[c81ebf9] | 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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| 7 | // signal.c --
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| 8 | //
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| 9 | // Author : Thierry Delisle
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| 10 | // Created On : Mon Jun 5 14:20:42 2017
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[6b0b624] | 11 | // Last Modified By : Peter A. Buhr
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[e9b49379] | 12 | // Last Modified On : Wed Aug 26 16:46:03 2020
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| 13 | // Update Count : 53
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[c81ebf9] | 14 | //
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| 15 |
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[2026bb6] | 16 | #define __cforall_thread__
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| 17 |
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[73abe95] | 18 | #include "preemption.hfa"
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[a83ffa4] | 19 | #include <assert.h>
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[c81ebf9] | 20 |
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[82ff5845] | 21 | #include <errno.h>
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| 22 | #include <stdio.h>
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| 23 | #include <string.h>
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| 24 | #include <unistd.h>
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[27f5f71] | 25 | #include <limits.h> // PTHREAD_STACK_MIN
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[c81ebf9] | 26 |
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[73abe95] | 27 | #include "bits/signal.hfa"
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[e660761] | 28 | #include "kernel_private.hfa"
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[82ff5845] | 29 |
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[d8548e2] | 30 | #if !defined(__CFA_DEFAULT_PREEMPTION__)
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[2a84d06d] | 31 | #define __CFA_DEFAULT_PREEMPTION__ 10`ms
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[d8548e2] | 32 | #endif
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[c81ebf9] | 33 |
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[2a84d06d] | 34 | Duration default_preemption() __attribute__((weak)) {
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[c81ebf9] | 35 | return __CFA_DEFAULT_PREEMPTION__;
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| 36 | }
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| 37 |
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[969b3fe] | 38 | // FwdDeclarations : timeout handlers
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[c81ebf9] | 39 | static void preempt( processor * this );
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[9b1dcc2] | 40 | static void timeout( struct __processor_id_t * id, $thread * this );
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[c81ebf9] | 41 |
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[969b3fe] | 42 | // FwdDeclarations : Signal handlers
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[c29c342] | 43 | static void sigHandler_ctxSwitch( __CFA_SIGPARMS__ );
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[c59a346] | 44 | static void sigHandler_alarm ( __CFA_SIGPARMS__ );
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[c29c342] | 45 | static void sigHandler_segv ( __CFA_SIGPARMS__ );
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| 46 | static void sigHandler_ill ( __CFA_SIGPARMS__ );
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| 47 | static void sigHandler_fpe ( __CFA_SIGPARMS__ );
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| 48 | static void sigHandler_abort ( __CFA_SIGPARMS__ );
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[82ff5845] | 49 |
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[969b3fe] | 50 | // FwdDeclarations : alarm thread main
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[c29c342] | 51 | static void * alarm_loop( __attribute__((unused)) void * args );
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[969b3fe] | 52 |
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| 53 | // Machine specific register name
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[381fdee] | 54 | #if defined( __i386 )
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[b2b44d8] | 55 | #define CFA_REG_IP gregs[REG_EIP]
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[381fdee] | 56 | #elif defined( __x86_64 )
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| 57 | #define CFA_REG_IP gregs[REG_RIP]
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[e9b49379] | 58 | #elif defined( __arm__ )
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| 59 | #define CFA_REG_IP arm_pc
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| 60 | #elif defined( __aarch64__ )
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[482fa08] | 61 | #define CFA_REG_IP pc
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[381fdee] | 62 | #else
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[e9b49379] | 63 | #error unsupported hardware architecture
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[cd17862] | 64 | #endif
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| 65 |
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[969b3fe] | 66 | KERNEL_STORAGE(event_kernel_t, event_kernel); // private storage for event kernel
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| 67 | event_kernel_t * event_kernel; // kernel public handle to even kernel
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| 68 | static pthread_t alarm_thread; // pthread handle to alarm thread
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[09d4b22] | 69 | static void * alarm_stack; // pthread stack for alarm thread
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[969b3fe] | 70 |
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[c29c342] | 71 | static void ?{}(event_kernel_t & this) with( this ) {
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[65deb18] | 72 | alarms{};
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| 73 | lock{};
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[969b3fe] | 74 | }
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[82ff5845] | 75 |
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[4dad189] | 76 | enum {
