mbed library sources. Supersedes mbed-src.

Dependents:   Nucleo_Hello_Encoder BLE_iBeaconScan AM1805_DEMO DISCO-F429ZI_ExportTemplate1 ... more

Committer:
<>
Date:
Fri Sep 16 16:24:25 2016 +0100
Revision:
147:30b64687e01f
Parent:
144:ef7eb2e8f9f7
This updates the lib to the mbed lib v126

Who changed what in which revision?

UserRevisionLine numberNew contents of line
<> 144:ef7eb2e8f9f7 1 /* mbed Microcontroller Library
<> 144:ef7eb2e8f9f7 2 *******************************************************************************
<> 144:ef7eb2e8f9f7 3 * Copyright (c) 2014, STMicroelectronics
<> 144:ef7eb2e8f9f7 4 * All rights reserved.
<> 144:ef7eb2e8f9f7 5 *
<> 144:ef7eb2e8f9f7 6 * Redistribution and use in source and binary forms, with or without
<> 144:ef7eb2e8f9f7 7 * modification, are permitted provided that the following conditions are met:
<> 144:ef7eb2e8f9f7 8 *
<> 144:ef7eb2e8f9f7 9 * 1. Redistributions of source code must retain the above copyright notice,
<> 144:ef7eb2e8f9f7 10 * this list of conditions and the following disclaimer.
<> 144:ef7eb2e8f9f7 11 * 2. Redistributions in binary form must reproduce the above copyright notice,
<> 144:ef7eb2e8f9f7 12 * this list of conditions and the following disclaimer in the documentation
<> 144:ef7eb2e8f9f7 13 * and/or other materials provided with the distribution.
<> 144:ef7eb2e8f9f7 14 * 3. Neither the name of STMicroelectronics nor the names of its contributors
<> 144:ef7eb2e8f9f7 15 * may be used to endorse or promote products derived from this software
<> 144:ef7eb2e8f9f7 16 * without specific prior written permission.
<> 144:ef7eb2e8f9f7 17 *
<> 144:ef7eb2e8f9f7 18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
<> 144:ef7eb2e8f9f7 19 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
<> 144:ef7eb2e8f9f7 20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
<> 144:ef7eb2e8f9f7 21 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
<> 144:ef7eb2e8f9f7 22 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
<> 144:ef7eb2e8f9f7 23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
<> 144:ef7eb2e8f9f7 24 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
<> 144:ef7eb2e8f9f7 25 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
<> 144:ef7eb2e8f9f7 26 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
<> 144:ef7eb2e8f9f7 27 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
