Backup 1

Committer:
borlanic
Date:
Tue Apr 24 11:45:18 2018 +0000
Revision:
0:02dd72d1d465
BaBoRo_test2 - backup 1

Who changed what in which revision?

UserRevisionLine numberNew contents of line
borlanic 0:02dd72d1d465 1 /* mbed Microcontroller Library
borlanic 0:02dd72d1d465 2 * Copyright (c) 2006-2013 ARM Limited
borlanic 0:02dd72d1d465 3 *
borlanic 0:02dd72d1d465 4 * Licensed under the Apache License, Version 2.0 (the "License");
borlanic 0:02dd72d1d465 5 * you may not use this file except in compliance with the License.
borlanic 0:02dd72d1d465 6 * You may obtain a copy of the License at
borlanic 0:02dd72d1d465 7 *
borlanic 0:02dd72d1d465 8 * http://www.apache.org/licenses/LICENSE-2.0
borlanic 0:02dd72d1d465 9 *
borlanic 0:02dd72d1d465 10 * Unless required by applicable law or agreed to in writing, software
borlanic 0:02dd72d1d465 11 * distributed under the License is distributed on an "AS IS" BASIS,
borlanic 0:02dd72d1d465 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
borlanic 0:02dd72d1d465 13 * See the License for the specific language governing permissions and
borlanic 0:02dd72d1d465 14 * limitations under the License.
borlanic 0:02dd72d1d465 15 */
borlanic 0:02dd72d1d465 16 #include "drivers/SerialBase.h"
borlanic 0:02dd72d1d465 17 #include "platform/mbed_wait_api.h"
borlanic 0:02dd72d1d465 18 #include "platform/mbed_critical.h"
borlanic 0:02dd72d1d465 19 #include "platform/mbed_power_mgmt.h"
borlanic 0:02dd72d1d465 20
borlanic 0:02dd72d1d465 21 #if DEVICE_SERIAL
borlanic 0:02dd72d1d465 22
borlanic 0:02dd72d1d465 23 namespace mbed {
borlanic 0:02dd72d1d465 24
borlanic 0:02dd72d1d465 25 SerialBase::SerialBase(PinName tx, PinName rx, int baud) :
borlanic 0:02dd72d1d465 26 #if DEVICE_SERIAL_ASYNCH
borlanic 0:02dd72d1d465 27 _thunk_irq(this), _tx_usage(DMA_USAGE_NEVER),
borlanic 0:02dd72d1d465 28 _rx_usage(DMA_USAGE_NEVER), _tx_callback(NULL),
borlanic 0:02dd72d1d465 29 _rx_callback(NULL),
borlanic 0:02dd72d1d465 30 #endif
borlanic 0:02dd72d1d465 31 _serial(), _baud(baud) {
borlanic 0:02dd72d1d465 32 // No lock needed in the constructor
borlanic 0:02dd72d1d465 33
borlanic 0:02dd72d1d465 34 for (size_t i = 0; i < sizeof _irq / sizeof _irq[0]; i++) {
borlanic 0:02dd72d1d465 35 _irq[i] = NULL;
borlanic 0:02dd72d1d465 36 }
borlanic 0:02dd72d1d465 37
borlanic 0:02dd72d1d465 38 serial_init(&_serial, tx, rx);
borlanic 0:02dd72d1d465 39 serial_baud(&_serial, _baud);
borlanic 0:02dd72d1d465 40 serial_irq_handler(&_serial, SerialBase::_irq_handler, (uint32_t)this);
borlanic 0:02dd72d1d465 41 }
borlanic 0:02dd72d1d465 42
borlanic 0:02dd72d1d465 43 void SerialBase::baud(int baudrate) {
borlanic 0:02dd72d1d465 44 lock();
borlanic 0:02dd72d1d465 45 serial_baud(&_serial, baudrate);
borlanic 0:02dd72d1d465 46 _baud = baudrate;
borlanic 0:02dd72d1d465 47 unlock();
borlanic 0:02dd72d1d465 48 }
borlanic 0:02dd72d1d465 49
borlanic 0:02dd72d1d465 50 void SerialBase::format(int bits, Parity parity, int stop_bits) {
borlanic 0:02dd72d1d465 51 lock();
borlanic 0:02dd72d1d465 52 serial_format(&_serial, bits, (SerialParity)parity, stop_bits);