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| 77 | PREEMPT_NORMAL = 0,
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| 78 | PREEMPT_TERMINATE = 1,
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| 79 | };
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| 80 |
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[c81ebf9] | 81 | //=============================================================================================
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| 82 | // Kernel Preemption logic
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| 83 | //=============================================================================================
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| 84 |
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[969b3fe] | 85 | // Get next expired node
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[2a84d06d] | 86 | static inline alarm_node_t * get_expired( alarm_list_t * alarms, Time currtime ) {
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[d3ab183] | 87 | if( ! & (*alarms)`first ) return 0p; // If no alarms return null
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| 88 | if( (*alarms)`first.alarm >= currtime ) return 0p; // If alarms head not expired return null
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[27f5f71] | 89 | return pop(alarms); // Otherwise just pop head
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[969b3fe] | 90 | }
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| 91 |
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| 92 | // Tick one frame of the Discrete Event Simulation for alarms
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[9b1dcc2] | 93 | static void tick_preemption( struct __processor_id_t * id ) {
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[27f5f71] | 94 | alarm_node_t * node = 0p; // Used in the while loop but cannot be declared in the while condition
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| 95 | alarm_list_t * alarms = &event_kernel->alarms; // Local copy for ease of reading
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| 96 | Time currtime = __kernel_get_time(); // Check current time once so everything "happens at once"
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[8cb529e] | 97 |
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[969b3fe] | 98 | //Loop throught every thing expired
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| 99 | while( node = get_expired( alarms, currtime ) ) {
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[b1a4300] | 100 | // __cfaabi_dbg_print_buffer_decl( " KERNEL: preemption tick.\n" );
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[185efe6] | 101 | Duration period = node->period;
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| 102 | if( period == 0) {
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| 103 | node->set = false; // Node is one-shot, just mark it as not pending
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| 104 | }
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[1c273d0] | 105 |
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[969b3fe] | 106 | // Check if this is a kernel
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[c81ebf9] | 107 | if( node->kernel_alarm ) {
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| 108 | preempt( node->proc );
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| 109 | }
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| 110 | else {
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[9b1dcc2] | 111 | timeout( id, node->thrd );
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[c81ebf9] | 112 | }
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| 113 |
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[969b3fe] | 114 | // Check if this is a periodic alarm
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[8cb529e] | 115 | if( period > 0 ) {
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[b1a4300] | 116 | // __cfaabi_dbg_print_buffer_local( " KERNEL: alarm period is %lu.\n", period.tv );
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[969b3fe] | 117 | node->alarm = currtime + period; // Alarm is periodic, add currtime to it (used cached current time)
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| 118 | insert( alarms, node ); // Reinsert the node for the next time it triggers
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[c81ebf9] | 119 | }
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| 120 | }
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| 121 |
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[969b3fe] | 122 | // If there are still alarms pending, reset the timer
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[d3ab183] | 123 | if( & (*alarms)`first ) {
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[6a490b2] | 124 | __cfadbg_print_buffer_decl(preemption, " KERNEL: @%ju(%ju) resetting alarm to %ju.\n", currtime.tv, __kernel_get_time().tv, (alarms->head->alarm - currtime).tv);
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[d3ab183] | 125 | Duration delta = (*alarms)`first.alarm - currtime;
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| 126 | Duration capped = max(delta, 50`us);
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[b1a4300] | 127 | // itimerval tim = { caped };
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| 128 | // __cfaabi_dbg_print_buffer_local( " Values are %lu, %lu, %lu %lu.\n", delta.tv, caped.tv, tim.it_value.tv_sec, tim.it_value.tv_usec);
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| 129 |
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[d3ab183] | 130 | __kernel_set_timer( capped );
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[b1a4300] | 131 | }
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[c81ebf9] | 132 | }
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| 133 |
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[969b3fe] | 134 | // Update the preemption of a processor and notify interested parties
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[2a84d06d] | 135 | void update_preemption( processor * this, Duration duration ) {
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[c81ebf9] | 136 | alarm_node_t * alarm = this->preemption_alarm;
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| 137 |
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| 138 | // Alarms need to be enabled
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[2a84d06d] | 139 | if ( duration > 0 && ! alarm->set ) {
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[c81ebf9] | 140 | alarm->alarm = __kernel_get_time() + duration;
