source: libcfa/src/concurrency/kernel.cfa@ 9aa1317

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since 9aa1317 was 2909b515, checked in by Peter A. Buhr <pabuhr@…>, 6 years ago

Merge branch 'master' of plg.uwaterloo.ca:software/cfa/cfa-cc

  • Property mode set to 100644
File size: 26.6 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
[1c40091]12// Last Modified On : Thu Nov 21 16:46:59 2019
13// Update Count : 27
[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>
[eb2e723]28}
[8118303]29
30//CFA Includes
[58b6d1b]31#include "time.hfa"
[73abe95]32#include "kernel_private.hfa"
33#include "preemption.hfa"
34#include "startup.hfa"
[8118303]35
36//Private includes
37#define __CFA_INVOKE_PRIVATE__
38#include "invoke.h"
39
[deca0f5]40//-----------------------------------------------------------------------------
41// Some assembly required
42#if defined( __i386 )
43 #define CtxGet( ctx ) \
44 __asm__ volatile ( \
45 "movl %%esp,%0\n"\
46 "movl %%ebp,%1\n"\
47 : "=rm" (ctx.SP),\
48 "=rm" (ctx.FP) \
49 )
50
51 // mxcr : SSE Status and Control bits (control bits are preserved across function calls)
52 // fcw : X87 FPU control word (preserved across function calls)
53 #define __x87_store \
54 uint32_t __mxcr; \
55 uint16_t __fcw; \
56 __asm__ volatile ( \
57 "stmxcsr %0\n" \
58 "fnstcw %1\n" \
59 : "=m" (__mxcr),\
60 "=m" (__fcw) \
61 )
62
63 #define __x87_load \
64 __asm__ volatile ( \
65 "fldcw %1\n" \
66 "ldmxcsr %0\n" \
67 ::"m" (__mxcr),\
68 "m" (__fcw) \
69 )
70
71#elif defined( __x86_64 )
72 #define CtxGet( ctx ) \
73 __asm__ volatile ( \
74 "movq %%rsp,%0\n"\
75 "movq %%rbp,%1\n"\
76 : "=rm" (ctx.SP),\
77 "=rm" (ctx.FP) \
78 )
79
80 #define __x87_store \
81 uint32_t __mxcr; \
82 uint16_t __fcw; \
83 __asm__ volatile ( \
84 "stmxcsr %0\n" \
85 "fnstcw %1\n" \
86 : "=m" (__mxcr),\
87 "=m" (__fcw) \
88 )
89
90 #define __x87_load \
91 __asm__ volatile ( \
92 "fldcw %1\n" \
93 "ldmxcsr %0\n" \
94 :: "m" (__mxcr),\
95 "m" (__fcw) \
96 )
97
98
99#elif defined( __ARM_ARCH )
100#define CtxGet( ctx ) __asm__ ( \
101 "mov %0,%%sp\n" \
102 "mov %1,%%r11\n" \
103 : "=rm" (ctx.SP), "=rm" (ctx.FP) )
104#else
105 #error unknown hardware architecture
106#endif
107
108//-----------------------------------------------------------------------------
[2ac095d]109//Start and stop routine for the kernel, declared first to make sure they run first
[c29c342]110static void kernel_startup(void) __attribute__(( constructor( STARTUP_PRIORITY_KERNEL ) ));
111static void kernel_shutdown(void) __attribute__(( destructor ( STARTUP_PRIORITY_KERNEL ) ));
[2ac095d]112
[8def349]113//-----------------------------------------------------------------------------
114// Kernel storage
[b2f6113]115KERNEL_STORAGE(cluster, mainCluster);
116KERNEL_STORAGE(processor, mainProcessor);
117KERNEL_STORAGE(thread_desc, mainThread);
118KERNEL_STORAGE(__stack_t, mainThreadCtx);
[8def349]119
[de6319f]120cluster * mainCluster;
121processor * mainProcessor;
[348006f]122thread_desc * mainThread;
[eb2e723]123
[ea8b2f7]124extern "C" {
125struct { __dllist_t(cluster) list; __spinlock_t lock; } __cfa_dbg_global_clusters;
126}
[de94a60]127
[b2f6113]128size_t __page_size = 0;
129
[bd98b58]130//-----------------------------------------------------------------------------
131// Global state
[afc2427]132thread_local struct KernelThreadData kernelTLS __attribute__ ((tls_model ( "initial-exec" ))) = {
[b10affd]133 NULL,
134 NULL,
[21184e3]135 { 1, false, false },
136 6u //this should be seeded better but due to a bug calling rdtsc doesn't work
[b10affd]137};
[c84e80a]138
139//-----------------------------------------------------------------------------
[de6319f]140// Struct to steal stack
[8def349]141struct current_stack_info_t {
[b2f6113]142 __stack_t * storage; // pointer to stack object
[8def349]143 void *base; // base of stack
144 void *limit; // stack grows towards stack limit
145 void *context; // address of cfa_context_t
[c84e80a]146};
147
[242a902]148void ?{}( current_stack_info_t & this ) {
[b2f6113]149 __stack_context_t ctx;
150 CtxGet( ctx );
151 this.base = ctx.FP;
[8def349]152
153 rlimit r;
[132fad4]154 getrlimit( RLIMIT_STACK, &r);
[69a61d2]155 size_t size = r.rlim_cur;
[8def349]156
[69a61d2]157 this.limit = (void *)(((intptr_t)this.base) - size);
[9236060]158 this.context = &storage_mainThreadCtx;
[8def349]159}
160
[de6319f]161//-----------------------------------------------------------------------------
162// Main thread construction