borlanic 0:02dd72d1d465 53 unlock();
borlanic 0:02dd72d1d465 54 }
borlanic 0:02dd72d1d465 55
borlanic 0:02dd72d1d465 56 int SerialBase::readable() {
borlanic 0:02dd72d1d465 57 lock();
borlanic 0:02dd72d1d465 58 int ret = serial_readable(&_serial);
borlanic 0:02dd72d1d465 59 unlock();
borlanic 0:02dd72d1d465 60 return ret;
borlanic 0:02dd72d1d465 61 }
borlanic 0:02dd72d1d465 62
borlanic 0:02dd72d1d465 63
borlanic 0:02dd72d1d465 64 int SerialBase::writeable() {
borlanic 0:02dd72d1d465 65 lock();
borlanic 0:02dd72d1d465 66 int ret = serial_writable(&_serial);
borlanic 0:02dd72d1d465 67 unlock();
borlanic 0:02dd72d1d465 68 return ret;
borlanic 0:02dd72d1d465 69 }
borlanic 0:02dd72d1d465 70
borlanic 0:02dd72d1d465 71 void SerialBase::attach(Callback<void()> func, IrqType type) {
borlanic 0:02dd72d1d465 72 lock();
borlanic 0:02dd72d1d465 73 // Disable interrupts when attaching interrupt handler
borlanic 0:02dd72d1d465 74 core_util_critical_section_enter();
borlanic 0:02dd72d1d465 75 if (func) {
borlanic 0:02dd72d1d465 76 // lock deep sleep only the first time
borlanic 0:02dd72d1d465 77 if (!_irq[type]) {
borlanic 0:02dd72d1d465 78 sleep_manager_lock_deep_sleep();
borlanic 0:02dd72d1d465 79 }
borlanic 0:02dd72d1d465 80 _irq[type] = func;
borlanic 0:02dd72d1d465 81 serial_irq_set(&_serial, (SerialIrq)type, 1);
borlanic 0:02dd72d1d465 82 } else {
borlanic 0:02dd72d1d465 83 // unlock deep sleep only the first time
borlanic 0:02dd72d1d465 84 if (_irq[type]) {
borlanic 0:02dd72d1d465 85 sleep_manager_unlock_deep_sleep();
borlanic 0:02dd72d1d465 86 }
borlanic 0:02dd72d1d465 87 _irq[type] = NULL;
borlanic 0:02dd72d1d465 88 serial_irq_set(&_serial, (SerialIrq)type, 0);
borlanic 0:02dd72d1d465 89 }
borlanic 0:02dd72d1d465 90 core_util_critical_section_exit();
borlanic 0:02dd72d1d465 91 unlock();
borlanic 0:02dd72d1d465 92 }
borlanic 0:02dd72d1d465 93
borlanic 0:02dd72d1d465 94 void SerialBase::_irq_handler(uint32_t id, SerialIrq irq_type) {
borlanic 0:02dd72d1d465 95 SerialBase *handler = (SerialBase*)id;
borlanic 0:02dd72d1d465 96 if (handler->_irq[irq_type]) {
borlanic 0:02dd72d1d465 97 handler->_irq[irq_type]();
borlanic 0:02dd72d1d465 98 }
borlanic 0:02dd72d1d465 99 }
borlanic 0:02dd72d1d465 100
borlanic 0:02dd72d1d465 101 int SerialBase::_base_getc() {
borlanic 0:02dd72d1d465 102 // Mutex is already held
borlanic 0:02dd72d1d465 103 return serial_getc(&_serial);
borlanic 0:02dd72d1d465 104 }
borlanic 0:02dd72d1d465 105
borlanic 0:02dd72d1d465 106 int SerialBase::_base_putc(int c) {
borlanic 0:02dd72d1d465 107 // Mutex is already held
borlanic 0:02dd72d1d465 108 serial_putc(&_serial, c);
borlanic 0:02dd72d1d465 109 return c;
borlanic 0:02dd72d1d465 110 }
borlanic 0:02dd72d1d465 111
borlanic 0:02dd72d1d465 112 void SerialBase::send_break() {
borlanic 0:02dd72d1d465 113 lock();
borlanic 0:02dd72d1d465 114 // Wait for 1.5 frames before clearing the break condition
borlanic 0:02dd72d1d465 115 // This will have different effects on our platforms, but should
borlanic 0:02dd72d1d465 116 // ensure that we keep the break active for at least one frame.
