:ffee1e54d3fe 1394 #if HAS_digitalInOut4
whismanoid 68:ffee1e54d3fe 1395 case '4': case 0x04: return digitalInOut4;
whismanoid 68:ffee1e54d3fe 1396 #endif
whismanoid 68:ffee1e54d3fe 1397 #if HAS_digitalInOut5
whismanoid 68:ffee1e54d3fe 1398 case '5': case 0x05: return digitalInOut5;
whismanoid 68:ffee1e54d3fe 1399 #endif
whismanoid 68:ffee1e54d3fe 1400 #if HAS_digitalInOut6
whismanoid 68:ffee1e54d3fe 1401 case '6': case 0x06: return digitalInOut6;
whismanoid 68:ffee1e54d3fe 1402 #endif
whismanoid 68:ffee1e54d3fe 1403 #if HAS_digitalInOut7
whismanoid 68:ffee1e54d3fe 1404 case '7': case 0x07: return digitalInOut7;
whismanoid 68:ffee1e54d3fe 1405 #endif
whismanoid 68:ffee1e54d3fe 1406 #if HAS_digitalInOut8
whismanoid 68:ffee1e54d3fe 1407 case '8': case 0x08: return digitalInOut8;
whismanoid 68:ffee1e54d3fe 1408 #endif
whismanoid 68:ffee1e54d3fe 1409 #if HAS_digitalInOut9
whismanoid 68:ffee1e54d3fe 1410 case '9': case 0x09: return digitalInOut9;
whismanoid 68:ffee1e54d3fe 1411 #endif
whismanoid 68:ffee1e54d3fe 1412 #if HAS_digitalInOut10
whismanoid 68:ffee1e54d3fe 1413 case 'a': case 0x0a: return digitalInOut10;
whismanoid 68:ffee1e54d3fe 1414 #endif
whismanoid 68:ffee1e54d3fe 1415 #if HAS_digitalInOut11
whismanoid 68:ffee1e54d3fe 1416 case 'b': case 0x0b: return digitalInOut11;
whismanoid 68:ffee1e54d3fe 1417 #endif
whismanoid 68:ffee1e54d3fe 1418 #if HAS_digitalInOut12
whismanoid 68:ffee1e54d3fe 1419 case 'c': case 0x0c: return digitalInOut12;
whismanoid 68:ffee1e54d3fe 1420 #endif
whismanoid 68:ffee1e54d3fe 1421 #if HAS_digitalInOut13
whismanoid 68:ffee1e54d3fe 1422 case 'd': case 0x0d: return digitalInOut13;
whismanoid 68:ffee1e54d3fe 1423 #endif
whismanoid 68:ffee1e54d3fe 1424 #if HAS_digitalInOut14
whismanoid 68:ffee1e54d3fe 1425 case 'e': case 0x0e: return digitalInOut14;
whismanoid 68:ffee1e54d3fe 1426 #endif
whismanoid 68:ffee1e54d3fe 1427 #if HAS_digitalInOut15
whismanoid 68:ffee1e54d3fe 1428 case 'f': case 0x0f: return digitalInOut15;
whismanoid 68:ffee1e54d3fe 1429 #endif
whismanoid 68:ffee1e54d3fe 1430 #if HAS_digitalInOut16
whismanoid 68:ffee1e54d3fe 1431 case 'g': case 0x10: return digitalInOut16;
whismanoid 68:ffee1e54d3fe 1432 #endif
whismanoid 68:ffee1e54d3fe 1433 #if HAS_digitalInOut17
whismanoid 68:ffee1e54d3fe 1434 case 'h': case 0x11: return digitalInOut17;
whismanoid 68:ffee1e54d3fe 1435 #endif
whismanoid 68:ffee1e54d3fe 1436 }
whismanoid 68:ffee1e54d3fe 1437 }
whismanoid 68:ffee1e54d3fe 1438 #endif
whismanoid 53:3d5a3d241a5e 1439
whismanoid 53:3d5a3d241a5e 1440
whismanoid 53:3d5a3d241a5e 1441 // AnalogIn pin resource: search index
whismanoid 53:3d5a3d241a5e 1442 #if HAS_analogIns
whismanoid 53:3d5a3d241a5e 1443 AnalogIn& find_analogInPin(int cPinIndex)
whismanoid 53:3d5a3d241a5e 1444 {
whismanoid 53:3d5a3d241a5e 1445 switch (cPinIndex)
whismanoid 53:3d5a3d241a5e 1446 {
whismanoid 53:3d5a3d241a5e 1447 default: // default to the first defined analogIn pin
whismanoid 53:3d5a3d241a5e 1448 #if HAS_analogIn0
whismanoid 53:3d5a3d241a5e 1449 case '0': case 0x00: return analogIn0;
whismanoid 53:3d5a3d241a5e 1450 #endif
whismanoid 53:3d5a3d241a5e 1451 #if HAS_analogIn1
whismanoid 53:3d5a3d241a5e 1452 case '1': case 0x01: return analogIn1;
whismanoid 53:3d5a3d241a5e 1453 #endif
whismanoid 53:3d5a3d241a5e 1454 #if HAS_analogIn2
whismanoid 53:3d5a3d241a5e 1455 case '2': case 0x02: return analogIn2;
whismanoid 53:3d5a3d241a5e 1456 #endif
whismanoid 53:3d5a3d241a5e 1457 #if HAS_analogIn3
whismanoid 53:3d5a3d241a5e 1458 case '3': case 0x03: return analogIn3;
whismanoid 53:3d5a3d241a5e 1459 #endif
whismanoid 53:3d5a3d241a5e 1460 #if HAS_analogIn4
whismanoid 53:3d5a3d241a5e 1461 case '4': case 0x04: return analogIn4;
whismanoid 53:3d5a3d241a5e 1462 #endif
whismanoid 53:3d5a3d241a5e 1463 #if HAS_analogIn5
whismanoid 53:3d5a3d241a5e 1464 case '5': case 0x05: return analogIn5;
whismanoid 53:3d5a3d241a5e 1465 #endif
whismanoid 53:3d5a3d241a5e 1466 #if HAS_analogIn6
whismanoid 53:3d5a3d241a5e 1467 case '6': case 0x06: return analogIn6;
whismanoid 53:3d5a3d241a5e 1468 #endif
whismanoid 53:3d5a3d241a5e 1469 #if HAS_analogIn7
whismanoid 53:3d5a3d241a5e 1470 case '7': case 0x07: return analogIn7;
whismanoid 53:3d5a3d241a5e 1471 #endif
whismanoid 53:3d5a3d241a5e 1472 #if HAS_analogIn8
whismanoid 53:3d5a3d241a5e 1473 case '8': case 0x08: return analogIn8;
whismanoid 53:3d5a3d241a5e 1474 #endif
whismanoid 53:3d5a3d241a5e 1475 #if HAS_analogIn9
whismanoid 53:3d5a3d241a5e 1476 case '9': case 0x09: return analogIn9;
whismanoid 53:3d5a3d241a5e 1477 #endif
whismanoid 53:3d5a3d241a5e 1478 #if HAS_analogIn10
whismanoid 53:3d5a3d241a5e 1479 case 'a': case 0x0a: return analogIn10;
whismanoid 53:3d5a3d241a5e 1480 #endif
whismanoid 53:3d5a3d241a5e 1481 #if HAS_analogIn11
whismanoid 53:3d5a3d241a5e 1482 case 'b': case 0x0b: return analogIn11;
whismanoid 53:3d5a3d241a5e 1483 #endif
whismanoid 53:3d5a3d241a5e 1484 #if HAS_analogIn12
whismanoid 53:3d5a3d241a5e 1485 case 'c': case 0x0c: return analogIn12;
whismanoid 53:3d5a3d241a5e 1486 #endif
whismanoid 53:3d5a3d241a5e 1487 #if HAS_analogIn13
whismanoid 53:3d5a3d241a5e 1488 case 'd': case 0x0d: return analogIn13;
whismanoid 53:3d5a3d241a5e 1489 #endif
whismanoid 53:3d5a3d241a5e 1490 #if HAS_analogIn14
whismanoid 53:3d5a3d241a5e 1491 case 'e': case 0x0e: return analogIn14;
whismanoid 53:3d5a3d241a5e 1492 #endif
whismanoid 53:3d5a3d241a5e 1493 #if HAS_analogIn15
whismanoid 53:3d5a3d241a5e 1494 case 'f': case 0x0f: return analogIn15;
whismanoid 53:3d5a3d241a5e 1495 #endif
whismanoid 53:3d5a3d241a5e 1496 }
whismanoid 53:3d5a3d241a5e 1497 }
whismanoid 53:3d5a3d241a5e 1498 #endif
whismanoid 53:3d5a3d241a5e 1499
whismanoid 53:3d5a3d241a5e 1500 #if HAS_analogIns
whismanoid 53:3d5a3d241a5e 1501 const float analogInPin_fullScaleVoltage[] = {
whismanoid 53:3d5a3d241a5e 1502 # if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 1503 ADC_FULL_SCALE_VOLTAGE, // analogIn0
whismanoid 53:3d5a3d241a5e 1504 ADC_FULL_SCALE_VOLTAGE, // analogIn1
whismanoid 53:3d5a3d241a5e 1505 ADC_FULL_SCALE_VOLTAGE, // analogIn2
whismanoid 53:3d5a3d241a5e 1506 ADC_FULL_SCALE_VOLTAGE, // analogIn3
whismanoid 53:3d5a3d241a5e 1507 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1508 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1509 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn6 // AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1510 ADC_FULL_SCALE_VOLTAGE, // analogIn7 // AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1511 ADC_FULL_SCALE_VOLTAGE, // analogIn8 // AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1512 ADC_FULL_SCALE_VOLTAGE * 2.0f, // analogIn9 // AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 1513 ADC_FULL_SCALE_VOLTAGE, // analogIn10 // AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 1514 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn11 // AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1515 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn12 // AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1516 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1517 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1518 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1519 # elif defined(TARGET_MAX32620FTHR)
whismanoid 53:3d5a3d241a5e 1520 #warning "TARGET_MAX32620FTHR not previously tested; need to verify analogIn0..."
whismanoid 53:3d5a3d241a5e 1521 ADC_FULL_SCALE_VOLTAGE, // analogIn0
whismanoid 53:3d5a3d241a5e 1522 ADC_FULL_SCALE_VOLTAGE, // analogIn1
whismanoid 53:3d5a3d241a5e 1523 ADC_FULL_SCALE_VOLTAGE, // analogIn2
whismanoid 53:3d5a3d241a5e 1524 ADC_FULL_SCALE_VOLTAGE, // analogIn3
whismanoid 53:3d5a3d241a5e 1525 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1526 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1527 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn6 // AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1528 ADC_FULL_SCALE_VOLTAGE, // analogIn7 // AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1529 ADC_FULL_SCALE_VOLTAGE, // analogIn8 // AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1530 ADC_FULL_SCALE_VOLTAGE * 2.0f, // analogIn9 // AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 1531 ADC_FULL_SCALE_VOLTAGE, // analogIn10 // AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 1532 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn11 // AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1533 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn12 // AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1534 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1535 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1536 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1537 #elif defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 1538 ADC_FULL_SCALE_VOLTAGE * 1.0f, // analogIn0 // fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1539 ADC_FULL_SCALE_VOLTAGE * 1.0f, // analogIn1 // fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1540 ADC_FULL_SCALE_VOLTAGE * 1.0f, // analogIn2 // fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1541 ADC_FULL_SCALE_VOLTAGE * 1.0f, // analogIn3 // fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1542 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1543 ADC_FULL_SCALE_VOLTAGE * 5.0f, // analogIn4 // AIN_5 = AIN1 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 1544 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn6 // AIN_6 = VDDB / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1545 ADC_FULL_SCALE_VOLTAGE, // analogIn7 // AIN_7 = VDD18 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1546 ADC_FULL_SCALE_VOLTAGE, // analogIn8 // AIN_8 = VDD12 fullscale is 1.2V
whismanoid 53:3d5a3d241a5e 1547 ADC_FULL_SCALE_VOLTAGE * 2.0f, // analogIn9 // AIN_9 = VRTC / 2.0 fullscale is 2.4V
whismanoid 53:3d5a3d241a5e 1548 ADC_FULL_SCALE_VOLTAGE, // analogIn10 // AIN_10 = x undefined?
whismanoid 53:3d5a3d241a5e 1549 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn11 // AIN_11 = VDDIO / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1550 ADC_FULL_SCALE_VOLTAGE * 4.0f, // analogIn12 // AIN_12 = VDDIOH / 4.0 fullscale is 4.8V
whismanoid 53:3d5a3d241a5e 1551 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1552 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1553 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1554 #elif defined(TARGET_NUCLEO_F446RE)
whismanoid 53:3d5a3d241a5e 1555 ADC_FULL_SCALE_VOLTAGE, // analogIn0
whismanoid 53:3d5a3d241a5e 1556 ADC_FULL_SCALE_VOLTAGE, // analogIn1
whismanoid 53:3d5a3d241a5e 1557 ADC_FULL_SCALE_VOLTAGE, // analogIn2
whismanoid 53:3d5a3d241a5e 1558 ADC_FULL_SCALE_VOLTAGE, // analogIn3
whismanoid 53:3d5a3d241a5e 1559 ADC_FULL_SCALE_VOLTAGE, // analogIn4
whismanoid 53:3d5a3d241a5e 1560 ADC_FULL_SCALE_VOLTAGE, // analogIn5
whismanoid 53:3d5a3d241a5e 1561 ADC_FULL_SCALE_VOLTAGE, // analogIn6
whismanoid 53:3d5a3d241a5e 1562 ADC_FULL_SCALE_VOLTAGE, // analogIn7
whismanoid 53:3d5a3d241a5e 1563 ADC_FULL_SCALE_VOLTAGE, // analogIn8
whismanoid 53:3d5a3d241a5e 1564 ADC_FULL_SCALE_VOLTAGE, // analogIn9
whismanoid 53:3d5a3d241a5e 1565 ADC_FULL_SCALE_VOLTAGE, // analogIn10
whismanoid 53:3d5a3d241a5e 1566 ADC_FULL_SCALE_VOLTAGE, // analogIn11
whismanoid 53:3d5a3d241a5e 1567 ADC_FULL_SCALE_VOLTAGE, // analogIn12
whismanoid 53:3d5a3d241a5e 1568 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1569 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1570 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1571 #elif defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 1572 ADC_FULL_SCALE_VOLTAGE, // analogIn0
whismanoid 53:3d5a3d241a5e 1573 ADC_FULL_SCALE_VOLTAGE, // analogIn1
whismanoid 53:3d5a3d241a5e 1574 ADC_FULL_SCALE_VOLTAGE, // analogIn2
whismanoid 53:3d5a3d241a5e 1575 ADC_FULL_SCALE_VOLTAGE, // analogIn3
whismanoid 53:3d5a3d241a5e 1576 ADC_FULL_SCALE_VOLTAGE, // analogIn4
whismanoid 53:3d5a3d241a5e 1577 ADC_FULL_SCALE_VOLTAGE, // analogIn5
whismanoid 53:3d5a3d241a5e 1578 ADC_FULL_SCALE_VOLTAGE, // analogIn6
whismanoid 53:3d5a3d241a5e 1579 ADC_FULL_SCALE_VOLTAGE, // analogIn7
whismanoid 53:3d5a3d241a5e 1580 ADC_FULL_SCALE_VOLTAGE, // analogIn8
whismanoid 53:3d5a3d241a5e 1581 ADC_FULL_SCALE_VOLTAGE, // analogIn9
whismanoid 53:3d5a3d241a5e 1582 ADC_FULL_SCALE_VOLTAGE, // analogIn10
whismanoid 53:3d5a3d241a5e 1583 ADC_FULL_SCALE_VOLTAGE, // analogIn11
whismanoid 53:3d5a3d241a5e 1584 ADC_FULL_SCALE_VOLTAGE, // analogIn12
whismanoid 53:3d5a3d241a5e 1585 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1586 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1587 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1588 //#elif defined(TARGET_LPC1768)
whismanoid 53:3d5a3d241a5e 1589 #else
whismanoid 53:3d5a3d241a5e 1590 // unknown target
whismanoid 53:3d5a3d241a5e 1591 ADC_FULL_SCALE_VOLTAGE, // analogIn0
whismanoid 53:3d5a3d241a5e 1592 ADC_FULL_SCALE_VOLTAGE, // analogIn1
whismanoid 53:3d5a3d241a5e 1593 ADC_FULL_SCALE_VOLTAGE, // analogIn2
whismanoid 53:3d5a3d241a5e 1594 ADC_FULL_SCALE_VOLTAGE, // analogIn3
whismanoid 53:3d5a3d241a5e 1595 ADC_FULL_SCALE_VOLTAGE, // analogIn4
whismanoid 53:3d5a3d241a5e 1596 ADC_FULL_SCALE_VOLTAGE, // analogIn5
whismanoid 53:3d5a3d241a5e 1597 ADC_FULL_SCALE_VOLTAGE, // analogIn6
whismanoid 53:3d5a3d241a5e 1598 ADC_FULL_SCALE_VOLTAGE, // analogIn7
whismanoid 53:3d5a3d241a5e 1599 ADC_FULL_SCALE_VOLTAGE, // analogIn8
whismanoid 53:3d5a3d241a5e 1600 ADC_FULL_SCALE_VOLTAGE, // analogIn9
whismanoid 53:3d5a3d241a5e 1601 ADC_FULL_SCALE_VOLTAGE, // analogIn10
whismanoid 53:3d5a3d241a5e 1602 ADC_FULL_SCALE_VOLTAGE, // analogIn11
whismanoid 53:3d5a3d241a5e 1603 ADC_FULL_SCALE_VOLTAGE, // analogIn12
whismanoid 53:3d5a3d241a5e 1604 ADC_FULL_SCALE_VOLTAGE, // analogIn13
whismanoid 53:3d5a3d241a5e 1605 ADC_FULL_SCALE_VOLTAGE, // analogIn14
whismanoid 53:3d5a3d241a5e 1606 ADC_FULL_SCALE_VOLTAGE // analogIn15
whismanoid 53:3d5a3d241a5e 1607 # endif
whismanoid 53:3d5a3d241a5e 1608 };
whismanoid 53:3d5a3d241a5e 1609 #endif
whismanoid 53:3d5a3d241a5e 1610
whismanoid 53:3d5a3d241a5e 1611
whismanoid 53:3d5a3d241a5e 1612
whismanoid 53:3d5a3d241a5e 1613
whismanoid 53:3d5a3d241a5e 1614 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1615 // Option to use LEDs to show status
whismanoid 53:3d5a3d241a5e 1616 #ifndef USE_LEDS
whismanoid 53:3d5a3d241a5e 1617 #define USE_LEDS 1
whismanoid 53:3d5a3d241a5e 1618 #endif
whismanoid 53:3d5a3d241a5e 1619 #if USE_LEDS
whismanoid 53:3d5a3d241a5e 1620 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 1621 # define LED_ON 0
whismanoid 53:3d5a3d241a5e 1622 # define LED_OFF 1
whismanoid 53:3d5a3d241a5e 1623 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1624 #elif defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 1625 # define LED_ON 0
whismanoid 53:3d5a3d241a5e 1626 # define LED_OFF 1
whismanoid 53:3d5a3d241a5e 1627 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1628 // TODO1: TARGET=MAX32625MBED ARM Cortex-M4F 96MHz 512kB Flash 160kB SRAM
whismanoid 53:3d5a3d241a5e 1629 #elif defined(TARGET_LPC1768)
whismanoid 53:3d5a3d241a5e 1630 # define LED_ON 1
whismanoid 53:3d5a3d241a5e 1631 # define LED_OFF 0
whismanoid 53:3d5a3d241a5e 1632 #else // not defined(TARGET_LPC1768 etc.)
