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 | // exception.c --
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8 | //
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9 | // Author : Andrew Beach
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10 | // Created On : Mon Jun 26 15:13:00 2017
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11 | // Last Modified By : Andrew Beach
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12 | // Last Modified On : Wed Feb 24 13:40:00 2021
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13 | // Update Count : 36
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14 | //
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15 |
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16 | // Normally we would get this from the CFA prelude.
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17 | #include <stddef.h> // for size_t
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18 |
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19 | #include <unwind.h> // for struct _Unwind_Exception {...};
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20 |
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21 | #include "exception.h"
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22 |
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23 | #include <stdlib.h>
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24 | #include <stdio.h>
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25 | #include <bits/debug.hfa>
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26 | #include "concurrency/invoke.h"
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27 | #include "stdhdr/assert.h"
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28 | #include "virtual.h"
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29 | #include "lsda.h"
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30 |
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31 | /* The exception class for our exceptions. Because of the vendor component
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32 | * its value would not be standard.
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33 | * Vendor: UWPL
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34 | * Language: CFA\0
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35 | */
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36 | const _Unwind_Exception_Class __cfaehm_exception_class = 0x4c50575500414643;
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37 |
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38 | // Base Exception type id:
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39 | struct __cfavir_type_info __cfatid_exception_t = {
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40 | NULL,
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41 | };
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42 |
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43 |
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44 | // Get the current exception context.
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45 | // There can be a single global until multithreading occurs, then each stack
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46 | // needs its own. We get this from libcfathreads (no weak attribute).
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47 | __attribute__((weak)) struct exception_context_t * this_exception_context() {
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48 | static struct exception_context_t shared_stack = {NULL, NULL};
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49 | return &shared_stack;
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50 | }
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51 |
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52 |
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53 | // RESUMPTION ================================================================
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54 |
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55 | static void reset_top_resume(struct __cfaehm_try_resume_node ** store) {
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56 | this_exception_context()->top_resume = *store;
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57 | }
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58 |
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59 | void __cfaehm_throw_resume(exception_t * except, void (*defaultHandler)(exception_t *)) {
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60 | struct exception_context_t * context = this_exception_context();
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61 |
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62 | __cfadbg_print_safe(exception, "Throwing resumption exception\n");
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63 |
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64 | {
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65 | __attribute__((cleanup(reset_top_resume)))
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66 | struct __cfaehm_try_resume_node * original_head = context->top_resume;
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67 | struct __cfaehm_try_resume_node * current = context->top_resume;
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68 |
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69 | for ( ; current ; current = current->next) {
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70 | context->top_resume = current->next;
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71 | if (current->handler(except)) {
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72 | return;
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73 | }
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74 | }
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75 | } // End the search and return to the top of the stack.
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76 |
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77 | // No handler found, fall back to the default operation.
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78 | __cfadbg_print_safe(exception, "Unhandled exception\n");
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79 | defaultHandler(except);
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80 | }
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81 |
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82 | // Do we control where exceptions get thrown even with concurency?
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83 | // If not these are not quite thread safe, the cleanup hook has to
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84 | // be added after the node is built but before it is made the top node.
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85 |
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86 | void __cfaehm_try_resume_setup(struct __cfaehm_try_resume_node * node,
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87 | _Bool (*handler)(exception_t * except)) {
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88 | struct exception_context_t * context = this_exception_context();
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89 | node->next = context->top_resume;
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90 | node->handler = handler;
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91 | context->top_resume = node;
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92 | }
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93 |
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94 | void __cfaehm_try_resume_cleanup(struct __cfaehm_try_resume_node * node) {
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95 | struct exception_context_t * context = this_exception_context();
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96 | context->top_resume = node->next;
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97 | }
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98 |
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99 |
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100 | // MEMORY MANAGEMENT =========================================================
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101 |
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102 | #define NODE_TO_EXCEPT(node) ((exception_t *)(1 + (node)))
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103 | #define EXCEPT_TO_NODE(except) ((struct __cfaehm_node *)(except) - 1)
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104 | #define UNWIND_TO_NODE(unwind) ((struct __cfaehm_node *)(unwind))
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105 | #define NULL_MAP(map, ptr) ((ptr) ? (map(ptr)) : NULL)
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106 |
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107 | // How to clean up an exception in various situations.
