amiro-os / components / accel / lis331dlh.cpp @ 58fe0e0b
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| 1 | 58fe0e0b | Thomas Schöpping | #include <string.h> |
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| 2 | |||
| 3 | #include <amiro/util/util.h> |
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| 4 | #include <amiro/bus/spi/HWSPIDriver.hpp> |
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| 5 | #include <amiro/accel/lis331dlh.hpp> |
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| 6 | #include <chprintf.h> |
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| 7 | #include <cmath> // abs() |
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| 8 | |||
| 9 | namespace amiro {
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| 10 | |||
| 11 | LIS331DLH:: |
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| 12 | LIS331DLH(HWSPIDriver *driver) : |
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| 13 | driver(driver), |
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| 14 | currentFullScaleConfiguration(FS_2G) {
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| 15 | |||
| 16 | } |
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| 17 | |||
| 18 | LIS331DLH:: |
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| 19 | ~LIS331DLH() {
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| 20 | |||
| 21 | } |
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| 22 | |||
| 23 | chibios_rt::EvtSource* |
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| 24 | LIS331DLH:: |
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| 25 | getEventSource() {
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| 26 | return &this->eventSource; |
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| 27 | } |
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| 28 | |||
| 29 | int16_t |
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| 30 | LIS331DLH:: |
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| 31 | getAcceleration(const uint8_t axis) {
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| 32 | |||
| 33 | return this->accelerations[axis]; |
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| 34 | |||
| 35 | } |
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| 36 | |||
| 37 | int16_t |
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| 38 | LIS331DLH:: |
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| 39 | getAccelerationForce(const uint8_t axis) {
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| 40 | |||
| 41 | int16_t result; |
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| 42 | |||
| 43 | switch(this->currentFullScaleConfiguration) { |
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| 44 | default:
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| 45 | case(FS_2G):
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| 46 | // Should be this->accelerations[axis] * 0.9765625
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| 47 | result = this->accelerations[axis];
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| 48 | break;
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| 49 | case(FS_4G):
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| 50 | // Should be this->accelerations[axis] * 1.953125
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| 51 | result = this->accelerations[axis] << 1; |
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| 52 | break;
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| 53 | case(FS_8G):
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| 54 | // Should be this->accelerations[axis] * 3.90625
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| 55 | result = this->accelerations[axis] << 2; |
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| 56 | break;
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| 57 | } |
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| 58 | |||
| 59 | return result;
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| 60 | |||
| 61 | } |
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| 62 | |||
| 63 | msg_t |
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| 64 | LIS331DLH:: |
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| 65 | main() {
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| 66 | |||
| 67 | this->setName("Lis331dlh"); |
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| 68 | |||
| 69 | while (!this->shouldTerminate()) { |
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| 70 | |||
| 71 | updateSensorData(); |
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| 72 | |||
| 73 | this->eventSource.broadcastFlags(0); |
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| 74 | |||
| 75 | this->waitAnyEventTimeout(ALL_EVENTS, MS2ST(200)); |
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| 76 | |||
| 77 | } |
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| 78 | return RDY_OK;
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| 79 | } |
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| 80 | |||
| 81 | void
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| 82 | LIS331DLH:: |
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| 83 | updateSensorData() {
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| 84 | |||
| 85 | const size_t buffer_size = offsetof(LIS331DLH::registers, out_z)
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| 86 | - offsetof(LIS331DLH::registers, status_reg) |
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| 87 | + MEMBER_SIZE(LIS331DLH::registers, out_z) |
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| 88 | + 1; /* addressing */ |
