1 // Copyright 2023 The Pigweed Authors
2 //
3 // Licensed under the Apache License, Version 2.0 (the "License"); you may not
4 // use this file except in compliance with the License. You may obtain a copy of
5 // the License at
6 //
7 // https://www.apache.org/licenses/LICENSE-2.0
8 //
9 // Unless required by applicable law or agreed to in writing, software
10 // distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
11 // WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
12 // License for the specific language governing permissions and limitations under
13 // the License.
14 #define PW_LOG_MODULE_NAME "I2C"
15
16 #include "pw_i2c_linux/initiator.h"
17
18 #include <fcntl.h>
19 #include <linux/i2c-dev.h>
20 #include <linux/i2c.h>
21 #include <sys/ioctl.h>
22 #include <sys/types.h>
23 #include <unistd.h>
24
25 #include <array>
26 #include <cerrno>
27 #include <cinttypes>
28 #include <mutex>
29
30 #include "pw_assert/check.h"
31 #include "pw_chrono/system_clock.h"
32 #include "pw_i2c/address.h"
33 #include "pw_log/log.h"
34 #include "pw_status/status.h"
35 #include "pw_status/try.h"
36
37 namespace pw::i2c {
38 namespace {
39
40 using ::pw::chrono::SystemClock;
41
42 // Returns an appropriate status code for the given fault_code (i.e. `errno`).
43 // For unexpected fault codes, logs messages to aid in debugging.
44 // Reference: https://www.kernel.org/doc/html/latest/i2c/fault-codes.html
PwStatusAndLog(int i2c_errno,uint8_t device_address)45 Status PwStatusAndLog(int i2c_errno, uint8_t device_address) {
46 switch (i2c_errno) {
47 case EAGAIN:
48 // Lost arbitration on a multi-controller bus.
49 // This is a normal condition on multi-controller busses.
50 return Status::Aborted();
51 case ENOENT:
52 case ENODEV:
53 case ENXIO:
54 case EREMOTEIO:
55 // Generally indicates the device is unavailable or faulty.
56 // This is a normal condition when incorrect address is specified.
57 //
58 // Return Unavailable instead of NotFound as per the requirements of
59 // pw::i2c::Initiator.
60 PW_LOG_INFO("I2C device unavailable at address 0x%" PRIx8,
61 device_address);
62 return Status::Unavailable();
63 case ESHUTDOWN:
64 // It's not really clear what would cause a bus to be "suspended".
65 PW_LOG_WARN("I2C bus is suspended");
66 return Status::FailedPrecondition();
67 default:
68 // All other errors are unexpected and don't have a well-defined code.
69 PW_LOG_ERROR("I2C transaction failed for address 0x%" PRIx8 ": errno=%d",
70 device_address,
71 i2c_errno);
72 return Status::Unknown();
73 }
74 }
75
76 } // namespace
77
78 // Open the file at the given path and validate that it is a valid bus device.
OpenI2cBus(const char * bus_path)79 Result<int> LinuxInitiator::OpenI2cBus(const char* bus_path) {
80 int fd = open(bus_path, O_RDWR);
81 if (fd < 0) {
82 PW_LOG_ERROR(
83 "Unable to open I2C bus device [%s]: errno=%d", bus_path, errno);
84 return Status::InvalidArgument();
85 }
86
87 // Verify that the bus supports full I2C functionality.
88 unsigned long functionality = 0;
89 if (ioctl(fd, I2C_FUNCS, &functionality) != 0) {
90 PW_LOG_ERROR("Unable to read I2C functionality for bus [%s]: errno=%d",
91 bus_path,
92 errno);
93 close(fd);
94 return Status::InvalidArgument();
95 }
96
97 if ((functionality & I2C_FUNC_I2C) == 0) {
98 PW_LOG_ERROR("I2C bus [%s] does not support full I2C functionality",
99 bus_path);
100 close(fd);
101 return Status::InvalidArgument();
102 }
103 return fd;
104 }
105
LinuxInitiator(int fd)106 LinuxInitiator::LinuxInitiator(int fd) : fd_(fd) { PW_DCHECK(fd_ >= 0); }
107
~LinuxInitiator()108 LinuxInitiator::~LinuxInitiator() {
109 PW_DCHECK(fd_ >= 0);
110 close(fd_);
111 }
112
DoWriteReadFor(Address device_address,ConstByteSpan tx_buffer,ByteSpan rx_buffer,SystemClock::duration timeout)113 Status LinuxInitiator::DoWriteReadFor(Address device_address,
114 ConstByteSpan tx_buffer,
115 ByteSpan rx_buffer,
116 SystemClock::duration timeout) {
117 auto start_time = SystemClock::now();
118
119 // Validate arguments.
120 const auto address = device_address.GetSevenBit();
121 if (tx_buffer.empty() && rx_buffer.empty()) {
122 PW_LOG_ERROR("At least one of tx_buffer or rx_buffer must be not empty");
123 return Status::InvalidArgument();
124 }
125
126 // Try to acquire access to the bus.