[8def349]163
[65deb18]164void ?{}( coroutine_desc & this, current_stack_info_t * info) with( this ) {
[b2f6113]165 stack.storage = info->storage;
166 with(*stack.storage) {
167 limit = info->limit;
168 base = info->base;
169 }
[ffe2fad]170 __attribute__((may_alias)) intptr_t * istorage = (intptr_t*) &stack.storage;
171 *istorage |= 0x1;
[65deb18]172 name = "Main Thread";
173 state = Start;
174 starter = NULL;
[b2f6113]175 last = NULL;
176 cancellation = NULL;
[8def349]177}
178
[65deb18]179void ?{}( thread_desc & this, current_stack_info_t * info) with( this ) {
[e8e457e]180 state = Start;
[65deb18]181 self_cor{ info };
[82c948c]182 curr_cor = &self_cor;
[de6319f]183 curr_cluster = mainCluster;
[82c948c]184 self_mon.owner = &this;
185 self_mon.recursion = 1;
186 self_mon_p = &self_mon;
187 next = NULL;
[de94a60]188
189 node.next = NULL;
190 node.prev = NULL;
[a1a17a74]191 doregister(curr_cluster, this);
[82c948c]192
193 monitors{ &self_mon_p, 1, (fptr_t)0 };
[8def349]194}
[c84e80a]195
[8def349]196//-----------------------------------------------------------------------------
197// Processor coroutine
[de6319f]198void ?{}(processorCtx_t & this) {
[39fea2f]199
[8def349]200}
201
[39fea2f]202// Construct the processor context of non-main processors
[c29c342]203static void ?{}(processorCtx_t & this, processor * proc, current_stack_info_t * info) {
[242a902]204 (this.__cor){ info };
205 this.proc = proc;
[8def349]206}
207
[c29c342]208static void start(processor * this);
[de6319f]209void ?{}(processor & this, const char * name, cluster & cltr) with( this ) {
210 this.name = name;
211 this.cltr = &cltr;
[c40e7c5]212 terminated{ 0 };
213 do_terminate = false;
214 preemption_alarm = NULL;
215 pending_preemption = false;
[094476d]216 runner.proc = &this;
[8def349]217
[85b1deb]218 idleLock{};
[6b4cdd3]219
[242a902]220 start( &this );
[c84e80a]221}
222
[65deb18]223void ^?{}(processor & this) with( this ){
[ea8b2f7]224 if( ! __atomic_load_n(&do_terminate, __ATOMIC_ACQUIRE) ) {
[36982fc]225 __cfaabi_dbg_print_safe("Kernel : core %p signaling termination\n", &this);
[85b1deb]226
227 __atomic_store_n(&do_terminate, true, __ATOMIC_RELAXED);
228 wake( &this );
229
[65deb18]230 P( terminated );
[14a61b5]231 verify( kernelTLS.this_processor != &this);
[8def349]232 }
[6b4cdd3]233
[85b1deb]234 pthread_join( kernel_thread, NULL );
[8def349]235}
236
[de6319f]237void ?{}(cluster & this, const char * name, Duration preemption_rate) with( this ) {
238 this.name = name;
239 this.preemption_rate = preemption_rate;
[65deb18]240 ready_queue{};
241 ready_queue_lock{};
[de94a60]242
243 procs{ __get };
244 idles{ __get };
[a1a17a74]245 threads{ __get };
[de94a60]246
247 doregister(this);
[8def349]248}
249
[242a902]250void ^?{}(cluster & this) {
[de94a60]251 unregister(this);
[c84e80a]252}
253
[75f3522]254//=============================================================================================
255// Kernel Scheduling logic
256//=============================================================================================
[c29c342]257static void runThread(processor * this, thread_desc * dst);
258static void finishRunning(processor * this);
259static void halt(processor * this);
260
[8fcbb4c]261//Main of the processor contexts
[83a071f9]262void main(processorCtx_t & runner) {
[21184e3]263 // Because of a bug, we couldn't initialized the seed on construction
264 // Do it here
[57c764c4]265 kernelTLS.rand_seed ^= rdtscl();
[21184e3]266
[83a071f9]267 processor * this = runner.proc;
[094476d]268 verify(this);
[c81ebf9]269
[36982fc]270 __cfaabi_dbg_print_safe("Kernel : core %p starting\n", this);
[8118303]271
[de94a60]272 doregister(this->cltr, this);
273
[75f3522]274 {
[c81ebf9]275 // Setup preemption data
276 preemption_scope scope = { this };
277
[36982fc]278 __cfaabi_dbg_print_safe("Kernel : core %p started\n", this);
[8118303]279
[c81ebf9]280 thread_desc * readyThread = NULL;
[ea8b2f7]281 for( unsigned int spin_count = 0; ! __atomic_load_n(&this->do_terminate, __ATOMIC_SEQ_CST); spin_count++ )
[75f3522]282 {
[c81ebf9]283 readyThread = nextThread( this->cltr );
[75f3522]284
[c81ebf9]285 if(readyThread)
286 {
[14a61b5]287 verify( ! kernelTLS.preemption_state.enabled );
[4e6fb8e]288
[c81ebf9]289 runThread(this, readyThread);
[75f3522]290
[14a61b5]291 verify( ! kernelTLS.preemption_state.enabled );
[4e6fb8e]292
[c81ebf9]293 //Some actions need to be taken from the kernel
294 finishRunning(this);
295
