xref: /rk3399_ARM-atf/common/fdt_wrappers.c (revision 49e789e353efaf97f84eca016c6a1b8a2b3e3d98)
1e5674e1fSSoby Mathew /*
2d13dbb6fSDavid Horstmann  * Copyright (c) 2018-2021, ARM Limited and Contributors. All rights reserved.
3e5674e1fSSoby Mathew  *
4e5674e1fSSoby Mathew  * SPDX-License-Identifier: BSD-3-Clause
5e5674e1fSSoby Mathew  */
6e5674e1fSSoby Mathew 
7e5674e1fSSoby Mathew /* Helper functions to offer easier navigation of Device Tree Blob */
8e5674e1fSSoby Mathew 
9e5674e1fSSoby Mathew #include <assert.h>
10d13dbb6fSDavid Horstmann #include <errno.h>
1127473620SAntonio Nino Diaz #include <string.h>
12e5674e1fSSoby Mathew 
1309d40e0eSAntonio Nino Diaz #include <libfdt.h>
1409d40e0eSAntonio Nino Diaz 
1509d40e0eSAntonio Nino Diaz #include <common/debug.h>
1609d40e0eSAntonio Nino Diaz #include <common/fdt_wrappers.h>
17d13dbb6fSDavid Horstmann #include <common/uuid.h>
1809d40e0eSAntonio Nino Diaz 
19e5674e1fSSoby Mathew /*
2073f1ac6cSAntonio Nino Diaz  * Read cells from a given property of the given node. Any number of 32-bit
216e3a89f4SAndre Przywara  * cells of the property can be read. Returns 0 on success, or a negative
226e3a89f4SAndre Przywara  * FDT error value otherwise.
2373f1ac6cSAntonio Nino Diaz  */
246e3a89f4SAndre Przywara int fdt_read_uint32_array(const void *dtb, int node, const char *prop_name,
256e3a89f4SAndre Przywara 			  unsigned int cells, uint32_t *value)
2673f1ac6cSAntonio Nino Diaz {
276e3a89f4SAndre Przywara 	const fdt32_t *prop;
2873f1ac6cSAntonio Nino Diaz 	int value_len;
2973f1ac6cSAntonio Nino Diaz 
3073f1ac6cSAntonio Nino Diaz 	assert(dtb != NULL);
316e3a89f4SAndre Przywara 	assert(prop_name != NULL);
3273f1ac6cSAntonio Nino Diaz 	assert(value != NULL);
3373f1ac6cSAntonio Nino Diaz 	assert(node >= 0);
3473f1ac6cSAntonio Nino Diaz 
3573f1ac6cSAntonio Nino Diaz 	/* Access property and obtain its length (in bytes) */
366e3a89f4SAndre Przywara 	prop = fdt_getprop(dtb, node, prop_name, &value_len);
376e3a89f4SAndre Przywara 	if (prop == NULL) {
38*49e789e3SAndre Przywara 		VERBOSE("Couldn't find property %s in dtb\n", prop_name);
396e3a89f4SAndre Przywara 		return -FDT_ERR_NOTFOUND;
4073f1ac6cSAntonio Nino Diaz 	}
4173f1ac6cSAntonio Nino Diaz 
426e3a89f4SAndre Przywara 	/* Verify that property length can fill the entire array. */
436e3a89f4SAndre Przywara 	if (NCELLS((unsigned int)value_len) < cells) {
4473f1ac6cSAntonio Nino Diaz 		WARN("Property length mismatch\n");
456e3a89f4SAndre Przywara 		return -FDT_ERR_BADVALUE;
4673f1ac6cSAntonio Nino Diaz 	}
4773f1ac6cSAntonio Nino Diaz 
4873f1ac6cSAntonio Nino Diaz 	for (unsigned int i = 0U; i < cells; i++) {
496e3a89f4SAndre Przywara 		value[i] = fdt32_to_cpu(prop[i]);
5073f1ac6cSAntonio Nino Diaz 	}
5173f1ac6cSAntonio Nino Diaz 
5273f1ac6cSAntonio Nino Diaz 	return 0;
5373f1ac6cSAntonio Nino Diaz }
5473f1ac6cSAntonio Nino Diaz 
55ff4e6c35SAndre Przywara int fdt_read_uint32(const void *dtb, int node, const char *prop_name,
56ff4e6c35SAndre Przywara 		    uint32_t *value)
57ff4e6c35SAndre Przywara {
58ff4e6c35SAndre Przywara 	return fdt_read_uint32_array(dtb, node, prop_name, 1, value);
59ff4e6c35SAndre Przywara }
60ff4e6c35SAndre Przywara 
61be858cffSAndre Przywara uint32_t fdt_read_uint32_default(const void *dtb, int node,
62be858cffSAndre Przywara 				 const char *prop_name, uint32_t dflt_value)
63be858cffSAndre Przywara {
64be858cffSAndre Przywara 	uint32_t ret = dflt_value;
65be858cffSAndre Przywara 	int err = fdt_read_uint32(dtb, node, prop_name, &ret);
66be858cffSAndre Przywara 
67be858cffSAndre Przywara 	if (err < 0) {
68be858cffSAndre Przywara 		return dflt_value;
69be858cffSAndre Przywara 	}
70be858cffSAndre Przywara 
71be858cffSAndre Przywara 	return ret;
72be858cffSAndre Przywara }
73be858cffSAndre Przywara 
74ff4e6c35SAndre Przywara int fdt_read_uint64(const void *dtb, int node, const char *prop_name,
75ff4e6c35SAndre Przywara 		    uint64_t *value)
76ff4e6c35SAndre Przywara {
77ff4e6c35SAndre Przywara 	uint32_t array[2] = {0, 0};
78ff4e6c35SAndre Przywara 	int ret;
79ff4e6c35SAndre Przywara 
80ff4e6c35SAndre Przywara 	ret = fdt_read_uint32_array(dtb, node, prop_name, 2, array);
81ff4e6c35SAndre Przywara 	if (ret < 0) {
82ff4e6c35SAndre Przywara 		return ret;
83ff4e6c35SAndre Przywara 	}
84ff4e6c35SAndre Przywara 
85ff4e6c35SAndre Przywara 	*value = ((uint64_t)array[0] << 32) | array[1];
86ff4e6c35SAndre Przywara 	return 0;
87ff4e6c35SAndre Przywara }
88ff4e6c35SAndre Przywara 
8973f1ac6cSAntonio Nino Diaz /*
900a2ab6e6SAlexei Fedorov  * Read bytes from a given property of the given node. Any number of
910a2ab6e6SAlexei Fedorov  * bytes of the property can be read. The fdt pointer is updated.
