blob: 808571f7f6ef9b97d44280878bd67acd411584ef [file] [log] [blame]
xjb04a4022021-11-25 15:01:52 +08001// SPDX-License-Identifier: GPL-2.0
2/*
3 * Self tests for device tree subsystem
4 */
5
6#define pr_fmt(fmt) "### dt-test ### " fmt
7
8#include <linux/bootmem.h>
9#include <linux/clk.h>
10#include <linux/err.h>
11#include <linux/errno.h>
12#include <linux/hashtable.h>
13#include <linux/libfdt.h>
14#include <linux/of.h>
15#include <linux/of_fdt.h>
16#include <linux/of_irq.h>
17#include <linux/of_platform.h>
18#include <linux/list.h>
19#include <linux/mutex.h>
20#include <linux/slab.h>
21#include <linux/device.h>
22#include <linux/platform_device.h>
23
24#include <linux/i2c.h>
25#include <linux/i2c-mux.h>
26
27#include <linux/bitops.h>
28
29#include "of_private.h"
30
31static struct unittest_results {
32 int passed;
33 int failed;
34} unittest_results;
35
36#define unittest(result, fmt, ...) ({ \
37 bool failed = !(result); \
38 if (failed) { \
39 unittest_results.failed++; \
40 pr_err("FAIL %s():%i " fmt, __func__, __LINE__, ##__VA_ARGS__); \
41 } else { \
42 unittest_results.passed++; \
43 pr_debug("pass %s():%i\n", __func__, __LINE__); \
44 } \
45 failed; \
46})
47
48static void __init of_unittest_find_node_by_name(void)
49{
50 struct device_node *np;
51 const char *options, *name;
52
53 np = of_find_node_by_path("/testcase-data");
54 name = kasprintf(GFP_KERNEL, "%pOF", np);
55 unittest(np && !strcmp("/testcase-data", name),
56 "find /testcase-data failed\n");
57 of_node_put(np);
58 kfree(name);
59
60 /* Test if trailing '/' works */
61 np = of_find_node_by_path("/testcase-data/");
62 unittest(!np, "trailing '/' on /testcase-data/ should fail\n");
63
64 np = of_find_node_by_path("/testcase-data/phandle-tests/consumer-a");
65 name = kasprintf(GFP_KERNEL, "%pOF", np);
66 unittest(np && !strcmp("/testcase-data/phandle-tests/consumer-a", name),
67 "find /testcase-data/phandle-tests/consumer-a failed\n");
68 of_node_put(np);
69 kfree(name);
70
71 np = of_find_node_by_path("testcase-alias");
72 name = kasprintf(GFP_KERNEL, "%pOF", np);
73 unittest(np && !strcmp("/testcase-data", name),
74 "find testcase-alias failed\n");
75 of_node_put(np);
76 kfree(name);
77
78 /* Test if trailing '/' works on aliases */
79 np = of_find_node_by_path("testcase-alias/");
80 unittest(!np, "trailing '/' on testcase-alias/ should fail\n");
81
82 np = of_find_node_by_path("testcase-alias/phandle-tests/consumer-a");
83 name = kasprintf(GFP_KERNEL, "%pOF", np);
84 unittest(np && !strcmp("/testcase-data/phandle-tests/consumer-a", name),
85 "find testcase-alias/phandle-tests/consumer-a failed\n");
86 of_node_put(np);
87 kfree(name);
88
89 np = of_find_node_by_path("/testcase-data/missing-path");
90 unittest(!np, "non-existent path returned node %pOF\n", np);
91 of_node_put(np);
92
93 np = of_find_node_by_path("missing-alias");
94 unittest(!np, "non-existent alias returned node %pOF\n", np);
95 of_node_put(np);
96
97 np = of_find_node_by_path("testcase-alias/missing-path");
98 unittest(!np, "non-existent alias with relative path returned node %pOF\n", np);
99 of_node_put(np);
100
101 np = of_find_node_opts_by_path("/testcase-data:testoption", &options);
102 unittest(np && !strcmp("testoption", options),
103 "option path test failed\n");
104 of_node_put(np);
105
106 np = of_find_node_opts_by_path("/testcase-data:test/option", &options);
107 unittest(np && !strcmp("test/option", options),
108 "option path test, subcase #1 failed\n");
109 of_node_put(np);
110
111 np = of_find_node_opts_by_path("/testcase-data/testcase-device1:test/option", &options);
112 unittest(np && !strcmp("test/option", options),
113 "option path test, subcase #2 failed\n");
114 of_node_put(np);
115
116 np = of_find_node_opts_by_path("/testcase-data:testoption", NULL);
117 unittest(np, "NULL option path test failed\n");
118 of_node_put(np);
119
120 np = of_find_node_opts_by_path("testcase-alias:testaliasoption",
121 &options);
122 unittest(np && !strcmp("testaliasoption", options),
123 "option alias path test failed\n");
124 of_node_put(np);
125
126 np = of_find_node_opts_by_path("testcase-alias:test/alias/option",
127 &options);
128 unittest(np && !strcmp("test/alias/option", options),
129 "option alias path test, subcase #1 failed\n");
130 of_node_put(np);
131
132 np = of_find_node_opts_by_path("testcase-alias:testaliasoption", NULL);
133 unittest(np, "NULL option alias path test failed\n");
134 of_node_put(np);
135
136 options = "testoption";
137 np = of_find_node_opts_by_path("testcase-alias", &options);
138 unittest(np && !options, "option clearing test failed\n");
139 of_node_put(np);
140
141 options = "testoption";
142 np = of_find_node_opts_by_path("/", &options);
143 unittest(np && !options, "option clearing root node test failed\n");
144 of_node_put(np);
145}
146
147static void __init of_unittest_dynamic(void)
148{
149 struct device_node *np;
150 struct property *prop;
151
152 np = of_find_node_by_path("/testcase-data");
153 if (!np) {
154 pr_err("missing testcase data\n");
155 return;
156 }
157
158 /* Array of 4 properties for the purpose of testing */
159 prop = kcalloc(4, sizeof(*prop), GFP_KERNEL);
160 if (!prop) {
161 unittest(0, "kzalloc() failed\n");
162 return;
163 }
164
165 /* Add a new property - should pass*/
166 prop->name = "new-property";
167 prop->value = "new-property-data";
168 prop->length = strlen(prop->value) + 1;
169 unittest(of_add_property(np, prop) == 0, "Adding a new property failed\n");
170
171 /* Try to add an existing property - should fail */
172 prop++;
173 prop->name = "new-property";
174 prop->value = "new-property-data-should-fail";
175 prop->length = strlen(prop->value) + 1;
176 unittest(of_add_property(np, prop) != 0,
177 "Adding an existing property should have failed\n");
178
179 /* Try to modify an existing property - should pass */
180 prop->value = "modify-property-data-should-pass";
181 prop->length = strlen(prop->value) + 1;
182 unittest(of_update_property(np, prop) == 0,
183 "Updating an existing property should have passed\n");
184
185 /* Try to modify non-existent property - should pass*/
186 prop++;
187 prop->name = "modify-property";
188 prop->value = "modify-missing-property-data-should-pass";
189 prop->length = strlen(prop->value) + 1;
190 unittest(of_update_property(np, prop) == 0,
191 "Updating a missing property should have passed\n");
192
193 /* Remove property - should pass */
194 unittest(of_remove_property(np, prop) == 0,
195 "Removing a property should have passed\n");
196
197 /* Adding very large property - should pass */
198 prop++;
199 prop->name = "large-property-PAGE_SIZEx8";
200 prop->length = PAGE_SIZE * 8;
201 prop->value = kzalloc(prop->length, GFP_KERNEL);
202 unittest(prop->value != NULL, "Unable to allocate large buffer\n");
203 if (prop->value)
204 unittest(of_add_property(np, prop) == 0,
205 "Adding a large property should have passed\n");
206}
207
208static int __init of_unittest_check_node_linkage(struct device_node *np)
209{
210 struct device_node *child;
211 int count = 0, rc;
212
213 for_each_child_of_node(np, child) {
214 if (child->parent != np) {
215 pr_err("Child node %pOFn links to wrong parent %pOFn\n",
216 child, np);
217 rc = -EINVAL;
218 goto put_child;
219 }
220
221 rc = of_unittest_check_node_linkage(child);
222 if (rc < 0)
223 goto put_child;
224 count += rc;
225 }
226
227 return count + 1;
228put_child:
229 of_node_put(child);
230 return rc;
231}
232
233static void __init of_unittest_check_tree_linkage(void)
234{
235 struct device_node *np;
236 int allnode_count = 0, child_count;
237
238 if (!of_root)
239 return;
240
241 for_each_of_allnodes(np)
242 allnode_count++;
243 child_count = of_unittest_check_node_linkage(of_root);
244
245 unittest(child_count > 0, "Device node data structure is corrupted\n");
246 unittest(child_count == allnode_count,
247 "allnodes list size (%i) doesn't match sibling lists size (%i)\n",
248 allnode_count, child_count);
249 pr_debug("allnodes list size (%i); sibling lists size (%i)\n", allnode_count, child_count);
250}
251
252static void __init of_unittest_printf_one(struct device_node *np, const char *fmt,
253 const char *expected)
254{
255 unsigned char *buf;
256 int buf_size;
257 int size, i;
258
259 buf_size = strlen(expected) + 10;
260 buf = kmalloc(buf_size, GFP_KERNEL);
261 if (!buf)
262 return;
263
264 /* Baseline; check conversion with a large size limit */
265 memset(buf, 0xff, buf_size);
266 size = snprintf(buf, buf_size - 2, fmt, np);
267
268 /* use strcmp() instead of strncmp() here to be absolutely sure strings match */
269 unittest((strcmp(buf, expected) == 0) && (buf[size+1] == 0xff),
270 "sprintf failed; fmt='%s' expected='%s' rslt='%s'\n",
271 fmt, expected, buf);
272
273 /* Make sure length limits work */
274 size++;
275 for (i = 0; i < 2; i++, size--) {
276 /* Clear the buffer, and make sure it works correctly still */
277 memset(buf, 0xff, buf_size);
278 snprintf(buf, size+1, fmt, np);
279 unittest(strncmp(buf, expected, size) == 0 && (buf[size+1] == 0xff),
280 "snprintf failed; size=%i fmt='%s' expected='%s' rslt='%s'\n",
281 size, fmt, expected, buf);
282 }
283 kfree(buf);
284}
285
286static void __init of_unittest_printf(void)
287{
288 struct device_node *np;
289 const char *full_name = "/testcase-data/platform-tests/test-device@1/dev@100";
