source: libcfa/src/concurrency/kernel.cfa@ 76bf23c

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation new-ast new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 76bf23c was f586539, checked in by Thierry Delisle <tdelisle@…>, 6 years ago

Fixed incorrect check reporting the main thread has corrupted stack

  • Property mode set to 100644
File size: 33.4 KB
RevLine 
[8118303]1//
2// Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// kernel.c --
8//
9// Author : Thierry Delisle
[75f3522]10// Created On : Tue Jan 17 12:27:26 2017
[6b0b624]11// Last Modified By : Peter A. Buhr
[e3fea42]12// Last Modified On : Tue Feb 4 13:03:15 2020
13// Update Count : 58
[8118303]14//
15
[2026bb6]16#define __cforall_thread__
17
[8118303]18//C Includes
[c84e80a]19#include <stddef.h>
[214e8da]20#include <errno.h>
[ea8b2f7]21#include <string.h>
[eb2e723]22extern "C" {
[9d944b2]23#include <stdio.h>
[8fcbb4c]24#include <fenv.h>
[eb2e723]25#include <sys/resource.h>
[58b6d1b]26#include <signal.h>
[9d944b2]27#include <unistd.h>
[27f5f71]28#include <limits.h> // PTHREAD_STACK_MIN
[1a3040c]29#include <sys/mman.h> // mprotect
[eb2e723]30}
[8118303]31
32//CFA Includes
[58b6d1b]33#include "time.hfa"
[73abe95]34#include "kernel_private.hfa"
35#include "preemption.hfa"
36#include "startup.hfa"
[8118303]37
38//Private includes
39#define __CFA_INVOKE_PRIVATE__
40#include "invoke.h"
41
[deca0f5]42//-----------------------------------------------------------------------------
43// Some assembly required
[1805b1b]44#if defined( __i386 )
[deca0f5]45 #define CtxGet( ctx ) \
46 __asm__ volatile ( \
47 "movl %%esp,%0\n"\
48 "movl %%ebp,%1\n"\
49 : "=rm" (ctx.SP),\
50 "=rm" (ctx.FP) \
51 )
52
53 // mxcr : SSE Status and Control bits (control bits are preserved across function calls)
54 // fcw : X87 FPU control word (preserved across function calls)
55 #define __x87_store \
56 uint32_t __mxcr; \
57 uint16_t __fcw; \
58 __asm__ volatile ( \
59 "stmxcsr %0\n" \
60 "fnstcw %1\n" \
61 : "=m" (__mxcr),\
62 "=m" (__fcw) \
63 )
64
65 #define __x87_load \
66 __asm__ volatile ( \
67 "fldcw %1\n" \
68 "ldmxcsr %0\n" \
69 ::"m" (__mxcr),\
70 "m" (__fcw) \
71 )
72
73#elif defined( __x86_64 )
74 #define CtxGet( ctx ) \
75 __asm__ volatile ( \
76 "movq %%rsp,%0\n"\
77 "movq %%rbp,%1\n"\
78 : "=rm" (ctx.SP),\
79 "=rm" (ctx.FP) \
80 )
81
82 #define __x87_store \
83 uint32_t __mxcr; \
84 uint16_t __fcw; \
85 __asm__ volatile ( \
86 "stmxcsr %0\n" \
87 "fnstcw %1\n" \
88 : "=m" (__mxcr),\
89 "=m" (__fcw) \
90 )
91
92 #define __x87_load \
93 __asm__ volatile ( \
94 "fldcw %1\n" \
95 "ldmxcsr %0\n" \
96 :: "m" (__mxcr),\
97 "m" (__fcw) \
98 )
99
100
101#elif defined( __ARM_ARCH )
102#define CtxGet( ctx ) __asm__ ( \
103 "mov %0,%%sp\n" \
104 "mov %1,%%r11\n" \
105 : "=rm" (ctx.SP), "=rm" (ctx.FP) )
106#else
107 #error unknown hardware architecture
108#endif
109
110//-----------------------------------------------------------------------------
[2ac095d]111//Start and stop routine for the kernel, declared first to make sure they run first
[8c50aed]112static void __kernel_startup (void) __attribute__(( constructor( STARTUP_PRIORITY_KERNEL ) ));
113static void __kernel_shutdown(void) __attribute__(( destructor ( STARTUP_PRIORITY_KERNEL ) ));
[2ac095d]114
[92e7631]115//-----------------------------------------------------------------------------
116// Kernel Scheduling logic
117static $thread * __next_thread(cluster * this);
118static void __run_thread(processor * this, $thread * dst);
119static $thread * __halt(processor * this);
120static bool __wake_one(cluster * cltr, bool was_empty);
121static bool __wake_proc(processor *);
122
[8def349]123//-----------------------------------------------------------------------------
124// Kernel storage
[b2f6113]125KERNEL_STORAGE(cluster, mainCluster);
126KERNEL_STORAGE(processor, mainProcessor);
[ac2b598]127KERNEL_STORAGE($thread, mainThread);
[b2f6113]128KERNEL_STORAGE(__stack_t, mainThreadCtx);
[8def349]129
[de6319f]130cluster * mainCluster;
131processor * mainProcessor;
[ac2b598]132$thread * mainThread;
[eb2e723]133
[ea8b2f7]134extern "C" {
[1805b1b]135 struct { __dllist_t(cluster) list; __spinlock_t lock; } __cfa_dbg_global_clusters;
[ea8b2f7]136}
[de94a60]137
[b2f6113]138size_t __page_size = 0;
139
[bd98b58]140//-----------------------------------------------------------------------------
141// Global state
[afc2427]142thread_local struct KernelThreadData kernelTLS __attribute__ ((tls_model ( "initial-exec" ))) = {
[1805b1b]143 NULL, // cannot use 0p
[b10affd]144 NULL,
[09d4b22]145 { 1, false, false },
[21184e3]146 6u //this should be seeded better but due to a bug calling rdtsc doesn't work
[b10affd]147};
[c84e80a]148
149//-----------------------------------------------------------------------------
[de6319f]150// Struct to steal stack
[8def349]151struct current_stack_info_t {
[1805b1b]152 __stack_t * storage; // pointer to stack object
153 void * base; // base of stack
154 void * limit; // stack grows towards stack limit
155 void * context; // address of cfa_context_t
[c84e80a]156};
157
[242a902]158void ?{}( current_stack_info_t & this ) {
[b2f6113]159 __stack_context_t ctx;
160 CtxGet( ctx );