920a2ab6e6SAlexei Fedorov  * Returns 0 on success, and -1 on error.
930a2ab6e6SAlexei Fedorov  */
940a2ab6e6SAlexei Fedorov int fdtw_read_bytes(const void *dtb, int node, const char *prop,
950a2ab6e6SAlexei Fedorov 		    unsigned int length, void *value)
960a2ab6e6SAlexei Fedorov {
970a2ab6e6SAlexei Fedorov 	const void *ptr;
980a2ab6e6SAlexei Fedorov 	int value_len;
990a2ab6e6SAlexei Fedorov 
1000a2ab6e6SAlexei Fedorov 	assert(dtb != NULL);
1010a2ab6e6SAlexei Fedorov 	assert(prop != NULL);
1020a2ab6e6SAlexei Fedorov 	assert(value != NULL);
1030a2ab6e6SAlexei Fedorov 	assert(node >= 0);
1040a2ab6e6SAlexei Fedorov 
1050a2ab6e6SAlexei Fedorov 	/* Access property and obtain its length (in bytes) */
1060a2ab6e6SAlexei Fedorov 	ptr = fdt_getprop_namelen(dtb, node, prop, (int)strlen(prop),
1070a2ab6e6SAlexei Fedorov 					&value_len);
1080a2ab6e6SAlexei Fedorov 	if (ptr == NULL) {
1090a2ab6e6SAlexei Fedorov 		WARN("Couldn't find property %s in dtb\n", prop);
1100a2ab6e6SAlexei Fedorov 		return -1;
1110a2ab6e6SAlexei Fedorov 	}
1120a2ab6e6SAlexei Fedorov 
1130a2ab6e6SAlexei Fedorov 	/* Verify that property length is not less than number of bytes */
1140a2ab6e6SAlexei Fedorov 	if ((unsigned int)value_len < length) {
1150a2ab6e6SAlexei Fedorov 		WARN("Property length mismatch\n");
1160a2ab6e6SAlexei Fedorov 		return -1;
1170a2ab6e6SAlexei Fedorov 	}
1180a2ab6e6SAlexei Fedorov 
1190a2ab6e6SAlexei Fedorov 	(void)memcpy(value, ptr, length);
1200a2ab6e6SAlexei Fedorov 
1210a2ab6e6SAlexei Fedorov 	return 0;
1220a2ab6e6SAlexei Fedorov }
1230a2ab6e6SAlexei Fedorov 
1240a2ab6e6SAlexei Fedorov /*
12527473620SAntonio Nino Diaz  * Read string from a given property of the given node. Up to 'size - 1'
12627473620SAntonio Nino Diaz  * characters are read, and a NUL terminator is added. Returns 0 on success,
12727473620SAntonio Nino Diaz  * and -1 upon error.
12827473620SAntonio Nino Diaz  */
12927473620SAntonio Nino Diaz int fdtw_read_string(const void *dtb, int node, const char *prop,
13027473620SAntonio Nino Diaz 		char *str, size_t size)
13127473620SAntonio Nino Diaz {
13227473620SAntonio Nino Diaz 	const char *ptr;
13327473620SAntonio Nino Diaz 	size_t len;
13427473620SAntonio Nino Diaz 
13527473620SAntonio Nino Diaz 	assert(dtb != NULL);
13627473620SAntonio Nino Diaz 	assert(node >= 0);
13727473620SAntonio Nino Diaz 	assert(prop != NULL);
13827473620SAntonio Nino Diaz 	assert(str != NULL);
13927473620SAntonio Nino Diaz 	assert(size > 0U);
14027473620SAntonio Nino Diaz 
14127473620SAntonio Nino Diaz 	ptr = fdt_getprop_namelen(dtb, node, prop, (int)strlen(prop), NULL);
14227473620SAntonio Nino Diaz 	if (ptr == NULL) {
14327473620SAntonio Nino Diaz 		WARN("Couldn't find property %s in dtb\n", prop);
14427473620SAntonio Nino Diaz 		return -1;
14527473620SAntonio Nino Diaz 	}
14627473620SAntonio Nino Diaz 
14727473620SAntonio Nino Diaz 	len = strlcpy(str, ptr, size);
14827473620SAntonio Nino Diaz 	if (len >= size) {
14927473620SAntonio Nino Diaz 		WARN("String of property %s in dtb has been truncated\n", prop);
15027473620SAntonio Nino Diaz 		return -1;
15127473620SAntonio Nino Diaz 	}
15227473620SAntonio Nino Diaz 
15327473620SAntonio Nino Diaz 	return 0;
15427473620SAntonio Nino Diaz }
15527473620SAntonio Nino Diaz 
15627473620SAntonio Nino Diaz /*
157d13dbb6fSDavid Horstmann  * Read UUID from a given property of the given node. Returns 0 on success,
158d13dbb6fSDavid Horstmann  * and a negative value upon error.
