blob: ac8ce99f5120909b162c445436db412b6b2fd131 [file] [log] [blame]
Tom Rini83d290c2018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Simon Glass2e7d35d2014-02-26 15:59:21 -07002/*
3 * Copyright (c) 2013 Google, Inc
Simon Glass2e7d35d2014-02-26 15:59:21 -07004 */
5
6#include <common.h>
7#include <dm.h>
8#include <errno.h>
9#include <fdtdec.h>
Simon Glassf7ae49f2020-05-10 11:40:05 -060010#include <log.h>
Simon Glass2e7d35d2014-02-26 15:59:21 -070011#include <malloc.h>
12#include <asm/io.h>
13#include <dm/test.h>
14#include <dm/root.h>
Simon Glass98561572017-04-23 20:10:44 -060015#include <dm/device-internal.h>
Simon Glass61b29b82020-02-03 07:36:15 -070016#include <dm/devres.h>
Simon Glass2e7d35d2014-02-26 15:59:21 -070017#include <dm/uclass-internal.h>
18#include <dm/util.h>
Mario Six2ea4d0d2018-06-26 08:46:49 +020019#include <dm/lists.h>
20#include <dm/of_access.h>
Simon Glass0e1fad42020-07-19 10:15:37 -060021#include <test/test.h>
Joe Hershbergere721b882015-05-20 14:27:27 -050022#include <test/ut.h>
Simon Glass2e7d35d2014-02-26 15:59:21 -070023
24DECLARE_GLOBAL_DATA_PTR;
25
Heiko Schocher54c5d082014-05-22 12:43:05 +020026static int testfdt_drv_ping(struct udevice *dev, int pingval, int *pingret)
Simon Glass2e7d35d2014-02-26 15:59:21 -070027{
28 const struct dm_test_pdata *pdata = dev->platdata;
29 struct dm_test_priv *priv = dev_get_priv(dev);
30
31 *pingret = pingval + pdata->ping_add;
32 priv->ping_total += *pingret;
33
34 return 0;
35}
36
37static const struct test_ops test_ops = {
38 .ping = testfdt_drv_ping,
39};
40
Heiko Schocher54c5d082014-05-22 12:43:05 +020041static int testfdt_ofdata_to_platdata(struct udevice *dev)
Simon Glass2e7d35d2014-02-26 15:59:21 -070042{
43 struct dm_test_pdata *pdata = dev_get_platdata(dev);
44
Simon Glasse160f7d2017-01-17 16:52:55 -070045 pdata->ping_add = fdtdec_get_int(gd->fdt_blob, dev_of_offset(dev),
Simon Glass2e7d35d2014-02-26 15:59:21 -070046 "ping-add", -1);
Simon Glasse160f7d2017-01-17 16:52:55 -070047 pdata->base = fdtdec_get_addr(gd->fdt_blob, dev_of_offset(dev),
Simon Glasseb9ef5f2014-07-23 06:54:57 -060048 "ping-expect");
Simon Glass2e7d35d2014-02-26 15:59:21 -070049
50 return 0;
51}
52
Heiko Schocher54c5d082014-05-22 12:43:05 +020053static int testfdt_drv_probe(struct udevice *dev)
Simon Glass2e7d35d2014-02-26 15:59:21 -070054{
55 struct dm_test_priv *priv = dev_get_priv(dev);
56
57 priv->ping_total += DM_TEST_START_TOTAL;
58
Simon Glass83c7e432015-01-25 08:27:10 -070059 /*
60 * If this device is on a bus, the uclass_flag will be set before
Bin Mengd92878a2018-10-15 02:20:58 -070061 * calling this function. In the meantime the uclass_postp is
62 * initlized to a value -1. These are used respectively by
63 * dm_test_bus_child_pre_probe_uclass() and
64 * dm_test_bus_child_post_probe_uclass().
Simon Glass83c7e432015-01-25 08:27:10 -070065 */
66 priv->uclass_total += priv->uclass_flag;
Bin Mengd92878a2018-10-15 02:20:58 -070067 priv->uclass_postp = -1;
Simon Glass83c7e432015-01-25 08:27:10 -070068
Simon Glass2e7d35d2014-02-26 15:59:21 -070069 return 0;
70}
71
Simon Glassae7f4512014-06-11 23:29:45 -060072static const struct udevice_id testfdt_ids[] = {
Simon Glass2e7d35d2014-02-26 15:59:21 -070073 {
74 .compatible = "denx,u-boot-fdt-test",
75 .data = DM_TEST_TYPE_FIRST },
76 {
77 .compatible = "google,another-fdt-test",
78 .data = DM_TEST_TYPE_SECOND },
79 { }
80};
81
82U_BOOT_DRIVER(testfdt_drv) = {
83 .name = "testfdt_drv",
84 .of_match = testfdt_ids,
85 .id = UCLASS_TEST_FDT,
86 .ofdata_to_platdata = testfdt_ofdata_to_platdata,
87 .probe = testfdt_drv_probe,
88 .ops = &test_ops,
89 .priv_auto_alloc_size = sizeof(struct dm_test_priv),
90 .platdata_auto_alloc_size = sizeof(struct dm_test_pdata),
91};
92
Bin Meng2786cd72018-10-10 22:07:01 -070093static const struct udevice_id testfdt1_ids[] = {
94 {
95 .compatible = "denx,u-boot-fdt-test1",
96 .data = DM_TEST_TYPE_FIRST },
97 { }
98};
99
100U_BOOT_DRIVER(testfdt1_drv) = {
101 .name = "testfdt1_drv",
102 .of_match = testfdt1_ids,
103 .id = UCLASS_TEST_FDT,
104 .ofdata_to_platdata = testfdt_ofdata_to_platdata,
105 .probe = testfdt_drv_probe,
106 .ops = &test_ops,
107 .priv_auto_alloc_size = sizeof(struct dm_test_priv),