161 this.base = ctx.FP;
[8def349]162
163 rlimit r;
[132fad4]164 getrlimit( RLIMIT_STACK, &r);
[69a61d2]165 size_t size = r.rlim_cur;
[8def349]166
[69a61d2]167 this.limit = (void *)(((intptr_t)this.base) - size);
[9236060]168 this.context = &storage_mainThreadCtx;
[8def349]169}
170
[de6319f]171//-----------------------------------------------------------------------------
172// Main thread construction
[8def349]173
[ac2b598]174void ?{}( $coroutine & this, current_stack_info_t * info) with( this ) {
[b2f6113]175 stack.storage = info->storage;
176 with(*stack.storage) {
177 limit = info->limit;
178 base = info->base;
179 }
[ffe2fad]180 __attribute__((may_alias)) intptr_t * istorage = (intptr_t*) &stack.storage;
181 *istorage |= 0x1;
[65deb18]182 name = "Main Thread";
183 state = Start;
[1805b1b]184 starter = 0p;
185 last = 0p;
186 cancellation = 0p;
[8def349]187}
188
[ac2b598]189void ?{}( $thread & this, current_stack_info_t * info) with( this ) {
[e8e457e]190 state = Start;
[65deb18]191 self_cor{ info };
[82c948c]192 curr_cor = &self_cor;
[de6319f]193 curr_cluster = mainCluster;
[82c948c]194 self_mon.owner = &this;
195 self_mon.recursion = 1;
196 self_mon_p = &self_mon;
[1805b1b]197 next = 0p;
[de94a60]198
[1805b1b]199 node.next = 0p;
200 node.prev = 0p;
[a1a17a74]201 doregister(curr_cluster, this);
[82c948c]202
203 monitors{ &self_mon_p, 1, (fptr_t)0 };
[8def349]204}
[c84e80a]205
[8def349]206//-----------------------------------------------------------------------------
207// Processor coroutine
[de6319f]208void ?{}(processorCtx_t & this) {
[39fea2f]209
[8def349]210}
211
[39fea2f]212// Construct the processor context of non-main processors
[c29c342]213static void ?{}(processorCtx_t & this, processor * proc, current_stack_info_t * info) {
[242a902]214 (this.__cor){ info };
215 this.proc = proc;
[8def349]216}
217
[c7a900a]218static void * __invoke_processor(void * arg);
[8c50aed]219
[e3fea42]220void ?{}(processor & this, const char name[], cluster & cltr) with( this ) {
[de6319f]221 this.name = name;
222 this.cltr = &cltr;
[c40e7c5]223 terminated{ 0 };
[b0c7419]224 destroyer = 0p;
[c40e7c5]225 do_terminate = false;
[1805b1b]226 preemption_alarm = 0p;
[c40e7c5]227 pending_preemption = false;
[094476d]228 runner.proc = &this;
[8def349]229
[92e7631]230 idle{};
[6b4cdd3]231
[8c50aed]232 __cfaabi_dbg_print_safe("Kernel : Starting core %p\n", &this);
233
[c7a900a]234 this.stack = __create_pthread( &this.kernel_thread, __invoke_processor, (void *)&this );
[8c50aed]235
236 __cfaabi_dbg_print_safe("Kernel : core %p started\n", &this);
[c84e80a]237}
238
[65deb18]239void ^?{}(processor & this) with( this ){
[ea8b2f7]240 if( ! __atomic_load_n(&do_terminate, __ATOMIC_ACQUIRE) ) {
[36982fc]241 __cfaabi_dbg_print_safe("Kernel : core %p signaling termination\n", &this);
[85b1deb]242
243 __atomic_store_n(&do_terminate, true, __ATOMIC_RELAXED);
[92e7631]244 __wake_proc( &this );
[85b1deb]245
[65deb18]246 P( terminated );
[14a61b5]247 verify( kernelTLS.this_processor != &this);
[8def349]248 }
[6b4cdd3]249
[1805b1b]250 pthread_join( kernel_thread, 0p );
[27f5f71]251 free( this.stack );
[8def349]252}
253
[e3fea42]254void ?{}(cluster & this, const char name[], Duration preemption_rate) with( this ) {
[de6319f]255 this.name = name;
256 this.preemption_rate = preemption_rate;
[65deb18]257 ready_queue{};
258 ready_queue_lock{};
[de94a60]259
260 procs{ __get };
261 idles{ __get };
[a1a17a74]262 threads{ __get };
[de94a60]263
264 doregister(this);
[8def349]265}
266
[242a902]267void ^?{}(cluster & this) {
[de94a60]268 unregister(this);
[c84e80a]269}
270
[75f3522]271//=============================================================================================
272// Kernel Scheduling logic
273//=============================================================================================
[8fcbb4c]274//Main of the processor contexts
[83a071f9]275void main(processorCtx_t & runner) {
[21184e3]276 // Because of a bug, we couldn't initialized the seed on construction
277 // Do it here
[57c764c4]278 kernelTLS.rand_seed ^= rdtscl();
[21184e3]279
[83a071f9]280 processor * this = runner.proc;
[094476d]281 verify(this);
[c81ebf9]282
[36982fc]283 __cfaabi_dbg_print_safe("Kernel : core %p starting\n", this);
[8118303]284
[de94a60]285 doregister(this->cltr, this);
286
[75f3522]287 {
[c81ebf9]288 // Setup preemption data
289 preemption_scope scope = { this };
290
[36982fc]291 __cfaabi_dbg_print_safe("Kernel : core %p started\n", this);
[8118303]292
[ac2b598]293 $thread * readyThread = 0p;
[1a3040c]294 for( unsigned int spin_count = 0; ! __atomic_load_n(&this->do_terminate, __ATOMIC_SEQ_CST); spin_count++ ) {
[92e7631]295 // Try to get the next thread
[8c50aed]296 readyThread = __next_thread( this->cltr );
[75f3522]297
[92e7631]298 // If no ready thread
299 if( readyThread == 0p ) {
300 // Block until a thread is ready
301 readyThread = __halt(this);
302 }
303
304 // Check if we actually found a thread
305 if( readyThread ) {
[3381ed7]306 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[92e7631]307 /* paranoid */ verifyf( readyThread->state == Ready || readyThread->preempted != __NO_PREEMPTION, "state : %d, preempted %d\n", readyThread->state, readyThread->preempted);