borlanic 0:02dd72d1d465 117 // We consider a full frame (1 start bit + 8 data bits bits +
borlanic 0:02dd72d1d465 118 // 1 parity bit + 2 stop bits = 12 bits) for computation.
borlanic 0:02dd72d1d465 119 // One bit time (in us) = 1000000/_baud
borlanic 0:02dd72d1d465 120 // Twelve bits: 12000000/baud delay
borlanic 0:02dd72d1d465 121 // 1.5 frames: 18000000/baud delay
borlanic 0:02dd72d1d465 122 serial_break_set(&_serial);
borlanic 0:02dd72d1d465 123 wait_us(18000000/_baud);
borlanic 0:02dd72d1d465 124 serial_break_clear(&_serial);
borlanic 0:02dd72d1d465 125 unlock();
borlanic 0:02dd72d1d465 126 }
borlanic 0:02dd72d1d465 127
borlanic 0:02dd72d1d465 128 void SerialBase::lock() {
borlanic 0:02dd72d1d465 129 // Stub
borlanic 0:02dd72d1d465 130 }
borlanic 0:02dd72d1d465 131
borlanic 0:02dd72d1d465 132 void SerialBase:: unlock() {
borlanic 0:02dd72d1d465 133 // Stub
borlanic 0:02dd72d1d465 134 }
borlanic 0:02dd72d1d465 135
borlanic 0:02dd72d1d465 136 SerialBase::~SerialBase()
borlanic 0:02dd72d1d465 137 {
borlanic 0:02dd72d1d465 138 // No lock needed in destructor
borlanic 0:02dd72d1d465 139
borlanic 0:02dd72d1d465 140 // Detaching interrupts releases the sleep lock if it was locked
borlanic 0:02dd72d1d465 141 for (int irq = 0; irq < IrqCnt; irq++) {
borlanic 0:02dd72d1d465 142 attach(NULL, (IrqType)irq);
borlanic 0:02dd72d1d465 143 }
borlanic 0:02dd72d1d465 144 }
borlanic 0:02dd72d1d465 145
borlanic 0:02dd72d1d465 146 #if DEVICE_SERIAL_FC
borlanic 0:02dd72d1d465 147 void SerialBase::set_flow_control(Flow type, PinName flow1, PinName flow2) {
borlanic 0:02dd72d1d465 148 lock();
borlanic 0:02dd72d1d465 149 FlowControl flow_type = (FlowControl)type;
borlanic 0:02dd72d1d465 150 switch(type) {
borlanic 0:02dd72d1d465 151 case RTS:
borlanic 0:02dd72d1d465 152 serial_set_flow_control(&_serial, flow_type, flow1, NC);
borlanic 0:02dd72d1d465 153 break;
borlanic 0:02dd72d1d465 154
borlanic 0:02dd72d1d465 155 case CTS:
borlanic 0:02dd72d1d465 156 serial_set_flow_control(&_serial, flow_type, NC, flow1);
borlanic 0:02dd72d1d465 157 break;
borlanic 0:02dd72d1d465 158
borlanic 0:02dd72d1d465 159 case RTSCTS:
borlanic 0:02dd72d1d465 160 case Disabled:
borlanic 0:02dd72d1d465 161 serial_set_flow_control(&_serial, flow_type, flow1, flow2);
borlanic 0:02dd72d1d465 162 break;
borlanic 0:02dd72d1d465 163
borlanic 0:02dd72d1d465 164 default:
borlanic 0:02dd72d1d465 165 break;
borlanic 0:02dd72d1d465 166 }
borlanic 0:02dd72d1d465 167 unlock();
borlanic 0:02dd72d1d465 168 }
borlanic 0:02dd72d1d465 169 #endif
borlanic 0:02dd72d1d465 170
borlanic 0:02dd72d1d465 171 #if DEVICE_SERIAL_ASYNCH
borlanic 0:02dd72d1d465 172
borlanic 0:02dd72d1d465 173 int SerialBase::write(const uint8_t *buffer, int length, const event_callback_t& callback, int event)
borlanic 0:02dd72d1d465 174 {
borlanic 0:02dd72d1d465 175 if (serial_tx_active(&_serial)) {
borlanic 0:02dd72d1d465 176 return -1; // transaction ongoing
borlanic 0:02dd72d1d465 177 }
