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@@ -13,28 +13,24 @@
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/* GNU Library General Public License for more details. */
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/* GNU Library General Public License for more details. */
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#ifndef _INTERNALS_H
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#ifndef _INTERNALS_H
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-#define _INTERNALS_H 1
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+#define _INTERNALS_H 1
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/* Internal data structures */
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/* Internal data structures */
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/* Includes */
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/* Includes */
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-#include <features.h>
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#include <bits/libc-tsd.h> /* for _LIBC_TSD_KEY_N */
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#include <bits/libc-tsd.h> /* for _LIBC_TSD_KEY_N */
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#include <limits.h>
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#include <limits.h>
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#include <setjmp.h>
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#include <setjmp.h>
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#include <signal.h>
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#include <signal.h>
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#include <unistd.h>
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#include <unistd.h>
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-#include <bits/stackinfo.h>
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#include <sys/types.h>
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#include <sys/types.h>
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#include "pt-machine.h"
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#include "pt-machine.h"
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-#include <ucontext.h>
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-#include <bits/sigcontextinfo.h>
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#include "semaphore.h"
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#include "semaphore.h"
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+#include "../linuxthreads_db/thread_dbP.h"
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#ifdef __UCLIBC_HAS_XLOCALE__
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#ifdef __UCLIBC_HAS_XLOCALE__
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#include <bits/uClibc_locale.h>
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#include <bits/uClibc_locale.h>
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#endif /* __UCLIBC_HAS_XLOCALE__ */
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#endif /* __UCLIBC_HAS_XLOCALE__ */
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-#include "descr.h"
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/* Use a funky version in a probably vein attempt at preventing gdb
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/* Use a funky version in a probably vein attempt at preventing gdb
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* from dlopen()'ing glibc's libthread_db library... */
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* from dlopen()'ing glibc's libthread_db library... */
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@@ -55,14 +51,30 @@
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# define THREAD_SETMEM_NC(descr, member, value) descr->member = (value)
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# define THREAD_SETMEM_NC(descr, member, value) descr->member = (value)
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#endif
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#endif
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-#if !defined NOT_IN_libc && defined FLOATING_STACKS
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-# define LIBC_THREAD_GETMEM(descr, member) THREAD_GETMEM (descr, member)
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-# define LIBC_THREAD_SETMEM(descr, member, value) \
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- THREAD_SETMEM (descr, member, value)
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-#else
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-# define LIBC_THREAD_GETMEM(descr, member) descr->member
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-# define LIBC_THREAD_SETMEM(descr, member, value) descr->member = (value)
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-#endif
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+/* Arguments passed to thread creation routine */
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+
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+struct pthread_start_args {
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+ void * (*start_routine)(void *); /* function to run */
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+ void * arg; /* its argument */
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+ sigset_t mask; /* initial signal mask for thread */
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+ int schedpolicy; /* initial scheduling policy (if any) */
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+ struct sched_param schedparam; /* initial scheduling parameters (if any) */
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+};
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+
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+
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+/* We keep thread specific data in a special data structure, a two-level
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+ array. The top-level array contains pointers to dynamically allocated
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+ arrays of a certain number of data pointers. So we can implement a
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+ sparse array. Each dynamic second-level array has
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+ PTHREAD_KEY_2NDLEVEL_SIZE
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+ entries. This value shouldn't be too large. */
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+#define PTHREAD_KEY_2NDLEVEL_SIZE 32
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+
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+/* We need to address PTHREAD_KEYS_MAX key with PTHREAD_KEY_2NDLEVEL_SIZE
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+ keys in each subarray. */
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+#define PTHREAD_KEY_1STLEVEL_SIZE \
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+ ((PTHREAD_KEYS_MAX + PTHREAD_KEY_2NDLEVEL_SIZE - 1) \
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+ / PTHREAD_KEY_2NDLEVEL_SIZE)
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typedef void (*destr_function)(void *);
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typedef void (*destr_function)(void *);
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@@ -72,9 +84,105 @@ struct pthread_key_struct {
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};
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};
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-#define PTHREAD_START_ARGS_INITIALIZER(fct) \
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- { (void *(*) (void *)) fct, NULL, {{0, }}, 0, { 0 } }
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+#define PTHREAD_START_ARGS_INITIALIZER { NULL, NULL, {{0, }}, 0, { 0 } }
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+
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+/* The type of thread descriptors */
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+
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+typedef struct _pthread_descr_struct * pthread_descr;
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+
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+/* Callback interface for removing the thread from waiting on an
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+ object if it is cancelled while waiting or about to wait.
