blob: 990d390d0150da5edb8b52a6e5887f1d94e68dc4 [file] [log] [blame]
Simon Glassb2c1cac2014-02-26 15:59:21 -07001/*
2 * Tests for the core driver model code
3 *
4 * Copyright (c) 2013 Google, Inc
5 *
6 * SPDX-License-Identifier: GPL-2.0+
7 */
8
9#include <common.h>
10#include <errno.h>
11#include <dm.h>
12#include <fdtdec.h>
13#include <malloc.h>
14#include <dm/device-internal.h>
15#include <dm/root.h>
16#include <dm/ut.h>
17#include <dm/util.h>
18#include <dm/test.h>
19#include <dm/uclass-internal.h>
20
21DECLARE_GLOBAL_DATA_PTR;
22
23enum {
24 TEST_INTVAL1 = 0,
25 TEST_INTVAL2 = 3,
26 TEST_INTVAL3 = 6,
27 TEST_INTVAL_MANUAL = 101112,
Simon Glassfef72b72014-07-23 06:55:03 -060028 TEST_INTVAL_PRE_RELOC = 7,
Simon Glassb2c1cac2014-02-26 15:59:21 -070029};
30
31static const struct dm_test_pdata test_pdata[] = {
32 { .ping_add = TEST_INTVAL1, },
33 { .ping_add = TEST_INTVAL2, },
34 { .ping_add = TEST_INTVAL3, },
35};
36
37static const struct dm_test_pdata test_pdata_manual = {
38 .ping_add = TEST_INTVAL_MANUAL,
39};
40
Simon Glassfef72b72014-07-23 06:55:03 -060041static const struct dm_test_pdata test_pdata_pre_reloc = {
42 .ping_add = TEST_INTVAL_PRE_RELOC,
43};
44
Simon Glassb2c1cac2014-02-26 15:59:21 -070045U_BOOT_DEVICE(dm_test_info1) = {
46 .name = "test_drv",
47 .platdata = &test_pdata[0],
48};
49
50U_BOOT_DEVICE(dm_test_info2) = {
51 .name = "test_drv",
52 .platdata = &test_pdata[1],
53};
54
55U_BOOT_DEVICE(dm_test_info3) = {
56 .name = "test_drv",
57 .platdata = &test_pdata[2],
58};
59
60static struct driver_info driver_info_manual = {
61 .name = "test_manual_drv",
62 .platdata = &test_pdata_manual,
63};
64
Simon Glassfef72b72014-07-23 06:55:03 -060065static struct driver_info driver_info_pre_reloc = {
66 .name = "test_pre_reloc_drv",
67 .platdata = &test_pdata_manual,
68};
69
Simon Glass0927a6f2014-10-04 11:29:50 -060070void dm_leak_check_start(struct dm_test_state *dms)
71{
72 dms->start = mallinfo();
73 if (!dms->start.uordblks)
74 puts("Warning: Please add '#define DEBUG' to the top of common/dlmalloc.c\n");
75}
76
77int dm_leak_check_end(struct dm_test_state *dms)
78{
79 struct mallinfo end;
80 int id;
81
82 /* Don't delete the root class, since we started with that */
83 for (id = UCLASS_ROOT + 1; id < UCLASS_COUNT; id++) {
84 struct uclass *uc;
85
86 uc = uclass_find(id);
87 if (!uc)
88 continue;
89 ut_assertok(uclass_destroy(uc));
90 }
91
92 end = mallinfo();
93 ut_asserteq(dms->start.uordblks, end.uordblks);
94
95 return 0;
96}
97
Simon Glassb2c1cac2014-02-26 15:59:21 -070098/* Test that binding with platdata occurs correctly */
99static int dm_test_autobind(struct dm_test_state *dms)
100{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200101 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700102
103 /*
104 * We should have a single class (UCLASS_ROOT) and a single root
105 * device with no children.