[3381ed7]308 /* paranoid */ verifyf( readyThread->next == 0p, "Expected null got %p", readyThread->next );
[4e6fb8e]309
[92e7631]310 // We found a thread run it
[8c50aed]311 __run_thread(this, readyThread);
[75f3522]312
[3381ed7]313 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[c81ebf9]314 }
315 }
316
[36982fc]317 __cfaabi_dbg_print_safe("Kernel : core %p stopping\n", this);
[c84e80a]318 }
[8118303]319
[de94a60]320 unregister(this->cltr, this);
321
[92e7631]322 V( this->terminated );
[bdeba0b]323
[36982fc]324 __cfaabi_dbg_print_safe("Kernel : core %p terminated\n", this);
[92e7631]325
326 // HACK : the coroutine context switch expects this_thread to be set
327 // and it make sense for it to be set in all other cases except here
328 // fake it
329 if( this == mainProcessor ) kernelTLS.this_thread = mainThread;
[c84e80a]330}
331
[5c1a531]332static int * __volatile_errno() __attribute__((noinline));
333static int * __volatile_errno() { asm(""); return &errno; }
334
[14a61b5]335// KERNEL ONLY
[1c273d0]336// runThread runs a thread by context switching
337// from the processor coroutine to the target thread
[ac2b598]338static void __run_thread(processor * this, $thread * thrd_dst) {
339 $coroutine * proc_cor = get_coroutine(this->runner);
[1c273d0]340
[14a61b5]341 // Update global state
[e8e457e]342 kernelTLS.this_thread = thrd_dst;
343
[9f575ea]344 // set state of processor coroutine to inactive
345 verify(proc_cor->state == Active);
[ae7be7a]346 proc_cor->state = Blocked;
[e8e457e]347
[9f575ea]348 // Actually run the thread
[3381ed7]349 RUNNING: while(true) {
[9f575ea]350 if(unlikely(thrd_dst->preempted)) {
[3381ed7]351 thrd_dst->preempted = __NO_PREEMPTION;
[92e7631]352 verify(thrd_dst->state == Active || thrd_dst->state == Rerun);
[9f575ea]353 } else {
[92e7631]354 verify(thrd_dst->state == Blocked || thrd_dst->state == Ready); // Ready means scheduled normally, blocked means rerun
[9f575ea]355 thrd_dst->state = Active;
356 }
357
[ae66348]358 __cfaabi_dbg_debug_do(
[276ae57e]359 thrd_dst->park_stale = true;
360 thrd_dst->unpark_stale = true;
[ae66348]361 )
362
[3381ed7]363 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[210b8b3]364 /* paranoid */ verifyf( ((uintptr_t)thrd_dst->context.SP) < ((uintptr_t)__get_stack(thrd_dst->curr_cor)->base ) || thrd_dst->curr_cor == proc_cor, "ERROR : Destination $thread %p has been corrupted.\n StackPointer too small.\n", thrd_dst ); // add escape condition if we are setting up the processor
365 /* paranoid */ verifyf( ((uintptr_t)thrd_dst->context.SP) > ((uintptr_t)__get_stack(thrd_dst->curr_cor)->limit) || thrd_dst->curr_cor == proc_cor, "ERROR : Destination $thread %p has been corrupted.\n StackPointer too large.\n", thrd_dst ); // add escape condition if we are setting up the processor
[3381ed7]366
[9f575ea]367 // set context switch to the thread that the processor is executing
368 verify( thrd_dst->context.SP );
[c7a900a]369 __cfactx_switch( &proc_cor->context, &thrd_dst->context );
370 // when __cfactx_switch returns we are back in the processor coroutine
[9f575ea]371
[210b8b3]372 /* paranoid */ verifyf( ((uintptr_t)thrd_dst->context.SP) > ((uintptr_t)__get_stack(thrd_dst->curr_cor)->limit), "ERROR : Destination $thread %p has been corrupted.\n StackPointer too large.\n", thrd_dst );
373 /* paranoid */ verifyf( ((uintptr_t)thrd_dst->context.SP) < ((uintptr_t)__get_stack(thrd_dst->curr_cor)->base ), "ERROR : Destination $thread %p has been corrupted.\n StackPointer too small.\n", thrd_dst );
[3381ed7]374 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[75f3522]375
[3381ed7]376
377 // We just finished running a thread, there are a few things that could have happened.
378 // 1 - Regular case : the thread has blocked and now one has scheduled it yet.
379 // 2 - Racy case : the thread has blocked but someone has already tried to schedule it.
380 // 4 - Preempted
381 // In case 1, we may have won a race so we can't write to the state again.
382 // In case 2, we lost the race so we now own the thread.
383
384 if(unlikely(thrd_dst->preempted != __NO_PREEMPTION)) {
385 // The thread was preempted, reschedule it and reset the flag
[8c50aed]386 __schedule_thread( thrd_dst );
[3381ed7]387 break RUNNING;
388 }
389
390 // set state of processor coroutine to active and the thread to inactive
391 static_assert(sizeof(thrd_dst->state) == sizeof(int));
[ae7be7a]392 enum coroutine_state old_state = __atomic_exchange_n(&thrd_dst->state, Blocked, __ATOMIC_SEQ_CST);
393 __cfaabi_dbg_debug_do( thrd_dst->park_result = old_state; )
[3381ed7]394 switch(old_state) {
395 case Halted:
396 // The thread has halted, it should never be scheduled/run again, leave it back to Halted and move on
397 thrd_dst->state = Halted;
[b0c7419]398
399 // We may need to wake someone up here since
[ae66348]400 unpark( this->destroyer __cfaabi_dbg_ctx2 );
[b0c7419]401 this->destroyer = 0p;
[3381ed7]402 break RUNNING;
403 case Active:
404 // This is case 1, the regular case, nothing more is needed
405 break RUNNING;
406 case Rerun:
407 // This is case 2, the racy case, someone tried to run this thread before it finished blocking
408 // In this case, just run it again.
