mirror of
https://github.com/clearlinux/graphene.git
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356 lines
9.0 KiB
C
356 lines
9.0 KiB
C
#ifndef _SHIM_THREAD_H_
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#define _SHIM_THREAD_H_
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#include <shim_defs.h>
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#include <shim_internal.h>
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#include <shim_tls.h>
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#include <shim_utils.h>
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#include <shim_signal.h>
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#include <shim_handle.h>
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#include <shim_vma.h>
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#include <pal.h>
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#include <list.h>
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struct shim_handle;
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struct shim_fd_map;
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struct shim_dentry;
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struct shim_signal_handle;
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struct shim_signal_log;
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DEFINE_LIST(shim_thread);
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DEFINE_LISTP(shim_thread);
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struct shim_thread {
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/* thread identifiers */
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IDTYPE vmid;
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IDTYPE pgid, ppid, tgid, tid;
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bool in_vm;
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LEASETYPE tid_lease;
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/* credentials */
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IDTYPE uid, gid, euid, egid;
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/* thread pal handle */
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PAL_HANDLE pal_handle;
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/* parent handle */
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struct shim_thread * parent;
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/* thread leader */
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struct shim_thread * leader;
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#ifndef ALIAS_VFORK_AS_FORK
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/* dummy thread: stores blocked parent thread for vfork */
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struct shim_thread * dummy;
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#endif
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/* child handles; protected by thread->lock */
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LISTP_TYPE(shim_thread) children;
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/* nodes in child handles; protected by the parent's lock */
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LIST_TYPE(shim_thread) siblings;
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/* nodes in global handles; protected by thread_list_lock */
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LIST_TYPE(shim_thread) list;
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struct shim_handle_map * handle_map;
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/* child tid */
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int * set_child_tid, * clear_child_tid;
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/* signal handling */
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__sigset_t signal_mask;
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struct shim_signal_handle signal_handles[NUM_SIGS];
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struct atomic_int has_signal;
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struct shim_signal_log * signal_logs;
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bool suspend_on_signal;
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stack_t signal_altstack;
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/* futex robust list */
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void * robust_list;
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PAL_HANDLE scheduler_event;
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PAL_HANDLE exit_event;
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int exit_code;
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int term_signal; // Store the terminating signal, if any; needed for
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// wait() and friends
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bool is_alive;
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PAL_HANDLE child_exit_event;
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LISTP_TYPE(shim_thread) exited_children;
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/* file system */
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struct shim_dentry * root, * cwd;
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mode_t umask;
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/* executable */
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struct shim_handle * exec;
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void * stack, * stack_top, * stack_red;
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__libc_tcb_t * tcb;
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bool user_tcb; /* is tcb assigned by user? */
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void * frameptr;
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REFTYPE ref_count;
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struct shim_lock lock;
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#ifdef PROFILE
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unsigned long exit_time;
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#endif
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};
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DEFINE_LIST(shim_simple_thread);
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struct shim_simple_thread {
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/* VMID and PIDs */
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IDTYPE vmid;
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IDTYPE pgid, tgid, tid;
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/* exit event and status */
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PAL_HANDLE exit_event;
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int exit_code;
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int term_signal;
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bool is_alive;
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/* nodes in global handles */
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LIST_TYPE(shim_simple_thread) list;
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REFTYPE ref_count;
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struct shim_lock lock;
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#ifdef PROFILE
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unsigned long exit_time;
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#endif
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};
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int init_thread (void);
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static inline struct shim_thread * shim_thread_self(void)
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{
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struct shim_thread * __self;
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__asm__ ("movq %%fs:%c1,%q0" : "=r" (__self)
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: "i" (offsetof(__libc_tcb_t, shim_tcb.tp)));
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return __self;
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}
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static inline struct shim_thread * save_shim_thread_self(struct shim_thread * __self)
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{
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__asm__ ("movq %q0,%%fs:%c1" : : "r" (__self),
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"i" (offsetof(__libc_tcb_t, shim_tcb.tp)));
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return __self;
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}
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static inline bool is_internal(struct shim_thread *thread)
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{
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return thread->tid >= INTERNAL_TID_BASE;
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}
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void get_thread (struct shim_thread * thread);
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void put_thread (struct shim_thread * thread);
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void get_simple_thread (struct shim_simple_thread * thread);
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void put_simple_thread (struct shim_simple_thread * thread);
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void allocate_tls (__libc_tcb_t * tcb_location, bool user, struct shim_thread * thread);
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void populate_tls (__libc_tcb_t * tcb_location, bool user);
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void debug_setprefix (shim_tcb_t * tcb);
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static inline
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__attribute__((always_inline))
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void debug_setbuf (shim_tcb_t * tcb, bool on_stack)
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{
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if (!debug_handle)
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return;
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tcb->debug_buf = on_stack ? __alloca(sizeof(struct debug_buf)) :
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malloc(sizeof(struct debug_buf));
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debug_setprefix(tcb);
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}
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static inline
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__attribute__((always_inline))
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struct shim_thread * get_cur_thread (void)
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{
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return shim_thread_self();
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}
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static inline
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__attribute__((always_inline))
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bool cur_thread_is_alive (void)
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{
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struct shim_thread * thread = get_cur_thread();
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return thread ? thread->is_alive : false;
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}