108 .platdata_auto_alloc_size = sizeof(struct dm_test_pdata),
109 .flags = DM_FLAG_PRE_RELOC,
110};
111
Simon Glass2e7d35d2014-02-26 15:59:21 -0700112/* From here is the testfdt uclass code */
Heiko Schocher54c5d082014-05-22 12:43:05 +0200113int testfdt_ping(struct udevice *dev, int pingval, int *pingret)
Simon Glass2e7d35d2014-02-26 15:59:21 -0700114{
115 const struct test_ops *ops = device_get_ops(dev);
116
117 if (!ops->ping)
118 return -ENOSYS;
119
120 return ops->ping(dev, pingval, pingret);
121}
122
123UCLASS_DRIVER(testfdt) = {
124 .name = "testfdt",
125 .id = UCLASS_TEST_FDT,
Simon Glass9cc36a22015-01-25 08:27:05 -0700126 .flags = DM_UC_FLAG_SEQ_ALIAS,
Simon Glass2e7d35d2014-02-26 15:59:21 -0700127};
128
Simon Glass98561572017-04-23 20:10:44 -0600129struct dm_testprobe_pdata {
130 int probe_err;
131};
132
133static int testprobe_drv_probe(struct udevice *dev)
134{
135 struct dm_testprobe_pdata *pdata = dev_get_platdata(dev);
136
137 return pdata->probe_err;
138}
139
140static const struct udevice_id testprobe_ids[] = {
141 { .compatible = "denx,u-boot-probe-test" },
142 { }
143};
144
145U_BOOT_DRIVER(testprobe_drv) = {
146 .name = "testprobe_drv",
147 .of_match = testprobe_ids,
148 .id = UCLASS_TEST_PROBE,
149 .probe = testprobe_drv_probe,
150 .platdata_auto_alloc_size = sizeof(struct dm_testprobe_pdata),
151};
152
153UCLASS_DRIVER(testprobe) = {
154 .name = "testprobe",
155 .id = UCLASS_TEST_PROBE,
156 .flags = DM_UC_FLAG_SEQ_ALIAS,
157};
158
Simon Glassdc12ebb2019-12-29 21:19:25 -0700159struct dm_testdevres_pdata {
160 void *ptr;
161};
162
163struct dm_testdevres_priv {
164 void *ptr;
Simon Glass42a0ce52019-12-29 21:19:28 -0700165 void *ptr_ofdata;
Simon Glassdc12ebb2019-12-29 21:19:25 -0700166};
167
168static int testdevres_drv_bind(struct udevice *dev)
169{
170 struct dm_testdevres_pdata *pdata = dev_get_platdata(dev);
171
172 pdata->ptr = devm_kmalloc(dev, TEST_DEVRES_SIZE, 0);
173
174 return 0;
175}
176
Simon Glass42a0ce52019-12-29 21:19:28 -0700177static int testdevres_drv_ofdata_to_platdata(struct udevice *dev)
178{
179 struct dm_testdevres_priv *priv = dev_get_priv(dev);
180
181 priv->ptr_ofdata = devm_kmalloc(dev, TEST_DEVRES_SIZE3, 0);
182
183 return 0;
184}
185
Simon Glassdc12ebb2019-12-29 21:19:25 -0700186static int testdevres_drv_probe(struct udevice *dev)
187{
188 struct dm_testdevres_priv *priv = dev_get_priv(dev);
189
190 priv->ptr = devm_kmalloc(dev, TEST_DEVRES_SIZE2, 0);
191
192 return 0;
193}
194
195static const struct udevice_id testdevres_ids[] = {
196 { .compatible = "denx,u-boot-devres-test" },
197 { }
198};
199
200U_BOOT_DRIVER(testdevres_drv) = {
201 .name = "testdevres_drv",
202 .of_match = testdevres_ids,
203 .id = UCLASS_TEST_DEVRES,
204 .bind = testdevres_drv_bind,
Simon Glass42a0ce52019-12-29 21:19:28 -0700205 .ofdata_to_platdata = testdevres_drv_ofdata_to_platdata,
Simon Glassdc12ebb2019-12-29 21:19:25 -0700206 .probe = testdevres_drv_probe,
207 .platdata_auto_alloc_size = sizeof(struct dm_testdevres_pdata),
208 .priv_auto_alloc_size = sizeof(struct dm_testdevres_priv),
209};
210
211UCLASS_DRIVER(testdevres) = {
212 .name = "testdevres",
213 .id = UCLASS_TEST_DEVRES,
214 .flags = DM_UC_FLAG_SEQ_ALIAS,
215};
216
Joe Hershbergere721b882015-05-20 14:27:27 -0500217int dm_check_devices(struct unit_test_state *uts, int num_devices)
Simon Glass2e7d35d2014-02-26 15:59:21 -0700218{
Heiko Schocher54c5d082014-05-22 12:43:05 +0200219 struct udevice *dev;
Simon Glass2e7d35d2014-02-26 15:59:21 -0700220 int ret;
221 int i;
222
Simon Glass2e7d35d2014-02-26 15:59:21 -0700223 /*
224 * Now check that the ping adds are what we expect. This is using the
225 * ping-add property in each node.
226 */
Simon Glass1ca7e202014-07-23 06:55:18 -0600227 for (i = 0; i < num_devices; i++) {
Simon Glass2e7d35d2014-02-26 15:59:21 -0700228 uint32_t base;
229
230 ret = uclass_get_device(UCLASS_TEST_FDT, i, &dev);
231 ut_assert(!ret);
232
233 /*
Simon Glasseb9ef5f2014-07-23 06:54:57 -0600234 * Get the 'ping-expect' property, which tells us what the
235 * ping add should be. We don't use the platdata because we
236 * want to test the code that sets that up
237 * (testfdt_drv_probe()).
