blob: 2e0ccc4c3beb195606639f1803faa54b5b5ecfaf [file] [log] [blame]
Angel Ponsc74dae92020-04-02 23:48:16 +02001/* SPDX-License-Identifier: GPL-2.0-only */
2/* This file is part of the coreboot project. */
Stefan Reinauer57879c92012-07-31 16:47:25 -07003
Furquan Shaikh86803782020-04-16 23:13:28 -07004#include <assert.h>
Kyösti Mälkki2df1c122018-05-21 01:52:10 +03005#include <console/console.h>
Stefan Reinauer57879c92012-07-31 16:47:25 -07006#include <device/device.h>
7#include <device/path.h>
8#include <device/pci.h>
Kyösti Mälkkiad7674e2018-05-20 10:31:23 +03009#include <device/pci_def.h>
Stefan Reinauer57879c92012-07-31 16:47:25 -070010#include <device/resource.h>
11
12/** Linked list of ALL devices */
Aaron Durbine4d7abc2017-04-16 22:05:36 -050013DEVTREE_CONST struct device * DEVTREE_CONST all_devices = &dev_root;
Stefan Reinauer57879c92012-07-31 16:47:25 -070014
15/**
16 * Given a PCI bus and a devfn number, find the device structure.
17 *
Aaron Durbin55ef0d22019-09-26 12:05:27 -060018 * Note that this function can return the incorrect device prior
19 * to PCI enumeration because the secondary field of the bus object
20 * is 0. The failing scenario is determined by the order of the
21 * devices in all_devices singly-linked list as well as the time
22 * when this function is called (secondary reflecting topology).
23 *
Stefan Reinauer57879c92012-07-31 16:47:25 -070024 * @param bus The bus number.
25 * @param devfn A device/function number.
26 * @return Pointer to the device structure (if found), 0 otherwise.
27 */
Kyösti Mälkkibd585fa2019-07-03 07:51:43 +030028
29static DEVTREE_CONST struct device *dev_find_slot(unsigned int bus,
Stefan Reinauer57879c92012-07-31 16:47:25 -070030 unsigned int devfn)
31{
Aaron Durbine4d7abc2017-04-16 22:05:36 -050032 DEVTREE_CONST struct device *dev, *result;
Stefan Reinauer57879c92012-07-31 16:47:25 -070033
34 result = 0;
35 for (dev = all_devices; dev; dev = dev->next) {
36 if ((dev->path.type == DEVICE_PATH_PCI) &&
37 (dev->bus->secondary == bus) &&
38 (dev->path.pci.devfn == devfn)) {
39 result = dev;
40 break;
41 }
42 }
43 return result;
44}
45
46/**
Nico Huberf6a43442018-05-15 14:13:32 +020047 * Given a Device Path Type, find the device structure.
48 *
49 * @param prev_match The previously matched device instance.
50 * @param path_type The Device Path Type.
51 * @return Pointer to the device structure (if found), 0 otherwise.
52 */
53DEVTREE_CONST struct device *dev_find_path(
54 DEVTREE_CONST struct device *prev_match,
55 enum device_path_type path_type)
56{
57 DEVTREE_CONST struct device *dev, *result = NULL;
58
59 if (prev_match == NULL)
60 prev_match = all_devices;
61 else
62 prev_match = prev_match->next;
63
64 for (dev = prev_match; dev; dev = dev->next) {
65 if (dev->path.type == path_type) {
66 result = dev;
67 break;
68 }
69 }
70 return result;
71}
72
73/**
Martin Roth16d953a2014-05-12 17:38:59 -060074 * Given a device pointer, find the next PCI device.
75 *
76 * @param previous_dev A pointer to a PCI device structure.
77 * @return Pointer to the next device structure (if found), 0 otherwise.