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| 141 | alarm->period = duration;
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| 142 | register_self( alarm );
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| 143 | }
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[8ad6533] | 144 | // Zero duration but alarm is set
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[c81ebf9] | 145 | else if ( duration == 0 && alarm->set ) {
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| 146 | unregister_self( alarm );
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| 147 | alarm->alarm = 0;
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| 148 | alarm->period = 0;
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| 149 | }
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| 150 | // If alarm is different from previous, change it
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| 151 | else if ( duration > 0 && alarm->period != duration ) {
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| 152 | unregister_self( alarm );
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| 153 | alarm->alarm = __kernel_get_time() + duration;
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| 154 | alarm->period = duration;
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| 155 | register_self( alarm );
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| 156 | }
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| 157 | }
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| 158 |
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| 159 | //=============================================================================================
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[cd17862] | 160 | // Kernel Signal Tools
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[c81ebf9] | 161 | //=============================================================================================
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| 162 |
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[36982fc] | 163 | __cfaabi_dbg_debug_do( static thread_local void * last_interrupt = 0; )
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[b227f68] | 164 |
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[82ff5845] | 165 | extern "C" {
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[969b3fe] | 166 | // Disable interrupts by incrementing the counter
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[82ff5845] | 167 | void disable_interrupts() {
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[afd550c] | 168 | with( kernelTLS.preemption_state ) {
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[1f81d61] | 169 | #if GCC_VERSION > 50000
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[13073be] | 170 | static_assert(__atomic_always_lock_free(sizeof(enabled), &enabled), "Must be lock-free");
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[1f81d61] | 171 | #endif
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[13073be] | 172 |
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| 173 | // Set enabled flag to false
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| 174 | // should be atomic to avoid preemption in the middle of the operation.
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| 175 | // use memory order RELAXED since there is no inter-thread on this variable requirements
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| 176 | __atomic_store_n(&enabled, false, __ATOMIC_RELAXED);
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| 177 |
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| 178 | // Signal the compiler that a fence is needed but only for signal handlers
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| 179 | __atomic_signal_fence(__ATOMIC_ACQUIRE);
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| 180 |
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[de6319f] | 181 | __attribute__((unused)) unsigned short new_val = disable_count + 1;
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| 182 | disable_count = new_val;
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| 183 | verify( new_val < 65_000u ); // If this triggers someone is disabling interrupts without enabling them
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| 184 | }
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[82ff5845] | 185 | }
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| 186 |
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[969b3fe] | 187 | // Enable interrupts by decrementing the counter
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[c7a900a] | 188 | // If counter reaches 0, execute any pending __cfactx_switch
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[36982fc] | 189 | void enable_interrupts( __cfaabi_dbg_ctx_param ) {
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[13073be] | 190 | processor * proc = kernelTLS.this_processor; // Cache the processor now since interrupts can start happening after the atomic store
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[8e9e9a2] | 191 | /* paranoid */ verify( proc );
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[969b3fe] | 192 |
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[afd550c] | 193 | with( kernelTLS.preemption_state ){
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[de6319f] | 194 | unsigned short prev = disable_count;
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| 195 | disable_count -= 1;
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| 196 | verify( prev != 0u ); // If this triggers someone is enabled already enabled interruptsverify( prev != 0u );
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| 197 |
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| 198 | // Check if we need to prempt the thread because an interrupt was missed
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| 199 | if( prev == 1 ) {
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[1f81d61] | 200 | #if GCC_VERSION > 50000
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[13073be] | 201 | static_assert(__atomic_always_lock_free(sizeof(enabled), &enabled), "Must be lock-free");
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[1f81d61] | 202 | #endif
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[13073be] | 203 |
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| 204 | // Set enabled flag to true
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| 205 | // should be atomic to avoid preemption in the middle of the operation.
