1 /*
2 * Copyright (c) 2015-2016 Intel Corporation.
3 *
4 * SPDX-License-Identifier: Apache-2.0
5 */
6
7 #include <errno.h>
8 #include <stddef.h>
9 #include <string.h>
10 #include <zephyr/device.h>
11 #include <zephyr/sys/atomic.h>
12 #include <zephyr/sys/iterable_sections.h>
13 #include <zephyr/sys/kobject.h>
14 #include <zephyr/internal/syscall_handler.h>
15 #include <zephyr/toolchain.h>
16
17 /**
18 * @brief Initialize state for all static devices.
19 *
20 * The state object is always zero-initialized, but this may not be
21 * sufficient.
22 */
z_device_state_init(void)23 void z_device_state_init(void)
24 {
25 STRUCT_SECTION_FOREACH(device, dev) {
26 k_object_init(dev);
27 }
28 }
29
z_impl_device_get_binding(const char * name)30 const struct device *z_impl_device_get_binding(const char *name)
31 {
32 /* A null string identifies no device. So does an empty
33 * string.
34 */
35 if ((name == NULL) || (name[0] == '\0')) {
36 return NULL;
37 }
38
39 /* Return NULL if the device matching 'name' is not ready. */
40 STRUCT_SECTION_FOREACH(device, dev) {
41 if ((dev->name == name) || (strcmp(name, dev->name) == 0)) {
42 return z_impl_device_is_ready(dev) ? dev : NULL;
43 }
44 }
45
46 return NULL;
47 }
48
49 #ifdef CONFIG_USERSPACE
z_vrfy_device_get_binding(const char * name)50 static inline const struct device *z_vrfy_device_get_binding(const char *name)
51 {
52 char name_copy[Z_DEVICE_MAX_NAME_LEN];
53
54 if (k_usermode_string_copy(name_copy, name, sizeof(name_copy))
55 != 0) {
56 return NULL;
57 }
58
59 return z_impl_device_get_binding(name_copy);
60 }
61 #include <zephyr/syscalls/device_get_binding_mrsh.c>
62
z_vrfy_device_is_ready(const struct device * dev)63 static inline bool z_vrfy_device_is_ready(const struct device *dev)
64 {
65 K_OOPS(K_SYSCALL_OBJ_INIT(dev, K_OBJ_ANY));
66
67 return z_impl_device_is_ready(dev);
68 }
69 #include <zephyr/syscalls/device_is_ready_mrsh.c>
70 #endif /* CONFIG_USERSPACE */
71
72 #ifdef CONFIG_DEVICE_DT_METADATA
z_impl_device_get_by_dt_nodelabel(const char * nodelabel)73 const struct device *z_impl_device_get_by_dt_nodelabel(const char *nodelabel)
74 {
75 /* For consistency with device_get_binding(). */
76 if ((nodelabel == NULL) || (nodelabel[0] == '\0')) {
77 return NULL;
78 }
79
80 /* Unlike device_get_binding(), which has a history of being
81 * used in application code, we don't expect
82 * device_get_by_dt_nodelabel() to be used outside of
83 * scenarios where a human is in the loop. The shell is the
84 * main expected use case. Therefore, nodelabel is probably
85 * not the same pointer as any of the entry->nodelabel
86 * elements. We therefore skip the pointer comparison that
87 * device_get_binding() does.