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+ This hold a pointer to the object, and a pointer to a function
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+ which ``extricates'' the thread from its enqueued state.
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+ The function takes two arguments: pointer to the wait object,
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+ and a pointer to the thread. It returns 1 if an extrication
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+ actually occured, and hence the thread must also be signalled.
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+ It returns 0 if the thread had already been extricated. */
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+
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+typedef struct _pthread_extricate_struct {
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+ void *pu_object;
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+ int (*pu_extricate_func)(void *, pthread_descr);
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+} pthread_extricate_if;
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+
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+/* Atomic counter made possible by compare_and_swap */
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+
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+struct pthread_atomic {
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+ long p_count;
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+ int p_spinlock;
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+};
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+/* Context info for read write locks. The pthread_rwlock_info structure
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+ is information about a lock that has been read-locked by the thread
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+ in whose list this structure appears. The pthread_rwlock_context
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+ is embedded in the thread context and contains a pointer to the
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+ head of the list of lock info structures, as well as a count of
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+ read locks that are untracked, because no info structure could be
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+ allocated for them. */
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+
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+struct _pthread_rwlock_t;
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+
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+typedef struct _pthread_rwlock_info {
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+ struct _pthread_rwlock_info *pr_next;
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+ struct _pthread_rwlock_t *pr_lock;
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+ int pr_lock_count;
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+} pthread_readlock_info;
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+
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+struct _pthread_descr_struct {
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+ pthread_descr p_nextlive, p_prevlive;
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+ /* Double chaining of active threads */
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+ pthread_descr p_nextwaiting; /* Next element in the queue holding the thr */
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+ pthread_descr p_nextlock; /* can be on a queue and waiting on a lock */
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+ pthread_t p_tid; /* Thread identifier */
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+ int p_pid; /* PID of Unix process */
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+ int p_priority; /* Thread priority (== 0 if not realtime) */
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+ struct _pthread_fastlock * p_lock; /* Spinlock for synchronized accesses */
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+ int p_signal; /* last signal received */
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+ sigjmp_buf * p_signal_jmp; /* where to siglongjmp on a signal or NULL */
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+ sigjmp_buf * p_cancel_jmp; /* where to siglongjmp on a cancel or NULL */
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+ char p_terminated; /* true if terminated e.g. by pthread_exit */
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+ char p_detached; /* true if detached */
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+ char p_exited; /* true if the assoc. process terminated */
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+ void * p_retval; /* placeholder for return value */
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+ int p_retcode; /* placeholder for return code */
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+ pthread_descr p_joining; /* thread joining on that thread or NULL */
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+ struct _pthread_cleanup_buffer * p_cleanup; /* cleanup functions */
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+ char p_cancelstate; /* cancellation state */
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+ char p_canceltype; /* cancellation type (deferred/async) */
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+ char p_canceled; /* cancellation request pending */
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+ int * p_errnop; /* pointer to used errno variable */
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+ int p_errno; /* error returned by last system call */
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+ int * p_h_errnop; /* pointer to used h_errno variable */
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+ int p_h_errno; /* error returned by last netdb function */
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+ char * p_in_sighandler; /* stack address of sighandler, or NULL */
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+ char p_sigwaiting; /* true if a sigwait() is in progress */
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+ struct pthread_start_args p_start_args; /* arguments for thread creation */
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+ void ** p_specific[PTHREAD_KEY_1STLEVEL_SIZE]; /* thread-specific data */
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+ void * p_libc_specific[_LIBC_TSD_KEY_N]; /* thread-specific data for libc */
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+ int p_userstack; /* nonzero if the user provided the stack */
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+ void *p_guardaddr; /* address of guard area or NULL */
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+ size_t p_guardsize; /* size of guard area */
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+ pthread_descr p_self; /* Pointer to this structure */
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+ int p_nr; /* Index of descriptor in __pthread_handles */
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+ int p_report_events; /* Nonzero if events must be reported. */
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+ td_eventbuf_t p_eventbuf; /* Data for event. */