409 continue RUNNING;
410 default:
411 // This makes no sense, something is wrong abort
[ae7be7a]412 abort("Finished running a thread that was Blocked/Start/Primed %d\n", old_state);
[3381ed7]413 }
[9f575ea]414 }
415
416 // Just before returning to the processor, set the processor coroutine to active
[e8e457e]417 proc_cor->state = Active;
[ae7be7a]418 kernelTLS.this_thread = 0p;
[75f3522]419}
420
[14a61b5]421// KERNEL_ONLY
[b0c7419]422void returnToKernel() {
[3381ed7]423 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[ac2b598]424 $coroutine * proc_cor = get_coroutine(kernelTLS.this_processor->runner);
425 $thread * thrd_src = kernelTLS.this_thread;
[e8e457e]426
[9f575ea]427 // Run the thread on this processor
428 {
429 int local_errno = *__volatile_errno();
430 #if defined( __i386 ) || defined( __x86_64 )
431 __x87_store;
432 #endif
433 verify( proc_cor->context.SP );
[c7a900a]434 __cfactx_switch( &thrd_src->context, &proc_cor->context );
[9f575ea]435 #if defined( __i386 ) || defined( __x86_64 )
436 __x87_load;
437 #endif
438 *__volatile_errno() = local_errno;
439 }
[deca0f5]440
[3381ed7]441 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[210b8b3]442 /* paranoid */ verifyf( ((uintptr_t)thrd_src->context.SP) < ((uintptr_t)__get_stack(thrd_src->curr_cor)->base ), "ERROR : Returning $thread %p has been corrupted.\n StackPointer too small.\n", thrd_src );
443 /* paranoid */ verifyf( ((uintptr_t)thrd_src->context.SP) > ((uintptr_t)__get_stack(thrd_src->curr_cor)->limit), "ERROR : Returning $thread %p has been corrupted.\n StackPointer too large.\n", thrd_src );
[c84e80a]444}
445
[14a61b5]446// KERNEL_ONLY
[0c92c9f]447// Context invoker for processors
448// This is the entry point for processors (kernel threads)
449// It effectively constructs a coroutine by stealing the pthread stack
[c7a900a]450static void * __invoke_processor(void * arg) {
[8def349]451 processor * proc = (processor *) arg;
[14a61b5]452 kernelTLS.this_processor = proc;
[1805b1b]453 kernelTLS.this_thread = 0p;
[14a61b5]454 kernelTLS.preemption_state.[enabled, disable_count] = [false, 1];
[8def349]455 // SKULLDUGGERY: We want to create a context for the processor coroutine
456 // which is needed for the 2-step context switch. However, there is no reason
[1c273d0]457 // to waste the perfectly valid stack create by pthread.
[8def349]458 current_stack_info_t info;
[b2f6113]459 __stack_t ctx;
460 info.storage = &ctx;
[094476d]461 (proc->runner){ proc, &info };
[8def349]462
[b2f6113]463 __cfaabi_dbg_print_safe("Coroutine : created stack %p\n", get_coroutine(proc->runner)->stack.storage);
[8fcbb4c]464
[0c92c9f]465 //Set global state
[1805b1b]466 kernelTLS.this_thread = 0p;
[8def349]467
468 //We now have a proper context from which to schedule threads
[094476d]469 __cfaabi_dbg_print_safe("Kernel : core %p created (%p, %p)\n", proc, &proc->runner, &ctx);
[8def349]470
[1c273d0]471 // SKULLDUGGERY: Since the coroutine doesn't have its own stack, we can't
472 // resume it to start it like it normally would, it will just context switch
473 // back to here. Instead directly call the main since we already are on the
[8def349]474 // appropriate stack.
[094476d]475 get_coroutine(proc->runner)->state = Active;
476 main( proc->runner );
477 get_coroutine(proc->runner)->state = Halted;
[8def349]478
[0c92c9f]479 // Main routine of the core returned, the core is now fully terminated
[094476d]480 __cfaabi_dbg_print_safe("Kernel : core %p main ended (%p)\n", proc, &proc->runner);
[8def349]481
[1805b1b]482 return 0p;
[c84e80a]483}
484
[e3fea42]485static void Abort( int ret, const char func[] ) {
[1a3040c]486 if ( ret ) { // pthread routines return errno values
[1805b1b]487 abort( "%s : internal error, error(%d) %s.", func, ret, strerror( ret ) );
[27f5f71]488 } // if
[1805b1b]489} // Abort
490
[8c50aed]491void * __create_pthread( pthread_t * pthread, void * (*start)(void *), void * arg ) {
[1805b1b]492 pthread_attr_t attr;
493
494 Abort( pthread_attr_init( &attr ), "pthread_attr_init" ); // initialize attribute
495
[27f5f71]496 size_t stacksize;
[09d4b22]497 // default stack size, normally defined by shell limit
[1a3040c]498 Abort( pthread_attr_getstacksize( &attr, &stacksize ), "pthread_attr_getstacksize" );
[27f5f71]499 assert( stacksize >= PTHREAD_STACK_MIN );
[1a3040c]500
[09d4b22]501 void * stack;
502 __cfaabi_dbg_debug_do(
503 stack = memalign( __page_size, stacksize + __page_size );
504 // pthread has no mechanism to create the guard page in user supplied stack.