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| 89 | uint8_t buffer[buffer_size]; |
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| 90 | uint8_t sreg; |
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| 91 | |||
| 92 | // this might be three-wire so we need to send ones
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| 93 | memset(buffer, 0xFFu, buffer_size);
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| 94 | buffer[0] = offsetof(LIS331DLH::registers, status_reg) | LIS331DLH::SPI_MULT | LIS331DLH::SPI_READ;
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| 95 | this->driver->exchange(buffer, buffer, buffer_size);
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| 96 | |||
| 97 | // assemble data
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| 98 | sreg = buffer[1];
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| 99 | |||
| 100 | if (sreg & LIS331DLH::XDA)
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| 101 | this->accelerations[LIS331DLH::AXIS_X] = int16_t((buffer[3] << 8) | buffer[2]) >> 4; |
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| 102 | |||
| 103 | if (sreg & LIS331DLH::YDA)
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| 104 | this->accelerations[LIS331DLH::AXIS_Y] = int16_t((buffer[5] << 8) | buffer[4]) >> 4; |
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| 105 | |||
| 106 | if (sreg & LIS331DLH::ZDA)
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| 107 | this->accelerations[LIS331DLH::AXIS_Z] = int16_t((buffer[7] << 8) | buffer[6]) >> 4; |
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| 108 | |||
| 109 | } |
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| 110 | |||
| 111 | msg_t |
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| 112 | LIS331DLH:: |
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| 113 | configure(LIS331DLHConfig *config) {
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| 114 | |||
| 115 | const size_t ctrl_reg_size = offsetof(LIS331DLH::registers, ctrl_reg5)
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| 116 | - offsetof(LIS331DLH::registers, ctrl_reg1) |
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| 117 | + MEMBER_SIZE(LIS331DLH::registers, ctrl_reg5) |
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| 118 | + 1; /* addressing */ |
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| 119 | const size_t int_reg_size = offsetof(LIS331DLH::registers, int1_duration)
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| 120 | - offsetof(LIS331DLH::registers, int1_cfg) |
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| 121 | + MEMBER_SIZE(LIS331DLH::registers, int1_duration) /* linear interrupt config */
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| 122 | + MEMBER_SIZE(LIS331DLH::registers, int1_src) |
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| 123 | + MEMBER_SIZE(LIS331DLH::registers, int1_src) /* 2x size of int1_src */
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| 124 | + 1; /* addressing */ |
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| 125 | const size_t buffer_size = ctrl_reg_size > int_reg_size ? ctrl_reg_size : int_reg_size;
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| 126 | |||
| 127 | uint8_t buffer[buffer_size]; |
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| 128 | InterruptConfig *int_cfg = &config->int1_cfg; |
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| 129 | uint8_t i; |
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| 130 | |||
| 131 | // write interrupt config first
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| 132 | for (i = 0x00u; i < 2; i++, int_cfg++) { |
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| 133 | // this might be three-wire so we need to send ones
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| 134 | memset(buffer, 0xFFu, buffer_size);
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| 135 | if (!i)
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| 136 | buffer[0] = offsetof(LIS331DLH::registers, int1_cfg);
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| 137 | else
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| 138 | buffer[0] = offsetof(LIS331DLH::registers, int2_cfg);
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| 139 | buffer[5] = buffer[0] + offsetof(LIS331DLH::registers, int1_src) - offsetof(LIS331DLH::registers, int1_cfg); |
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| 140 | buffer[5] |= LIS331DLH::SPI_READ;
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| 141 | buffer[6] = 0xFFu, |
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| 142 | buffer[0] |= LIS331DLH::SPI_MULT | LIS331DLH::SPI_WRITE;
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| 143 | buffer[1] = int_cfg->config;
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| 144 | buffer[2] = 0xFFu; /* skip source register */ |
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| 145 | buffer[3] = int_cfg->ths;
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| 146 | buffer[4] = int_cfg->duration;
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| 147 | this->driver->write(&buffer[0], 5); |
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| 148 | // read intN_src register to clear IA
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| 149 | this->driver->exchange(&buffer[5], &buffer[5], 2); |
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| 150 | } |
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| 151 | |||
| 152 | // write control config