borlanic 0:02dd72d1d465 178 start_write((void *)buffer, length, 8, callback, event);
borlanic 0:02dd72d1d465 179 return 0;
borlanic 0:02dd72d1d465 180 }
borlanic 0:02dd72d1d465 181
borlanic 0:02dd72d1d465 182 int SerialBase::write(const uint16_t *buffer, int length, const event_callback_t& callback, int event)
borlanic 0:02dd72d1d465 183 {
borlanic 0:02dd72d1d465 184 if (serial_tx_active(&_serial)) {
borlanic 0:02dd72d1d465 185 return -1; // transaction ongoing
borlanic 0:02dd72d1d465 186 }
borlanic 0:02dd72d1d465 187 start_write((void *)buffer, length, 16, callback, event);
borlanic 0:02dd72d1d465 188 return 0;
borlanic 0:02dd72d1d465 189 }
borlanic 0:02dd72d1d465 190
borlanic 0:02dd72d1d465 191 void SerialBase::start_write(const void *buffer, int buffer_size, char buffer_width, const event_callback_t& callback, int event)
borlanic 0:02dd72d1d465 192 {
borlanic 0:02dd72d1d465 193 _tx_callback = callback;
borlanic 0:02dd72d1d465 194
borlanic 0:02dd72d1d465 195 _thunk_irq.callback(&SerialBase::interrupt_handler_asynch);
borlanic 0:02dd72d1d465 196 sleep_manager_lock_deep_sleep();
borlanic 0:02dd72d1d465 197 serial_tx_asynch(&_serial, buffer, buffer_size, buffer_width, _thunk_irq.entry(), event, _tx_usage);
borlanic 0:02dd72d1d465 198 }
borlanic 0:02dd72d1d465 199
borlanic 0:02dd72d1d465 200 void SerialBase::abort_write(void)
borlanic 0:02dd72d1d465 201 {
borlanic 0:02dd72d1d465 202 // rx might still be active
borlanic 0:02dd72d1d465 203 if (_rx_callback) {
borlanic 0:02dd72d1d465 204 sleep_manager_unlock_deep_sleep();
borlanic 0:02dd72d1d465 205 }
borlanic 0:02dd72d1d465 206 _tx_callback = NULL;
borlanic 0:02dd72d1d465 207 serial_tx_abort_asynch(&_serial);
borlanic 0:02dd72d1d465 208 }
borlanic 0:02dd72d1d465 209
borlanic 0:02dd72d1d465 210 void SerialBase::abort_read(void)
borlanic 0:02dd72d1d465 211 {
borlanic 0:02dd72d1d465 212 // tx might still be active
borlanic 0:02dd72d1d465 213 if (_tx_callback) {
borlanic 0:02dd72d1d465 214 sleep_manager_unlock_deep_sleep();
borlanic 0:02dd72d1d465 215 }
borlanic 0:02dd72d1d465 216 _rx_callback = NULL;
borlanic 0:02dd72d1d465 217 serial_rx_abort_asynch(&_serial);
borlanic 0:02dd72d1d465 218 }
borlanic 0:02dd72d1d465 219
borlanic 0:02dd72d1d465 220 int SerialBase::set_dma_usage_tx(DMAUsage usage)
borlanic 0:02dd72d1d465 221 {
borlanic 0:02dd72d1d465 222 if (serial_tx_active(&_serial)) {
borlanic 0:02dd72d1d465 223 return -1;
borlanic 0:02dd72d1d465 224 }
borlanic 0:02dd72d1d465 225 _tx_usage = usage;
borlanic 0:02dd72d1d465 226 return 0;
borlanic 0:02dd72d1d465 227 }
borlanic 0:02dd72d1d465 228
borlanic 0:02dd72d1d465 229 int SerialBase::set_dma_usage_rx(DMAUsage usage)
borlanic 0:02dd72d1d465 230 {
borlanic 0:02dd72d1d465 231 if (serial_tx_active(&_serial)) {
borlanic 0:02dd72d1d465 232 return -1;
borlanic 0:02dd72d1d465 233 }
borlanic 0:02dd72d1d465 234 _rx_usage = usage;
borlanic 0:02dd72d1d465 235 return 0;
borlanic 0:02dd72d1d465 236 }
borlanic 0:02dd72d1d465 237
