@@ -48,6 +48,9 @@ static inline u64 gcsss2(void)
return Xt;
}
+#define PR_SHADOW_STACK_SUPPORTED_STATUS_MASK \
+ (PR_SHADOW_STACK_ENABLE | PR_SHADOW_STACK_WRITE | PR_SHADOW_STACK_PUSH)
+
#ifdef CONFIG_ARM64_GCS
static inline bool task_gcs_el0_enabled(struct task_struct *task)
@@ -61,6 +64,20 @@ void gcs_preserve_current_state(void);
unsigned long gcs_alloc_thread_stack(struct task_struct *tsk,
unsigned long clone_flags, size_t size);
+static inline int gcs_check_locked(struct task_struct *task,
+ unsigned long new_val)
+{
+ unsigned long cur_val = task->thread.gcs_el0_mode;
+
+ cur_val &= task->thread.gcs_el0_locked;
+ new_val &= task->thread.gcs_el0_locked;
+
+ if (cur_val != new_val)
+ return -EBUSY;
+
+ return 0;
+}
+
#else
static inline bool task_gcs_el0_enabled(struct task_struct *task)
@@ -76,6 +93,11 @@ static inline unsigned long gcs_alloc_thread_stack(struct task_struct *tsk,
{
return -ENOTSUPP;
}
+static inline int gcs_check_locked(struct task_struct *task,
+ unsigned long new_val)
+{
+ return 0;
+}
#endif
@@ -181,6 +181,7 @@ struct thread_struct {
u64 tpidr2_el0;
#ifdef CONFIG_ARM64_GCS
unsigned int gcs_el0_mode;
+ unsigned int gcs_el0_locked;
u64 gcspr_el0;
u64 gcs_base;
u64 gcs_size;
@@ -84,3 +84,85 @@ void gcs_free(struct task_struct *task)
task->thread.gcs_base = 0;
task->thread.gcs_size = 0;
}
+
+int arch_set_shadow_stack_status(struct task_struct *task, unsigned long arg)
+{
+ unsigned long gcs, size;
+ int ret;
+
+ if (!system_supports_gcs())
+ return -EINVAL;
+
+ if (is_compat_thread(task_thread_info(task)))
+ return -EINVAL;
+
+ /* Reject unknown flags */
+ if (arg & ~PR_SHADOW_STACK_SUPPORTED_STATUS_MASK)
+ return -EINVAL;
+
+ ret = gcs_check_locked(task, arg);
+ if (ret != 0)
+ return ret;
+
+ /* If we are enabling GCS then make sure we have a stack */
+ if (arg & PR_SHADOW_STACK_ENABLE) {
+ if (!task_gcs_el0_enabled(task)) {
+ /* Do not allow GCS to be reenabled */
+ if (task->thread.gcs_base)
+ return -EINVAL;
+
+ if (task != current)
+ return -EBUSY;
+
+ size = gcs_size(0);
+ gcs = alloc_gcs(task->thread.gcspr_el0, size,
+ 0, 0);
+ if (!gcs)
+ return -ENOMEM;
+
+ task->thread.gcspr_el0 = gcs + size - sizeof(u64);
+ task->thread.gcs_base = gcs;
+ task->thread.gcs_size = size;
+ if (task == current)
+ write_sysreg_s(task->thread.gcspr_el0,
+ SYS_GCSPR_EL0);
+
+ }
+ }
+
+ task->thread.gcs_el0_mode = arg;
+ if (task == current)
+ gcs_set_el0_mode(task);
+
+ return 0;
+}
+
+int arch_get_shadow_stack_status(struct task_struct *task,
+ unsigned long __user *arg)
+{
+ if (!system_supports_gcs())
+ return -EINVAL;
+
+ if (is_compat_thread(task_thread_info(task)))
+ return -EINVAL;
+
+ return put_user(task->thread.gcs_el0_mode, arg);
+}
+
+int arch_lock_shadow_stack_status(struct task_struct *task,
+ unsigned long arg)
+{
+ if (!system_supports_gcs())
+ return -EINVAL;
+
+ if (is_compat_thread(task_thread_info(task)))
+ return -EINVAL;
+
+ /*
+ * We support locking unknown bits so applications can prevent
+ * any changes in a future proof manner.
+ */
+ task->thread.gcs_el0_locked |= arg;
+
+ return 0;
+}
Implement the architecture neutral prtctl() interface for setting the shadow stack status, this supports setting and reading the current GCS configuration for the current thread. Userspace can enable basic GCS functionality and additionally also support for GCS pushes and arbatrary GCS stores. It is expected that this prctl() will be called very early in application startup, for example by the dynamic linker, and not subsequently adjusted during normal operation. Users should carefully note that after enabling GCS for a thread GCS will become active with no call stack so it is not normally possible to return from the function that invoked the prctl(). State is stored per thread, enabling GCS for a thread causes a GCS to be allocated for that thread. Userspace may lock the current GCS configuration by specifying PR_SHADOW_STACK_ENABLE_LOCK, this prevents any further changes to the GCS configuration via any means. If GCS is not being enabled then all flags other than _LOCK are ignored, it is not possible to enable stores or pops without enabling GCS. When disabling the GCS we do not free the allocated stack, this allows for inspection of the GCS after disabling as part of fault reporting. Since it is not an expected use case and since it presents some complications in determining what to do with previously initialsed data on the GCS attempts to reenable GCS after this are rejected. This can be revisted if a use case arises. Signed-off-by: Mark Brown <broonie@kernel.org> --- arch/arm64/include/asm/gcs.h | 22 ++++++++++ arch/arm64/include/asm/processor.h | 1 + arch/arm64/mm/gcs.c | 82 ++++++++++++++++++++++++++++++++++++++ 3 files changed, 105 insertions(+)