Simon Glass2e7d35d2014-02-26 15:59:21 -0700238 */
Simon Glasse160f7d2017-01-17 16:52:55 -0700239 base = fdtdec_get_addr(gd->fdt_blob, dev_of_offset(dev),
Simon Glasseb9ef5f2014-07-23 06:54:57 -0600240 "ping-expect");
Simon Glass2e7d35d2014-02-26 15:59:21 -0700241 debug("dev=%d, base=%d: %s\n", i, base,
Simon Glasse160f7d2017-01-17 16:52:55 -0700242 fdt_get_name(gd->fdt_blob, dev_of_offset(dev), NULL));
Simon Glass2e7d35d2014-02-26 15:59:21 -0700243
Joe Hershbergere721b882015-05-20 14:27:27 -0500244 ut_assert(!dm_check_operations(uts, dev, base,
Simon Glass2e7d35d2014-02-26 15:59:21 -0700245 dev_get_priv(dev)));
246 }
247
248 return 0;
249}
Simon Glass1ca7e202014-07-23 06:55:18 -0600250
251/* Test that FDT-based binding works correctly */
Joe Hershbergere721b882015-05-20 14:27:27 -0500252static int dm_test_fdt(struct unit_test_state *uts)
Simon Glass1ca7e202014-07-23 06:55:18 -0600253{
Bin Meng2786cd72018-10-10 22:07:01 -0700254 const int num_devices = 8;
Simon Glass1ca7e202014-07-23 06:55:18 -0600255 struct udevice *dev;
256 struct uclass *uc;
257 int ret;
258 int i;
259
Patrick Delaunay0544ecb2020-02-18 15:43:46 +0100260 ret = dm_extended_scan_fdt(gd->fdt_blob, false);
Simon Glass1ca7e202014-07-23 06:55:18 -0600261 ut_assert(!ret);
262
263 ret = uclass_get(UCLASS_TEST_FDT, &uc);
264 ut_assert(!ret);
265
266 /* These are num_devices compatible root-level device tree nodes */
267 ut_asserteq(num_devices, list_count_items(&uc->dev_head));
268
Simon Glassf8a85442015-01-25 08:27:00 -0700269 /* Each should have platform data but no private data */
Simon Glass1ca7e202014-07-23 06:55:18 -0600270 for (i = 0; i < num_devices; i++) {
271 ret = uclass_find_device(UCLASS_TEST_FDT, i, &dev);
272 ut_assert(!ret);
273 ut_assert(!dev_get_priv(dev));
Simon Glassf8a85442015-01-25 08:27:00 -0700274 ut_assert(dev->platdata);
Simon Glass1ca7e202014-07-23 06:55:18 -0600275 }
276
Joe Hershbergere721b882015-05-20 14:27:27 -0500277 ut_assertok(dm_check_devices(uts, num_devices));
Simon Glass1ca7e202014-07-23 06:55:18 -0600278
279 return 0;
280}
Simon Glass2e7d35d2014-02-26 15:59:21 -0700281DM_TEST(dm_test_fdt, 0);
Simon Glass00606d72014-07-23 06:55:03 -0600282
Michal Simeka93eb572019-01-31 16:31:00 +0100283static int dm_test_alias_highest_id(struct unit_test_state *uts)
284{
285 int ret;
286
287 ret = dev_read_alias_highest_id("eth");
288 ut_asserteq(5, ret);
289
290 ret = dev_read_alias_highest_id("gpio");
Patrick Delaunayff526652020-01-13 11:35:14 +0100291 ut_asserteq(3, ret);
Michal Simeka93eb572019-01-31 16:31:00 +0100292
293 ret = dev_read_alias_highest_id("pci");
294 ut_asserteq(2, ret);
295
296 ret = dev_read_alias_highest_id("i2c");
297 ut_asserteq(0, ret);
298
299 ret = dev_read_alias_highest_id("deadbeef");
300 ut_asserteq(-1, ret);
301
302 return 0;
303}
304DM_TEST(dm_test_alias_highest_id, 0);
305
Joe Hershbergere721b882015-05-20 14:27:27 -0500306static int dm_test_fdt_pre_reloc(struct unit_test_state *uts)
Simon Glass00606d72014-07-23 06:55:03 -0600307{
308 struct uclass *uc;
309 int ret;
310
311 ret = dm_scan_fdt(gd->fdt_blob, true);
312 ut_assert(!ret);
313
314 ret = uclass_get(UCLASS_TEST_FDT, &uc);
315 ut_assert(!ret);
316
Bin Meng2786cd72018-10-10 22:07:01 -0700317 /*
318 * These are 2 pre-reloc devices:
319 * one with "u-boot,dm-pre-reloc" property (a-test node), and the other
320 * one whose driver marked with DM_FLAG_PRE_RELOC flag (h-test node).
321 */
322 ut_asserteq(2, list_count_items(&uc->dev_head));
Simon Glass00606d72014-07-23 06:55:03 -0600323
324 return 0;
325}
326DM_TEST(dm_test_fdt_pre_reloc, 0);
Simon Glass5a66a8f2014-07-23 06:55:12 -0600327
328/* Test that sequence numbers are allocated properly */
Joe Hershbergere721b882015-05-20 14:27:27 -0500329static int dm_test_fdt_uclass_seq(struct unit_test_state *uts)
Simon Glass5a66a8f2014-07-23 06:55:12 -0600330{
331 struct udevice *dev;
332
333 /* A few basic santiy tests */
334 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_FDT, 3, true, &dev));
335 ut_asserteq_str("b-test", dev->name);
336
Simon Glass9cc36a22015-01-25 08:27:05 -0700337 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_FDT, 8, true, &dev));
Simon Glass5a66a8f2014-07-23 06:55:12 -0600338 ut_asserteq_str("a-test", dev->name);
339
340 ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 5,
341 true, &dev));
342 ut_asserteq_ptr(NULL, dev);
343
344 /* Test aliases */
345 ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 6, &dev));
346 ut_asserteq_str("e-test", dev->name);
347
348 ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 7,
349 true, &dev));
350
Simon Glass1ca7e202014-07-23 06:55:18 -0600351 /*
352 * Note that c-test nodes are not probed since it is not a top-level
353 * node
354 */
Simon Glass5a66a8f2014-07-23 06:55:12 -0600355 ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 3, &dev));
356 ut_asserteq_str("b-test", dev->name);
357
358 /*
359 * d-test wants sequence number 3 also, but it can't have it because
360 * b-test gets it first.
361 */
362 ut_assertok(uclass_get_device(UCLASS_TEST_FDT, 2, &dev));
363 ut_asserteq_str("d-test", dev->name);
364
Michael Wallebe1a6e92020-06-02 01:47:09 +0200365 /*
366 * d-test actually gets 9, because thats the next free one after the
367 * aliases.
368 */
369 ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 9, &dev));
Simon Glass5a66a8f2014-07-23 06:55:12 -0600370 ut_asserteq_str("d-test", dev->name);
371
Michael Wallebe1a6e92020-06-02 01:47:09 +0200372 /* initially no one wants seq 10 */
373 ut_asserteq(-ENODEV, uclass_get_device_by_seq(UCLASS_TEST_FDT, 10,
Simon Glass5a66a8f2014-07-23 06:55:12 -0600374 &dev));
375 ut_assertok(uclass_get_device(UCLASS_TEST_FDT, 0, &dev));
Simon Glass9cc36a22015-01-25 08:27:05 -0700376 ut_assertok(uclass_get_device(UCLASS_TEST_FDT, 4, &dev));
Simon Glass5a66a8f2014-07-23 06:55:12 -0600377
378 /* But now that it is probed, we can find it */
Michael Wallebe1a6e92020-06-02 01:47:09 +0200379 ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 10, &dev));
Simon Glass9cc36a22015-01-25 08:27:05 -0700380 ut_asserteq_str("f-test", dev->name);
Simon Glass5a66a8f2014-07-23 06:55:12 -0600381
Michael Wallebe1a6e92020-06-02 01:47:09 +0200382 /*
383 * And we should still have holes in our sequence numbers, that is 2
384 * and 4 should not be used.