296 spin_count = 0;
297 }
298 else
299 {
[ea8b2f7]300 // spin(this, &spin_count);
301 halt(this);
[c81ebf9]302 }
303 }
304
[36982fc]305 __cfaabi_dbg_print_safe("Kernel : core %p stopping\n", this);
[c84e80a]306 }
[8118303]307
[de94a60]308 unregister(this->cltr, this);
309
[4cedd9f]310 V( this->terminated );
[bdeba0b]311
[36982fc]312 __cfaabi_dbg_print_safe("Kernel : core %p terminated\n", this);
[c84e80a]313}
314
[5c1a531]315static int * __volatile_errno() __attribute__((noinline));
316static int * __volatile_errno() { asm(""); return &errno; }
317
[14a61b5]318// KERNEL ONLY
[1c273d0]319// runThread runs a thread by context switching
320// from the processor coroutine to the target thread
[e8e457e]321static void runThread(processor * this, thread_desc * thrd_dst) {
[094476d]322 coroutine_desc * proc_cor = get_coroutine(this->runner);
[1c273d0]323
[14a61b5]324 // Reset the terminating actions here
[db6f06a]325 this->finish.action_code = No_Action;
[8fcbb4c]326
[14a61b5]327 // Update global state
[e8e457e]328 kernelTLS.this_thread = thrd_dst;
329
330 // set state of processor coroutine to inactive and the thread to active
331 proc_cor->state = proc_cor->state == Halted ? Halted : Inactive;
332 thrd_dst->state = Active;
333
334 // set context switch to the thread that the processor is executing
335 verify( thrd_dst->context.SP );
336 CtxSwitch( &proc_cor->context, &thrd_dst->context );
337 // when CtxSwitch returns we are back in the processor coroutine
[75f3522]338
[e8e457e]339 // set state of processor coroutine to active and the thread to inactive
340 thrd_dst->state = thrd_dst->state == Halted ? Halted : Inactive;
341 proc_cor->state = Active;
[75f3522]342}
343
[14a61b5]344// KERNEL_ONLY
[c29c342]345static void returnToKernel() {
[14a61b5]346 coroutine_desc * proc_cor = get_coroutine(kernelTLS.this_processor->runner);
[e8e457e]347 thread_desc * thrd_src = kernelTLS.this_thread;
348
349 // set state of current coroutine to inactive
350 thrd_src->state = thrd_src->state == Halted ? Halted : Inactive;
351 proc_cor->state = Active;
[5c1a531]352 int local_errno = *__volatile_errno();
[deca0f5]353 #if defined( __i386 ) || defined( __x86_64 )
354 __x87_store;
355 #endif
[e8e457e]356
357 // set new coroutine that the processor is executing
358 // and context switch to it
359 verify( proc_cor->context.SP );
360 CtxSwitch( &thrd_src->context, &proc_cor->context );
361
362 // set state of new coroutine to active
363 proc_cor->state = proc_cor->state == Halted ? Halted : Inactive;
364 thrd_src->state = Active;
[deca0f5]365
366 #if defined( __i386 ) || defined( __x86_64 )
367 __x87_load;
368 #endif
[5c1a531]369 *__volatile_errno() = local_errno;
[82c948c]370}
371
[14a61b5]372// KERNEL_ONLY
[1c273d0]373// Once a thread has finished running, some of
[75f3522]374// its final actions must be executed from the kernel
[c29c342]375static void finishRunning(processor * this) with( this->finish ) {
[09800e9]376 verify( ! kernelTLS.preemption_state.enabled );
377 choose( action_code ) {
378 case No_Action:
379 break;
380 case Release:
[65deb18]381 unlock( *lock );
[09800e9]382 case Schedule:
[65deb18]383 ScheduleThread( thrd );
[09800e9]384 case Release_Schedule:
[65deb18]385 unlock( *lock );
386 ScheduleThread( thrd );
[09800e9]387 case Release_Multi:
[65deb18]388 for(int i = 0; i < lock_count; i++) {
389 unlock( *locks[i] );
[0c78741]390 }
[09800e9]391 case Release_Multi_Schedule:
[65deb18]392 for(int i = 0; i < lock_count; i++) {
393 unlock( *locks[i] );
[0c78741]394 }
[65deb18]395 for(int i = 0; i < thrd_count; i++) {
396 ScheduleThread( thrds[i] );
[0c78741]397 }
[09800e9]398 case Callback:
399 callback();
400 default:
401 abort("KERNEL ERROR: Unexpected action to run after thread");
[8fcbb4c]402 }
[c84e80a]403}
404
[14a61b5]405// KERNEL_ONLY
[0c92c9f]406// Context invoker for processors
407// This is the entry point for processors (kernel threads)
408// It effectively constructs a coroutine by stealing the pthread stack
[c29c342]409static void * CtxInvokeProcessor(void * arg) {
[8def349]410 processor * proc = (processor *) arg;
[14a61b5]411 kernelTLS.this_processor = proc;
412 kernelTLS.this_thread = NULL;
413 kernelTLS.preemption_state.[enabled, disable_count] = [false, 1];
[8def349]414 // SKULLDUGGERY: We want to create a context for the processor coroutine
415 // which is needed for the 2-step context switch. However, there is no reason
[1c273d0]416 // to waste the perfectly valid stack create by pthread.
