200 lines
4.7 KiB
C++
200 lines
4.7 KiB
C++
/*
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ChibiOS/RT - Copyright (C) 2006-2013 Giovanni Di Sirio
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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#include "ch.hpp"
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#include "hal.h"
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#include "fs.hpp"
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#include "fatfs_fsimpl.hpp"
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#include "test.h"
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using namespace chibios_rt;
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using namespace chibios_fatfs;
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/*
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* LED blink sequences.
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* NOTE: Sequences must always be terminated by a GOTO instruction.
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* NOTE: The sequencer language could be easily improved but this is outside
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* the scope of this demo.
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*/
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#define SLEEP 0
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#define GOTO 1
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#define STOP 2
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#define BITCLEAR 3
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#define BITSET 4
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typedef struct {
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uint8_t action;
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uint32_t value;
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} seqop_t;
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// Flashing sequence for LED3.
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static const seqop_t LED3_sequence[] =
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{
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{BITSET, PAL_PORT_BIT(GPIOD_LED3)},
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{SLEEP, 800},
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{BITCLEAR, PAL_PORT_BIT(GPIOD_LED3)},
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{SLEEP, 200},
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{GOTO, 0}
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};
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// Flashing sequence for LED4.
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static const seqop_t LED4_sequence[] =
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{
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{BITSET, PAL_PORT_BIT(GPIOD_LED4)},
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{SLEEP, 600},
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{BITCLEAR, PAL_PORT_BIT(GPIOD_LED4)},
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{SLEEP, 400},
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{GOTO, 0}
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};
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// Flashing sequence for LED5.
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static const seqop_t LED5_sequence[] =
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{
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{BITSET, PAL_PORT_BIT(GPIOD_LED5)},
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{SLEEP, 400},
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{BITCLEAR, PAL_PORT_BIT(GPIOD_LED5)},
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{SLEEP, 600},
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{GOTO, 0}
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};
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// Flashing sequence for LED6.
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static const seqop_t LED6_sequence[] =
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{
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{BITSET, PAL_PORT_BIT(GPIOD_LED6)},
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{SLEEP, 200},
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{BITCLEAR, PAL_PORT_BIT(GPIOD_LED6)},
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{SLEEP, 800},
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{GOTO, 0}
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};
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/*
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* Sequencer thread class. It can drive LEDs or other output pins.
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* Any sequencer is just an instance of this class, all the details are
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* totally encapsulated and hidden to the application level.
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*/
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class SequencerThread : public BaseStaticThread<128> {
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private:
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const seqop_t *base, *curr; // Thread local variables.
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protected:
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virtual msg_t main(void) {
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setName("sequencer");
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while (true) {
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switch(curr->action) {
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case SLEEP:
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sleep(curr->value);
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break;
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case GOTO:
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curr = &base[curr->value];
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continue;
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case STOP:
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return 0;
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case BITCLEAR:
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palClearPort(GPIOD, curr->value);
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break;
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case BITSET:
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palSetPort(GPIOD, curr->value);
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break;
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}
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curr++;
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}
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}
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public:
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SequencerThread(const seqop_t *sequence) : BaseStaticThread<128>() {
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base = curr = sequence;
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}
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};
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/*
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* Tester thread class. This thread executes the test suite.
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*/
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class TesterThread : public BaseStaticThread<256> {
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protected:
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virtual msg_t main(void) {
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setName("tester");
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return TestThread(&SD2);
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}
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public:
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TesterThread(void) : BaseStaticThread<256>() {
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}
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};
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/* Static threads instances.*/
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static TesterThread tester;
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static SequencerThread blinker1(LED3_sequence);
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static SequencerThread blinker2(LED4_sequence);
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static SequencerThread blinker3(LED5_sequence);
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static SequencerThread blinker4(LED6_sequence);
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static FatFSWrapper fs;
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/*
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* Application entry point.
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*/
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int main(void) {
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/*
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* System initializations.
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* - HAL initialization, this also initializes the configured device drivers
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* and performs the board-specific initializations.
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* - Kernel initialization, the main() function becomes a thread and the
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* RTOS is active.
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*/
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halInit();
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System::init();
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fs.mount();
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fs.unmount();
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/*
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* Activates the serial driver 2 using the driver default configuration.
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* PA2(TX) and PA3(RX) are routed to USART2.
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*/
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sdStart(&SD2, NULL);
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palSetPadMode(GPIOA, 2, PAL_MODE_ALTERNATE(7));
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palSetPadMode(GPIOA, 3, PAL_MODE_ALTERNATE(7));
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/*
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* Starts several instances of the SequencerThread class, each one operating
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* on a different LED.
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*/
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blinker1.start(NORMALPRIO + 10);
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blinker2.start(NORMALPRIO + 10);
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blinker3.start(NORMALPRIO + 10);
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blinker4.start(NORMALPRIO + 10);
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/*
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* Serves timer events.
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*/
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while (true) {
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if (palReadPad(GPIOA, GPIOA_BUTTON)) {
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tester.start(NORMALPRIO);
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tester.wait();
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};
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BaseThread::sleep(MS2ST(500));
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}
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return 0;
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}
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