whismanoid 53:3d5a3d241a5e 1633 // USE_LEDS with some platform other than MAX32630, MAX32625MBED, LPC1768
whismanoid 53:3d5a3d241a5e 1634 // bugfix for MAX32600MBED LED blink pattern: check if LED_ON/LED_OFF already defined
whismanoid 53:3d5a3d241a5e 1635 # ifndef LED_ON
whismanoid 53:3d5a3d241a5e 1636 # define LED_ON 0
whismanoid 53:3d5a3d241a5e 1637 # endif
whismanoid 53:3d5a3d241a5e 1638 # ifndef LED_OFF
whismanoid 53:3d5a3d241a5e 1639 # define LED_OFF 1
whismanoid 53:3d5a3d241a5e 1640 # endif
whismanoid 53:3d5a3d241a5e 1641 //# define LED_ON 1
whismanoid 53:3d5a3d241a5e 1642 //# define LED_OFF 0
whismanoid 53:3d5a3d241a5e 1643 #endif // target definition
whismanoid 53:3d5a3d241a5e 1644 DigitalOut led1(LED1, LED_OFF); // MAX32630FTHR: LED1 = LED_RED
whismanoid 53:3d5a3d241a5e 1645 DigitalOut led2(LED2, LED_OFF); // MAX32630FTHR: LED2 = LED_GREEN
whismanoid 53:3d5a3d241a5e 1646 DigitalOut led3(LED3, LED_OFF); // MAX32630FTHR: LED3 = LED_BLUE
whismanoid 53:3d5a3d241a5e 1647 DigitalOut led4(LED4, LED_OFF);
whismanoid 53:3d5a3d241a5e 1648 #else // USE_LEDS=0
whismanoid 53:3d5a3d241a5e 1649 // issue #41 support Nucleo_F446RE
whismanoid 53:3d5a3d241a5e 1650 // there are no LED indicators on the board, LED1 interferes with SPI;
whismanoid 53:3d5a3d241a5e 1651 // but we still need placeholders led1 led2 led3 led4.
whismanoid 53:3d5a3d241a5e 1652 // Declare DigitalOut led1 led2 led3 led4 targeting safe pins.
whismanoid 53:3d5a3d241a5e 1653 // PinName NC means NOT_CONNECTED; DigitalOut::is_connected() returns false
whismanoid 53:3d5a3d241a5e 1654 # define LED_ON 0
whismanoid 53:3d5a3d241a5e 1655 # define LED_OFF 1
whismanoid 53:3d5a3d241a5e 1656 DigitalOut led1(NC, LED_OFF);
whismanoid 53:3d5a3d241a5e 1657 DigitalOut led2(NC, LED_OFF);
whismanoid 53:3d5a3d241a5e 1658 DigitalOut led3(NC, LED_OFF);
whismanoid 53:3d5a3d241a5e 1659 DigitalOut led4(NC, LED_OFF);
whismanoid 53:3d5a3d241a5e 1660 #endif // USE_LEDS
whismanoid 53:3d5a3d241a5e 1661 #define led1_RFailLED led1
whismanoid 53:3d5a3d241a5e 1662 #define led2_GPassLED led2
whismanoid 53:3d5a3d241a5e 1663 #define led3_BBusyLED led3
whismanoid 53:3d5a3d241a5e 1664
whismanoid 53:3d5a3d241a5e 1665 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1666
whismanoid 53:3d5a3d241a5e 1667
whismanoid 53:3d5a3d241a5e 1668 // example code board support
whismanoid 53:3d5a3d241a5e 1669 //MAX32630FTHR pegasus(MAX32630FTHR::VIO_3V3);
whismanoid 53:3d5a3d241a5e 1670 //DigitalOut rLED(LED1);
whismanoid 53:3d5a3d241a5e 1671 //DigitalOut gLED(LED2);
whismanoid 53:3d5a3d241a5e 1672 //DigitalOut bLED(LED3);
whismanoid 53:3d5a3d241a5e 1673 //
whismanoid 53:3d5a3d241a5e 1674 // Arduino "shield" connector port definitions (MAX32625MBED shown)
whismanoid 53:3d5a3d241a5e 1675 #if defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 1676 #define A0 AIN_0
whismanoid 53:3d5a3d241a5e 1677 #define A1 AIN_1
whismanoid 53:3d5a3d241a5e 1678 #define A2 AIN_2
whismanoid 53:3d5a3d241a5e 1679 #define A3 AIN_3
whismanoid 53:3d5a3d241a5e 1680 #define D0 P0_0
whismanoid 53:3d5a3d241a5e 1681 #define D1 P0_1
whismanoid 53:3d5a3d241a5e 1682 #define D2 P0_2
whismanoid 53:3d5a3d241a5e 1683 #define D3 P0_3
whismanoid 53:3d5a3d241a5e 1684 #define D4 P0_4
whismanoid 53:3d5a3d241a5e 1685 #define D5 P0_5
whismanoid 53:3d5a3d241a5e 1686 #define D6 P0_6
whismanoid 53:3d5a3d241a5e 1687 #define D7 P0_7
whismanoid 53:3d5a3d241a5e 1688 #define D8 P1_4
whismanoid 53:3d5a3d241a5e 1689 #define D9 P1_5
whismanoid 53:3d5a3d241a5e 1690 #define D10 P1_3
whismanoid 53:3d5a3d241a5e 1691 #define D11 P1_1
whismanoid 53:3d5a3d241a5e 1692 #define D12 P1_2
whismanoid 53:3d5a3d241a5e 1693 #define D13 P1_0
whismanoid 53:3d5a3d241a5e 1694 #endif
whismanoid 53:3d5a3d241a5e 1695
whismanoid 53:3d5a3d241a5e 1696 // example code declare SPI interface
whismanoid 53:3d5a3d241a5e 1697 #if defined(TARGET_MAX32625MBED)
whismanoid 68:ffee1e54d3fe 1698 // SPI spi(SPI1_MOSI, SPI1_MISO, SPI1_SCK); // mosi, miso, sclk spi1 TARGET_MAX32625MBED: P1_1 P1_2 P1_0 Arduino 10-pin header D11 D12 D13 D10
whismanoid 68:ffee1e54d3fe 1699 // DigitalOut spi_cs(SPI1_SS); // TARGET_MAX32625MBED: not connected
whismanoid 68:ffee1e54d3fe 1700 // Support SPI hardware-controlled CS instead of GPIO CS (mbed)
whismanoid 68:ffee1e54d3fe 1701 // 2020-02-19 MAX32625MBED GPIO CS envelope is 23us (11.4us before SCLK and 8.6us after SCLK).
whismanoid 68:ffee1e54d3fe 1702 // 2020-02-19 MAX32625MBED SPI controlled CS envelope 4 channel read reduced to 4.2us (24MHz SCLK), 1.2us setup, 0us hold.
whismanoid 68:ffee1e54d3fe 1703 // 2020-02-19 MAX11043 slowest EOC rate is 9us.
whismanoid 67:5b8a495dda1c 1704 SPI spi(SPI1_MOSI, SPI1_MISO, SPI1_SCK, SPI1_SS); // mosi, miso, sclk spi1 TARGET_MAX32625MBED: P1_1 P1_2 P1_0 Arduino 10-pin header D11 D12 D13 D10
whismanoid 67:5b8a495dda1c 1705 DigitalOut spi_cs(NC); // TARGET_MAX32625MBED: not connected
whismanoid 67:5b8a495dda1c 1706 // PinName NC means NOT_CONNECTED; DigitalOut::is_connected() returns false
whismanoid 68:ffee1e54d3fe 1707 // add m_cs_pin.is_connected() guard before writing m_cs_pin = m_SPI_cs_state
whismanoid 68:ffee1e54d3fe 1708 // to avoid runtime error Assertion failed: obj->name != (PinName)NC
whismanoid 53:3d5a3d241a5e 1709 #elif defined(TARGET_MAX32600MBED)
whismanoid 53:3d5a3d241a5e 1710 SPI spi(SPI2_MOSI, SPI2_MISO, SPI2_SCK); // mosi, miso, sclk spi1 TARGET_MAX32600MBED: Arduino 10-pin header D11 D12 D13
whismanoid 53:3d5a3d241a5e 1711 DigitalOut spi_cs(SPI2_SS); // Generic: Arduino 10-pin header D10
whismanoid 53:3d5a3d241a5e 1712 #else
whismanoid 53:3d5a3d241a5e 1713 SPI spi(D11, D12, D13); // mosi, miso, sclk spi1 TARGET_MAX32600MBED: Arduino 10-pin header D11 D12 D13
whismanoid 53:3d5a3d241a5e 1714 DigitalOut spi_cs(D10); // Generic: Arduino 10-pin header D10
whismanoid 53:3d5a3d241a5e 1715 #endif
whismanoid 52:607010f0c54e 1716
whismanoid 53:3d5a3d241a5e 1717 // example code declare GPIO interface pins
whismanoid 53:3d5a3d241a5e 1718 DigitalOut CONVRUN_pin(D9); // Digital Configuration Input to MAX11043 device
whismanoid 53:3d5a3d241a5e 1719 DigitalOut SHDN_pin(D8); // Digital Configuration Input to MAX11043 device
whismanoid 53:3d5a3d241a5e 1720 DigitalOut DACSTEP_pin(D7); // Digital Configuration Input to MAX11043 device
whismanoid 53:3d5a3d241a5e 1721 DigitalOut UP_slash_DWNb_pin(D6); // Digital Configuration Input to MAX11043 device
whismanoid 70:f44a577c9e59 1722 //--------------------------------------------------
whismanoid 70:f44a577c9e59 1723 // MAX11043 ADC Read operations must be synchronized to EOC End Of Conversion
whismanoid 70:f44a577c9e59 1724 // EOC# asserts low when new data is available.
whismanoid 70:f44a577c9e59 1725 // Initiate a data read prior to the next rising edge of EOC# or the result is overwritten.
whismanoid 70:f44a577c9e59 1726 #ifndef MAX11043_EOC_INTERRUPT_POLLING
whismanoid 83:29bb86cc45bc 1727 #define MAX11043_EOC_INTERRUPT_POLLING 1
whismanoid 70:f44a577c9e59 1728 #endif // MAX11043_EOC_INTERRUPT_POLLING
whismanoid 70:f44a577c9e59 1729 //--------------------------------------------------
whismanoid 70:f44a577c9e59 1730 // MAX11043 ADC Read operations must be synchronized to EOC End Of Conversion
whismanoid 70:f44a577c9e59 1731 // EOC# asserts low when new data is available.
whismanoid 70:f44a577c9e59 1732 // Initiate a data read prior to the next rising edge of EOC# or the result is overwritten.
whismanoid 70:f44a577c9e59 1733 #if MAX11043_EOC_INTERRUPT_POLLING
whismanoid 70:f44a577c9e59 1734 // MAX11043 EOC End Of Conversion input should be InterruptIn(PinName:EOC_pin).fall(onEOCFallingEdge);
whismanoid 70:f44a577c9e59 1735 // Workaround using DigitalIn(PinName:EOC_pin) polled to sync with EOC falling edge for ADC reads
whismanoid 70:f44a577c9e59 1736 // 2020-02-20 MAX11043_EOC_INTERRUPT_POLLING works on MAX32625MBED at 9us conversion rate, with 1us timing margin
whismanoid 53:3d5a3d241a5e 1737 DigitalIn EOC_pin(D2); // Digital Event Output from MAX11043 device
whismanoid 70:f44a577c9e59 1738 #else // MAX11043_EOC_INTERRUPT_POLLING
whismanoid 70:f44a577c9e59 1739 // MAX11043 EOC End Of Conversion input is InterruptIn(PinName:EOC_pin).fall(onEOCFallingEdge);
whismanoid 70:f44a577c9e59 1740 InterruptIn EOC_pin(D2); // Digital Event Output from MAX11043 device
whismanoid 70:f44a577c9e59 1741 #endif // MAX11043_EOC_INTERRUPT_POLLING
whismanoid 70:f44a577c9e59 1742 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1743 // example code declare device instance
whismanoid 53:3d5a3d241a5e 1744 MAX11043 g_MAX11043_device(spi, spi_cs, CONVRUN_pin, SHDN_pin, DACSTEP_pin, UP_slash_DWNb_pin, EOC_pin, MAX11043::MAX11043_IC);
whismanoid 53:3d5a3d241a5e 1745
whismanoid 53:3d5a3d241a5e 1746
whismanoid 53:3d5a3d241a5e 1747 //----------------------------------------
whismanoid 53:3d5a3d241a5e 1748 // Global SPI options
whismanoid 53:3d5a3d241a5e 1749 //
whismanoid 53:3d5a3d241a5e 1750
whismanoid 54:26a973c5dac4 1751 //--------------------------------------------------
whismanoid 54:26a973c5dac4 1752 // Optional Diagnostic function to print SPI transactions
whismanoid 54:26a973c5dac4 1753 #ifndef MAX11043_ONSPIPRINT
whismanoid 54:26a973c5dac4 1754 #define MAX11043_ONSPIPRINT 1
whismanoid 54:26a973c5dac4 1755 #endif // MAX11043_ONSPIPRINT
whismanoid 54:26a973c5dac4 1756
whismanoid 53:3d5a3d241a5e 1757 //----------------------------------------
whismanoid 53:3d5a3d241a5e 1758 // Global I2C options
whismanoid 53:3d5a3d241a5e 1759 //
whismanoid 53:3d5a3d241a5e 1760
whismanoid 53:3d5a3d241a5e 1761 #define APPLICATION_ArduinoPinsMonitor 1
whismanoid 53:3d5a3d241a5e 1762
whismanoid 53:3d5a3d241a5e 1763 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1764 // use BUTTON1 trigger some action
whismanoid 53:3d5a3d241a5e 1765 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 1766 #define HAS_BUTTON1_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1767 #define HAS_BUTTON2_DEMO 0
whismanoid 53:3d5a3d241a5e 1768 #define HAS_BUTTON2_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1769 #elif defined(TARGET_MAX32625PICO)
whismanoid 53:3d5a3d241a5e 1770 #warning "TARGET_MAX32625PICO not previously tested; need to define buttons..."
whismanoid 53:3d5a3d241a5e 1771 #define HAS_BUTTON1_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1772 #define HAS_BUTTON2_DEMO 0
whismanoid 53:3d5a3d241a5e 1773 #define HAS_BUTTON2_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1774 #elif defined(TARGET_MAX32625)
whismanoid 53:3d5a3d241a5e 1775 #define HAS_BUTTON1_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1776 #define HAS_BUTTON2_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1777 #elif defined(TARGET_MAX32620FTHR)
whismanoid 53:3d5a3d241a5e 1778 #warning "TARGET_MAX32620FTHR not previously tested; need to define buttons..."
whismanoid 53:3d5a3d241a5e 1779 #define BUTTON1 SW1
whismanoid 53:3d5a3d241a5e 1780 #define HAS_BUTTON1_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1781 #define HAS_BUTTON2_DEMO 0
whismanoid 53:3d5a3d241a5e 1782 #define HAS_BUTTON2_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1783 #elif defined(TARGET_NUCLEO_F446RE)
whismanoid 53:3d5a3d241a5e 1784 #define HAS_BUTTON1_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1785 #define HAS_BUTTON2_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1786 #elif defined(TARGET_NUCLEO_F401RE)
whismanoid 53:3d5a3d241a5e 1787 #define HAS_BUTTON1_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1788 #define HAS_BUTTON2_DEMO_INTERRUPT 0
whismanoid 53:3d5a3d241a5e 1789 #else
whismanoid 53:3d5a3d241a5e 1790 #warning "target not previously tested; need to define buttons..."
