/* cygthread.cc Copyright 1998, 1999, 2000, 2001, 2002 Red Hat, Inc. This software is a copyrighted work licensed under the terms of the Cygwin license. Please consult the file "CYGWIN_LICENSE" for details. */ #include "winsup.h" #include #include #include #include "exceptions.h" #include "security.h" #include "cygthread.h" #include "sync.h" #include "cygerrno.h" #include "sigproc.h" #undef CloseHandle static cygthread NO_COPY threads[18]; #define NTHREADS (sizeof (threads) / sizeof (threads[0])) DWORD NO_COPY cygthread::main_thread_id; bool NO_COPY cygthread::exiting; /* Initial stub called by cygthread constructor. Performs initial per-thread initialization and loops waiting for new thread functions to execute. */ DWORD WINAPI cygthread::stub (VOID *arg) { DECLARE_TLS_STORAGE; exception_list except_entry; /* Initialize this thread's ability to respond to things like SIGSEGV or SIGFPE. */ init_exceptions (&except_entry); cygthread *info = (cygthread *) arg; if (info->arg == cygself) info->ev = info->thread_sync = info->stack_ptr = NULL; else { info->ev = CreateEvent (&sec_none_nih, TRUE, FALSE, NULL); info->thread_sync = CreateEvent (&sec_none_nih, FALSE, FALSE, NULL); info->stack_ptr = &arg; } while (1) { if (!info->__name) system_printf ("erroneous thread activation"); else { if (!info->func || exiting) ExitThread (0); /* Cygwin threads should not call ExitThread directly */ info->func (info->arg == cygself ? info : info->arg); /* ...so the above should always return */ #ifdef DEBUGGING info->func = NULL; // catch erroneous activation #endif info->__name = NULL; SetEvent (info->ev); } switch (WaitForSingleObject (info->thread_sync, INFINITE)) { case WAIT_OBJECT_0: continue; default: api_fatal ("WFSO failed, %E"); break; } } } /* Overflow stub called by cygthread constructor. Calls specified function and then exits the thread. */ DWORD WINAPI cygthread::simplestub (VOID *arg) { DECLARE_TLS_STORAGE; exception_list except_entry; /* Initialize this thread's ability to respond to things like SIGSEGV or SIGFPE. */ init_exceptions (&except_entry); cygthread *info = (cygthread *) arg; info->func (info->arg == cygself ? info : info->arg); ExitThread (0); } static NO_COPY muto *cygthread_protect; /* Start things going. Called from dll_crt0_1. */ void cygthread::init () { new_muto (cygthread_protect); main_thread_id = GetCurrentThreadId (); } bool cygthread::is () { DWORD tid = GetCurrentThreadId (); for (DWORD i = 0; i < NTHREADS; i++) if (threads[i].id == tid) return 1; return 0; } cygthread * cygthread::freerange () { cygthread *self = (cygthread *) calloc (1, sizeof (*self)); self->is_freerange = true; self->h = CreateThread (&sec_none_nih, 0, cygthread::simplestub, self, CREATE_SUSPENDED, &self->id); self->ev = self->h; return self; } void * cygthread::operator new (size_t) { DWORD id; cygthread *info; cygthread_protect->acquire (); /* Search the threads array for an empty slot to use */ for (info = threads; info < threads + NTHREADS; info++) if ((id = (DWORD) InterlockedExchange ((LPLONG) &info->avail, 0))) { #ifdef DEBUGGING if (info->__name) api_fatal ("name not NULL? id %p, i %d", id, info - threads); #endif goto out; } else if (!info->id) { info->h = CreateThread (&sec_none_nih, 0, cygthread::stub, info, CREATE_SUSPENDED, &info->id); goto out; } #ifdef DEBUGGING char buf[1024]; if (!GetEnvironmentVariable ("CYGWIN_NOFREERANGE_NOCHECK", buf, sizeof (buf))) api_fatal ("Overflowed cygwin thread pool"); #endif info = freerange (); /* exhausted thread pool */ out: cygthread_protect->release (); return info; } cygthread::cygthread (LPTHREAD_START_ROUTINE start, LPVOID param, const char *name): func (start), arg (param) { #ifdef DEBUGGGING if (!__name) api_fatal ("name should never be NULL"); #endif thread_printf ("name %s, id %p", name, id); while (!h) #ifndef DEBUGGING low_priority_sleep (0); #else { thread_printf ("waiting for %s<%p> to become active", __name, h); low_priority_sleep (0); } #endif __name = name; if (!thread_sync) ResumeThread (h); else SetEvent (thread_sync); } /* Return the symbolic name of the current thread for debugging. */ const char * cygthread::name (DWORD tid) { const char *res = NULL; if (!tid) tid = GetCurrentThreadId (); if (tid == main_thread_id) return "main"; for (DWORD i = 0; i < NTHREADS; i++) if (threads[i].id == tid) { res = threads[i].__name ?: "exiting thread"; break; } if (!res) { static char buf[30] NO_COPY = {0}; __small_sprintf (buf, "unknown (%p)", tid); res = buf; } return res; } cygthread::operator HANDLE () { while (!ev) low_priority_sleep (0); return ev; } /* Should only be called when the process is exiting since it leaves an open thread slot. */ void cygthread::exit_thread () { if (!is_freerange) SetEvent (*this); ExitThread (0); } /* Forcibly terminate a thread. */ void cygthread::terminate_thread () { if (!is_freerange) SetEvent (*this); (void) TerminateThread (h, 0); (void) WaitForSingleObject (h, INFINITE); MEMORY_BASIC_INFORMATION m; memset (&m, 0, sizeof (m)); (void) VirtualQuery (stack_ptr, &m, sizeof m); if (m.RegionSize) (void) VirtualFree (m.AllocationBase, m.RegionSize, MEM_DECOMMIT); if (is_freerange) is_freerange = false; else { CloseHandle (ev); CloseHandle (thread_sync); } CloseHandle (h); thread_sync = ev = h = NULL; __name = NULL; id = 0; } /* Detach the cygthread from the current thread. Note that the theory is that cygthreads are only associated with one thread. So, there should be no problems with multiple threads doing waits on the one cygthread. */ void cygthread::detach (bool wait_for_sig) { if (avail) system_printf ("called detach on available thread %d?", avail); else { DWORD avail = id; DWORD res; if (!wait_for_sig) res = WaitForSingleObject (*this, INFINITE); else { HANDLE w4[2]; w4[0] = signal_arrived; w4[1] = *this; res = WaitForMultipleObjects (2, w4, FALSE, INFINITE); if (res == WAIT_OBJECT_0) { terminate_thread (); set_errno (EINTR); /* caller should be dealing with return values. */ avail = 0; } } thread_printf ("%s returns %d, id %p", wait_for_sig ? "WFMO" : "WFSO", res, id); if (!avail) /* already handled */; else if (is_freerange) { CloseHandle (h); free (this); } else { ResetEvent (*this); /* Mark the thread as available by setting avail to non-zero */ (void) InterlockedExchange ((LPLONG) &this->avail, avail); } } } void cygthread::terminate () { exiting = 1; }