159d13dbb6fSDavid Horstmann  */
160d13dbb6fSDavid Horstmann int fdtw_read_uuid(const void *dtb, int node, const char *prop,
161d13dbb6fSDavid Horstmann 		   unsigned int length, uint8_t *uuid)
162d13dbb6fSDavid Horstmann {
163d13dbb6fSDavid Horstmann 	/* Buffer for UUID string (plus NUL terminator) */
164d13dbb6fSDavid Horstmann 	char uuid_string[UUID_STRING_LENGTH + 1U];
165d13dbb6fSDavid Horstmann 	int err;
166d13dbb6fSDavid Horstmann 
167d13dbb6fSDavid Horstmann 	assert(dtb != NULL);
168d13dbb6fSDavid Horstmann 	assert(prop != NULL);
169d13dbb6fSDavid Horstmann 	assert(uuid != NULL);
170d13dbb6fSDavid Horstmann 	assert(node >= 0);
171d13dbb6fSDavid Horstmann 
172d13dbb6fSDavid Horstmann 	if (length < UUID_BYTES_LENGTH) {
173d13dbb6fSDavid Horstmann 		return -EINVAL;
174d13dbb6fSDavid Horstmann 	}
175d13dbb6fSDavid Horstmann 
176d13dbb6fSDavid Horstmann 	err = fdtw_read_string(dtb, node, prop, uuid_string,
177d13dbb6fSDavid Horstmann 			       UUID_STRING_LENGTH + 1U);
178d13dbb6fSDavid Horstmann 	if (err != 0) {
179d13dbb6fSDavid Horstmann 		return err;
180d13dbb6fSDavid Horstmann 	}
181d13dbb6fSDavid Horstmann 
182d13dbb6fSDavid Horstmann 	if (read_uuid(uuid, uuid_string) != 0) {
183d13dbb6fSDavid Horstmann 		return -FDT_ERR_BADVALUE;
184d13dbb6fSDavid Horstmann 	}
185d13dbb6fSDavid Horstmann 
186d13dbb6fSDavid Horstmann 	return 0;
187d13dbb6fSDavid Horstmann }
188d13dbb6fSDavid Horstmann 
189d13dbb6fSDavid Horstmann /*
190e5674e1fSSoby Mathew  * Write cells in place to a given property of the given node. At most 2 cells
191e5674e1fSSoby Mathew  * of the property are written. Returns 0 on success, and -1 upon error.
192e5674e1fSSoby Mathew  */
193e5674e1fSSoby Mathew int fdtw_write_inplace_cells(void *dtb, int node, const char *prop,
194e5674e1fSSoby Mathew 		unsigned int cells, void *value)
195e5674e1fSSoby Mathew {
196e5674e1fSSoby Mathew 	int err, len;
197e5674e1fSSoby Mathew 
198da5f2745SSoby Mathew 	assert(dtb != NULL);
199da5f2745SSoby Mathew 	assert(prop != NULL);
200da5f2745SSoby Mathew 	assert(value != NULL);
201e5674e1fSSoby Mathew 	assert(node >= 0);
202e5674e1fSSoby Mathew 
203e5674e1fSSoby Mathew 	/* We expect either 1 or 2 cell property */
204da5f2745SSoby Mathew 	assert(cells <= 2U);
205e5674e1fSSoby Mathew 
206da5f2745SSoby Mathew 	if (cells == 2U)
207e5674e1fSSoby Mathew 		*(uint64_t *)value = cpu_to_fdt64(*(uint64_t *)value);
208e5674e1fSSoby Mathew 	else
209e5674e1fSSoby Mathew 		*(uint32_t *)value = cpu_to_fdt32(*(uint32_t *)value);
210e5674e1fSSoby Mathew 
211da5f2745SSoby Mathew 	len = (int)cells * 4;
212e5674e1fSSoby Mathew 
213e5674e1fSSoby Mathew 	/* Set property value in place */
214e5674e1fSSoby Mathew 	err = fdt_setprop_inplace(dtb, node, prop, value, len);
215e5674e1fSSoby Mathew 	if (err != 0) {
216e5674e1fSSoby Mathew 		WARN("Modify property %s failed with error %d\n", prop, err);
217e5674e1fSSoby Mathew 		return -1;
218e5674e1fSSoby Mathew 	}
219e5674e1fSSoby Mathew 
220e5674e1fSSoby Mathew 	return 0;
221e5674e1fSSoby Mathew }
2220a2ab6e6SAlexei Fedorov 
2230a2ab6e6SAlexei Fedorov /*
2240a2ab6e6SAlexei Fedorov  * Write bytes in place to a given property of the given node.
2250a2ab6e6SAlexei Fedorov  * Any number of bytes of the property can be written.
2260a2ab6e6SAlexei Fedorov  * Returns 0 on success, and < 0 on error.