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| 153 | // this might be three-wire so we need to send ones
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| 154 | memset(buffer, 0xFFu, buffer_size);
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| 155 | buffer[0] = offsetof(LIS331DLH::registers, ctrl_reg1) | LIS331DLH::SPI_MULT | LIS331DLH::SPI_WRITE;
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| 156 | buffer[1] = config->ctrl1;
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| 157 | buffer[2] = config->ctrl2;
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| 158 | buffer[3] = config->ctrl3;
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| 159 | buffer[4] = config->ctrl4;
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| 160 | buffer[5] = config->ctrl5;
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| 161 | this->driver->write(buffer, 6); |
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| 162 | |||
| 163 | // reset hp filter
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| 164 | buffer[0] = offsetof(LIS331DLH::registers, hp_filter_reset) | LIS331DLH::SPI_WRITE;
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| 165 | this->driver->write(buffer, 1); |
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| 166 | |||
| 167 | // Store the full scale configuration for acceleration decoding
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| 168 | this->currentFullScaleConfiguration = config->ctrl4 & LIS331DLH::FS_8G;
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| 169 | |||
| 170 | return RDY_OK;
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| 171 | |||
| 172 | } |
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| 173 | |||
| 174 | uint8_t |
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| 175 | LIS331DLH:: |
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| 176 | getCheck() {
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| 177 | |||
| 178 | const size_t buffer_size = 1 /* addressing */ |
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| 179 | + 1; /* who am i */ |
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| 180 | uint8_t buffer[buffer_size]; |
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| 181 | |||
| 182 | // Exchange the data with the LIS331DLH accelerometer
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| 183 | // Specify the adress and the mode
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| 184 | buffer[0] = offsetof(LIS331DLH::registers, who_am_i) | LIS331DLH::SPI_READ;
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| 185 | this->driver->exchange(buffer, buffer, buffer_size);
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| 186 | // Check
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| 187 | if (buffer[1] == LIS331DLH::LIS331DLH_ID) { |
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| 188 | return LIS331DLH::CHECK_OK;
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| 189 | } else {
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| 190 | return LIS331DLH::CHECK_FAIL;
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| 191 | } |
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| 192 | |||
| 193 | } |
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| 194 | |||
| 195 | void
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| 196 | LIS331DLH:: |
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| 197 | printSelfTest(LIS331DLHConfig* config) {
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| 198 | |||
| 199 | // Running the build in test from LIS331DLH manual and compare the
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| 200 | // measured values against table 3
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| 201 | |||
| 202 | const uint8_t amountOfMeanValues = 10; |
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| 203 | const uint32_t sleepBetweenMeasurementMs = 500; |
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| 204 | int32_t accel; |
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| 205 | |||
| 206 | // Choose a defined config, if none is given
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| 207 | LIS331DLH::LIS331DLHConfig test_accel_run_cfg; |
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| 208 | if (config == NULL) { |
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| 209 | LIS331DLH::LIS331DLHConfig accel_run_cfg_tmp = {
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| 210 | /* ctrl1 */LIS331DLH::PM_ODR | LIS331DLH::DR_50HZ_37LP | LIS331DLH::ZEN
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| 211 | | LIS331DLH::YEN | LIS331DLH::XEN, |
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| 212 | /* ctrl2 */0x00u, |
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| 213 | /* ctrl3 */LIS331DLH::INT_LOW | LIS331DLH::I1_CFG_DRY,
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| 214 | /* ctrl4 */LIS331DLH::BDU_CONT | LIS331DLH::BLE_LE | LIS331DLH::FS_8G
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| 215 | | LIS331DLH::SIM_4WI, |
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| 216 | /* ctrl5 */LIS331DLH::SLEEP_TO_WAKE_OFF,
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| 217 | /* int1_cfg */
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| 218 | {
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| 219 | /* config */LIS331DLH::AOI_OR_INT,
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| 220 | /* ths */0x00u, |
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| 221 | /* duration */0x00u, }, |
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| 222 | /* int2_cfg */