<> 144:ef7eb2e8f9f7 28 *******************************************************************************
<> 144:ef7eb2e8f9f7 29 */
<> 144:ef7eb2e8f9f7 30 #ifndef MBED_PINNAMES_H
<> 144:ef7eb2e8f9f7 31 #define MBED_PINNAMES_H
<> 144:ef7eb2e8f9f7 32
<> 144:ef7eb2e8f9f7 33 #include "cmsis.h"
<> 144:ef7eb2e8f9f7 34
<> 144:ef7eb2e8f9f7 35 #ifdef __cplusplus
<> 144:ef7eb2e8f9f7 36 extern "C" {
<> 144:ef7eb2e8f9f7 37 #endif
<> 144:ef7eb2e8f9f7 38
<> 144:ef7eb2e8f9f7 39 // See stm32f4xx_hal_gpio.h and stm32f4xx_hal_gpio_ex.h for values of MODE, PUPD and AFNUM
<> 147:30b64687e01f 40 #define STM_PIN_DATA(MODE, PUPD, AFNUM) ((int)(((AFNUM & 0x0F) << 7) | ((PUPD & 0x07) << 4) | ((MODE & 0x0F) << 0)))
<> 147:30b64687e01f 41 #define STM_PIN_DATA_EXT(MODE, PUPD, AFNUM, CHANNEL, INVERTED) ((int)(((INVERTED & 0x01) << 16) | ((CHANNEL & 0x1F) << 11) | ((AFNUM & 0x0F) << 7) | ((PUPD & 0x07) << 4) | ((MODE & 0x0F) << 0)))
<> 144:ef7eb2e8f9f7 42 #define STM_PIN_MODE(X) (((X) >> 0) & 0x0F)
<> 144:ef7eb2e8f9f7 43 #define STM_PIN_PUPD(X) (((X) >> 4) & 0x07)
<> 144:ef7eb2e8f9f7 44 #define STM_PIN_AFNUM(X) (((X) >> 7) & 0x0F)
<> 147:30b64687e01f 45 #define STM_PIN_CHANNEL(X) (((X) >> 11) & 0x1F)
<> 147:30b64687e01f 46 #define STM_PIN_INVERTED(X) (((X) >> 16) & 0x01)
<> 144:ef7eb2e8f9f7 47 #define STM_MODE_INPUT (0)
<> 144:ef7eb2e8f9f7 48 #define STM_MODE_OUTPUT_PP (1)
<> 144:ef7eb2e8f9f7 49 #define STM_MODE_OUTPUT_OD (2)
<> 144:ef7eb2e8f9f7 50 #define STM_MODE_AF_PP (3)
<> 144:ef7eb2e8f9f7 51 #define STM_MODE_AF_OD (4)
<> 144:ef7eb2e8f9f7 52 #define STM_MODE_ANALOG (5)
<> 144:ef7eb2e8f9f7 53 #define STM_MODE_IT_RISING (6)
<> 144:ef7eb2e8f9f7 54 #define STM_MODE_IT_FALLING (7)
<> 144:ef7eb2e8f9f7 55 #define STM_MODE_IT_RISING_FALLING (8)
<> 144:ef7eb2e8f9f7 56 #define STM_MODE_EVT_RISING (9)
<> 144:ef7eb2e8f9f7 57 #define STM_MODE_EVT_FALLING (10)
<> 144:ef7eb2e8f9f7 58 #define STM_MODE_EVT_RISING_FALLING (11)
<> 144:ef7eb2e8f9f7 59 #define STM_MODE_IT_EVT_RESET (12)
<> 144:ef7eb2e8f9f7 60
<> 144:ef7eb2e8f9f7 61 // High nibble = port number (0=A, 1=B, 2=C, 3=D, 4=E, 5=F, 6=G, 7=H)
<> 144:ef7eb2e8f9f7 62 // Low nibble = pin number
<> 144:ef7eb2e8f9f7 63 #define STM_PORT(X) (((uint32_t)(X) >> 4) & 0xF)
<> 144:ef7eb2e8f9f7 64 #define STM_PIN(X) ((uint32_t)(X) & 0xF)
<> 144:ef7eb2e8f9f7 65
<> 144:ef7eb2e8f9f7 66 typedef enum {
<> 144:ef7eb2e8f9f7 67 PIN_INPUT,
<> 144:ef7eb2e8f9f7 68 PIN_OUTPUT
<> 144:ef7eb2e8f9f7 69 } PinDirection;