borlanic 0:02dd72d1d465 238 int SerialBase::read(uint8_t *buffer, int length, const event_callback_t& callback, int event, unsigned char char_match)
borlanic 0:02dd72d1d465 239 {
borlanic 0:02dd72d1d465 240 if (serial_rx_active(&_serial)) {
borlanic 0:02dd72d1d465 241 return -1; // transaction ongoing
borlanic 0:02dd72d1d465 242 }
borlanic 0:02dd72d1d465 243 start_read((void*)buffer, length, 8, callback, event, char_match);
borlanic 0:02dd72d1d465 244 return 0;
borlanic 0:02dd72d1d465 245 }
borlanic 0:02dd72d1d465 246
borlanic 0:02dd72d1d465 247
borlanic 0:02dd72d1d465 248 int SerialBase::read(uint16_t *buffer, int length, const event_callback_t& callback, int event, unsigned char char_match)
borlanic 0:02dd72d1d465 249 {
borlanic 0:02dd72d1d465 250 if (serial_rx_active(&_serial)) {
borlanic 0:02dd72d1d465 251 return -1; // transaction ongoing
borlanic 0:02dd72d1d465 252 }
borlanic 0:02dd72d1d465 253 start_read((void*)buffer, length, 16, callback, event, char_match);
borlanic 0:02dd72d1d465 254 return 0;
borlanic 0:02dd72d1d465 255 }
borlanic 0:02dd72d1d465 256
borlanic 0:02dd72d1d465 257
borlanic 0:02dd72d1d465 258 void SerialBase::start_read(void *buffer, int buffer_size, char buffer_width, const event_callback_t& callback, int event, unsigned char char_match)
borlanic 0:02dd72d1d465 259 {
borlanic 0:02dd72d1d465 260 _rx_callback = callback;
borlanic 0:02dd72d1d465 261 _thunk_irq.callback(&SerialBase::interrupt_handler_asynch);
borlanic 0:02dd72d1d465 262 sleep_manager_lock_deep_sleep();
borlanic 0:02dd72d1d465 263 serial_rx_asynch(&_serial, buffer, buffer_size, buffer_width, _thunk_irq.entry(), event, char_match, _rx_usage);
borlanic 0:02dd72d1d465 264 }
borlanic 0:02dd72d1d465 265
borlanic 0:02dd72d1d465 266 void SerialBase::interrupt_handler_asynch(void)
borlanic 0:02dd72d1d465 267 {
borlanic 0:02dd72d1d465 268 int event = serial_irq_handler_asynch(&_serial);
borlanic 0:02dd72d1d465 269 int rx_event = event & SERIAL_EVENT_RX_MASK;
borlanic 0:02dd72d1d465 270 bool unlock_deepsleep = false;
borlanic 0:02dd72d1d465 271
borlanic 0:02dd72d1d465 272 if (_rx_callback && rx_event) {
borlanic 0:02dd72d1d465 273 unlock_deepsleep = true;
borlanic 0:02dd72d1d465 274 _rx_callback.call(rx_event);
borlanic 0:02dd72d1d465 275 }
borlanic 0:02dd72d1d465 276
borlanic 0:02dd72d1d465 277 int tx_event = event & SERIAL_EVENT_TX_MASK;
borlanic 0:02dd72d1d465 278 if (_tx_callback && tx_event) {
borlanic 0:02dd72d1d465 279 unlock_deepsleep = true;
borlanic 0:02dd72d1d465 280 _tx_callback.call(tx_event);
borlanic 0:02dd72d1d465 281 }
borlanic 0:02dd72d1d465 282 // unlock if tx or rx events are generated
borlanic 0:02dd72d1d465 283 if (unlock_deepsleep) {
borlanic 0:02dd72d1d465 284 sleep_manager_unlock_deep_sleep();
borlanic 0:02dd72d1d465 285 }
borlanic 0:02dd72d1d465 286 }
borlanic 0:02dd72d1d465 287
borlanic 0:02dd72d1d465 288 #endif
borlanic 0:02dd72d1d465 289
borlanic 0:02dd72d1d465 290 } // namespace mbed
borlanic 0:02dd72d1d465 291
borlanic 0:02dd72d1d465 292 #endif