78 */
Aaron Durbine4d7abc2017-04-16 22:05:36 -050079DEVTREE_CONST struct device *dev_find_next_pci_device(
80 DEVTREE_CONST struct device *previous_dev)
Martin Roth16d953a2014-05-12 17:38:59 -060081{
Nico Huberf6a43442018-05-15 14:13:32 +020082 return dev_find_path(previous_dev, DEVICE_PATH_PCI);
Martin Roth16d953a2014-05-12 17:38:59 -060083}
84
Kyösti Mälkki2df1c122018-05-21 01:52:10 +030085static int path_eq(const struct device_path *path1,
86 const struct device_path *path2)
87{
88 int equal = 0;
89
Furquan Shaikh86803782020-04-16 23:13:28 -070090 if (!path1 || !path2) {
91 assert(path1);
92 assert(path2);
93 /* Return 0 in case assert is considered non-fatal. */
94 return 0;
95 }
96
Kyösti Mälkki2df1c122018-05-21 01:52:10 +030097 if (path1->type != path2->type)
98 return 0;
99
100 switch (path1->type) {
101 case DEVICE_PATH_NONE:
102 break;
103 case DEVICE_PATH_ROOT:
104 equal = 1;
105 break;
106 case DEVICE_PATH_PCI:
107 equal = (path1->pci.devfn == path2->pci.devfn);
108 break;
109 case DEVICE_PATH_PNP:
110 equal = (path1->pnp.port == path2->pnp.port) &&
111 (path1->pnp.device == path2->pnp.device);
112 break;
113 case DEVICE_PATH_I2C:
114 equal = (path1->i2c.device == path2->i2c.device) &&
115 (path1->i2c.mode_10bit == path2->i2c.mode_10bit);
116 break;
117 case DEVICE_PATH_APIC:
118 equal = (path1->apic.apic_id == path2->apic.apic_id);
119 break;
120 case DEVICE_PATH_DOMAIN:
121 equal = (path1->domain.domain == path2->domain.domain);
122 break;
123 case DEVICE_PATH_CPU_CLUSTER:
124 equal = (path1->cpu_cluster.cluster
125 == path2->cpu_cluster.cluster);
126 break;
127 case DEVICE_PATH_CPU:
128 equal = (path1->cpu.id == path2->cpu.id);
129 break;
130 case DEVICE_PATH_CPU_BUS:
131 equal = (path1->cpu_bus.id == path2->cpu_bus.id);
132 break;
133 case DEVICE_PATH_GENERIC:
134 equal = (path1->generic.id == path2->generic.id) &&
135 (path1->generic.subid == path2->generic.subid);
136 break;
137 case DEVICE_PATH_SPI:
138 equal = (path1->spi.cs == path2->spi.cs);
139 break;
140 case DEVICE_PATH_USB:
141 equal = (path1->usb.port_type == path2->usb.port_type) &&
142 (path1->usb.port_id == path2->usb.port_id);
143 break;
144 case DEVICE_PATH_MMIO:
145 equal = (path1->mmio.addr == path2->mmio.addr);
146 break;
147 default:
148 printk(BIOS_ERR, "Unknown device type: %d\n", path1->type);
149 break;
150 }
151
152 return equal;
153}
154
155/**
156 * See if a device structure exists for path.
157 *
158 * @param parent The bus to find the device on.
159 * @param path The relative path from the bus to the appropriate device.
160 * @return Pointer to a device structure for the device on bus at path
161 * or 0/NULL if no device is found.
162 */
163DEVTREE_CONST struct device *find_dev_path(
164 const struct bus *parent, const struct device_path *path)
165{
166 DEVTREE_CONST struct device *child;
Furquan Shaikh86803782020-04-16 23:13:28 -0700167
168 if (!parent) {
169 assert(0);
170 /* Return NULL in case asserts are considered non-fatal. */
171 return NULL;
172 }
173
Kyösti Mälkki2df1c122018-05-21 01:52:10 +0300174 for (child = parent->children; child; child = child->sibling) {
175 if (path_eq(path, &child->path))
176 break;
177 }
178 return child;
179}
180
Kyösti Mälkkiad7674e2018-05-20 10:31:23 +0300181DEVTREE_CONST struct device *pcidev_path_behind(
182 const struct bus *parent, pci_devfn_t devfn)
183{
184 const struct device_path path = {
185 .type = DEVICE_PATH_PCI,
186 .pci.devfn = devfn,
187 };
188 return find_dev_path(parent, &path);
189}
190
Kyösti Mälkkiab275f02019-07-04 07:16:59 +0300191DEVTREE_CONST struct device *pcidev_path_on_bus(unsigned int bus, pci_devfn_t devfn)
192{
193 DEVTREE_CONST struct bus *parent = pci_root_bus();
194 DEVTREE_CONST struct device *dev = parent->children;
195
196 /* FIXME: Write the loop with topology links. */
197 while (dev) {
198 if (dev->path.type != DEVICE_PATH_PCI) {
199 dev = dev->next;
200 continue;
201 }
202 if (dev->bus->secondary == bus)
203 return pcidev_path_behind(dev->bus, devfn);
204 dev = dev->next;
205 }
206 return NULL;
207}
208
Kyösti Mälkkifffc9f32019-07-03 09:55:01 +0300209DEVTREE_CONST struct bus *pci_root_bus(void)
