MCU driver/HAL for the Picocell Gateway concentrator board. The firmware implements either a USB CDC protocol or a UART protocol to bridge commands coming from host to the SX1308 SPI interface.

Committer:
dgabino
Date:
Wed Apr 11 14:42:47 2018 +0000
Revision:
0:c76361bd82e8
Initial commit

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dgabino 0:c76361bd82e8 1 /* mbed Microcontroller Library
dgabino 0:c76361bd82e8 2 * Copyright (c) 2006-2013 ARM Limited
dgabino 0:c76361bd82e8 3 *
dgabino 0:c76361bd82e8 4 * Licensed under the Apache License, Version 2.0 (the "License");
dgabino 0:c76361bd82e8 5 * you may not use this file except in compliance with the License.
dgabino 0:c76361bd82e8 6 * You may obtain a copy of the License at
dgabino 0:c76361bd82e8 7 *
dgabino 0:c76361bd82e8 8 * http://www.apache.org/licenses/LICENSE-2.0
dgabino 0:c76361bd82e8 9 *
dgabino 0:c76361bd82e8 10 * Unless required by applicable law or agreed to in writing, software
dgabino 0:c76361bd82e8 11 * distributed under the License is distributed on an "AS IS" BASIS,
dgabino 0:c76361bd82e8 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
dgabino 0:c76361bd82e8 13 * See the License for the specific language governing permissions and
dgabino 0:c76361bd82e8 14 * limitations under the License.
dgabino 0:c76361bd82e8 15 */
dgabino 0:c76361bd82e8 16 #ifndef MBED_SERIALBASE_H
dgabino 0:c76361bd82e8 17 #define MBED_SERIALBASE_H
dgabino 0:c76361bd82e8 18
dgabino 0:c76361bd82e8 19 #include "platform.h"
dgabino 0:c76361bd82e8 20
dgabino 0:c76361bd82e8 21 #if DEVICE_SERIAL
dgabino 0:c76361bd82e8 22
dgabino 0:c76361bd82e8 23 #include "Stream.h"
dgabino 0:c76361bd82e8 24 #include "Callback.h"
dgabino 0:c76361bd82e8 25 #include "serial_api.h"
dgabino 0:c76361bd82e8 26
dgabino 0:c76361bd82e8 27 #if DEVICE_SERIAL_ASYNCH
dgabino 0:c76361bd82e8 28 #include "CThunk.h"
dgabino 0:c76361bd82e8 29 #include "dma_api.h"
dgabino 0:c76361bd82e8 30 #endif
dgabino 0:c76361bd82e8 31
dgabino 0:c76361bd82e8 32 namespace mbed {
dgabino 0:c76361bd82e8 33
dgabino 0:c76361bd82e8 34 /** A base class for serial port implementations
dgabino 0:c76361bd82e8 35 * Can't be instantiated directly (use Serial or RawSerial)
dgabino 0:c76361bd82e8 36 *
dgabino 0:c76361bd82e8 37 * @Note Synchronization level: Set by subclass
dgabino 0:c76361bd82e8 38 */
dgabino 0:c76361bd82e8 39 class SerialBase {
dgabino 0:c76361bd82e8 40
dgabino 0:c76361bd82e8 41 public:
dgabino 0:c76361bd82e8 42 /** Set the baud rate of the serial port
dgabino 0:c76361bd82e8 43 *
dgabino 0:c76361bd82e8 44 * @param baudrate The baudrate of the serial port (default = 9600).