2270a2ab6e6SAlexei Fedorov  */
2280a2ab6e6SAlexei Fedorov int fdtw_write_inplace_bytes(void *dtb, int node, const char *prop,
2290a2ab6e6SAlexei Fedorov 			     unsigned int length, const void *data)
2300a2ab6e6SAlexei Fedorov {
2310a2ab6e6SAlexei Fedorov 	const void *ptr;
2320a2ab6e6SAlexei Fedorov 	int namelen, value_len, err;
2330a2ab6e6SAlexei Fedorov 
2340a2ab6e6SAlexei Fedorov 	assert(dtb != NULL);
2350a2ab6e6SAlexei Fedorov 	assert(prop != NULL);
2360a2ab6e6SAlexei Fedorov 	assert(data != NULL);
2370a2ab6e6SAlexei Fedorov 	assert(node >= 0);
2380a2ab6e6SAlexei Fedorov 
2390a2ab6e6SAlexei Fedorov 	namelen = (int)strlen(prop);
2400a2ab6e6SAlexei Fedorov 
2410a2ab6e6SAlexei Fedorov 	/* Access property and obtain its length in bytes */
2420a2ab6e6SAlexei Fedorov 	ptr = fdt_getprop_namelen(dtb, node, prop, namelen, &value_len);
2430a2ab6e6SAlexei Fedorov 	if (ptr == NULL) {
2440a2ab6e6SAlexei Fedorov 		WARN("Couldn't find property %s in dtb\n", prop);
2450a2ab6e6SAlexei Fedorov 		return -1;
2460a2ab6e6SAlexei Fedorov 	}
2470a2ab6e6SAlexei Fedorov 
2480a2ab6e6SAlexei Fedorov 	/* Verify that property length is not less than number of bytes */
2490a2ab6e6SAlexei Fedorov 	if ((unsigned int)value_len < length) {
2500a2ab6e6SAlexei Fedorov 		WARN("Property length mismatch\n");
2510a2ab6e6SAlexei Fedorov 		return -1;
2520a2ab6e6SAlexei Fedorov 	}
2530a2ab6e6SAlexei Fedorov 
2540a2ab6e6SAlexei Fedorov 	/* Set property value in place */
2550a2ab6e6SAlexei Fedorov 	err = fdt_setprop_inplace_namelen_partial(dtb, node, prop,
2560a2ab6e6SAlexei Fedorov 						  namelen, 0,
2570a2ab6e6SAlexei Fedorov 						  data, (int)length);
2580a2ab6e6SAlexei Fedorov 	if (err != 0) {
2590a2ab6e6SAlexei Fedorov 		WARN("Set property %s failed with error %d\n", prop, err);
2600a2ab6e6SAlexei Fedorov 	}
2610a2ab6e6SAlexei Fedorov 
2620a2ab6e6SAlexei Fedorov 	return err;
2630a2ab6e6SAlexei Fedorov }
264364ad245SAndre Przywara 
265364ad245SAndre Przywara static uint64_t fdt_read_prop_cells(const fdt32_t *prop, int nr_cells)
266364ad245SAndre Przywara {
267364ad245SAndre Przywara 	uint64_t reg = fdt32_to_cpu(prop[0]);
268364ad245SAndre Przywara 
269364ad245SAndre Przywara 	if (nr_cells > 1) {
270364ad245SAndre Przywara 		reg = (reg << 32) | fdt32_to_cpu(prop[1]);
271364ad245SAndre Przywara 	}
272364ad245SAndre Przywara 
273364ad245SAndre Przywara 	return reg;
274364ad245SAndre Przywara }
275364ad245SAndre Przywara 
276364ad245SAndre Przywara int fdt_get_reg_props_by_index(const void *dtb, int node, int index,
277364ad245SAndre Przywara 			       uintptr_t *base, size_t *size)
278364ad245SAndre Przywara {
279364ad245SAndre Przywara 	const fdt32_t *prop;
280364ad245SAndre Przywara 	int parent, len;
281364ad245SAndre Przywara 	int ac, sc;
282364ad245SAndre Przywara 	int cell;
283364ad245SAndre Przywara 
284364ad245SAndre Przywara 	parent = fdt_parent_offset(dtb, node);
285364ad245SAndre Przywara 	if (parent < 0) {
286364ad245SAndre Przywara 		return -FDT_ERR_BADOFFSET;
287364ad245SAndre Przywara 	}
288364ad245SAndre Przywara 
289364ad245SAndre Przywara 	ac = fdt_address_cells(dtb, parent);
290364ad245SAndre Przywara 	sc = fdt_size_cells(dtb, parent);
291364ad245SAndre Przywara 
292364ad245SAndre Przywara 	cell = index * (ac + sc);
293364ad245SAndre Przywara 
294364ad245SAndre Przywara 	prop = fdt_getprop(dtb, node, "reg", &len);
295364ad245SAndre Przywara 	if (prop == NULL) {
296364ad245SAndre Przywara 		WARN("Couldn't find \"reg\" property in dtb\n");
297364ad245SAndre Przywara 		return -FDT_ERR_NOTFOUND;
298364ad245SAndre Przywara 	}
299364ad245SAndre Przywara 
300364ad245SAndre Przywara 	if (((cell + ac + sc) * (int)sizeof(uint32_t)) > len) {
301364ad245SAndre Przywara 		return -FDT_ERR_BADVALUE;
302364ad245SAndre Przywara 	}
303364ad245SAndre Przywara 
304364ad245SAndre Przywara 	if (base != NULL) {
305364ad245SAndre Przywara 		*base = (uintptr_t)fdt_read_prop_cells(&prop[cell], ac);
306364ad245SAndre Przywara 	}
307364ad245SAndre Przywara 
308364ad245SAndre Przywara 	if (size != NULL) {
309364ad245SAndre Przywara 		*size = (size_t)fdt_read_prop_cells(&prop[cell + ac], sc);
310364ad245SAndre Przywara 	}
311364ad245SAndre Przywara 
312364ad245SAndre Przywara 	return 0;
313364ad245SAndre Przywara }
3147ad6d362SAndre Przywara 
3157ad6d362SAndre Przywara /*******************************************************************************
3167ad6d362SAndre Przywara  * This function fills reg node info (base & size) with an index found by
3177ad6d362SAndre Przywara  * checking the reg-names node.
3187ad6d362SAndre Przywara  * Returns 0 on success and a negative FDT error code on failure.
