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