Zephyr Project API  3.3.0
A Scalable Open Source RTOS
w1.h
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1/*
2 * Copyright (c) 2018 Roman Tataurov <diytronic@yandex.ru>
3 * Copyright (c) 2022 Thomas Stranger
4 *
5 * SPDX-License-Identifier: Apache-2.0
6 */
7
13#ifndef ZEPHYR_INCLUDE_DRIVERS_W1_H_
14#define ZEPHYR_INCLUDE_DRIVERS_W1_H_
15
16#include <zephyr/types.h>
17#include <zephyr/device.h>
18#include <zephyr/kernel.h>
19#include <zephyr/sys/crc.h>
21
22#ifdef __cplusplus
23extern "C" {
24#endif
25
35/*
36 * Count the number of slaves expected on the bus.
37 * This can be used to decide if the bus has a multidrop topology or
38 * only a single slave is present.
39 * There is a comma after each ordinal (including the last)
40 * Hence FOR_EACH adds "+1" once too often which has to be subtracted in the end.
41 */
42#define F1(x) 1
43#define W1_SLAVE_COUNT(node_id) \
44 (FOR_EACH(F1, (+), DT_SUPPORTS_DEP_ORDS(node_id)) - 1)
45#define W1_INST_SLAVE_COUNT(inst) \
46 (W1_SLAVE_COUNT(DT_DRV_INST(inst)))
47
63
68};
69
73struct w1_master_config {
74 /* Number of connected slaves */
75 uint16_t slave_count;
76};
77
79struct w1_master_data {
80 /* The mutex used by w1_lock_bus and w1_unlock_bus methods */
81 struct k_mutex bus_lock;
82};
83
84typedef int (*w1_reset_bus_t)(const struct device *dev);
85typedef int (*w1_read_bit_t)(const struct device *dev);
86typedef int (*w1_write_bit_t)(const struct device *dev, bool bit);
87typedef int (*w1_read_byte_t)(const struct device *dev);
88typedef int (*w1_write_byte_t)(const struct device *dev, const uint8_t byte);
89typedef int (*w1_read_block_t)(const struct device *dev, uint8_t *buffer,
90 size_t len);
91typedef int (*w1_write_block_t)(const struct device *dev, const uint8_t *buffer,
92 size_t len);
93typedef size_t (*w1_get_slave_count_t)(const struct device *dev);
94typedef int (*w1_configure_t)(const struct device *dev,
95 enum w1_settings_type type, uint32_t value);
96
97__subsystem struct w1_driver_api {
98 w1_reset_bus_t reset_bus;
99 w1_read_bit_t read_bit;
100 w1_write_bit_t write_bit;
101 w1_read_byte_t read_byte;
102 w1_write_byte_t write_byte;
103 w1_read_block_t read_block;
104 w1_write_block_t write_block;
105 w1_configure_t configure;
106};
110__syscall int w1_change_bus_lock(const struct device *dev, bool lock);
111
112static inline int z_impl_w1_change_bus_lock(const struct device *dev, bool lock)
113{
114 struct w1_master_data *ctrl_data = (struct w1_master_data *)dev->data;
115
116 if (lock) {
117 return k_mutex_lock(&ctrl_data->bus_lock, K_FOREVER);
118 } else {
119 return k_mutex_unlock(&ctrl_data->bus_lock);
120 }
121}
136static inline int w1_lock_bus(const struct device *dev)
137{
138 return w1_change_bus_lock(dev, true);
139}
140
151static inline int w1_unlock_bus(const struct device *dev)
152{
153 return w1_change_bus_lock(dev, false);
154}
155
182__syscall int w1_reset_bus(const struct device *dev);
183
184static inline int z_impl_w1_reset_bus(const struct device *dev)
185{
186 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
187
188 return api->reset_bus(dev);
189}
190
199__syscall int w1_read_bit(const struct device *dev);
200
201static inline int z_impl_w1_read_bit(const struct device *dev)
202{
203 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
204
205 return api->read_bit(dev);
206}
207
217__syscall int w1_write_bit(const struct device *dev, const bool bit);
218
219static inline int z_impl_w1_write_bit(const struct device *dev, bool bit)
220{
221 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
222
223 return api->write_bit(dev, bit);
224}
225
234__syscall int w1_read_byte(const struct device *dev);
235
236static inline int z_impl_w1_read_byte(const struct device *dev)
237{
238 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
239
240 return api->read_byte(dev);
241}
242