385 */
386 ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 2,
387 true, &dev));
388 ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 4,
389 true, &dev));
390
Simon Glass5a66a8f2014-07-23 06:55:12 -0600391 return 0;
392}
Simon Glasse180c2b2020-07-28 19:41:12 -0600393DM_TEST(dm_test_fdt_uclass_seq, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glassf4cdead2014-07-23 06:55:14 -0600394
395/* Test that we can find a device by device tree offset */
Joe Hershbergere721b882015-05-20 14:27:27 -0500396static int dm_test_fdt_offset(struct unit_test_state *uts)
Simon Glassf4cdead2014-07-23 06:55:14 -0600397{
398 const void *blob = gd->fdt_blob;
399 struct udevice *dev;
400 int node;
401
402 node = fdt_path_offset(blob, "/e-test");
403 ut_assert(node > 0);
404 ut_assertok(uclass_get_device_by_of_offset(UCLASS_TEST_FDT, node,
405 &dev));
406 ut_asserteq_str("e-test", dev->name);
407
408 /* This node should not be bound */
409 node = fdt_path_offset(blob, "/junk");
410 ut_assert(node > 0);
411 ut_asserteq(-ENODEV, uclass_get_device_by_of_offset(UCLASS_TEST_FDT,
412 node, &dev));
413
414 /* This is not a top level node so should not be probed */
Simon Glass1ca7e202014-07-23 06:55:18 -0600415 node = fdt_path_offset(blob, "/some-bus/c-test@5");
Simon Glassf4cdead2014-07-23 06:55:14 -0600416 ut_assert(node > 0);
417 ut_asserteq(-ENODEV, uclass_get_device_by_of_offset(UCLASS_TEST_FDT,
418 node, &dev));
419
420 return 0;
421}
Simon Glass86b54ec2017-05-18 20:09:44 -0600422DM_TEST(dm_test_fdt_offset,
Simon Glasse180c2b2020-07-28 19:41:12 -0600423 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT | UT_TESTF_FLAT_TREE);
Simon Glass98561572017-04-23 20:10:44 -0600424
425/**
426 * Test various error conditions with uclass_first_device() and
427 * uclass_next_device()
428 */
429static int dm_test_first_next_device(struct unit_test_state *uts)
430{
431 struct dm_testprobe_pdata *pdata;
432 struct udevice *dev, *parent = NULL;
433 int count;
434 int ret;
435
436 /* There should be 4 devices */
437 for (ret = uclass_first_device(UCLASS_TEST_PROBE, &dev), count = 0;
438 dev;
439 ret = uclass_next_device(&dev)) {
440 count++;
441 parent = dev_get_parent(dev);
442 }
443 ut_assertok(ret);
444 ut_asserteq(4, count);
445
446 /* Remove them and try again, with an error on the second one */
447 ut_assertok(uclass_get_device(UCLASS_TEST_PROBE, 1, &dev));
448 pdata = dev_get_platdata(dev);
449 pdata->probe_err = -ENOMEM;
450 device_remove(parent, DM_REMOVE_NORMAL);
451 ut_assertok(uclass_first_device(UCLASS_TEST_PROBE, &dev));
452 ut_asserteq(-ENOMEM, uclass_next_device(&dev));
453 ut_asserteq_ptr(dev, NULL);
454
455 /* Now an error on the first one */
456 ut_assertok(uclass_get_device(UCLASS_TEST_PROBE, 0, &dev));
457 pdata = dev_get_platdata(dev);
458 pdata->probe_err = -ENOENT;
459 device_remove(parent, DM_REMOVE_NORMAL);
460 ut_asserteq(-ENOENT, uclass_first_device(UCLASS_TEST_PROBE, &dev));
461
462 return 0;
463}
Simon Glasse180c2b2020-07-28 19:41:12 -0600464DM_TEST(dm_test_first_next_device, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glass95ce3852017-04-23 20:10:45 -0600465
Simon Glass3cf0fba2020-02-06 09:54:49 -0700466/* Test iteration through devices in a uclass */
467static int dm_test_uclass_foreach(struct unit_test_state *uts)
468{
469 struct udevice *dev;
470 struct uclass *uc;
471 int count;
472
473 count = 0;
474 uclass_id_foreach_dev(UCLASS_TEST_FDT, dev, uc)
475 count++;
476 ut_asserteq(8, count);
477
478 count = 0;
479 uclass_foreach_dev(dev, uc)
480 count++;
481 ut_asserteq(8, count);
482
483 return 0;
484}
Simon Glasse180c2b2020-07-28 19:41:12 -0600485DM_TEST(dm_test_uclass_foreach, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glass3cf0fba2020-02-06 09:54:49 -0700486
Simon Glass95ce3852017-04-23 20:10:45 -0600487/**
488 * check_devices() - Check return values and pointers
489 *
490 * This runs through a full sequence of uclass_first_device_check()...
491 * uclass_next_device_check() checking that the return values and devices
492 * are correct.
493 *
494 * @uts: Test state
495 * @devlist: List of expected devices
496 * @mask: Indicates which devices should return an error. Device n should
497 * return error (-NOENT - n) if bit n is set, or no error (i.e. 0) if
498 * bit n is clear.