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| 206 | // use memory order RELAXED since there is no inter-thread on this variable requirements
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| 207 | __atomic_store_n(&enabled, true, __ATOMIC_RELAXED);
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| 208 |
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| 209 | // Signal the compiler that a fence is needed but only for signal handlers
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| 210 | __atomic_signal_fence(__ATOMIC_RELEASE);
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[de6319f] | 211 | if( proc->pending_preemption ) {
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| 212 | proc->pending_preemption = false;
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[3381ed7] | 213 | force_yield( __POLL_PREEMPTION );
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[de6319f] | 214 | }
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[d0a045c7] | 215 | }
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[82ff5845] | 216 | }
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[4e6fb8e] | 217 |
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[969b3fe] | 218 | // For debugging purposes : keep track of the last person to enable the interrupts
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[36982fc] | 219 | __cfaabi_dbg_debug_do( proc->last_enable = caller; )
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[82ff5845] | 220 | }
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[969b3fe] | 221 |
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| 222 | // Disable interrupts by incrementint the counter
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[c7a900a] | 223 | // Don't execute any pending __cfactx_switch even if counter reaches 0
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[969b3fe] | 224 | void enable_interrupts_noPoll() {
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[afd550c] | 225 | unsigned short prev = kernelTLS.preemption_state.disable_count;
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| 226 | kernelTLS.preemption_state.disable_count -= 1;
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[2e9aed4] | 227 | verifyf( prev != 0u, "Incremented from %u\n", prev ); // If this triggers someone is enabled already enabled interrupts
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[d0a045c7] | 228 | if( prev == 1 ) {
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[1f81d61] | 229 | #if GCC_VERSION > 50000
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[13073be] | 230 | static_assert(__atomic_always_lock_free(sizeof(kernelTLS.preemption_state.enabled), &kernelTLS.preemption_state.enabled), "Must be lock-free");
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[1f81d61] | 231 | #endif
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[13073be] | 232 | // Set enabled flag to true
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| 233 | // should be atomic to avoid preemption in the middle of the operation.
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| 234 | // use memory order RELAXED since there is no inter-thread on this variable requirements
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| 235 | __atomic_store_n(&kernelTLS.preemption_state.enabled, true, __ATOMIC_RELAXED);
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| 236 |
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| 237 | // Signal the compiler that a fence is needed but only for signal handlers
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| 238 | __atomic_signal_fence(__ATOMIC_RELEASE);
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[d0a045c7] | 239 | }
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[969b3fe] | 240 | }
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[82ff5845] | 241 | }
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| 242 |
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[969b3fe] | 243 | // sigprocmask wrapper : unblock a single signal
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[1c273d0] | 244 | static inline void signal_unblock( int sig ) {
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[82ff5845] | 245 | sigset_t mask;
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| 246 | sigemptyset( &mask );
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[1c273d0] | 247 | sigaddset( &mask, sig );
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[82ff5845] | 248 |
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[27f5f71] | 249 | if ( pthread_sigmask( SIG_UNBLOCK, &mask, 0p ) == -1 ) {
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[169d944] | 250 | abort( "internal error, pthread_sigmask" );
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[cd17862] | 251 | }
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[82ff5845] | 252 | }
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| 253 |
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[969b3fe] | 254 | // sigprocmask wrapper : block a single signal
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[cd17862] | 255 | static inline void signal_block( int sig ) {
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| 256 | sigset_t mask;
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| 257 | sigemptyset( &mask );
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| 258 | sigaddset( &mask, sig );
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[47ecf2b] | 259 |
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[27f5f71] | 260 | if ( pthread_sigmask( SIG_BLOCK, &mask, 0p ) == -1 ) {
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[c59a346] | 261 | abort( "internal error, pthread_sigmask" );
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[cd17862] | 262 | }
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| 263 | }
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[47ecf2b] | 264 |
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[969b3fe] | 265 | // kill wrapper : signal a processor
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[cd17862] | 266 | static void preempt( processor * this ) {