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108 | static void __cfaehm_exception_cleanup(
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109 | _Unwind_Reason_Code reason,
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110 | struct _Unwind_Exception * exception) {
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111 | switch (reason) {
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112 | case _URC_FOREIGN_EXCEPTION_CAUGHT:
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113 | // This one we could clean-up to allow cross-language exceptions.
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114 | case _URC_FATAL_PHASE1_ERROR:
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115 | case _URC_FATAL_PHASE2_ERROR:
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116 | default:
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117 | abort();
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118 | }
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119 | }
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120 |
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121 | // Creates a copy of the indicated exception and sets current_exception to it.
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122 | static void __cfaehm_allocate_exception( exception_t * except ) {
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123 | struct exception_context_t * context = this_exception_context();
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124 |
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125 | // Allocate memory for the exception.
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126 | struct __cfaehm_node * store = malloc(
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127 | sizeof( struct __cfaehm_node ) + except->virtual_table->size );
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128 |
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129 | if ( ! store ) {
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130 | // Failure: cannot allocate exception. Terminate thread.
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131 | abort(); // <- Although I think it might be the process.
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132 | }
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133 |
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134 | // Initialize the node:
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135 | exception_t * except_store = NODE_TO_EXCEPT(store);
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136 | store->unwind_exception.exception_class = __cfaehm_exception_class;
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137 | store->unwind_exception.exception_cleanup = __cfaehm_exception_cleanup;
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138 | store->handler_index = 0;
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139 | except->virtual_table->copy( except_store, except );
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140 |
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141 | // Add the node to the list:
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142 | store->next = NULL_MAP(EXCEPT_TO_NODE, context->current_exception);
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143 | context->current_exception = except_store;
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144 | }
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145 |
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146 | // Delete the provided exception, unsetting current_exception if relivant.
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147 | static void __cfaehm_delete_exception( exception_t * except ) {
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148 | struct exception_context_t * context = this_exception_context();
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149 |
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150 | __cfadbg_print_safe(exception, "Deleting Exception\n");
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151 |
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152 | // Remove the exception from the list.
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153 | struct __cfaehm_node * to_free = EXCEPT_TO_NODE(except);
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154 | struct __cfaehm_node * node;
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155 |
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156 | if ( context->current_exception == except ) {
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157 | node = to_free->next;
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158 | context->current_exception = NULL_MAP(NODE_TO_EXCEPT, node);
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159 | } else {
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160 | node = EXCEPT_TO_NODE(context->current_exception);
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161 | // It may always be in the first or second position.
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162 | while ( to_free != node->next ) {
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163 | node = node->next;
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164 | }
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165 | node->next = to_free->next;
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166 | }
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167 |
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168 | // Free the old exception node.
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169 | except->virtual_table->free( except );
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170 | free( to_free );
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171 | }
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172 |
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173 | // CANCELLATION ==============================================================
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174 |
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175 | // Function needed by force unwind
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176 | // It basically says to unwind the whole stack and then exit when we reach the end of the stack
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177 | static _Unwind_Reason_Code _Stop_Fn(
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178 | int version,
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179 | _Unwind_Action actions,
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180 | _Unwind_Exception_Class exception_class,
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181 | struct _Unwind_Exception * unwind_exception,
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182 | struct _Unwind_Context * unwind_context,
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183 | void * stop_param) {
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184 | // Verify actions follow the rules we expect.
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185 | verify(actions & _UA_CLEANUP_PHASE);
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186 | verify(actions & _UA_FORCE_UNWIND);
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187 | verify(!(actions & _UA_SEARCH_PHASE));
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188 | verify(!(actions & _UA_HANDLER_FRAME));
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189 |
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190 | if ( actions & _UA_END_OF_STACK ) {
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191 | abort();
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192 | } else {
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193 | return _URC_NO_REASON;
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194 | }
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195 | }
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196 |
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197 | __attribute__((weak)) _Unwind_Reason_Code
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198 | __cfaehm_cancellation_unwind( struct _Unwind_Exception * exception ) {
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199 | return _Unwind_ForcedUnwind( exception, _Stop_Fn, (void*)0x22 );
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200 | }
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201 |
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202 | // Cancel the current stack, prefroming approprate clean-up and messaging.