[8def349]417 current_stack_info_t info;
[b2f6113]418 __stack_t ctx;
419 info.storage = &ctx;
[094476d]420 (proc->runner){ proc, &info };
[8def349]421
[b2f6113]422 __cfaabi_dbg_print_safe("Coroutine : created stack %p\n", get_coroutine(proc->runner)->stack.storage);
[8fcbb4c]423
[0c92c9f]424 //Set global state
[14a61b5]425 kernelTLS.this_thread = NULL;
[8def349]426
427 //We now have a proper context from which to schedule threads
[094476d]428 __cfaabi_dbg_print_safe("Kernel : core %p created (%p, %p)\n", proc, &proc->runner, &ctx);
[8def349]429
[1c273d0]430 // SKULLDUGGERY: Since the coroutine doesn't have its own stack, we can't
431 // resume it to start it like it normally would, it will just context switch
432 // back to here. Instead directly call the main since we already are on the
[8def349]433 // appropriate stack.
[094476d]434 get_coroutine(proc->runner)->state = Active;
435 main( proc->runner );
436 get_coroutine(proc->runner)->state = Halted;
[8def349]437
[0c92c9f]438 // Main routine of the core returned, the core is now fully terminated
[094476d]439 __cfaabi_dbg_print_safe("Kernel : core %p main ended (%p)\n", proc, &proc->runner);
[8def349]440
441 return NULL;
[c84e80a]442}
443
[c29c342]444static void start(processor * this) {
[36982fc]445 __cfaabi_dbg_print_safe("Kernel : Starting core %p\n", this);
[82ff5845]446
[8fcbb4c]447 pthread_create( &this->kernel_thread, NULL, CtxInvokeProcessor, (void*)this );
[eb2e723]448
[36982fc]449 __cfaabi_dbg_print_safe("Kernel : core %p started\n", this);
[eb2e723]450}
451
[14a61b5]452// KERNEL_ONLY
[e8e457e]453void kernel_first_resume( processor * this ) {
454 thread_desc * src = mainThread;
[094476d]455 coroutine_desc * dst = get_coroutine(this->runner);
[b69ea6b]456
[14a61b5]457 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]458
[b2f6113]459 __stack_prepare( &dst->stack, 65000 );
[094476d]460 CtxStart(&this->runner, CtxInvokeCoroutine);
[b69ea6b]461
[14a61b5]462 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]463
[e8e457e]464 dst->last = &src->self_cor;
465 dst->starter = dst->starter ? dst->starter : &src->self_cor;
[b69ea6b]466
467 // set state of current coroutine to inactive
468 src->state = src->state == Halted ? Halted : Inactive;
469
470 // context switch to specified coroutine
[69a61d2]471 verify( dst->context.SP );
[b2f6113]472 CtxSwitch( &src->context, &dst->context );
[b69ea6b]473 // when CtxSwitch returns we are back in the src coroutine
474
475 // set state of new coroutine to active
476 src->state = Active;
477
[14a61b5]478 verify( ! kernelTLS.preemption_state.enabled );
[b69ea6b]479}
480
[e8e457e]481// KERNEL_ONLY
482void kernel_last_resume( processor * this ) {
483 coroutine_desc * src = &mainThread->self_cor;
484 coroutine_desc * dst = get_coroutine(this->runner);
485
486 verify( ! kernelTLS.preemption_state.enabled );
487 verify( dst->starter == src );
488 verify( dst->context.SP );
489
490 // context switch to the processor
491 CtxSwitch( &src->context, &dst->context );
492}
493
[8def349]494//-----------------------------------------------------------------------------
495// Scheduler routines
[14a61b5]496
497// KERNEL ONLY
[348006f]498void ScheduleThread( thread_desc * thrd ) {
[135b431]499 verify( thrd );
[e8e457e]500 verify( thrd->state != Halted );
[1c273d0]501
[14a61b5]502 verify( ! kernelTLS.preemption_state.enabled );
[690f13c]503
[4aa2fb2]504 verifyf( thrd->next == NULL, "Expected null got %p", thrd->next );
[1c273d0]505
[de6319f]506 with( *thrd->curr_cluster ) {
[65deb18]507 lock ( ready_queue_lock __cfaabi_dbg_ctx2 );
[6b4cdd3]508 bool was_empty = !(ready_queue != 0);
[65deb18]509 append( ready_queue, thrd );
510 unlock( ready_queue_lock );
[6b4cdd3]511
[85b1deb]512 if(was_empty) {
[6b4cdd3]513 lock (proc_list_lock __cfaabi_dbg_ctx2);
514 if(idles) {
[85b1deb]515 wake_fast(idles.head);
[6b4cdd3]516 }
517 unlock (proc_list_lock);
518 }
[85b1deb]519 else if( struct processor * idle = idles.head ) {
520 wake_fast(idle);
521 }
522
[65deb18]523 }
[1c273d0]524