252__syscall int w1_write_byte(const struct device *dev, uint8_t byte);
253
254static inline int z_impl_w1_write_byte(const struct device *dev, uint8_t byte)
255{
256 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
257
258 return api->write_byte(dev, byte);
259}
260
271__syscall int w1_read_block(const struct device *dev, uint8_t *buffer, size_t len);
272
283__syscall int w1_write_block(const struct device *dev,
284 const uint8_t *buffer, size_t len);
285
294__syscall size_t w1_get_slave_count(const struct device *dev);
295
296static inline size_t z_impl_w1_get_slave_count(const struct device *dev)
297{
298 const struct w1_master_config *ctrl_cfg =
299 (const struct w1_master_config *)dev->config;
300
301 return ctrl_cfg->slave_count;
302}
303
318__syscall int w1_configure(const struct device *dev,
319 enum w1_settings_type type, uint32_t value);
320
321static inline int z_impl_w1_configure(const struct device *dev,
322 enum w1_settings_type type, uint32_t value)
323{
324 const struct w1_driver_api *api = (const struct w1_driver_api *)dev->api;
325
326 return api->configure(dev, type, value);
327}
328
344#define W1_CMD_SKIP_ROM 0xCC
345#define W1_CMD_MATCH_ROM 0x55
346#define W1_CMD_RESUME 0xA5
347#define W1_CMD_READ_ROM 0x33
348#define W1_CMD_SEARCH_ROM 0xF0
349#define W1_CMD_SEARCH_ALARM 0xEC
350#define W1_CMD_OVERDRIVE_SKIP_ROM 0x3C
351#define W1_CMD_OVERDRIVE_MATCH_ROM 0x69
352
361#define W1_CRC8_SEED 0x00
363#define W1_CRC8_POLYNOMIAL 0x8C
365#define W1_CRC16_SEED 0x0000
367#define W1_CRC16_POLYNOMIAL 0xa001
368
372#define W1_SEARCH_ALL_FAMILIES 0x00
373
375#define W1_ROM_INIT_ZERO \
376 { \
377 .family = 0, .serial = { 0 }, .crc = 0, \
378 }
379
383struct w1_rom {
395};
396
405 struct w1_rom rom;
409 uint32_t res : 31;
411};
412
420typedef void (*w1_search_callback_t)(struct w1_rom rom, void *user_data);
421
439int w1_read_rom(const struct device *dev, struct w1_rom *rom);
440
461int w1_match_rom(const struct device *dev, const struct w1_slave_config *config);
462
475int w1_resume_command(const struct device *dev);
476
492int w1_skip_rom(const struct device *dev, const struct w1_slave_config *config);
493
505int w1_reset_select(const struct device *dev, const struct w1_slave_config *config);
506
524int w1_write_read(const struct device *dev, const struct w1_slave_config *config,
525 const uint8_t *write_buf, size_t write_len,
526 uint8_t *read_buf, size_t read_len);
527
552__syscall int w1_search_bus(const struct device *dev, uint8_t command,
554 void *user_data);
555
571static inline int w1_search_rom(const struct device *dev,
572 w1_search_callback_t callback, void *user_data)
573{
575 callback, user_data);
576}
577
593static inline int w1_search_alarm(const struct device *dev,
594 w1_search_callback_t callback, void *user_data)
595{
597 callback, user_data);
598}
599
607static inline uint64_t w1_rom_to_uint64(const struct w1_rom *rom)
608{
609 return sys_get_be64((uint8_t *)rom);
610}
611
618static inline void w1_uint64_to_rom(const uint64_t rom64, struct w1_rom *rom)
619{
620 sys_put_be64(rom64, (uint8_t *)rom);
621}
622
635static inline uint8_t w1_crc8(const uint8_t *src, size_t len)
636{
637 return crc8(src, len, W1_CRC8_POLYNOMIAL, W1_CRC8_SEED, true);
638}
639
655static inline uint16_t w1_crc16(const uint16_t seed, const uint8_t *src,
656 const size_t len)
657{
658 return crc16_reflect(W1_CRC16_POLYNOMIAL, seed, src, len);
659}
660
665#ifdef __cplusplus
666}
667#endif
668
672#include <syscalls/w1.h>
673
674#endif /* ZEPHYR_INCLUDE_DRIVERS_W1_H_ */
Byte order helpers.
static void sys_put_be64(uint64_t val, uint8_t dst[8])
Put a 64-bit integer as big-endian to arbitrary location.
Definition: byteorder.h:284
static uint64_t sys_get_be64(const uint8_t src[8])
Get a 64-bit integer stored in big-endian format.
Definition: byteorder.h:435
CRC computation function.
#define K_FOREVER
Generate infinite timeout delay.
