hotspot/src/os/linux/vm/os_linux.hpp

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   1 #ifdef USE_PRAGMA_IDENT_HDR
   2 #pragma ident "@(#)os_linux.hpp 1.72 08/11/24 12:20:24 JVM"
   3 #endif
   4 /*
   5  * Copyright 1999-2007 Sun Microsystems, Inc.  All Rights Reserved.
   6  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   7  *
   8  * This code is free software; you can redistribute it and/or modify it
   9  * under the terms of the GNU General Public License version 2 only, as
  10  * published by the Free Software Foundation.
  11  *
  12  * This code is distributed in the hope that it will be useful, but WITHOUT
  13  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  14  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
  15  * version 2 for more details (a copy is included in the LICENSE file that
  16  * accompanied this code).
  17  *
  18  * You should have received a copy of the GNU General Public License version
  19  * 2 along with this work; if not, write to the Free Software Foundation,
  20  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
  21  *
  22  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
  23  * CA 95054 USA or visit www.sun.com if you need additional information or
  24  * have any questions.
  25  *  


  45   static void save_preinstalled_handler(int, struct sigaction&);
  46 
  47   static void check_signal_handler(int sig);
  48 
  49   // For signal flags diagnostics
  50   static int sigflags[MAXSIGNUM];
  51 
  52   static int (*_clock_gettime)(clockid_t, struct timespec *);
  53   static int (*_pthread_getcpuclockid)(pthread_t, clockid_t *);
  54 
  55   static address   _initial_thread_stack_bottom;
  56   static uintptr_t _initial_thread_stack_size;
  57 
  58   static const char *_glibc_version;
  59   static const char *_libpthread_version;
  60 
  61   static bool _is_floating_stack;
  62   static bool _is_NPTL;
  63   static bool _supports_fast_thread_cpu_time;
  64 


  65  protected:
  66 
  67   static julong _physical_memory;
  68   static pthread_t _main_thread;
  69   static Mutex* _createThread_lock;
  70   static int _page_size;
  71 
  72   static julong available_memory();
  73   static julong physical_memory() { return _physical_memory; }
  74   static void initialize_system_info();
  75 
  76   static void set_glibc_version(const char *s)      { _glibc_version = s; }
  77   static void set_libpthread_version(const char *s) { _libpthread_version = s; }
  78 
  79   static bool supports_variable_stack_size();
  80 
  81   static void set_is_NPTL()                   { _is_NPTL = true;  }
  82   static void set_is_LinuxThreads()           { _is_NPTL = false; }
  83   static void set_is_floating_stack()         { _is_floating_stack = true; }
  84 


  85  public:
  86 
  87   static void init_thread_fpu_state();
  88   static int  get_fpu_control_word();
  89   static void set_fpu_control_word(int fpu_control);
  90   static pthread_t main_thread(void)                                { return _main_thread; }
  91   // returns kernel thread id (similar to LWP id on Solaris), which can be
  92   // used to access /proc
  93   static pid_t gettid();
  94   static void set_createThread_lock(Mutex* lk)                      { _createThread_lock = lk; }
  95   static Mutex* createThread_lock(void)                             { return _createThread_lock; }
  96   static void hotspot_sigmask(Thread* thread);
  97 
  98   static address   initial_thread_stack_bottom(void)                { return _initial_thread_stack_bottom; }
  99   static uintptr_t initial_thread_stack_size(void)                  { return _initial_thread_stack_size; }
 100   static bool is_initial_thread(void);
 101 
 102   static int page_size(void)                                        { return _page_size; }
 103   static void set_page_size(int val)                                { _page_size = val; }
 104 
 105   static address   ucontext_get_pc(ucontext_t* uc);
 106   static intptr_t* ucontext_get_sp(ucontext_t* uc);