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203 | void __cfaehm_cancel_stack( exception_t * exception ) {
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204 | __cfaehm_allocate_exception( exception );
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205 |
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206 | struct exception_context_t * context = this_exception_context();
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207 | struct __cfaehm_node * node = EXCEPT_TO_NODE(context->current_exception);
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208 |
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209 | // Preform clean-up of any extra active exceptions.
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210 | while ( node->next ) {
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211 | struct __cfaehm_node * to_free = node->next;
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212 | node->next = to_free->next;
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213 | exception_t * except = NODE_TO_EXCEPT( to_free );
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214 | except->virtual_table->free( except );
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215 | free( to_free );
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216 | }
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217 |
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218 | _Unwind_Reason_Code ret;
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219 | ret = __cfaehm_cancellation_unwind( &node->unwind_exception );
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220 | printf("UNWIND ERROR %d after force unwind\n", ret);
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221 | abort();
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222 | }
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223 |
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224 |
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225 | // TERMINATION ===============================================================
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226 |
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227 | // If this isn't a rethrow (*except==0), delete the provided exception.
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228 | void __cfaehm_cleanup_terminate( void * except ) {
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229 | if ( *(void**)except ) __cfaehm_delete_exception( *(exception_t **)except );
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230 | }
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231 |
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232 | static void __cfaehm_cleanup_default( exception_t ** except ) {
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233 | __cfaehm_delete_exception( *except );
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234 | *except = NULL;
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235 | }
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236 |
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237 | // The exception that is being thrown must already be stored.
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238 | static void __cfaehm_begin_unwind(void(*defaultHandler)(exception_t *)) {
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239 | struct exception_context_t * context = this_exception_context();
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240 | if ( NULL == context->current_exception ) {
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241 | printf("UNWIND ERROR missing exception in begin unwind\n");
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242 | abort();
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243 | }
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244 | struct _Unwind_Exception * storage =
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245 | &EXCEPT_TO_NODE(context->current_exception)->unwind_exception;
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246 |
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247 | // Call stdlibc to raise the exception
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248 | __cfadbg_print_safe(exception, "Begin unwinding (storage &p, context %p)\n", storage, context);
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249 | _Unwind_Reason_Code ret = _Unwind_RaiseException( storage );
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250 |
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251 | // If we reach here it means something happened. For resumption to work we need to find a way
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252 | // to return back to here. Most of them will probably boil down to setting a global flag and
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253 | // making the phase 1 either stop or fail. Causing an error on purpose may help avoiding
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254 | // unnecessary work but it might have some weird side effects. If we just pretend no handler
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255 | // was found that would work but may be expensive for no reason since we will always search
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256 | // the whole stack.
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257 |
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258 | #if defined( __x86_64 ) || defined( __i386 )
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259 | // We did not simply reach the end of the stack without finding a handler. This is an error.
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260 | if ( ret != _URC_END_OF_STACK ) {
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261 | #else // defined( __ARM_ARCH )
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262 | // The return code from _Unwind_RaiseException seems to be corrupt on ARM at end of stack.
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263 | // This workaround tries to keep default exception handling working.
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264 | if ( ret == _URC_FATAL_PHASE1_ERROR || ret == _URC_FATAL_PHASE2_ERROR ) {
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265 | #endif
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266 | printf("UNWIND ERROR %d after raise exception\n", ret);
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267 | abort();
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268 | }
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269 |
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270 | // No handler found, go to the default operation.
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271 | __cfadbg_print_safe(exception, "Uncaught exception %p\n", storage);
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272 |
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273 | __attribute__((cleanup(__cfaehm_cleanup_default)))
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274 | exception_t * exception = context->current_exception;
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275 | defaultHandler( exception );
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276 | }
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277 |
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278 | void __cfaehm_throw_terminate( exception_t * val, void (*defaultHandler)(exception_t *) ) {
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279 | __cfadbg_print_safe(exception, "Throwing termination exception\n");
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280 |
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281 | __cfaehm_allocate_exception( val );
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282 | __cfaehm_begin_unwind( defaultHandler );
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283 | }
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284 |
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285 | static __attribute__((noreturn)) void __cfaehm_rethrow_adapter( exception_t * except ) {
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286 | // TODO: Print some error message.