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[4dad189] | 267 | sigval_t value = { PREEMPT_NORMAL };
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| 268 | pthread_sigqueue( this->kernel_thread, SIGUSR1, value );
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| 269 | }
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| 270 |
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[969b3fe] | 271 | // reserved for future use
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[9b1dcc2] | 272 | static void timeout( struct __processor_id_t * id, $thread * this ) {
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[8834751] | 273 | #if !defined( __CFA_NO_STATISTICS__ )
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| 274 | kernelTLS.this_stats = this->curr_cluster->stats;
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| 275 | #endif
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[9b1dcc2] | 276 | __unpark( id, this __cfaabi_dbg_ctx2 );
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[cd17862] | 277 | }
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| 278 |
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[14a61b5] | 279 | // KERNEL ONLY
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[c7a900a] | 280 | // Check if a __cfactx_switch signal handler shoud defer
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[969b3fe] | 281 | // If true : preemption is safe
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| 282 | // If false : preemption is unsafe and marked as pending
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| 283 | static inline bool preemption_ready() {
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[14a61b5] | 284 | // Check if preemption is safe
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| 285 | bool ready = kernelTLS.preemption_state.enabled && ! kernelTLS.preemption_state.in_progress;
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| 286 |
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| 287 | // Adjust the pending flag accordingly
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| 288 | kernelTLS.this_processor->pending_preemption = !ready;
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[969b3fe] | 289 | return ready;
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| 290 | }
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| 291 |
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[cd17862] | 292 | //=============================================================================================
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| 293 | // Kernel Signal Startup/Shutdown logic
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| 294 | //=============================================================================================
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| 295 |
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[969b3fe] | 296 | // Startup routine to activate preemption
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| 297 | // Called from kernel_startup
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[e660761] | 298 | void __kernel_alarm_startup() {
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[169d944] | 299 | __cfaabi_dbg_print_safe( "Kernel : Starting preemption\n" );
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[969b3fe] | 300 |
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| 301 | // Start with preemption disabled until ready
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[14a61b5] | 302 | kernelTLS.preemption_state.enabled = false;
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| 303 | kernelTLS.preemption_state.disable_count = 1;
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[969b3fe] | 304 |
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| 305 | // Initialize the event kernel
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| 306 | event_kernel = (event_kernel_t *)&storage_event_kernel;
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[9236060] | 307 | (*event_kernel){};
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[969b3fe] | 308 |
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| 309 | // Setup proper signal handlers
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[c7a900a] | 310 | __cfaabi_sigaction( SIGUSR1, sigHandler_ctxSwitch, SA_SIGINFO | SA_RESTART ); // __cfactx_switch handler
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[c59a346] | 311 | __cfaabi_sigaction( SIGALRM, sigHandler_alarm , SA_SIGINFO | SA_RESTART ); // debug handler
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[cd17862] | 312 |
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| 313 | signal_block( SIGALRM );
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| 314 |
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[8c50aed] | 315 | alarm_stack = __create_pthread( &alarm_thread, alarm_loop, 0p );
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[cd17862] | 316 | }
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| 317 |
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[969b3fe] | 318 | // Shutdown routine to deactivate preemption
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| 319 | // Called from kernel_shutdown
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[e660761] | 320 | void __kernel_alarm_shutdown() {
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[169d944] | 321 | __cfaabi_dbg_print_safe( "Kernel : Preemption stopping\n" );
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[d6ff3ff] | 322 |
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[969b3fe] | 323 | // Block all signals since we are already shutting down
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[cd17862] | 324 | sigset_t mask;
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| 325 | sigfillset( &mask );
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[27f5f71] | 326 | sigprocmask( SIG_BLOCK, &mask, 0p );
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[cd17862] | 327 |
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[969b3fe] | 328 | // Notify the alarm thread of the shutdown