290 char phandle_str[16] = "";
291
292 np = of_find_node_by_path(full_name);
293 if (!np) {
294 unittest(np, "testcase data missing\n");
295 return;
296 }
297
298 num_to_str(phandle_str, sizeof(phandle_str), np->phandle, 0);
299
300 of_unittest_printf_one(np, "%pOF", full_name);
301 of_unittest_printf_one(np, "%pOFf", full_name);
302 of_unittest_printf_one(np, "%pOFp", phandle_str);
303 of_unittest_printf_one(np, "%pOFP", "dev@100");
304 of_unittest_printf_one(np, "ABC %pOFP ABC", "ABC dev@100 ABC");
305 of_unittest_printf_one(np, "%10pOFP", " dev@100");
306 of_unittest_printf_one(np, "%-10pOFP", "dev@100 ");
307 of_unittest_printf_one(of_root, "%pOFP", "/");
308 of_unittest_printf_one(np, "%pOFF", "----");
309 of_unittest_printf_one(np, "%pOFPF", "dev@100:----");
310 of_unittest_printf_one(np, "%pOFPFPc", "dev@100:----:dev@100:test-sub-device");
311 of_unittest_printf_one(np, "%pOFc", "test-sub-device");
312 of_unittest_printf_one(np, "%pOFC",
313 "\"test-sub-device\",\"test-compat2\",\"test-compat3\"");
314}
315
316struct node_hash {
317 struct hlist_node node;
318 struct device_node *np;
319};
320
321static DEFINE_HASHTABLE(phandle_ht, 8);
322static void __init of_unittest_check_phandles(void)
323{
324 struct device_node *np;
325 struct node_hash *nh;
326 struct hlist_node *tmp;
327 int i, dup_count = 0, phandle_count = 0;
328
329 for_each_of_allnodes(np) {
330 if (!np->phandle)
331 continue;
332
333 hash_for_each_possible(phandle_ht, nh, node, np->phandle) {
334 if (nh->np->phandle == np->phandle) {
335 pr_info("Duplicate phandle! %i used by %pOF and %pOF\n",
336 np->phandle, nh->np, np);
337 dup_count++;
338 break;
339 }
340 }
341
342 nh = kzalloc(sizeof(*nh), GFP_KERNEL);
343 if (WARN_ON(!nh))
344 return;
345
346 nh->np = np;
347 hash_add(phandle_ht, &nh->node, np->phandle);
348 phandle_count++;
349 }
350 unittest(dup_count == 0, "Found %i duplicates in %i phandles\n",
351 dup_count, phandle_count);
352
353 /* Clean up */
354 hash_for_each_safe(phandle_ht, i, tmp, nh, node) {
355 hash_del(&nh->node);
356 kfree(nh);
357 }
358}
359
360static void __init of_unittest_parse_phandle_with_args(void)
361{
362 struct device_node *np;
363 struct of_phandle_args args;
364 int i, rc;
365
366 np = of_find_node_by_path("/testcase-data/phandle-tests/consumer-a");
367 if (!np) {
368 pr_err("missing testcase data\n");
369 return;
370 }
371
372 rc = of_count_phandle_with_args(np, "phandle-list", "#phandle-cells");
373 unittest(rc == 7, "of_count_phandle_with_args() returned %i, expected 7\n", rc);
374
375 for (i = 0; i < 8; i++) {
376 bool passed = true;
377
378 memset(&args, 0, sizeof(args));
379 rc = of_parse_phandle_with_args(np, "phandle-list",
380 "#phandle-cells", i, &args);
381
382 /* Test the values from tests-phandle.dtsi */
383 switch (i) {
384 case 0:
385 passed &= !rc;
386 passed &= (args.args_count == 1);
387 passed &= (args.args[0] == (i + 1));
388 break;
389 case 1:
390 passed &= !rc;
391 passed &= (args.args_count == 2);
392 passed &= (args.args[0] == (i + 1));
393 passed &= (args.args[1] == 0);
394 break;
395 case 2:
396 passed &= (rc == -ENOENT);
397 break;
398 case 3:
399 passed &= !rc;
400 passed &= (args.args_count == 3);
401 passed &= (args.args[0] == (i + 1));
402 passed &= (args.args[1] == 4);
403 passed &= (args.args[2] == 3);
404 break;
405 case 4:
406 passed &= !rc;
407 passed &= (args.args_count == 2);
408 passed &= (args.args[0] == (i + 1));
409 passed &= (args.args[1] == 100);
410 break;
411 case 5:
412 passed &= !rc;
413 passed &= (args.args_count == 0);
414 break;
415 case 6:
416 passed &= !rc;
417 passed &= (args.args_count == 1);
418 passed &= (args.args[0] == (i + 1));
419 break;
420 case 7:
421 passed &= (rc == -ENOENT);
422 break;
423 default:
424 passed = false;
425 }
426
427 unittest(passed, "index %i - data error on node %pOF rc=%i\n",
428 i, args.np, rc);
429 }
430
431 /* Check for missing list property */
432 memset(&args, 0, sizeof(args));
433 rc = of_parse_phandle_with_args(np, "phandle-list-missing",
434 "#phandle-cells", 0, &args);
435 unittest(rc == -ENOENT, "expected:%i got:%i\n", -ENOENT, rc);
436 rc = of_count_phandle_with_args(np, "phandle-list-missing",
437 "#phandle-cells");
438 unittest(rc == -ENOENT, "expected:%i got:%i\n", -ENOENT, rc);
439
440 /* Check for missing cells property */
441 memset(&args, 0, sizeof(args));
442 rc = of_parse_phandle_with_args(np, "phandle-list",
443 "#phandle-cells-missing", 0, &args);
444 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
445 rc = of_count_phandle_with_args(np, "phandle-list",
446 "#phandle-cells-missing");
447 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
448
449 /* Check for bad phandle in list */
450 memset(&args, 0, sizeof(args));
451 rc = of_parse_phandle_with_args(np, "phandle-list-bad-phandle",
452 "#phandle-cells", 0, &args);
453 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
454 rc = of_count_phandle_with_args(np, "phandle-list-bad-phandle",
455 "#phandle-cells");
456 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
457
458 /* Check for incorrectly formed argument list */
459 memset(&args, 0, sizeof(args));
460 rc = of_parse_phandle_with_args(np, "phandle-list-bad-args",
461 "#phandle-cells", 1, &args);
462 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
463 rc = of_count_phandle_with_args(np, "phandle-list-bad-args",
464 "#phandle-cells");
465 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
466}
467
468static void __init of_unittest_parse_phandle_with_args_map(void)
469{
470 struct device_node *np, *p0, *p1, *p2, *p3;
471 struct of_phandle_args args;
472 int i, rc;
473
474 np = of_find_node_by_path("/testcase-data/phandle-tests/consumer-b");
475 if (!np) {
476 pr_err("missing testcase data\n");
477 return;
478 }
479
480 p0 = of_find_node_by_path("/testcase-data/phandle-tests/provider0");
481 if (!p0) {
482 pr_err("missing testcase data\n");
483 return;
484 }
485
486 p1 = of_find_node_by_path("/testcase-data/phandle-tests/provider1");
487 if (!p1) {
488 pr_err("missing testcase data\n");
489 return;
490 }
491
492 p2 = of_find_node_by_path("/testcase-data/phandle-tests/provider2");
493 if (!p2) {
494 pr_err("missing testcase data\n");
495 return;
496 }
497
498 p3 = of_find_node_by_path("/testcase-data/phandle-tests/provider3");
499 if (!p3) {
500 pr_err("missing testcase data\n");
501 return;
502 }
503
504 rc = of_count_phandle_with_args(np, "phandle-list", "#phandle-cells");
505 unittest(rc == 7, "of_count_phandle_with_args() returned %i, expected 7\n", rc);
506
507 for (i = 0; i < 8; i++) {
508 bool passed = true;
509
510 memset(&args, 0, sizeof(args));
511 rc = of_parse_phandle_with_args_map(np, "phandle-list",
512 "phandle", i, &args);
513
514 /* Test the values from tests-phandle.dtsi */
515 switch (i) {
516 case 0:
517 passed &= !rc;
518 passed &= (args.np == p1);
519 passed &= (args.args_count == 1);
520 passed &= (args.args[0] == 1);
521 break;
522 case 1:
523 passed &= !rc;
524 passed &= (args.np == p3);
525 passed &= (args.args_count == 3);
526 passed &= (args.args[0] == 2);
527 passed &= (args.args[1] == 5);
528 passed &= (args.args[2] == 3);
529 break;
530 case 2:
531 passed &= (rc == -ENOENT);
532 break;
533 case 3:
534 passed &= !rc;
535 passed &= (args.np == p0);
536 passed &= (args.args_count == 0);
537 break;
538 case 4:
539 passed &= !rc;
540 passed &= (args.np == p1);
541 passed &= (args.args_count == 1);
542 passed &= (args.args[0] == 3);
543 break;
544 case 5:
545 passed &= !rc;
546 passed &= (args.np == p0);
547 passed &= (args.args_count == 0);
548 break;
549 case 6:
550 passed &= !rc;
551 passed &= (args.np == p2);
552 passed &= (args.args_count == 2);
553 passed &= (args.args[0] == 15);
554 passed &= (args.args[1] == 0x20);
555 break;
556 case 7:
557 passed &= (rc == -ENOENT);
558 break;
559 default:
560 passed = false;
561 }
562
563 unittest(passed, "index %i - data error on node %s rc=%i\n",
564 i, args.np->full_name, rc);
565 }
566
567 /* Check for missing list property */
568 memset(&args, 0, sizeof(args));
569 rc = of_parse_phandle_with_args_map(np, "phandle-list-missing",
570 "phandle", 0, &args);
571 unittest(rc == -ENOENT, "expected:%i got:%i\n", -ENOENT, rc);
572
573 /* Check for missing cells,map,mask property */
574 memset(&args, 0, sizeof(args));
575 rc = of_parse_phandle_with_args_map(np, "phandle-list",
576 "phandle-missing", 0, &args);
577 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
578
579 /* Check for bad phandle in list */
580 memset(&args, 0, sizeof(args));
581 rc = of_parse_phandle_with_args_map(np, "phandle-list-bad-phandle",
582 "phandle", 0, &args);
583 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
584
585 /* Check for incorrectly formed argument list */
586 memset(&args, 0, sizeof(args));
587 rc = of_parse_phandle_with_args_map(np, "phandle-list-bad-args",
588 "phandle", 1, &args);
589 unittest(rc == -EINVAL, "expected:%i got:%i\n", -EINVAL, rc);
590}
591
592static void __init of_unittest_property_string(void)
593{
594 const char *strings[4];
595 struct device_node *np;
596 int rc;
597
598 np = of_find_node_by_path("/testcase-data/phandle-tests/consumer-a");
599 if (!np) {
600 pr_err("No testcase data in device tree\n");
601 return;
602 }
603
604 rc = of_property_match_string(np, "phandle-list-names", "first");
