From 8167c1f071426706c233e93ecfd13aba7d5c06c8 Mon Sep 17 00:00:00 2001 From: Rosen Penev Date: Sun, 27 Sep 2026 13:35:01 -0700 Subject: tty: serial: mpc52xx_uart: move static declarations up. Avoid a compilation error so that they're not used before being declared. Fixes: 4d105880666a ("tty: serial: mpc52xx_uart: add bounds check for psc_num array index") Reported-by: kernel test robot Closes: https://lore.kernel.org/oe-kbuild-all/202609260356.tJWbd1WU-lkp@intel.com/ Signed-off-by: Rosen Penev Link: https://patch.msgid.link/20260927203501.14105-1-rosenp@gmail.com Signed-off-by: Greg Kroah-Hartman --- drivers/base/test/.kunitconfig | 2 + drivers/base/test/Kconfig | 25 ++ drivers/base/test/Makefile | 10 + drivers/base/test/platform-device-test.c | 443 +++++++++++++++++++ drivers/base/test/property-entry-test.c | 652 ++++++++++++++++++++++++++++ drivers/base/test/root-device-test.c | 112 +++++ drivers/base/test/swnode-devlink-test.c | 337 ++++++++++++++ drivers/base/test/test_async_driver_probe.c | 299 +++++++++++++ 8 files changed, 1880 insertions(+) create mode 100644 drivers/base/test/.kunitconfig create mode 100644 drivers/base/test/Kconfig create mode 100644 drivers/base/test/Makefile create mode 100644 drivers/base/test/platform-device-test.c create mode 100644 drivers/base/test/property-entry-test.c create mode 100644 drivers/base/test/root-device-test.c create mode 100644 drivers/base/test/swnode-devlink-test.c create mode 100644 drivers/base/test/test_async_driver_probe.c (limited to 'drivers/base/test') diff --git a/drivers/base/test/.kunitconfig b/drivers/base/test/.kunitconfig new file mode 100644 index 000000000..473923f09 --- /dev/null +++ b/drivers/base/test/.kunitconfig @@ -0,0 +1,2 @@ +CONFIG_KUNIT=y +CONFIG_DM_KUNIT_TEST=y diff --git a/drivers/base/test/Kconfig b/drivers/base/test/Kconfig new file mode 100644 index 000000000..1ecf07912 --- /dev/null +++ b/drivers/base/test/Kconfig @@ -0,0 +1,25 @@ +# SPDX-License-Identifier: GPL-2.0 +config TEST_ASYNC_DRIVER_PROBE + tristate "Build kernel module to test asynchronous driver probing" + depends on m + help + Enabling this option produces a kernel module that allows + testing asynchronous driver probing by the device core. + The module name will be test_async_driver_probe.ko + + If unsure say N. + +config DM_KUNIT_TEST + tristate "KUnit Tests for the device model" if !KUNIT_ALL_TESTS + depends on KUNIT + default KUNIT_ALL_TESTS + +config DRIVER_PE_KUNIT_TEST + tristate "KUnit Tests for property entry API" if !KUNIT_ALL_TESTS + depends on KUNIT + default KUNIT_ALL_TESTS + +config DRIVER_SWNODE_KUNIT_TEST + tristate "KUnit Tests for software node fw_devlink links" if !KUNIT_ALL_TESTS + depends on KUNIT + default KUNIT_ALL_TESTS diff --git a/drivers/base/test/Makefile b/drivers/base/test/Makefile new file mode 100644 index 000000000..9ced7bbd5 --- /dev/null +++ b/drivers/base/test/Makefile @@ -0,0 +1,10 @@ +# SPDX-License-Identifier: GPL-2.0 +obj-$(CONFIG_TEST_ASYNC_DRIVER_PROBE) += test_async_driver_probe.o + +obj-$(CONFIG_DM_KUNIT_TEST) += root-device-test.o +obj-$(CONFIG_DM_KUNIT_TEST) += platform-device-test.o + +obj-$(CONFIG_DRIVER_PE_KUNIT_TEST) += property-entry-test.o +CFLAGS_property-entry-test.o += $(DISABLE_STRUCTLEAK_PLUGIN) + +obj-$(CONFIG_DRIVER_SWNODE_KUNIT_TEST) += swnode-devlink-test.o diff --git a/drivers/base/test/platform-device-test.c b/drivers/base/test/platform-device-test.c new file mode 100644 index 000000000..9ce563f76 --- /dev/null +++ b/drivers/base/test/platform-device-test.c @@ -0,0 +1,443 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include +#include +#include + +#include +#include +#include +#include +#include +#include + +#define DEVICE_NAME "test" + +struct test_priv { + bool probe_done; + bool release_done; + wait_queue_head_t probe_wq; + wait_queue_head_t release_wq; + struct device *dev; +}; + +static int platform_device_devm_init(struct kunit *test) +{ + struct test_priv *priv; + + priv = kunit_kzalloc(test, sizeof(*priv), GFP_KERNEL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, priv); + init_waitqueue_head(&priv->probe_wq); + init_waitqueue_head(&priv->release_wq); + + test->priv = priv; + + return 0; +} + +static void devm_device_action(void *ptr) +{ + struct test_priv *priv = ptr; + + priv->release_done = true; + wake_up_interruptible(&priv->release_wq); +} + +static void devm_put_device_action(void *ptr) +{ + struct test_priv *priv = ptr; + + put_device(priv->dev); + priv->release_done = true; + wake_up_interruptible(&priv->release_wq); +} + +#define RELEASE_TIMEOUT_MS 100 + +/* + * Tests that a platform bus, non-probed device will run its + * device-managed actions when unregistered. + */ +static void platform_device_devm_register_unregister_test(struct kunit *test) +{ + struct platform_device *pdev; + struct test_priv *priv = test->priv; + int ret; + + pdev = platform_device_alloc(DEVICE_NAME, PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + ret = platform_device_add(pdev); + KUNIT_ASSERT_EQ(test, ret, 0); + + priv->dev = &pdev->dev; + + ret = devm_add_action_or_reset(priv->dev, devm_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + platform_device_unregister(pdev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); +} + +/* + * Tests that a platform bus, non-probed device will run its + * device-managed actions when unregistered, even if someone still holds + * a reference to it. + */ +static void platform_device_devm_register_get_unregister_with_devm_test(struct kunit *test) +{ + struct platform_device *pdev; + struct test_priv *priv = test->priv; + int ret; + + pdev = platform_device_alloc(DEVICE_NAME, PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + ret = platform_device_add(pdev); + KUNIT_ASSERT_EQ(test, ret, 0); + + priv->dev = &pdev->dev; + + get_device(priv->dev); + + ret = devm_add_action_or_reset(priv->dev, devm_put_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + platform_device_unregister(pdev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); +} + +static int fake_probe(struct platform_device *pdev) +{ + struct test_priv *priv = platform_get_drvdata(pdev); + + priv->probe_done = true; + wake_up_interruptible(&priv->probe_wq); + + return 0; +} + +static struct platform_driver fake_driver = { + .probe = fake_probe, + .driver = { + .name = DEVICE_NAME, + }, +}; + +/* + * Tests that a platform bus, probed device will run its device-managed + * actions when unregistered. + */ +static void probed_platform_device_devm_register_unregister_test(struct kunit *test) +{ + struct platform_device *pdev; + struct test_priv *priv = test->priv; + int ret; + + ret = platform_driver_register(&fake_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + pdev = platform_device_alloc(DEVICE_NAME, PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + priv->dev = &pdev->dev; + platform_set_drvdata(pdev, priv); + + ret = platform_device_add(pdev); + KUNIT_ASSERT_EQ(test, ret, 0); + + ret = wait_event_interruptible_timeout(priv->probe_wq, priv->probe_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_ASSERT_GT(test, ret, 0); + + ret = devm_add_action_or_reset(priv->dev, devm_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + platform_device_unregister(pdev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); + + platform_driver_unregister(&fake_driver); +} + +/* + * Tests that a platform bus, probed device will run its device-managed + * actions when unregistered, even if someone still holds a reference to + * it. + */ +static void probed_platform_device_devm_register_get_unregister_with_devm_test(struct kunit *test) +{ + struct platform_device *pdev; + struct test_priv *priv = test->priv; + int ret; + + ret = platform_driver_register(&fake_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + pdev = platform_device_alloc(DEVICE_NAME, PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + priv->dev = &pdev->dev; + platform_set_drvdata(pdev, priv); + + ret = platform_device_add(pdev); + KUNIT_ASSERT_EQ(test, ret, 0); + + ret = wait_event_interruptible_timeout(priv->probe_wq, priv->probe_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_ASSERT_GT(test, ret, 0); + + get_device(priv->dev); + + ret = devm_add_action_or_reset(priv->dev, devm_put_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + platform_device_unregister(pdev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); + + platform_driver_unregister(&fake_driver); +} + +static struct kunit_case platform_device_devm_tests[] = { + KUNIT_CASE(platform_device_devm_register_unregister_test), + KUNIT_CASE(platform_device_devm_register_get_unregister_with_devm_test), + KUNIT_CASE(probed_platform_device_devm_register_unregister_test), + KUNIT_CASE(probed_platform_device_devm_register_get_unregister_with_devm_test), + {} +}; + +static struct kunit_suite platform_device_devm_test_suite = { + .name = "platform-device-devm", + .init = platform_device_devm_init, + .test_cases = platform_device_devm_tests, +}; + +static void platform_device_find_by_null_test(struct kunit *test) +{ + struct platform_device *pdev; + int ret; + + pdev = kunit_platform_device_alloc(test, DEVICE_NAME, PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + ret = kunit_platform_device_add(test, pdev); + KUNIT_ASSERT_EQ(test, ret, 0); + + KUNIT_EXPECT_PTR_EQ(test, of_find_device_by_node(NULL), NULL); + + KUNIT_EXPECT_PTR_EQ(test, bus_find_device_by_of_node(&platform_bus_type, NULL), NULL); + KUNIT_EXPECT_PTR_EQ(test, bus_find_device_by_fwnode(&platform_bus_type, NULL), NULL); + KUNIT_EXPECT_PTR_EQ(test, bus_find_device_by_acpi_dev(&platform_bus_type, NULL), NULL); + + KUNIT_EXPECT_FALSE(test, device_match_of_node(&pdev->dev, NULL)); + KUNIT_EXPECT_FALSE(test, device_match_fwnode(&pdev->dev, NULL)); + KUNIT_EXPECT_FALSE(test, device_match_acpi_dev(&pdev->dev, NULL)); + KUNIT_EXPECT_FALSE(test, device_match_acpi_handle(&pdev->dev, NULL)); +} + +static struct kunit_case platform_device_match_tests[] = { + KUNIT_CASE(platform_device_find_by_null_test), + {} +}; + +static struct kunit_suite platform_device_match_test_suite = { + .name = "platform-device-match", + .test_cases = platform_device_match_tests, +}; + +static int platform_device_swnode_test_probe(struct platform_device *pdev) +{ + return 0; +} + +static struct platform_driver platform_swnode_test_driver = { + .probe = platform_device_swnode_test_probe, + .driver = { + .name = DEVICE_NAME, + }, +}; + +static const struct software_node platform_device_test_swnode = { }; + +/* + * Check that reusing a software node works correctly. If the call to + * platform_device_register_full() fails after adding the secondary firmware + * node, the software node must be unregistered in the device's release() + * callback or the subsequent call to platform_device_register_full() will fail + * with -EBUSY due to the software node already having been registered. + */ +static void platform_device_swnode_add_twice(struct kunit *test) +{ + struct platform_device_info pdevinfo; + struct platform_device *pdev; + struct fwnode_handle *fwnode; + bool bound = false; + int ret; + + fwnode = kunit_kzalloc(test, sizeof(*fwnode), GFP_KERNEL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + ret = kunit_platform_driver_register(test, &platform_swnode_test_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + fwnode_init(fwnode, NULL); + pdevinfo = (struct platform_device_info){ + .name = DEVICE_NAME, + .id = PLATFORM_DEVID_NONE, + .fwnode = fwnode, + .swnode = &platform_device_test_swnode, + }; + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + wait_for_device_probe(); + scoped_guard(device, &pdev->dev) + bound = device_is_bound(&pdev->dev); + + KUNIT_ASSERT_TRUE(test, bound); + + platform_device_unregister(pdev); + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + wait_for_device_probe(); + scoped_guard(device, &pdev->dev) + bound = device_is_bound(&pdev->dev); + + KUNIT_ASSERT_TRUE(test, bound); + + platform_device_unregister(pdev); +} + +/* + * Check that passing a software node as the primary firmware node of the + * platform device does not result in it being unregistered by the call to + * device_remove_software_node() in its release path. + */ +static void platform_device_swnode_as_primary(struct kunit *test) +{ + struct platform_device_info pdevinfo; + struct platform_device *pdev; + struct fwnode_handle *fwnode; + bool bound = false; + int ret; + + ret = kunit_platform_driver_register(test, &platform_swnode_test_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + fwnode = kunit_software_node_register(test, &platform_device_test_swnode); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + pdevinfo = (struct platform_device_info){ + .name = DEVICE_NAME, + .id = PLATFORM_DEVID_NONE, + .fwnode = fwnode, + }; + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, pdev); + + wait_for_device_probe(); + scoped_guard(device, &pdev->dev) + bound = device_is_bound(&pdev->dev); + + KUNIT_ASSERT_TRUE(test, bound); + + platform_device_unregister(pdev); + + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, software_node_fwnode(&platform_device_test_swnode)); +} + +/* + * Check that passing two software nodes to platform_device_register_full() + * fails. + */ +static void platform_device_two_swnodes(struct kunit *test) +{ + static const struct property_entry properties[] = { + PROPERTY_ENTRY_U32("foo", 42), + { } + }; + + struct platform_device_info pdevinfo; + struct platform_device *pdev; + struct fwnode_handle *fwnode; + int ret; + + ret = kunit_platform_driver_register(test, &platform_swnode_test_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + fwnode = kunit_software_node_register(test, &platform_device_test_swnode); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + pdevinfo = (struct platform_device_info){ + .name = DEVICE_NAME, + .id = PLATFORM_DEVID_NONE, + .fwnode = fwnode, + .swnode = &platform_device_test_swnode, + }; + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_TRUE(test, IS_ERR(pdev)); + KUNIT_ASSERT_EQ_MSG(test, PTR_ERR(pdev), -EINVAL, + "Expected errno == -EINVAL, got: %pe", pdev); + + pdevinfo = (struct platform_device_info){ + .name = DEVICE_NAME, + .id = PLATFORM_DEVID_NONE, + .swnode = &platform_device_test_swnode, + .properties = properties, + }; + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_TRUE(test, IS_ERR(pdev)); + KUNIT_ASSERT_EQ_MSG(test, PTR_ERR(pdev), -EINVAL, + "Expected errno == -EINVAL, got: %pe", pdev); + + pdevinfo = (struct platform_device_info){ + .name = DEVICE_NAME, + .id = PLATFORM_DEVID_NONE, + .fwnode = fwnode, + .properties = properties, + }; + + pdev = platform_device_register_full(&pdevinfo); + KUNIT_ASSERT_TRUE(test, IS_ERR(pdev)); + KUNIT_ASSERT_EQ_MSG(test, PTR_ERR(pdev), -EINVAL, + "Expected errno == -EINVAL, got: %pe", pdev); +} + +static struct kunit_case platform_device_swnode_tests[] = { + KUNIT_CASE(platform_device_swnode_add_twice), + KUNIT_CASE(platform_device_swnode_as_primary), + KUNIT_CASE(platform_device_two_swnodes), + {} +}; + +static struct kunit_suite platform_device_swnode_test_suite = { + .name = "platform-device-swnode", + .test_cases = platform_device_swnode_tests, +}; + +kunit_test_suites( + &platform_device_devm_test_suite, + &platform_device_match_test_suite, + &platform_device_swnode_test_suite, +); + +MODULE_DESCRIPTION("Test module for platform devices"); +MODULE_AUTHOR("Maxime Ripard "); +MODULE_LICENSE("GPL"); diff --git a/drivers/base/test/property-entry-test.c b/drivers/base/test/property-entry-test.c new file mode 100644 index 000000000..89cdfc2f8 --- /dev/null +++ b/drivers/base/test/property-entry-test.c @@ -0,0 +1,652 @@ +// SPDX-License-Identifier: GPL-2.0 +// Unit tests for property entries API +// +// Copyright 2019 Google LLC. + +#include + +#include +#include +#include + +static void pe_test_uints(struct kunit *test) +{ + static const struct property_entry entries[] = { + PROPERTY_ENTRY_U8("prop-u8", 8), + PROPERTY_ENTRY_U16("prop-u16", 16), + PROPERTY_ENTRY_U32("prop-u32", 32), + PROPERTY_ENTRY_U64("prop-u64", 64), + { } + }; + + struct fwnode_handle *node; + u8 val_u8, array_u8[2]; + u16 val_u16, array_u16[2]; + u32 val_u32, array_u32[2]; + u64 val_u64, array_u64[2]; + int error; + + node = fwnode_create_software_node(entries, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + error = fwnode_property_count_u8(node, "prop-u8"); + KUNIT_EXPECT_EQ(test, error, 1); + + error = fwnode_property_read_u8(node, "prop-u8", &val_u8); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u8, 8); + + error = fwnode_property_read_u8_array(node, "prop-u8", array_u8, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u8[0], 8); + + error = fwnode_property_read_u8_array(node, "prop-u8", array_u8, 2); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u8(node, "no-prop-u8", &val_u8); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u8_array(node, "no-prop-u8", array_u8, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16(node, "prop-u16", &val_u16); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u16, 16); + + error = fwnode_property_count_u16(node, "prop-u16"); + KUNIT_EXPECT_EQ(test, error, 1); + + error = fwnode_property_read_u16_array(node, "prop-u16", array_u16, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u16[0], 16); + + error = fwnode_property_read_u16_array(node, "prop-u16", array_u16, 2); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16(node, "no-prop-u16", &val_u16); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16_array(node, "no-prop-u16", array_u16, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32(node, "prop-u32", &val_u32); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u32, 32); + + error = fwnode_property_count_u32(node, "prop-u32"); + KUNIT_EXPECT_EQ(test, error, 1); + + error = fwnode_property_read_u32_array(node, "prop-u32", array_u32, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u32[0], 32); + + error = fwnode_property_read_u32_array(node, "prop-u32", array_u32, 2); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32(node, "no-prop-u32", &val_u32); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32_array(node, "no-prop-u32", array_u32, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64(node, "prop-u64", &val_u64); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u64, 64); + + error = fwnode_property_count_u64(node, "prop-u64"); + KUNIT_EXPECT_EQ(test, error, 1); + + error = fwnode_property_read_u64_array(node, "prop-u64", array_u64, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u64[0], 64); + + error = fwnode_property_read_u64_array(node, "prop-u64", array_u64, 2); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64(node, "no-prop-u64", &val_u64); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64_array(node, "no-prop-u64", array_u64, 1); + KUNIT_EXPECT_NE(test, error, 0); + + /* Count 64-bit values as 16-bit */ + error = fwnode_property_count_u16(node, "prop-u64"); + KUNIT_EXPECT_EQ(test, error, 4); + + fwnode_remove_software_node(node); +} + +static void pe_test_uint_arrays(struct kunit *test) +{ + static const u8 a_u8[10] = { 8, 9 }; + static const u16 a_u16[10] = { 16, 17 }; + static const u32 a_u32[10] = { 32, 33 }; + static const u64 a_u64[10] = { 64, 65 }; + static const struct property_entry entries[] = { + PROPERTY_ENTRY_U8_ARRAY("prop-u8", a_u8), + PROPERTY_ENTRY_U16_ARRAY("prop-u16", a_u16), + PROPERTY_ENTRY_U32_ARRAY("prop-u32", a_u32), + PROPERTY_ENTRY_U64_ARRAY("prop-u64", a_u64), + { } + }; + + struct fwnode_handle *node; + u8 val_u8, array_u8[32]; + u16 val_u16, array_u16[32]; + u32 val_u32, array_u32[32]; + u64 val_u64, array_u64[32]; + int error; + + node = fwnode_create_software_node(entries, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + error = fwnode_property_read_u8(node, "prop-u8", &val_u8); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u8, 8); + + error = fwnode_property_count_u8(node, "prop-u8"); + KUNIT_EXPECT_EQ(test, error, 10); + + error = fwnode_property_read_u8_array(node, "prop-u8", array_u8, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u8[0], 8); + + error = fwnode_property_read_u8_array(node, "prop-u8", array_u8, 2); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u8[0], 8); + KUNIT_EXPECT_EQ(test, array_u8[1], 9); + + error = fwnode_property_read_u8_array(node, "prop-u8", array_u8, 17); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u8(node, "no-prop-u8", &val_u8); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u8_array(node, "no-prop-u8", array_u8, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16(node, "prop-u16", &val_u16); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u16, 16); + + error = fwnode_property_count_u16(node, "prop-u16"); + KUNIT_EXPECT_EQ(test, error, 10); + + error = fwnode_property_read_u16_array(node, "prop-u16", array_u16, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u16[0], 16); + + error = fwnode_property_read_u16_array(node, "prop-u16", array_u16, 2); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u16[0], 16); + KUNIT_EXPECT_EQ(test, array_u16[1], 17); + + error = fwnode_property_read_u16_array(node, "prop-u16", array_u16, 17); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16(node, "no-prop-u16", &val_u16); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u16_array(node, "no-prop-u16", array_u16, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32(node, "prop-u32", &val_u32); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u32, 