106 */
107 ut_assert(dms->root);
108 ut_asserteq(1, list_count_items(&gd->uclass_root));
109 ut_asserteq(0, list_count_items(&gd->dm_root->child_head));
110 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_POST_BIND]);
111
Simon Glassfef72b72014-07-23 06:55:03 -0600112 ut_assertok(dm_scan_platdata(false));
Simon Glassb2c1cac2014-02-26 15:59:21 -0700113
114 /* We should have our test class now at least, plus more children */
115 ut_assert(1 < list_count_items(&gd->uclass_root));
116 ut_assert(0 < list_count_items(&gd->dm_root->child_head));
117
118 /* Our 3 dm_test_infox children should be bound to the test uclass */
119 ut_asserteq(3, dm_testdrv_op_count[DM_TEST_OP_POST_BIND]);
120
121 /* No devices should be probed */
122 list_for_each_entry(dev, &gd->dm_root->child_head, sibling_node)
123 ut_assert(!(dev->flags & DM_FLAG_ACTIVATED));
124
125 /* Our test driver should have been bound 3 times */
126 ut_assert(dm_testdrv_op_count[DM_TEST_OP_BIND] == 3);
127
128 return 0;
129}
130DM_TEST(dm_test_autobind, 0);
131
132/* Test that autoprobe finds all the expected devices */
133static int dm_test_autoprobe(struct dm_test_state *dms)
134{
135 int expected_base_add;
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200136 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700137 struct uclass *uc;
138 int i;
139
140 ut_assertok(uclass_get(UCLASS_TEST, &uc));
141 ut_assert(uc);
142
143 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_INIT]);
Simon Glass9c1f3822015-03-05 12:25:22 -0700144 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_PRE_PROBE]);
Simon Glassb2c1cac2014-02-26 15:59:21 -0700145 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_POST_PROBE]);
146
147 /* The root device should not be activated until needed */
Simon Glass6d3b3e22014-07-23 06:55:00 -0600148 ut_assert(dms->root->flags & DM_FLAG_ACTIVATED);
Simon Glassb2c1cac2014-02-26 15:59:21 -0700149
150 /*
151 * We should be able to find the three test devices, and they should
152 * all be activated as they are used (lazy activation, required by
153 * U-Boot)
154 */
155 for (i = 0; i < 3; i++) {
156 ut_assertok(uclass_find_device(UCLASS_TEST, i, &dev));
157 ut_assert(dev);
158 ut_assertf(!(dev->flags & DM_FLAG_ACTIVATED),
159 "Driver %d/%s already activated", i, dev->name);
160
161 /* This should activate it */
162 ut_assertok(uclass_get_device(UCLASS_TEST, i, &dev));
163 ut_assert(dev);
164 ut_assert(dev->flags & DM_FLAG_ACTIVATED);
165
166 /* Activating a device should activate the root device */
167 if (!i)
168 ut_assert(dms->root->flags & DM_FLAG_ACTIVATED);
169 }
170
Simon Glass9c1f3822015-03-05 12:25:22 -0700171 /*
172 * Our 3 dm_test_info children should be passed to pre_probe and
173 * post_probe
174 */
Simon Glassb2c1cac2014-02-26 15:59:21 -0700175 ut_asserteq(3, dm_testdrv_op_count[DM_TEST_OP_POST_PROBE]);
Simon Glass9c1f3822015-03-05 12:25:22 -0700176 ut_asserteq(3, dm_testdrv_op_count[DM_TEST_OP_PRE_PROBE]);
Simon Glassb2c1cac2014-02-26 15:59:21 -0700177
178 /* Also we can check the per-device data */
179 expected_base_add = 0;
180 for (i = 0; i < 3; i++) {
181 struct dm_test_uclass_perdev_priv *priv;
182 struct dm_test_pdata *pdata;
183
184 ut_assertok(uclass_find_device(UCLASS_TEST, i, &dev));
185 ut_assert(dev);
186
Simon Glassde0977b2015-03-05 12:25:20 -0700187 priv = dev_get_uclass_priv(dev);
Simon Glassb2c1cac2014-02-26 15:59:21 -0700188 ut_assert(priv);
189 ut_asserteq(expected_base_add, priv->base_add);
190
191 pdata = dev->platdata;
192 expected_base_add += pdata->ping_add;
193 }
194
195 return 0;
196}
197DM_TEST(dm_test_autoprobe, DM_TESTF_SCAN_PDATA);
198
199/* Check that we see the correct platdata in each device */
200static int dm_test_platdata(struct dm_test_state *dms)
201{
202 const struct dm_test_pdata *pdata;
