2021-07-12 22:41:05 -03:00
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/*
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* Copyright (C) 2021 Peter Barker. All rights reserved.
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*
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* This file is free software: you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This file is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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* See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "SPIDevice.h"
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#include <AP_HAL/AP_HAL.h>
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#if CONFIG_HAL_BOARD == HAL_BOARD_SITL && !defined(HAL_BUILD_AP_PERIPH)
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#include <SITL/SITL.h>
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extern const AP_HAL::HAL& hal;
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using namespace HALSITL;
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/*
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* SPIBus
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*/
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class SPIBus {
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friend class SPIDeviceManager;
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public:
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SPIBus(uint8_t _bus) :
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bus{_bus}
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{ }
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uint8_t bus;
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Semaphore sem;
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int ioctl(uint8_t cs_pin, uint8_t ioctl_number, void *data) {
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return _ioctl(cs_pin, ioctl_number, data);
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}
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// void _timer_tick(); // in lieu of a thread-per-bus
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AP_HAL::Device::PeriodicHandle register_periodic_callback(uint32_t period_usec, AP_HAL::Device::PeriodicCb cb);
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class SPIBus *next;
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private:
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int _ioctl(uint8_t cs_pin, uint8_t ioctl_number, void *data);
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struct callback_info {
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struct callback_info *next;
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AP_HAL::Device::PeriodicCb cb;
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uint32_t period_usec;
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uint64_t next_usec;
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} *callbacks;
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static uint8_t spi_buscount;
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};
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uint8_t SPIBus::spi_buscount;
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// FIXME: do the whole subdev dance here and get an actual FD to do an ioctl on?
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int SPIBus::_ioctl(uint8_t cs_pin, uint8_t ioctl_number, void *data)
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{
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SITL::SIM *sitl = AP::sitl();
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return sitl->spi_ioctl(bus, cs_pin, ioctl_number, data);
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}
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AP_HAL::Device::PeriodicHandle SPIBus::register_periodic_callback(uint32_t period_usec, AP_HAL::Device::PeriodicCb cb)
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{
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// mostly swiped from ChibiOS:
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SPIBus::callback_info *callback = new SPIBus::callback_info;
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if (callback == nullptr) {
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return nullptr;
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}
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callback->cb = cb;
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callback->period_usec = period_usec;
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callback->next_usec = AP_HAL::micros64() + period_usec;
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// add to linked list of callbacks on thread
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callback->next = callbacks;
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callbacks = callback;
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return callback;
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}
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// void SPIBus::_timer_tick()
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// {
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// const uint64_t now = AP_HAL::micros64();
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// for (struct callback_info *ci = callbacks; ci != nullptr; ci = ci->next) {
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// if (ci->next_usec < now) {
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// WITH_SEMAPHORE(sem);
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// ci->cb();
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// ci->next_usec += ci->period_usec;
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// }
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// }
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// }
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/*
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* SPIDeviceManager
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*/
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SPIBus *SPIDeviceManager::buses;
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SPIDeviceManager::SPIDeviceManager()
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{
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}
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static const struct SPIDriverInfo {
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// SPIDriver *driver;
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uint8_t busid; // used for device IDs in parameters
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// uint8_t dma_channel_rx;
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// uint8_t dma_channel_tx;
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} spi_devices[] = {
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{ 0, },
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};
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// name, bus, cs_pin
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SPIDesc SPIDeviceManager::device_table[] = {
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{ "ramtron", 0, 0 },
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2021-12-21 01:00:13 -04:00
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{ "dataflash", 1, 0}
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2021-07-12 22:41:05 -03:00
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};
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AP_HAL::OwnPtr<AP_HAL::SPIDevice>
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SPIDeviceManager::get_device(const char *name)
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{
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// this was swiped from AP_HAL_ChibiOS
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/* Find the bus description in the table */
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uint8_t i;
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for (i = 0; i<ARRAY_SIZE(device_table); i++) {
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if (strcmp(device_table[i].name, name) == 0) {
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break;
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}
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}
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if (i == ARRAY_SIZE(device_table)) {
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return AP_HAL::OwnPtr<AP_HAL::SPIDevice>(nullptr);
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}
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SPIDesc &desc = device_table[i];
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// find the bus
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SPIBus *busp;
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for (busp = buses; busp; busp = (SPIBus *)busp->next) {
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if (busp->bus == desc.bus) {
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break;
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}
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}
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if (busp == nullptr) {
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// create a new one
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busp = new SPIBus(desc.bus);
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if (busp == nullptr) {
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return nullptr;
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}
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busp->next = buses;
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busp->bus = desc.bus;
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buses = busp;
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}
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return AP_HAL::OwnPtr<AP_HAL::SPIDevice>(new SPIDevice(*busp, desc));
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}
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// void SPIDeviceManager::_timer_tick()
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// {
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// for (auto &bus : buses) {
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// bus._timer_tick();
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// }
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// }
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/*
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* SPIDevice
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*/
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SPIDevice::SPIDevice(SPIBus &_bus, SPIDesc &_device_desc)
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: bus(_bus)
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, device_desc(_device_desc)
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{
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set_device_bus(spi_devices[_bus.bus].busid);
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set_device_address(_device_desc.cs_pin);
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}
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AP_HAL::Semaphore *SPIDevice::get_semaphore()
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{
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return &bus.sem;
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}
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/*
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low level transfer function - swiped from the Linux HAL
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*/
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// this is copied into the SITL SPI layer
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struct spi_ioc_transfer {
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uint64_t tx_buf;
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uint64_t rx_buf;
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uint32_t len;
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// uint32_t speed_hz;
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// uint16_t delay_usecs;
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// uint8_t bits_per_word;
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// uint8_t cs_change;
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};
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#define SPI_TRANSACTION_1LONG 17
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#define SPI_TRANSACTION_2LONG 18
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bool SPIDevice::transfer(const uint8_t *send, uint32_t send_len,
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uint8_t *recv, uint32_t recv_len)
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{
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bus.sem.check_owner();
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struct spi_ioc_transfer msgs[2] = { };
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unsigned nmsgs = 0;
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if (send && send_len != 0) {
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msgs[nmsgs].tx_buf = (uint64_t) send;
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msgs[nmsgs].rx_buf = 0;
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msgs[nmsgs].len = send_len;
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nmsgs++;
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}
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if (recv && recv_len != 0) {
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msgs[nmsgs].tx_buf = 0;
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msgs[nmsgs].rx_buf = (uint64_t) recv;
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msgs[nmsgs].len = recv_len;
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nmsgs++;
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}
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if (!nmsgs) {
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return false;
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}
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uint8_t ioctl_number;
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switch (nmsgs) {
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case 1:
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ioctl_number = SPI_TRANSACTION_1LONG;
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break;
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case 2:
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ioctl_number = SPI_TRANSACTION_2LONG;
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break;
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default:
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abort();
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}
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const int r = bus.ioctl(device_desc.cs_pin, ioctl_number, &msgs);
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if (r == -1) {
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hal.console->printf("SPIDevice: error transferring data\n");
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return false;
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}
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return true;
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}
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AP_HAL::Device::PeriodicHandle SPIDevice::register_periodic_callback(uint32_t period_usec, AP_HAL::Device::PeriodicCb cb)
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{
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return bus.register_periodic_callback(period_usec, cb);
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}
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#endif // HAL_BOARD_SITL
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