whismanoid 53:3d5a3d241a5e 1791 #endif
whismanoid 53:3d5a3d241a5e 1792 //
whismanoid 53:3d5a3d241a5e 1793 #ifndef HAS_BUTTON1_DEMO
whismanoid 53:3d5a3d241a5e 1794 #define HAS_BUTTON1_DEMO 0
whismanoid 53:3d5a3d241a5e 1795 #endif
whismanoid 53:3d5a3d241a5e 1796 #ifndef HAS_BUTTON2_DEMO
whismanoid 53:3d5a3d241a5e 1797 #define HAS_BUTTON2_DEMO 0
whismanoid 53:3d5a3d241a5e 1798 #endif
whismanoid 53:3d5a3d241a5e 1799 //
whismanoid 53:3d5a3d241a5e 1800 // avoid runtime error on button1 press [mbed-os-5.11]
whismanoid 53:3d5a3d241a5e 1801 // instead of using InterruptIn, use DigitalIn and poll in main while(1)
whismanoid 53:3d5a3d241a5e 1802 #ifndef HAS_BUTTON1_DEMO_INTERRUPT_POLLING
whismanoid 53:3d5a3d241a5e 1803 #define HAS_BUTTON1_DEMO_INTERRUPT_POLLING 1
whismanoid 53:3d5a3d241a5e 1804 #endif
whismanoid 53:3d5a3d241a5e 1805 //
whismanoid 53:3d5a3d241a5e 1806 #ifndef HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1807 #define HAS_BUTTON1_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1808 #endif
whismanoid 53:3d5a3d241a5e 1809 #ifndef HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1810 #define HAS_BUTTON2_DEMO_INTERRUPT 1
whismanoid 53:3d5a3d241a5e 1811 #endif
whismanoid 53:3d5a3d241a5e 1812 //
whismanoid 53:3d5a3d241a5e 1813 #if HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1814 # if HAS_BUTTON1_DEMO_INTERRUPT_POLLING
whismanoid 53:3d5a3d241a5e 1815 // avoid runtime error on button1 press [mbed-os-5.11]
whismanoid 53:3d5a3d241a5e 1816 // instead of using InterruptIn, use DigitalIn and poll in main while(1)
whismanoid 53:3d5a3d241a5e 1817 DigitalIn button1(BUTTON1);
whismanoid 53:3d5a3d241a5e 1818 # else
whismanoid 53:3d5a3d241a5e 1819 InterruptIn button1(BUTTON1);
whismanoid 53:3d5a3d241a5e 1820 # endif
whismanoid 53:3d5a3d241a5e 1821 #elif HAS_BUTTON1_DEMO
whismanoid 53:3d5a3d241a5e 1822 DigitalIn button1(BUTTON1);
whismanoid 53:3d5a3d241a5e 1823 #endif
whismanoid 53:3d5a3d241a5e 1824 #if HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1825 # if HAS_BUTTON1_DEMO_INTERRUPT_POLLING
whismanoid 53:3d5a3d241a5e 1826 // avoid runtime error on button1 press [mbed-os-5.11]
whismanoid 53:3d5a3d241a5e 1827 // instead of using InterruptIn, use DigitalIn and poll in main while(1)
whismanoid 53:3d5a3d241a5e 1828 DigitalIn button2(BUTTON2);
whismanoid 53:3d5a3d241a5e 1829 # else
whismanoid 53:3d5a3d241a5e 1830 InterruptIn button2(BUTTON2);
whismanoid 53:3d5a3d241a5e 1831 # endif
whismanoid 53:3d5a3d241a5e 1832 #elif HAS_BUTTON2_DEMO
whismanoid 53:3d5a3d241a5e 1833 DigitalIn button2(BUTTON2);
whismanoid 53:3d5a3d241a5e 1834 #endif
whismanoid 53:3d5a3d241a5e 1835
whismanoid 53:3d5a3d241a5e 1836 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1837 // When user presses button BUTTON1, perform self test
whismanoid 53:3d5a3d241a5e 1838 #if HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1839 void onButton1FallingEdge(void)
whismanoid 53:3d5a3d241a5e 1840 {
whismanoid 53:3d5a3d241a5e 1841 void SelfTest(CmdLine & cmdLine);
whismanoid 53:3d5a3d241a5e 1842 SelfTest(cmdLine_serial);
whismanoid 53:3d5a3d241a5e 1843 }
whismanoid 53:3d5a3d241a5e 1844 #endif // HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1845
whismanoid 53:3d5a3d241a5e 1846 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1847 // When user presses button BUTTON2, perform demo configuration
whismanoid 53:3d5a3d241a5e 1848 #if HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1849 void onButton2FallingEdge(void)
whismanoid 53:3d5a3d241a5e 1850 {
whismanoid 53:3d5a3d241a5e 1851 // TBD demo configuration
whismanoid 88:e4fd5033a55f 1852 #if 1
whismanoid 89:20fd6ce5e4dd 1853 g_MAX11043_device.Configure_Demo();
whismanoid 89:20fd6ce5e4dd 1854 #else
whismanoid 88:e4fd5033a55f 1855 // MAX11043 Demo Configuration
whismanoid 88:e4fd5033a55f 1856 //g_MAX11043_device.RegWrite(MAX11043_CMD_enum_t commandByte, uint32_t regData);
whismanoid 88:e4fd5033a55f 1857 //
whismanoid 88:e4fd5033a55f 1858 // *Config=0x6000 (POR default, slowest conversion rate 1:6 = 9us)
whismanoid 88:e4fd5033a55f 1859 g_MAX11043_device.RegWrite(MAX11043::CMD_0010_0000_d16_Wr08_Configuration, 0x6000);
whismanoid 88:e4fd5033a55f 1860 //
whismanoid 88:e4fd5033a55f 1861 // *ConfigA=0x0018 (Bypass PGA and filters, Gain=1V/V)
whismanoid 88:e4fd5033a55f 1862 g_MAX11043_device.RegWrite(MAX11043::CMD_0011_0000_d16_Wr0C_ConfigA, 0x0018);
whismanoid 88:e4fd5033a55f 1863 //
whismanoid 88:e4fd5033a55f 1864 // *AGain=0x1000 (0.5) (default is 0x2000=1.0)
whismanoid 88:e4fd5033a55f 1865 g_MAX11043_device.RegWrite(MAX11043::CMD_0100_0100_d16_Wr11_AGain, 0x1000);
whismanoid 88:e4fd5033a55f 1866 //
whismanoid 88:e4fd5033a55f 1867 // *ConfigB=0x0018 (Bypass PGA and filters, Gain=1V/V)
whismanoid 88:e4fd5033a55f 1868 g_MAX11043_device.RegWrite(MAX11043::CMD_0011_0100_d16_Wr0D_ConfigB, 0x0018);
whismanoid 88:e4fd5033a55f 1869 //
whismanoid 88:e4fd5033a55f 1870 // *BGain=0x1000 (0.5) (default is 0x2000=1.0)
whismanoid 88:e4fd5033a55f 1871 g_MAX11043_device.RegWrite(MAX11043::CMD_0100_1000_d16_Wr12_BGain, 0x1000);
whismanoid 88:e4fd5033a55f 1872 //
whismanoid 88:e4fd5033a55f 1873 // *ConfigC=0x0018 (Bypass PGA and filters, Gain=1V/V)
whismanoid 88:e4fd5033a55f 1874 g_MAX11043_device.RegWrite(MAX11043::CMD_0011_1000_d16_Wr0E_ConfigC, 0x0018);
whismanoid 88:e4fd5033a55f 1875 //
whismanoid 88:e4fd5033a55f 1876 // *CGain=0x1000 (0.5) (default is 0x2000=1.0)
whismanoid 88:e4fd5033a55f 1877 g_MAX11043_device.RegWrite(MAX11043::CMD_0100_1100_d16_Wr13_CGain, 0x1000);
whismanoid 88:e4fd5033a55f 1878 //
whismanoid 88:e4fd5033a55f 1879 // *ConfigD=0x0018 (Bypass PGA and filters, Gain=1V/V)
whismanoid 88:e4fd5033a55f 1880 g_MAX11043_device.RegWrite(MAX11043::CMD_0011_1100_d16_Wr0F_ConfigD, 0x0018);
whismanoid 88:e4fd5033a55f 1881 //
whismanoid 88:e4fd5033a55f 1882 // *DGain=0x1000 (0.5) (default is 0x2000=1.0)
whismanoid 88:e4fd5033a55f 1883 g_MAX11043_device.RegWrite(MAX11043::CMD_0101_0000_d16_Wr14_DGain, 0x1000);
whismanoid 88:e4fd5033a55f 1884 //
whismanoid 88:e4fd5033a55f 1885 // *DacHDacL=0xFF00
whismanoid 88:e4fd5033a55f 1886 g_MAX11043_device.RegWrite(MAX11043::CMD_0010_1100_d16_Wr0B_DACHDACL, 0xFF00);
whismanoid 88:e4fd5033a55f 1887 //
whismanoid 88:e4fd5033a55f 1888 // *DacStep=0x0001
whismanoid 88:e4fd5033a55f 1889 g_MAX11043_device.RegWrite(MAX11043::CMD_0010_1000_d16_Wr0A_DACStep, 0x0001);
whismanoid 88:e4fd5033a55f 1890 //
whismanoid 88:e4fd5033a55f 1891 // *Dac=0x0ccc
whismanoid 88:e4fd5033a55f 1892 g_MAX11043_device.RegWrite(MAX11043::CMD_0010_0100_d16_Wr09_DAC, 0x0ccc);
whismanoid 88:e4fd5033a55f 1893 //
whismanoid 88:e4fd5033a55f 1894 #endif
whismanoid 53:3d5a3d241a5e 1895 // TODO diagnostic LED
whismanoid 88:e4fd5033a55f 1896 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led BLUE
whismanoid 53:3d5a3d241a5e 1897 }
whismanoid 53:3d5a3d241a5e 1898 #endif // HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 1899
whismanoid 53:3d5a3d241a5e 1900 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1901 void SelfTest(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 1902 {
whismanoid 53:3d5a3d241a5e 1903 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1904 #if analogIn4_IS_HIGH_RANGE_OF_analogIn0
whismanoid 53:3d5a3d241a5e 1905 // Platform board uses AIN4,AIN5,.. as high range of AIN0,AIN1,..
whismanoid 53:3d5a3d241a5e 1906 MaximTinyTester tinyTester(cmdLine, analogIn4, analogIn5, analogIn2, analogIn3, analogIn0, analogIn4, led1_RFailLED, led2_GPassLED, led3_BBusyLED);
whismanoid 53:3d5a3d241a5e 1907 tinyTester.analogInPin_fullScaleVoltage[0] = analogInPin_fullScaleVoltage[4]; // board support
whismanoid 53:3d5a3d241a5e 1908 tinyTester.analogInPin_fullScaleVoltage[1] = analogInPin_fullScaleVoltage[5]; // board support
whismanoid 53:3d5a3d241a5e 1909 tinyTester.analogInPin_fullScaleVoltage[2] = analogInPin_fullScaleVoltage[2]; // board support
whismanoid 53:3d5a3d241a5e 1910 tinyTester.analogInPin_fullScaleVoltage[3] = analogInPin_fullScaleVoltage[3]; // board support
whismanoid 53:3d5a3d241a5e 1911 tinyTester.analogInPin_fullScaleVoltage[4] = analogInPin_fullScaleVoltage[0]; // board support
whismanoid 53:3d5a3d241a5e 1912 tinyTester.analogInPin_fullScaleVoltage[5] = analogInPin_fullScaleVoltage[1]; // board support
whismanoid 53:3d5a3d241a5e 1913 // low range channels AIN0, AIN1, AIN2, AIN3
whismanoid 53:3d5a3d241a5e 1914 #else // analogIn4_IS_HIGH_RANGE_OF_analogIn0
whismanoid 53:3d5a3d241a5e 1915 // Platform board uses simple analog inputs
whismanoid 53:3d5a3d241a5e 1916 MaximTinyTester tinyTester(cmdLine, analogIn0, analogIn1, analogIn2, analogIn3, analogIn4, analogIn5, led1_RFailLED, led2_GPassLED, led3_BBusyLED);
whismanoid 53:3d5a3d241a5e 1917 tinyTester.analogInPin_fullScaleVoltage[0] = analogInPin_fullScaleVoltage[0]; // board support
whismanoid 53:3d5a3d241a5e 1918 tinyTester.analogInPin_fullScaleVoltage[1] = analogInPin_fullScaleVoltage[1]; // board support
whismanoid 53:3d5a3d241a5e 1919 tinyTester.analogInPin_fullScaleVoltage[2] = analogInPin_fullScaleVoltage[2]; // board support
whismanoid 53:3d5a3d241a5e 1920 tinyTester.analogInPin_fullScaleVoltage[3] = analogInPin_fullScaleVoltage[3]; // board support
whismanoid 53:3d5a3d241a5e 1921 tinyTester.analogInPin_fullScaleVoltage[4] = analogInPin_fullScaleVoltage[4]; // board support
whismanoid 53:3d5a3d241a5e 1922 tinyTester.analogInPin_fullScaleVoltage[5] = analogInPin_fullScaleVoltage[5]; // board support
whismanoid 53:3d5a3d241a5e 1923 #endif
whismanoid 53:3d5a3d241a5e 1924 tinyTester.clear();
whismanoid 53:3d5a3d241a5e 1925
whismanoid 53:3d5a3d241a5e 1926 // CODE GENERATOR: generate SelfTest based on function docstrings @test lines
whismanoid 53:3d5a3d241a5e 1927
whismanoid 53:3d5a3d241a5e 1928 //
whismanoid 53:3d5a3d241a5e 1929 #if INJECT_SELFTEST_FAIL
whismanoid 53:3d5a3d241a5e 1930 // Test of the pass/fail report mechanism
whismanoid 53:3d5a3d241a5e 1931 tinyTester.FAIL();
whismanoid 53:3d5a3d241a5e 1932 cmdLine.serial().print(F("injecting one false failure for test reporting"));
whismanoid 53:3d5a3d241a5e 1933 #endif
whismanoid 53:3d5a3d241a5e 1934 //
whismanoid 53:3d5a3d241a5e 1935 // Report number of pass and number of fail test results
whismanoid 53:3d5a3d241a5e 1936 tinyTester.Report_Summary();
whismanoid 53:3d5a3d241a5e 1937 }
whismanoid 53:3d5a3d241a5e 1938
whismanoid 53:3d5a3d241a5e 1939
whismanoid 53:3d5a3d241a5e 1940 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1941 inline void print_command_prompt()
whismanoid 53:3d5a3d241a5e 1942 {
whismanoid 53:3d5a3d241a5e 1943 cmdLine_serial.serial().printf("\r\n> ");
whismanoid 53:3d5a3d241a5e 1944
whismanoid 53:3d5a3d241a5e 1945 }
whismanoid 53:3d5a3d241a5e 1946
whismanoid 53:3d5a3d241a5e 1947
whismanoid 53:3d5a3d241a5e 1948 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 1949 void pinsMonitor_submenu_onEOLcommandParser(CmdLine& cmdLine)
whismanoid 53:3d5a3d241a5e 1950 {
whismanoid 53:3d5a3d241a5e 1951 // % diagnostic commands submenu
whismanoid 53:3d5a3d241a5e 1952 // %Hpin -- digital output high
whismanoid 53:3d5a3d241a5e 1953 // %Lpin -- digital output low
whismanoid 53:3d5a3d241a5e 1954 // %?pin -- digital input
whismanoid 53:3d5a3d241a5e 1955 // %A %Apin -- analog input
whismanoid 53:3d5a3d241a5e 1956 // %Ppin df=xx -- pwm output
whismanoid 53:3d5a3d241a5e 1957 // %Wpin -- measure high pulsewidth input in usec
whismanoid 53:3d5a3d241a5e 1958 // %wpin -- measure low pulsewidth input in usec
whismanoid 53:3d5a3d241a5e 1959 // %I... -- I2C diagnostics
whismanoid 53:3d5a3d241a5e 1960 // %IP -- I2C probe
whismanoid 53:3d5a3d241a5e 1961 // %IC scl=100khz ADDR=? -- I2C configure
whismanoid 53:3d5a3d241a5e 1962 // %IW byte byte ... byte RD=? ADDR=0x -- write
whismanoid 53:3d5a3d241a5e 1963 // %IR ADDR=? RD=? -- read
whismanoid 53:3d5a3d241a5e 1964 // %I^ cmd=? -- i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 1965 // %S... -- SPI diagnostics
whismanoid 53:3d5a3d241a5e 1966 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 1967 // %SW -- write (write and read)
whismanoid 53:3d5a3d241a5e 1968 // %SR -- read (alias for %SW because SPI always write and read)
whismanoid 53:3d5a3d241a5e 1969 // A-Z,a-z,0-9 reserved for application use
whismanoid 53:3d5a3d241a5e 1970 //
whismanoid 53:3d5a3d241a5e 1971 char strPinIndex[3];
whismanoid 53:3d5a3d241a5e 1972 strPinIndex[0] = cmdLine[2];
whismanoid 53:3d5a3d241a5e 1973 strPinIndex[1] = cmdLine[3];
whismanoid 53:3d5a3d241a5e 1974 strPinIndex[2] = '\0';
whismanoid 53:3d5a3d241a5e 1975 int pinIndex = strtoul(strPinIndex, NULL, 10); // strtol(str, NULL, 10): get decimal value
whismanoid 53:3d5a3d241a5e 1976 //cmdLine.serial().printf(" pinIndex=%d ", pinIndex);
whismanoid 53:3d5a3d241a5e 1977 //
whismanoid 53:3d5a3d241a5e 1978 // get next character
whismanoid 53:3d5a3d241a5e 1979 switch (cmdLine[1])
whismanoid 53:3d5a3d241a5e 1980 {
whismanoid 53:3d5a3d241a5e 1981 #if HAS_digitalInOuts
whismanoid 53:3d5a3d241a5e 1982 case 'H': case 'h':
whismanoid 53:3d5a3d241a5e 1983 {
whismanoid 53:3d5a3d241a5e 1984 // %Hpin -- digital output high
whismanoid 53:3d5a3d241a5e 1985 #if ARDUINO_STYLE
whismanoid 53:3d5a3d241a5e 1986 pinMode(pinIndex, OUTPUT); // digital pins 0, 1, 2, .. 13, analog input pins A0, A1, .. A5
whismanoid 53:3d5a3d241a5e 1987 digitalWrite(pinIndex, HIGH); // digital pins 0, 1, 2, .. 13, analog input pins A0, A1, .. A5
whismanoid 53:3d5a3d241a5e 1988 #else
whismanoid 53:3d5a3d241a5e 1989 DigitalInOut& digitalInOutPin = find_digitalInOutPin(pinIndex);
whismanoid 53:3d5a3d241a5e 1990 digitalInOutPin.output();
whismanoid 53:3d5a3d241a5e 1991 digitalInOutPin.write(1);
whismanoid 53:3d5a3d241a5e 1992 #endif
whismanoid 53:3d5a3d241a5e 1993 cmdLine.serial().printf(" digitalInOutPin %d Output High ", pinIndex);
whismanoid 53:3d5a3d241a5e 1994 }
whismanoid 53:3d5a3d241a5e 1995 break;
whismanoid 53:3d5a3d241a5e 1996 case 'L': case 'l':
whismanoid 53:3d5a3d241a5e 1997 {
whismanoid 53:3d5a3d241a5e 1998 // %Lpin -- digital output low
whismanoid 53:3d5a3d241a5e 1999 #if ARDUINO_STYLE
whismanoid 53:3d5a3d241a5e 2000 pinMode(pinIndex, OUTPUT); // digital pins 0, 1, 2, .. 13, analog input pins A0, A1, .. A5
whismanoid 53:3d5a3d241a5e 2001 digitalWrite(pinIndex, LOW); // digital pins 0, 1, 2, .. 13, analog input pins A0, A1, .. A5
whismanoid 53:3d5a3d241a5e 2002 #else
whismanoid 53:3d5a3d241a5e 2003 DigitalInOut& digitalInOutPin = find_digitalInOutPin(pinIndex);
whismanoid 53:3d5a3d241a5e 2004 digitalInOutPin.output();
whismanoid 53:3d5a3d241a5e 2005 digitalInOutPin.write(0);
whismanoid 53:3d5a3d241a5e 2006 #endif
whismanoid 53:3d5a3d241a5e 2007 cmdLine.serial().printf(" digitalInOutPin %d Output Low ", pinIndex);
whismanoid 53:3d5a3d241a5e 2008 }
whismanoid 53:3d5a3d241a5e 2009 break;
whismanoid 53:3d5a3d241a5e 2010 case '?':
whismanoid 53:3d5a3d241a5e 2011 {
whismanoid 53:3d5a3d241a5e 2012 // %?pin -- digital input
whismanoid 53:3d5a3d241a5e 2013 #if ARDUINO_STYLE
whismanoid 53:3d5a3d241a5e 2014 pinMode(pinIndex, INPUT); // digital pins 0, 1, 2, .. 13, analog input pins A0, A1, .. A5
whismanoid 53:3d5a3d241a5e 2015 #else
whismanoid 53:3d5a3d241a5e 2016 DigitalInOut& digitalInOutPin = find_digitalInOutPin(pinIndex);
whismanoid 53:3d5a3d241a5e 2017 digitalInOutPin.input();
whismanoid 53:3d5a3d241a5e 2018 #endif
whismanoid 53:3d5a3d241a5e 2019 serial.printf(" digitalInOutPin %d Input ", pinIndex);
whismanoid 53:3d5a3d241a5e 2020 #if ARDUINO_STYLE
whismanoid 53:3d5a3d241a5e 2021 int value = digitalRead(pinIndex);
whismanoid 53:3d5a3d241a5e 2022 #else
whismanoid 53:3d5a3d241a5e 2023 int value = digitalInOutPin.read();
whismanoid 53:3d5a3d241a5e 2024 #endif
whismanoid 53:3d5a3d241a5e 2025 cmdLine.serial().printf("%d ", value);
whismanoid 53:3d5a3d241a5e 2026 }
whismanoid 53:3d5a3d241a5e 2027 break;
whismanoid 53:3d5a3d241a5e 2028 #endif
whismanoid 53:3d5a3d241a5e 2029 //
whismanoid 53:3d5a3d241a5e 2030 #if HAS_analogIns
whismanoid 53:3d5a3d241a5e 2031 case 'A': case 'a':
whismanoid 53:3d5a3d241a5e 2032 {
whismanoid 53:3d5a3d241a5e 2033 // %A %Apin -- analog input
whismanoid 53:3d5a3d241a5e 2034 #if analogIn4_IS_HIGH_RANGE_OF_analogIn0
whismanoid 53:3d5a3d241a5e 2035 // Platform board uses AIN4,AIN5,.. as high range of AIN0,AIN1,..