499 */
500static int check_devices(struct unit_test_state *uts,
501 struct udevice *devlist[], int mask)
502{
503 int expected_ret;
504 struct udevice *dev;
505 int i;
506
507 expected_ret = (mask & 1) ? -ENOENT : 0;
508 mask >>= 1;
509 ut_asserteq(expected_ret,
510 uclass_first_device_check(UCLASS_TEST_PROBE, &dev));
511 for (i = 0; i < 4; i++) {
512 ut_asserteq_ptr(devlist[i], dev);
513 expected_ret = (mask & 1) ? -ENOENT - (i + 1) : 0;
514 mask >>= 1;
515 ut_asserteq(expected_ret, uclass_next_device_check(&dev));
516 }
517 ut_asserteq_ptr(NULL, dev);
518
519 return 0;
520}
521
522/* Test uclass_first_device_check() and uclass_next_device_check() */
523static int dm_test_first_next_ok_device(struct unit_test_state *uts)
524{
525 struct dm_testprobe_pdata *pdata;
526 struct udevice *dev, *parent = NULL, *devlist[4];
527 int count;
528 int ret;
529
530 /* There should be 4 devices */
531 count = 0;
532 for (ret = uclass_first_device_check(UCLASS_TEST_PROBE, &dev);
533 dev;
534 ret = uclass_next_device_check(&dev)) {
535 ut_assertok(ret);
536 devlist[count++] = dev;
537 parent = dev_get_parent(dev);
538 }
539 ut_asserteq(4, count);
540 ut_assertok(uclass_first_device_check(UCLASS_TEST_PROBE, &dev));
541 ut_assertok(check_devices(uts, devlist, 0));
542
543 /* Remove them and try again, with an error on the second one */
544 pdata = dev_get_platdata(devlist[1]);
545 pdata->probe_err = -ENOENT - 1;
546 device_remove(parent, DM_REMOVE_NORMAL);
547 ut_assertok(check_devices(uts, devlist, 1 << 1));
548
549 /* Now an error on the first one */
550 pdata = dev_get_platdata(devlist[0]);
551 pdata->probe_err = -ENOENT - 0;
552 device_remove(parent, DM_REMOVE_NORMAL);
553 ut_assertok(check_devices(uts, devlist, 3 << 0));
554
555 /* Now errors on all */
556 pdata = dev_get_platdata(devlist[2]);
557 pdata->probe_err = -ENOENT - 2;
558 pdata = dev_get_platdata(devlist[3]);
559 pdata->probe_err = -ENOENT - 3;
560 device_remove(parent, DM_REMOVE_NORMAL);
561 ut_assertok(check_devices(uts, devlist, 0xf << 0));
562
563 return 0;
564}
Simon Glasse180c2b2020-07-28 19:41:12 -0600565DM_TEST(dm_test_first_next_ok_device, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Mario Sixe8d52912018-03-12 14:53:33 +0100566
567static const struct udevice_id fdt_dummy_ids[] = {
568 { .compatible = "denx,u-boot-fdt-dummy", },
569 { }
570};
571
572UCLASS_DRIVER(fdt_dummy) = {
Eugeniu Rosca507cef32018-05-19 14:13:55 +0200573 .name = "fdt-dummy",
Mario Sixe8d52912018-03-12 14:53:33 +0100574 .id = UCLASS_TEST_DUMMY,
575 .flags = DM_UC_FLAG_SEQ_ALIAS,
576};
577
578U_BOOT_DRIVER(fdt_dummy_drv) = {
579 .name = "fdt_dummy_drv",
580 .of_match = fdt_dummy_ids,
581 .id = UCLASS_TEST_DUMMY,
582};
583
584static int dm_test_fdt_translation(struct unit_test_state *uts)
585{
586 struct udevice *dev;
Fabien Dessenne641067f2019-05-31 15:11:30 +0200587 fdt32_t dma_addr[2];
Mario Sixe8d52912018-03-12 14:53:33 +0100588
589 /* Some simple translations */
590 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
591 ut_asserteq_str("dev@0,0", dev->name);
592 ut_asserteq(0x8000, dev_read_addr(dev));
593
594 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 1, true, &dev));
595 ut_asserteq_str("dev@1,100", dev->name);
596 ut_asserteq(0x9000, dev_read_addr(dev));
597
598 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 2, true, &dev));
599 ut_asserteq_str("dev@2,200", dev->name);
600 ut_asserteq(0xA000, dev_read_addr(dev));
601
602 /* No translation for busses with #size-cells == 0 */
603 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 3, true, &dev));
604 ut_asserteq_str("dev@42", dev->name);
605 ut_asserteq(0x42, dev_read_addr(dev));
606
Fabien Dessenne641067f2019-05-31 15:11:30 +0200607 /* dma address translation */
608 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
609 dma_addr[0] = cpu_to_be32(0);
610 dma_addr[1] = cpu_to_be32(0);
611 ut_asserteq(0x10000000, dev_translate_dma_address(dev, dma_addr));
612
613 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 1, true, &dev));
614 dma_addr[0] = cpu_to_be32(1);
615 dma_addr[1] = cpu_to_be32(0x100);
616 ut_asserteq(0x20000000, dev_translate_dma_address(dev, dma_addr));
617
Mario Sixe8d52912018-03-12 14:53:33 +0100618 return 0;
619}
Simon Glasse180c2b2020-07-28 19:41:12 -0600620DM_TEST(dm_test_fdt_translation, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Álvaro Fernández Rojas30a90f52018-04-29 21:56:54 +0200621
Álvaro Fernández Rojas30a90f52018-04-29 21:56:54 +0200622static int dm_test_fdt_remap_addr_flat(struct unit_test_state *uts)
623{
624 struct udevice *dev;
625 fdt_addr_t addr;
626 void *paddr;
627
628 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
629
630 addr = devfdt_get_addr(dev);
631 ut_asserteq(0x8000, addr);
632
633 paddr = map_physmem(addr, 0, MAP_NOCACHE);
634 ut_assertnonnull(paddr);
635 ut_asserteq_ptr(paddr, devfdt_remap_addr(dev));
636
637 return 0;
638}
639DM_TEST(dm_test_fdt_remap_addr_flat,
Simon Glasse180c2b2020-07-28 19:41:12 -0600640 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT | UT_TESTF_FLAT_TREE);
Álvaro Fernández Rojas30a90f52018-04-29 21:56:54 +0200641
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100642static int dm_test_fdt_remap_addr_index_flat(struct unit_test_state *uts)