[14a61b5]525 verify( ! kernelTLS.preemption_state.enabled );
[db6f06a]526}
527
[14a61b5]528// KERNEL ONLY
[65deb18]529thread_desc * nextThread(cluster * this) with( *this ) {
[14a61b5]530 verify( ! kernelTLS.preemption_state.enabled );
[65deb18]531 lock( ready_queue_lock __cfaabi_dbg_ctx2 );
532 thread_desc * head = pop_head( ready_queue );
533 unlock( ready_queue_lock );
[14a61b5]534 verify( ! kernelTLS.preemption_state.enabled );
[db6f06a]535 return head;
[eb2e723]536}
537
[82ff5845]538void BlockInternal() {
539 disable_interrupts();
[14a61b5]540 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]541 returnToKernel();
[14a61b5]542 verify( ! kernelTLS.preemption_state.enabled );
[36982fc]543 enable_interrupts( __cfaabi_dbg_ctx );
[75f3522]544}
545
[ea7d2b0]546void BlockInternal( __spinlock_t * lock ) {
[82ff5845]547 disable_interrupts();
[14a61b5]548 with( *kernelTLS.this_processor ) {
[de6319f]549 finish.action_code = Release;
550 finish.lock = lock;
551 }
[0b33412]552
[afd550c]553 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]554 returnToKernel();
[afd550c]555 verify( ! kernelTLS.preemption_state.enabled );
[0b33412]556
[36982fc]557 enable_interrupts( __cfaabi_dbg_ctx );
[db6f06a]558}
559
[82ff5845]560void BlockInternal( thread_desc * thrd ) {
561 disable_interrupts();
[14a61b5]562 with( * kernelTLS.this_processor ) {
[de6319f]563 finish.action_code = Schedule;
564 finish.thrd = thrd;
565 }
[0b33412]566
[14a61b5]567 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]568 returnToKernel();
[14a61b5]569 verify( ! kernelTLS.preemption_state.enabled );
[0b33412]570
[36982fc]571 enable_interrupts( __cfaabi_dbg_ctx );
[db6f06a]572}
573
[ea7d2b0]574void BlockInternal( __spinlock_t * lock, thread_desc * thrd ) {
[97e3296]575 assert(thrd);
[82ff5845]576 disable_interrupts();
[14a61b5]577 with( * kernelTLS.this_processor ) {
[de6319f]578 finish.action_code = Release_Schedule;
579 finish.lock = lock;
580 finish.thrd = thrd;
581 }
[0b33412]582
[14a61b5]583 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]584 returnToKernel();
[14a61b5]585 verify( ! kernelTLS.preemption_state.enabled );
[0b33412]586
[36982fc]587 enable_interrupts( __cfaabi_dbg_ctx );
[eb2e723]588}
589
[ea7d2b0]590void BlockInternal(__spinlock_t * locks [], unsigned short count) {
[82ff5845]591 disable_interrupts();
[14a61b5]592 with( * kernelTLS.this_processor ) {
[de6319f]593 finish.action_code = Release_Multi;
594 finish.locks = locks;
595 finish.lock_count = count;
596 }
[0b33412]597
[14a61b5]598 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]599 returnToKernel();
[14a61b5]600 verify( ! kernelTLS.preemption_state.enabled );
[0b33412]601
[36982fc]602 enable_interrupts( __cfaabi_dbg_ctx );
[0c78741]603}
604
[ea7d2b0]605void BlockInternal(__spinlock_t * locks [], unsigned short lock_count, thread_desc * thrds [], unsigned short thrd_count) {
[82ff5845]606 disable_interrupts();
[14a61b5]607 with( *kernelTLS.this_processor ) {
[de6319f]608 finish.action_code = Release_Multi_Schedule;
609 finish.locks = locks;
610 finish.lock_count = lock_count;
611 finish.thrds = thrds;
612 finish.thrd_count = thrd_count;
613 }
[0b33412]614
[14a61b5]615 verify( ! kernelTLS.preemption_state.enabled );
[82c948c]616 returnToKernel();
[14a61b5]617 verify( ! kernelTLS.preemption_state.enabled );
[0b33412]618
[36982fc]619 enable_interrupts( __cfaabi_dbg_ctx );
[0c78741]620}
621
[09800e9]622void BlockInternal(__finish_callback_fptr_t callback) {
623 disable_interrupts();
624 with( *kernelTLS.this_processor ) {
625 finish.action_code = Callback;
626 finish.callback = callback;
627 }
628
629 verify( ! kernelTLS.preemption_state.enabled );
630 returnToKernel();
631 verify( ! kernelTLS.preemption_state.enabled );
632
633 enable_interrupts( __cfaabi_dbg_ctx );
634}
635
[14a61b5]636// KERNEL ONLY
[ea7d2b0]637void LeaveThread(__spinlock_t * lock, thread_desc * thrd) {
[14a61b5]638 verify( ! kernelTLS.preemption_state.enabled );
639 with( * kernelTLS.this_processor ) {
[de6319f]640 finish.action_code = thrd ? Release_Schedule : Release;