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static inline
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__attribute__((always_inline))
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void set_cur_thread (struct shim_thread * thread)
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{
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shim_tcb_t * tcb = shim_get_tls();
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IDTYPE tid = 0;
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if (thread) {
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if (tcb->tp && tcb->tp != thread)
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put_thread(tcb->tp);
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if (tcb->tp != thread)
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get_thread(thread);
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tcb->tp = thread;
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thread->tcb = container_of(tcb, __libc_tcb_t, shim_tcb);
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tid = thread->tid;
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if (!is_internal(thread) && !thread->signal_logs)
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thread->signal_logs = malloc(sizeof(struct shim_signal_log) *
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NUM_SIGS);
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} else if (tcb->tp) {
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put_thread(tcb->tp);
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tcb->tp = NULL;
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} else {
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BUG();
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}
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if (tcb->tid != tid) {
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tcb->tid = tid;
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debug_setprefix(tcb);
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}
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}
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static inline void thread_setwait (struct shim_thread ** queue,
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struct shim_thread * thread)
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{
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if (!thread)
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thread = get_cur_thread();
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get_thread(thread);
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DkEventClear(thread->scheduler_event);
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if (queue)
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*queue = thread;
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}
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static inline int thread_sleep (uint64_t timeout_us)
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{
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struct shim_thread * cur_thread = get_cur_thread();
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if (!cur_thread)
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return -EINVAL;
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PAL_HANDLE event = cur_thread->scheduler_event;
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if (!event)
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return -EINVAL;
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if ( NULL == DkObjectsWaitAny(1, &event, timeout_us))
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return -PAL_ERRNO;
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return 0;
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}
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static inline void thread_wakeup (struct shim_thread * thread)
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{
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DkEventSet(thread->scheduler_event);
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}
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extern struct shim_lock thread_list_lock;
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struct shim_thread * __lookup_thread (IDTYPE tid);
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struct shim_thread * lookup_thread (IDTYPE tid);
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struct shim_simple_thread * __lookup_simple_thread (IDTYPE tid);
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struct shim_simple_thread * lookup_simple_thread (IDTYPE tid);
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void set_as_child (struct shim_thread * parent, struct shim_thread * child);
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/* creating and revoking thread objects */
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struct shim_thread * get_new_thread (IDTYPE new_tid);
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struct shim_thread * get_new_internal_thread (void);
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struct shim_simple_thread * get_new_simple_thread (void);
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/* thread list utilities */
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void add_thread (struct shim_thread * thread);
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void del_thread (struct shim_thread * thread);
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void add_simple_thread (struct shim_simple_thread * thread);
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void del_simple_thread (struct shim_simple_thread * thread);
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int check_last_thread (struct shim_thread * self);
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#ifndef ALIAS_VFORK_AS_FORK
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void switch_dummy_thread (struct shim_thread * thread);
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#endif
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int walk_thread_list (int (*callback) (struct shim_thread *, void *, bool *),
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void * arg);
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int walk_simple_thread_list (int (*callback) (struct shim_simple_thread *,
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void *, bool *),
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void * arg);
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/* reference counting of handle maps */
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void get_handle_map (struct shim_handle_map * map);
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void put_handle_map (struct shim_handle_map * map);
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/* retriving handle mapping */
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static inline __attribute__((always_inline))
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struct shim_handle_map * get_cur_handle_map (struct shim_thread * thread)
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{
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if (!thread)
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thread = get_cur_thread();
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return thread ? thread->handle_map : NULL;
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}
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static inline __attribute__((always_inline))
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void set_handle_map (struct shim_thread * thread,
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struct shim_handle_map * map)
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{
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get_handle_map(map);
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if (!thread)
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thread = get_cur_thread();
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if (thread->handle_map)
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put_handle_map(thread->handle_map);
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thread->handle_map = map;
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}
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/* shim exit callback */
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int thread_exit (struct shim_thread * self, bool send_ipc);
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/* If the process was killed by a signal, pass it in the second
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* argument, else pass zero */
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int try_process_exit (int error_code, int term_signal);
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/* thread cloning helpers */
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struct clone_args {
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PAL_HANDLE create_event;
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PAL_HANDLE initialize_event;
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struct shim_thread * parent, * thread;
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void * stack;
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};
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int clone_implementation_wrapper(struct clone_args * arg);
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void * allocate_stack (size_t size, size_t protect_size, bool user);
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static inline __attribute__((always_inline))
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bool check_stack_size (struct shim_thread * cur_thread, int size)
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{
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if (!cur_thread)
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cur_thread = get_cur_thread();
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void * rsp;
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__asm__ volatile ("movq %%rsp, %0" : "=r"(rsp) :: "memory");
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if (rsp <= cur_thread->stack_top && rsp > cur_thread->stack)
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return size < rsp - cur_thread->stack;
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return false;
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}
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static inline __attribute__((always_inline))
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bool check_on_stack (struct shim_thread * cur_thread, void * mem)
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{
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if (!cur_thread)
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cur_thread = get_cur_thread();
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return (mem <= cur_thread->stack_top && mem > cur_thread->stack);
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}
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int init_stack (const char ** argv, const char ** envp,
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int ** argcpp, const char *** argpp,
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elf_auxv_t ** auxpp, size_t reserve);
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#endif /* _SHIM_THREAD_H_ */
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