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| 223 | {
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| 224 | /* config */LIS331DLH::AOI_OR_INT,
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| 225 | /* ths */0x00u, |
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| 226 | /* duration */0x00u, }, }; |
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| 227 | test_accel_run_cfg = accel_run_cfg_tmp; |
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| 228 | } else {
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| 229 | // Save the given config
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| 230 | test_accel_run_cfg = *config; |
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| 231 | } |
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| 232 | |||
| 233 | // 1. Get some standard values
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| 234 | // Configure for the test
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| 235 | test_accel_run_cfg.ctrl4 = LIS331DLH::BDU_CONT | LIS331DLH::BLE_LE |
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| 236 | | LIS331DLH::FS_2G | LIS331DLH::SIM_4WI; |
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| 237 | this->configure(&test_accel_run_cfg);
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| 238 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 239 | // Grep some values and build the mean value
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| 240 | chprintf((BaseSequentialStream*) &SD1, "\nACC: Get acc std values\n");
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| 241 | int32_t stdAccValues[3] = { this->getAcceleration(LIS331DLH::AXIS_X), this |
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| 242 | ->getAcceleration(LIS331DLH::AXIS_Y), this->getAcceleration(
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| 243 | LIS331DLH::AXIS_Z) }; |
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| 244 | |||
| 245 | for (uint8_t n = 1; n < amountOfMeanValues; ++n) { |
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| 246 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 247 | for (uint8_t i = LIS331DLH::AXIS_X; i <= LIS331DLH::AXIS_Z; i++) {
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| 248 | accel = int32_t(this->getAcceleration(i));
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| 249 | stdAccValues[i] = (stdAccValues[i] * n + accel) / (n + 1);
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| 250 | chprintf((BaseSequentialStream*) &SD1, "%c%d:%d ", accel < 0 ? '-' : '+', |
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| 251 | accel < 0 ? -accel : accel, stdAccValues[i]);
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| 252 | } |
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| 253 | chprintf((BaseSequentialStream*) &SD1, "\n");
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| 254 | } |
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| 255 | |||
| 256 | // 2. Apply negative offset
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| 257 | // Configure for the test
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| 258 | test_accel_run_cfg.ctrl4 = LIS331DLH::BDU_CONT | LIS331DLH::BLE_LE |
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| 259 | | LIS331DLH::FS_2G | LIS331DLH::SIM_4WI | LIS331DLH::ST_ENABLE |
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| 260 | | LIS331DLH::STSIGN_NEG; |
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| 261 | this->configure(&test_accel_run_cfg);
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| 262 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 263 | // Grep some values and build the mean value
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| 264 | chprintf((BaseSequentialStream*) &SD1, "\nACC: Get acc neg values\n");
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| 265 | int16_t negAccValues[3] = { this->getAcceleration(LIS331DLH::AXIS_X), this |
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| 266 | ->getAcceleration(LIS331DLH::AXIS_Y), this->getAcceleration(
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| 267 | LIS331DLH::AXIS_Z) }; |
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| 268 | |||
| 269 | for (uint8_t n = 1; n < amountOfMeanValues; ++n) { |
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| 270 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 271 | for (uint8_t i = LIS331DLH::AXIS_X; i <= LIS331DLH::AXIS_Z; i++) {
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| 272 | accel = int32_t(this->getAcceleration(i));
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| 273 | negAccValues[i] = (negAccValues[i] * n + accel) / (n + 1);
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| 274 | chprintf((BaseSequentialStream*) &SD1, "%c%d:%d ", accel < 0 ? '-' : '+', |
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| 275 | accel < 0 ? -accel : accel, negAccValues[i]);
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| 276 | } |
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| 277 | chprintf((BaseSequentialStream*) &SD1, "\n");
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| 278 | } |
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| 279 | |||
| 280 | // 2. Apply positive offset
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| 281 | // Configure for the test
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| 282 | test_accel_run_cfg.ctrl4 = LIS331DLH::BDU_CONT | LIS331DLH::BLE_LE |
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| 283 | | LIS331DLH::FS_2G | LIS331DLH::SIM_4WI | LIS331DLH::ST_ENABLE |