641 finish.lock = lock;
642 finish.thrd = thrd;
643 }
[f2b12406]644
[82c948c]645 returnToKernel();
[f2b12406]646}
647
[fa21ac9]648//=============================================================================================
649// Kernel Setup logic
650//=============================================================================================
[eb2e723]651//-----------------------------------------------------------------------------
652// Kernel boot procedures
[c29c342]653static void kernel_startup(void) {
[14a61b5]654 verify( ! kernelTLS.preemption_state.enabled );
[36982fc]655 __cfaabi_dbg_print_safe("Kernel : Starting\n");
[eb2e723]656
[b2f6113]657 __page_size = sysconf( _SC_PAGESIZE );
658
[ea8b2f7]659 __cfa_dbg_global_clusters.list{ __get };
660 __cfa_dbg_global_clusters.lock{};
[de94a60]661
[de6319f]662 // Initialize the main cluster
663 mainCluster = (cluster *)&storage_mainCluster;
664 (*mainCluster){"Main Cluster"};
665
666 __cfaabi_dbg_print_safe("Kernel : Main cluster ready\n");
667
[eb2e723]668 // Start by initializing the main thread
[1c273d0]669 // SKULLDUGGERY: the mainThread steals the process main thread
[969b3fe]670 // which will then be scheduled by the mainProcessor normally
671 mainThread = (thread_desc *)&storage_mainThread;
[8fcbb4c]672 current_stack_info_t info;
[b2f6113]673 info.storage = (__stack_t*)&storage_mainThreadCtx;
[83a071f9]674 (*mainThread){ &info };
[eb2e723]675
[36982fc]676 __cfaabi_dbg_print_safe("Kernel : Main thread ready\n");
[fa21ac9]677
[bd98b58]678
[de6319f]679
680 // Construct the processor context of the main processor
681 void ?{}(processorCtx_t & this, processor * proc) {
682 (this.__cor){ "Processor" };
683 this.__cor.starter = NULL;
684 this.proc = proc;
685 }
686
687 void ?{}(processor & this) with( this ) {
688 name = "Main Processor";
689 cltr = mainCluster;
690 terminated{ 0 };
691 do_terminate = false;
692 preemption_alarm = NULL;
693 pending_preemption = false;
694 kernel_thread = pthread_self();
695
696 runner{ &this };
697 __cfaabi_dbg_print_safe("Kernel : constructed main processor context %p\n", &runner);
698 }
[fa21ac9]699
[969b3fe]700 // Initialize the main processor and the main processor ctx
[eb2e723]701 // (the coroutine that contains the processing control flow)
[969b3fe]702 mainProcessor = (processor *)&storage_mainProcessor;
[de6319f]703 (*mainProcessor){};
[eb2e723]704
[dcb42b8]705 //initialize the global state variables
[14a61b5]706 kernelTLS.this_processor = mainProcessor;
707 kernelTLS.this_thread = mainThread;
[eb2e723]708
[82ff5845]709 // Enable preemption
710 kernel_start_preemption();
711
[969b3fe]712 // Add the main thread to the ready queue
713 // once resume is called on mainProcessor->runner the mainThread needs to be scheduled like any normal thread
714 ScheduleThread(mainThread);
715
716 // SKULLDUGGERY: Force a context switch to the main processor to set the main thread's context to the current UNIX
[dcb42b8]717 // context. Hence, the main thread does not begin through CtxInvokeThread, like all other threads. The trick here is that
[1c273d0]718 // mainThread is on the ready queue when this call is made.
[14a61b5]719 kernel_first_resume( kernelTLS.this_processor );
[eb2e723]720
[dcb42b8]721
722
723 // THE SYSTEM IS NOW COMPLETELY RUNNING
[36982fc]724 __cfaabi_dbg_print_safe("Kernel : Started\n--------------------------------------------------\n\n");
[82ff5845]725
[14a61b5]726 verify( ! kernelTLS.preemption_state.enabled );
[36982fc]727 enable_interrupts( __cfaabi_dbg_ctx );
[afd550c]728 verify( TL_GET( preemption_state.enabled ) );
[eb2e723]729}
730
[c29c342]731static void kernel_shutdown(void) {
[36982fc]732 __cfaabi_dbg_print_safe("\n--------------------------------------------------\nKernel : Shutting down\n");
[eb2e723]733
[afd550c]734 verify( TL_GET( preemption_state.enabled ) );
[4e6fb8e]735 disable_interrupts();
[14a61b5]736 verify( ! kernelTLS.preemption_state.enabled );
[4e6fb8e]737
[969b3fe]738 // SKULLDUGGERY: Notify the mainProcessor it needs to terminates.