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+ struct pthread_atomic p_resume_count; /* number of times restart() was
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+ called on thread */
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+ char p_woken_by_cancel; /* cancellation performed wakeup */
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+ char p_condvar_avail; /* flag if conditional variable became avail */
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+ char p_sem_avail; /* flag if semaphore became available */
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+ pthread_extricate_if *p_extricate; /* See above */
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+ pthread_readlock_info *p_readlock_list; /* List of readlock info structs */
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+ pthread_readlock_info *p_readlock_free; /* Free list of structs */
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+ int p_untracked_readlock_count; /* Readlocks not tracked by list */
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+ /* New elements must be added at the end. */
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+#ifdef __UCLIBC_HAS_XLOCALE__
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+ __locale_t locale; /* thread-specific locale from uselocale() only! */
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+#endif /* __UCLIBC_HAS_XLOCALE__ */
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+} __attribute__ ((aligned(32))); /* We need to align the structure so that
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+ doubles are aligned properly. This is 8
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+ bytes on MIPS and 16 bytes on MIPS64.
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+ 32 bytes might give better cache
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+ utilization. */
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/* The type of thread handles. */
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/* The type of thread handles. */
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@@ -92,7 +200,7 @@ struct pthread_request {
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pthread_descr req_thread; /* Thread doing the request */
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pthread_descr req_thread; /* Thread doing the request */
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enum { /* Request kind */
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enum { /* Request kind */
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REQ_CREATE, REQ_FREE, REQ_PROCESS_EXIT, REQ_MAIN_THREAD_EXIT,
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REQ_CREATE, REQ_FREE, REQ_PROCESS_EXIT, REQ_MAIN_THREAD_EXIT,
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- REQ_POST, REQ_DEBUG, REQ_KICK, REQ_FOR_EACH_THREAD
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+ REQ_POST, REQ_DEBUG, REQ_KICK
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} req_kind;
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} req_kind;
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union { /* Arguments for request */
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union { /* Arguments for request */
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struct { /* For REQ_CREATE: */
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struct { /* For REQ_CREATE: */
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@@ -108,24 +216,10 @@ struct pthread_request {
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int code; /* exit status */
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int code; /* exit status */
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} exit;
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} exit;
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void * post; /* For REQ_POST: the semaphore */
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void * post; /* For REQ_POST: the semaphore */
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- struct { /* For REQ_FOR_EACH_THREAD: callback */
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- void (*fn)(void *, pthread_descr);
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- void *arg;
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- } for_each;
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} req_args;
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} req_args;
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};
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};
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-
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-typedef void (*arch_sighandler_t) (int, SIGCONTEXT);
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-union sighandler
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-{
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- arch_sighandler_t old;
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- void (*rt) (int, struct siginfo *, struct ucontext *);
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-};
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-extern union sighandler __sighandler[NSIG];
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-
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-
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/* Signals used for suspend/restart and for cancellation notification. */
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/* Signals used for suspend/restart and for cancellation notification. */
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extern int __pthread_sig_restart;
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extern int __pthread_sig_restart;
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@@ -141,10 +235,44 @@ extern int __pthread_sig_debug;
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extern struct pthread_handle_struct __pthread_handles[PTHREAD_THREADS_MAX];
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extern struct pthread_handle_struct __pthread_handles[PTHREAD_THREADS_MAX];
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+/* Descriptor of the initial thread */
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+
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+extern struct _pthread_descr_struct __pthread_initial_thread;
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+
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+/* Descriptor of the manager thread */
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+
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+extern struct _pthread_descr_struct __pthread_manager_thread;
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+
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/* Descriptor of the main thread */
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/* Descriptor of the main thread */
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extern pthread_descr __pthread_main_thread;
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extern pthread_descr __pthread_main_thread;
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+/* Limit between the stack of the initial thread (above) and the
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+ stacks of other threads (below). Aligned on a STACK_SIZE boundary.