505 if ( mprotect( stack, __page_size, PROT_NONE ) == -1 ) {
506 abort( "mprotect : internal error, mprotect failure, error(%d) %s.", errno, strerror( errno ) );
507 } // if
508 );
509 __cfaabi_dbg_no_debug_do(
510 stack = malloc( stacksize );
511 );
[1a3040c]512
[09f357ec]513 Abort( pthread_attr_setstack( &attr, stack, stacksize ), "pthread_attr_setstack" );
[27f5f71]514
[1805b1b]515 Abort( pthread_create( pthread, &attr, start, arg ), "pthread_create" );
516 return stack;
517}
[27f5f71]518
[14a61b5]519// KERNEL_ONLY
[8c50aed]520static void __kernel_first_resume( processor * this ) {
[ac2b598]521 $thread * src = mainThread;
522 $coroutine * dst = get_coroutine(this->runner);
[b69ea6b]523
[14a61b5]524 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]525
[09f357ec]526 kernelTLS.this_thread->curr_cor = dst;
[b2f6113]527 __stack_prepare( &dst->stack, 65000 );
[c7a900a]528 __cfactx_start(main, dst, this->runner, __cfactx_invoke_coroutine);
[b69ea6b]529
[14a61b5]530 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]531
[e8e457e]532 dst->last = &src->self_cor;
533 dst->starter = dst->starter ? dst->starter : &src->self_cor;
[b69ea6b]534
[92e7631]535 // make sure the current state is still correct
536 /* paranoid */ verify(src->state == Ready);
[b69ea6b]537
538 // context switch to specified coroutine
[69a61d2]539 verify( dst->context.SP );
[c7a900a]540 __cfactx_switch( &src->context, &dst->context );
541 // when __cfactx_switch returns we are back in the src coroutine
[b69ea6b]542
[09f357ec]543 mainThread->curr_cor = &mainThread->self_cor;
544
[92e7631]545 // make sure the current state has been update
546 /* paranoid */ verify(src->state == Active);
[b69ea6b]547
[14a61b5]548 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]549}
550
[e8e457e]551// KERNEL_ONLY
[8c50aed]552static void __kernel_last_resume( processor * this ) {
[ac2b598]553 $coroutine * src = &mainThread->self_cor;
554 $coroutine * dst = get_coroutine(this->runner);
[e8e457e]555
556 verify( ! kernelTLS.preemption_state.enabled );
557 verify( dst->starter == src );
558 verify( dst->context.SP );
559
[f586539]560 // SKULLDUGGERY in debug the processors check that the
561 // stack is still within the limit of the stack limits after running a thread.
562 // that check doesn't make sense if we context switch to the processor using the
563 // coroutine semantics. Since this is a special case, use the current context
564 // info to populate these fields.
565 __cfaabi_dbg_debug_do(
566 __stack_context_t ctx;
567 CtxGet( ctx );
568 mainThread->context.SP = ctx.SP;
569 mainThread->context.FP = ctx.FP;
570 )
571
[e8e457e]572 // context switch to the processor
[c7a900a]573 __cfactx_switch( &src->context, &dst->context );
[e8e457e]574}
575
[8def349]576//-----------------------------------------------------------------------------
577// Scheduler routines
[14a61b5]578// KERNEL ONLY
[ac2b598]579void __schedule_thread( $thread * thrd ) with( *thrd->curr_cluster ) {
[9f575ea]580 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[3381ed7]581 /* paranoid */ #if defined( __CFA_WITH_VERIFY__ )
[ae7be7a]582 /* paranoid */ if( thrd->state == Blocked || thrd->state == Start ) assertf( thrd->preempted == __NO_PREEMPTION,
[3381ed7]583 "Error inactive thread marked as preempted, state %d, preemption %d\n", thrd->state, thrd->preempted );
[b0c7419]584 /* paranoid */ if( thrd->preempted != __NO_PREEMPTION ) assertf(thrd->state == Active || thrd->state == Rerun,
[3381ed7]585 "Error preempted thread marked as not currently running, state %d, preemption %d\n", thrd->state, thrd->preempted );
586 /* paranoid */ #endif
[9f575ea]587 /* paranoid */ verifyf( thrd->next == 0p, "Expected null got %p", thrd->next );
588
[ae7be7a]589 if (thrd->preempted == __NO_PREEMPTION) thrd->state = Ready;
590
[9f575ea]591 lock ( ready_queue_lock __cfaabi_dbg_ctx2 );
592 bool was_empty = !(ready_queue != 0);
593 append( ready_queue, thrd );
594 unlock( ready_queue_lock );
[6b4cdd3]595
[92e7631]596 __wake_one(thrd->curr_cluster, was_empty);
[1c273d0]597
[9f575ea]598 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[db6f06a]599}
600
[14a61b5]601// KERNEL ONLY
[ac2b598]602static $thread * __next_thread(cluster * this) with( *this ) {
[3381ed7]603 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
604
[65deb18]605 lock( ready_queue_lock __cfaabi_dbg_ctx2 );
[ac2b598]606 $thread * head = pop_head( ready_queue );
[65deb18]607 unlock( ready_queue_lock );
[eb2e723]608
[3381ed7]609 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
610 return head;
[75f3522]611}
612
[ae66348]613void unpark( $thread * thrd __cfaabi_dbg_ctx_param2 ) {
[3381ed7]614 if( !thrd ) return;
[0b33412]615
[82ff5845]616 disable_interrupts();
[3381ed7]617 static_assert(sizeof(thrd->state) == sizeof(int));
[ae7be7a]618
[ae66348]619 // record activity
620 __cfaabi_dbg_record_thrd( *thrd, false, caller );
621
[b0c7419]622 enum coroutine_state old_state = __atomic_exchange_n(&thrd->state, Rerun, __ATOMIC_SEQ_CST);
[ae7be7a]623 __cfaabi_dbg_debug_do( thrd->unpark_result = old_state; )
[3381ed7]624 switch(old_state) {
625 case Active:
626 // Wake won the race, the thread will reschedule/rerun itself
627 break;
[ae7be7a]628 case Blocked:
[3381ed7]629 /* paranoid */ verify( ! thrd->preempted != __NO_PREEMPTION );
[0b33412]630
[3381ed7]631 // Wake lost the race,
[ae7be7a]632 thrd->state = Blocked;
[8c50aed]633 __schedule_thread( thrd );
[3381ed7]634 break;
635 case Rerun:
636 abort("More than one thread attempted to schedule thread %p\n", thrd);
637 break;
638 case Halted:
639 case Start:
640 case Primed:
641 default:
642 // This makes no sense, something is wrong abort
643 abort();
644 }
[36982fc]645 enable_interrupts( __cfaabi_dbg_ctx );
[db6f06a]646}
647
[ae66348]648void park( __cfaabi_dbg_ctx_param ) {
[3381ed7]649 /* paranoid */ verify( kernelTLS.preemption_state.enabled );
[82ff5845]650 disable_interrupts();
[3381ed7]651 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
652 /* paranoid */ verify( kernelTLS.this_thread->preempted == __NO_PREEMPTION );
[0b33412]653
[ae66348]654 // record activity
655 __cfaabi_dbg_record_thrd( *kernelTLS.this_thread, true, caller );
656
[82c948c]657 returnToKernel();
[0b33412]658
[3381ed7]659 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[36982fc]660 enable_interrupts( __cfaabi_dbg_ctx );
[3381ed7]661 /* paranoid */ verify( kernelTLS.preemption_state.enabled );
[eb2e723]662
[0c78741]663}
664
[3381ed7]665// KERNEL ONLY
[b0c7419]666void __leave_thread() {
[3381ed7]667 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[82c948c]668 returnToKernel();
[b0c7419]669 abort();
[0c78741]670}
671
[3381ed7]672// KERNEL ONLY
673bool force_yield( __Preemption_Reason reason ) {
674 /* paranoid */ verify( kernelTLS.preemption_state.enabled );
[09800e9]675 disable_interrupts();
[3381ed7]676 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[09800e9]677
[ac2b598]678 $thread * thrd = kernelTLS.this_thread;
[b0c7419]679 /* paranoid */ verify(thrd->state == Active || thrd->state == Rerun);
[3381ed7]680
681 // SKULLDUGGERY: It is possible that we are preempting this thread just before
682 // it was going to park itself. If that is the case and it is already using the
683 // intrusive fields then we can't use them to preempt the thread
684 // If that is the case, abandon the preemption.
