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134 lines
3.4 KiB
134 lines
3.4 KiB
/// -*- tab-width: 4; Mode: C++; c-basic-offset: 4; indent-tabs-mode: nil -*- |
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/* |
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* Example of DataFlash library. |
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* originally based on code by Jordi MuÒoz and Jose Julio |
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*/ |
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#include <AP_HAL/AP_HAL.h> |
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#include <DataFlash/DataFlash.h> |
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const AP_HAL::HAL& hal = AP_HAL::get_HAL(); |
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#define LOG_TEST_MSG 1 |
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struct PACKED log_Test { |
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LOG_PACKET_HEADER; |
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uint16_t v1, v2, v3, v4; |
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int32_t l1, l2; |
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}; |
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static const struct LogStructure log_structure[] = { |
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LOG_COMMON_STRUCTURES, |
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{ LOG_TEST_MSG, sizeof(log_Test), |
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"TEST", "HHHHii", "V1,V2,V3,V4,L1,L2" } |
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}; |
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#define NUM_PACKETS 500 |
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static uint16_t log_num; |
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class DataFlashTest { |
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public: |
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void setup(); |
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void loop(); |
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private: |
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DataFlash_Class dataflash{"DF Test 0.1"}; |
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void print_mode(AP_HAL::BetterStream *port, uint8_t mode); |
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}; |
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static DataFlashTest dataflashtest; |
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void DataFlashTest::setup(void) |
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{ |
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dataflash.Init(log_structure, ARRAY_SIZE(log_structure)); |
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hal.console->println("Dataflash Log Test 1.0"); |
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// Test |
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hal.scheduler->delay(20); |
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dataflash.ShowDeviceInfo(hal.console); |
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if (dataflash.NeedPrep()) { |
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hal.console->println("Preparing dataflash..."); |
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dataflash.Prep(); |
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} |
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// We start to write some info (sequentialy) starting from page 1 |
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// This is similar to what we will do... |
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dataflash.StartNewLog(); |
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log_num = dataflash.find_last_log(); |
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hal.console->printf("Using log number %u\n", log_num); |
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hal.console->println("After testing perform erase before using DataFlash for logging!"); |
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hal.console->println(""); |
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hal.console->println("Writing to flash... wait..."); |
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uint32_t total_micros = 0; |
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uint16_t i; |
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for (i = 0; i < NUM_PACKETS; i++) { |
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uint32_t start = AP_HAL::micros(); |
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// note that we use g++ style initialisers to make larger |
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// structures easier to follow |
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struct log_Test pkt = { |
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LOG_PACKET_HEADER_INIT(LOG_TEST_MSG), |
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v1 : (uint16_t)(2000 + i), |
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v2 : (uint16_t)(2001 + i), |
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v3 : (uint16_t)(2002 + i), |
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v4 : (uint16_t)(2003 + i), |
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l1 : (int32_t)(i * 5000), |
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l2 : (int32_t)(i * 16268) |
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}; |
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dataflash.WriteBlock(&pkt, sizeof(pkt)); |
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total_micros += AP_HAL::micros() - start; |
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hal.scheduler->delay(20); |
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} |
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hal.console->printf("Average write time %.1f usec/byte\n", |
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(double)total_micros/((double)i*sizeof(struct log_Test))); |
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#if CONFIG_HAL_BOARD == HAL_BOARD_SITL || CONFIG_HAL_BOARD == HAL_BOARD_LINUX |
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dataflash.flush(); |
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#endif |
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hal.scheduler->delay(100); |
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} |
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void DataFlashTest::loop(void) |
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{ |
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uint16_t start, end; |
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hal.console->printf("Start read of log %u\n", log_num); |
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dataflash.get_log_boundaries(log_num, start, end); |
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dataflash.LogReadProcess(log_num, start, end, |
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FUNCTOR_BIND_MEMBER(&DataFlashTest::print_mode, void, AP_HAL::BetterStream *, uint8_t),//print_mode, |
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hal.console); |
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hal.console->printf("\nTest complete. Test will repeat in 20 seconds\n"); |
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hal.scheduler->delay(20000); |
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} |
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void DataFlashTest::print_mode(AP_HAL::BetterStream *port, uint8_t mode) |
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{ |
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port->printf("Mode(%u)", (unsigned)mode); |
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} |
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/* |
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compatibility with old pde style build |
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*/ |
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void setup(void); |
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void loop(void); |
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void setup() |
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{ |
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dataflashtest.setup(); |
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} |
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void loop() |
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{ |
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dataflashtest.loop(); |
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} |
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AP_HAL_MAIN();
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