32); + + error = fwnode_property_count_u32(node, "prop-u32"); + KUNIT_EXPECT_EQ(test, error, 10); + + error = fwnode_property_read_u32_array(node, "prop-u32", array_u32, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u32[0], 32); + + error = fwnode_property_read_u32_array(node, "prop-u32", array_u32, 2); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u32[0], 32); + KUNIT_EXPECT_EQ(test, array_u32[1], 33); + + error = fwnode_property_read_u32_array(node, "prop-u32", array_u32, 17); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32(node, "no-prop-u32", &val_u32); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u32_array(node, "no-prop-u32", array_u32, 1); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64(node, "prop-u64", &val_u64); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, val_u64, 64); + + error = fwnode_property_count_u64(node, "prop-u64"); + KUNIT_EXPECT_EQ(test, error, 10); + + error = fwnode_property_read_u64_array(node, "prop-u64", array_u64, 1); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u64[0], 64); + + error = fwnode_property_read_u64_array(node, "prop-u64", array_u64, 2); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_EQ(test, array_u64[0], 64); + KUNIT_EXPECT_EQ(test, array_u64[1], 65); + + error = fwnode_property_read_u64_array(node, "prop-u64", array_u64, 17); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64(node, "no-prop-u64", &val_u64); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_u64_array(node, "no-prop-u64", array_u64, 1); + KUNIT_EXPECT_NE(test, error, 0); + + /* Count 64-bit values as 16-bit */ + error = fwnode_property_count_u16(node, "prop-u64"); + KUNIT_EXPECT_EQ(test, error, 40); + + /* Other way around */ + error = fwnode_property_count_u64(node, "prop-u16"); + KUNIT_EXPECT_EQ(test, error, 2); + + fwnode_remove_software_node(node); +} + +static void pe_test_strings(struct kunit *test) +{ + static const char *strings[] = { + "string-a", + "string-b", + }; + + static const struct property_entry entries[] = { + PROPERTY_ENTRY_STRING("str", "single"), + PROPERTY_ENTRY_STRING("empty", ""), + PROPERTY_ENTRY_STRING_ARRAY("strs", strings), + { } + }; + + struct fwnode_handle *node; + const char *str; + const char *strs[10]; + int error; + + node = fwnode_create_software_node(entries, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + error = fwnode_property_read_string(node, "str", &str); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_STREQ(test, str, "single"); + + error = fwnode_property_string_array_count(node, "str"); + KUNIT_EXPECT_EQ(test, error, 1); + + error = fwnode_property_read_string_array(node, "str", strs, 1); + KUNIT_EXPECT_EQ(test, error, 1); + KUNIT_EXPECT_STREQ(test, strs[0], "single"); + + /* asking for more data returns what we have */ + error = fwnode_property_read_string_array(node, "str", strs, 2); + KUNIT_EXPECT_EQ(test, error, 1); + KUNIT_EXPECT_STREQ(test, strs[0], "single"); + + error = fwnode_property_read_string(node, "no-str", &str); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_read_string_array(node, "no-str", strs, 1); + KUNIT_EXPECT_LT(test, error, 0); + + error = fwnode_property_read_string(node, "empty", &str); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_STREQ(test, str, ""); + + error = fwnode_property_string_array_count(node, "strs"); + KUNIT_EXPECT_EQ(test, error, 2); + + error = fwnode_property_read_string_array(node, "strs", strs, 3); + KUNIT_EXPECT_EQ(test, error, 2); + KUNIT_EXPECT_STREQ(test, strs[0], "string-a"); + KUNIT_EXPECT_STREQ(test, strs[1], "string-b"); + + error = fwnode_property_read_string_array(node, "strs", strs, 1); + KUNIT_EXPECT_EQ(test, error, 1); + KUNIT_EXPECT_STREQ(test, strs[0], "string-a"); + + /* NULL argument -> returns size */ + error = fwnode_property_read_string_array(node, "strs", NULL, 0); + KUNIT_EXPECT_EQ(test, error, 2); + + /* accessing array as single value */ + error = fwnode_property_read_string(node, "strs", &str); + KUNIT_EXPECT_EQ(test, error, 0); + KUNIT_EXPECT_STREQ(test, str, "string-a"); + + fwnode_remove_software_node(node); +} + +static void pe_test_bool(struct kunit *test) +{ + static const struct property_entry entries[] = { + PROPERTY_ENTRY_BOOL("prop"), + { } + }; + + struct fwnode_handle *node; + + node = fwnode_create_software_node(entries, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + KUNIT_EXPECT_TRUE(test, fwnode_property_read_bool(node, "prop")); + KUNIT_EXPECT_FALSE(test, fwnode_property_read_bool(node, "not-prop")); + + fwnode_remove_software_node(node); +} + +/* Verifies that small U8 array is stored inline when property is copied */ +static void pe_test_move_inline_u8(struct kunit *test) +{ + static const u8 u8_array_small[8] = { 1, 2, 3, 4 }; + static const u8 u8_array_big[128] = { 5, 6, 7, 8 }; + static const struct property_entry entries[] = { + PROPERTY_ENTRY_U8_ARRAY("small", u8_array_small), + PROPERTY_ENTRY_U8_ARRAY("big", u8_array_big), + { } + }; + + struct property_entry *copy; + const u8 *data_ptr; + + copy = property_entries_dup(entries); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, copy); + + KUNIT_EXPECT_TRUE(test, copy[0].is_inline); + data_ptr = (u8 *)©[0].value; + KUNIT_EXPECT_EQ(test, data_ptr[0], 1); + KUNIT_EXPECT_EQ(test, data_ptr[1], 2); + + KUNIT_EXPECT_FALSE(test, copy[1].is_inline); + data_ptr = copy[1].pointer; + KUNIT_EXPECT_EQ(test, data_ptr[0], 5); + KUNIT_EXPECT_EQ(test, data_ptr[1], 6); + + property_entries_free(copy); +} + +/* Verifies that single string array is stored inline when property is copied */ +static void pe_test_move_inline_str(struct kunit *test) +{ + static char *str_array_small[] = { "a" }; + static char *str_array_big[] = { "b", "c", "d", "e" }; + static char *str_array_small_empty[] = { "" }; + static struct property_entry entries[] = { + PROPERTY_ENTRY_STRING_ARRAY("small", str_array_small), + PROPERTY_ENTRY_STRING_ARRAY("big", str_array_big), + PROPERTY_ENTRY_STRING_ARRAY("small-empty", str_array_small_empty), + { } + }; + + struct property_entry *copy; + const char * const *data_ptr; + + copy = property_entries_dup(entries); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, copy); + + KUNIT_EXPECT_TRUE(test, copy[0].is_inline); + KUNIT_EXPECT_STREQ(test, copy[0].value.str[0], "a"); + + KUNIT_EXPECT_FALSE(test, copy[1].is_inline); + data_ptr = copy[1].pointer; + KUNIT_EXPECT_STREQ(test, data_ptr[0], "b"); + KUNIT_EXPECT_STREQ(test, data_ptr[1], "c"); + + KUNIT_EXPECT_TRUE(test, copy[2].is_inline); + KUNIT_EXPECT_STREQ(test, copy[2].value.str[0], ""); + + property_entries_free(copy); +} + +/* Handling of reference properties */ +static void pe_test_reference(struct kunit *test) +{ + static const struct software_node node1 = { .name = "1" }; + static const struct software_node node2 = { .name = "2" }; + static const struct software_node *group[] = { &node1, &node2, NULL }; + + static const struct software_node_ref_args refs[] = { + SOFTWARE_NODE_REFERENCE(&node1), + SOFTWARE_NODE_REFERENCE(&node2, 3, 4), + }; + + const struct property_entry entries[] = { + PROPERTY_ENTRY_REF("ref-1", &node1), + PROPERTY_ENTRY_REF("ref-2", &node2, 1, 