whismanoid 53:3d5a3d241a5e 2036 for (int pinIndex = 0; pinIndex < 2; pinIndex++)
whismanoid 53:3d5a3d241a5e 2037 {
whismanoid 53:3d5a3d241a5e 2038 int cPinIndex = '0' + pinIndex;
whismanoid 53:3d5a3d241a5e 2039 AnalogIn& analogInPin = find_analogInPin(cPinIndex);
whismanoid 53:3d5a3d241a5e 2040 float adc_full_scale_voltage = analogInPin_fullScaleVoltage[pinIndex];
whismanoid 53:3d5a3d241a5e 2041 float normValue_0_1 = analogInPin.read();
whismanoid 53:3d5a3d241a5e 2042 //
whismanoid 53:3d5a3d241a5e 2043 int pinIndexH = pinIndex + 4;
whismanoid 53:3d5a3d241a5e 2044 int cPinIndexH = '0' + pinIndexH;
whismanoid 53:3d5a3d241a5e 2045 AnalogIn& analogInPinH = find_analogInPin(cPinIndexH);
whismanoid 53:3d5a3d241a5e 2046 float adc_full_scale_voltageH = analogInPin_fullScaleVoltage[pinIndexH];
whismanoid 53:3d5a3d241a5e 2047 float normValueH_0_1 = analogInPinH.read();
whismanoid 53:3d5a3d241a5e 2048 //
whismanoid 53:3d5a3d241a5e 2049 cmdLine.serial().printf("AIN%c = %7.3f%% = %1.3fV AIN%c = %7.3f%% = %1.3fV \r\n",
whismanoid 53:3d5a3d241a5e 2050 cPinIndex,
whismanoid 53:3d5a3d241a5e 2051 normValue_0_1 * 100.0,
whismanoid 53:3d5a3d241a5e 2052 normValue_0_1 * adc_full_scale_voltage,
whismanoid 53:3d5a3d241a5e 2053 cPinIndexH,
whismanoid 53:3d5a3d241a5e 2054 normValueH_0_1 * 100.0,
whismanoid 53:3d5a3d241a5e 2055 normValueH_0_1 * adc_full_scale_voltageH
whismanoid 53:3d5a3d241a5e 2056 );
whismanoid 53:3d5a3d241a5e 2057 }
whismanoid 53:3d5a3d241a5e 2058 for (int pinIndex = 2; pinIndex < 4; pinIndex++)
whismanoid 53:3d5a3d241a5e 2059 {
whismanoid 53:3d5a3d241a5e 2060 int cPinIndex = '0' + pinIndex;
whismanoid 53:3d5a3d241a5e 2061 AnalogIn& analogInPin = find_analogInPin(cPinIndex);
whismanoid 53:3d5a3d241a5e 2062 float adc_full_scale_voltage = analogInPin_fullScaleVoltage[pinIndex];
whismanoid 53:3d5a3d241a5e 2063 float normValue_0_1 = analogInPin.read();
whismanoid 53:3d5a3d241a5e 2064 //
whismanoid 53:3d5a3d241a5e 2065 cmdLine.serial().printf("AIN%c = %7.3f%% = %1.3fV\r\n",
whismanoid 53:3d5a3d241a5e 2066 cPinIndex,
whismanoid 53:3d5a3d241a5e 2067 normValue_0_1 * 100.0,
whismanoid 53:3d5a3d241a5e 2068 normValue_0_1 * adc_full_scale_voltage
whismanoid 53:3d5a3d241a5e 2069 );
whismanoid 53:3d5a3d241a5e 2070 }
whismanoid 53:3d5a3d241a5e 2071 #else // analogIn4_IS_HIGH_RANGE_OF_analogIn0
whismanoid 53:3d5a3d241a5e 2072 // Platform board uses simple analog inputs
whismanoid 53:3d5a3d241a5e 2073 // assume standard Arduino analog inputs A0-A5
whismanoid 53:3d5a3d241a5e 2074 for (int pinIndex = 0; pinIndex < 6; pinIndex++)
whismanoid 53:3d5a3d241a5e 2075 {
whismanoid 53:3d5a3d241a5e 2076 int cPinIndex = '0' + pinIndex;
whismanoid 53:3d5a3d241a5e 2077 AnalogIn& analogInPin = find_analogInPin(cPinIndex);
whismanoid 53:3d5a3d241a5e 2078 float adc_full_scale_voltage = analogInPin_fullScaleVoltage[pinIndex];
whismanoid 53:3d5a3d241a5e 2079 float normValue_0_1 = analogInPin.read();
whismanoid 53:3d5a3d241a5e 2080 //
whismanoid 53:3d5a3d241a5e 2081 cmdLine.serial().printf("AIN%c = %7.3f%% = %1.3fV\r\n",
whismanoid 53:3d5a3d241a5e 2082 cPinIndex,
whismanoid 53:3d5a3d241a5e 2083 normValue_0_1 * 100.0,
whismanoid 53:3d5a3d241a5e 2084 normValue_0_1 * adc_full_scale_voltage
whismanoid 53:3d5a3d241a5e 2085 );
whismanoid 53:3d5a3d241a5e 2086 }
whismanoid 53:3d5a3d241a5e 2087 #endif // analogIn4_IS_HIGH_RANGE_OF_analogIn0
whismanoid 53:3d5a3d241a5e 2088 }
whismanoid 53:3d5a3d241a5e 2089 break;
whismanoid 53:3d5a3d241a5e 2090 #endif
whismanoid 53:3d5a3d241a5e 2091 //
whismanoid 53:3d5a3d241a5e 2092 #if HAS_SPI2_MAX541
whismanoid 53:3d5a3d241a5e 2093 case 'D': case 'd':
whismanoid 53:3d5a3d241a5e 2094 {
whismanoid 53:3d5a3d241a5e 2095 // %D -- DAC output MAX541 (SPI2) -- need cmdLine.parse_float(voltageV)
whismanoid 53:3d5a3d241a5e 2096 // MAX541 max541(spi2_max541, spi2_max541_cs);
whismanoid 53:3d5a3d241a5e 2097 float voltageV = max541.Get_Voltage();
whismanoid 53:3d5a3d241a5e 2098 // if (cmdLine[2] == '+') {
whismanoid 53:3d5a3d241a5e 2099 // // %D+
whismanoid 53:3d5a3d241a5e 2100 // voltageV = voltageV * 1.25f;
whismanoid 53:3d5a3d241a5e 2101 // if (voltageV >= max541.VRef) voltageV = max541.VRef;
whismanoid 53:3d5a3d241a5e 2102 // SelfTest_MAX541_Voltage(cmdLine, max541, voltageV);
whismanoid 53:3d5a3d241a5e 2103 // }
whismanoid 53:3d5a3d241a5e 2104 // else if (cmdLine[2] == '-') {
whismanoid 53:3d5a3d241a5e 2105 // // %D-
whismanoid 53:3d5a3d241a5e 2106 // voltageV = voltageV * 0.75f;
whismanoid 53:3d5a3d241a5e 2107 // if (voltageV < 0.1f) voltageV = 0.1f;
whismanoid 53:3d5a3d241a5e 2108 // SelfTest_MAX541_Voltage(cmdLine, max541, voltageV);
whismanoid 53:3d5a3d241a5e 2109 // }
whismanoid 53:3d5a3d241a5e 2110 if (cmdLine.parse_float("V", voltageV))
whismanoid 53:3d5a3d241a5e 2111 {
whismanoid 53:3d5a3d241a5e 2112 // %D V=1.234 -- set voltage
whismanoid 53:3d5a3d241a5e 2113 max541.Set_Voltage(voltageV);
whismanoid 53:3d5a3d241a5e 2114 }
whismanoid 53:3d5a3d241a5e 2115 else if (cmdLine.parse_float("TEST", voltageV))
whismanoid 53:3d5a3d241a5e 2116 {
whismanoid 53:3d5a3d241a5e 2117 // %D TEST=1.234 -- set voltage and compare with AIN0
whismanoid 53:3d5a3d241a5e 2118 SelfTest_MAX541_Voltage(cmdLine, max541, voltageV);
whismanoid 53:3d5a3d241a5e 2119 }
whismanoid 53:3d5a3d241a5e 2120 else if (cmdLine.parse_float("CAL", voltageV))
whismanoid 53:3d5a3d241a5e 2121 {
whismanoid 53:3d5a3d241a5e 2122 // %D CAL=1.234 -- calibrate VRef and compare with AIN0
whismanoid 53:3d5a3d241a5e 2123
whismanoid 53:3d5a3d241a5e 2124 max541.Set_Code(0x8000); // we don't know the fullscale voltage yet, so set code to midscale
whismanoid 53:3d5a3d241a5e 2125 double max541_midscale_V = analogInPin_fullScaleVoltage[4] * analogIn4.read(); // TARGET_MAX32630 J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 2126 const int average_count = 100;
whismanoid 53:3d5a3d241a5e 2127 const double average_K = 0.25;
whismanoid 53:3d5a3d241a5e 2128 for (int count = 0; count < average_count; count++) {
whismanoid 53:3d5a3d241a5e 2129 double measurement_V = analogInPin_fullScaleVoltage[4] * analogIn4.read(); // TARGET_MAX32630 J1.5 AIN_4 = AIN0 / 5.0 fullscale is 6.0V
whismanoid 53:3d5a3d241a5e 2130 max541_midscale_V = ((1 - average_K) * max541_midscale_V) + (average_K * measurement_V);
whismanoid 53:3d5a3d241a5e 2131 }
whismanoid 53:3d5a3d241a5e 2132 max541.VRef = 2.0 * max541_midscale_V;
whismanoid 53:3d5a3d241a5e 2133 cmdLine.serial().printf(
whismanoid 53:3d5a3d241a5e 2134 "\r\n MAX541 midscale = %1.3fV, so fullscale = %1.3fV",
whismanoid 53:3d5a3d241a5e 2135 max541_midscale_V, max541.VRef);
whismanoid 53:3d5a3d241a5e 2136 // Detect whether MAX541 is really connected to MAX32625MBED.AIN0/AIN4
whismanoid 53:3d5a3d241a5e 2137 voltageV = 1.0f;
whismanoid 53:3d5a3d241a5e 2138 SelfTest_MAX541_Voltage(cmdLine, max541, voltageV);
whismanoid 53:3d5a3d241a5e 2139 }
whismanoid 53:3d5a3d241a5e 2140 else {
whismanoid 53:3d5a3d241a5e 2141 // %D -- print MAX541 DAC status
whismanoid 53:3d5a3d241a5e 2142 cmdLine.serial().printf("MAX541 code=0x%4.4x = %1.3fV VRef=%1.3fV\r\n",
whismanoid 53:3d5a3d241a5e 2143 max541.Get_Code(), max541.Get_Voltage(), max541.VRef);
whismanoid 53:3d5a3d241a5e 2144 }
whismanoid 53:3d5a3d241a5e 2145 }
whismanoid 53:3d5a3d241a5e 2146 break;
whismanoid 53:3d5a3d241a5e 2147 #endif
whismanoid 53:3d5a3d241a5e 2148
whismanoid 53:3d5a3d241a5e 2149 //
whismanoid 53:3d5a3d241a5e 2150 #if HAS_I2C // SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2151 case 'I': case 'i':
whismanoid 53:3d5a3d241a5e 2152 // %I... -- I2C diagnostics
whismanoid 53:3d5a3d241a5e 2153 // %IP -- I2C probe
whismanoid 53:3d5a3d241a5e 2154 // %IC scl=100khz ADDR=? -- I2C configure
whismanoid 53:3d5a3d241a5e 2155 // %IW byte byte ... byte RD=? ADDR=0x -- write
whismanoid 53:3d5a3d241a5e 2156 // %IR ADDR=? RD=? -- read
whismanoid 53:3d5a3d241a5e 2157 // %I^ cmd=? -- i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2158 // get next character
whismanoid 53:3d5a3d241a5e 2159 // TODO: parse cmdLine arg (ADDR=\d+)? --> g_I2C_deviceAddress7
whismanoid 53:3d5a3d241a5e 2160 cmdLine.parse_byte_hex("ADDR", g_I2C_deviceAddress7);
whismanoid 53:3d5a3d241a5e 2161 // TODO: parse cmdLine arg (RD=\d)? --> g_I2C_read_count
whismanoid 53:3d5a3d241a5e 2162 g_I2C_read_count = 0; // read count must be reset every command
whismanoid 53:3d5a3d241a5e 2163 cmdLine.parse_byte_dec("RD", g_I2C_read_count);
whismanoid 53:3d5a3d241a5e 2164 // TODO: parse cmdLine arg (CMD=\d)? --> g_I2C_command_regAddress
whismanoid 53:3d5a3d241a5e 2165 cmdLine.parse_byte_hex("CMD", g_I2C_command_regAddress);
whismanoid 53:3d5a3d241a5e 2166 switch (cmdLine[2])
whismanoid 53:3d5a3d241a5e 2167 {
whismanoid 53:3d5a3d241a5e 2168 case 'P': case 'p':
whismanoid 53:3d5a3d241a5e 2169 {
whismanoid 53:3d5a3d241a5e 2170 // %IP -- I2C probe
whismanoid 53:3d5a3d241a5e 2171 HuntAttachedI2CDevices(cmdLine, 0x03, 0x77);
whismanoid 53:3d5a3d241a5e 2172 }
whismanoid 53:3d5a3d241a5e 2173 break;
whismanoid 53:3d5a3d241a5e 2174 case 'C': case 'c':
whismanoid 53:3d5a3d241a5e 2175 {
whismanoid 53:3d5a3d241a5e 2176 bool isUpdatedI2CConfig = false;
whismanoid 53:3d5a3d241a5e 2177 // %IC scl=100khz ADDR=? -- I2C configure
whismanoid 53:3d5a3d241a5e 2178 // parse cmdLine arg (SCL=\d+(kHZ|MHZ)?)? --> g_I2C_SCL_Hz
whismanoid 53:3d5a3d241a5e 2179 if (cmdLine.parse_frequency_Hz("SCL", g_I2C_SCL_Hz))
whismanoid 53:3d5a3d241a5e 2180 {
whismanoid 53:3d5a3d241a5e 2181 isUpdatedI2CConfig = true;
whismanoid 53:3d5a3d241a5e 2182 // TODO1: validate g_I2C_SCL_Hz against system clock frequency F_CPU
whismanoid 53:3d5a3d241a5e 2183 if (g_I2C_SCL_Hz > limit_max_I2C_SCL_Hz)
whismanoid 53:3d5a3d241a5e 2184 {
whismanoid 53:3d5a3d241a5e 2185 g_I2C_SCL_Hz = limit_max_I2C_SCL_Hz;
whismanoid 53:3d5a3d241a5e 2186 }
whismanoid 53:3d5a3d241a5e 2187 if (g_I2C_SCL_Hz < limit_min_I2C_SCL_Hz)
whismanoid 53:3d5a3d241a5e 2188 {
whismanoid 53:3d5a3d241a5e 2189 g_I2C_SCL_Hz = limit_min_I2C_SCL_Hz;
whismanoid 53:3d5a3d241a5e 2190 }
whismanoid 53:3d5a3d241a5e 2191 }
whismanoid 53:3d5a3d241a5e 2192 if (isUpdatedI2CConfig)
whismanoid 53:3d5a3d241a5e 2193 {
whismanoid 53:3d5a3d241a5e 2194 // declare in narrower scope: MAX32625MBED I2C i2cMaster(...)