605 unittest(rc == 0, "first expected:0 got:%i\n", rc);
606 rc = of_property_match_string(np, "phandle-list-names", "second");
607 unittest(rc == 1, "second expected:1 got:%i\n", rc);
608 rc = of_property_match_string(np, "phandle-list-names", "third");
609 unittest(rc == 2, "third expected:2 got:%i\n", rc);
610 rc = of_property_match_string(np, "phandle-list-names", "fourth");
611 unittest(rc == -ENODATA, "unmatched string; rc=%i\n", rc);
612 rc = of_property_match_string(np, "missing-property", "blah");
613 unittest(rc == -EINVAL, "missing property; rc=%i\n", rc);
614 rc = of_property_match_string(np, "empty-property", "blah");
615 unittest(rc == -ENODATA, "empty property; rc=%i\n", rc);
616 rc = of_property_match_string(np, "unterminated-string", "blah");
617 unittest(rc == -EILSEQ, "unterminated string; rc=%i\n", rc);
618
619 /* of_property_count_strings() tests */
620 rc = of_property_count_strings(np, "string-property");
621 unittest(rc == 1, "Incorrect string count; rc=%i\n", rc);
622 rc = of_property_count_strings(np, "phandle-list-names");
623 unittest(rc == 3, "Incorrect string count; rc=%i\n", rc);
624 rc = of_property_count_strings(np, "unterminated-string");
625 unittest(rc == -EILSEQ, "unterminated string; rc=%i\n", rc);
626 rc = of_property_count_strings(np, "unterminated-string-list");
627 unittest(rc == -EILSEQ, "unterminated string array; rc=%i\n", rc);
628
629 /* of_property_read_string_index() tests */
630 rc = of_property_read_string_index(np, "string-property", 0, strings);
631 unittest(rc == 0 && !strcmp(strings[0], "foobar"), "of_property_read_string_index() failure; rc=%i\n", rc);
632 strings[0] = NULL;
633 rc = of_property_read_string_index(np, "string-property", 1, strings);
634 unittest(rc == -ENODATA && strings[0] == NULL, "of_property_read_string_index() failure; rc=%i\n", rc);
635 rc = of_property_read_string_index(np, "phandle-list-names", 0, strings);
636 unittest(rc == 0 && !strcmp(strings[0], "first"), "of_property_read_string_index() failure; rc=%i\n", rc);
637 rc = of_property_read_string_index(np, "phandle-list-names", 1, strings);
638 unittest(rc == 0 && !strcmp(strings[0], "second"), "of_property_read_string_index() failure; rc=%i\n", rc);
639 rc = of_property_read_string_index(np, "phandle-list-names", 2, strings);
640 unittest(rc == 0 && !strcmp(strings[0], "third"), "of_property_read_string_index() failure; rc=%i\n", rc);
641 strings[0] = NULL;
642 rc = of_property_read_string_index(np, "phandle-list-names", 3, strings);
643 unittest(rc == -ENODATA && strings[0] == NULL, "of_property_read_string_index() failure; rc=%i\n", rc);
644 strings[0] = NULL;
645 rc = of_property_read_string_index(np, "unterminated-string", 0, strings);
646 unittest(rc == -EILSEQ && strings[0] == NULL, "of_property_read_string_index() failure; rc=%i\n", rc);
647 rc = of_property_read_string_index(np, "unterminated-string-list", 0, strings);
648 unittest(rc == 0 && !strcmp(strings[0], "first"), "of_property_read_string_index() failure; rc=%i\n", rc);
649 strings[0] = NULL;
650 rc = of_property_read_string_index(np, "unterminated-string-list", 2, strings); /* should fail */
651 unittest(rc == -EILSEQ && strings[0] == NULL, "of_property_read_string_index() failure; rc=%i\n", rc);
652 strings[1] = NULL;
653
654 /* of_property_read_string_array() tests */
655 rc = of_property_read_string_array(np, "string-property", strings, 4);
656 unittest(rc == 1, "Incorrect string count; rc=%i\n", rc);
657 rc = of_property_read_string_array(np, "phandle-list-names", strings, 4);
658 unittest(rc == 3, "Incorrect string count; rc=%i\n", rc);
659 rc = of_property_read_string_array(np, "unterminated-string", strings, 4);
660 unittest(rc == -EILSEQ, "unterminated string; rc=%i\n", rc);
661 /* -- An incorrectly formed string should cause a failure */
662 rc = of_property_read_string_array(np, "unterminated-string-list", strings, 4);
663 unittest(rc == -EILSEQ, "unterminated string array; rc=%i\n", rc);
664 /* -- parsing the correctly formed strings should still work: */
665 strings[2] = NULL;
666 rc = of_property_read_string_array(np, "unterminated-string-list", strings, 2);
667 unittest(rc == 2 && strings[2] == NULL, "of_property_read_string_array() failure; rc=%i\n", rc);
668 strings[1] = NULL;
669 rc = of_property_read_string_array(np, "phandle-list-names", strings, 1);
670 unittest(rc == 1 && strings[1] == NULL, "Overwrote end of string array; rc=%i, str='%s'\n", rc, strings[1]);
671}
672
673#define propcmp(p1, p2) (((p1)->length == (p2)->length) && \
674 (p1)->value && (p2)->value && \
675 !memcmp((p1)->value, (p2)->value, (p1)->length) && \
676 !strcmp((p1)->name, (p2)->name))
677static void __init of_unittest_property_copy(void)
678{
679#ifdef CONFIG_OF_DYNAMIC
680 struct property p1 = { .name = "p1", .length = 0, .value = "" };
681 struct property p2 = { .name = "p2", .length = 5, .value = "abcd" };
682 struct property *new;
683
684 new = __of_prop_dup(&p1, GFP_KERNEL);
685 unittest(new && propcmp(&p1, new), "empty property didn't copy correctly\n");
686 kfree(new->value);
687 kfree(new->name);
688 kfree(new);
689
690 new = __of_prop_dup(&p2, GFP_KERNEL);
691 unittest(new && propcmp(&p2, new), "non-empty property didn't copy correctly\n");
692 kfree(new->value);
693 kfree(new->name);
694 kfree(new);
695#endif
696}
697
698static void __init of_unittest_changeset(void)
699{
700#ifdef CONFIG_OF_DYNAMIC
701 struct property *ppadd, padd = { .name = "prop-add", .length = 1, .value = "" };
702 struct property *ppname_n1, pname_n1 = { .name = "name", .length = 3, .value = "n1" };
703 struct property *ppname_n2, pname_n2 = { .name = "name", .length = 3, .value = "n2" };
704 struct property *ppname_n21, pname_n21 = { .name = "name", .length = 3, .value = "n21" };
705 struct property *ppupdate, pupdate = { .name = "prop-update", .length = 5, .value = "abcd" };
706 struct property *ppremove;
707 struct device_node *n1, *n2, *n21, *nchangeset, *nremove, *parent, *np;
708 struct of_changeset chgset;
709
710 n1 = __of_node_dup(NULL, "n1");
711 unittest(n1, "testcase setup failure\n");
712
713 n2 = __of_node_dup(NULL, "n2");
714 unittest(n2, "testcase setup failure\n");
715
716 n21 = __of_node_dup(NULL, "n21");
717 unittest(n21, "testcase setup failure %p\n", n21);
718
719 nchangeset = of_find_node_by_path("/testcase-data/changeset");
720 nremove = of_get_child_by_name(nchangeset, "node-remove");
721 unittest(nremove, "testcase setup failure\n");
722
723 ppadd = __of_prop_dup(&padd, GFP_KERNEL);
724 unittest(ppadd, "testcase setup failure\n");
725
726 ppname_n1 = __of_prop_dup(&pname_n1, GFP_KERNEL);
727 unittest(ppname_n1, "testcase setup failure\n");
728
729 ppname_n2 = __of_prop_dup(&pname_n2, GFP_KERNEL);
730 unittest(ppname_n2, "testcase setup failure\n");
731
732 ppname_n21 = __of_prop_dup(&pname_n21, GFP_KERNEL);
733 unittest(ppname_n21, "testcase setup failure\n");
734
735 ppupdate = __of_prop_dup(&pupdate, GFP_KERNEL);
736 unittest(ppupdate, "testcase setup failure\n");
737
738 parent = nchangeset;
739 n1->parent = parent;
740 n2->parent = parent;
741 n21->parent = n2;
742
743 ppremove = of_find_property(parent, "prop-remove", NULL);
744 unittest(ppremove, "failed to find removal prop");
745
746 of_changeset_init(&chgset);
747
748 unittest(!of_changeset_attach_node(&chgset, n1), "fail attach n1\n");
749 unittest(!of_changeset_add_property(&chgset, n1, ppname_n1), "fail add prop name\n");
750
751 unittest(!of_changeset_attach_node(&chgset, n2), "fail attach n2\n");
752 unittest(!of_changeset_add_property(&chgset, n2, ppname_n2), "fail add prop name\n");
753
754 unittest(!of_changeset_detach_node(&chgset, nremove), "fail remove node\n");
755 unittest(!of_changeset_add_property(&chgset, n21, ppname_n21), "fail add prop name\n");
756
757 unittest(!of_changeset_attach_node(&chgset, n21), "fail attach n21\n");
758
759 unittest(!of_changeset_add_property(&chgset, parent, ppadd), "fail add prop prop-add\n");
760 unittest(!of_changeset_update_property(&chgset, parent, ppupdate), "fail update prop\n");
761 unittest(!of_changeset_remove_property(&chgset, parent, ppremove), "fail remove prop\n");
762
763 unittest(!of_changeset_apply(&chgset), "apply failed\n");
764
765 of_node_put(nchangeset);
766
767 /* Make sure node names are constructed correctly */
768 unittest((np = of_find_node_by_path("/testcase-data/changeset/n2/n21")),
769 "'%pOF' not added\n", n21);
770 of_node_put(np);
771
772 unittest(!of_changeset_revert(&chgset), "revert failed\n");
773
774 of_changeset_destroy(&chgset);
775#endif
776}
777
778static void __init of_unittest_parse_interrupts(void)
779{
780 struct device_node *np;
781 struct of_phandle_args args;
782 int i, rc;
783
784 if (of_irq_workarounds & OF_IMAP_OLDWORLD_MAC)
785 return;
786
787 np = of_find_node_by_path("/testcase-data/interrupts/interrupts0");
788 if (!np) {
789 pr_err("missing testcase data\n");
790 return;
791 }
792
793 for (i = 0; i < 4; i++) {
794 bool passed = true;
795
796 memset(&args, 0, sizeof(args));
797 rc = of_irq_parse_one(np, i, &args);
798
799 passed &= !rc;
800 passed &= (args.args_count == 1);
801 passed &= (args.args[0] == (i + 1));
802
803 unittest(passed, "index %i - data error on node %pOF rc=%i\n",
804 i, args.np, rc);
805 }
806 of_node_put(np);
807
808 np = of_find_node_by_path("/testcase-data/interrupts/interrupts1");