[dcb42b8]739 // When its coroutine terminates, it return control to the mainThread
740 // which is currently here
[ea8b2f7]741 __atomic_store_n(&mainProcessor->do_terminate, true, __ATOMIC_RELEASE);
[e8e457e]742 kernel_last_resume( kernelTLS.this_processor );
[ea8b2f7]743 mainThread->self_cor.state = Halted;
[eb2e723]744
[dcb42b8]745 // THE SYSTEM IS NOW COMPLETELY STOPPED
[eb2e723]746
[82ff5845]747 // Disable preemption
748 kernel_stop_preemption();
749
[969b3fe]750 // Destroy the main processor and its context in reverse order of construction
[dcb42b8]751 // These were manually constructed so we need manually destroy them
[094476d]752 ^(mainProcessor->runner){};
[969b3fe]753 ^(mainProcessor){};
[eb2e723]754
[dcb42b8]755 // Final step, destroy the main thread since it is no longer needed
756 // Since we provided a stack to this taxk it will not destroy anything
[eb2e723]757 ^(mainThread){};
758
[ea8b2f7]759 ^(__cfa_dbg_global_clusters.list){};
760 ^(__cfa_dbg_global_clusters.lock){};
[a1a17a74]761
[36982fc]762 __cfaabi_dbg_print_safe("Kernel : Shutdown complete\n");
[9d944b2]763}
764
[14a61b5]765//=============================================================================================
766// Kernel Quiescing
767//=============================================================================================
[c29c342]768static void halt(processor * this) with( *this ) {
[85b1deb]769 // verify( ! __atomic_load_n(&do_terminate, __ATOMIC_SEQ_CST) );
[ea8b2f7]770
[6b4cdd3]771 with( *cltr ) {
772 lock (proc_list_lock __cfaabi_dbg_ctx2);
773 remove (procs, *this);
774 push_front(idles, *this);
775 unlock (proc_list_lock);
776 }
[14a61b5]777
[6b4cdd3]778 __cfaabi_dbg_print_safe("Kernel : Processor %p ready to sleep\n", this);
[14a61b5]779
[85b1deb]780 wait( idleLock );
[14a61b5]781
[6b4cdd3]782 __cfaabi_dbg_print_safe("Kernel : Processor %p woke up and ready to run\n", this);
[14a61b5]783
[6b4cdd3]784 with( *cltr ) {
785 lock (proc_list_lock __cfaabi_dbg_ctx2);
786 remove (idles, *this);
787 push_front(procs, *this);
788 unlock (proc_list_lock);
789 }
790}
791
[dbe9b08]792//=============================================================================================
793// Unexpected Terminating logic
794//=============================================================================================
[ea7d2b0]795static __spinlock_t kernel_abort_lock;
[9d944b2]796static bool kernel_abort_called = false;
797
[afd550c]798void * kernel_abort(void) __attribute__ ((__nothrow__)) {
[9d944b2]799 // abort cannot be recursively entered by the same or different processors because all signal handlers return when
800 // the globalAbort flag is true.
[36982fc]801 lock( kernel_abort_lock __cfaabi_dbg_ctx2 );
[9d944b2]802
803 // first task to abort ?
[de94a60]804 if ( kernel_abort_called ) { // not first task to abort ?
[ea7d2b0]805 unlock( kernel_abort_lock );
[1c273d0]806
[9d944b2]807 sigset_t mask;
808 sigemptyset( &mask );
[de94a60]809 sigaddset( &mask, SIGALRM ); // block SIGALRM signals
810 sigsuspend( &mask ); // block the processor to prevent further damage during abort
811 _exit( EXIT_FAILURE ); // if processor unblocks before it is killed, terminate it
812 }
813 else {
814 kernel_abort_called = true;
815 unlock( kernel_abort_lock );
[9d944b2]816 }
817
[14a61b5]818 return kernelTLS.this_thread;
[9d944b2]819}
820
821void kernel_abort_msg( void * kernel_data, char * abort_text, int abort_text_size ) {
822 thread_desc * thrd = kernel_data;
823
[de94a60]824 if(thrd) {
825 int len = snprintf( abort_text, abort_text_size, "Error occurred while executing thread %.256s (%p)", thrd->self_cor.name, thrd );
[1c40091]826 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[de94a60]827
[212c2187]828 if ( &thrd->self_cor != thrd->curr_cor ) {
829 len = snprintf( abort_text, abort_text_size, " in coroutine %.256s (%p).\n", thrd->curr_cor->name, thrd->curr_cor );
[1c40091]830 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[de94a60]831 }
832 else {
[1c40091]833 __cfaabi_bits_write( STDERR_FILENO, ".\n", 2 );
[de94a60]834 }
[1c273d0]835 }
[9d944b2]836 else {
[de94a60]837 int len = snprintf( abort_text, abort_text_size, "Error occurred outside of any thread.\n" );