<> 144:ef7eb2e8f9f7 70
<> 144:ef7eb2e8f9f7 71 typedef enum {
<> 144:ef7eb2e8f9f7 72 PA_0 = 0x00,
<> 144:ef7eb2e8f9f7 73 PA_1 = 0x01,
<> 144:ef7eb2e8f9f7 74 PA_2 = 0x02,
<> 144:ef7eb2e8f9f7 75 PA_3 = 0x03,
<> 144:ef7eb2e8f9f7 76 PA_4 = 0x04,
<> 144:ef7eb2e8f9f7 77 PA_5 = 0x05,
<> 144:ef7eb2e8f9f7 78 PA_6 = 0x06,
<> 144:ef7eb2e8f9f7 79 PA_7 = 0x07,
<> 144:ef7eb2e8f9f7 80 PA_8 = 0x08,
<> 144:ef7eb2e8f9f7 81 PA_9 = 0x09,
<> 144:ef7eb2e8f9f7 82 PA_10 = 0x0A,
<> 144:ef7eb2e8f9f7 83 PA_11 = 0x0B,
<> 144:ef7eb2e8f9f7 84 PA_12 = 0x0C,
<> 144:ef7eb2e8f9f7 85 PA_13 = 0x0D,
<> 144:ef7eb2e8f9f7 86 PA_14 = 0x0E,
<> 144:ef7eb2e8f9f7 87 PA_15 = 0x0F,
<> 144:ef7eb2e8f9f7 88
<> 144:ef7eb2e8f9f7 89 PB_0 = 0x10,
<> 144:ef7eb2e8f9f7 90 PB_1 = 0x11,
<> 144:ef7eb2e8f9f7 91 PB_2 = 0x12,
<> 144:ef7eb2e8f9f7 92 PB_3 = 0x13,
<> 144:ef7eb2e8f9f7 93 PB_4 = 0x14,
<> 144:ef7eb2e8f9f7 94 PB_5 = 0x15,
<> 144:ef7eb2e8f9f7 95 PB_6 = 0x16,
<> 144:ef7eb2e8f9f7 96 PB_7 = 0x17,
<> 144:ef7eb2e8f9f7 97 PB_8 = 0x18,
<> 144:ef7eb2e8f9f7 98 PB_9 = 0x19,
<> 144:ef7eb2e8f9f7 99 PB_10 = 0x1A,
<> 144:ef7eb2e8f9f7 100 PB_12 = 0x1C,
<> 144:ef7eb2e8f9f7 101 PB_13 = 0x1D,
<> 144:ef7eb2e8f9f7 102 PB_14 = 0x1E,
<> 144:ef7eb2e8f9f7 103 PB_15 = 0x1F,
<> 144:ef7eb2e8f9f7 104
<> 144:ef7eb2e8f9f7 105 PC_0 = 0x20,
<> 144:ef7eb2e8f9f7 106 PC_1 = 0x21,
<> 144:ef7eb2e8f9f7 107 PC_2 = 0x22,
<> 144:ef7eb2e8f9f7 108 PC_3 = 0x23,
<> 144:ef7eb2e8f9f7 109 PC_4 = 0x24,
<> 144:ef7eb2e8f9f7 110 PC_5 = 0x25,
<> 144:ef7eb2e8f9f7 111 PC_6 = 0x26,
<> 144:ef7eb2e8f9f7 112 PC_7 = 0x27,
<> 144:ef7eb2e8f9f7 113 PC_8 = 0x28,
<> 144:ef7eb2e8f9f7 114 PC_9 = 0x29,
<> 144:ef7eb2e8f9f7 115 PC_10 = 0x2A,
<> 144:ef7eb2e8f9f7 116 PC_11 = 0x2B,
<> 144:ef7eb2e8f9f7 117 PC_12 = 0x2C,
<> 144:ef7eb2e8f9f7 118 PC_13 = 0x2D,
<> 144:ef7eb2e8f9f7 119 PC_14 = 0x2E,
<> 144:ef7eb2e8f9f7 120 PC_15 = 0x2F,
<> 144:ef7eb2e8f9f7 121
<> 144:ef7eb2e8f9f7 122 PD_2 = 0x32,
<> 144:ef7eb2e8f9f7 123
<> 144:ef7eb2e8f9f7 124 PH_0 = 0x70,
<> 144:ef7eb2e8f9f7 125 PH_1 = 0x71,
<> 144:ef7eb2e8f9f7 126
<> 147:30b64687e01f 127 // ADC internal channels
<> 147:30b64687e01f 128 ADC_TEMP = 0xF0,
<> 147:30b64687e01f 129 ADC_VREF = 0xF1,
<> 147:30b64687e01f 130 ADC_VBAT = 0xF2,
<> 147:30b64687e01f 131
<> 144:ef7eb2e8f9f7 132 // Not connected
<> 144:ef7eb2e8f9f7 133 NC = (int)0xFFFFFFFF,
<> 144:ef7eb2e8f9f7 134
<> 144:ef7eb2e8f9f7 135 // Arduino connector namings
<> 144:ef7eb2e8f9f7 136 A0 = PC_0,