2), + PROPERTY_ENTRY_REF_ARRAY("ref-3", refs), + { } + }; + + struct fwnode_handle *node; + struct fwnode_reference_args ref; + int error; + + error = software_node_register_node_group(group); + KUNIT_ASSERT_EQ(test, error, 0); + + node = fwnode_create_software_node(entries, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + error = fwnode_property_get_reference_args(node, "ref-1", NULL, + 0, 0, &ref); + KUNIT_ASSERT_EQ(test, error, 0); + KUNIT_EXPECT_PTR_EQ(test, to_software_node(ref.fwnode), &node1); + KUNIT_EXPECT_EQ(test, ref.nargs, 0U); + + /* wrong index */ + error = fwnode_property_get_reference_args(node, "ref-1", NULL, + 0, 1, &ref); + KUNIT_EXPECT_NE(test, error, 0); + + error = fwnode_property_get_reference_args(node, "ref-2", NULL, + 1, 0, &ref); + KUNIT_ASSERT_EQ(test, error, 0); + KUNIT_EXPECT_PTR_EQ(test, to_software_node(ref.fwnode), &node2); + KUNIT_EXPECT_EQ(test, ref.nargs, 1U); + KUNIT_EXPECT_EQ(test, ref.args[0], 1LLU); + + /* asking for more args, padded with zero data */ + error = fwnode_property_get_reference_args(node, "ref-2", NULL, + 3, 0, &ref); + KUNIT_ASSERT_EQ(test, error, 0); + KUNIT_EXPECT_PTR_EQ(test, to_software_node(ref.fwnode), &node2); + KUNIT_EXPECT_EQ(test, ref.nargs, 3U); + KUNIT_EXPECT_EQ(test, ref.args[0], 1LLU); + KUNIT_EXPECT_EQ(test, ref.args[1], 2LLU); + KUNIT_EXPECT_EQ(test, ref.args[2], 0LLU); + + /* wrong index */ + error = fwnode_property_get_reference_args(node, "ref-2", NULL, + 2, 1, &ref); + KUNIT_EXPECT_NE(test, error, 0); + + /* array of references */ + error = fwnode_property_get_reference_args(node, "ref-3", NULL, + 0, 0, &ref); + KUNIT_ASSERT_EQ(test, error, 0); + KUNIT_EXPECT_PTR_EQ(test, to_software_node(ref.fwnode), &node1); + KUNIT_EXPECT_EQ(test, ref.nargs, 0U); + + /* second reference in the array */ + error = fwnode_property_get_reference_args(node, "ref-3", NULL, + 2, 1, &ref); + KUNIT_ASSERT_EQ(test, error, 0); + KUNIT_EXPECT_PTR_EQ(test, to_software_node(ref.fwnode), &node2); + KUNIT_EXPECT_EQ(test, ref.nargs, 2U); + KUNIT_EXPECT_EQ(test, ref.args[0], 3LLU); + KUNIT_EXPECT_EQ(test, ref.args[1], 4LLU); + + /* wrong index */ + error = fwnode_property_get_reference_args(node, "ref-1", NULL, + 0, 2, &ref); + KUNIT_EXPECT_NE(test, error, 0); + + fwnode_remove_software_node(node); + software_node_unregister_node_group(group); +} + +static struct fwnode_handle *create_device_node(struct kunit *test, + const char *name, + const char *full_name, + struct device_node *parent) +{ + struct device_node *node; + + node = kunit_kzalloc(test, sizeof(*node), GFP_KERNEL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, node); + + node->name = kunit_kstrdup(test, name, GFP_KERNEL); + node->full_name = kunit_kstrdup(test, full_name, GFP_KERNEL); + + if (parent) { + node->sibling = parent->child; + /* set the node as the first child of the parent */ + parent->child = node; + node->parent = parent; + } + + of_node_init(node); + return of_fwnode_handle(node); +} + +/* Verifies that fwnode_for_each_child_node() can output correct children */ +static void pe_test_child_iteration(struct kunit *test) +{ + struct fwnode_handle *of_node, *of_node1; + struct fwnode_handle *sw_node, *sw_node1; + struct fwnode_handle *child; + int error, i, num; + + if (!IS_ENABLED(CONFIG_OF)) + kunit_skip(test, "requires CONFIG_OF"); + + static const struct software_node node = { .name = "sw" }; + static const struct software_node node1 = { .name = "sw-1", .parent = &node}; + static const struct software_node node2 = { .name = "sw-2", .parent = &node}; + static const struct software_node node3 = { .name = "sw-3", .parent = &node}; + static const struct software_node *group[] = { &node, &node1, &node2, &node3, NULL }; + + static const char * const of_child_array[] = { "of-1", "of-2", "of-3" }; + static const char * const sw_child_array[] = { "sw-1", "sw-2", "sw-3" }; + static const char * const of_sw_child_array[] = { "of-1", "of-2", "of-3", + "sw-1", "sw-2", "sw-3" }; + static const char * const sw_of_child_array[] = { "sw-1", "sw-2", "sw-3", + "of-1", "of-2", "of-3" }; + + /* 1. Test OF node child iteration */ + + of_node = create_device_node(test, "of", "of", NULL); + create_device_node(test, "of", "of-3", to_of_node(of_node)); + create_device_node(test, "of", "of-2", to_of_node(of_node)); + of_node1 = create_device_node(test, "of", "of-1", to_of_node(of_node)); + + i = 0; + num = ARRAY_SIZE(of_child_array); + fwnode_for_each_child_node(of_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, of_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + /* 2. Test SW node child iteration */ + + error = software_node_register_node_group(group); + KUNIT_ASSERT_EQ(test, error, 0); + + sw_node = software_node_fwnode(&node); + + i = 0; + num = ARRAY_SIZE(sw_child_array); + fwnode_for_each_child_node(sw_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, sw_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + /* 3. Test OF (primary) + SW (secondary) node child iteration */ + + of_node->secondary = sw_node; + sw_node->secondary = ERR_PTR(-ENODEV); + + i = 0; + num = ARRAY_SIZE(of_sw_child_array); + fwnode_for_each_child_node(of_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, of_sw_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + /* 4. Test SW (primary) + OF (secondary) node child iteration */ + + sw_node->secondary = of_node; + of_node->secondary = ERR_PTR(-ENODEV); + + i = 0; + num = ARRAY_SIZE(sw_of_child_array); + fwnode_for_each_child_node(sw_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, sw_of_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + /* 5. Test OF (primary) + SW (secondary, but no children) node child iteration */ + + sw_node1 = software_node_fwnode(&node1); + of_node->secondary = sw_node1; + sw_node->secondary = ERR_PTR(-ENODEV); + + i = 0; + num = ARRAY_SIZE(of_child_array); + fwnode_for_each_child_node(of_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, of_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + /* 6. Test SW (primary) + OF (secondary, but no children) node child iteration */ + + sw_node->secondary = of_node1; + of_node->secondary = ERR_PTR(-ENODEV); + + i = 0; + num = ARRAY_SIZE(sw_child_array); + fwnode_for_each_child_node(sw_node, child) { + KUNIT_ASSERT_LT(test, i, num); + KUNIT_EXPECT_STREQ(test, sw_child_array[i++], fwnode_get_name(child)); + } + KUNIT_EXPECT_PTR_EQ(test, child, NULL); + + of_node->secondary = NULL; + sw_node->secondary = NULL; + software_node_unregister_node_group(group); +} + +static struct kunit_case property_entry_test_cases[] = { + KUNIT_CASE(pe_test_uints), + KUNIT_CASE(pe_test_uint_arrays), + KUNIT_CASE(pe_test_strings), + KUNIT_CASE(pe_test_bool), + KUNIT_CASE(pe_test_move_inline_u8), + KUNIT_CASE(pe_test_move_inline_str), + KUNIT_CASE(pe_test_reference), + KUNIT_CASE(pe_test_child_iteration), + { } +}; + +static struct kunit_suite property_entry_test_suite = { + .name = "property-entry", + .test_cases = property_entry_test_cases, +}; + +kunit_test_suite(property_entry_test_suite); + +MODULE_DESCRIPTION("Test module for the property entry API"); +MODULE_AUTHOR("Dmitry Torokhov "); +MODULE_IMPORT_NS("EXPORTED_FOR_KUNIT_TESTING"); +MODULE_LICENSE("GPL"); diff --git a/drivers/base/test/root-device-test.c b/drivers/base/test/root-device-test.c new file mode 100644 index 000000000..9aea23c91 --- /dev/null +++ b/drivers/base/test/root-device-test.c @@ -0,0 +1,112 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright 2023 Maxime Ripard + +#include + +#include + +#define DEVICE_NAME "test" + +struct test_priv { + bool probe_done; + bool release_done; + wait_queue_head_t release_wq; + struct device *dev; +}; + +static int root_device_devm_init(struct kunit *test) +{ + struct test_priv *priv; + + priv = kunit_kzalloc(test, sizeof(*priv), GFP_KERNEL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, priv); + init_waitqueue_head(&priv->release_wq); + + test->priv = priv; + + return 0; +} + +static void devm_device_action(void *ptr) +{ + struct test_priv *priv = ptr; + + priv->release_done = true; + wake_up_interruptible(&priv->release_wq); +} + +#define RELEASE_TIMEOUT_MS 100 + +/* + * Tests that a bus-less, non-probed device will run its device-managed + * actions when unregistered. + */ +static void root_device_devm_register_unregister_test(struct kunit *test) +{ + struct test_priv *priv = test->priv; + int ret; + + priv->dev = root_device_register(DEVICE_NAME); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, priv->dev); + + ret = devm_add_action_or_reset(priv->dev, devm_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + root_device_unregister(priv->dev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); +} + +static void devm_put_device_action(void *ptr) +{ + struct test_priv *priv = ptr; + + put_device(priv->dev); + priv->release_done = true; + wake_up_interruptible(&priv->release_wq); +} + +/* + * Tests that a bus-less, non-probed device will run its device-managed + * actions when unregistered, even if someone still holds a reference to + * it. + */ +static void root_device_devm_register_get_unregister_with_devm_test(struct kunit *test) +{ + struct test_priv *priv = test->priv; + int ret; + + priv->dev = root_device_register(DEVICE_NAME); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, priv->dev); + + get_device(priv->dev); + + ret = devm_add_action_or_reset(priv->dev, devm_put_device_action, priv); + KUNIT_ASSERT_EQ(test, ret, 0); + + root_device_unregister(priv->dev); + + ret = wait_event_interruptible_timeout(priv->release_wq, priv->release_done, + msecs_to_jiffies(RELEASE_TIMEOUT_MS)); + KUNIT_EXPECT_GT(test, ret, 0); +} + +static struct kunit_case root_device_devm_tests[] = { + KUNIT_CASE(root_device_devm_register_unregister_test), + KUNIT_CASE(root_device_devm_register_get_unregister_with_devm_test), + {} +}; + +static struct kunit_suite root_device_devm_test_suite = { + .name = "root-device-devm", + .init = root_device_devm_init, + .test_cases = root_device_devm_tests, +}; + +kunit_test_suite(root_device_devm_test_suite); + +MODULE_DESCRIPTION("Test module for root devices"); +MODULE_AUTHOR("Maxime Ripard "); +MODULE_LICENSE("GPL"); diff --git a/drivers/base/test/swnode-devlink-test.c b/drivers/base/test/swnode-devlink-test.c new file mode 100644 index 000000000..f53549e92 --- /dev/null +++ b/drivers/base/test/swnode-devlink-test.c @@ -0,0 +1,337 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Copyright (C) Qualcomm Technologies, Inc. and/or its subsidiaries + */ + +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#include +#include +#include + +static int swnode_count_suppliers(struct fwnode_handle *fwnode) +{ + struct fwnode_link *link; + unsigned int count = 0; + + /* + * The suppliers and consumers lists should typically only be accessed + * with the fwnode_link_lock taken but it's private to the driver core. + * + * These are tests and at this point nobody should be modifying them so + * let's just access the list. + */ + list_for_each_entry(link, &fwnode->suppliers, c_hook) + count++; + + return count; +} + +/* True if a supplier link con->sup exists, checked from both list ends. */ +static bool swnode_has_link(struct fwnode_handle *consumer, + struct fwnode_handle *supplier) +{ + bool from_con = false, from_sup = false; + struct fwnode_link *link; + + list_for_each_entry(link, &consumer->suppliers, c_hook) { + if (link->supplier == supplier && link->consumer == consumer) + from_con = true; + } + + list_for_each_entry(link, &supplier->consumers, s_hook) { + if (link->supplier == supplier && link->consumer == consumer) + from_sup = true; + } + + return from_con && from_sup; +} + +/* A single reference creates exactly one supplier link, on both list ends. */ +static void swnode_devlink_test_single_ref(struct kunit *test) +{ + static const struct software_node supp_swnode = { + .name = "swnode-devlink-test-supplier", + }; + + struct fwnode_handle *cons_fwnode, *supp_fwnode; + int ret; + + const struct property_entry props[] = { + PROPERTY_ENTRY_REF("supplier", &supp_swnode), + { } + }; + + supp_fwnode = kunit_software_node_register(test, &supp_swnode); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, supp_fwnode); + + cons_fwnode = kunit_fwnode_create_software_node(test, props, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cons_fwnode); + + ret = fwnode_call_int_op(cons_fwnode, add_links); + KUNIT_EXPECT_EQ(test, ret, 0); + + KUNIT_EXPECT_EQ(test, swnode_count_suppliers(cons_fwnode), 1); + KUNIT_EXPECT_TRUE(test, swnode_has_link(cons_fwnode, supp_fwnode)); +} + +/* Multiple distinct references create multiple supplier links. */ +static void swnode_devlink_test_multiple_refs(struct kunit *test) +{ + static const struct software_node supp1_swnode = { + .name = "swnode-devlink-test-supplier-1", + }; + static const struct software_node supp2_swnode = { + .name = "swnode-devlink-test-supplier-2", + }; + static const struct software_node *supp_nodes[] = { + &supp1_swnode, &supp2_swnode, NULL + }; + + const struct property_entry props[] = { + PROPERTY_ENTRY_REF("foo", &supp1_swnode), + PROPERTY_ENTRY_REF("bar", &supp2_swnode), + { } + }; + + struct fwnode_handle *fwnode; + int ret; + + ret = kunit_software_node_register_node_group(test, supp_nodes); + KUNIT_ASSERT_EQ(test, ret, 0); + + fwnode = kunit_fwnode_create_software_node(test, props, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + ret = fwnode_call_int_op(fwnode, add_links); + KUNIT_EXPECT_EQ(test, ret, 0); + + KUNIT_EXPECT_EQ(test, swnode_count_suppliers(fwnode), 2); + KUNIT_EXPECT_TRUE(test, swnode_has_link(fwnode, software_node_fwnode(&supp1_swnode))); + KUNIT_EXPECT_TRUE(test, swnode_has_link(fwnode, software_node_fwnode(&supp2_swnode))); +} + +/* A reference to an unregistered node creates no link (graceful skip). */ +static void swnode_devlink_test_unregistered_ref(struct kunit *test) +{ + static const struct software_node supp_swnode = { + .name = "swnode-devlink-test-supplier", + }; + + const struct property_entry props[] = { + PROPERTY_ENTRY_REF("supplier", &supp_swnode), + { } + }; + + struct fwnode_handle *fwnode; + int ret; + + fwnode = kunit_fwnode_create_software_node(test, props, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + ret = fwnode_call_int_op(fwnode, add_links); + KUNIT_EXPECT_EQ(test, ret, 