3197ad6d362SAndre Przywara  ******************************************************************************/
3207ad6d362SAndre Przywara int fdt_get_reg_props_by_name(const void *dtb, int node, const char *name,
3217ad6d362SAndre Przywara 			      uintptr_t *base, size_t *size)
3227ad6d362SAndre Przywara {
3237ad6d362SAndre Przywara 	int index;
3247ad6d362SAndre Przywara 
3257ad6d362SAndre Przywara 	index = fdt_stringlist_search(dtb, node, "reg-names", name);
3267ad6d362SAndre Przywara 	if (index < 0) {
3277ad6d362SAndre Przywara 		return index;
3287ad6d362SAndre Przywara 	}
3297ad6d362SAndre Przywara 
3307ad6d362SAndre Przywara 	return fdt_get_reg_props_by_index(dtb, node, index, base, size);
3317ad6d362SAndre Przywara }
33260e2e27dSAndre Przywara 
33360e2e27dSAndre Przywara /*******************************************************************************
33460e2e27dSAndre Przywara  * This function gets the stdout path node.
33560e2e27dSAndre Przywara  * It reads the value indicated inside the device tree.
33660e2e27dSAndre Przywara  * Returns node offset on success and a negative FDT error code on failure.
33760e2e27dSAndre Przywara  ******************************************************************************/
33860e2e27dSAndre Przywara int fdt_get_stdout_node_offset(const void *dtb)
33960e2e27dSAndre Przywara {
34060e2e27dSAndre Przywara 	int node;
34160e2e27dSAndre Przywara 	const char *prop, *path;
34260e2e27dSAndre Przywara 	int len;
34360e2e27dSAndre Przywara 
34460e2e27dSAndre Przywara 	/* The /secure-chosen node takes precedence over the standard one. */
34560e2e27dSAndre Przywara 	node = fdt_path_offset(dtb, "/secure-chosen");
34660e2e27dSAndre Przywara 	if (node < 0) {
34760e2e27dSAndre Przywara 		node = fdt_path_offset(dtb, "/chosen");
34860e2e27dSAndre Przywara 		if (node < 0) {
34960e2e27dSAndre Przywara 			return -FDT_ERR_NOTFOUND;
35060e2e27dSAndre Przywara 		}
35160e2e27dSAndre Przywara 	}
35260e2e27dSAndre Przywara 
35360e2e27dSAndre Przywara 	prop = fdt_getprop(dtb, node, "stdout-path", NULL);
35460e2e27dSAndre Przywara 	if (prop == NULL) {
35560e2e27dSAndre Przywara 		return -FDT_ERR_NOTFOUND;
35660e2e27dSAndre Przywara 	}
35760e2e27dSAndre Przywara 
35860e2e27dSAndre Przywara 	/* Determine the actual path length, as a colon terminates the path. */
35960e2e27dSAndre Przywara 	path = strchr(prop, ':');
36060e2e27dSAndre Przywara 	if (path == NULL) {
36160e2e27dSAndre Przywara 		len = strlen(prop);
36260e2e27dSAndre Przywara 	} else {
36360e2e27dSAndre Przywara 		len = path - prop;
36460e2e27dSAndre Przywara 	}
36560e2e27dSAndre Przywara 
36660e2e27dSAndre Przywara 	/* Aliases cannot start with a '/', so it must be the actual path. */
36760e2e27dSAndre Przywara 	if (prop[0] == '/') {
36860e2e27dSAndre Przywara 		return fdt_path_offset_namelen(dtb, prop, len);
36960e2e27dSAndre Przywara 	}
37060e2e27dSAndre Przywara 
37160e2e27dSAndre Przywara 	/* Lookup the alias, as this contains the actual path. */
37260e2e27dSAndre Przywara 	path = fdt_get_alias_namelen(dtb, prop, len);
37360e2e27dSAndre Przywara 	if (path == NULL) {
37460e2e27dSAndre Przywara 		return -FDT_ERR_NOTFOUND;
37560e2e27dSAndre Przywara 	}
37660e2e27dSAndre Przywara 
37760e2e27dSAndre Przywara 	return fdt_path_offset(dtb, path);
37860e2e27dSAndre Przywara }
379447870bfSMadhukar Pappireddy 
380447870bfSMadhukar Pappireddy 
381447870bfSMadhukar Pappireddy /*******************************************************************************
382447870bfSMadhukar Pappireddy  * Only devices which are direct children of root node use CPU address domain.
383447870bfSMadhukar Pappireddy  * All other devices use addresses that are local to the device node and cannot
384447870bfSMadhukar Pappireddy  * directly used by CPU. Device tree provides an address translation mechanism
385447870bfSMadhukar Pappireddy  * through "ranges" property which provides mappings from local address space to
386447870bfSMadhukar Pappireddy  * parent address space. Since a device could be a child of a child node to the
387447870bfSMadhukar Pappireddy  * root node, there can be more than one level of address translation needed to
388447870bfSMadhukar Pappireddy  * map the device local address space to CPU address space.
389447870bfSMadhukar Pappireddy  * fdtw_translate_address() API performs address translation of a local address
390447870bfSMadhukar Pappireddy  * to a global address with help of various helper functions.
