modernc.org/cc@v1.0.1/v2/headers/linux_arm/usr/include/arm-linux-gnueabihf/bits/sched.h (about)

     1  /* Definitions of constants and data structure for POSIX 1003.1b-1993
     2     scheduling interface.
     3     Copyright (C) 1996-2016 Free Software Foundation, Inc.
     4     This file is part of the GNU C Library.
     5  
     6     The GNU C Library is free software; you can redistribute it and/or
     7     modify it under the terms of the GNU Lesser General Public
     8     License as published by the Free Software Foundation; either
     9     version 2.1 of the License, or (at your option) any later version.
    10  
    11     The GNU C Library is distributed in the hope that it will be useful,
    12     but WITHOUT ANY WARRANTY; without even the implied warranty of
    13     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
    14     Lesser General Public License for more details.
    15  
    16     You should have received a copy of the GNU Lesser General Public
    17     License along with the GNU C Library; if not, see
    18     <http://www.gnu.org/licenses/>.  */
    19  
    20  #ifndef __need_schedparam
    21  
    22  #ifndef _SCHED_H
    23  #error "Never include <bits/sched.h> directly; use <sched.h> instead."
    24  #endif
    25  
    26  /* Scheduling algorithms.  */
    27  #define SCHED_OTHER		0
    28  #define SCHED_FIFO		1
    29  #define SCHED_RR		2
    30  #ifdef __USE_GNU
    31  #define SCHED_BATCH		3
    32  #define SCHED_IDLE		5
    33  
    34  #define SCHED_RESET_ON_FORK	0x40000000
    35  #endif
    36  
    37  #ifdef __USE_GNU
    38  /* Cloning flags.  */
    39  #define CSIGNAL       0x000000ff	/* Signal mask to be sent at exit.  */
    40  #define CLONE_VM      0x00000100	/* Set if VM shared between processes.  */
    41  #define CLONE_FS      0x00000200	/* Set if fs info shared between processes.  */
    42  #define CLONE_FILES   0x00000400	/* Set if open files shared between processes.  */
    43  #define CLONE_SIGHAND 0x00000800	/* Set if signal handlers shared.  */
    44  #define CLONE_PTRACE  0x00002000	/* Set if tracing continues on the child.  */
    45  #define CLONE_VFORK   0x00004000	/* Set if the parent wants the child to
    46  					   wake it up on mm_release.  */
    47  #define CLONE_PARENT  0x00008000	/* Set if we want to have the same
    48  					   parent as the cloner.  */
    49  #define CLONE_THREAD  0x00010000	/* Set to add to same thread group.  */
    50  #define CLONE_NEWNS   0x00020000	/* Set to create new namespace.  */
    51  #define CLONE_SYSVSEM 0x00040000	/* Set to shared SVID SEM_UNDO semantics.  */
    52  #define CLONE_SETTLS  0x00080000	/* Set TLS info.  */
    53  #define CLONE_PARENT_SETTID 0x00100000	/* Store TID in userlevel buffer
    54  					   before MM copy.  */
    55  #define CLONE_CHILD_CLEARTID 0x00200000	/* Register exit futex and memory
    56  					   location to clear.  */
    57  #define CLONE_DETACHED 0x00400000	/* Create clone detached.  */
    58  #define CLONE_UNTRACED 0x00800000	/* Set if the tracing process can't
    59  					   force CLONE_PTRACE on this clone.  */
    60  #define CLONE_CHILD_SETTID 0x01000000	/* Store TID in userlevel buffer in
    61  					   the child.  */
    62  #define CLONE_NEWCGROUP    0x02000000	/* New cgroup namespace.  */
    63  #define CLONE_NEWUTS	0x04000000	/* New utsname group.  */
    64  #define CLONE_NEWIPC	0x08000000	/* New ipcs.  */
    65  #define CLONE_NEWUSER	0x10000000	/* New user namespace.  */
    66  #define CLONE_NEWPID	0x20000000	/* New pid namespace.  */
    67  #define CLONE_NEWNET	0x40000000	/* New network namespace.  */
    68  #define CLONE_IO	0x80000000	/* Clone I/O context.  */
    69  #endif
    70  
    71  /* The official definition.  */
    72  struct sched_param {
    73  	int __sched_priority;
    74  };
    75  
    76  __BEGIN_DECLS
    77  #ifdef __USE_GNU
    78  /* Clone current process.  */
    79  extern int clone(int (*__fn) (void *__arg), void *__child_stack, int __flags, void *__arg, ...) __THROW;
    80  
    81  /* Unshare the specified resources.  */
    82  extern int unshare(int __flags) __THROW;
    83  
    84  /* Get index of currently used CPU.  */
    85  extern int sched_getcpu(void) __THROW;
    86  
    87  /* Switch process to namespace of type NSTYPE indicated by FD.  */
    88  extern int setns(int __fd, int __nstype) __THROW;
    89  #endif
    90  
    91  __END_DECLS
    92  #endif				/* need schedparam */
    93  #if !defined __defined_schedparam \