whismanoid 53:3d5a3d241a5e 2195 I2C i2cMaster(I2C0_SDA, I2C0_SCL); // sda scl TARGET_MAX32635MBED: P1_6, P1_7 Arduino 10-pin header
whismanoid 53:3d5a3d241a5e 2196 i2cMaster.frequency(g_I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2197 i2cMaster.start();
whismanoid 53:3d5a3d241a5e 2198 i2cMaster.stop();
whismanoid 53:3d5a3d241a5e 2199 i2cMaster.frequency(g_I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2200 cmdLine.serial().printf(
whismanoid 53:3d5a3d241a5e 2201 "\r\n %%IC ADDR=0x%2.2x=(0x%2.2x>>1) SCL=%d=%1.3fkHz -- I2C config",
whismanoid 53:3d5a3d241a5e 2202 g_I2C_deviceAddress7, (g_I2C_deviceAddress7 << 1), g_I2C_SCL_Hz,
whismanoid 53:3d5a3d241a5e 2203 (g_I2C_SCL_Hz / 1000.));
whismanoid 53:3d5a3d241a5e 2204 i2cMaster.start();
whismanoid 53:3d5a3d241a5e 2205 i2cMaster.stop();
whismanoid 53:3d5a3d241a5e 2206 }
whismanoid 53:3d5a3d241a5e 2207 }
whismanoid 53:3d5a3d241a5e 2208 break;
whismanoid 53:3d5a3d241a5e 2209 case 'W': case 'w':
whismanoid 53:3d5a3d241a5e 2210 {
whismanoid 53:3d5a3d241a5e 2211 // declare in narrower scope: MAX32625MBED I2C i2cMaster(...)
whismanoid 53:3d5a3d241a5e 2212 I2C i2cMaster(I2C0_SDA, I2C0_SCL); // sda scl TARGET_MAX32635MBED: P1_6, P1_7 Arduino 10-pin header
whismanoid 53:3d5a3d241a5e 2213 i2cMaster.frequency(g_I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2214 // %IW byte byte ... byte RD=? ADDR=0x -- write
whismanoid 53:3d5a3d241a5e 2215 // parse cmdLine byte list --> int byteCount; int mosiData[MAX_SPI_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2216 #define MAX_I2C_BYTE_COUNT 32
whismanoid 53:3d5a3d241a5e 2217 size_t byteCount = byteCount;
whismanoid 53:3d5a3d241a5e 2218 static char mosiData[MAX_I2C_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2219 static char misoData[MAX_I2C_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2220 if (cmdLine.parse_byteCount_byteList_hex(byteCount, mosiData,
whismanoid 53:3d5a3d241a5e 2221 MAX_I2C_BYTE_COUNT))
whismanoid 53:3d5a3d241a5e 2222 {
whismanoid 53:3d5a3d241a5e 2223 // hex dump mosiData[0..byteCount-1]
whismanoid 53:3d5a3d241a5e 2224 cmdLine.serial().printf(
whismanoid 53:3d5a3d241a5e 2225 "\r\nADDR=0x%2.2x=(0x%2.2x>>1) byteCount:%d RD=%d\r\nI2C MOSI->",
whismanoid 53:3d5a3d241a5e 2226 g_I2C_deviceAddress7,
whismanoid 53:3d5a3d241a5e 2227 (g_I2C_deviceAddress7 << 1), byteCount, g_I2C_read_count);
whismanoid 53:3d5a3d241a5e 2228 for (unsigned int byteIndex = 0; byteIndex < byteCount; byteIndex++)
whismanoid 53:3d5a3d241a5e 2229 {
whismanoid 53:3d5a3d241a5e 2230 cmdLine.serial().printf(" 0x%2.2X", mosiData[byteIndex]);
whismanoid 53:3d5a3d241a5e 2231 }
whismanoid 53:3d5a3d241a5e 2232 //
whismanoid 53:3d5a3d241a5e 2233 // TODO: i2c transfer
whismanoid 53:3d5a3d241a5e 2234 //const int addr7bit = 0x48; // 7 bit I2C address
whismanoid 53:3d5a3d241a5e 2235 //const int addr8bit = 0x48 << 1; // 8bit I2C address, 0x90
whismanoid 53:3d5a3d241a5e 2236 // /* int */ i2cMaster.read (int addr8bit, char *data, int length, bool repeated=false) // Read from an I2C slave.
whismanoid 53:3d5a3d241a5e 2237 // /* int */ i2cMaster.read (int ack) // Read a single byte from the I2C bus.
whismanoid 53:3d5a3d241a5e 2238 // /* int */ i2cMaster.write (int addr8bit, const char *data, int length, bool repeated=false) // Write to an I2C slave.
whismanoid 53:3d5a3d241a5e 2239 // /* int */ i2cMaster.write (int data) // Write single byte out on the I2C bus.
whismanoid 53:3d5a3d241a5e 2240 // /* void */ i2cMaster.start (void) // Creates a start condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2241 // /* void */ i2cMaster.stop (void) // Creates a stop condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2242 // /* int */ i2cMaster.transfer (int addr8bit, const char *tx_buffer, int tx_length, char *rx_buffer, int rx_length, const event_callback_t &callback, int event=I2C_EVENT_TRANSFER_COMPLETE, bool repeated=false) // Start nonblocking I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2243 // /* void */ i2cMaster.abort_transfer () // Abort the ongoing I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2244 const int addr8bit = g_I2C_deviceAddress7 << 1; // 8bit I2C address, 0x90
whismanoid 53:3d5a3d241a5e 2245 unsigned int misoLength = 0;
whismanoid 53:3d5a3d241a5e 2246 bool repeated = (g_I2C_read_count > 0);
whismanoid 53:3d5a3d241a5e 2247 //
whismanoid 53:3d5a3d241a5e 2248 int writeStatus = i2cMaster.write (addr8bit, mosiData, byteCount, repeated);
whismanoid 53:3d5a3d241a5e 2249 switch (writeStatus)
whismanoid 53:3d5a3d241a5e 2250 {
whismanoid 53:3d5a3d241a5e 2251 case 0: cmdLine.serial().printf(" ack "); break;
whismanoid 53:3d5a3d241a5e 2252 case 1: cmdLine.serial().printf(" nack "); break;
whismanoid 53:3d5a3d241a5e 2253 default: cmdLine.serial().printf(" {writeStatus 0x%2.2X} ",
whismanoid 53:3d5a3d241a5e 2254 writeStatus);
whismanoid 53:3d5a3d241a5e 2255 }
whismanoid 53:3d5a3d241a5e 2256 if (repeated)
whismanoid 53:3d5a3d241a5e 2257 {
whismanoid 53:3d5a3d241a5e 2258 int readStatus =
whismanoid 53:3d5a3d241a5e 2259 i2cMaster.read (addr8bit, misoData, g_I2C_read_count, false);
whismanoid 53:3d5a3d241a5e 2260 switch (readStatus)
whismanoid 53:3d5a3d241a5e 2261 {
whismanoid 53:3d5a3d241a5e 2262 case 1: cmdLine.serial().printf(" nack "); break;
whismanoid 53:3d5a3d241a5e 2263 case 0: cmdLine.serial().printf(" ack "); break;
whismanoid 53:3d5a3d241a5e 2264 default: cmdLine.serial().printf(" {readStatus 0x%2.2X} ",
whismanoid 53:3d5a3d241a5e 2265 readStatus);
whismanoid 53:3d5a3d241a5e 2266 }
whismanoid 53:3d5a3d241a5e 2267 }
whismanoid 53:3d5a3d241a5e 2268 //
whismanoid 53:3d5a3d241a5e 2269 if (misoLength > 0)
whismanoid 53:3d5a3d241a5e 2270 {
whismanoid 53:3d5a3d241a5e 2271 // hex dump misoData[0..byteCount-1]
whismanoid 53:3d5a3d241a5e 2272 cmdLine.serial().printf(" MISO<-");
whismanoid 53:3d5a3d241a5e 2273 for (unsigned int byteIndex = 0; byteIndex < g_I2C_read_count;
whismanoid 53:3d5a3d241a5e 2274 byteIndex++)
whismanoid 53:3d5a3d241a5e 2275 {
whismanoid 53:3d5a3d241a5e 2276 cmdLine.serial().printf(" 0x%2.2X", misoData[byteIndex]);
whismanoid 53:3d5a3d241a5e 2277 }
whismanoid 53:3d5a3d241a5e 2278 }
whismanoid 53:3d5a3d241a5e 2279 cmdLine.serial().printf(" ");
whismanoid 53:3d5a3d241a5e 2280 }
whismanoid 53:3d5a3d241a5e 2281 }
whismanoid 53:3d5a3d241a5e 2282 break;
whismanoid 53:3d5a3d241a5e 2283 case 'R': case 'r':
whismanoid 53:3d5a3d241a5e 2284 {
whismanoid 53:3d5a3d241a5e 2285 // declare in narrower scope: MAX32625MBED I2C i2cMaster(...)
whismanoid 53:3d5a3d241a5e 2286 I2C i2cMaster(I2C0_SDA, I2C0_SCL); // sda scl TARGET_MAX32635MBED: P1_6, P1_7 Arduino 10-pin header
whismanoid 53:3d5a3d241a5e 2287 i2cMaster.frequency(g_I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2288 // %IR ADDR=? RD=? -- read
whismanoid 53:3d5a3d241a5e 2289 // TODO: i2c transfer
whismanoid 53:3d5a3d241a5e 2290 //const int addr7bit = 0x48; // 7 bit I2C address
whismanoid 53:3d5a3d241a5e 2291 //const int addr8bit = 0x48 << 1; // 8bit I2C address, 0x90
whismanoid 53:3d5a3d241a5e 2292 // /* int */ i2cMaster.read (int addr8bit, char *data, int length, bool repeated=false) // Read from an I2C slave.
whismanoid 53:3d5a3d241a5e 2293 // /* int */ i2cMaster.read (int ack) // Read a single byte from the I2C bus.
whismanoid 53:3d5a3d241a5e 2294 // /* int */ i2cMaster.write (int addr8bit, const char *data, int length, bool repeated=false) // Write to an I2C slave.
whismanoid 53:3d5a3d241a5e 2295 // /* int */ i2cMaster.write (int data) // Write single byte out on the I2C bus.
whismanoid 53:3d5a3d241a5e 2296 // /* void */ i2cMaster.start (void) // Creates a start condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2297 // /* void */ i2cMaster.stop (void) // Creates a stop condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2298 // /* int */ i2cMaster.transfer (int addr8bit, const char *tx_buffer, int tx_length, char *rx_buffer, int rx_length, const event_callback_t &callback, int event=I2C_EVENT_TRANSFER_COMPLETE, bool repeated=false) // Start nonblocking I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2299 // /* void */ i2cMaster.abort_transfer () // Abort the ongoing I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2300 }
whismanoid 53:3d5a3d241a5e 2301 break;
whismanoid 53:3d5a3d241a5e 2302 case '^':
whismanoid 53:3d5a3d241a5e 2303 {
whismanoid 53:3d5a3d241a5e 2304 // declare in narrower scope: MAX32625MBED I2C i2cMaster(...)
whismanoid 53:3d5a3d241a5e 2305 I2C i2cMaster(I2C0_SDA, I2C0_SCL); // sda scl TARGET_MAX32635MBED: P1_6, P1_7 Arduino 10-pin header
whismanoid 53:3d5a3d241a5e 2306 i2cMaster.frequency(g_I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2307 // %I^ cmd=? -- i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2308 // TODO: i2c transfer
whismanoid 53:3d5a3d241a5e 2309 //const int addr7bit = 0x48; // 7 bit I2C address
whismanoid 53:3d5a3d241a5e 2310 //const int addr8bit = 0x48 << 1; // 8bit I2C address, 0x90
whismanoid 53:3d5a3d241a5e 2311 // /* int */ i2cMaster.read (int addr8bit, char *data, int length, bool repeated=false) // Read from an I2C slave.
whismanoid 53:3d5a3d241a5e 2312 // /* int */ i2cMaster.read (int ack) // Read a single byte from the I2C bus.
whismanoid 53:3d5a3d241a5e 2313 // /* int */ i2cMaster.write (int addr8bit, const char *data, int length, bool repeated=false) // Write to an I2C slave.
whismanoid 53:3d5a3d241a5e 2314 // /* int */ i2cMaster.write (int data) // Write single byte out on the I2C bus.
whismanoid 53:3d5a3d241a5e 2315 // /* void */ i2cMaster.start (void) // Creates a start condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2316 // /* void */ i2cMaster.stop (void) // Creates a stop condition on the I2C bus.
whismanoid 53:3d5a3d241a5e 2317 // /* int */ i2cMaster.transfer (int addr8bit, const char *tx_buffer, int tx_length, char *rx_buffer, int rx_length, const event_callback_t &callback, int event=I2C_EVENT_TRANSFER_COMPLETE, bool repeated=false) // Start nonblocking I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2318 // /* void */ i2cMaster.abort_transfer () // Abort the ongoing I2C transfer. More...
