289 lines
9.2 KiB
C
289 lines
9.2 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* KUnit tests for commoncap.c security functions
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*
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* Tests for security-critical functions in the capability subsystem,
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* particularly namespace-related capability checks.
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*/
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#include <kunit/test.h>
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#include <linux/user_namespace.h>
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#include <linux/uidgid.h>
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#include <linux/cred.h>
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#include <linux/mnt_idmapping.h>
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#include <linux/module.h>
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#include <linux/slab.h>
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#include <linux/refcount.h>
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#ifdef CONFIG_SECURITY_COMMONCAP_KUNIT_TEST
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/* Functions are static in commoncap.c, but we can call them since we're
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* included in the same compilation unit when tests are enabled.
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*/
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/**
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* test_vfsuid_root_in_currentns_init_ns - Test vfsuid_root_in_currentns with init ns
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*
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* Verifies that UID 0 in the init namespace correctly owns the current
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* namespace when running in init_user_ns.
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*
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* @test: KUnit test context
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*/
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static void test_vfsuid_root_in_currentns_init_ns(struct kunit *test)
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{
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vfsuid_t vfsuid;
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kuid_t kuid;
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/* Create UID 0 in init namespace */
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kuid = KUIDT_INIT(0);
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vfsuid = VFSUIDT_INIT(kuid);
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/* In init namespace, UID 0 should own current namespace */
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KUNIT_EXPECT_TRUE(test, vfsuid_root_in_currentns(vfsuid));
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}
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/**
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* test_vfsuid_root_in_currentns_invalid - Test vfsuid_root_in_currentns with invalid vfsuid
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*
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* Verifies that an invalid vfsuid correctly returns false.
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*
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* @test: KUnit test context
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*/
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static void test_vfsuid_root_in_currentns_invalid(struct kunit *test)
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{
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vfsuid_t invalid_vfsuid;
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/* Use the predefined invalid vfsuid */
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invalid_vfsuid = INVALID_VFSUID;
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/* Invalid vfsuid should return false */
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KUNIT_EXPECT_FALSE(test, vfsuid_root_in_currentns(invalid_vfsuid));
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}
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/**
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* test_vfsuid_root_in_currentns_nonzero - Test vfsuid_root_in_currentns with non-zero UID
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*
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* Verifies that a non-zero UID correctly returns false.
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*
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* @test: KUnit test context
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*/
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static void test_vfsuid_root_in_currentns_nonzero(struct kunit *test)
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{
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vfsuid_t vfsuid;
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kuid_t kuid;
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/* Create a non-zero UID */
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kuid = KUIDT_INIT(1000);
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vfsuid = VFSUIDT_INIT(kuid);
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/* Non-zero UID should return false */
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KUNIT_EXPECT_FALSE(test, vfsuid_root_in_currentns(vfsuid));
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}
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/**
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* test_kuid_root_in_ns_init_ns_uid0 - Test kuid_root_in_ns with init namespace and UID 0
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*
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* Verifies that kuid_root_in_ns correctly identifies UID 0 in init namespace.
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* This tests the core namespace traversal logic. In init namespace, UID 0
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* maps to itself, so it should own the namespace.
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*
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* @test: KUnit test context
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*/
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static void test_kuid_root_in_ns_init_ns_uid0(struct kunit *test)
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{
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kuid_t kuid;
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struct user_namespace *init_ns;
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kuid = KUIDT_INIT(0);
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init_ns = &init_user_ns;
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/* UID 0 should own init namespace */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(kuid, init_ns));
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}
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/**
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* test_kuid_root_in_ns_init_ns_nonzero - Test kuid_root_in_ns with init namespace and non-zero UID
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*
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* Verifies that kuid_root_in_ns correctly rejects non-zero UIDs in init namespace.
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* Only UID 0 should own a namespace.
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*
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* @test: KUnit test context
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*/
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static void test_kuid_root_in_ns_init_ns_nonzero(struct kunit *test)
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{
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kuid_t kuid;
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struct user_namespace *init_ns;
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kuid = KUIDT_INIT(1000);
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init_ns = &init_user_ns;
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/* Non-zero UID should not own namespace */
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(kuid, init_ns));
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}
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/**
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* create_test_user_ns_with_mapping - Create a mock user namespace with UID mapping
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*
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* Creates a minimal user namespace structure for testing where uid 0 in the
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* namespace maps to a specific kuid in the parent namespace.