0); + KUNIT_EXPECT_EQ(test, swnode_count_suppliers(fwnode), 0); +} + +/* Graph "remote-endpoint" references are excluded. */ +static void swnode_devlink_test_remote_endpoint_excluded(struct kunit *test) +{ + static const struct software_node ep_swnode = { + .name = "swnode-devlink-test-end-point" + }; + + const struct property_entry props[] = { + PROPERTY_ENTRY_REF("remote-endpoint", &ep_swnode), + { } + }; + + struct fwnode_handle *cons_fwnode, *supp_fwnode; + int ret; + + supp_fwnode = kunit_software_node_register(test, &ep_swnode); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, supp_fwnode); + + cons_fwnode = kunit_fwnode_create_software_node(test, props, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cons_fwnode); + + ret = fwnode_call_int_op(cons_fwnode, add_links); + KUNIT_EXPECT_EQ(test, ret, 0); + KUNIT_EXPECT_EQ(test, swnode_count_suppliers(cons_fwnode), 0); +} + +/* A reference array creates one link per registered element. */ +static void swnode_devlink_test_ref_array(struct kunit *test) +{ + static const struct software_node supp1_swnode = { + .name = "swnode-devlink-test-supplier-1", + }; + static const struct software_node supp2_swnode = { + .name = "swnode-devlink-test-supplier-2", + }; + static const struct software_node *supp_nodes[] = { + &supp1_swnode, &supp2_swnode, NULL + }; + static const struct software_node_ref_args refs[] = { + SOFTWARE_NODE_REFERENCE(&supp1_swnode), + SOFTWARE_NODE_REFERENCE(&supp2_swnode, 4, 2), + }; + + const struct property_entry props[] = { + PROPERTY_ENTRY_REF_ARRAY("suppliers", refs), + { } + }; + + struct fwnode_handle *fwnode; + int ret; + + ret = kunit_software_node_register_node_group(test, supp_nodes); + KUNIT_ASSERT_EQ(test, ret, 0); + + fwnode = kunit_fwnode_create_software_node(test, props, NULL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + ret = fwnode_call_int_op(fwnode, add_links); + KUNIT_EXPECT_EQ(test, ret, 0); + + KUNIT_EXPECT_EQ(test, swnode_count_suppliers(fwnode), 2); + KUNIT_EXPECT_TRUE(test, swnode_has_link(fwnode, software_node_fwnode(&supp1_swnode))); + KUNIT_EXPECT_TRUE(test, swnode_has_link(fwnode, software_node_fwnode(&supp2_swnode))); +} + +/* + * End-to-end test: fw_devlink must defer a consumer's probe until its + * supplier has probed. + * + * The reference created by software_node_add_links() is only useful if the + * driver core promotes it to a real device_link and uses it to order probing. + * This test drives actual probing through the platform bus and asserts the + * supplier binds before the consumer. + */ + +#define SWNODE_DEVLINK_TEST_SUPPLIER "swnode-link-supplier" +#define SWNODE_DEVLINK_TEST_CONSUMER "swnode-link-consumer" +#define SWNODE_DEVLINK_TEST_TIMEOUT_MS (2 * MSEC_PER_SEC) + +struct swnode_test_probe_order { + /* Names in the order their drivers' .probe ran. */ + const char *probed[2]; + unsigned int count; + wait_queue_head_t wq; +}; + +static int swnode_test_record_probe(struct platform_device *pdev) +{ + struct swnode_test_probe_order *order = platform_get_drvdata(pdev); + + if (order && order->count < ARRAY_SIZE(order->probed)) { + order->probed[order->count++] = dev_name(&pdev->dev); + wake_up_interruptible(&order->wq); + } + + return 0; +} + +static struct platform_driver swnode_test_supplier_driver = { + .probe = swnode_test_record_probe, + .driver = { + .name = SWNODE_DEVLINK_TEST_SUPPLIER, + }, +}; + +static struct platform_driver swnode_test_consumer_driver = { + .probe = swnode_test_record_probe, + .driver = { + .name = SWNODE_DEVLINK_TEST_CONSUMER, + }, +}; + +static void swnode_devlink_test_probe_order(struct kunit *test) +{ + static const struct software_node supplier_swnode = { + .name = "swnode-devlink-test-supplier", + }; + + const struct property_entry consumer_props[] = { + PROPERTY_ENTRY_REF("supplier-ref", &supplier_swnode), + { } + }; + + struct platform_device *supplier, *consumer; + struct swnode_test_probe_order *order; + struct fwnode_handle *fwnode; + int ret; + + order = kunit_kzalloc(test, sizeof(*order), GFP_KERNEL); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, order); + init_waitqueue_head(&order->wq); + + fwnode = kunit_software_node_register(test, &supplier_swnode); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, fwnode); + + ret = kunit_platform_driver_register(test, &swnode_test_supplier_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + ret = kunit_platform_driver_register(test, &swnode_test_consumer_driver); + KUNIT_ASSERT_EQ(test, ret, 0); + + supplier = kunit_platform_device_alloc(test, SWNODE_DEVLINK_TEST_SUPPLIER, + PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, supplier); + consumer = kunit_platform_device_alloc(test, SWNODE_DEVLINK_TEST_CONSUMER, + PLATFORM_DEVID_NONE); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, consumer); + + platform_set_drvdata(supplier, order); + platform_set_drvdata(consumer, order); + + ret = kunit_device_add_software_node(test, &supplier->dev, &supplier_swnode); + KUNIT_ASSERT_EQ(test, ret, 0); + ret = device_create_managed_software_node(&consumer->dev, + consumer_props, NULL); + KUNIT_ASSERT_EQ(test, ret, 0); + + ret = kunit_platform_device_add(test, consumer); + KUNIT_ASSERT_EQ(test, ret, 0); + ret = kunit_platform_device_add(test, supplier); + KUNIT_ASSERT_EQ(test, ret, 0); + + ret = wait_event_interruptible_timeout(order->wq, + order->count == 2, + msecs_to_jiffies(SWNODE_DEVLINK_TEST_TIMEOUT_MS)); + KUNIT_ASSERT_GT(test, ret, 0); + + KUNIT_EXPECT_STREQ(test, order->probed[0], SWNODE_DEVLINK_TEST_SUPPLIER); + KUNIT_EXPECT_STREQ(test, order->probed[1], SWNODE_DEVLINK_TEST_CONSUMER); + + /* Tear down the consumer (and its device link) before the supplier. */ + kunit_platform_device_unregister(test, consumer); +} + +static struct kunit_case swnode_test_cases[] = { + KUNIT_CASE(swnode_devlink_test_single_ref), + KUNIT_CASE(swnode_devlink_test_multiple_refs), + KUNIT_CASE(swnode_devlink_test_unregistered_ref), + KUNIT_CASE(swnode_devlink_test_remote_endpoint_excluded), + KUNIT_CASE(swnode_devlink_test_ref_array), + KUNIT_CASE(swnode_devlink_test_probe_order), + { } +}; + +static struct kunit_suite swnode_test_suite = { + .name = "software-node-links", + .test_cases = swnode_test_cases, +}; + +kunit_test_suite(swnode_test_suite); + +MODULE_DESCRIPTION("Test module for software node fw_devlink support"); +MODULE_AUTHOR("Bartosz Golaszewski "); +MODULE_LICENSE("GPL"); diff --git a/drivers/base/test/test_async_driver_probe.c b/drivers/base/test/test_async_driver_probe.c new file mode 100644 index 000000000..3465800ba --- /dev/null +++ b/drivers/base/test/test_async_driver_probe.c @@ -0,0 +1,299 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2014 Google, Inc. + */ + +#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt + +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#define TEST_PROBE_DELAY (5 * 1000) /* 5 sec */ +#define TEST_PROBE_THRESHOLD (TEST_PROBE_DELAY / 2) + +static atomic_t warnings, errors, timeout, async_completed; + +static int test_probe(struct platform_device *pdev) +{ + struct device *dev = &pdev->dev; + + /* + * Determine if we have hit the "timeout" limit for the test if we + * have then