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| 284 | | LIS331DLH::STSIGN_POS; |
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| 285 | this->configure(&test_accel_run_cfg);
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| 286 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 287 | // Grep some values and build the mean value
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| 288 | chprintf((BaseSequentialStream*) &SD1, "\nACC: Get acc pos values\n");
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| 289 | int16_t posAccValues[3] = { this->getAcceleration(LIS331DLH::AXIS_X), this |
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| 290 | ->getAcceleration(LIS331DLH::AXIS_Y), this->getAcceleration(
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| 291 | LIS331DLH::AXIS_Z) }; |
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| 292 | |||
| 293 | for (uint8_t n = 1; n < amountOfMeanValues; ++n) { |
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| 294 | BaseThread::sleep(MS2ST(sleepBetweenMeasurementMs)); |
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| 295 | for (uint8_t i = LIS331DLH::AXIS_X; i <= LIS331DLH::AXIS_Z; i++) {
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| 296 | accel = int32_t(this->getAcceleration(i));
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| 297 | posAccValues[i] = (posAccValues[i] * n + accel) / (n + 1);
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| 298 | chprintf((BaseSequentialStream*) &SD1, "%c%d:%d ", accel < 0 ? '-' : '+', |
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| 299 | accel < 0 ? -accel : accel, posAccValues[i]);
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| 300 | } |
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| 301 | chprintf((BaseSequentialStream*) &SD1, "\n");
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| 302 | } |
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| 303 | |||
| 304 | // Get the amplitude change and compare it to the standard values from LIS331DLH manual table 3
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| 305 | int32_t amp; |
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| 306 | const int32_t ampXmax = 550, ampYmax = 550, ampZmax = 750; |
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| 307 | const int32_t ampXmin = 120, ampYmin = 120, ampZmin = 140; |
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| 308 | |||
| 309 | // TEST
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| 310 | chprintf((BaseSequentialStream*) &SD1, "\n\nACC: Testresult\n");
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| 311 | amp = std::abs( |
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| 312 | stdAccValues[LIS331DLH::AXIS_X] - negAccValues[LIS331DLH::AXIS_X]); |
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| 313 | if (amp < ampXmin || amp > ampXmax)
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| 314 | chprintf((BaseSequentialStream*) &SD1, "ACC: Negative x-axis faulty\n");
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| 315 | amp = std::abs( |
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| 316 | stdAccValues[LIS331DLH::AXIS_Y] - negAccValues[LIS331DLH::AXIS_Y]); |
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| 317 | if (amp < ampYmin || amp > ampYmax)
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| 318 | chprintf((BaseSequentialStream*) &SD1, "ACC: Negative y-axis faulty\n");
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| 319 | amp = std::abs( |
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| 320 | stdAccValues[LIS331DLH::AXIS_Z] - negAccValues[LIS331DLH::AXIS_Z]); |
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| 321 | if (amp < ampZmin || amp > ampZmax)
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| 322 | chprintf((BaseSequentialStream*) &SD1, "ACC: Negative z-axis faulty\n");
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| 323 | amp = std::abs( |
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| 324 | stdAccValues[LIS331DLH::AXIS_X] - posAccValues[LIS331DLH::AXIS_X]); |
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| 325 | if (amp < ampXmin || amp > ampXmax)
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| 326 | chprintf((BaseSequentialStream*) &SD1, "ACC: Positive x-axis faulty\n");
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| 327 | amp = std::abs( |
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| 328 | stdAccValues[LIS331DLH::AXIS_Y] - posAccValues[LIS331DLH::AXIS_Y]); |
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| 329 | if (amp < ampYmin || amp > ampYmax)
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| 330 | chprintf((BaseSequentialStream*) &SD1, "ACC: Positive y-axis faulty\n");
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| 331 | amp = std::abs( |
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| 332 | stdAccValues[LIS331DLH::AXIS_Z] - posAccValues[LIS331DLH::AXIS_Z]); |
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| 333 | if (amp < ampZmin || amp > ampZmax)
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| 334 | chprintf((BaseSequentialStream*) &SD1, "ACC: Positive z-axis faulty\n");
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| 335 | |||
| 336 | // Write back the original config
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| 337 | this->configure(config);
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| 338 | } |
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| 339 | |||
| 340 | } /* amiro */ |