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[a0b3e32] | 329 | sigval val = { 1 };
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| 330 | pthread_sigqueue( alarm_thread, SIGALRM, val );
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[969b3fe] | 331 |
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| 332 | // Wait for the preemption thread to finish
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[27f5f71] | 333 |
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| 334 | pthread_join( alarm_thread, 0p );
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[09d4b22] | 335 | free( alarm_stack );
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[969b3fe] | 336 |
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| 337 | // Preemption is now fully stopped
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| 338 |
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[169d944] | 339 | __cfaabi_dbg_print_safe( "Kernel : Preemption stopped\n" );
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[cd17862] | 340 | }
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| 341 |
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[969b3fe] | 342 | // Raii ctor/dtor for the preemption_scope
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| 343 | // Used by thread to control when they want to receive preemption signals
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[242a902] | 344 | void ?{}( preemption_scope & this, processor * proc ) {
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[2a84d06d] | 345 | (this.alarm){ proc, (Time){ 0 }, 0`s };
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[242a902] | 346 | this.proc = proc;
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| 347 | this.proc->preemption_alarm = &this.alarm;
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[969b3fe] | 348 |
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[d8548e2] | 349 | update_preemption( this.proc, this.proc->cltr->preemption_rate );
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[cd17862] | 350 | }
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| 351 |
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[242a902] | 352 | void ^?{}( preemption_scope & this ) {
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[cd17862] | 353 | disable_interrupts();
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| 354 |
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[2a84d06d] | 355 | update_preemption( this.proc, 0`s );
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[cd17862] | 356 | }
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| 357 |
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| 358 | //=============================================================================================
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| 359 | // Kernel Signal Handlers
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| 360 | //=============================================================================================
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[47ecf2b] | 361 |
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[969b3fe] | 362 | // Context switch signal handler
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| 363 | // Receives SIGUSR1 signal and causes the current thread to yield
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[c29c342] | 364 | static void sigHandler_ctxSwitch( __CFA_SIGPARMS__ ) {
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[b2b44d8] | 365 | __cfaabi_dbg_debug_do( last_interrupt = (void *)(cxt->uc_mcontext.CFA_REG_IP); )
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[969b3fe] | 366 |
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[4dad189] | 367 | // SKULLDUGGERY: if a thread creates a processor and the immediately deletes it,
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| 368 | // the interrupt that is supposed to force the kernel thread to preempt might arrive
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[482fa08] | 369 | // before the kernel thread has even started running. When that happens, an interrupt
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[97cba9f] | 370 | // with a null 'this_processor' will be caught, just ignore it.
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[14a61b5] | 371 | if(! kernelTLS.this_processor ) return;
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[4dad189] | 372 |
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| 373 | choose(sfp->si_value.sival_int) {
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| 374 | case PREEMPT_NORMAL : ;// Normal case, nothing to do here
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[ea8b2f7] | 375 | case PREEMPT_TERMINATE: verify( __atomic_load_n( &kernelTLS.this_processor->do_terminate, __ATOMIC_SEQ_CST ) );
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[4dad189] | 376 | default:
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[ff878b7] | 377 | abort( "internal error, signal value is %d", sfp->si_value.sival_int );
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[4dad189] | 378 | }
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| 379 |
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[b2b44d8] | 380 | // Check if it is safe to preempt here
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[969b3fe] | 381 | if( !preemption_ready() ) { return; }
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| 382 |
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[b1a4300] | 383 | __cfaabi_dbg_print_buffer_decl( " KERNEL: preempting core %p (%p @ %p).\n", kernelTLS.this_processor, kernelTLS.this_thread, (void *)(cxt->uc_mcontext.CFA_REG_IP) );
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[14a61b5] | 384 |
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| 385 | // Sync flag : prevent recursive calls to the signal handler
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| 386 | kernelTLS.preemption_state.in_progress = true;
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| 387 |
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[a83ffa4] | 388 | // Clear sighandler mask before context switching.