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+ Initially 0, meaning that the current thread is (by definition)
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+ the initial thread. */
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+
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+/* For non-MMU systems also remember to stack top of the initial thread.
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+ * This is adapted when other stacks are malloc'ed since we don't know
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+ * the bounds a-priori. -StS */
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+
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+extern char *__pthread_initial_thread_bos;
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+#ifndef __ARCH_HAS_MMU__
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+extern char *__pthread_initial_thread_tos;
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+#define NOMMU_INITIAL_THREAD_BOUNDS(tos,bos) \
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+ if ((tos)>=__pthread_initial_thread_bos \
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+ && (bos)<__pthread_initial_thread_tos) \
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+ __pthread_initial_thread_bos = (tos)+1
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+#else
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+#define NOMMU_INITIAL_THREAD_BOUNDS(tos,bos) /* empty */
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+#endif /* __ARCH_HAS_MMU__ */
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+
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+
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+/* Indicate whether at least one thread has a user-defined stack (if 1),
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+ or all threads have stacks supplied by LinuxThreads (if 0). */
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+
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+extern int __pthread_nonstandard_stacks;
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+
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/* File descriptor for sending requests to the thread manager.
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/* File descriptor for sending requests to the thread manager.
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Initially -1, meaning that __pthread_initialize_manager must be called. */
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Initially -1, meaning that __pthread_initialize_manager must be called. */
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@@ -154,10 +282,10 @@ extern int __pthread_manager_request;
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extern int __pthread_manager_reader;
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extern int __pthread_manager_reader;
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-#ifdef FLOATING_STACKS
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-/* Maximum stack size. */
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-extern size_t __pthread_max_stacksize;
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-#endif
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+/* Limits of the thread manager stack. */
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+
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+extern char *__pthread_manager_thread_bos;
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+extern char *__pthread_manager_thread_tos;
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/* Pending request for a process-wide exit */
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/* Pending request for a process-wide exit */
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@@ -173,9 +301,6 @@ extern volatile td_thr_events_t __pthread_threads_events;
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/* Pointer to descriptor of thread with last event. */
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/* Pointer to descriptor of thread with last event. */
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extern volatile pthread_descr __pthread_last_event;
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extern volatile pthread_descr __pthread_last_event;
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-/* Flag which tells whether we are executing on SMP kernel. */
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-extern int __pthread_smp_kernel;
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-
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/* Return the handle corresponding to a thread id */
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/* Return the handle corresponding to a thread id */
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static inline pthread_handle thread_handle(pthread_t id)
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static inline pthread_handle thread_handle(pthread_t id)
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@@ -186,28 +311,29 @@ static inline pthread_handle thread_handle(pthread_t id)
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/* Validate a thread handle. Must have acquired h->h_spinlock before. */
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/* Validate a thread handle. Must have acquired h->h_spinlock before. */
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static inline int invalid_handle(pthread_handle h, pthread_t id)
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static inline int invalid_handle(pthread_handle h, pthread_t id)
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-{
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- return h->h_descr == NULL || h->h_descr->p_tid != id || h->h_descr->p_terminated;
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-}
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-
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-static inline int nonexisting_handle(pthread_handle h, pthread_t id)
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{
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{
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return h->h_descr == NULL || h->h_descr->p_tid != id;
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return h->h_descr == NULL || h->h_descr->p_tid != id;