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200203 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700204 int i;
205
206 for (i = 0; i < 3; i++) {
207 ut_assertok(uclass_find_device(UCLASS_TEST, i, &dev));
208 ut_assert(dev);
209 pdata = dev->platdata;
210 ut_assert(pdata->ping_add == test_pdata[i].ping_add);
211 }
212
213 return 0;
214}
215DM_TEST(dm_test_platdata, DM_TESTF_SCAN_PDATA);
216
217/* Test that we can bind, probe, remove, unbind a driver */
218static int dm_test_lifecycle(struct dm_test_state *dms)
219{
220 int op_count[DM_TEST_OP_COUNT];
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200221 struct udevice *dev, *test_dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700222 int pingret;
223 int ret;
224
225 memcpy(op_count, dm_testdrv_op_count, sizeof(op_count));
226
Simon Glassfef72b72014-07-23 06:55:03 -0600227 ut_assertok(device_bind_by_name(dms->root, false, &driver_info_manual,
Simon Glassb2c1cac2014-02-26 15:59:21 -0700228 &dev));
229 ut_assert(dev);
230 ut_assert(dm_testdrv_op_count[DM_TEST_OP_BIND]
231 == op_count[DM_TEST_OP_BIND] + 1);
232 ut_assert(!dev->priv);
233
234 /* Probe the device - it should fail allocating private data */
235 dms->force_fail_alloc = 1;
236 ret = device_probe(dev);
237 ut_assert(ret == -ENOMEM);
238 ut_assert(dm_testdrv_op_count[DM_TEST_OP_PROBE]
239 == op_count[DM_TEST_OP_PROBE] + 1);
240 ut_assert(!dev->priv);
241
242 /* Try again without the alloc failure */
243 dms->force_fail_alloc = 0;
244 ut_assertok(device_probe(dev));
245 ut_assert(dm_testdrv_op_count[DM_TEST_OP_PROBE]
246 == op_count[DM_TEST_OP_PROBE] + 2);
247 ut_assert(dev->priv);
248
249 /* This should be device 3 in the uclass */
250 ut_assertok(uclass_find_device(UCLASS_TEST, 3, &test_dev));
251 ut_assert(dev == test_dev);
252
253 /* Try ping */
254 ut_assertok(test_ping(dev, 100, &pingret));
255 ut_assert(pingret == 102);
256
257 /* Now remove device 3 */
258 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_PRE_REMOVE]);
259 ut_assertok(device_remove(dev));
260 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_PRE_REMOVE]);
261
262 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_UNBIND]);
263 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_PRE_UNBIND]);
264 ut_assertok(device_unbind(dev));
265 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_UNBIND]);
266 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_PRE_UNBIND]);
267
268 return 0;
269}
270DM_TEST(dm_test_lifecycle, DM_TESTF_SCAN_PDATA | DM_TESTF_PROBE_TEST);
271
272/* Test that we can bind/unbind and the lists update correctly */
273static int dm_test_ordering(struct dm_test_state *dms)
274{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200275 struct udevice *dev, *dev_penultimate, *dev_last, *test_dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700276 int pingret;
277
Simon Glassfef72b72014-07-23 06:55:03 -0600278 ut_assertok(device_bind_by_name(dms->root, false, &driver_info_manual,
Simon Glassb2c1cac2014-02-26 15:59:21 -0700279 &dev));
280 ut_assert(dev);
281
282 /* Bind two new devices (numbers 4 and 5) */
Simon Glassfef72b72014-07-23 06:55:03 -0600283 ut_assertok(device_bind_by_name(dms->root, false, &driver_info_manual,
Simon Glassb2c1cac2014-02-26 15:59:21 -0700284 &dev_penultimate));
285 ut_assert(dev_penultimate);
Simon Glassfef72b72014-07-23 06:55:03 -0600286 ut_assertok(device_bind_by_name(dms->root, false, &driver_info_manual,
Simon Glassb2c1cac2014-02-26 15:59:21 -0700287 &dev_last));
288 ut_assert(dev_last);
289
290 /* Now remove device 3 */
291 ut_assertok(device_remove(dev));
292 ut_assertok(device_unbind(dev));
293
294 /* The device numbering should have shifted down one */
295 ut_assertok(uclass_find_device(UCLASS_TEST, 3, &test_dev));
296 ut_assert(dev_penultimate == test_dev);
297 ut_assertok(uclass_find_device(UCLASS_TEST, 4, &test_dev));
298 ut_assert(dev_last == test_dev);