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[1f81d61] | 389 | #if GCC_VERSION > 50000
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[a83ffa4] | 390 | static_assert( sizeof( sigset_t ) == sizeof( cxt->uc_sigmask ), "Expected cxt->uc_sigmask to be of sigset_t" );
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[1f81d61] | 391 | #endif
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[27f5f71] | 392 | if ( pthread_sigmask( SIG_SETMASK, (sigset_t *)&(cxt->uc_sigmask), 0p ) == -1 ) {
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[a83ffa4] | 393 | abort( "internal error, sigprocmask" );
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| 394 | }
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[05615ba] | 395 |
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[14a61b5] | 396 | // TODO: this should go in finish action
|
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| 397 | // Clear the in progress flag
|
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| 398 | kernelTLS.preemption_state.in_progress = false;
|
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[969b3fe] | 399 |
|
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| 400 | // Preemption can occur here
|
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| 401 |
|
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[c7a900a] | 402 | force_yield( __ALARM_PREEMPTION ); // Do the actual __cfactx_switch
|
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[c81ebf9] | 403 | }
|
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| 404 |
|
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[c59a346] | 405 | static void sigHandler_alarm( __CFA_SIGPARMS__ ) {
|
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| 406 | abort("SIGALRM should never reach the signal handler");
|
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[c81ebf9] | 407 | }
|
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| 408 |
|
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[969b3fe] | 409 | // Main of the alarm thread
|
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| 410 | // Waits on SIGALRM and send SIGUSR1 to whom ever needs it
|
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[c29c342] | 411 | static void * alarm_loop( __attribute__((unused)) void * args ) {
|
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[9b1dcc2] | 412 | __processor_id_t id;
|
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| 413 | id.id = doregister(&id);
|
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| 414 |
|
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[969b3fe] | 415 | // Block sigalrms to control when they arrive
|
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[cd17862] | 416 | sigset_t mask;
|
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[ade5272] | 417 | sigfillset(&mask);
|
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[27f5f71] | 418 | if ( pthread_sigmask( SIG_BLOCK, &mask, 0p ) == -1 ) {
|
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[169d944] | 419 | abort( "internal error, pthread_sigmask" );
|
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[82ff5845] | 420 | }
|
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[c81ebf9] | 421 |
|
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[ade5272] | 422 | sigemptyset( &mask );
|
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| 423 | sigaddset( &mask, SIGALRM );
|
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| 424 |
|
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[969b3fe] | 425 | // Main loop
|
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[cd17862] | 426 | while( true ) {
|
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[969b3fe] | 427 | // Wait for a sigalrm
|
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[a0b3e32] | 428 | siginfo_t info;
|
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| 429 | int sig = sigwaitinfo( &mask, &info );
|
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[969b3fe] | 430 |
|
---|