643{
644 struct udevice *dev;
645 fdt_addr_t addr;
Sekhar Norif5b90472019-08-01 19:12:56 +0530646 fdt_size_t size;
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100647 void *paddr;
648
649 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
650
Sekhar Norif5b90472019-08-01 19:12:56 +0530651 addr = devfdt_get_addr_size_index(dev, 0, &size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100652 ut_asserteq(0x8000, addr);
Sekhar Norif5b90472019-08-01 19:12:56 +0530653 ut_asserteq(0x1000, size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100654
655 paddr = map_physmem(addr, 0, MAP_NOCACHE);
656 ut_assertnonnull(paddr);
657 ut_asserteq_ptr(paddr, devfdt_remap_addr_index(dev, 0));
658
659 return 0;
660}
661DM_TEST(dm_test_fdt_remap_addr_index_flat,
Simon Glasse180c2b2020-07-28 19:41:12 -0600662 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT | UT_TESTF_FLAT_TREE);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100663
664static int dm_test_fdt_remap_addr_name_flat(struct unit_test_state *uts)
665{
666 struct udevice *dev;
667 fdt_addr_t addr;
Sekhar Norif5b90472019-08-01 19:12:56 +0530668 fdt_size_t size;
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100669 void *paddr;
670
671 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
672
Sekhar Norif5b90472019-08-01 19:12:56 +0530673 addr = devfdt_get_addr_size_name(dev, "sandbox-dummy-0", &size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100674 ut_asserteq(0x8000, addr);
Sekhar Norif5b90472019-08-01 19:12:56 +0530675 ut_asserteq(0x1000, size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100676
677 paddr = map_physmem(addr, 0, MAP_NOCACHE);
678 ut_assertnonnull(paddr);
679 ut_asserteq_ptr(paddr, devfdt_remap_addr_name(dev, "sandbox-dummy-0"));
680
681 return 0;
682}
683DM_TEST(dm_test_fdt_remap_addr_name_flat,
Simon Glasse180c2b2020-07-28 19:41:12 -0600684 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT | UT_TESTF_FLAT_TREE);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100685
Álvaro Fernández Rojas30a90f52018-04-29 21:56:54 +0200686static int dm_test_fdt_remap_addr_live(struct unit_test_state *uts)
687{
688 struct udevice *dev;
689 fdt_addr_t addr;
690 void *paddr;
691
692 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
693
694 addr = dev_read_addr(dev);
695 ut_asserteq(0x8000, addr);
696
697 paddr = map_physmem(addr, 0, MAP_NOCACHE);
698 ut_assertnonnull(paddr);
699 ut_asserteq_ptr(paddr, dev_remap_addr(dev));
700
701 return 0;
702}
703DM_TEST(dm_test_fdt_remap_addr_live,
Simon Glasse180c2b2020-07-28 19:41:12 -0600704 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Mario Six2ea4d0d2018-06-26 08:46:49 +0200705
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100706static int dm_test_fdt_remap_addr_index_live(struct unit_test_state *uts)
707{
708 struct udevice *dev;
709 fdt_addr_t addr;
Sekhar Norif5b90472019-08-01 19:12:56 +0530710 fdt_size_t size;
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100711 void *paddr;
712
713 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
714
Sekhar Norif5b90472019-08-01 19:12:56 +0530715 addr = dev_read_addr_size_index(dev, 0, &size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100716 ut_asserteq(0x8000, addr);
Sekhar Norif5b90472019-08-01 19:12:56 +0530717 ut_asserteq(0x1000, size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100718
719 paddr = map_physmem(addr, 0, MAP_NOCACHE);
720 ut_assertnonnull(paddr);
721 ut_asserteq_ptr(paddr, dev_remap_addr_index(dev, 0));
722
723 return 0;
724}
725DM_TEST(dm_test_fdt_remap_addr_index_live,
Simon Glasse180c2b2020-07-28 19:41:12 -0600726 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100727
728static int dm_test_fdt_remap_addr_name_live(struct unit_test_state *uts)
729{
730 struct udevice *dev;
731 fdt_addr_t addr;
Sekhar Norif5b90472019-08-01 19:12:56 +0530732 fdt_size_t size;
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100733 void *paddr;
734
735 ut_assertok(uclass_find_device_by_seq(UCLASS_TEST_DUMMY, 0, true, &dev));
736
Sekhar Norif5b90472019-08-01 19:12:56 +0530737 addr = dev_read_addr_size_name(dev, "sandbox-dummy-0", &size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100738 ut_asserteq(0x8000, addr);
Sekhar Norif5b90472019-08-01 19:12:56 +0530739 ut_asserteq(0x1000, size);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100740
741 paddr = map_physmem(addr, 0, MAP_NOCACHE);
742 ut_assertnonnull(paddr);
743 ut_asserteq_ptr(paddr, dev_remap_addr_name(dev, "sandbox-dummy-0"));
744
745 return 0;
746}
747DM_TEST(dm_test_fdt_remap_addr_name_live,
Simon Glasse180c2b2020-07-28 19:41:12 -0600748 UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Álvaro Fernández Rojas79598822018-12-03 19:37:09 +0100749
Mario Six2ea4d0d2018-06-26 08:46:49 +0200750static int dm_test_fdt_livetree_writing(struct unit_test_state *uts)
751{
752 struct udevice *dev;
753 ofnode node;
754
755 if (!of_live_active()) {
756 printf("Live tree not active; ignore test\n");
757 return 0;
758 }
759
760 /* Test enabling devices */
761
762 node = ofnode_path("/usb@2");
763
764 ut_assert(!of_device_is_available(ofnode_to_np(node)));
765 ofnode_set_enabled(node, true);
766 ut_assert(of_device_is_available(ofnode_to_np(node)));
