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| author | Sven Schnelle <svens@linux.ibm.com> | 2026-09-09 11:29:53 +0200 |
|---|---|---|
| committer | Masami Hiramatsu (Google) <mhiramat@kernel.org> | 2026-09-10 08:43:35 +0900 |
| commit | d22c3e0088e85be8131f7a9283f759cdbb20726d (patch) | |
| tree | 9668df2aa27b26f850d3ba5ba1287e443803675c /drivers/firewire/node-tree-test.c | |
| download | linux-stable-d22c3e0088e85be8131f7a9283f759cdbb20726d.tar.gz linux-stable-d22c3e0088e85be8131f7a9283f759cdbb20726d.zip | |
selftests/ftrace: Fix unique symbol check in kprobe_non_uniq_symbol.tcgrafted
The current regex also matches symbols in modules, which makes the
test fail on s390 where name_show is present only once in the kernel,
but also multiple times in modules:
000001b1401cdc20 t name_show
000001b0c05e6c40 t name_show [mdev]
000001b0c0495f30 t name_show [i2c_core]
Fix this by changing the regular expression to only match the function
name.
Link: https://lore.kernel.org/all/20260909092954.2200558-1-svens@linux.ibm.com/
Fixes: 03b80ff8023a ("selftests/ftrace: Add new test case which checks non unique symbol")
Signed-off-by: Sven Schnelle <svens@linux.ibm.com>
Reviewed-by: Steven Rostedt <rostedt@goodmis.org>
Signed-off-by: Masami Hiramatsu (Google) <mhiramat@kernel.org>
Diffstat (limited to 'drivers/firewire/node-tree-test.c')
| -rw-r--r-- | drivers/firewire/node-tree-test.c | 607 |
1 files changed, 607 insertions, 0 deletions
diff --git a/drivers/firewire/node-tree-test.c b/drivers/firewire/node-tree-test.c new file mode 100644 index 000000000..5e6bb5853 --- /dev/null +++ b/drivers/firewire/node-tree-test.c @@ -0,0 +1,607 @@ +// SPDX-License-Identifier: GPL-2.0-only +// +// node-tree-test.c - An application of Kunit to test node tree. +// +// Copyright (c) 2026 Takashi Sakamoto +// +// This file can not be built independently since it is intentionally included in core-topology.c. + +#include <kunit/test.h> +#include <kunit/test-bug.h> +#include <kunit/device.h> + +struct private_data { + struct fw_card *card; + unsigned int release_count; +}; + +static int node_tree_test_init(struct kunit *test) +{ + struct private_data *data; + + data = kunit_kzalloc(test, sizeof(*data), GFP_KERNEL); + KUNIT_ASSERT_NOT_NULL(test, data); + + data->card = kunit_kzalloc(test, sizeof(struct fw_card), GFP_KERNEL); + KUNIT_ASSERT_NOT_NULL(test, data->card); + + data->card->device = kunit_device_register(test, "dummy-device"); + KUNIT_ASSERT_NOT_ERR_OR_NULL(test, data->card->device); + + test->priv = data; + + return 0; +} + +static void node_tree_test_exit(struct kunit *test) +{ + struct private_data *data = test->priv; + + kunit_device_unregister(test, data->card->device); + kunit_kfree(test, data->card); + kunit_kfree(test, data); +} + +static void release_fw_node(struct fw_card *card, struct fw_node *node, struct fw_node *parent) +{ + struct private_data *data = kunit_get_current_test()->priv; + + fw_node_put(node); + ++data->release_count; +} + +static void node_tree_test_two_nodes(struct kunit *test) +{ + // root + // ++============++ + // || phy 1 || + // || P0 P1 P2 || + // ++===|==|==|==++ + // | + // +-----+ + // | + // ++===|==x==x==++ + // || P0 P1 P2 || + // || phy 0 || + // ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000080, + 0x8100005e, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x01; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + struct fw_node *parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 1); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 2); +} + +static void node_tree_test_two_nodes_1394a(struct kunit *test) +{ + // root + // ++===============++ + // || phy 0 || + // || P0 P1 P2 P3 || + // ++===|==|==|==|==++ + // | + // +--+ + // | + // ++===|==|==|==|==|==++ + // || P0 P1 P2 P3 P4 || + // || phy 1 || + // ++==================++ + // + // NOTE: Just for Self-ID Packets Zero and One. + static const u32 self_id_sequence[] = { + 0x80000065, 0x80814000, + 0x8100005d, 0x81810000, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x01; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 4); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + KUNIT_EXPECT_NULL(test, node->ports[3]); + + struct fw_node *parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 5); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[1], parent); + KUNIT_EXPECT_NULL(test, node->ports[2]); + KUNIT_EXPECT_NULL(test, node->ports[3]); + KUNIT_EXPECT_NULL(test, node->ports[4]); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 