<> 144:ef7eb2e8f9f7 137 A1 = PC_1,
<> 144:ef7eb2e8f9f7 138 A2 = PC_2,
<> 144:ef7eb2e8f9f7 139 A3 = PC_3,
<> 144:ef7eb2e8f9f7 140 A4 = NC,
<> 144:ef7eb2e8f9f7 141 A5 = NC,
<> 144:ef7eb2e8f9f7 142 D0 = PA_3,
<> 144:ef7eb2e8f9f7 143 D1 = PA_2,
<> 144:ef7eb2e8f9f7 144 D2 = PA_1,
<> 144:ef7eb2e8f9f7 145 D3 = PA_0,
<> 144:ef7eb2e8f9f7 146 D4 = NC,
<> 144:ef7eb2e8f9f7 147 D5 = NC,
<> 144:ef7eb2e8f9f7 148 D6 = NC,
<> 144:ef7eb2e8f9f7 149 D7 = NC,
<> 144:ef7eb2e8f9f7 150 D8 = NC,
<> 144:ef7eb2e8f9f7 151 D9 = NC,
<> 144:ef7eb2e8f9f7 152 D10 = PB_12,
<> 144:ef7eb2e8f9f7 153 D11 = PB_15,
<> 144:ef7eb2e8f9f7 154 D12 = PB_14,
<> 144:ef7eb2e8f9f7 155 D13 = PB_13,
<> 144:ef7eb2e8f9f7 156 D14 = PC_9,
<> 144:ef7eb2e8f9f7 157 D15 = PA_8,
<> 144:ef7eb2e8f9f7 158
<> 144:ef7eb2e8f9f7 159 // Generic signals namings
<> 144:ef7eb2e8f9f7 160 LED1 = PB_0,
<> 144:ef7eb2e8f9f7 161 LED2 = PB_1,
<> 144:ef7eb2e8f9f7 162 LED3 = PB_0,
<> 144:ef7eb2e8f9f7 163 LED4 = PB_1,
<> 144:ef7eb2e8f9f7 164 USER_BUTTON = PB_7,
<> 144:ef7eb2e8f9f7 165 SERIAL_TX = PA_9,
<> 144:ef7eb2e8f9f7 166 SERIAL_RX = PA_10,
<> 144:ef7eb2e8f9f7 167 USBTX = PA_9,
<> 144:ef7eb2e8f9f7 168 USBRX = PA_10,
<> 144:ef7eb2e8f9f7 169 I2C_SCL = D15,
<> 144:ef7eb2e8f9f7 170 I2C_SDA = D14,
<> 144:ef7eb2e8f9f7 171 SPI_MOSI = D11,
<> 144:ef7eb2e8f9f7 172 SPI_MISO = D12,
<> 144:ef7eb2e8f9f7 173 SPI_SCK = D13,
<> 144:ef7eb2e8f9f7 174 SPI_CS = D10,
<> 144:ef7eb2e8f9f7 175 RF_SPI_MOSI = PA_7,
<> 144:ef7eb2e8f9f7 176 RF_SPI_MISO = PA_6,
<> 144:ef7eb2e8f9f7 177 RF_SPI_SCK = PA_5,
<> 144:ef7eb2e8f9f7 178 RF_SPI_CS = PA_4,
<> 144:ef7eb2e8f9f7 179 RF_RESET = PC_4,
<> 144:ef7eb2e8f9f7 180 RF_DIO0 = PC_10,
<> 144:ef7eb2e8f9f7 181 RF_DIO1 = PC_11,
<> 144:ef7eb2e8f9f7 182 RF_DIO2 = PC_12,
<> 144:ef7eb2e8f9f7 183 RF_DIO3 = PD_2,
<> 144:ef7eb2e8f9f7 184 RF_DIO4 = PB_5,
<> 144:ef7eb2e8f9f7 185 RF_DIO5 = PB_6,
<> 144:ef7eb2e8f9f7 186 RF_RXTX_SW = PC_13
<> 144:ef7eb2e8f9f7 187 } PinName;
<> 144:ef7eb2e8f9f7 188
<> 144:ef7eb2e8f9f7 189 typedef enum {
<> 144:ef7eb2e8f9f7 190 PullNone = 0,
<> 144:ef7eb2e8f9f7 191 PullUp = 1,
<> 144:ef7eb2e8f9f7 192 PullDown = 2,
<> 144:ef7eb2e8f9f7 193 OpenDrain = 3,
<> 144:ef7eb2e8f9f7 194 PullDefault = PullNone
<> 144:ef7eb2e8f9f7 195 } PinMode;
<> 144:ef7eb2e8f9f7 196
<> 144:ef7eb2e8f9f7 197 #ifdef __cplusplus
<> 144:ef7eb2e8f9f7 198 }
<> 144:ef7eb2e8f9f7 199 #endif
<> 144:ef7eb2e8f9f7 200
<> 144:ef7eb2e8f9f7 201 #endif