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}
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}
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/* Fill in defaults left unspecified by pt-machine.h. */
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/* Fill in defaults left unspecified by pt-machine.h. */
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-/* We round up a value with page size. */
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-#ifndef page_roundup
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-#define page_roundup(v,p) ((((size_t) (v)) + (p) - 1) & ~((p) - 1))
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-#endif
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-
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/* The page size we can get from the system. This should likely not be
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/* The page size we can get from the system. This should likely not be
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changed by the machine file but, you never know. */
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changed by the machine file but, you never know. */
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extern size_t __pagesize;
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extern size_t __pagesize;
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#include <bits/uClibc_page.h>
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#include <bits/uClibc_page.h>
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#ifndef PAGE_SIZE
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#ifndef PAGE_SIZE
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-#define PAGE_SIZE (sysconf (_SC_PAGE_SIZE))
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+#define PAGE_SIZE (sysconf (_SC_PAGESIZE))
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+#endif
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+
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+/* The max size of the thread stack segments. If the default
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+ THREAD_SELF implementation is used, this must be a power of two and
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+ a multiple of PAGE_SIZE. */
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+#ifndef STACK_SIZE
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+#ifdef __ARCH_HAS_MMU__
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+#define STACK_SIZE (2 * 1024 * 1024)
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+#else
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+#define STACK_SIZE (4 * __pagesize)
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+#endif
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#endif
|
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#endif
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/* The initial size of the thread stack. Must be a multiple of PAGE_SIZE. */
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/* The initial size of the thread stack. Must be a multiple of PAGE_SIZE. */
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@@ -228,12 +354,17 @@ extern size_t __pagesize;
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#define THREAD_STACK_START_ADDRESS __pthread_initial_thread_bos
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#define THREAD_STACK_START_ADDRESS __pthread_initial_thread_bos
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|
#endif
|
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#endif
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+/* Get some notion of the current stack. Need not be exactly the top
|
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+ of the stack, just something somewhere in the current frame. */
|
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|
|
+#ifndef CURRENT_STACK_FRAME
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+#define CURRENT_STACK_FRAME ({ char __csf; &__csf; })
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|
|
+#endif
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+
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|
|
/* If MEMORY_BARRIER isn't defined in pt-machine.h, assume the
|
|
/* If MEMORY_BARRIER isn't defined in pt-machine.h, assume the
|
|
|
architecture doesn't need a memory barrier instruction (e.g. Intel
|
|
architecture doesn't need a memory barrier instruction (e.g. Intel
|
|
|
x86). Still we need the compiler to respect the barrier and emit
|
|
x86). Still we need the compiler to respect the barrier and emit
|
|
|
all outstanding operations which modify memory. Some architectures
|
|
all outstanding operations which modify memory. Some architectures
|
|
|
distinguish between full, read and write barriers. */
|
|
distinguish between full, read and write barriers. */
|
|
|
-
|
|
|
|
|
#ifndef MEMORY_BARRIER
|
|
#ifndef MEMORY_BARRIER
|
|
|
#define MEMORY_BARRIER() asm ("" : : : "memory")
|
|
#define MEMORY_BARRIER() asm ("" : : : "memory")
|
|
|
#endif
|
|
#endif
|
|
@@ -244,6 +375,54 @@ extern size_t __pagesize;
|
|
|
#define WRITE_MEMORY_BARRIER() MEMORY_BARRIER()
|
|
#define WRITE_MEMORY_BARRIER() MEMORY_BARRIER()
|
|
|
#endif
|
|
#endif
|
|
|
|
|
|
|
|
|
|
+/* Recover thread descriptor for the current thread */
|
|
|
|
|
+
|
|
|
|
|
+extern pthread_descr __pthread_find_self (void) __attribute__ ((const));
|
|
|
|
|
+
|
|
|
|
|
+static inline pthread_descr thread_self (void) __attribute__ ((const));
|
|
|
|
|
+static inline pthread_descr thread_self (void)
|
|
|
|
|
+{
|
|
|
|
|
+#ifdef THREAD_SELF
|
|
|
|
|
+ return THREAD_SELF;
|
|
|
|
|
+#else
|
|
|
|
|
+ char *sp = CURRENT_STACK_FRAME;
|
|
|
|
|
+#ifdef __ARCH_HAS_MMU__
|
|
|
|
|
+ if (sp >= __pthread_initial_thread_bos)
|
|
|
|
|
+ return &__pthread_initial_thread;
|
|
|
|
|
+ else if (sp >= __pthread_manager_thread_bos
|
|
|
|
|
+ && sp < __pthread_manager_thread_tos)
|
|
|
|
|
+ return &__pthread_manager_thread;
|
|
|
|
|
+ else if (__pthread_nonstandard_stacks)
|
|
|
|
|
+ return __pthread_find_self();
|
|
|
|
|
+ else
|
|
|
|
|
+ return (pthread_descr)(((unsigned long)sp | (STACK_SIZE-1))+1) - 1;
|
|
|
|
|
+#else
|
|
|
|
|
+ /* For non-MMU we need to be more careful about the initial thread stack.