391447870bfSMadhukar Pappireddy  ******************************************************************************/
392447870bfSMadhukar Pappireddy 
393447870bfSMadhukar Pappireddy static bool fdtw_xlat_hit(const uint32_t *value, int child_addr_size,
394447870bfSMadhukar Pappireddy 		int parent_addr_size, int range_size, uint64_t base_address,
395447870bfSMadhukar Pappireddy 		uint64_t *translated_addr)
396447870bfSMadhukar Pappireddy {
397447870bfSMadhukar Pappireddy 	uint64_t local_address, parent_address, addr_range;
398447870bfSMadhukar Pappireddy 
399447870bfSMadhukar Pappireddy 	local_address = fdt_read_prop_cells(value, child_addr_size);
400447870bfSMadhukar Pappireddy 	parent_address = fdt_read_prop_cells(value + child_addr_size,
401447870bfSMadhukar Pappireddy 				parent_addr_size);
402447870bfSMadhukar Pappireddy 	addr_range = fdt_read_prop_cells(value + child_addr_size +
403447870bfSMadhukar Pappireddy 				parent_addr_size,
404447870bfSMadhukar Pappireddy 				range_size);
405447870bfSMadhukar Pappireddy 	VERBOSE("DT: Address %llx mapped to %llx with range %llx\n",
406447870bfSMadhukar Pappireddy 		local_address, parent_address, addr_range);
407447870bfSMadhukar Pappireddy 
408447870bfSMadhukar Pappireddy 	/* Perform range check */
409447870bfSMadhukar Pappireddy 	if ((base_address < local_address) ||
410447870bfSMadhukar Pappireddy 		(base_address >= local_address + addr_range)) {
411447870bfSMadhukar Pappireddy 		return false;
412447870bfSMadhukar Pappireddy 	}
413447870bfSMadhukar Pappireddy 
414447870bfSMadhukar Pappireddy 	/* Found hit for the addr range that needs to be translated */
415447870bfSMadhukar Pappireddy 	*translated_addr = parent_address + (base_address - local_address);
416447870bfSMadhukar Pappireddy 	VERBOSE("DT: child address %llx mapped to %llx in parent bus\n",
417447870bfSMadhukar Pappireddy 			local_address, parent_address);
418447870bfSMadhukar Pappireddy 	return true;
419447870bfSMadhukar Pappireddy }
420447870bfSMadhukar Pappireddy 
421447870bfSMadhukar Pappireddy #define ILLEGAL_ADDR	ULL(~0)
422447870bfSMadhukar Pappireddy 
423447870bfSMadhukar Pappireddy static uint64_t fdtw_search_all_xlat_entries(const void *dtb,
424447870bfSMadhukar Pappireddy 				const struct fdt_property *ranges_prop,
425447870bfSMadhukar Pappireddy 				int local_bus, uint64_t base_address)
426447870bfSMadhukar Pappireddy {
427447870bfSMadhukar Pappireddy 	uint64_t translated_addr;
428447870bfSMadhukar Pappireddy 	const uint32_t *next_entry;
429447870bfSMadhukar Pappireddy 	int parent_bus_node, nxlat_entries, length;
430447870bfSMadhukar Pappireddy 	int self_addr_cells, parent_addr_cells, self_size_cells, ncells_xlat;
431447870bfSMadhukar Pappireddy 
432447870bfSMadhukar Pappireddy 	/*
433447870bfSMadhukar Pappireddy 	 * The number of cells in one translation entry in ranges is the sum of
434447870bfSMadhukar Pappireddy 	 * the following values:
435447870bfSMadhukar Pappireddy 	 * self#address-cells + parent#address-cells + self#size-cells
436447870bfSMadhukar Pappireddy 	 * Ex: the iofpga ranges property has one translation entry with 4 cells
437447870bfSMadhukar Pappireddy 	 * They represent iofpga#addr-cells + motherboard#addr-cells + iofpga#size-cells
438447870bfSMadhukar Pappireddy 	 *              = 1                 + 2                      + 1
439447870bfSMadhukar Pappireddy 	 */
440447870bfSMadhukar Pappireddy 
441447870bfSMadhukar Pappireddy 	parent_bus_node = fdt_parent_offset(dtb, local_bus);
442447870bfSMadhukar Pappireddy 	self_addr_cells = fdt_address_cells(dtb, local_bus);
443447870bfSMadhukar Pappireddy 	self_size_cells = fdt_size_cells(dtb, local_bus);
444447870bfSMadhukar Pappireddy 	parent_addr_cells = fdt_address_cells(dtb, parent_bus_node);
445447870bfSMadhukar Pappireddy 
446447870bfSMadhukar Pappireddy 	/* Number of cells per translation entry i.e., mapping */
447447870bfSMadhukar Pappireddy 	ncells_xlat = self_addr_cells + parent_addr_cells + self_size_cells;
448447870bfSMadhukar Pappireddy 
449447870bfSMadhukar Pappireddy 	assert(ncells_xlat > 0);
450447870bfSMadhukar Pappireddy 
451447870bfSMadhukar Pappireddy 	/*
452447870bfSMadhukar Pappireddy 	 * Find the number of translations(mappings) specified in the current
453447870bfSMadhukar Pappireddy 	 * `ranges` property. Note that length represents number of bytes and
454447870bfSMadhukar Pappireddy 	 * is stored in big endian mode.