    94      && (defined __need_schedparam || defined _SCHED_H)
    95  #define __defined_schedparam	1
    96  /* Data structure to describe a process' schedulability.  */
    97  struct __sched_param {
    98  	int __sched_priority;
    99  };
   100  #undef __need_schedparam
   101  #endif
   102  
   103  #if defined _SCHED_H && !defined __cpu_set_t_defined
   104  #define __cpu_set_t_defined
   105  /* Size definition for CPU sets.  */
   106  #define __CPU_SETSIZE	1024
   107  #define __NCPUBITS	(8 * sizeof (__cpu_mask))
   108  
   109  /* Type for array elements in 'cpu_set_t'.  */
   110  typedef __CPU_MASK_TYPE __cpu_mask;
   111  
   112  /* Basic access functions.  */
   113  #define __CPUELT(cpu)	((cpu) / __NCPUBITS)
   114  #define __CPUMASK(cpu)	((__cpu_mask) 1 << ((cpu) % __NCPUBITS))
   115  
   116  /* Data structure to describe CPU mask.  */
   117  typedef struct {
   118  	__cpu_mask __bits[__CPU_SETSIZE / __NCPUBITS];
   119  } cpu_set_t;
   120  
   121  /* Access functions for CPU masks.  */
   122  #if __GNUC_PREREQ (2, 91)
   123  #define __CPU_ZERO_S(setsize, cpusetp) \
   124    do __builtin_memset (cpusetp, '\0', setsize); while (0)
   125  #else
   126  #define __CPU_ZERO_S(setsize, cpusetp) \
   127    do {									      \
   128      size_t __i;								      \
   129      size_t __imax = (setsize) / sizeof (__cpu_mask);			      \
   130      __cpu_mask *__bits = (cpusetp)->__bits;				      \
   131      for (__i = 0; __i < __imax; ++__i)					      \
   132        __bits[__i] = 0;							      \
   133    } while (0)
   134  #endif
   135  #define __CPU_SET_S(cpu, setsize, cpusetp) \
   136    (__extension__							      \
   137     ({ size_t __cpu = (cpu);						      \
   138        __cpu / 8 < (setsize)						      \
   139        ? (((__cpu_mask *) ((cpusetp)->__bits))[__CPUELT (__cpu)]		      \
   140  	 |= __CPUMASK (__cpu))						      \
   141        : 0; }))
   142  #define __CPU_CLR_S(cpu, setsize, cpusetp) \
   143    (__extension__							      \
   144     ({ size_t __cpu = (cpu);						      \
   145        __cpu / 8 < (setsize)						      \
   146        ? (((__cpu_mask *) ((cpusetp)->__bits))[__CPUELT (__cpu)]		      \
   147  	 &= ~__CPUMASK (__cpu))						      \
   148        : 0; }))
   149  #define __CPU_ISSET_S(cpu, setsize, cpusetp) \
   150    (__extension__							      \
   151     ({ size_t __cpu = (cpu);						      \
   152        __cpu / 8 < (setsize)						      \
   153        ? ((((const __cpu_mask *) ((cpusetp)->__bits))[__CPUELT (__cpu)]	      \
   154  	  & __CPUMASK (__cpu))) != 0					      \
   155        : 0; }))
   156  
   157  #define __CPU_COUNT_S(setsize, cpusetp) \
   158    __sched_cpucount (setsize, cpusetp)
   159  
   160  #if __GNUC_PREREQ (2, 91)
   161  #define __CPU_EQUAL_S(setsize, cpusetp1, cpusetp2) \
   162    (__builtin_memcmp (cpusetp1, cpusetp2, setsize) == 0)
   163  #else
   164  #define __CPU_EQUAL_S(setsize, cpusetp1, cpusetp2) \
   165    (__extension__							      \
   166     ({ const __cpu_mask *__arr1 = (cpusetp1)->__bits;			      \
   167        const __cpu_mask *__arr2 = (cpusetp2)->__bits;			      \
   168        size_t __imax = (setsize) / sizeof (__cpu_mask);			      \
   169        size_t __i;							      \
   170        for (__i = 0; __i < __imax; ++__i)				      \
   171  	if (__arr1[__i] != __arr2[__i])					      \
   172  	  break;							      \
   173        __i == __imax; }))
   174  #endif
   175  
   176  #define __CPU_OP_S(setsize, destset, srcset1, srcset2, op) \
   177    (__extension__							      \
   178     ({ cpu_set_t *__dest = (destset);					      \
   179        const __cpu_mask *__arr1 = (srcset1)->__bits;			      \
   180        const __cpu_mask *__arr2 = (srcset2)->__bits;			      \
   181        size_t __imax = (setsize) / sizeof (__cpu_mask);			      \
   182        size_t __i;							      \
   183        for (__i = 0; __i < __imax; ++__i)				      \
   184  	((__cpu_mask *) __dest->__bits)[__i] = __arr1[__i] op __arr2[__i];    \
   185        __dest; }))
   186  
   187  #define __CPU_ALLOC_SIZE(count) \
   188    ((((count) + __NCPUBITS - 1) / __NCPUBITS) * sizeof (__cpu_mask))
   189  #define __CPU_ALLOC(count) __sched_cpualloc (count)
   190  #define __CPU_FREE(cpuset) __sched_cpufree (cpuset)
   191  
   192  __BEGIN_DECLS extern int __sched_cpucount(size_t __setsize, const cpu_set_t * __setp) __THROW;
   193  extern cpu_set_t *__sched_cpualloc(size_t __count)
   194  __THROW __wur;
   195  extern void __sched_cpufree(cpu_set_t * __set) __THROW;
   196  
   197  __END_DECLS
   198  #endif