dgabino 0:c76361bd82e8 45 */
dgabino 0:c76361bd82e8 46 void baud(int baudrate);
dgabino 0:c76361bd82e8 47
dgabino 0:c76361bd82e8 48 enum Parity {
dgabino 0:c76361bd82e8 49 None = 0,
dgabino 0:c76361bd82e8 50 Odd,
dgabino 0:c76361bd82e8 51 Even,
dgabino 0:c76361bd82e8 52 Forced1,
dgabino 0:c76361bd82e8 53 Forced0
dgabino 0:c76361bd82e8 54 };
dgabino 0:c76361bd82e8 55
dgabino 0:c76361bd82e8 56 enum IrqType {
dgabino 0:c76361bd82e8 57 RxIrq = 0,
dgabino 0:c76361bd82e8 58 TxIrq,
dgabino 0:c76361bd82e8 59
dgabino 0:c76361bd82e8 60 IrqCnt
dgabino 0:c76361bd82e8 61 };
dgabino 0:c76361bd82e8 62
dgabino 0:c76361bd82e8 63 enum Flow {
dgabino 0:c76361bd82e8 64 Disabled = 0,
dgabino 0:c76361bd82e8 65 RTS,
dgabino 0:c76361bd82e8 66 CTS,
dgabino 0:c76361bd82e8 67 RTSCTS
dgabino 0:c76361bd82e8 68 };
dgabino 0:c76361bd82e8 69
dgabino 0:c76361bd82e8 70 /** Set the transmission format used by the serial port
dgabino 0:c76361bd82e8 71 *
dgabino 0:c76361bd82e8 72 * @param bits The number of bits in a word (5-8; default = 8)
dgabino 0:c76361bd82e8 73 * @param parity The parity used (SerialBase::None, SerialBase::Odd, SerialBase::Even, SerialBase::Forced1, SerialBase::Forced0; default = SerialBase::None)
dgabino 0:c76361bd82e8 74 * @param stop The number of stop bits (1 or 2; default = 1)
dgabino 0:c76361bd82e8 75 */
dgabino 0:c76361bd82e8 76 void format(int bits=8, Parity parity=SerialBase::None, int stop_bits=1);
dgabino 0:c76361bd82e8 77
dgabino 0:c76361bd82e8 78 /** Determine if there is a character available to read
dgabino 0:c76361bd82e8 79 *
dgabino 0:c76361bd82e8 80 * @returns
dgabino 0:c76361bd82e8 81 * 1 if there is a character available to read,
dgabino 0:c76361bd82e8 82 * 0 otherwise
dgabino 0:c76361bd82e8 83 */
dgabino 0:c76361bd82e8 84 int readable();
dgabino 0:c76361bd82e8 85
dgabino 0:c76361bd82e8 86 /** Determine if there is space available to write a character
dgabino 0:c76361bd82e8 87 *
dgabino 0:c76361bd82e8 88 * @returns
dgabino 0:c76361bd82e8 89 * 1 if there is space to write a character,
dgabino 0:c76361bd82e8 90 * 0 otherwise
dgabino 0:c76361bd82e8 91 */
dgabino 0:c76361bd82e8 92 int writeable();
dgabino 0:c76361bd82e8 93
dgabino 0:c76361bd82e8 94 /** Attach a function to call whenever a serial interrupt is generated
dgabino 0:c76361bd82e8 95 *
dgabino 0:c76361bd82e8 96 * @param func A pointer to a void function, or 0 to set as none
dgabino 0:c76361bd82e8 97 * @param type Which serial interrupt to attach the member function to (Seriall::RxIrq for receive, TxIrq for transmit buffer empty)
dgabino 0:c76361bd82e8 98 */
dgabino 0:c76361bd82e8 99 void attach(Callback<void()> func, IrqType type=RxIrq);
dgabino 0:c76361bd82e8 100
dgabino 0:c76361bd82e8 101 /** Attach a member function to call whenever a serial interrupt is generated
dgabino 0:c76361bd82e8 102 *
dgabino 0:c76361bd82e8 103 * @param obj pointer to the object to call the member function on
dgabino 0:c76361bd82e8 104 * @param method pointer to the member function to be called
dgabino 0:c76361bd82e8 105 * @param type Which serial interrupt to attach the member function to (Seriall::RxIrq for receive, TxIrq for transmit buffer empty)
dgabino 0:c76361bd82e8 106 */
dgabino 0:c76361bd82e8 107 template<typename T>
dgabino 0:c76361bd82e8 108 void attach(T *obj, void (T::*method)(), IrqType type=RxIrq) {
dgabino 0:c76361bd82e8 109 attach(Callback<void()>(obj, method), type);
dgabino 0:c76361bd82e8 110 }
dgabino 0:c76361bd82e8 111
dgabino 0:c76361bd82e8 112 /** Attach a member function to call whenever a serial interrupt is generated
dgabino 0:c76361bd82e8 113 *
dgabino 0:c76361bd82e8 114 * @param obj pointer to the object to call the member function on
dgabino 0:c76361bd82e8 115 * @param method pointer to the member function to be called
dgabino 0:c76361bd82e8 116 * @param type Which serial interrupt to attach the member function to (Seriall::RxIrq for receive, TxIrq for transmit buffer empty)
dgabino 0:c76361bd82e8 117 */
dgabino 0:c76361bd82e8 118 template<typename T>
dgabino 0:c76361bd82e8 119 void attach(T *obj, void (*method)(T*), IrqType type=RxIrq) {