809 if (!np) {
810 pr_err("missing testcase data\n");
811 return;
812 }
813
814 for (i = 0; i < 4; i++) {
815 bool passed = true;
816
817 memset(&args, 0, sizeof(args));
818 rc = of_irq_parse_one(np, i, &args);
819
820 /* Test the values from tests-phandle.dtsi */
821 switch (i) {
822 case 0:
823 passed &= !rc;
824 passed &= (args.args_count == 1);
825 passed &= (args.args[0] == 9);
826 break;
827 case 1:
828 passed &= !rc;
829 passed &= (args.args_count == 3);
830 passed &= (args.args[0] == 10);
831 passed &= (args.args[1] == 11);
832 passed &= (args.args[2] == 12);
833 break;
834 case 2:
835 passed &= !rc;
836 passed &= (args.args_count == 2);
837 passed &= (args.args[0] == 13);
838 passed &= (args.args[1] == 14);
839 break;
840 case 3:
841 passed &= !rc;
842 passed &= (args.args_count == 2);
843 passed &= (args.args[0] == 15);
844 passed &= (args.args[1] == 16);
845 break;
846 default:
847 passed = false;
848 }
849 unittest(passed, "index %i - data error on node %pOF rc=%i\n",
850 i, args.np, rc);
851 }
852 of_node_put(np);
853}
854
855static void __init of_unittest_parse_interrupts_extended(void)
856{
857 struct device_node *np;
858 struct of_phandle_args args;
859 int i, rc;
860
861 if (of_irq_workarounds & OF_IMAP_OLDWORLD_MAC)
862 return;
863
864 np = of_find_node_by_path("/testcase-data/interrupts/interrupts-extended0");
865 if (!np) {
866 pr_err("missing testcase data\n");
867 return;
868 }
869
870 for (i = 0; i < 7; i++) {
871 bool passed = true;
872
873 memset(&args, 0, sizeof(args));
874 rc = of_irq_parse_one(np, i, &args);
875
876 /* Test the values from tests-phandle.dtsi */
877 switch (i) {
878 case 0:
879 passed &= !rc;
880 passed &= (args.args_count == 1);
881 passed &= (args.args[0] == 1);
882 break;
883 case 1:
884 passed &= !rc;
885 passed &= (args.args_count == 3);
886 passed &= (args.args[0] == 2);
887 passed &= (args.args[1] == 3);
888 passed &= (args.args[2] == 4);
889 break;
890 case 2:
891 passed &= !rc;
892 passed &= (args.args_count == 2);
893 passed &= (args.args[0] == 5);
894 passed &= (args.args[1] == 6);
895 break;
896 case 3:
897 passed &= !rc;
898 passed &= (args.args_count == 1);
899 passed &= (args.args[0] == 9);
900 break;
901 case 4:
902 passed &= !rc;
903 passed &= (args.args_count == 3);
904 passed &= (args.args[0] == 10);
905 passed &= (args.args[1] == 11);
906 passed &= (args.args[2] == 12);
907 break;
908 case 5:
909 passed &= !rc;
910 passed &= (args.args_count == 2);
911 passed &= (args.args[0] == 13);
912 passed &= (args.args[1] == 14);
913 break;
914 case 6:
915 passed &= !rc;
916 passed &= (args.args_count == 1);
917 passed &= (args.args[0] == 15);
918 break;
919 default:
920 passed = false;
921 }
922
923 unittest(passed, "index %i - data error on node %pOF rc=%i\n",
924 i, args.np, rc);
925 }
926 of_node_put(np);
927}
928
929static const struct of_device_id match_node_table[] = {
930 { .data = "A", .name = "name0", }, /* Name alone is lowest priority */
931 { .data = "B", .type = "type1", }, /* followed by type alone */
932
933 { .data = "Ca", .name = "name2", .type = "type1", }, /* followed by both together */
934 { .data = "Cb", .name = "name2", }, /* Only match when type doesn't match */
935 { .data = "Cc", .name = "name2", .type = "type2", },
936
937 { .data = "E", .compatible = "compat3" },
938 { .data = "G", .compatible = "compat2", },
939 { .data = "H", .compatible = "compat2", .name = "name5", },
940 { .data = "I", .compatible = "compat2", .type = "type1", },
941 { .data = "J", .compatible = "compat2", .type = "type1", .name = "name8", },
942 { .data = "K", .compatible = "compat2", .name = "name9", },
943 {}
944};
945
946static struct {
947 const char *path;
948 const char *data;
949} match_node_tests[] = {
950 { .path = "/testcase-data/match-node/name0", .data = "A", },
951 { .path = "/testcase-data/match-node/name1", .data = "B", },
952 { .path = "/testcase-data/match-node/a/name2", .data = "Ca", },
953 { .path = "/testcase-data/match-node/b/name2", .data = "Cb", },
954 { .path = "/testcase-data/match-node/c/name2", .data = "Cc", },
955 { .path = "/testcase-data/match-node/name3", .data = "E", },
956 { .path = "/testcase-data/match-node/name4", .data = "G", },
957 { .path = "/testcase-data/match-node/name5", .data = "H", },
958 { .path = "/testcase-data/match-node/name6", .data = "G", },
959 { .path = "/testcase-data/match-node/name7", .data = "I", },
960 { .path = "/testcase-data/match-node/name8", .data = "J", },
961 { .path = "/testcase-data/match-node/name9", .data = "K", },
962};
963
964static void __init of_unittest_match_node(void)
965{
966 struct device_node *np;
967 const struct of_device_id *match;
968 int i;
969
970 for (i = 0; i < ARRAY_SIZE(match_node_tests); i++) {
971 np = of_find_node_by_path(match_node_tests[i].path);
972 if (!np) {
973 unittest(0, "missing testcase node %s\n",
974 match_node_tests[i].path);
975 continue;
976 }
977
978 match = of_match_node(match_node_table, np);
979 if (!match) {
980 unittest(0, "%s didn't match anything\n",
981 match_node_tests[i].path);
982 continue;
983 }
984
985 if (strcmp(match->data, match_node_tests[i].data) != 0) {
986 unittest(0, "%s got wrong match. expected %s, got %s\n",
987 match_node_tests[i].path, match_node_tests[i].data,
988 (const char *)match->data);
989 continue;
990 }
991 unittest(1, "passed");
992 }
993}
994
995static struct resource test_bus_res = {
996 .start = 0xfffffff8,
997 .end = 0xfffffff9,
998 .flags = IORESOURCE_MEM,
999};
1000static const struct platform_device_info test_bus_info = {
1001 .name = "unittest-bus",
1002};
1003static void __init of_unittest_platform_populate(void)
1004{
1005 int irq, rc;
1006 struct device_node *np, *child, *grandchild;
1007 struct platform_device *pdev, *test_bus;
1008 const struct of_device_id match[] = {
1009 { .compatible = "test-device", },
1010 {}
1011 };
1012
1013 np = of_find_node_by_path("/testcase-data");
1014 of_platform_default_populate(np, NULL, NULL);
1015
1016 /* Test that a missing irq domain returns -EPROBE_DEFER */
1017 np = of_find_node_by_path("/testcase-data/testcase-device1");
1018 pdev = of_find_device_by_node(np);
1019 unittest(pdev, "device 1 creation failed\n");
1020
1021 if (!(of_irq_workarounds & OF_IMAP_OLDWORLD_MAC)) {
1022 irq = platform_get_irq(pdev, 0);
1023 unittest(irq == -EPROBE_DEFER,
1024 "device deferred probe failed - %d\n", irq);
1025
1026 /* Test that a parsing failure does not return -EPROBE_DEFER */
1027 np = of_find_node_by_path("/testcase-data/testcase-device2");
1028 pdev = of_find_device_by_node(np);
1029 unittest(pdev, "device 2 creation failed\n");
1030 irq = platform_get_irq(pdev, 0);
1031 unittest(irq < 0 && irq != -EPROBE_DEFER,
1032 "device parsing error failed - %d\n", irq);
1033 }
1034
1035 np = of_find_node_by_path("/testcase-data/platform-tests");
1036 unittest(np, "No testcase data in device tree\n");
1037 if (!np)
1038 return;
1039
1040 test_bus = platform_device_register_full(&test_bus_info);
1041 rc = PTR_ERR_OR_ZERO(test_bus);
1042 unittest(!rc, "testbus registration failed; rc=%i\n", rc);
1043 if (rc)
1044 return;
1045 test_bus->dev.of_node = np;
1046
1047 /*
1048 * Add a dummy resource to the test bus node after it is
1049 * registered to catch problems with un-inserted resources. The
1050 * DT code doesn't insert the resources, and it has caused the
1051 * kernel to oops in the past. This makes sure the same bug
1052 * doesn't crop up again.
1053 */
1054 platform_device_add_resources(test_bus, &test_bus_res, 1);
1055
1056 of_platform_populate(np, match, NULL, &test_bus->dev);
1057 for_each_child_of_node(np, child) {
1058 for_each_child_of_node(child, grandchild)
1059 unittest(of_find_device_by_node(grandchild),
1060 "Could not create device for node '%pOFn'\n",
1061 grandchild);
1062 }
1063
1064 of_platform_depopulate(&test_bus->dev);
1065 for_each_child_of_node(np, child) {
1066 for_each_child_of_node(child, grandchild)
1067 unittest(!of_find_device_by_node(grandchild),
1068 "device didn't get destroyed '%pOFn'\n",
1069 grandchild);
1070 }
1071
1072 platform_device_unregister(test_bus);
1073 of_node_put(np);
1074}
1075
1076/**
1077 * update_node_properties - adds the properties
1078 * of np into dup node (present in live tree) and
1079 * updates parent of children of np to dup.
1080 *
1081 * @np: node whose properties are being added to the live tree
1082 * @dup: node present in live tree to be updated
1083 */
1084static void update_node_properties(struct device_node *np,
1085 struct device_node *dup)
1086{
1087 struct property *prop;
1088 struct property *save_next;
1089 struct device_node *child;
1090 int ret;
1091
1092 for_each_child_of_node(np, child)
1093 child->parent = dup;
1094
1095 /*
1096 * "unittest internal error: unable to add testdata property"
1097 *
1098 * If this message reports a property in node '/__symbols__' then
1099 * the respective unittest overlay contains a label that has the
1100 * same name as a label in the live devicetree. The label will
1101 * be in the live devicetree only if the devicetree source was
1102 * compiled with the '-@' option. If you encounter this error,
1103 * please consider renaming __all__ of the labels in the unittest
1104 * overlay dts files with an odd prefix that is unlikely to be
1105 * used in a real devicetree.