2); +} + +static void node_tree_test_three_nodes_case0(struct kunit *test) +{ + // root + // ++============++ + // || phy 2 || + // || P0 P1 P2 || + // ++===|==|==|==++ + // | | + // +--+ +-----------------+ + // | | + // ++===|==|==x==++ ++===|==|==|==++ + // || P0 P1 P2 || || P0 P1 P2 || + // || phy 0 || || phy 1 || + // ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000060, + 0x81000058, + 0x820000dc, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x02; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NOT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + struct fw_node *parent = node; + node = parent->ports[0]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[1], parent); + + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[2], parent); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 3); +} + +static void node_tree_test_three_nodes_case1(struct kunit *test) +{ + // root + // ++============++ + // || phy 2 || + // || P0 P1 P2 || + // ++===|==|==x==++ + // | + // | +-----------+ + // | | | + // ++===|==|==|==++ ++===|==x==x==++ + // || P0 P1 P2 || || P0 P1 P2 || + // || phy 1 || || phy 0 || + // ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000080, + 0x8100006c, + 0x82000070, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x02; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + + struct fw_node *parent = node; + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[1], parent); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 1); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 3); +} + +static void node_tree_test_four_nodes_case0(struct kunit *test) +{ + // root + // ++============++ + // || phy 3 || + // || P0 P1 P2 || + // ++===|==|==|==++ + // | + // | +-----------+ +--------------+ + // | | | | | + // ++===|==|==|==++ ++===|==|==x==++ ++===|==x==x==++ + // || P0 P1 P2 || || P0 P1 P2 || || P0 P1 P2 || + // || phy 2 || || phy 1 || || phy 0 || + // ++============++ ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000080, + 0x810000b0, + 0x8200006c, + 0x83000074, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x03); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NULL(test, node->ports[2]); + + struct fw_node *parent = node; + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[1], parent); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + + parent = node; + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 1); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 4); +} + +static void node_tree_test_four_nodes_case1(struct kunit *test) +{ + // root + // ++============++ + // || phy 3 || + // || P0 P1 P2 || + // ++===|==|==x==++ + // | + // | +--------------------------------+ + // | | +-----------+ | + // ++===|==|==|==++ ++===|==x==x==++ ++===|==|==|==++ + // || P0 P1 P2 || || P0 P1 P2 || || P0 P1 P2 || + // || phy 2 || || phy 1 || || phy 0 || + // ++============++ ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000094, + 0x81000080, + 0x820000bc, + 0x830000d0, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x03); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_NOT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + + struct fw_node *parent = node; + node = parent->ports[0]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 1); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NULL(test, node->ports[2]); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 4); +} + +static void node_tree_test_four_nodes_case2(struct kunit *test) +{ + // root + // ++============++ + // || phy 3 || + // || P0 P1 P2 || + // ++===|==|==|==++ + // | | + // | +-----------------------------+ + // | +--------------+ | + // ++===|==|==x==++ ++===|==|==|==++ ++===|==x==x==++ + // || P0 P1 P2 || || P0 P1 P2 || || P0 P1 P2 || + // || phy 1 || || phy 0 || || phy 2 || + // ++============++ ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000094, + 0x810000b0, + 0x82000080, + 0x830000dc, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x03); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NOT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + struct fw_node *parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 1); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + + node = parent->ports[0]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + + parent = node; + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NULL(test, node->ports[2]); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 