88 */
89 STRUCT_SECTION_FOREACH(device, dev) {
90 const struct device_dt_nodelabels *nl = device_get_dt_nodelabels(dev);
91
92 if (!z_impl_device_is_ready(dev) || nl == NULL) {
93 continue;
94 }
95
96 for (size_t i = 0; i < nl->num_nodelabels; i++) {
97 const char *dev_nodelabel = nl->nodelabels[i];
98
99 if (strcmp(nodelabel, dev_nodelabel) == 0) {
100 return dev;
101 }
102 }
103 }
104
105 return NULL;
106 }
107
108 #ifdef CONFIG_USERSPACE
z_vrfy_device_get_by_dt_nodelabel(const char * nodelabel)109 static inline const struct device *z_vrfy_device_get_by_dt_nodelabel(const char *nodelabel)
110 {
111 char nl_copy[Z_DEVICE_MAX_NODELABEL_LEN];
112
113 if (k_usermode_string_copy(nl_copy, (char *)nodelabel, sizeof(nl_copy)) != 0) {
114 return NULL;
115 }
116
117 return z_impl_device_get_by_dt_nodelabel(nl_copy);
118 }
119 #include <zephyr/syscalls/device_get_by_dt_nodelabel_mrsh.c>
120 #endif /* CONFIG_USERSPACE */
121 #endif /* CONFIG_DEVICE_DT_METADATA */
122
z_device_get_all_static(struct device const ** devices)123 size_t z_device_get_all_static(struct device const **devices)
124 {
125 size_t cnt;
126
127 STRUCT_SECTION_GET(device, 0, devices);
128 STRUCT_SECTION_COUNT(device, &cnt);
129
130 return cnt;
131 }
132
z_impl_device_is_ready(const struct device * dev)133 bool z_impl_device_is_ready(const struct device *dev)
134 {
135 /*
136 * if an invalid device pointer is passed as argument, this call
137 * reports the `device` as not ready for usage.
138 */
139 if (dev == NULL) {
140 return false;
141 }
142
143 return dev->state->initialized && (dev->state->init_res == 0U);
144 }
145
z_impl_device_deinit(const struct device * dev)146 int z_impl_device_deinit(const struct device *dev)
147 {
148 int ret;
149
150 if (!dev->state->initialized) {
151 return -EPERM;
152 }
153
154 if (dev->ops.deinit == NULL) {
155 return -ENOTSUP;
156 }
157
158 ret = dev->ops.deinit(dev);
159 if (ret < 0) {
160 return ret;
161 }
162
163 dev->state->initialized = false;
164
165 return 0;
166 }
167
168 #ifdef CONFIG_USERSPACE
z_vrfy_device_deinit(const struct device * dev)169 static inline int z_vrfy_device_deinit(const struct device *dev)
170 {
171 K_OOPS(K_SYSCALL_OBJ_INIT(dev, K_OBJ_ANY));
172
173 return z_impl_device_deinit(dev);
174 }
175 #include <zephyr/syscalls/device_deinit_mrsh.c>
176 #endif
177
178 #ifdef CONFIG_DEVICE_DEPS
179
device_visitor(const device_handle_t * handles,size_t handle_count,device_visitor_callback_t visitor_cb,void * context)180 static int device_visitor(const device_handle_t *handles,
181 size_t handle_count,
182 device_visitor_callback_t visitor_cb,
183 void *context)
184 {
185 /* Iterate over fixed devices */
186 for (size_t i = 0; i < handle_count; ++i) {
187 device_handle_t dh = handles[i];
188 const struct device *rdev = device_from_handle(dh);
189 int rc = visitor_cb(rdev, context);
190
191 if (rc < 0) {
192 return rc;
193 }
194 }
195
196 return handle_count;
197 }
198
device_required_foreach(const struct device * dev,device_visitor_callback_t visitor_cb,void * context)199 int device_required_foreach(const struct device *dev,
200 device_visitor_callback_t visitor_cb,
201 void *context)
202 {
203 size_t handle_count = 0;
204 const device_handle_t *handles = device_required_handles_get(dev, &handle_count);
205
206 return device_visitor(handles, handle_count, visitor_cb, context);
207 }
208
device_supported_foreach(const struct device * dev,device_visitor_callback_t visitor_cb,void * context)209 int device_supported_foreach(const struct device *dev,
210 device_visitor_callback_t visitor_cb,
211 void *context)
212 {
213 size_t handle_count = 0;
214 const device_handle_t *handles = device_supported_handles_get(dev, &handle_count);
215
216 return device_visitor(handles, handle_count, visitor_cb, context);
217 }
218
219 #endif /* CONFIG_DEVICE_DEPS */
220