299
300 /* Add back the original device 3, now in position 5 */
Simon Glassfef72b72014-07-23 06:55:03 -0600301 ut_assertok(device_bind_by_name(dms->root, false, &driver_info_manual,
302 &dev));
Simon Glassb2c1cac2014-02-26 15:59:21 -0700303 ut_assert(dev);
304
305 /* Try ping */
306 ut_assertok(test_ping(dev, 100, &pingret));
307 ut_assert(pingret == 102);
308
309 /* Remove 3 and 4 */
310 ut_assertok(device_remove(dev_penultimate));
311 ut_assertok(device_unbind(dev_penultimate));
312 ut_assertok(device_remove(dev_last));
313 ut_assertok(device_unbind(dev_last));
314
315 /* Our device should now be in position 3 */
316 ut_assertok(uclass_find_device(UCLASS_TEST, 3, &test_dev));
317 ut_assert(dev == test_dev);
318
319 /* Now remove device 3 */
320 ut_assertok(device_remove(dev));
321 ut_assertok(device_unbind(dev));
322
323 return 0;
324}
325DM_TEST(dm_test_ordering, DM_TESTF_SCAN_PDATA);
326
327/* Check that we can perform operations on a device (do a ping) */
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200328int dm_check_operations(struct dm_test_state *dms, struct udevice *dev,
Simon Glassb2c1cac2014-02-26 15:59:21 -0700329 uint32_t base, struct dm_test_priv *priv)
330{
331 int expected;
332 int pingret;
333
334 /* Getting the child device should allocate platdata / priv */
335 ut_assertok(testfdt_ping(dev, 10, &pingret));
336 ut_assert(dev->priv);
337 ut_assert(dev->platdata);
338
339 expected = 10 + base;
340 ut_asserteq(expected, pingret);
341
342 /* Do another ping */
343 ut_assertok(testfdt_ping(dev, 20, &pingret));
344 expected = 20 + base;
345 ut_asserteq(expected, pingret);
346
347 /* Now check the ping_total */
348 priv = dev->priv;
349 ut_asserteq(DM_TEST_START_TOTAL + 10 + 20 + base * 2,
350 priv->ping_total);
351
352 return 0;
353}
354
355/* Check that we can perform operations on devices */
356static int dm_test_operations(struct dm_test_state *dms)
357{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200358 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700359 int i;
360
361 /*
362 * Now check that the ping adds are what we expect. This is using the
363 * ping-add property in each node.
364 */
365 for (i = 0; i < ARRAY_SIZE(test_pdata); i++) {
366 uint32_t base;
367
368 ut_assertok(uclass_get_device(UCLASS_TEST, i, &dev));
369
370 /*
371 * Get the 'reg' property, which tells us what the ping add
372 * should be. We don't use the platdata because we want
373 * to test the code that sets that up (testfdt_drv_probe()).
374 */
375 base = test_pdata[i].ping_add;
376 debug("dev=%d, base=%d\n", i, base);
377
378 ut_assert(!dm_check_operations(dms, dev, base, dev->priv));
379 }
380
381 return 0;
382}
383DM_TEST(dm_test_operations, DM_TESTF_SCAN_PDATA);
384
385/* Remove all drivers and check that things work */
386static int dm_test_remove(struct dm_test_state *dms)
387{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200388 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700389 int i;
390
391 for (i = 0; i < 3; i++) {
392 ut_assertok(uclass_find_device(UCLASS_TEST, i, &dev));
393 ut_assert(dev);
394 ut_assertf(dev->flags & DM_FLAG_ACTIVATED,
395 "Driver %d/%s not activated", i, dev->name);
396 ut_assertok(device_remove(dev));
397 ut_assertf(!(dev->flags & DM_FLAG_ACTIVATED),
398 "Driver %d/%s should have deactivated", i,
399 dev->name);
400 ut_assert(!dev->priv);
401 }
402
403 return 0;
404}
405DM_TEST(dm_test_remove, DM_TESTF_SCAN_PDATA | DM_TESTF_PROBE_TEST);
406
407/* Remove and recreate everything, check for memory leaks */
408static int dm_test_leak(struct dm_test_state *dms)
409{
410 int i;
411
412 for (i = 0; i < 2; i++) {
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200413 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700414 int ret;
415 int id;
416
Simon Glass0927a6f2014-10-04 11:29:50 -0600417 dm_leak_check_start(dms);