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287 | (void)except;
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288 | abort();
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289 | }
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290 |
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291 | void __cfaehm_rethrow_terminate(void) {
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292 | __cfadbg_print_safe(exception, "Rethrowing termination exception\n");
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293 |
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294 | __cfaehm_begin_unwind( __cfaehm_rethrow_adapter );
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295 | abort();
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296 | }
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297 |
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298 | #if defined( __x86_64 ) || defined( __i386 ) || defined( __ARM_ARCH )
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299 | // This is our personality routine. For every stack frame annotated with
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300 | // ".cfi_personality 0x3,__gcfa_personality_v0" this function will be called twice when unwinding.
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301 | // Once in the search phase and once in the cleanup phase.
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302 | _Unwind_Reason_Code __gcfa_personality_v0(
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303 | int version,
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304 | _Unwind_Action actions,
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305 | unsigned long long exception_class,
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306 | struct _Unwind_Exception * unwind_exception,
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307 | struct _Unwind_Context * unwind_context)
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308 | {
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309 |
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310 | //__cfadbg_print_safe(exception, "CFA: 0x%lx\n", _Unwind_GetCFA(context));
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311 | __cfadbg_print_safe(exception, "Personality function (%d, %x, %llu, %p, %p):",
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312 | version, actions, exception_class, unwind_exception, unwind_context);
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313 |
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314 | // Verify that actions follow the rules we expect.
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315 | // This function should never be called at the end of the stack.
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316 | verify(!(actions & _UA_END_OF_STACK));
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317 | // Either only the search phase flag is set or...
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318 | if (actions & _UA_SEARCH_PHASE) {
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319 | verify(actions == _UA_SEARCH_PHASE);
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320 | __cfadbg_print_safe(exception, " lookup phase");
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321 | // ... we are in clean-up phase.
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322 | } else {
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323 | verify(actions & _UA_CLEANUP_PHASE);
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324 | __cfadbg_print_safe(exception, " cleanup phase");
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325 | // We shouldn't be the handler frame during forced unwind.
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326 | if (actions & _UA_HANDLER_FRAME) {
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327 | verify(!(actions & _UA_FORCE_UNWIND));
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328 | __cfadbg_print_safe(exception, " (handler frame)");
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329 | } else if (actions & _UA_FORCE_UNWIND) {
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330 | __cfadbg_print_safe(exception, " (force unwind)");
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331 | }
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332 | }
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333 |
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334 | // Get a pointer to the language specific data from which we will read what we need
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335 | const unsigned char * lsd = _Unwind_GetLanguageSpecificData( unwind_context );
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336 |
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337 | if ( !lsd ) { //Nothing to do, keep unwinding
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338 | printf(" no LSD");
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339 | goto UNWIND;
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340 | }
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341 |
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342 | // Get the instuction pointer and a reading pointer into the exception table
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343 | lsda_header_info lsd_info;
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344 | const unsigned char * cur_ptr = parse_lsda_header(unwind_context, lsd, &lsd_info);
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345 | _Unwind_Ptr instruction_ptr = _Unwind_GetIP(unwind_context);
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346 |
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347 | struct exception_context_t * context = this_exception_context();
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348 |
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349 | // Linearly search the table for stuff to do
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350 | while ( cur_ptr < lsd_info.action_table ) {
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351 | _Unwind_Ptr callsite_start;
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352 | _Unwind_Ptr callsite_len;
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353 | _Unwind_Ptr callsite_landing_pad;
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354 | _uleb128_t callsite_action;
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355 |
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356 | // Decode the common stuff we have in here
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357 | cur_ptr = read_encoded_value(0, lsd_info.call_site_encoding, cur_ptr, &callsite_start);
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358 | cur_ptr = read_encoded_value(0, lsd_info.call_site_encoding, cur_ptr, &callsite_len);
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359 | cur_ptr = read_encoded_value(0, lsd_info.call_site_encoding, cur_ptr, &callsite_landing_pad);
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360 | cur_ptr = read_uleb128(cur_ptr, &callsite_action);
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361 |
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362 | // Have we reach the correct frame info yet?