455447870bfSMadhukar Pappireddy 	 */
456447870bfSMadhukar Pappireddy 	length = fdt32_to_cpu(ranges_prop->len);
457447870bfSMadhukar Pappireddy 	nxlat_entries = (length/sizeof(uint32_t))/ncells_xlat;
458447870bfSMadhukar Pappireddy 
459447870bfSMadhukar Pappireddy 	assert(nxlat_entries > 0);
460447870bfSMadhukar Pappireddy 
461447870bfSMadhukar Pappireddy 	next_entry = (const uint32_t *)ranges_prop->data;
462447870bfSMadhukar Pappireddy 
463447870bfSMadhukar Pappireddy 	/* Iterate over the entries in the "ranges" */
464447870bfSMadhukar Pappireddy 	for (int i = 0; i < nxlat_entries; i++) {
465447870bfSMadhukar Pappireddy 		if (fdtw_xlat_hit(next_entry, self_addr_cells,
466447870bfSMadhukar Pappireddy 				parent_addr_cells, self_size_cells, base_address,
467447870bfSMadhukar Pappireddy 				&translated_addr)){
468447870bfSMadhukar Pappireddy 			return translated_addr;
469447870bfSMadhukar Pappireddy 		}
470447870bfSMadhukar Pappireddy 		next_entry = next_entry + ncells_xlat;
471447870bfSMadhukar Pappireddy 	}
472447870bfSMadhukar Pappireddy 
473447870bfSMadhukar Pappireddy 	INFO("DT: No translation found for address %llx in node %s\n",
474447870bfSMadhukar Pappireddy 		base_address, fdt_get_name(dtb, local_bus, NULL));
475447870bfSMadhukar Pappireddy 	return ILLEGAL_ADDR;
476447870bfSMadhukar Pappireddy }
477447870bfSMadhukar Pappireddy 
478447870bfSMadhukar Pappireddy 
479447870bfSMadhukar Pappireddy /*******************************************************************************
480447870bfSMadhukar Pappireddy  * address mapping needs to be done recursively starting from current node to
481447870bfSMadhukar Pappireddy  * root node through all intermediate parent nodes.
482447870bfSMadhukar Pappireddy  * Sample device tree is shown here:
483447870bfSMadhukar Pappireddy 
484447870bfSMadhukar Pappireddy smb@0,0 {
485447870bfSMadhukar Pappireddy 	compatible = "simple-bus";
486447870bfSMadhukar Pappireddy 
487447870bfSMadhukar Pappireddy 	#address-cells = <2>;
488447870bfSMadhukar Pappireddy 	#size-cells = <1>;
489447870bfSMadhukar Pappireddy 	ranges = <0 0 0 0x08000000 0x04000000>,
490447870bfSMadhukar Pappireddy 		 <1 0 0 0x14000000 0x04000000>,
491447870bfSMadhukar Pappireddy 		 <2 0 0 0x18000000 0x04000000>,
492447870bfSMadhukar Pappireddy 		 <3 0 0 0x1c000000 0x04000000>,
493447870bfSMadhukar Pappireddy 		 <4 0 0 0x0c000000 0x04000000>,
494447870bfSMadhukar Pappireddy 		 <5 0 0 0x10000000 0x04000000>;
495447870bfSMadhukar Pappireddy 
496447870bfSMadhukar Pappireddy 	motherboard {
497447870bfSMadhukar Pappireddy 		arm,v2m-memory-map = "rs1";
498447870bfSMadhukar Pappireddy 		compatible = "arm,vexpress,v2m-p1", "simple-bus";
499447870bfSMadhukar Pappireddy 		#address-cells = <2>;
500447870bfSMadhukar Pappireddy 		#size-cells = <1>;
501447870bfSMadhukar Pappireddy 		ranges;
502447870bfSMadhukar Pappireddy 
503447870bfSMadhukar Pappireddy 		iofpga@3,00000000 {
504447870bfSMadhukar Pappireddy 			compatible = "arm,amba-bus", "simple-bus";
505447870bfSMadhukar Pappireddy 			#address-cells = <1>;
506447870bfSMadhukar Pappireddy 			#size-cells = <1>;
507447870bfSMadhukar Pappireddy 			ranges = <0 3 0 0x200000>;
508447870bfSMadhukar Pappireddy 			v2m_serial1: uart@a0000 {
509447870bfSMadhukar Pappireddy 				compatible = "arm,pl011", "arm,primecell";
510447870bfSMadhukar Pappireddy 				reg = <0x0a0000 0x1000>;
511447870bfSMadhukar Pappireddy 				interrupts = <0 6 4>;
512447870bfSMadhukar Pappireddy 				clocks = <&v2m_clk24mhz>, <&v2m_clk24mhz>;
513447870bfSMadhukar Pappireddy 				clock-names = "uartclk", "apb_pclk";
514447870bfSMadhukar Pappireddy 		};
515447870bfSMadhukar Pappireddy 	};
516447870bfSMadhukar Pappireddy };
517447870bfSMadhukar Pappireddy 
518447870bfSMadhukar Pappireddy  * As seen above, there are 3 levels of address translations needed. An empty
519447870bfSMadhukar Pappireddy  * `ranges` property denotes identity mapping (as seen in `motherboard` node).
520447870bfSMadhukar Pappireddy  * Each ranges property can map a set of child addresses to parent bus. Hence
521447870bfSMadhukar Pappireddy  * there can be more than 1 (translation) entry in the ranges property as seen
522447870bfSMadhukar Pappireddy  * in the `smb` node which has 6 translation entries.