 129   static sigset_t* vm_signals();
 130   static sigset_t* allowdebug_blocked_signals();
 131 
 132   // For signal-chaining
 133   static struct sigaction *get_chained_signal_action(int sig);
 134   static bool chained_handler(int sig, siginfo_t* siginfo, void* context);
 135 
 136   // GNU libc and libpthread version strings
 137   static const char *glibc_version()          { return _glibc_version; }
 138   static const char *libpthread_version()     { return _libpthread_version; }
 139 
 140   // NPTL or LinuxThreads?
 141   static bool is_LinuxThreads()               { return !_is_NPTL; }
 142   static bool is_NPTL()                       { return _is_NPTL;  }
 143 
 144   // NPTL is always floating stack. LinuxThreads could be using floating
 145   // stack or fixed stack.
 146   static bool is_floating_stack()             { return _is_floating_stack; }
 147 
 148   static void libpthread_init();

 149 
 150   // Minimum stack size a thread can be created with (allowing
 151   // the VM to completely create the thread and enter user code)
 152   static size_t min_stack_allowed;
 153 
 154   // Return default stack size or guard size for the specified thread type
 155   static size_t default_stack_size(os::ThreadType thr_type);
 156   static size_t default_guard_size(os::ThreadType thr_type);
 157 
 158   static void capture_initial_stack(size_t max_size);
 159 
 160   // Stack overflow handling
 161   static bool manually_expand_stack(JavaThread * t, address addr);
 162   static int max_register_window_saves_before_flushing();
 163 
 164   // Real-time clock functions
 165   static void clock_init(void);
 166 
 167   // fast POSIX clocks support
 168   static void fast_thread_clock_init(void);


 215 
 216     // atomic updates for _state
 217     void set_suspended()           { 
 218       jint temp, temp2;
 219       do {
 220         temp = _state;
 221         temp2 = Atomic::cmpxchg(temp | SR_SUSPENDED, &_state, temp);
 222       } while (temp2 != temp);
 223     }
 224     void clear_suspended()        { 
 225       jint temp, temp2;
 226       do {
 227         temp = _state;
 228         temp2 = Atomic::cmpxchg(temp & ~SR_SUSPENDED, &_state, temp);
 229       } while (temp2 != temp);
 230     }
 231     bool is_suspended()            { return _state & SR_SUSPENDED;       }
 232 
 233     #undef SR_SUSPENDED
 234   };








































 235 };
 236 
 237   
 238 class PlatformEvent : public CHeapObj {
 239   private:
 240     double CachePad [4] ;   // increase odds that _mutex is sole occupant of cache line
 241     volatile int _Event ;
 242     volatile int _nParked ;
 243     pthread_mutex_t _mutex  [1] ;
 244     pthread_cond_t  _cond   [1] ;
 245     double PostPad  [2] ;  
 246     Thread * _Assoc ; 
 247     
 248   public:       // TODO-FIXME: make dtor private
 249     ~PlatformEvent() { guarantee (0, "invariant") ; }
 250 
 251   public:
 252     PlatformEvent() {
 253       int status;
 254       status = pthread_cond_init (_cond, NULL);


   1 #ifdef USE_PRAGMA_IDENT_HDR
   2 #pragma ident "@(#)os_linux.hpp 1.72 08/11/24 12:20:24 JVM"
   3 #endif
   4 /*
   5  * Copyright 1999-2008 Sun Microsystems, Inc.  All Rights Reserved.
   6  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   7  *
   8  * This code is free software; you can redistribute it and/or modify it
   9  * under the terms of the GNU General Public License version 2 only, as
  10  * published by the Free Software Foundation.
  11  *
  12  * This code is distributed in the hope that it will be useful, but WITHOUT
  13  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  14  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
  15  * version 2 for more details (a copy is included in the LICENSE file that
  16  * accompanied this code).
  17  *
  18  * You should have received a copy of the GNU General Public License version
  19  * 2 along with this work; if not, write to the Free Software Foundation,
  20  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
  21  *
  22  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
  23  * CA 95054 USA or visit www.sun.com if you need additional information or
  24  * have any questions.
  25  *  