1106 */
1107
1108 /*
1109 * open code for_each_property_of_node() because of_add_property()
1110 * sets prop->next to NULL
1111 */
1112 for (prop = np->properties; prop != NULL; prop = save_next) {
1113 save_next = prop->next;
1114 ret = of_add_property(dup, prop);
1115 if (ret)
1116 pr_err("unittest internal error: unable to add testdata property %pOF/%s",
1117 np, prop->name);
1118 }
1119}
1120
1121/**
1122 * attach_node_and_children - attaches nodes
1123 * and its children to live tree
1124 *
1125 * @np: Node to attach to live tree
1126 */
1127static void attach_node_and_children(struct device_node *np)
1128{
1129 struct device_node *next, *dup, *child;
1130 unsigned long flags;
1131 const char *full_name;
1132
1133 full_name = kasprintf(GFP_KERNEL, "%pOF", np);
1134
1135 if (!strcmp(full_name, "/__local_fixups__") ||
1136 !strcmp(full_name, "/__fixups__")) {
1137 kfree(full_name);
1138 return;
1139 }
1140
1141 dup = of_find_node_by_path(full_name);
1142 kfree(full_name);
1143 if (dup) {
1144 update_node_properties(np, dup);
1145 return;
1146 }
1147
1148 child = np->child;
1149 np->child = NULL;
1150
1151 mutex_lock(&of_mutex);
1152 raw_spin_lock_irqsave(&devtree_lock, flags);
1153 np->sibling = np->parent->child;
1154 np->parent->child = np;
1155 of_node_clear_flag(np, OF_DETACHED);
1156 raw_spin_unlock_irqrestore(&devtree_lock, flags);
1157
1158 __of_attach_node_sysfs(np);
1159 mutex_unlock(&of_mutex);
1160
1161 while (child) {
1162 next = child->sibling;
1163 attach_node_and_children(child);
1164 child = next;
1165 }
1166}
1167
1168/**
1169 * unittest_data_add - Reads, copies data from
1170 * linked tree and attaches it to the live tree
1171 */
1172static int __init unittest_data_add(void)
1173{
1174 void *unittest_data;
1175 struct device_node *unittest_data_node, *np;
1176 /*
1177 * __dtb_testcases_begin[] and __dtb_testcases_end[] are magically
1178 * created by cmd_dt_S_dtb in scripts/Makefile.lib
1179 */
1180 extern uint8_t __dtb_testcases_begin[];
1181 extern uint8_t __dtb_testcases_end[];
1182 const int size = __dtb_testcases_end - __dtb_testcases_begin;
1183 int rc;
1184
1185 if (!size) {
1186 pr_warn("%s: No testcase data to attach; not running tests\n",
1187 __func__);
1188 return -ENODATA;
1189 }
1190
1191 /* creating copy */
1192 unittest_data = kmemdup(__dtb_testcases_begin, size, GFP_KERNEL);
1193
1194 if (!unittest_data) {
1195 pr_warn("%s: Failed to allocate memory for unittest_data; "
1196 "not running tests\n", __func__);
1197 return -ENOMEM;
1198 }
1199 of_fdt_unflatten_tree(unittest_data, NULL, &unittest_data_node);
1200 if (!unittest_data_node) {
1201 pr_warn("%s: No tree to attach; not running tests\n", __func__);
1202 kfree(unittest_data);
1203 return -ENODATA;
1204 }
1205
1206 /*
1207 * This lock normally encloses of_resolve_phandles()
1208 */
1209 of_overlay_mutex_lock();
1210
1211 rc = of_resolve_phandles(unittest_data_node);
1212 if (rc) {
1213 pr_err("%s: Failed to resolve phandles (rc=%i)\n", __func__, rc);
1214 of_overlay_mutex_unlock();
1215 return -EINVAL;
1216 }
1217
1218 if (!of_root) {
1219 of_root = unittest_data_node;
1220 for_each_of_allnodes(np)
1221 __of_attach_node_sysfs(np);
1222 of_aliases = of_find_node_by_path("/aliases");
1223 of_chosen = of_find_node_by_path("/chosen");
1224 of_overlay_mutex_unlock();
1225 return 0;
1226 }
1227
1228 /* attach the sub-tree to live tree */
1229 np = unittest_data_node->child;
1230 while (np) {
1231 struct device_node *next = np->sibling;
1232
1233 np->parent = of_root;
1234 attach_node_and_children(np);
1235 np = next;
1236 }
1237
1238 of_overlay_mutex_unlock();
1239
1240 return 0;
1241}
1242
1243#ifdef CONFIG_OF_OVERLAY
1244static int __init overlay_data_apply(const char *overlay_name, int *overlay_id);
1245
1246static int unittest_probe(struct platform_device *pdev)
1247{
1248 struct device *dev = &pdev->dev;
1249 struct device_node *np = dev->of_node;
1250
1251 if (np == NULL) {
1252 dev_err(dev, "No OF data for device\n");
1253 return -EINVAL;
1254
1255 }
1256
1257 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1258
1259 of_platform_populate(np, NULL, NULL, &pdev->dev);
1260
1261 return 0;
1262}
1263
1264static int unittest_remove(struct platform_device *pdev)
1265{
1266 struct device *dev = &pdev->dev;
1267 struct device_node *np = dev->of_node;
1268
1269 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1270 return 0;
1271}
1272
1273static const struct of_device_id unittest_match[] = {
1274 { .compatible = "unittest", },
1275 {},
1276};
1277
1278static struct platform_driver unittest_driver = {
1279 .probe = unittest_probe,
1280 .remove = unittest_remove,
1281 .driver = {
1282 .name = "unittest",
1283 .of_match_table = of_match_ptr(unittest_match),
1284 },
1285};
1286
1287/* get the platform device instantiated at the path */
1288static struct platform_device *of_path_to_platform_device(const char *path)
1289{
1290 struct device_node *np;
1291 struct platform_device *pdev;
1292
1293 np = of_find_node_by_path(path);
1294 if (np == NULL)
1295 return NULL;
1296
1297 pdev = of_find_device_by_node(np);
1298 of_node_put(np);
1299
1300 return pdev;
1301}
1302
1303/* find out if a platform device exists at that path */
1304static int of_path_platform_device_exists(const char *path)
1305{
1306 struct platform_device *pdev;
1307
1308 pdev = of_path_to_platform_device(path);
1309 platform_device_put(pdev);
1310 return pdev != NULL;
1311}
1312
1313#if IS_BUILTIN(CONFIG_I2C)
1314
1315/* get the i2c client device instantiated at the path */
1316static struct i2c_client *of_path_to_i2c_client(const char *path)
1317{
1318 struct device_node *np;
1319 struct i2c_client *client;
1320
1321 np = of_find_node_by_path(path);
1322 if (np == NULL)
1323 return NULL;
1324
1325 client = of_find_i2c_device_by_node(np);
1326 of_node_put(np);
1327
1328 return client;
1329}
1330
1331/* find out if a i2c client device exists at that path */
1332static int of_path_i2c_client_exists(const char *path)
1333{
1334 struct i2c_client *client;
1335
1336 client = of_path_to_i2c_client(path);
1337 if (client)
1338 put_device(&client->dev);
1339 return client != NULL;
1340}
1341#else
1342static int of_path_i2c_client_exists(const char *path)
1343{
1344 return 0;
1345}
1346#endif
1347
1348enum overlay_type {
1349 PDEV_OVERLAY,
1350 I2C_OVERLAY
1351};
1352
1353static int of_path_device_type_exists(const char *path,
1354 enum overlay_type ovtype)
1355{
1356 switch (ovtype) {
1357 case PDEV_OVERLAY:
1358 return of_path_platform_device_exists(path);
1359 case I2C_OVERLAY:
1360 return of_path_i2c_client_exists(path);
1361 }
1362 return 0;
1363}
1364
1365static const char *unittest_path(int nr, enum overlay_type ovtype)
1366{
1367 const char *base;
1368 static char buf[256];
1369
1370 switch (ovtype) {
1371 case PDEV_OVERLAY:
1372 base = "/testcase-data/overlay-node/test-bus";
1373 break;
1374 case I2C_OVERLAY:
1375 base = "/testcase-data/overlay-node/test-bus/i2c-test-bus";
1376 break;
1377 default:
1378 buf[0] = '\0';
1379 return buf;
1380 }
1381 snprintf(buf, sizeof(buf) - 1, "%s/test-unittest%d", base, nr);
1382 buf[sizeof(buf) - 1] = '\0';
1383 return buf;
1384}
1385
1386static int of_unittest_device_exists(int unittest_nr, enum overlay_type ovtype)
1387{
1388 const char *path;
1389
1390 path = unittest_path(unittest_nr, ovtype);
1391
1392 switch (ovtype) {
1393 case PDEV_OVERLAY:
1394 return of_path_platform_device_exists(path);
1395 case I2C_OVERLAY:
1396 return of_path_i2c_client_exists(path);
1397 }
1398 return 0;
1399}
1400
1401static const char *overlay_name_from_nr(int nr)
1402{
1403 static char buf[256];
1404
1405 snprintf(buf, sizeof(buf) - 1,
1406 "overlay_%d", nr);
1407 buf[sizeof(buf) - 1] = '\0';
1408
1409 return buf;
1410}
1411
1412static const char *bus_path = "/testcase-data/overlay-node/test-bus";
1413
1414/* it is guaranteed that overlay ids are assigned in sequence */
1415#define MAX_UNITTEST_OVERLAYS 256
1416static unsigned long overlay_id_bits[BITS_TO_LONGS(MAX_UNITTEST_OVERLAYS)];
1417static int overlay_first_id = -1;
1418
1419static void of_unittest_track_overlay(int id)
1420{
1421 if (overlay_first_id < 0)
1422 overlay_first_id = id;
1423 id -= overlay_first_id;
1424
1425 /* we shouldn't need that many */
1426 BUG_ON(id >= MAX_UNITTEST_OVERLAYS);
1427 overlay_id_bits[BIT_WORD(id)] |= BIT_MASK(id);
1428}
1429
1430static void of_unittest_untrack_overlay(int id)
1431{
1432 if (overlay_first_id < 0)
1433 return;
1434 id -= overlay_first_id;
1435 BUG_ON(id >= MAX_UNITTEST_OVERLAYS);
1436 overlay_id_bits[BIT_WORD(id)] &= ~BIT_MASK(id);
1437}
1438
1439static void of_unittest_destroy_tracked_overlays(void)
1440{
1441 int id, ret, defers, ovcs_id;
1442
1443 if (overlay_first_id < 0)
1444 return;
1445
1446 /* try until no defers */
1447 do {
1448 defers = 0;
1449 /* remove in reverse order */
1450 for (id = MAX_UNITTEST_OVERLAYS - 1; id >= 0; id--) {
1451 if (!(overlay_id_bits[BIT_WORD(id)] & BIT_MASK(id)))
1452 continue;
1453
1454 ovcs_id = id + overlay_first_id;
1455 ret = of_overlay_remove(&ovcs_id);
1456 if (ret == -ENODEV) {
1457 pr_warn("%s: no overlay to destroy for #%d\n",
1458 __func__, id + overlay_first_id);
1459 continue;
1460 }
1461 if (ret != 0) {
1462 defers++;
1463 pr_warn("%s: overlay destroy failed for #%d\n",
1464 __func__, id + overlay_first_id);
1465 continue;
1466 }
1467
1468 overlay_id_bits[BIT_WORD(id)] &= ~BIT_MASK(id);
1469 }
1470 } while (defers > 0);
1471}
1472
1473static int __init of_unittest_apply_overlay(int overlay_nr, int unittest_nr,
1474 int *overlay_id)
1475{
1476 const char *overlay_name;
1477
1478 overlay_name = overlay_name_from_nr(overlay_nr);
1479
1480 if (!overlay_data_apply(overlay_name, overlay_id)) {
1481 unittest(0, "could not apply overlay \"%s\"\n",
1482 overlay_name);
1483 return -EFAULT;
1484 }
1485 of_unittest_track_overlay(*overlay_id);
1486
1487 return 0;
1488}
1489
1490/* apply an overlay while checking before and after states */
1491static int __init of_unittest_apply_overlay_check(int overlay_nr,
1492 int unittest_nr, int before, int after,
1493 enum overlay_type ovtype)
1494{
1495 int ret, ovcs_id;
1496
1497 /* unittest device must not be in before state */
1498 if (of_unittest_device_exists(unittest_nr, ovtype) != before) {
1499 unittest(0, "%s with device @\"%s\" %s\n",
1500 overlay_name_from_nr(overlay_nr),