4); +} + +static void node_tree_test_four_nodes_case3(struct kunit *test) +{ + // root + // ++============++ + // || phy 3 || + // || P0 P1 P2 || + // ++===|==|==|==++ + // | | +--------------------------------+ + // | +--------------------+ | + // | | | + // ++===|==|==x==++ ++===|==|==|==++ ++===|==|==x==++ + // || P0 P1 P2 || || P0 P1 P2 || || P0 P1 P2 || + // || phy 0 || || phy 1 || || phy 2 || + // ++============++ ++============++ ++============++ + // + static const u32 self_id_sequence[] = { + 0x80000090, + 0x81000058, + 0x82000060, + 0x830000fc, + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NOT_NULL(test, card->local_node); + KUNIT_EXPECT_PTR_EQ(test, card->local_node, card->root_node); + + struct fw_node *node = card->root_node; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x03); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NOT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[1]); + KUNIT_EXPECT_NOT_NULL(test, node->ports[2]); + + struct fw_node *parent = node; + node = parent->ports[2]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x02); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[1], parent); + + node = parent->ports[1]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x01); + KUNIT_EXPECT_EQ(test, node->port_count, 3); + KUNIT_EXPECT_NULL(test, node->ports[0]); + KUNIT_EXPECT_NULL(test, node->ports[1]); + KUNIT_EXPECT_PTR_EQ(test, node->ports[2], parent); + + node = parent->ports[0]; + KUNIT_EXPECT_EQ(test, node->node_id, LOCAL_BUS | 0x00); + KUNIT_EXPECT_EQ(test, node->port_count, 2); + KUNIT_EXPECT_PTR_EQ(test, node->ports[0], parent); + KUNIT_EXPECT_NULL(test, node->ports[1]); + + ++card->color; + for_each_fw_node(card, card->root_node, release_fw_node); + KUNIT_EXPECT_EQ(test, data->release_count, 4); +} + +static void node_tree_test_invalid_extended_self_id_sequence(struct kunit *test) +{ + // Use the same node tree as node_tree_test_four_nodes_case1, except for the invalid + // content of self ID packet for the phy 3. + static const u32 self_id_sequence[] = { + 0x80000094, + 0x81000080, + 0x820000bc, + 0x830000d1, // Invalid. + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NULL(test, card->local_node); +} + +static void node_tree_test_invalid_phy_id(struct kunit *test) +{ + // Use the same node tree as node_tree_test_four_nodes_case1, except for the invalid + // phy ID for phy 3. + static const u32 self_id_sequence[] = { + 0x80000094, + 0x81000080, + 0x820000bc, + 0x8f0000d0, // Invalid. + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NULL(test, card->local_node); +} + +static void node_tree_test_invalid_child_port_count(struct kunit *test) +{ + // Use the same node tree as node_tree_test_four_nodes_case1, except for the invalid + // count of child ports for phy 3. + static const u32 self_id_sequence[] = { + 0x80000094, + 0x81000080, + 0x820000bc, + 0x830000fc, // Invalid. + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NULL(test, card->local_node); +} + +static void node_tree_test_invalid_parent_port_count(struct kunit *test) +{ + // Use the same node tree as node_tree_test_four_nodes_case1, except for the invalid + // count of parent ports for phy 3. + static const u32 self_id_sequence[] = { + 0x80000094, + 0x81000080, + 0x820000bc, + 0x830000e8, // Invalid. + }; + struct private_data *data = test->priv; + struct fw_card *card = data->card; + + card->node_id = LOCAL_BUS | 0x03; + + card->local_node = build_tree(card, self_id_sequence, ARRAY_SIZE(self_id_sequence), 123); + KUNIT_EXPECT_NULL(test, card->local_node); +} + +static struct kunit_case node_tree_test_cases[] = { + KUNIT_CASE(node_tree_test_two_nodes), + KUNIT_CASE(node_tree_test_two_nodes_1394a), + KUNIT_CASE(node_tree_test_three_nodes_case0), + KUNIT_CASE(node_tree_test_three_nodes_case1), + KUNIT_CASE(node_tree_test_four_nodes_case0), + KUNIT_CASE(node_tree_test_four_nodes_case1), + KUNIT_CASE(node_tree_test_four_nodes_case2), + KUNIT_CASE(node_tree_test_four_nodes_case3), + KUNIT_CASE(node_tree_test_invalid_extended_self_id_sequence), + KUNIT_CASE(node_tree_test_invalid_phy_id), + KUNIT_CASE(node_tree_test_invalid_child_port_count), + KUNIT_CASE(node_tree_test_invalid_parent_port_count), + {} +}; + +static struct kunit_suite node_tree_test_suite = { + .name = "firewire-node-tree", + .init = node_tree_test_init, + .exit = node_tree_test_exit, + .test_cases = node_tree_test_cases, +}; +kunit_test_suite(node_tree_test_suite); |