127 if (!mutex_.try_lock_for(timeout)) {
128 return Status::DeadlineExceeded();
129 }
130 std::lock_guard lock(mutex_, std::adopt_lock);
131 const auto elapsed = SystemClock::now() - start_time;
132 return DoWriteReadForLocked(address, tx_buffer, rx_buffer, timeout - elapsed);
133 }
134
135 // Perform an I2C write, read, or combined write+read transaction.
136 //
137 // Preconditions:
138 // - `this->mutex_` is acquired
139 // - `this->fd_` is open for read/write and supports full I2C functionality.
140 // - `address` is a 7-bit device address
141 // - At least one of `tx_buffer` or `rx_buffer` is not empty.
142 //
143 // The transaction will be retried if we can't get access to the bus, until
144 // the timeout is reached. There will be no retries if `timeout` is zero or
145 // negative.
DoWriteReadForLocked(uint8_t address,ConstByteSpan tx_buffer,ByteSpan rx_buffer,chrono::SystemClock::duration timeout)146 Status LinuxInitiator::DoWriteReadForLocked(
147 uint8_t address,
148 ConstByteSpan tx_buffer,
149 ByteSpan rx_buffer,
150 chrono::SystemClock::duration timeout) {
151 const auto start_time = SystemClock::now();
152
153 // Prepare messages for either a read, write, or combined transaction.
154 // Populate `ioctl_data` with either one or two `i2c_msg` operations.
155 // Use the `messages` buffer to store the operations.
156 i2c_rdwr_ioctl_data ioctl_data{};
157 std::array<i2c_msg, 2> messages{};
158 if (!tx_buffer.empty() && rx_buffer.empty()) {
159 messages[0] = i2c_msg{
160 .addr = address,
161 .flags = 0, // Read transaction
162 .len = static_cast<uint16_t>(tx_buffer.size()),
163 .buf = reinterpret_cast<uint8_t*>(
164 const_cast<std::byte*>(tx_buffer.data())), // NOLINT: read-only
165 };
166 ioctl_data = {
167 .msgs = messages.data(),
168 .nmsgs = 1,
169 };
170 } else if (!rx_buffer.empty() && tx_buffer.empty()) {
171 messages[0] = i2c_msg{
172 .addr = address,
173 .flags = I2C_M_RD,
174 .len = static_cast<uint16_t>(rx_buffer.size()),
175 .buf = reinterpret_cast<uint8_t*>(rx_buffer.data()),
176 };
177 ioctl_data = {
178 .msgs = messages.data(),
179 .nmsgs = 1,
180 };
181 } else {
182 // DoWriteReadFor already checks that at least one buffer has data.
183 // This is just an internal consistency check.
184 PW_DCHECK(!rx_buffer.empty() && !tx_buffer.empty());
185 messages[0] = i2c_msg{
186 .addr = address,
187 .flags = 0, // Read transaction
188 .len = static_cast<uint16_t>(tx_buffer.size()),
189 .buf = reinterpret_cast<uint8_t*>(
190 const_cast<std::byte*>(tx_buffer.data())), // NOLINT: read-only
191 };
192 messages[1] = i2c_msg{
193 .addr = address,
194 .flags = I2C_M_RD,
195 .len = static_cast<uint16_t>(rx_buffer.size()),
196 .buf = reinterpret_cast<uint8_t*>(rx_buffer.data()),
197 };
198 ioctl_data = {
199 .msgs = messages.data(),
200 .nmsgs = 2,
201 };
202 }
203 PW_LOG_DEBUG("Attempting I2C transaction with %" PRIu32 " operations",
204 ioctl_data.nmsgs);
205
206 // Attempt the transaction. If we can't get exclusive access to the bus,
207 // then keep trying until we run out of time.
208 do {
209 if (ioctl(fd_, I2C_RDWR, &ioctl_data) < 0) {
210 Status status = PwStatusAndLog(errno, address);
211 if (status == Status::Aborted()) {
212 // Lost arbitration and need to try again.
213 PW_LOG_DEBUG("Retrying I2C transaction");
214 continue;
215 }
216 return status;
217 }
218 return OkStatus();
219 } while (SystemClock::now() - start_time < timeout);
220
221 // Attempt transaction one last time. This thread may have been suspended
222 // after the last attempt, but before the timeout actually expired. The
223 // timeout is meant to be a minimum time period.
224 if (ioctl(fd_, I2C_RDWR, &ioctl_data) < 0) {
225 Status status = PwStatusAndLog(errno, address);
226 if (status == Status::Aborted()) {
227 PW_LOG_INFO("Timeout waiting for I2C bus access");
228 return Status::DeadlineExceeded();
229 }
230 return status;
231 }
232 return OkStatus();
233 }
234
235 } // namespace pw::i2c
236