157 lines
5.8 KiB
C++
157 lines
5.8 KiB
C++
// Copyright 2022 The Pigweed Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License"); you may not
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// use this file except in compliance with the License. You may obtain a copy of
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// the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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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, WITHOUT
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// WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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// License for the specific language governing permissions and limitations under
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// the License.
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#include "pw_i2c_mcuxpresso/initiator.h"
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#include <mutex>
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#include "fsl_i2c.h"
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#include "pw_chrono/system_clock.h"
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#include "pw_status/status.h"
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#include "pw_status/try.h"
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namespace pw::i2c {
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namespace {
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Status HalStatusToPwStatus(status_t status) {
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switch (status) {
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case kStatus_Success:
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return OkStatus();
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case kStatus_I2C_Nak:
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case kStatus_I2C_Addr_Nak:
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return Status::Unavailable();
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case kStatus_I2C_InvalidParameter:
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return Status::InvalidArgument();
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case kStatus_I2C_Timeout:
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return Status::DeadlineExceeded();
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default:
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return Status::Unknown();
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}
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}
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} // namespace
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// inclusive-language: disable
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McuxpressoInitiator::McuxpressoInitiator(I2C_Type* base,
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uint32_t baud_rate_bps,
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uint32_t src_clock_hz)
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: base_(base) {
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i2c_master_config_t master_config;
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I2C_MasterGetDefaultConfig(&master_config);
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master_config.baudRate_Bps = baud_rate_bps;
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I2C_MasterInit(base_, &master_config, src_clock_hz);
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// Create the handle for the non-blocking transfer and register callback.
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I2C_MasterTransferCreateHandle(
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base_, &handle_, McuxpressoInitiator::TransferCompleteCallback, this);
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}
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McuxpressoInitiator::~McuxpressoInitiator() { I2C_MasterDeinit(base_); }
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void McuxpressoInitiator::TransferCompleteCallback(I2C_Type* base,
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i2c_master_handle_t* handle,
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status_t status,
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void* initiator_ptr) {
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McuxpressoInitiator& initiator =
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*static_cast<McuxpressoInitiator*>(initiator_ptr);
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initiator.callback_isl_.lock();
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initiator.transfer_status_ = status;
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initiator.callback_isl_.unlock();
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initiator.callback_complete_notification_.release();
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}
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Status McuxpressoInitiator::InitiateNonBlockingTransfer(
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chrono::SystemClock::duration rw_timeout, i2c_master_transfer_t* transfer) {
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const status_t status =
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I2C_MasterTransferNonBlocking(base_, &handle_, transfer);
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if (status != kStatus_Success) {
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return HalStatusToPwStatus(status);
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}
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if (!callback_complete_notification_.try_acquire_for(rw_timeout)) {
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I2C_MasterTransferAbort(base_, &handle_);
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return Status::DeadlineExceeded();
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}
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callback_isl_.lock();
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const status_t transfer_status = transfer_status_;
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callback_isl_.unlock();
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return HalStatusToPwStatus(transfer_status);
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}
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// Performs non-blocking I2C write, read and read-after-write depending on the
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// tx and rx buffer states.
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Status McuxpressoInitiator::DoWriteReadFor(
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Address device_address,
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ConstByteSpan tx_buffer,
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ByteSpan rx_buffer,
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chrono::SystemClock::duration timeout) {
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if (timeout <= chrono::SystemClock::duration::zero()) {
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return Status::DeadlineExceeded();
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}
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const uint8_t address = device_address.GetSevenBit();
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std::lock_guard lock(mutex_);
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if (!tx_buffer.empty() && rx_buffer.empty()) {
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i2c_master_transfer_t transfer{kI2C_TransferDefaultFlag,
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address,
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kI2C_Write,
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0,
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0,
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const_cast<std::byte*>(tx_buffer.data()),
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tx_buffer.size()};
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return InitiateNonBlockingTransfer(timeout, &transfer);
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} else if (tx_buffer.empty() && !rx_buffer.empty()) {
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i2c_master_transfer_t transfer{kI2C_TransferDefaultFlag,
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address,
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kI2C_Read,
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0,
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0,
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rx_buffer.data(),
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rx_buffer.size()};
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return InitiateNonBlockingTransfer(timeout, &transfer);
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} else if (!tx_buffer.empty() && !rx_buffer.empty()) {
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i2c_master_transfer_t w_transfer{kI2C_TransferNoStopFlag,
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address,
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kI2C_Write,
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0,
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0,
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const_cast<std::byte*>(tx_buffer.data()),
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tx_buffer.size()};
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const chrono::SystemClock::time_point deadline =
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chrono::SystemClock::TimePointAfterAtLeast(timeout);
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PW_TRY(InitiateNonBlockingTransfer(timeout, &w_transfer));
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i2c_master_transfer_t r_transfer{kI2C_TransferRepeatedStartFlag,
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address,
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kI2C_Read,
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0,
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0,
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rx_buffer.data(),
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rx_buffer.size()};
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const chrono::SystemClock::duration time_remaining =
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deadline - chrono::SystemClock::now();
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if (time_remaining <= chrono::SystemClock::duration::zero()) {
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// Abort transfer in an unlikely scenario of timeout even with
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// successful write.
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I2C_MasterTransferAbort(base_, &handle_);
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return Status::DeadlineExceeded();
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}
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return InitiateNonBlockingTransfer(time_remaining, &r_transfer);
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} else {
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return Status::InvalidArgument();
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}
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}
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// inclusive-language: enable
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} // namespace pw::i2c
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