1501 unittest_path(unittest_nr, ovtype),
1502 !before ? "enabled" : "disabled");
1503 return -EINVAL;
1504 }
1505
1506 ovcs_id = 0;
1507 ret = of_unittest_apply_overlay(overlay_nr, unittest_nr, &ovcs_id);
1508 if (ret != 0) {
1509 /* of_unittest_apply_overlay already called unittest() */
1510 return ret;
1511 }
1512
1513 /* unittest device must be to set to after state */
1514 if (of_unittest_device_exists(unittest_nr, ovtype) != after) {
1515 unittest(0, "%s failed to create @\"%s\" %s\n",
1516 overlay_name_from_nr(overlay_nr),
1517 unittest_path(unittest_nr, ovtype),
1518 !after ? "enabled" : "disabled");
1519 return -EINVAL;
1520 }
1521
1522 return 0;
1523}
1524
1525/* apply an overlay and then revert it while checking before, after states */
1526static int __init of_unittest_apply_revert_overlay_check(int overlay_nr,
1527 int unittest_nr, int before, int after,
1528 enum overlay_type ovtype)
1529{
1530 int ret, ovcs_id;
1531
1532 /* unittest device must be in before state */
1533 if (of_unittest_device_exists(unittest_nr, ovtype) != before) {
1534 unittest(0, "%s with device @\"%s\" %s\n",
1535 overlay_name_from_nr(overlay_nr),
1536 unittest_path(unittest_nr, ovtype),
1537 !before ? "enabled" : "disabled");
1538 return -EINVAL;
1539 }
1540
1541 /* apply the overlay */
1542 ovcs_id = 0;
1543 ret = of_unittest_apply_overlay(overlay_nr, unittest_nr, &ovcs_id);
1544 if (ret != 0) {
1545 /* of_unittest_apply_overlay already called unittest() */
1546 return ret;
1547 }
1548
1549 /* unittest device must be in after state */
1550 if (of_unittest_device_exists(unittest_nr, ovtype) != after) {
1551 unittest(0, "%s failed to create @\"%s\" %s\n",
1552 overlay_name_from_nr(overlay_nr),
1553 unittest_path(unittest_nr, ovtype),
1554 !after ? "enabled" : "disabled");
1555 return -EINVAL;
1556 }
1557
1558 ret = of_overlay_remove(&ovcs_id);
1559 if (ret != 0) {
1560 unittest(0, "%s failed to be destroyed @\"%s\"\n",
1561 overlay_name_from_nr(overlay_nr),
1562 unittest_path(unittest_nr, ovtype));
1563 return ret;
1564 }
1565
1566 /* unittest device must be again in before state */
1567 if (of_unittest_device_exists(unittest_nr, PDEV_OVERLAY) != before) {
1568 unittest(0, "%s with device @\"%s\" %s\n",
1569 overlay_name_from_nr(overlay_nr),
1570 unittest_path(unittest_nr, ovtype),
1571 !before ? "enabled" : "disabled");
1572 return -EINVAL;
1573 }
1574
1575 return 0;
1576}
1577
1578/* test activation of device */
1579static void __init of_unittest_overlay_0(void)
1580{
1581 /* device should enable */
1582 if (of_unittest_apply_overlay_check(0, 0, 0, 1, PDEV_OVERLAY))
1583 return;
1584
1585 unittest(1, "overlay test %d passed\n", 0);
1586}
1587
1588/* test deactivation of device */
1589static void __init of_unittest_overlay_1(void)
1590{
1591 /* device should disable */
1592 if (of_unittest_apply_overlay_check(1, 1, 1, 0, PDEV_OVERLAY))
1593 return;
1594
1595 unittest(1, "overlay test %d passed\n", 1);
1596}
1597
1598/* test activation of device */
1599static void __init of_unittest_overlay_2(void)
1600{
1601 /* device should enable */
1602 if (of_unittest_apply_overlay_check(2, 2, 0, 1, PDEV_OVERLAY))
1603 return;
1604
1605 unittest(1, "overlay test %d passed\n", 2);
1606}
1607
1608/* test deactivation of device */
1609static void __init of_unittest_overlay_3(void)
1610{
1611 /* device should disable */
1612 if (of_unittest_apply_overlay_check(3, 3, 1, 0, PDEV_OVERLAY))
1613 return;
1614
1615 unittest(1, "overlay test %d passed\n", 3);
1616}
1617
1618/* test activation of a full device node */
1619static void __init of_unittest_overlay_4(void)
1620{
1621 /* device should disable */
1622 if (of_unittest_apply_overlay_check(4, 4, 0, 1, PDEV_OVERLAY))
1623 return;
1624
1625 unittest(1, "overlay test %d passed\n", 4);
1626}
1627
1628/* test overlay apply/revert sequence */
1629static void __init of_unittest_overlay_5(void)
1630{
1631 /* device should disable */
1632 if (of_unittest_apply_revert_overlay_check(5, 5, 0, 1, PDEV_OVERLAY))
1633 return;
1634
1635 unittest(1, "overlay test %d passed\n", 5);
1636}
1637
1638/* test overlay application in sequence */
1639static void __init of_unittest_overlay_6(void)
1640{
1641 int i, ov_id[2], ovcs_id;
1642 int overlay_nr = 6, unittest_nr = 6;
1643 int before = 0, after = 1;
1644 const char *overlay_name;
1645
1646 /* unittest device must be in before state */
1647 for (i = 0; i < 2; i++) {
1648 if (of_unittest_device_exists(unittest_nr + i, PDEV_OVERLAY)
1649 != before) {
1650 unittest(0, "%s with device @\"%s\" %s\n",
1651 overlay_name_from_nr(overlay_nr + i),
1652 unittest_path(unittest_nr + i,
1653 PDEV_OVERLAY),
1654 !before ? "enabled" : "disabled");
1655 return;
1656 }
1657 }
1658
1659 /* apply the overlays */
1660 for (i = 0; i < 2; i++) {
1661
1662 overlay_name = overlay_name_from_nr(overlay_nr + i);
1663
1664 if (!overlay_data_apply(overlay_name, &ovcs_id)) {
1665 unittest(0, "could not apply overlay \"%s\"\n",
1666 overlay_name);
1667 return;
1668 }
1669 ov_id[i] = ovcs_id;
1670 of_unittest_track_overlay(ov_id[i]);
1671 }
1672
1673 for (i = 0; i < 2; i++) {
1674 /* unittest device must be in after state */
1675 if (of_unittest_device_exists(unittest_nr + i, PDEV_OVERLAY)
1676 != after) {
1677 unittest(0, "overlay @\"%s\" failed @\"%s\" %s\n",
1678 overlay_name_from_nr(overlay_nr + i),
1679 unittest_path(unittest_nr + i,
1680 PDEV_OVERLAY),
1681 !after ? "enabled" : "disabled");
1682 return;
1683 }
1684 }
1685
1686 for (i = 1; i >= 0; i--) {
1687 ovcs_id = ov_id[i];
1688 if (of_overlay_remove(&ovcs_id)) {
1689 unittest(0, "%s failed destroy @\"%s\"\n",
1690 overlay_name_from_nr(overlay_nr + i),
1691 unittest_path(unittest_nr + i,
1692 PDEV_OVERLAY));
1693 return;
1694 }
1695 of_unittest_untrack_overlay(ov_id[i]);
1696 }
1697
1698 for (i = 0; i < 2; i++) {
1699 /* unittest device must be again in before state */
1700 if (of_unittest_device_exists(unittest_nr + i, PDEV_OVERLAY)
1701 != before) {
1702 unittest(0, "%s with device @\"%s\" %s\n",
1703 overlay_name_from_nr(overlay_nr + i),
1704 unittest_path(unittest_nr + i,
1705 PDEV_OVERLAY),
1706 !before ? "enabled" : "disabled");
1707 return;
1708 }
1709 }
1710
1711 unittest(1, "overlay test %d passed\n", 6);
1712}
1713
1714/* test overlay application in sequence */
1715static void __init of_unittest_overlay_8(void)
1716{
1717 int i, ov_id[2], ovcs_id;
1718 int overlay_nr = 8, unittest_nr = 8;
1719 const char *overlay_name;
1720
1721 /* we don't care about device state in this test */
1722
1723 /* apply the overlays */
1724 for (i = 0; i < 2; i++) {
1725
1726 overlay_name = overlay_name_from_nr(overlay_nr + i);
1727
1728 if (!overlay_data_apply(overlay_name, &ovcs_id)) {
1729 unittest(0, "could not apply overlay \"%s\"\n",
1730 overlay_name);
1731 return;
1732 }
1733 ov_id[i] = ovcs_id;
1734 of_unittest_track_overlay(ov_id[i]);
1735 }
1736
1737 /* now try to remove first overlay (it should fail) */
1738 ovcs_id = ov_id[0];
1739 if (!of_overlay_remove(&ovcs_id)) {
1740 unittest(0, "%s was destroyed @\"%s\"\n",
1741 overlay_name_from_nr(overlay_nr + 0),
1742 unittest_path(unittest_nr,
1743 PDEV_OVERLAY));
1744 return;
1745 }
1746
1747 /* removing them in order should work */
1748 for (i = 1; i >= 0; i--) {
1749 ovcs_id = ov_id[i];
1750 if (of_overlay_remove(&ovcs_id)) {
1751 unittest(0, "%s not destroyed @\"%s\"\n",
1752 overlay_name_from_nr(overlay_nr + i),
1753 unittest_path(unittest_nr,
1754 PDEV_OVERLAY));
1755 return;
1756 }
1757 of_unittest_untrack_overlay(ov_id[i]);
1758 }
1759
1760 unittest(1, "overlay test %d passed\n", 8);
1761}
1762
1763/* test insertion of a bus with parent devices */
1764static void __init of_unittest_overlay_10(void)
1765{
1766 int ret;
1767 char *child_path;
1768
1769 /* device should disable */
1770 ret = of_unittest_apply_overlay_check(10, 10, 0, 1, PDEV_OVERLAY);
1771 if (unittest(ret == 0,
1772 "overlay test %d failed; overlay application\n", 10))
1773 return;
1774
1775 child_path = kasprintf(GFP_KERNEL, "%s/test-unittest101",
1776 unittest_path(10, PDEV_OVERLAY));
1777 if (unittest(child_path, "overlay test %d failed; kasprintf\n", 10))
1778 return;
1779
1780 ret = of_path_device_type_exists(child_path, PDEV_OVERLAY);
1781 kfree(child_path);
1782
1783 unittest(ret, "overlay test %d failed; no child device\n", 10);
1784}
1785
1786/* test insertion of a bus with parent devices (and revert) */
1787static void __init of_unittest_overlay_11(void)
1788{
1789 int ret;
1790
1791 /* device should disable */
1792 ret = of_unittest_apply_revert_overlay_check(11, 11, 0, 1,
1793 PDEV_OVERLAY);
1794 unittest(ret == 0, "overlay test %d failed; overlay apply\n", 11);
1795}
1796
1797#if IS_BUILTIN(CONFIG_I2C) && IS_ENABLED(CONFIG_OF_OVERLAY)
1798
1799struct unittest_i2c_bus_data {
1800 struct platform_device *pdev;
1801 struct i2c_adapter adap;
1802};
1803
1804static int unittest_i2c_master_xfer(struct i2c_adapter *adap,
1805 struct i2c_msg *msgs, int num)
1806{
1807 struct unittest_i2c_bus_data *std = i2c_get_adapdata(adap);
1808
1809 (void)std;
1810
1811 return num;
1812}
1813
1814static u32 unittest_i2c_functionality(struct i2c_adapter *adap)
1815{
1816 return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL;
1817}
1818
1819static const struct i2c_algorithm unittest_i2c_algo = {
1820 .master_xfer = unittest_i2c_master_xfer,
1821 .functionality = unittest_i2c_functionality,
1822};
1823
1824static int unittest_i2c_bus_probe(struct platform_device *pdev)
1825{
1826 struct device *dev = &pdev->dev;
1827 struct device_node *np = dev->of_node;
1828 struct unittest_i2c_bus_data *std;
1829 struct i2c_adapter *adap;
1830 int ret;
1831
1832 if (np == NULL) {
1833 dev_err(dev, "No OF data for device\n");
1834 return -EINVAL;
1835
1836 }
1837
1838 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1839
1840 std = devm_kzalloc(dev, sizeof(*std), GFP_KERNEL);
1841 if (!std) {
1842 dev_err(dev, "Failed to allocate unittest i2c data\n");
1843 return -ENOMEM;
1844 }
1845
1846 /* link them together */
1847 std->pdev = pdev;
1848 platform_set_drvdata(pdev, std);
1849
1850 adap = &std->adap;
1851 i2c_set_adapdata(adap, std);
1852 adap->nr = -1;
1853 strlcpy(adap->name, pdev->name, sizeof(adap->name));
1854 adap->class = I2C_CLASS_DEPRECATED;
1855 adap->algo = &unittest_i2c_algo;
1856 adap->dev.parent = dev;