Simon Glassb2c1cac2014-02-26 15:59:21 -0700418
Simon Glassfef72b72014-07-23 06:55:03 -0600419 ut_assertok(dm_scan_platdata(false));
420 ut_assertok(dm_scan_fdt(gd->fdt_blob, false));
Simon Glassb2c1cac2014-02-26 15:59:21 -0700421
422 /* Scanning the uclass is enough to probe all the devices */
423 for (id = UCLASS_ROOT; id < UCLASS_COUNT; id++) {
424 for (ret = uclass_first_device(UCLASS_TEST, &dev);
425 dev;
426 ret = uclass_next_device(&dev))
427 ;
428 ut_assertok(ret);
429 }
430
Simon Glass0927a6f2014-10-04 11:29:50 -0600431 ut_assertok(dm_leak_check_end(dms));
Simon Glassb2c1cac2014-02-26 15:59:21 -0700432 }
433
434 return 0;
435}
436DM_TEST(dm_test_leak, 0);
437
438/* Test uclass init/destroy methods */
439static int dm_test_uclass(struct dm_test_state *dms)
440{
441 struct uclass *uc;
442
443 ut_assertok(uclass_get(UCLASS_TEST, &uc));
444 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_INIT]);
445 ut_asserteq(0, dm_testdrv_op_count[DM_TEST_OP_DESTROY]);
446 ut_assert(uc->priv);
447
448 ut_assertok(uclass_destroy(uc));
449 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_INIT]);
450 ut_asserteq(1, dm_testdrv_op_count[DM_TEST_OP_DESTROY]);
451
452 return 0;
453}
454DM_TEST(dm_test_uclass, 0);
455
456/**
457 * create_children() - Create children of a parent node
458 *
459 * @dms: Test system state
460 * @parent: Parent device
461 * @count: Number of children to create
462 * @key: Key value to put in first child. Subsequence children
463 * receive an incrementing value
464 * @child: If not NULL, then the child device pointers are written into
465 * this array.
466 * @return 0 if OK, -ve on error
467 */
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200468static int create_children(struct dm_test_state *dms, struct udevice *parent,
469 int count, int key, struct udevice *child[])
Simon Glassb2c1cac2014-02-26 15:59:21 -0700470{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200471 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700472 int i;
473
474 for (i = 0; i < count; i++) {
475 struct dm_test_pdata *pdata;
476
Simon Glassfef72b72014-07-23 06:55:03 -0600477 ut_assertok(device_bind_by_name(parent, false,
478 &driver_info_manual, &dev));
Simon Glassb2c1cac2014-02-26 15:59:21 -0700479 pdata = calloc(1, sizeof(*pdata));
480 pdata->ping_add = key + i;
481 dev->platdata = pdata;
482 if (child)
483 child[i] = dev;
484 }
485
486 return 0;
487}
488
489#define NODE_COUNT 10
490
491static int dm_test_children(struct dm_test_state *dms)
492{
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200493 struct udevice *top[NODE_COUNT];
494 struct udevice *child[NODE_COUNT];
495 struct udevice *grandchild[NODE_COUNT];
496 struct udevice *dev;
Simon Glassb2c1cac2014-02-26 15:59:21 -0700497 int total;
498 int ret;
499 int i;
500
501 /* We don't care about the numbering for this test */
502 dms->skip_post_probe = 1;
503
504 ut_assert(NODE_COUNT > 5);
505
506 /* First create 10 top-level children */
507 ut_assertok(create_children(dms, dms->root, NODE_COUNT, 0, top));
508
509 /* Now a few have their own children */
510 ut_assertok(create_children(dms, top[2], NODE_COUNT, 2, NULL));
511 ut_assertok(create_children(dms, top[5], NODE_COUNT, 5, child));
512
513 /* And grandchildren */
514 for (i = 0; i < NODE_COUNT; i++)
515 ut_assertok(create_children(dms, child[i], NODE_COUNT, 50 * i,
516 i == 2 ? grandchild : NULL));
517
518 /* Check total number of devices */
519 total = NODE_COUNT * (3 + NODE_COUNT);
520 ut_asserteq(total, dm_testdrv_op_count[DM_TEST_OP_BIND]);
521
522 /* Try probing one of the grandchildren */
523 ut_assertok(uclass_get_device(UCLASS_TEST,
524 NODE_COUNT * 3 + 2 * NODE_COUNT, &dev));
525 ut_asserteq_ptr(grandchild[0], dev);
526
527 /*
528 * This should have probed the child and top node also, for a total
529 * of 3 nodes.