whismanoid 53:3d5a3d241a5e 2319 }
whismanoid 53:3d5a3d241a5e 2320 break;
whismanoid 53:3d5a3d241a5e 2321 } // switch(cmdLine[2])
whismanoid 53:3d5a3d241a5e 2322 break;
whismanoid 53:3d5a3d241a5e 2323 #endif
whismanoid 53:3d5a3d241a5e 2324 //
whismanoid 53:3d5a3d241a5e 2325 #if HAS_SPI // SUPPORT_SPI
whismanoid 53:3d5a3d241a5e 2326 case 'S': case 's':
whismanoid 53:3d5a3d241a5e 2327 {
whismanoid 53:3d5a3d241a5e 2328 // %S... -- SPI diagnostics
whismanoid 53:3d5a3d241a5e 2329 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 2330 // %SW -- write (write and read)
whismanoid 53:3d5a3d241a5e 2331 // %SR -- read (alias for %SW because SPI always write and read)
whismanoid 53:3d5a3d241a5e 2332 //
whismanoid 53:3d5a3d241a5e 2333 // Process arguments SCLK=\d+(kHZ|MHZ) CPOL=\d CPHA=\d
whismanoid 53:3d5a3d241a5e 2334 bool isUpdatedSPIConfig = false;
whismanoid 53:3d5a3d241a5e 2335 // parse cmdLine arg (CPOL=\d)? --> g_SPI_dataMode | SPI_MODE2
whismanoid 53:3d5a3d241a5e 2336 // parse cmdLine arg (CPHA=\d)? --> g_SPI_dataMode | SPI_MODE1
whismanoid 53:3d5a3d241a5e 2337 if (cmdLine.parse_flag("CPOL", g_SPI_dataMode, SPI_MODE2))
whismanoid 53:3d5a3d241a5e 2338 {
whismanoid 53:3d5a3d241a5e 2339 isUpdatedSPIConfig = true;
whismanoid 53:3d5a3d241a5e 2340 }
whismanoid 53:3d5a3d241a5e 2341 if (cmdLine.parse_flag("CPHA", g_SPI_dataMode, SPI_MODE1))
whismanoid 53:3d5a3d241a5e 2342 {
whismanoid 53:3d5a3d241a5e 2343 isUpdatedSPIConfig = true;
whismanoid 53:3d5a3d241a5e 2344 }
whismanoid 53:3d5a3d241a5e 2345 if (cmdLine.parse_flag("CS", g_SPI_cs_state, 1))
whismanoid 53:3d5a3d241a5e 2346 {
whismanoid 53:3d5a3d241a5e 2347 isUpdatedSPIConfig = true;
whismanoid 53:3d5a3d241a5e 2348 }
whismanoid 53:3d5a3d241a5e 2349 // parse cmdLine arg (SCLK=\d+(kHZ|MHZ)?)? --> g_SPI_SCLK_Hz
whismanoid 53:3d5a3d241a5e 2350 if (cmdLine.parse_frequency_Hz("SCLK", g_SPI_SCLK_Hz))
whismanoid 53:3d5a3d241a5e 2351 {
whismanoid 53:3d5a3d241a5e 2352 isUpdatedSPIConfig = true;
whismanoid 53:3d5a3d241a5e 2353 // TODO1: validate g_SPI_SCLK_Hz against system clock frequency F_CPU
whismanoid 53:3d5a3d241a5e 2354 if (g_SPI_SCLK_Hz > limit_max_SPI_SCLK_Hz)
whismanoid 53:3d5a3d241a5e 2355 {
whismanoid 53:3d5a3d241a5e 2356 g_SPI_SCLK_Hz = limit_max_SPI_SCLK_Hz;
whismanoid 53:3d5a3d241a5e 2357 }
whismanoid 53:3d5a3d241a5e 2358 if (g_SPI_SCLK_Hz < limit_min_SPI_SCLK_Hz)
whismanoid 53:3d5a3d241a5e 2359 {
whismanoid 53:3d5a3d241a5e 2360 g_SPI_SCLK_Hz = limit_min_SPI_SCLK_Hz;
whismanoid 53:3d5a3d241a5e 2361 }
whismanoid 53:3d5a3d241a5e 2362 }
whismanoid 53:3d5a3d241a5e 2363 // Update SPI configuration
whismanoid 53:3d5a3d241a5e 2364 if (isUpdatedSPIConfig)
whismanoid 53:3d5a3d241a5e 2365 {
whismanoid 53:3d5a3d241a5e 2366 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 2367 spi_cs = g_SPI_cs_state;
whismanoid 53:3d5a3d241a5e 2368 spi.format(8,g_SPI_dataMode); // int bits_must_be_8, int mode=0_3 CPOL=0,CPHA=0
whismanoid 53:3d5a3d241a5e 2369 #if APPLICATION_MAX5715
whismanoid 53:3d5a3d241a5e 2370 g_MAX5715_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 53:3d5a3d241a5e 2371 #elif APPLICATION_MAX11131
whismanoid 53:3d5a3d241a5e 2372 g_MAX11131_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 53:3d5a3d241a5e 2373 #elif APPLICATION_MAX5171
whismanoid 53:3d5a3d241a5e 2374 g_MAX5171_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 53:3d5a3d241a5e 2375 #elif APPLICATION_MAX11410
whismanoid 53:3d5a3d241a5e 2376 g_MAX11410_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 53:3d5a3d241a5e 2377 #elif APPLICATION_MAX12345
whismanoid 53:3d5a3d241a5e 2378 g_MAX12345_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 53:3d5a3d241a5e 2379 #else
whismanoid 53:3d5a3d241a5e 2380 spi.frequency(g_SPI_SCLK_Hz); // int SCLK_Hz=1000000 = 1MHz (initial default)
whismanoid 53:3d5a3d241a5e 2381 #endif
whismanoid 53:3d5a3d241a5e 2382 //
whismanoid 53:3d5a3d241a5e 2383 double ideal_divisor = ((double)SystemCoreClock) / g_SPI_SCLK_Hz;
whismanoid 53:3d5a3d241a5e 2384 int actual_divisor = (int)(ideal_divisor + 0.0); // frequency divisor truncate
whismanoid 53:3d5a3d241a5e 2385 double actual_SCLK_Hz = SystemCoreClock / actual_divisor;
whismanoid 53:3d5a3d241a5e 2386 //
whismanoid 53:3d5a3d241a5e 2387 // fixed: mbed-os-5.11: [Warning] format '%d' expects argument of type 'int', but argument 6 has type 'uint32_t {aka long unsigned int}' [-Wformat=]
whismanoid 53:3d5a3d241a5e 2388 cmdLine.serial().printf(
whismanoid 53:3d5a3d241a5e 2389 "\r\n %%SC CPOL=%d CPHA=%d CS=%d SCLK=%ld=%1.3fMHz (%1.1fMHz/%1.2f = actual %1.3fMHz) -- SPI config",
whismanoid 53:3d5a3d241a5e 2390 ((g_SPI_dataMode & SPI_MODE2) ? 1 : 0),
whismanoid 53:3d5a3d241a5e 2391 ((g_SPI_dataMode & SPI_MODE1) ? 1 : 0),
whismanoid 53:3d5a3d241a5e 2392 g_SPI_cs_state,
whismanoid 53:3d5a3d241a5e 2393 g_SPI_SCLK_Hz,
whismanoid 53:3d5a3d241a5e 2394 (g_SPI_SCLK_Hz / 1000000.),
whismanoid 53:3d5a3d241a5e 2395 ((double)(SystemCoreClock / 1000000.)),
whismanoid 53:3d5a3d241a5e 2396 ideal_divisor,
whismanoid 53:3d5a3d241a5e 2397 (actual_SCLK_Hz / 1000000.)
whismanoid 53:3d5a3d241a5e 2398 );
whismanoid 53:3d5a3d241a5e 2399 }
whismanoid 53:3d5a3d241a5e 2400 // get next character
whismanoid 53:3d5a3d241a5e 2401 switch (cmdLine[2])
whismanoid 53:3d5a3d241a5e 2402 {
whismanoid 53:3d5a3d241a5e 2403 case 'C': case 's':
whismanoid 53:3d5a3d241a5e 2404 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 2405 break;
whismanoid 55:75c249929a5e 2406 case 'D': case 'd':
whismanoid 55:75c249929a5e 2407 // %SD -- SPI diagnostic messages enable
whismanoid 55:75c249929a5e 2408 if (g_MAX11043_device.onSPIprint) {
whismanoid 55:75c249929a5e 2409 g_MAX11043_device.onSPIprint = NULL;
whismanoid 55:75c249929a5e 2410 }
whismanoid 55:75c249929a5e 2411 else {
whismanoid 55:75c249929a5e 2412 void onSPIprint_handler(size_t byteCount, uint8_t mosiData[], uint8_t misoData[]);
whismanoid 55:75c249929a5e 2413 g_MAX11043_device.onSPIprint = onSPIprint_handler;
whismanoid 55:75c249929a5e 2414 }
whismanoid 55:75c249929a5e 2415 break;
whismanoid 53:3d5a3d241a5e 2416 case 'W': case 'R': case 'w': case 'r':
whismanoid 53:3d5a3d241a5e 2417 {
whismanoid 53:3d5a3d241a5e 2418 // %SW -- write (write and read)
whismanoid 53:3d5a3d241a5e 2419 // %SR -- read (alias for %SW because SPI always write and read)
whismanoid 53:3d5a3d241a5e 2420 // parse cmdLine byte list --> int byteCount; int mosiData[MAX_SPI_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2421 #define MAX_SPI_BYTE_COUNT 32
whismanoid 53:3d5a3d241a5e 2422 size_t byteCount = byteCount;
whismanoid 53:3d5a3d241a5e 2423 static char mosiData[MAX_SPI_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2424 static char misoData[MAX_SPI_BYTE_COUNT];
whismanoid 53:3d5a3d241a5e 2425 if (cmdLine.parse_byteCount_byteList_hex(byteCount, mosiData,
whismanoid 53:3d5a3d241a5e 2426 MAX_SPI_BYTE_COUNT))
whismanoid 53:3d5a3d241a5e 2427 {
whismanoid 53:3d5a3d241a5e 2428 // hex dump mosiData[0..byteCount-1]
whismanoid 53:3d5a3d241a5e 2429 cmdLine.serial().printf("\r\nSPI");
whismanoid 53:3d5a3d241a5e 2430 if (byteCount > 7) {
whismanoid 53:3d5a3d241a5e 2431 cmdLine.serial().printf(" byteCount:%d", byteCount);
whismanoid 53:3d5a3d241a5e 2432 }
whismanoid 53:3d5a3d241a5e 2433 cmdLine.serial().printf(" MOSI->");
whismanoid 53:3d5a3d241a5e 2434 for (unsigned int byteIndex = 0; byteIndex < byteCount; byteIndex++)
whismanoid 53:3d5a3d241a5e 2435 {
whismanoid 53:3d5a3d241a5e 2436 cmdLine.serial().printf(" 0x%2.2X", mosiData[byteIndex]);
whismanoid 53:3d5a3d241a5e 2437 }
whismanoid 53:3d5a3d241a5e 2438 spi_cs = 0;
whismanoid 53:3d5a3d241a5e 2439 unsigned int numBytesTransferred =
whismanoid 53:3d5a3d241a5e 2440 spi.write(mosiData, byteCount, misoData, byteCount);
whismanoid 53:3d5a3d241a5e 2441 spi_cs = 1;
whismanoid 53:3d5a3d241a5e 2442 // hex dump misoData[0..byteCount-1]
whismanoid 53:3d5a3d241a5e 2443 cmdLine.serial().printf(" MISO<-");
whismanoid 53:3d5a3d241a5e 2444 for (unsigned int byteIndex = 0; byteIndex < numBytesTransferred;
whismanoid 53:3d5a3d241a5e 2445 byteIndex++)
whismanoid 53:3d5a3d241a5e 2446 {
whismanoid 53:3d5a3d241a5e 2447 cmdLine.serial().printf(" 0x%2.2X", misoData[byteIndex]);
whismanoid 53:3d5a3d241a5e 2448 }
whismanoid 53:3d5a3d241a5e 2449 cmdLine.serial().printf(" ");
whismanoid 53:3d5a3d241a5e 2450 }
whismanoid 53:3d5a3d241a5e 2451 }
whismanoid 53:3d5a3d241a5e 2452 break;
whismanoid 53:3d5a3d241a5e 2453 } // switch(cmdLine[2])
whismanoid 53:3d5a3d241a5e 2454 } // case 'S': // %S... -- SPI diagnostics
whismanoid 53:3d5a3d241a5e 2455 break;
whismanoid 53:3d5a3d241a5e 2456 #endif
whismanoid 53:3d5a3d241a5e 2457 //
whismanoid 53:3d5a3d241a5e 2458 // A-Z,a-z,0-9 reserved for application use
whismanoid 53:3d5a3d241a5e 2459 } // switch(cmdLine[1])
whismanoid 53:3d5a3d241a5e 2460 } // end void pinsMonitor_submenu_onEOLcommandParser(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 2461
whismanoid 53:3d5a3d241a5e 2462
whismanoid 53:3d5a3d241a5e 2463 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2464 void main_menu_status(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 2465 {
whismanoid 53:3d5a3d241a5e 2466 cmdLine.serial().printf("\r\nMain menu");
whismanoid 53:3d5a3d241a5e 2467
whismanoid 53:3d5a3d241a5e 2468 cmdLine.serial().printf(" MAX11043 24-bit 200ksps Delta-Sigma ADC");
whismanoid 53:3d5a3d241a5e 2469
whismanoid 53:3d5a3d241a5e 2470 //cmdLine.serial().print(" %s", TARGET_NAME);
whismanoid 53:3d5a3d241a5e 2471 if (cmdLine.nameStr())
whismanoid 53:3d5a3d241a5e 2472 {
whismanoid 53:3d5a3d241a5e 2473 cmdLine.serial().printf(" [%s]", cmdLine.nameStr());
whismanoid 53:3d5a3d241a5e 2474
whismanoid 53:3d5a3d241a5e 2475 }
whismanoid 53:3d5a3d241a5e 2476 cmdLine.serial().printf("\r\n ? -- help");
whismanoid 53:3d5a3d241a5e 2477
whismanoid 53:3d5a3d241a5e 2478 }
whismanoid 53:3d5a3d241a5e 2479
whismanoid 53:3d5a3d241a5e 2480
whismanoid 53:3d5a3d241a5e 2481 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2482 void main_menu_help(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 2483 {
whismanoid 53:3d5a3d241a5e 2484 // ? -- help
whismanoid 53:3d5a3d241a5e 2485 //~ cmdLine.serial().print(F("\r\nMenu:"));
whismanoid 53:3d5a3d241a5e 2486 cmdLine.serial().printf("\r\n # -- lines beginning with # are comments");
whismanoid 53:3d5a3d241a5e 2487
whismanoid 53:3d5a3d241a5e 2488 cmdLine.serial().printf("\r\n . -- SelfTest");
whismanoid 53:3d5a3d241a5e 2489
whismanoid 53:3d5a3d241a5e 2490 //cmdLine.serial().print(F("\r\n ! -- Initial Configuration"));
whismanoid 53:3d5a3d241a5e 2491 //
whismanoid 53:3d5a3d241a5e 2492 // % standardize diagnostic commands
whismanoid 53:3d5a3d241a5e 2493 // %Hpin -- digital output high
whismanoid 53:3d5a3d241a5e 2494 // %Lpin -- digital output low
whismanoid 53:3d5a3d241a5e 2495 // %?pin -- digital input
whismanoid 53:3d5a3d241a5e 2496 // %A %Apin -- analog input
whismanoid 53:3d5a3d241a5e 2497 // %Ppin df=xx -- pwm output
whismanoid 53:3d5a3d241a5e 2498 // %Wpin -- measure high pulsewidth input in usec
whismanoid 53:3d5a3d241a5e 2499 // %wpin -- measure low pulsewidth input in usec
whismanoid 53:3d5a3d241a5e 2500 // %I... -- I2C diagnostics
whismanoid 53:3d5a3d241a5e 2501 // %IP -- I2C probe
whismanoid 53:3d5a3d241a5e 2502 // %IC scl=100khz ADDR=? -- I2C configure
whismanoid 53:3d5a3d241a5e 2503 // %IW ADDR=? cmd=? data,data,data -- write
whismanoid 53:3d5a3d241a5e 2504 // %IR ADDR=? RD=? -- read
whismanoid 53:3d5a3d241a5e 2505 // %I^ cmd=? -- i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2506 // %S... -- SPI diagnostics
whismanoid 53:3d5a3d241a5e 2507 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 2508 // %SW -- write (write and read)
whismanoid 53:3d5a3d241a5e 2509 // %SR -- read (alias for %SW because SPI always write and read)
whismanoid 53:3d5a3d241a5e 2510 // A-Z,a-z,0-9 reserved for application use
whismanoid 53:3d5a3d241a5e 2511 //
whismanoid 53:3d5a3d241a5e 2512 #if HAS_digitalInOuts
whismanoid 53:3d5a3d241a5e 2513 // %Hpin -- digital output high
whismanoid 53:3d5a3d241a5e 2514 // %Lpin -- digital output low
whismanoid 53:3d5a3d241a5e 2515 // %?pin -- digital input
whismanoid 53:3d5a3d241a5e 2516 cmdLine.serial().printf("\r\n %%Hn {pin:");
whismanoid 53:3d5a3d241a5e 2517 list_digitalInOutPins(cmdLine.serial());
whismanoid 53:3d5a3d241a5e 2518 cmdLine.serial().printf("} -- High Output");
whismanoid 53:3d5a3d241a5e 2519 cmdLine.serial().printf("\r\n %%Ln {pin:");
whismanoid 53:3d5a3d241a5e 2520 list_digitalInOutPins(cmdLine.serial());
whismanoid 53:3d5a3d241a5e 2521 cmdLine.serial().printf("} -- Low Output");
whismanoid 53:3d5a3d241a5e 2522 cmdLine.serial().printf("\r\n %%?n {pin:");
whismanoid 53:3d5a3d241a5e 2523 list_digitalInOutPins(cmdLine.serial());
whismanoid 53:3d5a3d241a5e 2524 cmdLine.serial().printf("} -- Input");
whismanoid 53:3d5a3d241a5e 2525 #endif
whismanoid 53:3d5a3d241a5e 2526
whismanoid 53:3d5a3d241a5e 2527 #if HAS_analogIns
whismanoid 53:3d5a3d241a5e 2528 // Menu A) analogRead A0..7
whismanoid 53:3d5a3d241a5e 2529 // %A %Apin -- analog input
whismanoid 53:3d5a3d241a5e 2530 // analogRead(pinIndex) // analog input pins A0, A1, A2, A3, A4, A5; float voltage = analogRead(A0) * (5.0 / 1023.0)
whismanoid 53:3d5a3d241a5e 2531 cmdLine.serial().printf("\r\n %%A -- analogRead");
whismanoid 53:3d5a3d241a5e 2532 #endif
whismanoid 53:3d5a3d241a5e 2533
whismanoid 53:3d5a3d241a5e 2534 #if HAS_SPI2_MAX541
whismanoid 53:3d5a3d241a5e 2535 // TODO1: MAX541 max541(spi2_max541, spi2_max541_cs);
whismanoid 53:3d5a3d241a5e 2536 cmdLine.serial().printf("\r\n %%D -- DAC output MAX541 (SPI2)");
whismanoid 53:3d5a3d241a5e 2537 #endif
whismanoid 53:3d5a3d241a5e 2538
whismanoid 53:3d5a3d241a5e 2539 #if HAS_I2C // SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2540 // TODO: support I2C HAS_I2C // SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2541 // VERIFY: I2C utility commands SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2542 // VERIFY: report g_I2C_SCL_Hz = (F_CPU / ((TWBR * 2) + 16)) from last Wire_Sr.setClock(I2C_SCL_Hz);