1857 adap->dev.of_node = dev->of_node;
1858 adap->timeout = 5 * HZ;
1859 adap->retries = 3;
1860
1861 ret = i2c_add_numbered_adapter(adap);
1862 if (ret != 0) {
1863 dev_err(dev, "Failed to add I2C adapter\n");
1864 return ret;
1865 }
1866
1867 return 0;
1868}
1869
1870static int unittest_i2c_bus_remove(struct platform_device *pdev)
1871{
1872 struct device *dev = &pdev->dev;
1873 struct device_node *np = dev->of_node;
1874 struct unittest_i2c_bus_data *std = platform_get_drvdata(pdev);
1875
1876 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1877 i2c_del_adapter(&std->adap);
1878
1879 return 0;
1880}
1881
1882static const struct of_device_id unittest_i2c_bus_match[] = {
1883 { .compatible = "unittest-i2c-bus", },
1884 {},
1885};
1886
1887static struct platform_driver unittest_i2c_bus_driver = {
1888 .probe = unittest_i2c_bus_probe,
1889 .remove = unittest_i2c_bus_remove,
1890 .driver = {
1891 .name = "unittest-i2c-bus",
1892 .of_match_table = of_match_ptr(unittest_i2c_bus_match),
1893 },
1894};
1895
1896static int unittest_i2c_dev_probe(struct i2c_client *client,
1897 const struct i2c_device_id *id)
1898{
1899 struct device *dev = &client->dev;
1900 struct device_node *np = client->dev.of_node;
1901
1902 if (!np) {
1903 dev_err(dev, "No OF node\n");
1904 return -EINVAL;
1905 }
1906
1907 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1908
1909 return 0;
1910};
1911
1912static int unittest_i2c_dev_remove(struct i2c_client *client)
1913{
1914 struct device *dev = &client->dev;
1915 struct device_node *np = client->dev.of_node;
1916
1917 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1918 return 0;
1919}
1920
1921static const struct i2c_device_id unittest_i2c_dev_id[] = {
1922 { .name = "unittest-i2c-dev" },
1923 { }
1924};
1925
1926static struct i2c_driver unittest_i2c_dev_driver = {
1927 .driver = {
1928 .name = "unittest-i2c-dev",
1929 },
1930 .probe = unittest_i2c_dev_probe,
1931 .remove = unittest_i2c_dev_remove,
1932 .id_table = unittest_i2c_dev_id,
1933};
1934
1935#if IS_BUILTIN(CONFIG_I2C_MUX)
1936
1937static int unittest_i2c_mux_select_chan(struct i2c_mux_core *muxc, u32 chan)
1938{
1939 return 0;
1940}
1941
1942static int unittest_i2c_mux_probe(struct i2c_client *client,
1943 const struct i2c_device_id *id)
1944{
1945 int i, nchans;
1946 struct device *dev = &client->dev;
1947 struct i2c_adapter *adap = to_i2c_adapter(dev->parent);
1948 struct device_node *np = client->dev.of_node, *child;
1949 struct i2c_mux_core *muxc;
1950 u32 reg, max_reg;
1951
1952 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1953
1954 if (!np) {
1955 dev_err(dev, "No OF node\n");
1956 return -EINVAL;
1957 }
1958
1959 max_reg = (u32)-1;
1960 for_each_child_of_node(np, child) {
1961 if (of_property_read_u32(child, "reg", &reg))
1962 continue;
1963 if (max_reg == (u32)-1 || reg > max_reg)
1964 max_reg = reg;
1965 }
1966 nchans = max_reg == (u32)-1 ? 0 : max_reg + 1;
1967 if (nchans == 0) {
1968 dev_err(dev, "No channels\n");
1969 return -EINVAL;
1970 }
1971
1972 muxc = i2c_mux_alloc(adap, dev, nchans, 0, 0,
1973 unittest_i2c_mux_select_chan, NULL);
1974 if (!muxc)
1975 return -ENOMEM;
1976 for (i = 0; i < nchans; i++) {
1977 if (i2c_mux_add_adapter(muxc, 0, i, 0)) {
1978 dev_err(dev, "Failed to register mux #%d\n", i);
1979 i2c_mux_del_adapters(muxc);
1980 return -ENODEV;
1981 }
1982 }
1983
1984 i2c_set_clientdata(client, muxc);
1985
1986 return 0;
1987};
1988
1989static int unittest_i2c_mux_remove(struct i2c_client *client)
1990{
1991 struct device *dev = &client->dev;
1992 struct device_node *np = client->dev.of_node;
1993 struct i2c_mux_core *muxc = i2c_get_clientdata(client);
1994
1995 dev_dbg(dev, "%s for node @%pOF\n", __func__, np);
1996 i2c_mux_del_adapters(muxc);
1997 return 0;
1998}
1999
2000static const struct i2c_device_id unittest_i2c_mux_id[] = {
2001 { .name = "unittest-i2c-mux" },
2002 { }
2003};
2004
2005static struct i2c_driver unittest_i2c_mux_driver = {
2006 .driver = {
2007 .name = "unittest-i2c-mux",
2008 },
2009 .probe = unittest_i2c_mux_probe,
2010 .remove = unittest_i2c_mux_remove,
2011 .id_table = unittest_i2c_mux_id,
2012};
2013
2014#endif
2015
2016static int of_unittest_overlay_i2c_init(void)
2017{
2018 int ret;
2019
2020 ret = i2c_add_driver(&unittest_i2c_dev_driver);
2021 if (unittest(ret == 0,
2022 "could not register unittest i2c device driver\n"))
2023 return ret;
2024
2025 ret = platform_driver_register(&unittest_i2c_bus_driver);
2026 if (unittest(ret == 0,
2027 "could not register unittest i2c bus driver\n"))
2028 return ret;
2029
2030#if IS_BUILTIN(CONFIG_I2C_MUX)
2031 ret = i2c_add_driver(&unittest_i2c_mux_driver);
2032 if (unittest(ret == 0,
2033 "could not register unittest i2c mux driver\n"))
2034 return ret;
2035#endif
2036
2037 return 0;
2038}
2039
2040static void of_unittest_overlay_i2c_cleanup(void)
2041{
2042#if IS_BUILTIN(CONFIG_I2C_MUX)
2043 i2c_del_driver(&unittest_i2c_mux_driver);
2044#endif
2045 platform_driver_unregister(&unittest_i2c_bus_driver);
2046 i2c_del_driver(&unittest_i2c_dev_driver);
2047}
2048
2049static void __init of_unittest_overlay_i2c_12(void)
2050{
2051 /* device should enable */
2052 if (of_unittest_apply_overlay_check(12, 12, 0, 1, I2C_OVERLAY))
2053 return;
2054
2055 unittest(1, "overlay test %d passed\n", 12);
2056}
2057
2058/* test deactivation of device */
2059static void __init of_unittest_overlay_i2c_13(void)
2060{
2061 /* device should disable */
2062 if (of_unittest_apply_overlay_check(13, 13, 1, 0, I2C_OVERLAY))
2063 return;
2064
2065 unittest(1, "overlay test %d passed\n", 13);
2066}
2067
2068/* just check for i2c mux existence */
2069static void of_unittest_overlay_i2c_14(void)
2070{
2071}
2072
2073static void __init of_unittest_overlay_i2c_15(void)
2074{
2075 /* device should enable */
2076 if (of_unittest_apply_overlay_check(15, 15, 0, 1, I2C_OVERLAY))
2077 return;
2078
2079 unittest(1, "overlay test %d passed\n", 15);
2080}
2081
2082#else
2083
2084static inline void of_unittest_overlay_i2c_14(void) { }
2085static inline void of_unittest_overlay_i2c_15(void) { }
2086
2087#endif
2088
2089static void __init of_unittest_overlay(void)
2090{
2091 struct device_node *bus_np = NULL;
2092
2093 if (platform_driver_register(&unittest_driver)) {
2094 unittest(0, "could not register unittest driver\n");
2095 goto out;
2096 }
2097
2098 bus_np = of_find_node_by_path(bus_path);
2099 if (bus_np == NULL) {
2100 unittest(0, "could not find bus_path \"%s\"\n", bus_path);
2101 goto out;
2102 }
2103
2104 if (of_platform_default_populate(bus_np, NULL, NULL)) {
2105 unittest(0, "could not populate bus @ \"%s\"\n", bus_path);
2106 goto out;
2107 }
2108
2109 if (!of_unittest_device_exists(100, PDEV_OVERLAY)) {
2110 unittest(0, "could not find unittest0 @ \"%s\"\n",
2111 unittest_path(100, PDEV_OVERLAY));
2112 goto out;
2113 }
2114
2115 if (of_unittest_device_exists(101, PDEV_OVERLAY)) {
2116 unittest(0, "unittest1 @ \"%s\" should not exist\n",
2117 unittest_path(101, PDEV_OVERLAY));
2118 goto out;
2119 }
2120
2121 unittest(1, "basic infrastructure of overlays passed");
2122
2123 /* tests in sequence */
2124 of_unittest_overlay_0();
2125 of_unittest_overlay_1();
2126 of_unittest_overlay_2();
2127 of_unittest_overlay_3();
2128 of_unittest_overlay_4();
2129 of_unittest_overlay_5();
2130 of_unittest_overlay_6();
2131 of_unittest_overlay_8();
2132
2133 of_unittest_overlay_10();
2134 of_unittest_overlay_11();
2135
2136#if IS_BUILTIN(CONFIG_I2C)
2137 if (unittest(of_unittest_overlay_i2c_init() == 0, "i2c init failed\n"))
2138 goto out;
2139
2140 of_unittest_overlay_i2c_12();
2141 of_unittest_overlay_i2c_13();
2142 of_unittest_overlay_i2c_14();
2143 of_unittest_overlay_i2c_15();
2144
2145 of_unittest_overlay_i2c_cleanup();
2146#endif
2147
2148 of_unittest_destroy_tracked_overlays();
2149
2150out:
2151 of_node_put(bus_np);
2152}
2153
2154#else
2155static inline void __init of_unittest_overlay(void) { }
2156#endif
2157
2158#ifdef CONFIG_OF_OVERLAY
2159
2160/*
2161 * __dtb_ot_begin[] and __dtb_ot_end[] are created by cmd_dt_S_dtb
2162 * in scripts/Makefile.lib
2163 */
2164
2165#define OVERLAY_INFO_EXTERN(name) \
2166 extern uint8_t __dtb_##name##_begin[]; \
2167 extern uint8_t __dtb_##name##_end[]
2168
2169#define OVERLAY_INFO(overlay_name, expected) \
2170{ .dtb_begin = __dtb_##overlay_name##_begin, \
2171 .dtb_end = __dtb_##overlay_name##_end, \
2172 .expected_result = expected, \
2173 .name = #overlay_name, \
2174}
2175
2176struct overlay_info {
2177 uint8_t *dtb_begin;
2178 uint8_t *dtb_end;
2179 int expected_result;
2180 int overlay_id;
2181 char *name;
2182};
2183
2184OVERLAY_INFO_EXTERN(overlay_base);
2185OVERLAY_INFO_EXTERN(overlay);
2186OVERLAY_INFO_EXTERN(overlay_0);
2187OVERLAY_INFO_EXTERN(overlay_1);
2188OVERLAY_INFO_EXTERN(overlay_2);
2189OVERLAY_INFO_EXTERN(overlay_3);
2190OVERLAY_INFO_EXTERN(overlay_4);
2191OVERLAY_INFO_EXTERN(overlay_5);
2192OVERLAY_INFO_EXTERN(overlay_6);
2193OVERLAY_INFO_EXTERN(overlay_7);
2194OVERLAY_INFO_EXTERN(overlay_8);
2195OVERLAY_INFO_EXTERN(overlay_9);
2196OVERLAY_INFO_EXTERN(overlay_10);
2197OVERLAY_INFO_EXTERN(overlay_11);
2198OVERLAY_INFO_EXTERN(overlay_12);
2199OVERLAY_INFO_EXTERN(overlay_13);
2200OVERLAY_INFO_EXTERN(overlay_15);
2201OVERLAY_INFO_EXTERN(overlay_bad_phandle);
2202OVERLAY_INFO_EXTERN(overlay_bad_symbol);
2203
2204/* order of entries is hard-coded into users of overlays[] */
2205static struct overlay_info overlays[] = {
2206 OVERLAY_INFO(overlay_base, -9999),
2207 OVERLAY_INFO(overlay, 0),
2208 OVERLAY_INFO(overlay_0, 0),
2209 OVERLAY_INFO(overlay_1, 0),
2210 OVERLAY_INFO(overlay_2, 0),
2211 OVERLAY_INFO(overlay_3, 0),
2212 OVERLAY_INFO(overlay_4, 0),
2213 OVERLAY_INFO(overlay_5, 0),
2214 OVERLAY_INFO(overlay_6, 0),
2215 OVERLAY_INFO(overlay_7, 0),
2216 OVERLAY_INFO(overlay_8, 0),
2217 OVERLAY_INFO(overlay_9, 0),
2218 OVERLAY_INFO(overlay_10, 0),
2219 OVERLAY_INFO(overlay_11, 0),
2220 OVERLAY_INFO(overlay_12, 0),
2221 OVERLAY_INFO(overlay_13, 0),
2222 OVERLAY_INFO(overlay_15, 0),
2223 OVERLAY_INFO(overlay_bad_phandle, -EINVAL),
2224 OVERLAY_INFO(overlay_bad_symbol, -EINVAL),
2225 {}
2226};
2227
2228static struct device_node *overlay_base_root;
2229
2230static void * __init dt_alloc_memory(u64 size, u64 align)
2231{
2232 return memblock_virt_alloc(size, align);
2233}
2234
2235/*
2236 * Create base device tree for the overlay unittest.