530 */
531 ut_asserteq(3, dm_testdrv_op_count[DM_TEST_OP_PROBE]);
532
533 /* Probe the other grandchildren */
534 for (i = 1; i < NODE_COUNT; i++)
535 ut_assertok(device_probe(grandchild[i]));
536
537 ut_asserteq(2 + NODE_COUNT, dm_testdrv_op_count[DM_TEST_OP_PROBE]);
538
539 /* Probe everything */
540 for (ret = uclass_first_device(UCLASS_TEST, &dev);
541 dev;
542 ret = uclass_next_device(&dev))
543 ;
544 ut_assertok(ret);
545
546 ut_asserteq(total, dm_testdrv_op_count[DM_TEST_OP_PROBE]);
547
548 /* Remove a top-level child and check that the children are removed */
549 ut_assertok(device_remove(top[2]));
550 ut_asserteq(NODE_COUNT + 1, dm_testdrv_op_count[DM_TEST_OP_REMOVE]);
551 dm_testdrv_op_count[DM_TEST_OP_REMOVE] = 0;
552
553 /* Try one with grandchildren */
554 ut_assertok(uclass_get_device(UCLASS_TEST, 5, &dev));
555 ut_asserteq_ptr(dev, top[5]);
556 ut_assertok(device_remove(dev));
557 ut_asserteq(1 + NODE_COUNT * (1 + NODE_COUNT),
558 dm_testdrv_op_count[DM_TEST_OP_REMOVE]);
559
560 /* Try the same with unbind */
561 ut_assertok(device_unbind(top[2]));
562 ut_asserteq(NODE_COUNT + 1, dm_testdrv_op_count[DM_TEST_OP_UNBIND]);
563 dm_testdrv_op_count[DM_TEST_OP_UNBIND] = 0;
564
565 /* Try one with grandchildren */
566 ut_assertok(uclass_get_device(UCLASS_TEST, 5, &dev));
567 ut_asserteq_ptr(dev, top[6]);
568 ut_assertok(device_unbind(top[5]));
569 ut_asserteq(1 + NODE_COUNT * (1 + NODE_COUNT),
570 dm_testdrv_op_count[DM_TEST_OP_UNBIND]);
571
572 return 0;
573}
574DM_TEST(dm_test_children, 0);
Simon Glassfef72b72014-07-23 06:55:03 -0600575
576/* Test that pre-relocation devices work as expected */
577static int dm_test_pre_reloc(struct dm_test_state *dms)
578{
579 struct udevice *dev;
580
581 /* The normal driver should refuse to bind before relocation */
582 ut_asserteq(-EPERM, device_bind_by_name(dms->root, true,
583 &driver_info_manual, &dev));
584
585 /* But this one is marked pre-reloc */
586 ut_assertok(device_bind_by_name(dms->root, true,
587 &driver_info_pre_reloc, &dev));
588
589 return 0;
590}
591DM_TEST(dm_test_pre_reloc, 0);
Simon Glassde708672014-07-23 06:55:15 -0600592
593static int dm_test_uclass_before_ready(struct dm_test_state *dms)
594{
595 struct uclass *uc;
596
597 ut_assertok(uclass_get(UCLASS_TEST, &uc));
598
599 memset(gd, '\0', sizeof(*gd));
600 ut_asserteq_ptr(NULL, uclass_find(UCLASS_TEST));
601
602 return 0;
603}
604
605DM_TEST(dm_test_uclass_before_ready, 0);
Simon Glass98fd5d12015-01-25 08:27:04 -0700606
607static int dm_test_device_get_uclass_id(struct dm_test_state *dms)
608{
609 struct udevice *dev;
610
611 ut_assertok(uclass_get_device(UCLASS_TEST, 0, &dev));
612 ut_asserteq(UCLASS_TEST, device_get_uclass_id(dev));
613
614 return 0;
615}
616DM_TEST(dm_test_device_get_uclass_id, DM_TESTF_SCAN_PDATA);