685 bool preempted = false;
686 if(thrd->next == 0p) {
687 preempted = true;
688 thrd->preempted = reason;
689 returnToKernel();
690 }
[09800e9]691
[3381ed7]692 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
693 enable_interrupts_noPoll();
694 /* paranoid */ verify( kernelTLS.preemption_state.enabled );
[f2b12406]695
[3381ed7]696 return preempted;
[f2b12406]697}
698
[fa21ac9]699//=============================================================================================
700// Kernel Setup logic
701//=============================================================================================
[eb2e723]702//-----------------------------------------------------------------------------
703// Kernel boot procedures
[8c50aed]704static void __kernel_startup(void) {
[14a61b5]705 verify( ! kernelTLS.preemption_state.enabled );
[36982fc]706 __cfaabi_dbg_print_safe("Kernel : Starting\n");
[eb2e723]707
[b2f6113]708 __page_size = sysconf( _SC_PAGESIZE );
709
[ea8b2f7]710 __cfa_dbg_global_clusters.list{ __get };
711 __cfa_dbg_global_clusters.lock{};
[de94a60]712
[de6319f]713 // Initialize the main cluster
714 mainCluster = (cluster *)&storage_mainCluster;
715 (*mainCluster){"Main Cluster"};
716
717 __cfaabi_dbg_print_safe("Kernel : Main cluster ready\n");
718
[eb2e723]719 // Start by initializing the main thread
[1c273d0]720 // SKULLDUGGERY: the mainThread steals the process main thread
[969b3fe]721 // which will then be scheduled by the mainProcessor normally
[ac2b598]722 mainThread = ($thread *)&storage_mainThread;
[8fcbb4c]723 current_stack_info_t info;
[b2f6113]724 info.storage = (__stack_t*)&storage_mainThreadCtx;
[83a071f9]725 (*mainThread){ &info };
[eb2e723]726
[36982fc]727 __cfaabi_dbg_print_safe("Kernel : Main thread ready\n");
[fa21ac9]728
[bd98b58]729
[de6319f]730
731 // Construct the processor context of the main processor
732 void ?{}(processorCtx_t & this, processor * proc) {
733 (this.__cor){ "Processor" };
[1805b1b]734 this.__cor.starter = 0p;
[de6319f]735 this.proc = proc;
736 }
737
738 void ?{}(processor & this) with( this ) {
739 name = "Main Processor";
740 cltr = mainCluster;
741 terminated{ 0 };
742 do_terminate = false;
[1805b1b]743 preemption_alarm = 0p;
[de6319f]744 pending_preemption = false;
745 kernel_thread = pthread_self();
746
747 runner{ &this };
748 __cfaabi_dbg_print_safe("Kernel : constructed main processor context %p\n", &runner);
749 }
[fa21ac9]750
[969b3fe]751 // Initialize the main processor and the main processor ctx
[eb2e723]752 // (the coroutine that contains the processing control flow)
[969b3fe]753 mainProcessor = (processor *)&storage_mainProcessor;
[de6319f]754 (*mainProcessor){};
[eb2e723]755
[dcb42b8]756 //initialize the global state variables
[14a61b5]757 kernelTLS.this_processor = mainProcessor;
758 kernelTLS.this_thread = mainThread;
[eb2e723]759
[82ff5845]760 // Enable preemption
761 kernel_start_preemption();
762
[969b3fe]763 // Add the main thread to the ready queue
764 // once resume is called on mainProcessor->runner the mainThread needs to be scheduled like any normal thread
[8c50aed]765 __schedule_thread(mainThread);
[969b3fe]766
767 // SKULLDUGGERY: Force a context switch to the main processor to set the main thread's context to the current UNIX
[c7a900a]768 // context. Hence, the main thread does not begin through __cfactx_invoke_thread, like all other threads. The trick here is that
[1c273d0]769 // mainThread is on the ready queue when this call is made.
[8c50aed]770 __kernel_first_resume( kernelTLS.this_processor );
[eb2e723]771
[dcb42b8]772
773
774 // THE SYSTEM IS NOW COMPLETELY RUNNING
[36982fc]775 __cfaabi_dbg_print_safe("Kernel : Started\n--------------------------------------------------\n\n");
[82ff5845]776
[14a61b5]777 verify( ! kernelTLS.preemption_state.enabled );
[36982fc]778 enable_interrupts( __cfaabi_dbg_ctx );
[afd550c]779 verify( TL_GET( preemption_state.enabled ) );
[eb2e723]780}
781
[8c50aed]782static void __kernel_shutdown(void) {
[36982fc]783 __cfaabi_dbg_print_safe("\n--------------------------------------------------\nKernel : Shutting down\n");
[eb2e723]784
[92e7631]785 /* paranoid */ verify( TL_GET( preemption_state.enabled ) );
[4e6fb8e]786 disable_interrupts();
[92e7631]787 /* paranoid */ verify( ! kernelTLS.preemption_state.enabled );
[4e6fb8e]788
[969b3fe]789 // SKULLDUGGERY: Notify the mainProcessor it needs to terminates.