dgabino 0:c76361bd82e8 120 attach(Callback<void()>(obj, method), type);
dgabino 0:c76361bd82e8 121 }
dgabino 0:c76361bd82e8 122
dgabino 0:c76361bd82e8 123 /** Generate a break condition on the serial line
dgabino 0:c76361bd82e8 124 */
dgabino 0:c76361bd82e8 125 void send_break();
dgabino 0:c76361bd82e8 126
dgabino 0:c76361bd82e8 127 protected:
dgabino 0:c76361bd82e8 128
dgabino 0:c76361bd82e8 129 /** Acquire exclusive access to this serial port
dgabino 0:c76361bd82e8 130 */
dgabino 0:c76361bd82e8 131 virtual void lock(void);
dgabino 0:c76361bd82e8 132
dgabino 0:c76361bd82e8 133 /** Release exclusive access to this serial port
dgabino 0:c76361bd82e8 134 */
dgabino 0:c76361bd82e8 135 virtual void unlock(void);
dgabino 0:c76361bd82e8 136
dgabino 0:c76361bd82e8 137 public:
dgabino 0:c76361bd82e8 138
dgabino 0:c76361bd82e8 139 #if DEVICE_SERIAL_FC
dgabino 0:c76361bd82e8 140 /** Set the flow control type on the serial port
dgabino 0:c76361bd82e8 141 *
dgabino 0:c76361bd82e8 142 * @param type the flow control type (Disabled, RTS, CTS, RTSCTS)
dgabino 0:c76361bd82e8 143 * @param flow1 the first flow control pin (RTS for RTS or RTSCTS, CTS for CTS)
dgabino 0:c76361bd82e8 144 * @param flow2 the second flow control pin (CTS for RTSCTS)
dgabino 0:c76361bd82e8 145 */
dgabino 0:c76361bd82e8 146 void set_flow_control(Flow type, PinName flow1=NC, PinName flow2=NC);
dgabino 0:c76361bd82e8 147 #endif
dgabino 0:c76361bd82e8 148
dgabino 0:c76361bd82e8 149 static void _irq_handler(uint32_t id, SerialIrq irq_type);
dgabino 0:c76361bd82e8 150
dgabino 0:c76361bd82e8 151 #if DEVICE_SERIAL_ASYNCH
dgabino 0:c76361bd82e8 152
dgabino 0:c76361bd82e8 153 /** Begin asynchronous write using 8bit buffer. The completition invokes registered TX event callback
dgabino 0:c76361bd82e8 154 *
dgabino 0:c76361bd82e8 155 * @param buffer The buffer where received data will be stored
dgabino 0:c76361bd82e8 156 * @param length The buffer length in bytes
dgabino 0:c76361bd82e8 157 * @param callback The event callback function
dgabino 0:c76361bd82e8 158 * @param event The logical OR of TX events
dgabino 0:c76361bd82e8 159 */
dgabino 0:c76361bd82e8 160 int write(const uint8_t *buffer, int length, const event_callback_t& callback, int event = SERIAL_EVENT_TX_COMPLETE);
dgabino 0:c76361bd82e8 161
dgabino 0:c76361bd82e8 162 /** Begin asynchronous write using 16bit buffer. The completition invokes registered TX event callback
dgabino 0:c76361bd82e8 163 *
dgabino 0:c76361bd82e8 164 * @param buffer The buffer where received data will be stored
dgabino 0:c76361bd82e8 165 * @param length The buffer length in bytes
dgabino 0:c76361bd82e8 166 * @param callback The event callback function
dgabino 0:c76361bd82e8 167 * @param event The logical OR of TX events
dgabino 0:c76361bd82e8 168 */
dgabino 0:c76361bd82e8 169 int write(const uint16_t *buffer, int length, const event_callback_t& callback, int event = SERIAL_EVENT_TX_COMPLETE);
dgabino 0:c76361bd82e8 170
dgabino 0:c76361bd82e8 171 /** Abort the on-going write transfer
dgabino 0:c76361bd82e8 172 */
dgabino 0:c76361bd82e8 173 void abort_write();
dgabino 0:c76361bd82e8 174
dgabino 0:c76361bd82e8 175 /** Begin asynchronous reading using 8bit buffer. The completition invokes registred RX event callback.
dgabino 0:c76361bd82e8 176 *
dgabino 0:c76361bd82e8 177 * @param buffer The buffer where received data will be stored
dgabino 0:c76361bd82e8 178 * @param length The buffer length in bytes
dgabino 0:c76361bd82e8 179 * @param callback The event callback function
dgabino 0:c76361bd82e8 180 * @param event The logical OR of RX events
dgabino 0:c76361bd82e8 181 * @param char_match The matching character
dgabino 0:c76361bd82e8 182 */
dgabino 0:c76361bd82e8 183 int read(uint8_t *buffer, int length, const event_callback_t& callback, int event = SERIAL_EVENT_RX_COMPLETE, unsigned char char_match = SERIAL_RESERVED_CHAR_MATCH);
dgabino 0:c76361bd82e8 184
dgabino 0:c76361bd82e8 185 /** Begin asynchronous reading using 16bit buffer. The completition invokes registred RX event callback.