  45   static void save_preinstalled_handler(int, struct sigaction&);
  46 
  47   static void check_signal_handler(int sig);
  48 
  49   // For signal flags diagnostics
  50   static int sigflags[MAXSIGNUM];
  51 
  52   static int (*_clock_gettime)(clockid_t, struct timespec *);
  53   static int (*_pthread_getcpuclockid)(pthread_t, clockid_t *);
  54 
  55   static address   _initial_thread_stack_bottom;
  56   static uintptr_t _initial_thread_stack_size;
  57 
  58   static const char *_glibc_version;
  59   static const char *_libpthread_version;
  60 
  61   static bool _is_floating_stack;
  62   static bool _is_NPTL;
  63   static bool _supports_fast_thread_cpu_time;
  64 
  65   static GrowableArray<int>* _cpu_to_node;
  66 
  67  protected:
  68 
  69   static julong _physical_memory;
  70   static pthread_t _main_thread;
  71   static Mutex* _createThread_lock;
  72   static int _page_size;
  73 
  74   static julong available_memory();
  75   static julong physical_memory() { return _physical_memory; }
  76   static void initialize_system_info();
  77 
  78   static void set_glibc_version(const char *s)      { _glibc_version = s; }
  79   static void set_libpthread_version(const char *s) { _libpthread_version = s; }
  80 
  81   static bool supports_variable_stack_size();
  82 
  83   static void set_is_NPTL()                   { _is_NPTL = true;  }
  84   static void set_is_LinuxThreads()           { _is_NPTL = false; }
  85   static void set_is_floating_stack()         { _is_floating_stack = true; }
  86 
  87   static void rebuild_cpu_to_node_map();
  88   static GrowableArray<int>* cpu_to_node()    { return _cpu_to_node; }
  89  public:

  90   static void init_thread_fpu_state();
  91   static int  get_fpu_control_word();
  92   static void set_fpu_control_word(int fpu_control);
  93   static pthread_t main_thread(void)                                { return _main_thread; }
  94   // returns kernel thread id (similar to LWP id on Solaris), which can be
  95   // used to access /proc
  96   static pid_t gettid();
  97   static void set_createThread_lock(Mutex* lk)                      { _createThread_lock = lk; }
  98   static Mutex* createThread_lock(void)                             { return _createThread_lock; }
  99   static void hotspot_sigmask(Thread* thread);
 100 
 101   static address   initial_thread_stack_bottom(void)                { return _initial_thread_stack_bottom; }
 102   static uintptr_t initial_thread_stack_size(void)                  { return _initial_thread_stack_size; }
 103   static bool is_initial_thread(void);
 104 
 105   static int page_size(void)                                        { return _page_size; }
 106   static void set_page_size(int val)                                { _page_size = val; }
 107 
 108   static address   ucontext_get_pc(ucontext_t* uc);
 109   static intptr_t* ucontext_get_sp(ucontext_t* uc);


 132   static sigset_t* vm_signals();
 133   static sigset_t* allowdebug_blocked_signals();
 134 
 135   // For signal-chaining
 136   static struct sigaction *get_chained_signal_action(int sig);
 137   static bool chained_handler(int sig, siginfo_t* siginfo, void* context);
 138 
 139   // GNU libc and libpthread version strings
 140   static const char *glibc_version()          { return _glibc_version; }
 141   static const char *libpthread_version()     { return _libpthread_version; }
 142 
 143   // NPTL or LinuxThreads?
 144   static bool is_LinuxThreads()               { return !_is_NPTL; }
 145   static bool is_NPTL()                       { return _is_NPTL;  }
 146 
 147   // NPTL is always floating stack. LinuxThreads could be using floating
 148   // stack or fixed stack.
 149   static bool is_floating_stack()             { return _is_floating_stack; }
 150 
 151   static void libpthread_init();
 152   static bool libnuma_init();
 153 
 154   // Minimum stack size a thread can be created with (allowing
 155   // the VM to completely create the thread and enter user code)
 156   static size_t min_stack_allowed;
 157 
 158   // Return default stack size or guard size for the specified thread type
 159   static size_t default_stack_size(os::ThreadType thr_type);
 160   static size_t default_guard_size(os::ThreadType thr_type);
 161 
 162   static void capture_initial_stack(size_t max_size);
 163 
 164   // Stack overflow handling
 165   static bool manually_expand_stack(JavaThread * t, address addr);
 166   static int max_register_window_saves_before_flushing();
 167 
 168   // Real-time clock functions
 169   static void clock_init(void);
 170 
 171   // fast POSIX clocks support
 172   static void fast_thread_clock_init(void);