report it as an error, otherwise we wil sleep for the + * required amount of time and then report completion. + */ + if (atomic_read(&timeout)) { + dev_err(dev, "async probe took too long\n"); + atomic_inc(&errors); + } else { + dev_dbg(&pdev->dev, "sleeping for %d msecs in probe\n", + TEST_PROBE_DELAY); + msleep(TEST_PROBE_DELAY); + dev_dbg(&pdev->dev, "done sleeping\n"); + } + + /* + * Report NUMA mismatch if device node is set and we are not + * performing an async init on that node. + */ + if (dev->driver->probe_type == PROBE_PREFER_ASYNCHRONOUS) { + if (IS_ENABLED(CONFIG_NUMA) && + dev_to_node(dev) != numa_node_id()) { + dev_warn(dev, "NUMA node mismatch %d != %d\n", + dev_to_node(dev), numa_node_id()); + atomic_inc(&warnings); + } + + atomic_inc(&async_completed); + } + + return 0; +} + +static struct platform_driver async_driver = { + .driver = { + .name = "test_async_driver", + .probe_type = PROBE_PREFER_ASYNCHRONOUS, + }, + .probe = test_probe, +}; + +static struct platform_driver sync_driver = { + .driver = { + .name = "test_sync_driver", + .probe_type = PROBE_FORCE_SYNCHRONOUS, + }, + .probe = test_probe, +}; + +static struct platform_device *async_dev[NR_CPUS * 2]; +static struct platform_device *sync_dev[2]; + +static struct platform_device * +test_platform_device_register_node(char *name, int id, int nid) +{ + struct platform_device *pdev; + int ret; + + pdev = platform_device_alloc(name, id); + if (!pdev) + return ERR_PTR(-ENOMEM); + + if (nid != NUMA_NO_NODE) + set_dev_node(&pdev->dev, nid); + + ret = platform_device_add(pdev); + if (ret) { + platform_device_put(pdev); + return ERR_PTR(ret); + } + + return pdev; + +} + +static int __init test_async_probe_init(void) +{ + struct platform_device **pdev = NULL; + int async_id = 0, sync_id = 0; + unsigned long long duration; + ktime_t calltime; + int err, nid, cpu; + + pr_info("registering first set of asynchronous devices...\n"); + + for_each_online_cpu(cpu) { + nid = cpu_to_node(cpu); + pdev = &async_dev[async_id]; + *pdev = test_platform_device_register_node("test_async_driver", + async_id, + nid); + if (IS_ERR(*pdev)) { + err = PTR_ERR(*pdev); + *pdev = NULL; + pr_err("failed to create async_dev: %d\n", err); + goto err_unregister_async_devs; + } + + async_id++; + } + + pr_info("registering asynchronous driver...\n"); + calltime = ktime_get(); + err = platform_driver_register(&async_driver); + if (err) { + pr_err("Failed to register async_driver: %d\n", err); + goto err_unregister_async_devs; + } + + duration = (unsigned long long)ktime_ms_delta(ktime_get(), calltime); + pr_info("registration took %lld msecs\n", duration); + if (duration > TEST_PROBE_THRESHOLD) { + pr_err("test failed: probe took too long\n"); + err = -ETIMEDOUT; + goto err_unregister_async_driver; + } + + pr_info("registering second set of asynchronous devices...\n"); + calltime = ktime_get(); + for_each_online_cpu(cpu) { + nid = cpu_to_node(cpu); + pdev = &async_dev[async_id]; + + *pdev = test_platform_device_register_node("test_async_driver", + async_id, + nid); + if (IS_ERR(*pdev)) { + err = PTR_ERR(*pdev); + *pdev = NULL; + pr_err("failed to create async_dev: %d\n", err); + goto err_unregister_async_driver; + } + + async_id++; + } + + duration = (unsigned long long)ktime_ms_delta(ktime_get(), calltime); + dev_info(&(*pdev)->dev, + "registration took %lld msecs\n", duration); + if (duration > TEST_PROBE_THRESHOLD) { + dev_err(&(*pdev)->dev, + "test failed: probe took too long\n"); + err = -ETIMEDOUT; + goto err_unregister_async_driver; + } + + + pr_info("registering first synchronous device...\n"); + nid = cpu_to_node(cpu); + pdev = &sync_dev[sync_id]; + + *pdev = test_platform_device_register_node("test_sync_driver", + sync_id, + NUMA_NO_NODE); + if (IS_ERR(*pdev)) { + err = PTR_ERR(*pdev); + *pdev = NULL; + pr_err("failed to create sync_dev: %d\n", err); + goto err_unregister_async_driver; + } + + sync_id++; + + pr_info("registering synchronous driver...\n"); + calltime = ktime_get(); + err = platform_driver_register(&sync_driver); + if (err) { + pr_err("Failed to register async_driver: %d\n", err); + goto err_unregister_sync_devs; + } + + duration = (unsigned long long)ktime_ms_delta(ktime_get(), calltime); + pr_info("registration took %lld msecs\n", duration); + if (duration < TEST_PROBE_THRESHOLD) { + dev_err(&(*pdev)->dev, + "test failed: probe was too quick\n"); + err = -ETIMEDOUT; + goto err_unregister_sync_driver; + } + + pr_info("registering second synchronous device...\n"); + pdev = &sync_dev[sync_id]; + calltime = ktime_get(); + + *pdev = test_platform_device_register_node("test_sync_driver", + sync_id, + NUMA_NO_NODE); + if (IS_ERR(*pdev)) { + err = PTR_ERR(*pdev); + *pdev = NULL; + pr_err("failed to create sync_dev: %d\n", err); + goto err_unregister_sync_driver; + } + + sync_id++; + + duration = (unsigned long long)ktime_ms_delta(ktime_get(), calltime); + dev_info(&(*pdev)->dev, + "registration took %lld msecs\n", duration); + if (duration < TEST_PROBE_THRESHOLD) { + dev_err(&(*pdev)->dev, + "test failed: probe was too quick\n"); + err = -ETIMEDOUT; + goto err_unregister_sync_driver; + } + + /* + * The async events should have completed while we were taking care + * of the synchronous events. We will now terminate any outstanding + * asynchronous probe calls remaining by forcing timeout and remove + * the driver before we return which should force the flush of the + * pending asynchronous probe calls. + * + * Otherwise if they completed without errors or warnings then + * report successful completion. + */ + if (atomic_read(&async_completed) != async_id) { + pr_err("async events still pending, forcing timeout\n"); + atomic_inc(&timeout); + err = -ETIMEDOUT; + } else if (!atomic_read(&errors) && !atomic_read(&warnings)) { + pr_info("completed successfully\n"); + return 0; + } + +err_unregister_sync_driver: + platform_driver_unregister(&sync_driver); +err_unregister_sync_devs: + while (sync_id--) + platform_device_unregister(sync_dev[sync_id]); +err_unregister_async_driver: + platform_driver_unregister(&async_driver); +err_unregister_async_devs: + while (async_id--) + platform_device_unregister(async_dev[async_id]); + + /* + * If err is already set then count that as an additional error for + * the test. Otherwise we will report an invalid argument error and + * not count that as we should have reached here as a result of + * errors or warnings being reported by the probe routine. + */ + if (err) + atomic_inc(&errors); + else + err = -EINVAL; + + pr_err("Test failed with %d errors and %d warnings\n", + atomic_read(&errors), atomic_read(&warnings)); + + return err; +} +module_init(test_async_probe_init); + +static void __exit test_async_probe_exit(void) +{ + int id = 2; + + platform_driver_unregister(&async_driver); + platform_driver_unregister(&sync_driver); + + while (id--) + platform_device_unregister(sync_dev[id]); + + id = NR_CPUS * 2; + while (id--) + platform_device_unregister(async_dev[id]); +} +module_exit(test_async_probe_exit); + +MODULE_DESCRIPTION("Test module for asynchronous driver probing"); +MODULE_AUTHOR("Dmitry Torokhov "); +MODULE_LICENSE("GPL"); -- cgit v1.3.1