767
768 device_bind_driver_to_node(dm_root(), "usb_sandbox", "usb@2", node,
769 &dev);
770 ut_assertok(uclass_find_device_by_seq(UCLASS_USB, 2, true, &dev));
771
772 /* Test string property setting */
773
774 ut_assert(device_is_compatible(dev, "sandbox,usb"));
775 ofnode_write_string(node, "compatible", "gdsys,super-usb");
776 ut_assert(device_is_compatible(dev, "gdsys,super-usb"));
777 ofnode_write_string(node, "compatible", "sandbox,usb");
778 ut_assert(device_is_compatible(dev, "sandbox,usb"));
779
780 /* Test setting generic properties */
781
782 /* Non-existent in DTB */
783 ut_asserteq(FDT_ADDR_T_NONE, dev_read_addr(dev));
784 /* reg = 0x42, size = 0x100 */
785 ut_assertok(ofnode_write_prop(node, "reg", 8,
786 "\x00\x00\x00\x42\x00\x00\x01\x00"));
787 ut_asserteq(0x42, dev_read_addr(dev));
788
789 /* Test disabling devices */
790
791 device_remove(dev, DM_REMOVE_NORMAL);
792 device_unbind(dev);
793
794 ut_assert(of_device_is_available(ofnode_to_np(node)));
795 ofnode_set_enabled(node, false);
796 ut_assert(!of_device_is_available(ofnode_to_np(node)));
797
798 return 0;
799}
Simon Glasse180c2b2020-07-28 19:41:12 -0600800DM_TEST(dm_test_fdt_livetree_writing, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Mario Six172942a2018-06-26 08:46:51 +0200801
802static int dm_test_fdt_disable_enable_by_path(struct unit_test_state *uts)
803{
804 ofnode node;
805
806 if (!of_live_active()) {
807 printf("Live tree not active; ignore test\n");
808 return 0;
809 }
810
811 node = ofnode_path("/usb@2");
812
813 /* Test enabling devices */
814
815 ut_assert(!of_device_is_available(ofnode_to_np(node)));
816 dev_enable_by_path("/usb@2");
817 ut_assert(of_device_is_available(ofnode_to_np(node)));
818
819 /* Test disabling devices */
820
821 ut_assert(of_device_is_available(ofnode_to_np(node)));
822 dev_disable_by_path("/usb@2");
823 ut_assert(!of_device_is_available(ofnode_to_np(node)));
824
825 return 0;
826}
Simon Glasse180c2b2020-07-28 19:41:12 -0600827DM_TEST(dm_test_fdt_disable_enable_by_path, UT_TESTF_SCAN_PDATA |
828 UT_TESTF_SCAN_FDT);
Simon Glassd0b4f682018-11-18 08:14:30 -0700829
830/* Test a few uclass phandle functions */
831static int dm_test_fdt_phandle(struct unit_test_state *uts)
832{
833 struct udevice *back, *dev, *dev2;
834
835 ut_assertok(uclass_find_first_device(UCLASS_PANEL_BACKLIGHT, &back));
Heinrich Schuchardt331caea2020-07-17 00:20:14 +0200836 ut_assertnonnull(back);
Simon Glassd0b4f682018-11-18 08:14:30 -0700837 ut_asserteq(-ENOENT, uclass_find_device_by_phandle(UCLASS_REGULATOR,
838 back, "missing", &dev));
839 ut_assertok(uclass_find_device_by_phandle(UCLASS_REGULATOR, back,
840 "power-supply", &dev));
Heinrich Schuchardt331caea2020-07-17 00:20:14 +0200841 ut_assertnonnull(dev);
Simon Glassd0b4f682018-11-18 08:14:30 -0700842 ut_asserteq(0, device_active(dev));
843 ut_asserteq_str("ldo1", dev->name);
844 ut_assertok(uclass_get_device_by_phandle(UCLASS_REGULATOR, back,
845 "power-supply", &dev2));
846 ut_asserteq_ptr(dev, dev2);
847
848 return 0;
849}
Simon Glasse180c2b2020-07-28 19:41:12 -0600850DM_TEST(dm_test_fdt_phandle, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glass3abe1112018-11-18 08:14:31 -0700851
852/* Test device_find_first_child_by_uclass() */
853static int dm_test_first_child(struct unit_test_state *uts)
854{
855 struct udevice *i2c, *dev, *dev2;
856
857 ut_assertok(uclass_first_device_err(UCLASS_I2C, &i2c));
858 ut_assertok(device_find_first_child_by_uclass(i2c, UCLASS_RTC, &dev));
859 ut_asserteq_str("rtc@43", dev->name);
860 ut_assertok(device_find_child_by_name(i2c, "rtc@43", &dev2));
861 ut_asserteq_ptr(dev, dev2);
862 ut_assertok(device_find_child_by_name(i2c, "rtc@61", &dev2));
863 ut_asserteq_str("rtc@61", dev2->name);
864
865 ut_assertok(device_find_first_child_by_uclass(i2c, UCLASS_I2C_EEPROM,
866 &dev));
867 ut_asserteq_str("eeprom@2c", dev->name);
868 ut_assertok(device_find_child_by_name(i2c, "eeprom@2c", &dev2));
869 ut_asserteq_ptr(dev, dev2);
870
871 ut_asserteq(-ENODEV, device_find_first_child_by_uclass(i2c,
872 UCLASS_VIDEO, &dev));
873 ut_asserteq(-ENODEV, device_find_child_by_name(i2c, "missing", &dev));
874
875 return 0;
876}
Simon Glasse180c2b2020-07-28 19:41:12 -0600877DM_TEST(dm_test_first_child, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glassa1b17e42018-12-10 10:37:37 -0700878
879/* Test integer functions in dm_read_...() */
880static int dm_test_read_int(struct unit_test_state *uts)
881{
882 struct udevice *dev;
883 u32 val32;
884 s32 sval;
885 uint val;
Dario Binacchi70573c62020-03-29 18:04:40 +0200886 u64 val64;
Simon Glassa1b17e42018-12-10 10:37:37 -0700887
888 ut_assertok(uclass_first_device_err(UCLASS_TEST_FDT, &dev));
889 ut_asserteq_str("a-test", dev->name);
890 ut_assertok(dev_read_u32(dev, "int-value", &val32));
891 ut_asserteq(1234, val32);
892
893 ut_asserteq(-EINVAL, dev_read_u32(dev, "missing", &val32));
894 ut_asserteq(6, dev_read_u32_default(dev, "missing", 6));
895
896 ut_asserteq(1234, dev_read_u32_default(dev, "int-value", 6));
897 ut_asserteq(1234, val32);
898
899 ut_asserteq(-EINVAL, dev_read_s32(dev, "missing", &sval));
900 ut_asserteq(6, dev_read_s32_default(dev, "missing", 6));
901
902 ut_asserteq(-1234, dev_read_s32_default(dev, "uint-value", 6));