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363 | if ( lsd_info.Start + callsite_start + callsite_len < instruction_ptr ) {
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364 | #ifdef __CFA_DEBUG_PRINT__
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365 | void * ls = (void*)lsd_info.Start;
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366 | void * cs = (void*)callsite_start;
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367 | void * cl = (void*)callsite_len;
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368 | void * bp = (void*)lsd_info.Start + callsite_start;
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369 | void * ep = (void*)lsd_info.Start + callsite_start + callsite_len;
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370 | void * ip = (void*)instruction_ptr;
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371 | __cfadbg_print_safe(exception, "\nfound %p - %p (%p, %p, %p), looking for %p\n",
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372 | bp, ep, ls, cs, cl, ip);
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373 | #endif // __CFA_DEBUG_PRINT__
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374 | continue;
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375 | }
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376 |
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377 | // Have we gone too far?
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378 | if ( lsd_info.Start + callsite_start > instruction_ptr ) {
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379 | printf(" gone too far");
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380 | break;
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381 | }
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382 |
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383 | // Check for what we must do:
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384 | if ( 0 == callsite_landing_pad ) {
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385 | // Nothing to do, move along
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386 | __cfadbg_print_safe(exception, " no landing pad");
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387 | } else if (actions & _UA_SEARCH_PHASE) {
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388 | // In search phase, these means we found a potential handler we must check.
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389 |
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390 | // We have arbitrarily decided that 0 means nothing to do and 1 means there is
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391 | // a potential handler. This doesn't seem to conflict the gcc default behavior.
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392 | if (callsite_action != 0) {
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393 | // Now we want to run some code to see if the handler matches
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394 | // This is the tricky part where we want to the power to run arbitrary code
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395 | // However, generating a new exception table entry and try routine every time
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396 | // is way more expansive than we might like
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397 | // The information we have is :
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398 | // - The GR (Series of registers)
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399 | // GR1=GP Global Pointer of frame ref by context
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400 | // - The instruction pointer
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401 | // - The instruction pointer info (???)
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402 | // - The CFA (Canonical Frame Address)
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403 | // - The BSP (Probably the base stack pointer)
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404 |
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405 | // The current apprach uses one exception table entry per try block
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406 | _uleb128_t imatcher;
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407 | // Get the relative offset to the {...}?
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408 | cur_ptr = read_uleb128(cur_ptr, &imatcher);
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409 |
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410 | _Unwind_Word match_pos =
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411 | # if defined( __x86_64 )
|
---|
412 | _Unwind_GetCFA(unwind_context) + 8;
|
---|
413 | # elif defined( __i386 )
|
---|
414 | _Unwind_GetCFA(unwind_context) + 24;
|
---|
415 | # elif defined( __ARM_ARCH )
|
---|
416 | _Unwind_GetCFA(unwind_context) + 40;
|
---|
417 | # endif
|
---|
418 | int (*matcher)(exception_t *) = *(int(**)(exception_t *))match_pos;
|
---|
419 |
|
---|
420 | int index = matcher(context->current_exception);
|
---|
421 | _Unwind_Reason_Code ret = (0 == index)
|
---|
422 | ? _URC_CONTINUE_UNWIND : _URC_HANDLER_FOUND;
|
---|
423 | UNWIND_TO_NODE(unwind_exception)->handler_index = index;
|
---|
424 |
|
---|
425 | // Based on the return value, check if we matched the exception
|
---|
426 | if (ret == _URC_HANDLER_FOUND) {
|
---|
427 | __cfadbg_print_safe(exception, " handler found\n");
|
---|
428 | } else {
|
---|
429 | // TODO: Continue the search if there is more in the table.
|
---|
430 | __cfadbg_print_safe(exception, " no handler\n");
|
---|
431 | }
|
---|
432 | return ret;
|
---|
433 | }
|
---|
434 |
|
---|
435 | // This is only a cleanup handler, ignore it
|
---|
436 | __cfadbg_print_safe(exception, " no action");
|
---|
437 | } else {
|
---|
438 | // In clean-up phase, no destructors here but this could be the handler.