whismanoid 53:3d5a3d241a5e 2543 // %I... -- I2C diagnostics
whismanoid 53:3d5a3d241a5e 2544 // %IP -- I2C probe
whismanoid 53:3d5a3d241a5e 2545 // %IC scl=100khz ADDR=? -- I2C configure
whismanoid 53:3d5a3d241a5e 2546 // %IW byte byte ... byte RD=? ADDR=0x -- write
whismanoid 53:3d5a3d241a5e 2547 // %IR ADDR=? RD=? -- read
whismanoid 53:3d5a3d241a5e 2548 // %I^ cmd=? -- i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2549 //g_I2C_SCL_Hz = (F_CPU / ((TWBR * 2) + 16)); // 'F_CPU' 'TWBR' not declared in this scope
whismanoid 53:3d5a3d241a5e 2550 cmdLine.serial().printf("\r\n %%IC ADDR=0x%2.2x=(0x%2.2x>>1) SCL=%d=%1.3fkHz -- I2C config",
whismanoid 53:3d5a3d241a5e 2551 g_I2C_deviceAddress7, (g_I2C_deviceAddress7 << 1), g_I2C_SCL_Hz,
whismanoid 53:3d5a3d241a5e 2552 (g_I2C_SCL_Hz / 1000.));
whismanoid 53:3d5a3d241a5e 2553 cmdLine.serial().printf("\r\n %%IW byte byte ... byte RD=? ADDR=0x%2.2x -- I2C write/read",
whismanoid 53:3d5a3d241a5e 2554 g_I2C_deviceAddress7);
whismanoid 53:3d5a3d241a5e 2555 //
whismanoid 53:3d5a3d241a5e 2556 #if SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2557 // Menu ^ cmd=?) i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2558 cmdLine.serial().printf("\r\n %%I^ cmd=? -- i2c_smbus_read_word_data");
whismanoid 53:3d5a3d241a5e 2559 // test low-level I2C i2c_smbus_read_word_data
whismanoid 53:3d5a3d241a5e 2560 #endif // SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2561 //cmdLine.serial().printf(" H) Hunt for attached I2C devices");
whismanoid 53:3d5a3d241a5e 2562 cmdLine.serial().printf("\r\n %%IP -- I2C Probe for attached devices");
whismanoid 53:3d5a3d241a5e 2563 // cmdLine.serial().printf(" s) search i2c address");
whismanoid 53:3d5a3d241a5e 2564 #endif // SUPPORT_I2C
whismanoid 53:3d5a3d241a5e 2565
whismanoid 53:3d5a3d241a5e 2566 #if HAS_SPI // SUPPORT_SPI
whismanoid 53:3d5a3d241a5e 2567 // TODO: support SPI HAS_SPI // SUPPORT_SPI
whismanoid 53:3d5a3d241a5e 2568 // SPI test command S (mosiData)+
whismanoid 53:3d5a3d241a5e 2569 // %S... -- SPI diagnostics
whismanoid 53:3d5a3d241a5e 2570 // %SC sclk=1Mhz -- SPI configure
whismanoid 53:3d5a3d241a5e 2571 // %SW -- write (write and read)
whismanoid 53:3d5a3d241a5e 2572 // %SR -- read (alias for %SW because SPI always write and read)
whismanoid 53:3d5a3d241a5e 2573 // spi.format(8,0); // int bits_must_be_8, int mode=0_3 CPOL=0,CPHA=0 rising edge (initial default)
whismanoid 53:3d5a3d241a5e 2574 // spi.format(8,1); // int bits_must_be_8, int mode=0_3 CPOL=0,CPHA=1 falling edge (initial default)
whismanoid 53:3d5a3d241a5e 2575 // spi.format(8,2); // int bits_must_be_8, int mode=0_3 CPOL=1,CPHA=0 falling edge (initial default)
whismanoid 53:3d5a3d241a5e 2576 // spi.format(8,3); // int bits_must_be_8, int mode=0_3 CPOL=1,CPHA=1 rising edge (initial default)
whismanoid 53:3d5a3d241a5e 2577 // spi.frequency(1000000); // int SCLK_Hz=1000000 = 1MHz (initial default)
whismanoid 53:3d5a3d241a5e 2578 // mode | POL PHA
whismanoid 53:3d5a3d241a5e 2579 // -----+--------
whismanoid 53:3d5a3d241a5e 2580 // 0 | 0 0
whismanoid 53:3d5a3d241a5e 2581 // 1 | 0 1
whismanoid 53:3d5a3d241a5e 2582 // 2 | 1 0
whismanoid 53:3d5a3d241a5e 2583 // 3 | 1 1
whismanoid 53:3d5a3d241a5e 2584 //cmdLine.serial().printf(" S) SPI mosi,mosi,...mosi hex bytes SCLK=1000000 CPOL=0 CPHA=0");
whismanoid 53:3d5a3d241a5e 2585 // fixed: mbed-os-5.11: [Warning] format '%d' expects argument of type 'int', but argument 3 has type 'uint32_t {aka long unsigned int}' [-Wformat=]
whismanoid 53:3d5a3d241a5e 2586 cmdLine.serial().printf("\r\n %%SC SCLK=%ld=%1.3fMHz CPOL=%d CPHA=%d -- SPI config",
whismanoid 53:3d5a3d241a5e 2587 g_SPI_SCLK_Hz, (g_SPI_SCLK_Hz / 1000000.),
whismanoid 53:3d5a3d241a5e 2588 ((g_SPI_dataMode & SPI_MODE2) ? 1 : 0),
whismanoid 53:3d5a3d241a5e 2589 ((g_SPI_dataMode & SPI_MODE1) ? 1 : 0));
whismanoid 56:a3144eaea1a8 2590 cmdLine.serial().printf("\r\n %%SD -- SPI diagnostic messages ");
whismanoid 56:a3144eaea1a8 2591 if (g_MAX11043_device.onSPIprint) {
whismanoid 56:a3144eaea1a8 2592 cmdLine.serial().printf("hide");
whismanoid 56:a3144eaea1a8 2593 }
whismanoid 56:a3144eaea1a8 2594 else {
whismanoid 56:a3144eaea1a8 2595 cmdLine.serial().printf("show");
whismanoid 56:a3144eaea1a8 2596 }
whismanoid 53:3d5a3d241a5e 2597 cmdLine.serial().printf("\r\n %%SW mosi,mosi,...mosi -- SPI write hex bytes");
whismanoid 53:3d5a3d241a5e 2598 // VERIFY: parse new SPI settings parse_strCommandArgs() SCLK=1000000 CPOL=0 CPHA=0
whismanoid 53:3d5a3d241a5e 2599 #endif // SUPPORT_SPI
whismanoid 53:3d5a3d241a5e 2600 //
whismanoid 53:3d5a3d241a5e 2601 // Application-specific commands (help text) here
whismanoid 53:3d5a3d241a5e 2602 //
whismanoid 53:3d5a3d241a5e 2603 #if APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2604 cmdLine.serial().printf("\r\n A-Z,a-z,0-9 -- reserved for application use"); // ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2605 #endif // APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2606 //
whismanoid 53:3d5a3d241a5e 2607
whismanoid 53:3d5a3d241a5e 2608 extern bool MAX11043_menu_help(CmdLine & cmdLine); // defined in Test_Menu_MAX11043.cpp\n
whismanoid 53:3d5a3d241a5e 2609 MAX11043_menu_help(cmdLine);
whismanoid 53:3d5a3d241a5e 2610 }
whismanoid 53:3d5a3d241a5e 2611
whismanoid 53:3d5a3d241a5e 2612
whismanoid 53:3d5a3d241a5e 2613
whismanoid 53:3d5a3d241a5e 2614 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2615 // main menu command-line parser
whismanoid 53:3d5a3d241a5e 2616 // invoked by CmdLine::append(char ch) or CmdLine::idleAppendIfReadable()
whismanoid 53:3d5a3d241a5e 2617 void main_menu_onEOLcommandParser(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 2618 {
whismanoid 53:3d5a3d241a5e 2619 // DIAGNOSTIC: print line buffer
whismanoid 53:3d5a3d241a5e 2620 //~ cmdLine.serial().printf("\r\nmain_menu_onEOLcommandParser: ~%s~\r\n", cmdLine.str());
whismanoid 53:3d5a3d241a5e 2621 //
whismanoid 53:3d5a3d241a5e 2622 switch (cmdLine[0])
whismanoid 53:3d5a3d241a5e 2623 {
whismanoid 53:3d5a3d241a5e 2624 case '?':
whismanoid 53:3d5a3d241a5e 2625 main_menu_status(cmdLine);
whismanoid 53:3d5a3d241a5e 2626 main_menu_help(cmdLine);
whismanoid 53:3d5a3d241a5e 2627 // print command prompt
whismanoid 53:3d5a3d241a5e 2628 //cmdLine.serial().printf("\r\n>");
whismanoid 53:3d5a3d241a5e 2629 break;
whismanoid 53:3d5a3d241a5e 2630 case '\r': case '\n': // ignore blank line
whismanoid 53:3d5a3d241a5e 2631 case '\0': // ignore empty line
whismanoid 53:3d5a3d241a5e 2632 case '#': // ignore comment line
whismanoid 53:3d5a3d241a5e 2633 // # -- lines beginning with # are comments
whismanoid 53:3d5a3d241a5e 2634 main_menu_status(cmdLine);
whismanoid 53:3d5a3d241a5e 2635 //~ main_menu_help(cmdLine);
whismanoid 53:3d5a3d241a5e 2636 // print command prompt
whismanoid 53:3d5a3d241a5e 2637 //cmdLine.serial().printf("\r\n>");
whismanoid 53:3d5a3d241a5e 2638 break;
whismanoid 53:3d5a3d241a5e 2639 #if ECHO_EOF_ON_EOL
whismanoid 53:3d5a3d241a5e 2640 case '\x04': // Unicode (U+0004) EOT END OF TRANSMISSION = CTRL+D as EOF end of file
whismanoid 53:3d5a3d241a5e 2641 cmdLine.serial().printf("\x04"); // immediately echo EOF for test scripting
whismanoid 53:3d5a3d241a5e 2642 diagnostic_led_EOF();
whismanoid 53:3d5a3d241a5e 2643 break;
whismanoid 53:3d5a3d241a5e 2644 case '\x1a': // Unicode (U+001A) SUB SUBSTITUTE = CTRL+Z as EOF end of file
whismanoid 53:3d5a3d241a5e 2645 cmdLine.serial().printf("\x1a"); // immediately echo EOF for test scripting
whismanoid 53:3d5a3d241a5e 2646 diagnostic_led_EOF();
whismanoid 53:3d5a3d241a5e 2647 break;
whismanoid 53:3d5a3d241a5e 2648 #endif
whismanoid 53:3d5a3d241a5e 2649 #if APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2650 case '.':
whismanoid 53:3d5a3d241a5e 2651 {
whismanoid 53:3d5a3d241a5e 2652 // . -- SelfTest
whismanoid 53:3d5a3d241a5e 2653 cmdLine.serial().printf("SelfTest()");
whismanoid 53:3d5a3d241a5e 2654 SelfTest(cmdLine);
whismanoid 53:3d5a3d241a5e 2655 }
whismanoid 53:3d5a3d241a5e 2656 break;
whismanoid 53:3d5a3d241a5e 2657 case '%':
whismanoid 53:3d5a3d241a5e 2658 {
whismanoid 53:3d5a3d241a5e 2659 pinsMonitor_submenu_onEOLcommandParser(cmdLine);
whismanoid 53:3d5a3d241a5e 2660 }
whismanoid 53:3d5a3d241a5e 2661 break; // case '%'
whismanoid 53:3d5a3d241a5e 2662 #endif // APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2663 //
whismanoid 53:3d5a3d241a5e 2664 // Application-specific commands here
whismanoid 53:3d5a3d241a5e 2665 // alphanumeric command codes A-Z,a-z,0-9 reserved for application use
whismanoid 53:3d5a3d241a5e 2666 //
whismanoid 53:3d5a3d241a5e 2667 #if APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2668 #endif // APPLICATION_ArduinoPinsMonitor
whismanoid 53:3d5a3d241a5e 2669
whismanoid 53:3d5a3d241a5e 2670 //
whismanoid 53:3d5a3d241a5e 2671 // add new commands here
whismanoid 53:3d5a3d241a5e 2672 //
whismanoid 53:3d5a3d241a5e 2673 default:
whismanoid 53:3d5a3d241a5e 2674 extern bool MAX11043_menu_onEOLcommandParser(CmdLine & cmdLine); // defined in Test_Menu_MAX11043.cpp
whismanoid 53:3d5a3d241a5e 2675 if (!MAX11043_menu_onEOLcommandParser(cmdLine))
whismanoid 53:3d5a3d241a5e 2676 { // not_handled_by_device_submenu
whismanoid 53:3d5a3d241a5e 2677 cmdLine.serial().printf("\r\n unknown command 0x%2.2x \"%s\"\r\n", cmdLine.str()[0], cmdLine.str());
whismanoid 53:3d5a3d241a5e 2678
whismanoid 53:3d5a3d241a5e 2679 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2680 cmdLine_DAPLINKserial.serial().printf("\r\n unknown command 0x%2.2x \"%s\"\r\n", cmdLine.str()[0], cmdLine.str());
whismanoid 53:3d5a3d241a5e 2681
whismanoid 53:3d5a3d241a5e 2682 # endif // HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2683 }
whismanoid 53:3d5a3d241a5e 2684 } // switch (cmdLine[0])
whismanoid 53:3d5a3d241a5e 2685 //
whismanoid 53:3d5a3d241a5e 2686 // print command prompt
whismanoid 53:3d5a3d241a5e 2687 cmdLine.serial().printf("\r\nMAX11043 > ");
whismanoid 53:3d5a3d241a5e 2688
whismanoid 53:3d5a3d241a5e 2689 } // end void main_menu_onEOLcommandParser(CmdLine & cmdLine)
whismanoid 53:3d5a3d241a5e 2690
whismanoid 53:3d5a3d241a5e 2691 //--------------------------------------------------
whismanoid 54:26a973c5dac4 2692 #if MAX11043_ONSPIPRINT
whismanoid 54:26a973c5dac4 2693 // Optional Diagnostic function to print SPI transactions
whismanoid 54:26a973c5dac4 2694 void onSPIprint_handler(size_t byteCount, uint8_t mosiData[], uint8_t misoData[])
whismanoid 54:26a973c5dac4 2695 {
whismanoid 54:26a973c5dac4 2696 cmdLine_serial.serial().printf("\r\nSPI MOSI->");
whismanoid 54:26a973c5dac4 2697 for (uint8_t index = 0; index < byteCount; index++) {
whismanoid 54:26a973c5dac4 2698 cmdLine_serial.serial().printf(" 0x%2.2X", mosiData[index]);
whismanoid 54:26a973c5dac4 2699 }
whismanoid 54:26a973c5dac4 2700 cmdLine_serial.serial().printf(" MISO<-");
whismanoid 54:26a973c5dac4 2701 for (uint8_t index = 0; index < byteCount; index++) {
whismanoid 54:26a973c5dac4 2702 cmdLine_serial.serial().printf(" 0x%2.2X", misoData[index]);
whismanoid 54:26a973c5dac4 2703 }
whismanoid 54:26a973c5dac4 2704 cmdLine_serial.serial().printf(" ");
whismanoid 54:26a973c5dac4 2705 }
whismanoid 54:26a973c5dac4 2706 #endif // MAX11043_ONSPIPRINT
whismanoid 54:26a973c5dac4 2707
whismanoid 54:26a973c5dac4 2708 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2709 void InitializeConfiguration()
whismanoid 53:3d5a3d241a5e 2710 {
whismanoid 53:3d5a3d241a5e 2711 // CODE GENERATOR: example code: member function Init
whismanoid 53:3d5a3d241a5e 2712 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2713 cmdLine_DAPLINKserial.serial().printf("\r\nMAX11043_Init()");
whismanoid 53:3d5a3d241a5e 2714
whismanoid 53:3d5a3d241a5e 2715 # endif
whismanoid 53:3d5a3d241a5e 2716 cmdLine_serial.serial().printf("\r\nMAX11043_Init()");
whismanoid 53:3d5a3d241a5e 2717
whismanoid 53:3d5a3d241a5e 2718 // Initialize MAX11043 and verify device ID
whismanoid 53:3d5a3d241a5e 2719 if (g_MAX11043_device.Init() == 0)
whismanoid 53:3d5a3d241a5e 2720 { // init failed; try "safe mode" SPI at slower SCLK rate
whismanoid 54:26a973c5dac4 2721 cmdLine_serial.serial().printf("\r\nMAX11043 Init failed; retry at SPI SCLK frequency 2000000 Hz\r\n");
whismanoid 54:26a973c5dac4 2722
whismanoid 53:3d5a3d241a5e 2723 g_SPI_SCLK_Hz = 2000000;
whismanoid 53:3d5a3d241a5e 2724 g_MAX11043_device.spi_frequency(2000000);
whismanoid 53:3d5a3d241a5e 2725 g_MAX11043_device.Init();
whismanoid 53:3d5a3d241a5e 2726 }
whismanoid 53:3d5a3d241a5e 2727 // CODE GENERATOR: get spi properties from device
whismanoid 53:3d5a3d241a5e 2728 if (g_SPI_SCLK_Hz > g_MAX11043_device.get_spi_frequency())
whismanoid 53:3d5a3d241a5e 2729 { // Device limits SPI SCLK frequency
whismanoid 53:3d5a3d241a5e 2730 g_SPI_SCLK_Hz = g_MAX11043_device.get_spi_frequency();
whismanoid 54:26a973c5dac4 2731 cmdLine_serial.serial().printf("\r\nMAX11043 limits SPI SCLK frequency to %d Hz\r\n", g_SPI_SCLK_Hz);
whismanoid 54:26a973c5dac4 2732
whismanoid 53:3d5a3d241a5e 2733 g_MAX11043_device.Init();
whismanoid 53:3d5a3d241a5e 2734 }
whismanoid 53:3d5a3d241a5e 2735 if (g_MAX11043_device.get_spi_frequency() > g_SPI_SCLK_Hz)
whismanoid 53:3d5a3d241a5e 2736 { // Platform limits SPI SCLK frequency
whismanoid 53:3d5a3d241a5e 2737 g_MAX11043_device.spi_frequency(g_SPI_SCLK_Hz);
whismanoid 54:26a973c5dac4 2738 cmdLine_serial.serial().printf("\r\nPlatform limits MAX11043 SPI SCLK frequency to %d Hz\r\n", g_SPI_SCLK_Hz);
whismanoid 54:26a973c5dac4 2739
whismanoid 53:3d5a3d241a5e 2740 g_MAX11043_device.Init();
whismanoid 53:3d5a3d241a5e 2741 }
whismanoid 53:3d5a3d241a5e 2742 g_SPI_dataMode = g_MAX11043_device.get_spi_dataMode();
whismanoid 53:3d5a3d241a5e 2743
whismanoid 53:3d5a3d241a5e 2744 # if MAX11043_ONSPIPRINT
whismanoid 53:3d5a3d241a5e 2745 // Optional Diagnostic function to print SPI transactions
whismanoid 53:3d5a3d241a5e 2746 g_MAX11043_device.onSPIprint = onSPIprint_handler;
whismanoid 53:3d5a3d241a5e 2747 # endif
whismanoid 53:3d5a3d241a5e 2748 }
whismanoid 53:3d5a3d241a5e 2749