[e2f7bc3] | 431 | if( sig < 0 ) {
|
---|
| 432 | //Error!
|
---|
| 433 | int err = errno;
|
---|
| 434 | switch( err ) {
|
---|
| 435 | case EAGAIN :
|
---|
| 436 | case EINTR :
|
---|
[b1a4300] | 437 | {__cfaabi_dbg_print_buffer_decl( " KERNEL: Spurious wakeup %d.\n", err );}
|
---|
[e2f7bc3] | 438 | continue;
|
---|
[27f5f71] | 439 | case EINVAL :
|
---|
[169d944] | 440 | abort( "Timeout was invalid." );
|
---|
[e2f7bc3] | 441 | default:
|
---|
[169d944] | 442 | abort( "Unhandled error %d", err);
|
---|
[e2f7bc3] | 443 | }
|
---|
| 444 | }
|
---|
| 445 |
|
---|
[969b3fe] | 446 | // If another signal arrived something went wrong
|
---|
[8cb529e] | 447 | assertf(sig == SIGALRM, "Kernel Internal Error, sigwait: Unexpected signal %d (%d : %d)\n", sig, info.si_code, info.si_value.sival_int);
|
---|
| 448 |
|
---|
[169d944] | 449 | // __cfaabi_dbg_print_safe( "Kernel : Caught alarm from %d with %d\n", info.si_code, info.si_value.sival_int );
|
---|
[969b3fe] | 450 | // Switch on the code (a.k.a. the sender) to
|
---|
[8cb529e] | 451 | switch( info.si_code )
|
---|
[a0b3e32] | 452 | {
|
---|
[969b3fe] | 453 | // Timers can apparently be marked as sent for the kernel
|
---|
| 454 | // In either case, tick preemption
|
---|
[8cb529e] | 455 | case SI_TIMER:
|
---|
| 456 | case SI_KERNEL:
|
---|
[169d944] | 457 | // __cfaabi_dbg_print_safe( "Kernel : Preemption thread tick\n" );
|
---|
[36982fc] | 458 | lock( event_kernel->lock __cfaabi_dbg_ctx2 );
|
---|
[9b1dcc2] | 459 | tick_preemption( &id );
|
---|
[ea7d2b0] | 460 | unlock( event_kernel->lock );
|
---|
[8cb529e] | 461 | break;
|
---|
[969b3fe] | 462 | // Signal was not sent by the kernel but by an other thread
|
---|
[8cb529e] | 463 | case SI_QUEUE:
|
---|
[969b3fe] | 464 | // For now, other thread only signal the alarm thread to shut it down
|
---|
| 465 | // If this needs to change use info.si_value and handle the case here
|
---|
[8cb529e] | 466 | goto EXIT;
|
---|
[cd17862] | 467 | }
|
---|
| 468 | }
|
---|
[a0b3e32] | 469 |
|
---|
[8cb529e] | 470 | EXIT:
|
---|
[169d944] | 471 | __cfaabi_dbg_print_safe( "Kernel : Preemption thread stopping\n" );
|
---|
[9b1dcc2] | 472 | unregister(&id);
|
---|
[27f5f71] | 473 | return 0p;
|
---|
[82ff5845] | 474 | }
|
---|
| 475 |
|
---|
[b68fc85] | 476 | //=============================================================================================
|
---|
| 477 | // Kernel Signal Debug
|
---|
| 478 | //=============================================================================================
|
---|
| 479 |
|
---|
| 480 | void __cfaabi_check_preemption() {
|
---|
[14a61b5] | 481 | bool ready = kernelTLS.preemption_state.enabled;
|
---|
[b68fc85] | 482 | if(!ready) { abort("Preemption should be ready"); }
|
---|
| 483 |
|
---|
| 484 | sigset_t oldset;
|
---|
| 485 | int ret;
|
---|
[b81fd95] | 486 | ret = pthread_sigmask(0, ( const sigset_t * ) 0p, &oldset); // workaround trac#208: cast should be unnecessary
|
---|
[b68fc85] | 487 | if(ret != 0) { abort("ERROR sigprocmask returned %d", ret); }
|
---|
| 488 |
|
---|
| 489 | ret = sigismember(&oldset, SIGUSR1);
|
---|
| 490 | if(ret < 0) { abort("ERROR sigismember returned %d", ret); }
|
---|
| 491 | if(ret == 1) { abort("ERROR SIGUSR1 is disabled"); }
|
---|
[a83ffa4] | 492 |
|
---|
| 493 | ret = sigismember(&oldset, SIGALRM);
|
---|
| 494 | if(ret < 0) { abort("ERROR sigismember returned %d", ret); }
|
---|
| 495 | if(ret == 0) { abort("ERROR SIGALRM is enabled"); }
|
---|
| 496 |
|
---|
| 497 | ret = sigismember(&oldset, SIGTERM);
|
---|
| 498 | if(ret < 0) { abort("ERROR sigismember returned %d", ret); }
|
---|
| 499 | if(ret == 1) { abort("ERROR SIGTERM is disabled"); }
|
---|
[b68fc85] | 500 | }
|
---|
| 501 |
|
---|
[ea8b2f7] | 502 | #ifdef __CFA_WITH_VERIFY__
|
---|
| 503 | bool __cfaabi_dbg_in_kernel() {
|
---|
| 504 | return !kernelTLS.preemption_state.enabled;
|
---|
| 505 | }
|
---|
| 506 | #endif
|
---|
| 507 |
|
---|
[6b0b624] | 508 | // Local Variables: //
|
---|
| 509 | // mode: c //
|
---|
| 510 | // tab-width: 4 //
|
---|
| 511 | // End: //
|
---|