[dcb42b8]790 // When its coroutine terminates, it return control to the mainThread
791 // which is currently here
[ea8b2f7]792 __atomic_store_n(&mainProcessor->do_terminate, true, __ATOMIC_RELEASE);
[8c50aed]793 __kernel_last_resume( kernelTLS.this_processor );
[ea8b2f7]794 mainThread->self_cor.state = Halted;
[eb2e723]795
[dcb42b8]796 // THE SYSTEM IS NOW COMPLETELY STOPPED
[eb2e723]797
[82ff5845]798 // Disable preemption
799 kernel_stop_preemption();
800
[969b3fe]801 // Destroy the main processor and its context in reverse order of construction
[dcb42b8]802 // These were manually constructed so we need manually destroy them
[210b8b3]803 ^(*mainProcessor){};
[eb2e723]804
[dcb42b8]805 // Final step, destroy the main thread since it is no longer needed
806 // Since we provided a stack to this taxk it will not destroy anything
[210b8b3]807 /* paranoid */ verify(mainThread->self_cor.stack.storage == (__stack_t*)(((uintptr_t)&storage_mainThreadCtx)| 0x1));
808 ^(*mainThread){};
[eb2e723]809
[ea8b2f7]810 ^(__cfa_dbg_global_clusters.list){};
811 ^(__cfa_dbg_global_clusters.lock){};
[a1a17a74]812
[36982fc]813 __cfaabi_dbg_print_safe("Kernel : Shutdown complete\n");
[9d944b2]814}
815
[14a61b5]816//=============================================================================================
[92e7631]817// Kernel Idle Sleep
[14a61b5]818//=============================================================================================
[92e7631]819static $thread * __halt(processor * this) with( *this ) {
820 if( do_terminate ) return 0p;
[ea8b2f7]821
[92e7631]822 // First, lock the cluster idle
823 lock( cltr->idle_lock __cfaabi_dbg_ctx2 );
824
825 // Check if we can find a thread
826 if( $thread * found = __next_thread( cltr ) ) {
827 unlock( cltr->idle_lock );
828 return found;
[6b4cdd3]829 }
[14a61b5]830
[92e7631]831 // Move this processor from the active list to the idle list
832 move_to_front(cltr->procs, cltr->idles, *this);
[14a61b5]833
[92e7631]834 // Unlock the idle lock so we don't go to sleep with a lock
835 unlock (cltr->idle_lock);
836
837 // We are ready to sleep
838 __cfaabi_dbg_print_safe("Kernel : Processor %p ready to sleep\n", this);
839 wait( idle );
[14a61b5]840
[92e7631]841 // We have woken up
[6b4cdd3]842 __cfaabi_dbg_print_safe("Kernel : Processor %p woke up and ready to run\n", this);
[14a61b5]843
[92e7631]844 // Get ourself off the idle list
[6b4cdd3]845 with( *cltr ) {
[92e7631]846 lock (idle_lock __cfaabi_dbg_ctx2);
847 move_to_front(idles, procs, *this);
848 unlock(idle_lock);
[6b4cdd3]849 }
[92e7631]850
851 // Don't check the ready queue again, we may not be in a position to run a thread
852 return 0p;
853}
854
855// Wake a thread from the front if there are any
856static bool __wake_one(cluster * this, __attribute__((unused)) bool force) {
857 // if we don't want to force check if we know it's false
858 if( !this->idles.head && !force ) return false;
859
860 // First, lock the cluster idle
861 lock( this->idle_lock __cfaabi_dbg_ctx2 );
862
863 // Check if there is someone to wake up
864 if( !this->idles.head ) {
865 // Nope unlock and return false
866 unlock( this->idle_lock );
867 return false;
868 }
869
870 // Wake them up
871 post( this->idles.head->idle );
872
873 // Unlock and return true
874 unlock( this->idle_lock );
875 return true;
876}
877
878// Unconditionnaly wake a thread
879static bool __wake_proc(processor * this) {
880 return post( this->idle );
[6b4cdd3]881}
882
[dbe9b08]883//=============================================================================================
884// Unexpected Terminating logic
885//=============================================================================================
[ea7d2b0]886static __spinlock_t kernel_abort_lock;
[9d944b2]887static bool kernel_abort_called = false;
888
[afd550c]889void * kernel_abort(void) __attribute__ ((__nothrow__)) {
[9d944b2]890 // abort cannot be recursively entered by the same or different processors because all signal handlers return when
891 // the globalAbort flag is true.
[36982fc]892 lock( kernel_abort_lock __cfaabi_dbg_ctx2 );
[9d944b2]893
894 // first task to abort ?
[de94a60]895 if ( kernel_abort_called ) { // not first task to abort ?