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*
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* @test: KUnit test context
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* @parent_ns: Parent namespace (typically init_user_ns)
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* @mapped_kuid: The kuid that uid 0 in this namespace maps to in parent
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*
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* Returns: Pointer to allocated namespace, or NULL on failure
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*/
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static struct user_namespace *create_test_user_ns_with_mapping(struct kunit *test,
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struct user_namespace *parent_ns,
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kuid_t mapped_kuid)
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{
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struct user_namespace *ns;
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struct uid_gid_extent extent;
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/* Allocate a test namespace - use kzalloc to zero all fields */
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ns = kunit_kzalloc(test, sizeof(*ns), GFP_KERNEL);
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if (!ns)
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return NULL;
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/* Initialize basic namespace structure fields */
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ns->parent = parent_ns;
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ns->level = parent_ns ? parent_ns->level + 1 : 0;
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ns->owner = mapped_kuid;
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ns->group = KGIDT_INIT(0);
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/* Initialize ns_common structure */
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refcount_set(&ns->ns.__ns_ref, 1);
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ns->ns.inum = 0; /* Mock inum */
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/* Set up uid mapping: uid 0 in this namespace maps to mapped_kuid in parent
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* Format: first (uid in ns) : lower_first (kuid in parent) : count
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* So: uid 0 in ns -> kuid mapped_kuid in parent
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* This means from_kuid(ns, mapped_kuid) returns 0
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*/
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extent.first = 0; /* uid 0 in this namespace */
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extent.lower_first = __kuid_val(mapped_kuid); /* maps to this kuid in parent */
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extent.count = 1;
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ns->uid_map.extent[0] = extent;
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ns->uid_map.nr_extents = 1;
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/* Set up gid mapping: gid 0 maps to gid 0 in parent (simplified) */
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extent.first = 0;
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extent.lower_first = 0;
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extent.count = 1;
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ns->gid_map.extent[0] = extent;
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ns->gid_map.nr_extents = 1;
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return ns;
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}
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/**
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* test_kuid_root_in_ns_with_mapping - Test kuid_root_in_ns with namespace where uid 0
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* maps to different kuid
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*
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* Creates a user namespace where uid 0 maps to kuid 1000 in the parent namespace.
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* Verifies that kuid_root_in_ns correctly identifies kuid 1000 as owning the namespace.
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*
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* Note: kuid_root_in_ns walks up the namespace hierarchy, so it checks the current
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* namespace first, then parent, then parent's parent, etc. So:
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* - kuid 1000 owns test_ns because from_kuid(test_ns, 1000) == 0
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* - kuid 0 also owns test_ns because from_kuid(init_user_ns, 0) == 0
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* (checked in parent)
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*
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* This tests the actual functionality as requested: creating namespaces with
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* different values for the namespace's uid 0.
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*
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* @test: KUnit test context
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*/
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static void test_kuid_root_in_ns_with_mapping(struct kunit *test)
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{
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struct user_namespace *test_ns;
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struct user_namespace *parent_ns;
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kuid_t mapped_kuid, other_kuid;
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parent_ns = &init_user_ns;
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mapped_kuid = KUIDT_INIT(1000);
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other_kuid = KUIDT_INIT(2000);
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test_ns = create_test_user_ns_with_mapping(test, parent_ns, mapped_kuid);
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KUNIT_ASSERT_NOT_ERR_OR_NULL(test, test_ns);
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/* kuid 1000 should own test_ns because it maps to uid 0 in test_ns */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(mapped_kuid, test_ns));
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/* kuid 0 should also own test_ns (checked via parent init_user_ns) */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(0), test_ns));
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/* Other kuids should not own test_ns */
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(other_kuid, test_ns));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(500), test_ns));
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}
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/**
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* test_kuid_root_in_ns_with_different_mappings - Test with multiple namespaces
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*
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* Creates multiple user namespaces with different UID mappings to verify
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* that kuid_root_in_ns correctly distinguishes between namespaces.
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*
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* Each namespace maps uid 0 to a different kuid, and we verify that each
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* kuid only owns its corresponding namespace (plus kuid 0 owns all via
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* init_user_ns parent).
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*
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* @test: KUnit test context
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*/
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static void test_kuid_root_in_ns_with_different_mappings(struct kunit *test)
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{
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struct user_namespace *ns1, *ns2, *ns3;
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/* Create three independent namespaces, each mapping uid 0 to different kuids */
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ns1 = create_test_user_ns_with_mapping(test, &init_user_ns, KUIDT_INIT(1000));
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KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ns1);
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ns2 = create_test_user_ns_with_mapping(test, &init_user_ns, KUIDT_INIT(2000));
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KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ns2);
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ns3 = create_test_user_ns_with_mapping(test, &init_user_ns, KUIDT_INIT(3000));
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KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ns3);
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/* Test ns1: kuid 1000 owns it, kuid 0 owns it (via parent), others do not */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(1000), ns1));
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(0), ns1));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(2000), ns1));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(3000), ns1));
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/* Test ns2: kuid 2000 owns it, kuid 0 owns it (via parent), others do not */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(2000), ns2));
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(0), ns2));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(1000), ns2));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(3000), ns2));
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/* Test ns3: kuid 3000 owns it, kuid 0 owns it (via parent), others do not */
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(3000), ns3));
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KUNIT_EXPECT_TRUE(test, kuid_root_in_ns(KUIDT_INIT(0), ns3));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(1000), ns3));
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KUNIT_EXPECT_FALSE(test, kuid_root_in_ns(KUIDT_INIT(2000), ns3));
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}
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static struct kunit_case commoncap_test_cases[] = {
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KUNIT_CASE(test_vfsuid_root_in_currentns_init_ns),
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KUNIT_CASE(test_vfsuid_root_in_currentns_invalid),
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KUNIT_CASE(test_vfsuid_root_in_currentns_nonzero),
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KUNIT_CASE(test_kuid_root_in_ns_init_ns_uid0),
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KUNIT_CASE(test_kuid_root_in_ns_init_ns_nonzero),
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KUNIT_CASE(test_kuid_root_in_ns_with_mapping),
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KUNIT_CASE(test_kuid_root_in_ns_with_different_mappings),
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{}
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};
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static struct kunit_suite commoncap_test_suite = {
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.name = "commoncap",
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.test_cases = commoncap_test_cases,
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};
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kunit_test_suite(commoncap_test_suite);
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MODULE_LICENSE("GPL");
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#endif /* CONFIG_SECURITY_COMMONCAP_KUNIT_TEST */
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