whismanoid 53:3d5a3d241a5e 2750 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2751 // diagnostic rbg led GREEN
whismanoid 53:3d5a3d241a5e 2752 void diagnostic_led_EOF()
whismanoid 53:3d5a3d241a5e 2753 {
whismanoid 53:3d5a3d241a5e 2754 #if USE_LEDS
whismanoid 53:3d5a3d241a5e 2755 led1 = LED_ON; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led RED+GREEN=YELLOW
whismanoid 53:3d5a3d241a5e 2756 // TODO1: mbed-os-5.11: [Warning] 'static osStatus rtos::Thread::wait(uint32_t)' is deprecated: Static methods only affecting current thread cause confusion. Replaced by ThisThread::sleep_for. [since mbed-os-5.10] [-Wdeprecated-declarations]
whismanoid 53:3d5a3d241a5e 2757 ThisThread::sleep_for(250); // [since mbed-os-5.10] vs Thread::wait(250);
whismanoid 53:3d5a3d241a5e 2758 led1 = LED_OFF; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led GREEN
whismanoid 53:3d5a3d241a5e 2759 ThisThread::sleep_for(250); // [since mbed-os-5.10] vs Thread::wait(250);
whismanoid 53:3d5a3d241a5e 2760 led1 = LED_ON; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led RED+GREEN=YELLOW
whismanoid 53:3d5a3d241a5e 2761 ThisThread::sleep_for(250); // [since mbed-os-5.10] vs Thread::wait(250);
whismanoid 53:3d5a3d241a5e 2762 led1 = LED_OFF; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led GREEN
whismanoid 53:3d5a3d241a5e 2763 ThisThread::sleep_for(250); // [since mbed-os-5.10] vs Thread::wait(250);
whismanoid 53:3d5a3d241a5e 2764 #endif // USE_LEDS
whismanoid 53:3d5a3d241a5e 2765 }
whismanoid 53:3d5a3d241a5e 2766
whismanoid 53:3d5a3d241a5e 2767 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2768 // Support commands that get handled immediately w/o waiting for EOL
whismanoid 53:3d5a3d241a5e 2769 // handled as immediate command, do not append to buffer
whismanoid 53:3d5a3d241a5e 2770 void on_immediate_0x21() // Unicode (U+0021) ! EXCLAMATION MARK
whismanoid 53:3d5a3d241a5e 2771 {
whismanoid 53:3d5a3d241a5e 2772 #if USE_LEDS
whismanoid 53:3d5a3d241a5e 2773 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led BLUE
whismanoid 53:3d5a3d241a5e 2774 #endif // USE_LEDS
whismanoid 53:3d5a3d241a5e 2775 InitializeConfiguration();
whismanoid 53:3d5a3d241a5e 2776 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2777 }
whismanoid 53:3d5a3d241a5e 2778
whismanoid 53:3d5a3d241a5e 2779 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2780 // Support commands that get handled immediately w/o waiting for EOL
whismanoid 53:3d5a3d241a5e 2781 // handled as immediate command, do not append to buffer
whismanoid 53:3d5a3d241a5e 2782 void on_immediate_0x7b() // Unicode (U+007B) { LEFT CURLY BRACKET
whismanoid 53:3d5a3d241a5e 2783 {
whismanoid 53:3d5a3d241a5e 2784 #if HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2785 onButton2FallingEdge();
whismanoid 53:3d5a3d241a5e 2786 #endif
whismanoid 53:3d5a3d241a5e 2787 }
whismanoid 53:3d5a3d241a5e 2788
whismanoid 53:3d5a3d241a5e 2789 //--------------------------------------------------
whismanoid 53:3d5a3d241a5e 2790 // Support commands that get handled immediately w/o waiting for EOL
whismanoid 53:3d5a3d241a5e 2791 // handled as immediate command, do not append to buffer
whismanoid 53:3d5a3d241a5e 2792 void on_immediate_0x7d() // Unicode (U+007D) } RIGHT CURLY BRACKET
whismanoid 53:3d5a3d241a5e 2793 {
whismanoid 53:3d5a3d241a5e 2794 #if HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2795 onButton1FallingEdge();
whismanoid 53:3d5a3d241a5e 2796 #endif
whismanoid 53:3d5a3d241a5e 2797 }
whismanoid 53:3d5a3d241a5e 2798
whismanoid 53:3d5a3d241a5e 2799 //----------------------------------------
whismanoid 53:3d5a3d241a5e 2800 // example code main function
whismanoid 53:3d5a3d241a5e 2801 int main()
whismanoid 53:3d5a3d241a5e 2802 {
whismanoid 53:3d5a3d241a5e 2803 // Configure serial ports
whismanoid 53:3d5a3d241a5e 2804 cmdLine_serial.clear();
whismanoid 53:3d5a3d241a5e 2805 //~ cmdLine_serial.serial().printf("\r\n cmdLine_serial.serial().printf test\r\n");
whismanoid 53:3d5a3d241a5e 2806 cmdLine_serial.onEOLcommandParser = main_menu_onEOLcommandParser;
whismanoid 53:3d5a3d241a5e 2807 cmdLine_serial.diagnostic_led_EOF = diagnostic_led_EOF;
whismanoid 53:3d5a3d241a5e 2808 /// CmdLine::set_immediate_handler(char, functionPointer_void_void_on_immediate_0x21);
whismanoid 53:3d5a3d241a5e 2809 cmdLine_serial.on_immediate_0x21 = on_immediate_0x21;
whismanoid 53:3d5a3d241a5e 2810 cmdLine_serial.on_immediate_0x7b = on_immediate_0x7b;
whismanoid 53:3d5a3d241a5e 2811 cmdLine_serial.on_immediate_0x7d = on_immediate_0x7d;
whismanoid 53:3d5a3d241a5e 2812 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2813 cmdLine_DAPLINKserial.clear();
whismanoid 53:3d5a3d241a5e 2814 //~ cmdLine_DAPLINKserial.serial().printf("\r\n cmdLine_DAPLINKserial.serial().printf test\r\n");
whismanoid 53:3d5a3d241a5e 2815 cmdLine_DAPLINKserial.onEOLcommandParser = main_menu_onEOLcommandParser;
whismanoid 53:3d5a3d241a5e 2816 /// @todo CmdLine::set_immediate_handler(char, functionPointer_void_void_on_immediate_0x21);
whismanoid 53:3d5a3d241a5e 2817 cmdLine_DAPLINKserial.on_immediate_0x21 = on_immediate_0x21;
whismanoid 53:3d5a3d241a5e 2818 cmdLine_DAPLINKserial.on_immediate_0x7b = on_immediate_0x7b;
whismanoid 53:3d5a3d241a5e 2819 cmdLine_DAPLINKserial.on_immediate_0x7d = on_immediate_0x7d;
whismanoid 53:3d5a3d241a5e 2820 # endif
whismanoid 53:3d5a3d241a5e 2821
whismanoid 53:3d5a3d241a5e 2822
whismanoid 53:3d5a3d241a5e 2823 //print_banner();
whismanoid 53:3d5a3d241a5e 2824
whismanoid 53:3d5a3d241a5e 2825
whismanoid 53:3d5a3d241a5e 2826
whismanoid 53:3d5a3d241a5e 2827 #if USE_LEDS
whismanoid 53:3d5a3d241a5e 2828 #if defined(TARGET_MAX32630)
whismanoid 53:3d5a3d241a5e 2829 led1 = LED_ON; led2 = LED_OFF; led3 = LED_OFF; // diagnostic rbg led RED
whismanoid 53:3d5a3d241a5e 2830 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2831 led1 = LED_OFF; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led GREEN
whismanoid 53:3d5a3d241a5e 2832 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2833 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led BLUE
whismanoid 53:3d5a3d241a5e 2834 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2835 led1 = LED_ON; led2 = LED_ON; led3 = LED_ON; // diagnostic rbg led RED+GREEN+BLUE=WHITE
whismanoid 53:3d5a3d241a5e 2836 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2837 led1 = LED_OFF; led2 = LED_ON; led3 = LED_ON; // diagnostic rbg led GREEN+BLUE=CYAN
whismanoid 53:3d5a3d241a5e 2838 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2839 led1 = LED_ON; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led RED+BLUE=MAGENTA
whismanoid 53:3d5a3d241a5e 2840 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2841 led1 = LED_ON; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led RED+GREEN=YELLOW
whismanoid 53:3d5a3d241a5e 2842 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2843 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_OFF; // diagnostic rbg led BLACK
whismanoid 53:3d5a3d241a5e 2844 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2845 #elif defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 2846 led1 = LED_ON; led2 = LED_OFF; led3 = LED_OFF; // diagnostic rbg led RED
whismanoid 53:3d5a3d241a5e 2847 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2848 led1 = LED_OFF; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led GREEN
whismanoid 53:3d5a3d241a5e 2849 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2850 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led BLUE
whismanoid 53:3d5a3d241a5e 2851 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2852 led1 = LED_ON; led2 = LED_ON; led3 = LED_ON; // diagnostic rbg led RED+GREEN+BLUE=WHITE
whismanoid 53:3d5a3d241a5e 2853 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2854 led1 = LED_OFF; led2 = LED_ON; led3 = LED_ON; // diagnostic rbg led GREEN+BLUE=CYAN
whismanoid 53:3d5a3d241a5e 2855 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2856 led1 = LED_ON; led2 = LED_OFF; led3 = LED_ON; // diagnostic rbg led RED+BLUE=MAGENTA
whismanoid 53:3d5a3d241a5e 2857 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2858 led1 = LED_ON; led2 = LED_ON; led3 = LED_OFF; // diagnostic rbg led RED+GREEN=YELLOW
whismanoid 53:3d5a3d241a5e 2859 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2860 led1 = LED_OFF; led2 = LED_OFF; led3 = LED_OFF; // diagnostic rbg led BLACK
whismanoid 53:3d5a3d241a5e 2861 ThisThread::sleep_for(125); // [since mbed-os-5.10] vs Thread::wait(125);
whismanoid 53:3d5a3d241a5e 2862 #else // not defined(TARGET_LPC1768 etc.)
whismanoid 53:3d5a3d241a5e 2863 led1 = LED_ON;
whismanoid 53:3d5a3d241a5e 2864 led2 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2865 led3 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2866 led4 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2867 ThisThread::sleep_for(75); // [since mbed-os-5.10] vs Thread::wait(75);
whismanoid 53:3d5a3d241a5e 2868 //led1 = LED_ON;
whismanoid 53:3d5a3d241a5e 2869 led2 = LED_ON;
whismanoid 53:3d5a3d241a5e 2870 ThisThread::sleep_for(75); // [since mbed-os-5.10] vs Thread::wait(75);
whismanoid 53:3d5a3d241a5e 2871 led1 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2872 //led2 = LED_ON;
whismanoid 53:3d5a3d241a5e 2873 led3 = LED_ON;
whismanoid 53:3d5a3d241a5e 2874 ThisThread::sleep_for(75); // [since mbed-os-5.10] vs Thread::wait(75);
whismanoid 53:3d5a3d241a5e 2875 led2 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2876 //led3 = LED_ON;
whismanoid 53:3d5a3d241a5e 2877 led4 = LED_ON;
whismanoid 53:3d5a3d241a5e 2878 ThisThread::sleep_for(75); // [since mbed-os-5.10] vs Thread::wait(75);
whismanoid 53:3d5a3d241a5e 2879 led3 = LED_OFF;
whismanoid 53:3d5a3d241a5e 2880 led4 = LED_ON;
whismanoid 53:3d5a3d241a5e 2881 //
whismanoid 53:3d5a3d241a5e 2882 #endif // target definition
whismanoid 53:3d5a3d241a5e 2883 #endif
whismanoid 53:3d5a3d241a5e 2884
whismanoid 53:3d5a3d241a5e 2885 // cmd_TE();
whismanoid 53:3d5a3d241a5e 2886
whismanoid 53:3d5a3d241a5e 2887 // #if USE_LEDS
whismanoid 53:3d5a3d241a5e 2888 // rgb_led.white(); // diagnostic rbg led RED+GREEN+BLUE=WHITE
whismanoid 53:3d5a3d241a5e 2889 // #endif // USE_LEDS
whismanoid 53:3d5a3d241a5e 2890 led1 = LED_ON;
whismanoid 53:3d5a3d241a5e 2891 led2 = LED_ON;
whismanoid 53:3d5a3d241a5e 2892 led3 = LED_ON;
whismanoid 53:3d5a3d241a5e 2893
whismanoid 53:3d5a3d241a5e 2894 InitializeConfiguration();
whismanoid 53:3d5a3d241a5e 2895 // CODE GENERATOR: example code: member function Init
whismanoid 53:3d5a3d241a5e 2896 g_MAX11043_device.Init();
whismanoid 53:3d5a3d241a5e 2897
whismanoid 53:3d5a3d241a5e 2898 // example code: serial port banner message
whismanoid 53:3d5a3d241a5e 2899 #if defined(TARGET_MAX32625MBED)
whismanoid 53:3d5a3d241a5e 2900 serial.printf("MAX32625MBED ");
whismanoid 53:3d5a3d241a5e 2901 #elif defined(TARGET_MAX32600MBED)
whismanoid 53:3d5a3d241a5e 2902 serial.printf("MAX32600MBED ");
whismanoid 53:3d5a3d241a5e 2903 #elif defined(TARGET_NUCLEO_F446RE)
whismanoid 53:3d5a3d241a5e 2904 serial.printf("NUCLEO_F446RE ");
whismanoid 53:3d5a3d241a5e 2905 #endif
whismanoid 53:3d5a3d241a5e 2906 serial.printf("MAX11043BOB\r\n");
whismanoid 53:3d5a3d241a5e 2907
whismanoid 53:3d5a3d241a5e 2908
whismanoid 53:3d5a3d241a5e 2909 while (1) {
whismanoid 53:3d5a3d241a5e 2910 #if HAS_BUTTON1_DEMO_INTERRUPT_POLLING
whismanoid 53:3d5a3d241a5e 2911 // avoid runtime error on button1 press [mbed-os-5.11]
whismanoid 53:3d5a3d241a5e 2912 // instead of using InterruptIn, use DigitalIn and poll in main while(1)
whismanoid 53:3d5a3d241a5e 2913 # if HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2914 static int button1_value_prev = 1;
whismanoid 53:3d5a3d241a5e 2915 static int button1_value_now = 1;
whismanoid 53:3d5a3d241a5e 2916 button1_value_prev = button1_value_now;
whismanoid 53:3d5a3d241a5e 2917 button1_value_now = button1.read();
whismanoid 53:3d5a3d241a5e 2918 if ((button1_value_prev - button1_value_now) == 1)
whismanoid 53:3d5a3d241a5e 2919 {
whismanoid 53:3d5a3d241a5e 2920 // on button1 falling edge (button1 press)
whismanoid 53:3d5a3d241a5e 2921 onButton1FallingEdge();
whismanoid 53:3d5a3d241a5e 2922 }
whismanoid 53:3d5a3d241a5e 2923 # endif // HAS_BUTTON1_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2924 # if HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2925 static int button2_value_prev = 1;
whismanoid 53:3d5a3d241a5e 2926 static int button2_value_now = 1;
whismanoid 53:3d5a3d241a5e 2927 button2_value_prev = button2_value_now;
whismanoid 53:3d5a3d241a5e 2928 button2_value_now = button2.read();
whismanoid 53:3d5a3d241a5e 2929 if ((button2_value_prev - button2_value_now) == 1)
whismanoid 53:3d5a3d241a5e 2930 {
whismanoid 53:3d5a3d241a5e 2931 // on button2 falling edge (button2 press)
whismanoid 53:3d5a3d241a5e 2932 onButton2FallingEdge();
whismanoid 53:3d5a3d241a5e 2933 }
whismanoid 53:3d5a3d241a5e 2934 # endif // HAS_BUTTON2_DEMO_INTERRUPT
whismanoid 53:3d5a3d241a5e 2935 #endif
whismanoid 53:3d5a3d241a5e 2936 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2937 if (DAPLINKserial.readable()) {
whismanoid 53:3d5a3d241a5e 2938 cmdLine_DAPLINKserial.append(DAPLINKserial.getc());
whismanoid 53:3d5a3d241a5e 2939 }
whismanoid 53:3d5a3d241a5e 2940 # endif // HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2941 if (serial.readable()) {
whismanoid 53:3d5a3d241a5e 2942 int c = serial.getc();
whismanoid 53:3d5a3d241a5e 2943 cmdLine_serial.append(c);
whismanoid 53:3d5a3d241a5e 2944 #if IGNORE_AT_COMMANDS
whismanoid 53:3d5a3d241a5e 2945 # if HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2946 cmdLine_DAPLINKserial.serial().printf("%c", c);
whismanoid 53:3d5a3d241a5e 2947 # endif // HAS_DAPLINK_SERIAL
whismanoid 53:3d5a3d241a5e 2948 #endif // IGNORE_AT_COMMANDS
whismanoid 53:3d5a3d241a5e 2949 //
whismanoid 53:3d5a3d241a5e 2950 }
whismanoid 53:3d5a3d241a5e 2951 } // while(1)
whismanoid 53:3d5a3d241a5e 2952 }
whismanoid 53:3d5a3d241a5e 2953 //---------- CODE GENERATOR: end testMainCppCodeList