[ea7d2b0]896 unlock( kernel_abort_lock );
[1c273d0]897
[9d944b2]898 sigset_t mask;
899 sigemptyset( &mask );
[de94a60]900 sigaddset( &mask, SIGALRM ); // block SIGALRM signals
[8a13c47]901 sigaddset( &mask, SIGUSR1 ); // block SIGALRM signals
902 sigsuspend( &mask ); // block the processor to prevent further damage during abort
903 _exit( EXIT_FAILURE ); // if processor unblocks before it is killed, terminate it
[de94a60]904 }
905 else {
906 kernel_abort_called = true;
907 unlock( kernel_abort_lock );
[9d944b2]908 }
909
[14a61b5]910 return kernelTLS.this_thread;
[9d944b2]911}
912
913void kernel_abort_msg( void * kernel_data, char * abort_text, int abort_text_size ) {
[ac2b598]914 $thread * thrd = kernel_data;
[9d944b2]915
[de94a60]916 if(thrd) {
917 int len = snprintf( abort_text, abort_text_size, "Error occurred while executing thread %.256s (%p)", thrd->self_cor.name, thrd );
[1c40091]918 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[de94a60]919
[212c2187]920 if ( &thrd->self_cor != thrd->curr_cor ) {
921 len = snprintf( abort_text, abort_text_size, " in coroutine %.256s (%p).\n", thrd->curr_cor->name, thrd->curr_cor );
[1c40091]922 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[de94a60]923 }
924 else {
[1c40091]925 __cfaabi_bits_write( STDERR_FILENO, ".\n", 2 );
[de94a60]926 }
[1c273d0]927 }
[9d944b2]928 else {
[de94a60]929 int len = snprintf( abort_text, abort_text_size, "Error occurred outside of any thread.\n" );
[1c40091]930 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[9d944b2]931 }
932}
933
[2b8bc41]934int kernel_abort_lastframe( void ) __attribute__ ((__nothrow__)) {
[14a61b5]935 return get_coroutine(kernelTLS.this_thread) == get_coroutine(mainThread) ? 4 : 2;
[2b8bc41]936}
937
[de94a60]938static __spinlock_t kernel_debug_lock;
939
[9d944b2]940extern "C" {
[1c40091]941 void __cfaabi_bits_acquire() {
[36982fc]942 lock( kernel_debug_lock __cfaabi_dbg_ctx2 );
[9d944b2]943 }
944
[1c40091]945 void __cfaabi_bits_release() {
[ea7d2b0]946 unlock( kernel_debug_lock );
[9d944b2]947 }
[8118303]948}
949
[fa21ac9]950//=============================================================================================
951// Kernel Utilities
952//=============================================================================================
[bd98b58]953//-----------------------------------------------------------------------------
954// Locks
[242a902]955void ?{}( semaphore & this, int count = 1 ) {
956 (this.lock){};
957 this.count = count;
958 (this.waiting){};
[db6f06a]959}
[242a902]960void ^?{}(semaphore & this) {}
[db6f06a]961
[65deb18]962void P(semaphore & this) with( this ){
963 lock( lock __cfaabi_dbg_ctx2 );
964 count -= 1;
965 if ( count < 0 ) {
[bdeba0b]966 // queue current task
[14a61b5]967 append( waiting, kernelTLS.this_thread );
[bdeba0b]968
969 // atomically release spin lock and block
[3381ed7]970 unlock( lock );
[ae66348]971 park( __cfaabi_dbg_ctx );
[8def349]972 }
[4e6fb8e]973 else {
[65deb18]974 unlock( lock );
[4e6fb8e]975 }
[bd98b58]976}
977
[f0ce5f4]978bool V(semaphore & this) with( this ) {
[ac2b598]979 $thread * thrd = 0p;
[65deb18]980 lock( lock __cfaabi_dbg_ctx2 );
981 count += 1;
982 if ( count <= 0 ) {
[bdeba0b]983 // remove task at head of waiting list
[65deb18]984 thrd = pop_head( waiting );
[bd98b58]985 }
[bdeba0b]986
[65deb18]987 unlock( lock );
[bdeba0b]988
989 // make new owner
[ae66348]990 unpark( thrd __cfaabi_dbg_ctx2 );
[f0ce5f4]991
992 return thrd != 0p;
[bd98b58]993}
994
[f7d6bb0]995//-----------------------------------------------------------------------------
[de94a60]996// Global Queues
997void doregister( cluster & cltr ) {
[ea8b2f7]998 lock ( __cfa_dbg_global_clusters.lock __cfaabi_dbg_ctx2);
999 push_front( __cfa_dbg_global_clusters.list, cltr );
1000 unlock ( __cfa_dbg_global_clusters.lock );
[de94a60]1001}
[f7d6bb0]1002
[de94a60]1003void unregister( cluster & cltr ) {
[ea8b2f7]1004 lock ( __cfa_dbg_global_clusters.lock __cfaabi_dbg_ctx2);
1005 remove( __cfa_dbg_global_clusters.list, cltr );
1006 unlock( __cfa_dbg_global_clusters.lock );
[de94a60]1007}
[f7d6bb0]1008
[ac2b598]1009void doregister( cluster * cltr, $thread & thrd ) {
[a1a17a74]1010 lock (cltr->thread_list_lock __cfaabi_dbg_ctx2);
[d4e68a6]1011 cltr->nthreads += 1;
[a1a17a74]1012 push_front(cltr->threads, thrd);
1013 unlock (cltr->thread_list_lock);
1014}
1015
[ac2b598]1016void unregister( cluster * cltr, $thread & thrd ) {
[a1a17a74]1017 lock (cltr->thread_list_lock __cfaabi_dbg_ctx2);
1018 remove(cltr->threads, thrd );
[d4e68a6]1019 cltr->nthreads -= 1;
[a1a17a74]1020 unlock(cltr->thread_list_lock);
1021}
[9181f1d]1022
[de94a60]1023void doregister( cluster * cltr, processor * proc ) {
[92e7631]1024 lock (cltr->idle_lock __cfaabi_dbg_ctx2);
[d4e68a6]1025 cltr->nprocessors += 1;
[639991a]1026 push_front(cltr->procs, *proc);
[92e7631]1027 unlock (cltr->idle_lock);
[de94a60]1028}
1029
1030void unregister( cluster * cltr, processor * proc ) {
[92e7631]1031 lock (cltr->idle_lock __cfaabi_dbg_ctx2);
[639991a]1032 remove(cltr->procs, *proc );
[d4e68a6]1033 cltr->nprocessors -= 1;
[92e7631]1034 unlock(cltr->idle_lock);
[de94a60]1035}
1036
1037//-----------------------------------------------------------------------------
1038// Debug
1039__cfaabi_dbg_debug_do(
[1997b4e]1040 extern "C" {
[ae66348]1041 void __cfaabi_dbg_record_lock(__spinlock_t & this, const char prev_name[]) {
[1997b4e]1042 this.prev_name = prev_name;
1043 this.prev_thrd = kernelTLS.this_thread;
1044 }
[ae66348]1045
1046 void __cfaabi_dbg_record_thrd($thread & this, bool park, const char prev_name[]) {
1047 if(park) {
[f0ce5f4]1048 this.park_caller = prev_name;
1049 this.park_stale = false;
[ae66348]1050 }
1051 else {
[f0ce5f4]1052 this.unpark_caller = prev_name;
1053 this.unpark_stale = false;
[ae66348]1054 }
1055 }
[9181f1d]1056 }
[f7d6bb0]1057)
[2026bb6]1058
1059//-----------------------------------------------------------------------------
1060// Debug
[8c50aed]1061bool threading_enabled(void) __attribute__((const)) {
[2026bb6]1062 return true;
1063}
[8118303]1064// Local Variables: //
1065// mode: c //
1066// tab-width: 4 //
1067// End: //
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