|
|
|
|
|
+ * We refine the initial thread stack bounds dynamically as we allocate
|
|
|
|
|
+ * the other stack frame such that it doesn't overlap with them. Then
|
|
|
|
|
+ * we can be sure to pick the right thread according to the current SP */
|
|
|
|
|
+
|
|
|
|
|
+ /* Since we allow other stack frames to be above or below, we need to
|
|
|
|
|
+ * treat this case special. When pthread_initialize() wasn't called yet,
|
|
|
|
|
+ * only the initial thread is there. */
|
|
|
|
|
+ if (__pthread_initial_thread_bos == NULL) {
|
|
|
|
|
+ return &__pthread_initial_thread;
|
|
|
|
|
+ }
|
|
|
|
|
+ else if (sp >= __pthread_initial_thread_bos
|
|
|
|
|
+ && sp < __pthread_initial_thread_tos) {
|
|
|
|
|
+ return &__pthread_initial_thread;
|
|
|
|
|
+ }
|
|
|
|
|
+ else if (sp >= __pthread_manager_thread_bos
|
|
|
|
|
+ && sp < __pthread_manager_thread_tos) {
|
|
|
|
|
+ return &__pthread_manager_thread;
|
|
|
|
|
+ }
|
|
|
|
|
+ else {
|
|
|
|
|
+ return __pthread_find_self();
|
|
|
|
|
+ }
|
|
|
|
|
+#endif /* __ARCH_HAS_MMU__ */
|
|
|
|
|
+#endif
|
|
|
|
|
+}
|
|
|
|
|
+
|
|
|
/* Max number of times we must spin on a spinlock calling sched_yield().
|
|
/* Max number of times we must spin on a spinlock calling sched_yield().
|
|
|
After MAX_SPIN_COUNT iterations, we put the calling thread to sleep. */
|
|
After MAX_SPIN_COUNT iterations, we put the calling thread to sleep. */
|
|
|
|
|
|
|
@@ -251,13 +430,6 @@ extern size_t __pagesize;
|
|
|
#define MAX_SPIN_COUNT 50
|
|
#define MAX_SPIN_COUNT 50
|
|
|
#endif
|
|
#endif
|
|
|
|
|
|
|
|
-/* Max number of times the spinlock in the adaptive mutex implementation
|
|
|
|
|
- spins actively on SMP systems. */
|
|
|
|
|
-
|
|
|
|
|
-#ifndef MAX_ADAPTIVE_SPIN_COUNT
|
|
|
|
|
-#define MAX_ADAPTIVE_SPIN_COUNT 100
|
|
|
|
|
-#endif
|
|
|
|
|
-
|
|
|
|
|
/* Duration of sleep (in nanoseconds) when we can't acquire a spinlock
|
|
/* Duration of sleep (in nanoseconds) when we can't acquire a spinlock
|
|
|
after MAX_SPIN_COUNT iterations of sched_yield().
|
|
after MAX_SPIN_COUNT iterations of sched_yield().
|
|
|
With the 2.0 and 2.1 kernels, this MUST BE > 2ms.
|
|
With the 2.0 and 2.1 kernels, this MUST BE > 2ms.
|
|
@@ -283,7 +455,6 @@ extern size_t __pagesize;
|
|
|
|
|
|
|
|
void __pthread_destroy_specifics(void);
|
|
void __pthread_destroy_specifics(void);
|
|
|
void __pthread_perform_cleanup(void);
|
|
void __pthread_perform_cleanup(void);
|
|
|
-void __pthread_init_max_stacksize (void);
|
|
|
|
|
int __pthread_initialize_manager(void);
|
|
int __pthread_initialize_manager(void);
|
|
|
void __pthread_message(char * fmt, ...);
|
|
void __pthread_message(char * fmt, ...);
|
|
|
int __pthread_manager(void *reqfd);
|
|
int __pthread_manager(void *reqfd);
|