dgabino 0:c76361bd82e8 186 *
dgabino 0:c76361bd82e8 187 * @param buffer The buffer where received data will be stored
dgabino 0:c76361bd82e8 188 * @param length The buffer length in bytes
dgabino 0:c76361bd82e8 189 * @param callback The event callback function
dgabino 0:c76361bd82e8 190 * @param event The logical OR of RX events
dgabino 0:c76361bd82e8 191 * @param char_match The matching character
dgabino 0:c76361bd82e8 192 */
dgabino 0:c76361bd82e8 193 int read(uint16_t *buffer, int length, const event_callback_t& callback, int event = SERIAL_EVENT_RX_COMPLETE, unsigned char char_match = SERIAL_RESERVED_CHAR_MATCH);
dgabino 0:c76361bd82e8 194
dgabino 0:c76361bd82e8 195 /** Abort the on-going read transfer
dgabino 0:c76361bd82e8 196 */
dgabino 0:c76361bd82e8 197 void abort_read();
dgabino 0:c76361bd82e8 198
dgabino 0:c76361bd82e8 199 /** Configure DMA usage suggestion for non-blocking TX transfers
dgabino 0:c76361bd82e8 200 *
dgabino 0:c76361bd82e8 201 * @param usage The usage DMA hint for peripheral
dgabino 0:c76361bd82e8 202 * @return Zero if the usage was set, -1 if a transaction is on-going
dgabino 0:c76361bd82e8 203 */
dgabino 0:c76361bd82e8 204 int set_dma_usage_tx(DMAUsage usage);
dgabino 0:c76361bd82e8 205
dgabino 0:c76361bd82e8 206 /** Configure DMA usage suggestion for non-blocking RX transfers
dgabino 0:c76361bd82e8 207 *
dgabino 0:c76361bd82e8 208 * @param usage The usage DMA hint for peripheral
dgabino 0:c76361bd82e8 209 * @return Zero if the usage was set, -1 if a transaction is on-going
dgabino 0:c76361bd82e8 210 */
dgabino 0:c76361bd82e8 211 int set_dma_usage_rx(DMAUsage usage);
dgabino 0:c76361bd82e8 212
dgabino 0:c76361bd82e8 213 protected:
dgabino 0:c76361bd82e8 214 void start_read(void *buffer, int buffer_size, char buffer_width, const event_callback_t& callback, int event, unsigned char char_match);
dgabino 0:c76361bd82e8 215 void start_write(const void *buffer, int buffer_size, char buffer_width, const event_callback_t& callback, int event);
dgabino 0:c76361bd82e8 216 void interrupt_handler_asynch(void);
dgabino 0:c76361bd82e8 217 #endif
dgabino 0:c76361bd82e8 218
dgabino 0:c76361bd82e8 219 protected:
dgabino 0:c76361bd82e8 220 SerialBase(PinName tx, PinName rx);
dgabino 0:c76361bd82e8 221 virtual ~SerialBase() {
dgabino 0:c76361bd82e8 222 }
dgabino 0:c76361bd82e8 223
dgabino 0:c76361bd82e8 224 int _base_getc();
dgabino 0:c76361bd82e8 225 int _base_putc(int c);
dgabino 0:c76361bd82e8 226
dgabino 0:c76361bd82e8 227 #if DEVICE_SERIAL_ASYNCH
dgabino 0:c76361bd82e8 228 CThunk<SerialBase> _thunk_irq;
dgabino 0:c76361bd82e8 229 event_callback_t _tx_callback;
dgabino 0:c76361bd82e8 230 event_callback_t _rx_callback;
dgabino 0:c76361bd82e8 231 DMAUsage _tx_usage;
dgabino 0:c76361bd82e8 232 DMAUsage _rx_usage;
dgabino 0:c76361bd82e8 233 #endif
dgabino 0:c76361bd82e8 234
dgabino 0:c76361bd82e8 235 serial_t _serial;
dgabino 0:c76361bd82e8 236 Callback<void()> _irq[IrqCnt];
dgabino 0:c76361bd82e8 237 int _baud;
dgabino 0:c76361bd82e8 238
dgabino 0:c76361bd82e8 239 };
dgabino 0:c76361bd82e8 240
dgabino 0:c76361bd82e8 241 } // namespace mbed
dgabino 0:c76361bd82e8 242
dgabino 0:c76361bd82e8 243 #endif
dgabino 0:c76361bd82e8 244
dgabino 0:c76361bd82e8 245 #endif