[1c40091]838 __cfaabi_bits_write( STDERR_FILENO, abort_text, len );
[9d944b2]839 }
840}
841
[2b8bc41]842int kernel_abort_lastframe( void ) __attribute__ ((__nothrow__)) {
[14a61b5]843 return get_coroutine(kernelTLS.this_thread) == get_coroutine(mainThread) ? 4 : 2;
[2b8bc41]844}
845
[de94a60]846static __spinlock_t kernel_debug_lock;
847
[9d944b2]848extern "C" {
[1c40091]849 void __cfaabi_bits_acquire() {
[36982fc]850 lock( kernel_debug_lock __cfaabi_dbg_ctx2 );
[9d944b2]851 }
852
[1c40091]853 void __cfaabi_bits_release() {
[ea7d2b0]854 unlock( kernel_debug_lock );
[9d944b2]855 }
[8118303]856}
857
[fa21ac9]858//=============================================================================================
859// Kernel Utilities
860//=============================================================================================
[bd98b58]861//-----------------------------------------------------------------------------
862// Locks
[242a902]863void ?{}( semaphore & this, int count = 1 ) {
864 (this.lock){};
865 this.count = count;
866 (this.waiting){};
[db6f06a]867}
[242a902]868void ^?{}(semaphore & this) {}
[db6f06a]869
[65deb18]870void P(semaphore & this) with( this ){
871 lock( lock __cfaabi_dbg_ctx2 );
872 count -= 1;
873 if ( count < 0 ) {
[bdeba0b]874 // queue current task
[14a61b5]875 append( waiting, kernelTLS.this_thread );
[bdeba0b]876
877 // atomically release spin lock and block
[65deb18]878 BlockInternal( &lock );
[8def349]879 }
[4e6fb8e]880 else {
[65deb18]881 unlock( lock );
[4e6fb8e]882 }
[bd98b58]883}
884
[65deb18]885void V(semaphore & this) with( this ) {
[bdeba0b]886 thread_desc * thrd = NULL;
[65deb18]887 lock( lock __cfaabi_dbg_ctx2 );
888 count += 1;
889 if ( count <= 0 ) {
[bdeba0b]890 // remove task at head of waiting list
[65deb18]891 thrd = pop_head( waiting );
[bd98b58]892 }
[bdeba0b]893
[65deb18]894 unlock( lock );
[bdeba0b]895
896 // make new owner
897 WakeThread( thrd );
[bd98b58]898}
899
[f7d6bb0]900//-----------------------------------------------------------------------------
[de94a60]901// Global Queues
902void doregister( cluster & cltr ) {
[ea8b2f7]903 lock ( __cfa_dbg_global_clusters.lock __cfaabi_dbg_ctx2);
904 push_front( __cfa_dbg_global_clusters.list, cltr );
905 unlock ( __cfa_dbg_global_clusters.lock );
[de94a60]906}
[f7d6bb0]907
[de94a60]908void unregister( cluster & cltr ) {
[ea8b2f7]909 lock ( __cfa_dbg_global_clusters.lock __cfaabi_dbg_ctx2);
910 remove( __cfa_dbg_global_clusters.list, cltr );
911 unlock( __cfa_dbg_global_clusters.lock );
[de94a60]912}
[f7d6bb0]913
[a1a17a74]914void doregister( cluster * cltr, thread_desc & thrd ) {
915 lock (cltr->thread_list_lock __cfaabi_dbg_ctx2);
[d4e68a6]916 cltr->nthreads += 1;
[a1a17a74]917 push_front(cltr->threads, thrd);
918 unlock (cltr->thread_list_lock);
919}
920
921void unregister( cluster * cltr, thread_desc & thrd ) {
922 lock (cltr->thread_list_lock __cfaabi_dbg_ctx2);
923 remove(cltr->threads, thrd );
[d4e68a6]924 cltr->nthreads -= 1;
[a1a17a74]925 unlock(cltr->thread_list_lock);
926}
[9181f1d]927
[de94a60]928void doregister( cluster * cltr, processor * proc ) {
[639991a]929 lock (cltr->proc_list_lock __cfaabi_dbg_ctx2);
[d4e68a6]930 cltr->nprocessors += 1;
[639991a]931 push_front(cltr->procs, *proc);
932 unlock (cltr->proc_list_lock);
[de94a60]933}
934
935void unregister( cluster * cltr, processor * proc ) {
[639991a]936 lock (cltr->proc_list_lock __cfaabi_dbg_ctx2);
937 remove(cltr->procs, *proc );
[d4e68a6]938 cltr->nprocessors -= 1;
[639991a]939 unlock(cltr->proc_list_lock);
[de94a60]940}
941
942//-----------------------------------------------------------------------------
943// Debug
944__cfaabi_dbg_debug_do(
[1997b4e]945 extern "C" {
946 void __cfaabi_dbg_record(__spinlock_t & this, const char * prev_name) {
947 this.prev_name = prev_name;
948 this.prev_thrd = kernelTLS.this_thread;
949 }
[9181f1d]950 }
[f7d6bb0]951)
[2026bb6]952
953//-----------------------------------------------------------------------------
954// Debug
955bool threading_enabled(void) {
956 return true;
957}
[8118303]958// Local Variables: //
959// mode: c //
960// tab-width: 4 //
961// End: //
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