 219 
 220     // atomic updates for _state
 221     void set_suspended()           { 
 222       jint temp, temp2;
 223       do {
 224         temp = _state;
 225         temp2 = Atomic::cmpxchg(temp | SR_SUSPENDED, &_state, temp);
 226       } while (temp2 != temp);
 227     }
 228     void clear_suspended()        { 
 229       jint temp, temp2;
 230       do {
 231         temp = _state;
 232         temp2 = Atomic::cmpxchg(temp & ~SR_SUSPENDED, &_state, temp);
 233       } while (temp2 != temp);
 234     }
 235     bool is_suspended()            { return _state & SR_SUSPENDED;       }
 236 
 237     #undef SR_SUSPENDED
 238   };
 239 
 240 private:
 241   typedef int (*sched_getcpu_func_t)(void);
 242   typedef int (*numa_node_to_cpus_func_t)(int node, unsigned long *buffer, int bufferlen);
 243   typedef int (*numa_max_node_func_t)(void);
 244   typedef int (*numa_available_func_t)(void);
 245   typedef int (*numa_tonode_memory_func_t)(void *start, size_t size, int node);
 246   typedef void (*numa_interleave_memory_func_t)(void *start, size_t size, unsigned long *nodemask);
 247 
 248   static sched_getcpu_func_t _sched_getcpu;
 249   static numa_node_to_cpus_func_t _numa_node_to_cpus;
 250   static numa_max_node_func_t _numa_max_node;
 251   static numa_available_func_t _numa_available;
 252   static numa_tonode_memory_func_t _numa_tonode_memory;
 253   static numa_interleave_memory_func_t _numa_interleave_memory;
 254   static unsigned long* _numa_all_nodes;
 255 
 256   static void set_sched_getcpu(sched_getcpu_func_t func) { _sched_getcpu = func; }
 257   static void set_numa_node_to_cpus(numa_node_to_cpus_func_t func) { _numa_node_to_cpus = func; }
 258   static void set_numa_max_node(numa_max_node_func_t func) { _numa_max_node = func; }
 259   static void set_numa_available(numa_available_func_t func) { _numa_available = func; }
 260   static void set_numa_tonode_memory(numa_tonode_memory_func_t func) { _numa_tonode_memory = func; }
 261   static void set_numa_interleave_memory(numa_interleave_memory_func_t func) { _numa_interleave_memory = func; }
 262   static void set_numa_all_nodes(unsigned long* ptr) { _numa_all_nodes = ptr; }
 263 public:
 264   static int sched_getcpu()  { return _sched_getcpu != NULL ? _sched_getcpu() : -1; }
 265   static int numa_node_to_cpus(int node, unsigned long *buffer, int bufferlen) {
 266     return _numa_node_to_cpus != NULL ? _numa_node_to_cpus(node, buffer, bufferlen) : -1;
 267   }
 268   static int numa_max_node() { return _numa_max_node != NULL ? _numa_max_node() : -1; }
 269   static int numa_available() { return _numa_available != NULL ? _numa_available() : -1; }
 270   static int numa_tonode_memory(void *start, size_t size, int node) {
 271     return _numa_tonode_memory != NULL ? _numa_tonode_memory(start, size, node) : -1;
 272   }
 273   static void numa_interleave_memory(void *start, size_t size) {
 274     if (_numa_interleave_memory != NULL && _numa_all_nodes != NULL) {
 275       _numa_interleave_memory(start, size, _numa_all_nodes);
 276     }
 277   }
 278   static int get_node_by_cpu(int cpu_id);
 279 };
 280 
 281   
 282 class PlatformEvent : public CHeapObj {
 283   private:
 284     double CachePad [4] ;   // increase odds that _mutex is sole occupant of cache line
 285     volatile int _Event ;
 286     volatile int _nParked ;
 287     pthread_mutex_t _mutex  [1] ;
 288     pthread_cond_t  _cond   [1] ;
 289     double PostPad  [2] ;  
 290     Thread * _Assoc ; 
 291     
 292   public:       // TODO-FIXME: make dtor private
 293     ~PlatformEvent() { guarantee (0, "invariant") ; }
 294 
 295   public:
 296     PlatformEvent() {
 297       int status;
 298       status = pthread_cond_init (_cond, NULL);