Definition: kernel.h:1267
uint8_t crc8(const uint8_t *src, size_t len, uint8_t polynomial, uint8_t initial_value, bool reversed)
Generic function for computing CRC 8.
uint16_t crc16_reflect(uint16_t poly, uint16_t seed, const uint8_t *src, size_t len)
Generic function for computing a CRC-16 with input and output reflection.
int k_mutex_unlock(struct k_mutex *mutex)
Unlock a mutex.
int k_mutex_lock(struct k_mutex *mutex, k_timeout_t timeout)
Lock a mutex.
w1_settings_type
Defines the 1-Wire master settings types, which are runtime configurable.
Definition: w1.h:53
static int w1_unlock_bus(const struct device *dev)
Unlock the 1-wire bus.
Definition: w1.h:151
static int w1_lock_bus(const struct device *dev)
Lock the 1-wire bus to prevent simultaneous access.
Definition: w1.h:136
@ W1_SETTING_SPEED
Definition: w1.h:57
@ W1_SETINGS_TYPE_COUNT
Definition: w1.h:67
@ W1_SETTING_STRONG_PULLUP
Definition: w1.h:62
static int w1_search_rom(const struct device *dev, w1_search_callback_t callback, void *user_data)
Search for 1-Wire slave on bus.
Definition: w1.h:571
static int w1_search_alarm(const struct device *dev, w1_search_callback_t callback, void *user_data)
Search for 1-Wire slaves with an active alarm.
Definition: w1.h:593
static uint64_t w1_rom_to_uint64(const struct w1_rom *rom)
Function to convert a w1_rom struct to an uint64_t.
Definition: w1.h:607
int w1_search_bus(const struct device *dev, uint8_t command, uint8_t family, w1_search_callback_t callback, void *user_data)
Search 1-wire slaves on the bus.
int w1_write_read(const struct device *dev, const struct w1_slave_config *config, const uint8_t *write_buf, size_t write_len, uint8_t *read_buf, size_t read_len)
Write then read data from the 1-Wire slave with matching ROM.
void(* w1_search_callback_t)(struct w1_rom rom, void *user_data)
Define the application callback handler function signature for searches.
Definition: w1.h:420
static uint8_t w1_crc8(const uint8_t *src, size_t len)
Compute CRC-8 chacksum as defined in the 1-Wire specification.
Definition: w1.h:635
int w1_match_rom(const struct device *dev, const struct w1_slave_config *config)
Select a specific slave by broadcasting a selected ROM.
static uint16_t w1_crc16(const uint16_t seed, const uint8_t *src, const size_t len)
Compute 1-Wire variant of CRC 16.
Definition: w1.h:655
#define W1_CMD_SEARCH_ROM
Definition: w1.h:348
int w1_resume_command(const struct device *dev)
Select the slave last addressed with a Match ROM or Search ROM commnad.
static void w1_uint64_to_rom(const uint64_t rom64, struct w1_rom *rom)
Function to write an uint64_t to struct w1_rom pointer.
Definition: w1.h:618
#define W1_SEARCH_ALL_FAMILIES
Definition: w1.h:372
int w1_read_rom(const struct device *dev, struct w1_rom *rom)
Read Peripheral 64-bit ROM.
int w1_reset_select(const struct device *dev, const struct w1_slave_config *config)
In single drop configurations use Skip Select command, otherweise use Match ROM command.
#define W1_CRC8_SEED
Definition: w1.h:361
#define W1_CRC16_POLYNOMIAL
Definition: w1.h:367
int w1_skip_rom(const struct device *dev, const struct w1_slave_config *config)
Select all slaves regardless of ROM.
#define W1_CRC8_POLYNOMIAL
Definition: w1.h:363
#define W1_CMD_SEARCH_ALARM
Definition: w1.h:349
Public kernel APIs.
static struct k_spinlock lock
Definition: spinlock_error_case.c:13
__UINT32_TYPE__ uint32_t
Definition: stdint.h:90
__UINT64_TYPE__ uint64_t
Definition: stdint.h:91
__UINT8_TYPE__ uint8_t
Definition: stdint.h:88
__UINT16_TYPE__ uint16_t
Definition: stdint.h:89
Runtime device structure (in ROM) per driver instance.
Definition: device.h:378
void * data
Definition: device.h:388
const void * api
Definition: device.h:384
const void * config
Definition: device.h:382
Definition: kernel.h:2764
w1_rom struct.
Definition: w1.h:383
uint8_t serial[6]
Definition: w1.h:392
uint8_t crc
Definition: w1.h:394
uint8_t family
The 1-Wire family code identifying the slave device type.
Definition: w1.h:390
Node specific 1-wire configuration struct.
Definition: w1.h:403
struct w1_rom rom
Definition: w1.h:405
uint32_t overdrive
Definition: w1.h:407
static ZTEST_BMEM char buffer[8]
Definition: test_mbox_api.c:551
static const intptr_t user_data[5]
Definition: main.c:588