903 ut_assertok(dev_read_s32(dev, "uint-value", &sval));
904 ut_asserteq(-1234, sval);
905
906 val = 0;
907 ut_asserteq(-EINVAL, dev_read_u32u(dev, "missing", &val));
908 ut_assertok(dev_read_u32u(dev, "uint-value", &val));
909 ut_asserteq(-1234, val);
910
Dario Binacchi70573c62020-03-29 18:04:40 +0200911 ut_assertok(dev_read_u64(dev, "int64-value", &val64));
912 ut_asserteq_64(0x1111222233334444, val64);
913
914 ut_asserteq_64(-EINVAL, dev_read_u64(dev, "missing", &val64));
915 ut_asserteq_64(6, dev_read_u64_default(dev, "missing", 6));
916
917 ut_asserteq_64(0x1111222233334444,
918 dev_read_u64_default(dev, "int64-value", 6));
919
Simon Glassa1b17e42018-12-10 10:37:37 -0700920 return 0;
921}
Simon Glasse180c2b2020-07-28 19:41:12 -0600922DM_TEST(dm_test_read_int, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glass50162342020-02-06 09:54:50 -0700923
Dario Binacchi4bb70752020-03-29 18:04:41 +0200924static int dm_test_read_int_index(struct unit_test_state *uts)
925{
926 struct udevice *dev;
927 u32 val32;
928
929 ut_assertok(uclass_first_device_err(UCLASS_TEST_FDT, &dev));
930 ut_asserteq_str("a-test", dev->name);
931
932 ut_asserteq(-EINVAL, dev_read_u32_index(dev, "missing", 0, &val32));
933 ut_asserteq(19, dev_read_u32_index_default(dev, "missing", 0, 19));
934
935 ut_assertok(dev_read_u32_index(dev, "int-array", 0, &val32));
936 ut_asserteq(5678, val32);
937 ut_assertok(dev_read_u32_index(dev, "int-array", 1, &val32));
938 ut_asserteq(9123, val32);
939 ut_assertok(dev_read_u32_index(dev, "int-array", 2, &val32));
940 ut_asserteq(4567, val32);
941 ut_asserteq(-EOVERFLOW, dev_read_u32_index(dev, "int-array", 3,
942 &val32));
943
944 ut_asserteq(5678, dev_read_u32_index_default(dev, "int-array", 0, 2));
945 ut_asserteq(9123, dev_read_u32_index_default(dev, "int-array", 1, 2));
946 ut_asserteq(4567, dev_read_u32_index_default(dev, "int-array", 2, 2));
947 ut_asserteq(2, dev_read_u32_index_default(dev, "int-array", 3, 2));
948
949 return 0;
950}
Simon Glasse180c2b2020-07-28 19:41:12 -0600951DM_TEST(dm_test_read_int_index, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Dario Binacchi4bb70752020-03-29 18:04:41 +0200952
Simon Glass50162342020-02-06 09:54:50 -0700953/* Test iteration through devices by drvdata */
954static int dm_test_uclass_drvdata(struct unit_test_state *uts)
955{
956 struct udevice *dev;
957
958 ut_assertok(uclass_first_device_drvdata(UCLASS_TEST_FDT,
959 DM_TEST_TYPE_FIRST, &dev));
960 ut_asserteq_str("a-test", dev->name);
961
962 ut_assertok(uclass_first_device_drvdata(UCLASS_TEST_FDT,
963 DM_TEST_TYPE_SECOND, &dev));
964 ut_asserteq_str("d-test", dev->name);
965
966 ut_asserteq(-ENODEV, uclass_first_device_drvdata(UCLASS_TEST_FDT,
967 DM_TEST_TYPE_COUNT,
968 &dev));
969
970 return 0;
971}
Simon Glasse180c2b2020-07-28 19:41:12 -0600972DM_TEST(dm_test_uclass_drvdata, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Tom Rini9a8942b2020-02-11 10:58:41 -0500973
Simon Glassf262d4c2020-01-27 08:49:47 -0700974/* Test device_first_child_ofdata_err(), etc. */
975static int dm_test_child_ofdata(struct unit_test_state *uts)
976{
977 struct udevice *bus, *dev;
978 int count;
979
980 ut_assertok(uclass_first_device_err(UCLASS_TEST_BUS, &bus));
981 count = 0;
982 device_foreach_child_ofdata_to_platdata(dev, bus) {
983 ut_assert(dev->flags & DM_FLAG_PLATDATA_VALID);
984 ut_assert(!(dev->flags & DM_FLAG_ACTIVATED));
985 count++;
986 }
987 ut_asserteq(3, count);
988
989 return 0;
990}
Simon Glasse180c2b2020-07-28 19:41:12 -0600991DM_TEST(dm_test_child_ofdata, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glass903e83e2020-01-27 08:49:48 -0700992
993/* Test device_first_child_err(), etc. */
994static int dm_test_first_child_probe(struct unit_test_state *uts)
995{
996 struct udevice *bus, *dev;
997 int count;
998
999 ut_assertok(uclass_first_device_err(UCLASS_TEST_BUS, &bus));
1000 count = 0;
1001 device_foreach_child_probe(dev, bus) {
1002 ut_assert(dev->flags & DM_FLAG_PLATDATA_VALID);
1003 ut_assert(dev->flags & DM_FLAG_ACTIVATED);
1004 count++;
1005 }
1006 ut_asserteq(3, count);
1007
1008 return 0;
1009}
Simon Glasse180c2b2020-07-28 19:41:12 -06001010DM_TEST(dm_test_first_child_probe, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);
Simon Glassb0dcc872020-04-05 15:38:19 -06001011
1012/* Test that ofdata is read for parents before children */
1013static int dm_test_ofdata_order(struct unit_test_state *uts)
1014{
1015 struct udevice *bus, *dev;
1016
1017 ut_assertok(uclass_find_first_device(UCLASS_I2C, &bus));
1018 ut_assertnonnull(bus);
1019 ut_assert(!(bus->flags & DM_FLAG_PLATDATA_VALID));
1020
1021 ut_assertok(device_find_first_child(bus, &dev));
1022 ut_assertnonnull(dev);
1023 ut_assert(!(dev->flags & DM_FLAG_PLATDATA_VALID));
1024
1025 /* read the child's ofdata which should cause the parent's to be read */
1026 ut_assertok(device_ofdata_to_platdata(dev));
1027 ut_assert(dev->flags & DM_FLAG_PLATDATA_VALID);
1028 ut_assert(bus->flags & DM_FLAG_PLATDATA_VALID);
1029
1030 ut_assert(!(dev->flags & DM_FLAG_ACTIVATED));
1031 ut_assert(!(bus->flags & DM_FLAG_ACTIVATED));
1032
1033 return 0;
1034}
Simon Glasse180c2b2020-07-28 19:41:12 -06001035DM_TEST(dm_test_ofdata_order, UT_TESTF_SCAN_PDATA | UT_TESTF_SCAN_FDT);