|
---|
439 |
|
---|
440 | if ( (callsite_action != 0) && !(actions & _UA_HANDLER_FRAME) ){
|
---|
441 | // If this is a potential exception handler
|
---|
442 | // but not the one that matched the exception in the seach phase,
|
---|
443 | // just ignore it
|
---|
444 | goto UNWIND;
|
---|
445 | }
|
---|
446 |
|
---|
447 | // We need to run some clean-up or a handler
|
---|
448 | // These statment do the right thing but I don't know any specifics at all
|
---|
449 | _Unwind_SetGR( unwind_context, __builtin_eh_return_data_regno(0),
|
---|
450 | (_Unwind_Ptr)unwind_exception );
|
---|
451 | _Unwind_SetGR( unwind_context, __builtin_eh_return_data_regno(1), 0 );
|
---|
452 |
|
---|
453 | // I assume this sets the instruction pointer to the adress of the landing pad
|
---|
454 | // It doesn't actually set it, it only state the value that needs to be set once we
|
---|
455 | // return _URC_INSTALL_CONTEXT
|
---|
456 | _Unwind_SetIP( unwind_context, ((lsd_info.LPStart) + (callsite_landing_pad)) );
|
---|
457 |
|
---|
458 | __cfadbg_print_safe(exception, " action\n");
|
---|
459 |
|
---|
460 | // Return have some action to run
|
---|
461 | return _URC_INSTALL_CONTEXT;
|
---|
462 | }
|
---|
463 | }
|
---|
464 | // No handling found
|
---|
465 | __cfadbg_print_safe(exception, " table end reached");
|
---|
466 |
|
---|
467 | UNWIND:
|
---|
468 | __cfadbg_print_safe(exception, " unwind\n");
|
---|
469 |
|
---|
470 | // Keep unwinding the stack
|
---|
471 | return _URC_CONTINUE_UNWIND;
|
---|
472 | }
|
---|
473 |
|
---|
474 | #pragma GCC push_options
|
---|
475 | #pragma GCC optimize(0)
|
---|
476 |
|
---|
477 | // Try statements are hoisted out see comments for details. While this could probably be unique
|
---|
478 | // and simply linked from libcfa but there is one problem left, see the exception table for details
|
---|
479 | __attribute__((noinline))
|
---|
480 | void __cfaehm_try_terminate(void (*try_block)(),
|
---|
481 | void (*catch_block)(int index, exception_t * except),
|
---|
482 | __attribute__((unused)) int (*match_block)(exception_t * except)) {
|
---|
483 | //! volatile int xy = 0;
|
---|
484 | //! printf("%p %p %p %p\n", &try_block, &catch_block, &match_block, &xy);
|
---|
485 |
|
---|
486 | // Setup the personality routine and exception table.
|
---|
487 | // Unforturnately these clobber gcc cancellation support which means we can't get access to
|
---|
488 | // the attribute cleanup tables at the same time. We would have to inspect the assembly to
|
---|
489 | // create a new set ourselves.
|
---|
490 | #ifdef __PIC__
|
---|
491 | asm volatile (".cfi_personality 0x9b,CFA.ref.__gcfa_personality_v0");
|
---|
492 | asm volatile (".cfi_lsda 0x1b, .LLSDACFA2");
|
---|
493 | #else
|
---|
494 | asm volatile (".cfi_personality 0x3,__gcfa_personality_v0");
|
---|
495 | asm volatile (".cfi_lsda 0x3, .LLSDACFA2");
|
---|
496 | #endif
|
---|
497 |
|
---|
498 | // Label which defines the start of the area for which the handler is setup.
|
---|
499 | asm volatile (".TRYSTART:");
|
---|
500 |
|
---|
501 | // The actual statements of the try blocks
|
---|
502 | try_block();
|
---|
503 |
|
---|
504 | // asm statement to prevent deadcode removal
|
---|
505 | asm volatile goto ("" : : : : CATCH );
|
---|
506 |
|
---|
507 | // Normal return for when there is no throw.
|
---|
508 | return;
|
---|
509 |
|
---|
510 | // Exceptionnal path
|
---|
511 | CATCH : __attribute__(( unused ));
|
---|
512 | // Label which defines the end of the area for which the handler is setup.
|
---|
513 | asm volatile (".TRYEND:");
|
---|
514 | // Label which defines the start of the exception landing pad. Basically what is called when
|
---|
515 | // the exception is caught. Note, if multiple handlers are given, the multiplexing should be
|
---|
516 | // done by the generated code, not the exception runtime.
|
---|
517 | asm volatile (".CATCH:");
|
---|
518 |
|
---|
519 | // Exception handler
|
---|
520 | // Note: Saving the exception context on the stack breaks termination exceptions.