Kyösti Mälkkiad7674e2018-05-20 10:31:23 +0300210{
211 DEVTREE_CONST struct device *pci_domain;
Kyösti Mälkki117cf2b2019-08-20 06:01:57 +0300212 MAYBE_STATIC_BSS DEVTREE_CONST struct bus *pci_root = NULL;
Kyösti Mälkkiad7674e2018-05-20 10:31:23 +0300213
Kyösti Mälkkifffc9f32019-07-03 09:55:01 +0300214 if (pci_root)
215 return pci_root;
216
217 pci_domain = dev_find_path(NULL, DEVICE_PATH_DOMAIN);
218 if (!pci_domain)
219 return NULL;
220
221 pci_root = pci_domain->link_list;
222 return pci_root;
223}
224
225DEVTREE_CONST struct device *pcidev_path_on_root(pci_devfn_t devfn)
226{
Kyösti Mälkkifffc9f32019-07-03 09:55:01 +0300227 return pcidev_path_behind(pci_root_bus(), devfn);
Kyösti Mälkkiad7674e2018-05-20 10:31:23 +0300228}
229
230DEVTREE_CONST struct device *pcidev_on_root(uint8_t dev, uint8_t fn)
231{
232 return pcidev_path_on_root(PCI_DEVFN(dev, fn));
233}
234
Kyösti Mälkkif2ac0132019-07-12 15:26:29 +0300235DEVTREE_CONST struct device *pcidev_path_on_root_debug(pci_devfn_t devfn, const char *func)
236{
237 DEVTREE_CONST struct device *dev = pcidev_path_on_root(devfn);
238 if (dev)
239 return dev;
240
Kyösti Mälkki4323d262019-07-12 16:20:14 +0300241 devtree_bug(func, devfn);
Kyösti Mälkkif2ac0132019-07-12 15:26:29 +0300242
243 /* FIXME: This can return wrong device. */
244 return dev_find_slot(0, devfn);
245}
246
Kyösti Mälkki4323d262019-07-12 16:20:14 +0300247void devtree_bug(const char *func, pci_devfn_t devfn)
248{
249 printk(BIOS_ERR, "BUG: %s requests hidden 00:%02x.%u\n", func, devfn >> 3, devfn & 7);
250}
251
252void __noreturn devtree_die(void)
253{
254 die("DEVTREE: dev or chip_info is NULL\n");
255}
256
Martin Roth16d953a2014-05-12 17:38:59 -0600257/**
Stefan Reinauer57879c92012-07-31 16:47:25 -0700258 * Given an SMBus bus and a device number, find the device structure.
259 *
260 * @param bus The bus number.
261 * @param addr A device number.
262 * @return Pointer to the device structure (if found), 0 otherwise.
263 */
Aaron Durbine4d7abc2017-04-16 22:05:36 -0500264DEVTREE_CONST struct device *dev_find_slot_on_smbus(unsigned int bus,
Stefan Reinauer57879c92012-07-31 16:47:25 -0700265 unsigned int addr)
266{
Aaron Durbine4d7abc2017-04-16 22:05:36 -0500267 DEVTREE_CONST struct device *dev, *result;
Stefan Reinauer57879c92012-07-31 16:47:25 -0700268
269 result = 0;
270 for (dev = all_devices; dev; dev = dev->next) {
271 if ((dev->path.type == DEVICE_PATH_I2C) &&
272 (dev->bus->secondary == bus) &&
273 (dev->path.i2c.device == addr)) {
274 result = dev;
275 break;
276 }
277 }
278 return result;
279}
Kyösti Mälkki96643452015-01-28 22:03:46 +0200280
281/**
282 * Given a PnP port and a device number, find the device structure.
283 *
284 * @param port The I/O port.
285 * @param device Logical device number.
286 * @return Pointer to the device structure (if found), 0 otherwise.
287 */
Aaron Durbine4d7abc2017-04-16 22:05:36 -0500288DEVTREE_CONST struct device *dev_find_slot_pnp(u16 port, u16 device)
Kyösti Mälkki96643452015-01-28 22:03:46 +0200289{
Aaron Durbine4d7abc2017-04-16 22:05:36 -0500290 DEVTREE_CONST struct device *dev;
Kyösti Mälkki96643452015-01-28 22:03:46 +0200291
292 for (dev = all_devices; dev; dev = dev->next) {
293 if ((dev->path.type == DEVICE_PATH_PNP) &&
294 (dev->path.pnp.port == port) &&
295 (dev->path.pnp.device == device)) {
296 return dev;
297 }
298 }
299 return 0;
300}
Aaron Durbina0dabd12018-07-25 08:49:19 -0600301
302/**
303 * Given a device and previous match iterate through all the children.
304 *
305 * @param bus parent device's bus holding all the children
306 * @param prev_child previous child already traversed, if NULL start at
307 * children of parent bus.
308 * @return pointer to child or NULL when no more children
309 */
310DEVTREE_CONST struct device *dev_bus_each_child(const struct bus *parent,
311 DEVTREE_CONST struct device *prev_child)
312{
313 DEVTREE_CONST struct device *dev;
314
315 if (parent == NULL)
316 return NULL;
317
318 if (prev_child == NULL)
319 dev = parent->children;
320 else
321 dev = prev_child->sibling;
322
323 return dev;
324}