523447870bfSMadhukar Pappireddy  ******************************************************************************/
524447870bfSMadhukar Pappireddy 
525447870bfSMadhukar Pappireddy /* Recursive implementation */
526447870bfSMadhukar Pappireddy uint64_t fdtw_translate_address(const void *dtb, int node,
527447870bfSMadhukar Pappireddy 				uint64_t base_address)
528447870bfSMadhukar Pappireddy {
529447870bfSMadhukar Pappireddy 	int length, local_bus_node;
530447870bfSMadhukar Pappireddy 	const char *node_name;
531447870bfSMadhukar Pappireddy 	uint64_t global_address;
532447870bfSMadhukar Pappireddy 
533447870bfSMadhukar Pappireddy 	local_bus_node = fdt_parent_offset(dtb, node);
534447870bfSMadhukar Pappireddy 	node_name = fdt_get_name(dtb, local_bus_node, NULL);
535447870bfSMadhukar Pappireddy 
536447870bfSMadhukar Pappireddy 	/*
537447870bfSMadhukar Pappireddy 	 * In the example given above, starting from the leaf node:
538447870bfSMadhukar Pappireddy 	 * uart@a000 represents the current node
539447870bfSMadhukar Pappireddy 	 * iofpga@3,00000000 represents the local bus
540447870bfSMadhukar Pappireddy 	 * motherboard represents the parent bus
541447870bfSMadhukar Pappireddy 	 */
542447870bfSMadhukar Pappireddy 
543447870bfSMadhukar Pappireddy 	/* Read the ranges property */
544447870bfSMadhukar Pappireddy 	const struct fdt_property *property = fdt_get_property(dtb,
545447870bfSMadhukar Pappireddy 					local_bus_node, "ranges", &length);
546447870bfSMadhukar Pappireddy 
547447870bfSMadhukar Pappireddy 	if (property == NULL) {
548447870bfSMadhukar Pappireddy 		if (local_bus_node == 0) {
549447870bfSMadhukar Pappireddy 			/*
550447870bfSMadhukar Pappireddy 			 * root node doesn't have range property as addresses
551447870bfSMadhukar Pappireddy 			 * are in CPU address space.
552447870bfSMadhukar Pappireddy 			 */
553447870bfSMadhukar Pappireddy 			return base_address;
554447870bfSMadhukar Pappireddy 		}
555447870bfSMadhukar Pappireddy 		INFO("DT: Couldn't find ranges property in node %s\n",
556447870bfSMadhukar Pappireddy 			node_name);
557447870bfSMadhukar Pappireddy 		return ILLEGAL_ADDR;
558447870bfSMadhukar Pappireddy 	} else if (length == 0) {
559447870bfSMadhukar Pappireddy 		/* empty ranges indicates identity map to parent bus */
560447870bfSMadhukar Pappireddy 		return fdtw_translate_address(dtb, local_bus_node, base_address);
561447870bfSMadhukar Pappireddy 	}
562447870bfSMadhukar Pappireddy 
563447870bfSMadhukar Pappireddy 	VERBOSE("DT: Translation lookup in node %s at offset %d\n", node_name,
564447870bfSMadhukar Pappireddy 		local_bus_node);
565447870bfSMadhukar Pappireddy 	global_address = fdtw_search_all_xlat_entries(dtb, property,
566447870bfSMadhukar Pappireddy 				local_bus_node, base_address);
567447870bfSMadhukar Pappireddy 
568447870bfSMadhukar Pappireddy 	if (global_address == ILLEGAL_ADDR) {
569447870bfSMadhukar Pappireddy 		return ILLEGAL_ADDR;
570447870bfSMadhukar Pappireddy 	}
571447870bfSMadhukar Pappireddy 
572447870bfSMadhukar Pappireddy 	/* Translate the local device address recursively */
573447870bfSMadhukar Pappireddy 	return fdtw_translate_address(dtb, local_bus_node, global_address);
574447870bfSMadhukar Pappireddy }
5752d9ea360SChris Kay 
5762d9ea360SChris Kay /*
5772d9ea360SChris Kay  * For every CPU node (`/cpus/cpu@n`) in an FDT, execute a callback passing a
5782d9ea360SChris Kay  * pointer to the FDT and the offset of the CPU node. If the return value of the
5792d9ea360SChris Kay  * callback is negative, it is treated as an error and the loop is aborted. In
5802d9ea360SChris Kay  * this situation, the value of the callback is returned from the function.
5812d9ea360SChris Kay  *
5822d9ea360SChris Kay  * Returns `0` on success, or a negative integer representing an error code.
5832d9ea360SChris Kay  */
5842d9ea360SChris Kay int fdtw_for_each_cpu(const void *dtb,
5852d9ea360SChris Kay 		      int (*callback)(const void *dtb, int node, uintptr_t mpidr))
5862d9ea360SChris Kay {
5872d9ea360SChris Kay 	int ret = 0;
5882d9ea360SChris Kay 	int parent, node = 0;
5892d9ea360SChris Kay 
5902d9ea360SChris Kay 	parent = fdt_path_offset(dtb, "/cpus");
5912d9ea360SChris Kay 	if (parent < 0) {
5922d9ea360SChris Kay 		return parent;
5932d9ea360SChris Kay 	}
5942d9ea360SChris Kay 
5952d9ea360SChris Kay 	fdt_for_each_subnode(node, dtb, parent) {
5962d9ea360SChris Kay 		const char *name;
5972d9ea360SChris Kay 		int len;
5982d9ea360SChris Kay 
5992d9ea360SChris Kay 		uintptr_t mpidr = 0U;
6002d9ea360SChris Kay 
6012d9ea360SChris Kay 		name = fdt_get_name(dtb, node, &len);
6022d9ea360SChris Kay 		if (strncmp(name, "cpu@", 4) != 0) {
6032d9ea360SChris Kay 			continue;
6042d9ea360SChris Kay 		}
6052d9ea360SChris Kay 
6062d9ea360SChris Kay 		ret = fdt_get_reg_props_by_index(dtb, node, 0, &mpidr, NULL);
6072d9ea360SChris Kay 		if (ret < 0) {
6082d9ea360SChris Kay 			break;
6092d9ea360SChris Kay 		}
6102d9ea360SChris Kay 
6112d9ea360SChris Kay 		ret = callback(dtb, node, mpidr);
6122d9ea360SChris Kay 		if (ret < 0) {
6132d9ea360SChris Kay 			break;
6142d9ea360SChris Kay 		}
6152d9ea360SChris Kay 	}
6162d9ea360SChris Kay 
6172d9ea360SChris Kay 	return ret;
6182d9ea360SChris Kay }
619