2237 *
2238 * This is called from very early boot code.
2239 *
2240 * Do as much as possible the same way as done in __unflatten_device_tree
2241 * and other early boot steps for the normal FDT so that the overlay base
2242 * unflattened tree will have the same characteristics as the real tree
2243 * (such as having memory allocated by the early allocator). The goal
2244 * is to test "the real thing" as much as possible, and test "test setup
2245 * code" as little as possible.
2246 *
2247 * Have to stop before resolving phandles, because that uses kmalloc.
2248 */
2249void __init unittest_unflatten_overlay_base(void)
2250{
2251 struct overlay_info *info;
2252 u32 data_size;
2253 void *new_fdt;
2254 u32 size;
2255
2256 info = &overlays[0];
2257
2258 if (info->expected_result != -9999) {
2259 pr_err("No dtb 'overlay_base' to attach\n");
2260 return;
2261 }
2262
2263 data_size = info->dtb_end - info->dtb_begin;
2264 if (!data_size) {
2265 pr_err("No dtb 'overlay_base' to attach\n");
2266 return;
2267 }
2268
2269 size = fdt_totalsize(info->dtb_begin);
2270 if (size != data_size) {
2271 pr_err("dtb 'overlay_base' header totalsize != actual size");
2272 return;
2273 }
2274
2275 new_fdt = dt_alloc_memory(size, roundup_pow_of_two(FDT_V17_SIZE));
2276 if (!new_fdt) {
2277 pr_err("alloc for dtb 'overlay_base' failed");
2278 return;
2279 }
2280
2281 memcpy(new_fdt, info->dtb_begin, size);
2282
2283 __unflatten_device_tree(new_fdt, NULL, &overlay_base_root,
2284 dt_alloc_memory, true);
2285}
2286
2287/*
2288 * The purpose of of_unittest_overlay_data_add is to add an
2289 * overlay in the normal fashion. This is a test of the whole
2290 * picture, instead of testing individual elements.
2291 *
2292 * A secondary purpose is to be able to verify that the contents of
2293 * /proc/device-tree/ contains the updated structure and values from
2294 * the overlay. That must be verified separately in user space.
2295 *
2296 * Return 0 on unexpected error.
2297 */
2298static int __init overlay_data_apply(const char *overlay_name, int *overlay_id)
2299{
2300 struct overlay_info *info;
2301 int found = 0;
2302 int k;
2303 int ret;
2304 u32 size;
2305
2306 for (k = 0, info = overlays; info && info->name; info++, k++) {
2307 if (!strcmp(overlay_name, info->name)) {
2308 found = 1;
2309 break;
2310 }
2311 }
2312 if (!found) {
2313 pr_err("no overlay data for %s\n", overlay_name);
2314 return 0;
2315 }
2316
2317 size = info->dtb_end - info->dtb_begin;
2318 if (!size)
2319 pr_err("no overlay data for %s\n", overlay_name);
2320
2321 ret = of_overlay_fdt_apply(info->dtb_begin, size, &info->overlay_id);
2322 if (overlay_id)
2323 *overlay_id = info->overlay_id;
2324 if (ret < 0)
2325 goto out;
2326
2327 pr_debug("%s applied\n", overlay_name);
2328
2329out:
2330 if (ret != info->expected_result)
2331 pr_err("of_overlay_fdt_apply() expected %d, ret=%d, %s\n",
2332 info->expected_result, ret, overlay_name);
2333
2334 return (ret == info->expected_result);
2335}
2336
2337/*
2338 * The purpose of of_unittest_overlay_high_level is to add an overlay
2339 * in the normal fashion. This is a test of the whole picture,
2340 * instead of individual elements.
2341 *
2342 * The first part of the function is _not_ normal overlay usage; it is
2343 * finishing splicing the base overlay device tree into the live tree.
2344 */
2345static __init void of_unittest_overlay_high_level(void)
2346{
2347 struct device_node *last_sibling;
2348 struct device_node *np;
2349 struct device_node *of_symbols;
2350 struct device_node *overlay_base_symbols;
2351 struct device_node **pprev;
2352 struct property *prop;
2353
2354 if (!overlay_base_root) {
2355 unittest(0, "overlay_base_root not initialized\n");
2356 return;
2357 }
2358
2359 /*
2360 * Could not fixup phandles in unittest_unflatten_overlay_base()
2361 * because kmalloc() was not yet available.
2362 */
2363 of_overlay_mutex_lock();
2364 of_resolve_phandles(overlay_base_root);
2365 of_overlay_mutex_unlock();
2366
2367
2368 /*
2369 * do not allow overlay_base to duplicate any node already in
2370 * tree, this greatly simplifies the code
2371 */
2372
2373 /*
2374 * remove overlay_base_root node "__local_fixups", after
2375 * being used by of_resolve_phandles()
2376 */
2377 pprev = &overlay_base_root->child;
2378 for (np = overlay_base_root->child; np; np = np->sibling) {
2379 if (!of_node_cmp(np->name, "__local_fixups__")) {
2380 *pprev = np->sibling;
2381 break;
2382 }
2383 pprev = &np->sibling;
2384 }
2385
2386 /* remove overlay_base_root node "__symbols__" if in live tree */
2387 of_symbols = of_get_child_by_name(of_root, "__symbols__");
2388 if (of_symbols) {
2389 /* will have to graft properties from node into live tree */
2390 pprev = &overlay_base_root->child;
2391 for (np = overlay_base_root->child; np; np = np->sibling) {
2392 if (!of_node_cmp(np->name, "__symbols__")) {
2393 overlay_base_symbols = np;
2394 *pprev = np->sibling;
2395 break;
2396 }
2397 pprev = &np->sibling;
2398 }
2399 }
2400
2401 for (np = overlay_base_root->child; np; np = np->sibling) {
2402 if (of_get_child_by_name(of_root, np->name)) {
2403 unittest(0, "illegal node name in overlay_base %s",
2404 np->name);
2405 return;
2406 }
2407 }
2408
2409 /*
2410 * overlay 'overlay_base' is not allowed to have root
2411 * properties, so only need to splice nodes into main device tree.
2412 *
2413 * root node of *overlay_base_root will not be freed, it is lost
2414 * memory.
2415 */
2416
2417 for (np = overlay_base_root->child; np; np = np->sibling)
2418 np->parent = of_root;
2419
2420 mutex_lock(&of_mutex);
2421
2422 for (last_sibling = np = of_root->child; np; np = np->sibling)
2423 last_sibling = np;
2424
2425 if (last_sibling)
2426 last_sibling->sibling = overlay_base_root->child;
2427 else
2428 of_root->child = overlay_base_root->child;
2429
2430 for_each_of_allnodes_from(overlay_base_root, np)
2431 __of_attach_node_sysfs(np);
2432
2433 if (of_symbols) {
2434 struct property *new_prop;
2435 for_each_property_of_node(overlay_base_symbols, prop) {
2436
2437 new_prop = __of_prop_dup(prop, GFP_KERNEL);
2438 if (!new_prop) {
2439 unittest(0, "__of_prop_dup() of '%s' from overlay_base node __symbols__",
2440 prop->name);
2441 goto err_unlock;
2442 }
2443 if (__of_add_property(of_symbols, new_prop)) {
2444 /* "name" auto-generated by unflatten */
2445 if (!strcmp(new_prop->name, "name"))
2446 continue;
2447 unittest(0, "duplicate property '%s' in overlay_base node __symbols__",
2448 prop->name);
2449 goto err_unlock;
2450 }
2451 if (__of_add_property_sysfs(of_symbols, new_prop)) {
2452 unittest(0, "unable to add property '%s' in overlay_base node __symbols__ to sysfs",
2453 prop->name);
2454 goto err_unlock;
2455 }
2456 }
2457 }
2458
2459 mutex_unlock(&of_mutex);
2460
2461
2462 /* now do the normal overlay usage test */
2463
2464 unittest(overlay_data_apply("overlay", NULL),
2465 "Adding overlay 'overlay' failed\n");
2466
2467 unittest(overlay_data_apply("overlay_bad_phandle", NULL),
2468 "Adding overlay 'overlay_bad_phandle' failed\n");
2469
2470 unittest(overlay_data_apply("overlay_bad_symbol", NULL),
2471 "Adding overlay 'overlay_bad_symbol' failed\n");
2472
2473 return;
2474
2475err_unlock:
2476 mutex_unlock(&of_mutex);
2477}
2478
2479#else
2480
2481static inline __init void of_unittest_overlay_high_level(void) {}
2482
2483#endif
2484
2485static int __init of_unittest(void)
2486{
2487 struct device_node *np;
2488 int res;
2489
2490 /* adding data for unittest */
2491 res = unittest_data_add();
2492 if (res)
2493 return res;
2494 if (!of_aliases)
2495 of_aliases = of_find_node_by_path("/aliases");
2496
2497 np = of_find_node_by_path("/testcase-data/phandle-tests/consumer-a");
2498 if (!np) {
2499 pr_info("No testcase data in device tree; not running tests\n");
2500 return 0;
2501 }
2502 of_node_put(np);
2503
2504 pr_info("start of unittest - you will see error messages\n");
2505 of_unittest_check_tree_linkage();
2506 of_unittest_check_phandles();
2507 of_unittest_find_node_by_name();
2508 of_unittest_dynamic();
2509 of_unittest_parse_phandle_with_args();
2510 of_unittest_parse_phandle_with_args_map();
2511 of_unittest_printf();
2512 of_unittest_property_string();
2513 of_unittest_property_copy();
2514 of_unittest_changeset();
2515 of_unittest_parse_interrupts();
2516 of_unittest_parse_interrupts_extended();
2517 of_unittest_match_node();
2518 of_unittest_platform_populate();
2519 of_unittest_overlay();
2520
2521 /* Double check linkage after removing testcase data */
2522 of_unittest_check_tree_linkage();
2523
2524 of_unittest_overlay_high_level();
2525
2526 pr_info("end of unittest - %i passed, %i failed\n",
2527 unittest_results.passed, unittest_results.failed);
2528
2529 return 0;
2530}
2531late_initcall(of_unittest);