|
---|
521 | catch_block( EXCEPT_TO_NODE( this_exception_context()->current_exception )->handler_index,
|
---|
522 | this_exception_context()->current_exception );
|
---|
523 | }
|
---|
524 |
|
---|
525 | // Exception table data we need to generate. While this is almost generic, the custom data refers
|
---|
526 | // to {*}try_terminate, which is no way generic. Some more works need to be done if we want to
|
---|
527 | // have a single call to the try routine.
|
---|
528 |
|
---|
529 | #ifdef __PIC__
|
---|
530 | asm (
|
---|
531 | // HEADER
|
---|
532 | ".LFECFA1:\n"
|
---|
533 | #if defined( __x86_64 ) || defined( __i386 )
|
---|
534 | " .globl __gcfa_personality_v0\n"
|
---|
535 | #else // defined( __ARM_ARCH )
|
---|
536 | " .global __gcfa_personality_v0\n"
|
---|
537 | #endif
|
---|
538 | " .section .gcc_except_table,\"a\",@progbits\n"
|
---|
539 | // TABLE HEADER (important field is the BODY length at the end)
|
---|
540 | ".LLSDACFA2:\n"
|
---|
541 | " .byte 0xff\n"
|
---|
542 | " .byte 0xff\n"
|
---|
543 | " .byte 0x1\n"
|
---|
544 | " .uleb128 .LLSDACSECFA2-.LLSDACSBCFA2\n"
|
---|
545 | // BODY (language specific data)
|
---|
546 | // This uses language specific data and can be modified arbitrarily
|
---|
547 | // We use handled area offset, handled area length,
|
---|
548 | // handler landing pad offset and 1 (action code, gcc seems to use 0).
|
---|
549 | ".LLSDACSBCFA2:\n"
|
---|
550 | " .uleb128 .TRYSTART-__cfaehm_try_terminate\n"
|
---|
551 | " .uleb128 .TRYEND-.TRYSTART\n"
|
---|
552 | " .uleb128 .CATCH-__cfaehm_try_terminate\n"
|
---|
553 | " .uleb128 1\n"
|
---|
554 | ".LLSDACSECFA2:\n"
|
---|
555 | // TABLE FOOTER
|
---|
556 | " .text\n"
|
---|
557 | " .size __cfaehm_try_terminate, .-__cfaehm_try_terminate\n"
|
---|
558 | );
|
---|
559 |
|
---|
560 | // Somehow this piece of helps with the resolution of debug symbols.
|
---|
561 | __attribute__((unused)) static const int dummy = 0;
|
---|
562 |
|
---|
563 | asm (
|
---|
564 | // Add a hidden symbol which points at the function.
|
---|
565 | " .hidden CFA.ref.__gcfa_personality_v0\n"
|
---|
566 | " .weak CFA.ref.__gcfa_personality_v0\n"
|
---|
567 | // No clue what this does specifically
|
---|
568 | " .section .data.rel.local.CFA.ref.__gcfa_personality_v0,\"awG\",@progbits,CFA.ref.__gcfa_personality_v0,comdat\n"
|
---|
569 | #if defined( __x86_64 ) || defined( __i386 )
|
---|
570 | " .align 8\n"
|
---|
571 | #else // defined( __ARM_ARCH )
|
---|
572 | " .align 3\n"
|
---|
573 | #endif
|
---|
574 | " .type CFA.ref.__gcfa_personality_v0, @object\n"
|
---|
575 | " .size CFA.ref.__gcfa_personality_v0, 8\n"
|
---|
576 | "CFA.ref.__gcfa_personality_v0:\n"
|
---|
577 | #if defined( __x86_64 )
|
---|
578 | " .quad __gcfa_personality_v0\n"
|
---|
579 | #elif defined( __i386 )
|
---|
580 | " .long __gcfa_personality_v0\n"
|
---|
581 | #else // defined( __ARM_ARCH )
|
---|
582 | " .xword __gcfa_personality_v0\n"
|
---|
583 | #endif
|
---|
584 | );
|
---|
585 | #else // __PIC__
|
---|
586 | asm (
|
---|
587 | // HEADER
|
---|
588 | ".LFECFA1:\n"
|
---|
589 | #if defined( __x86_64 ) || defined( __i386 )
|
---|
590 | " .globl __gcfa_personality_v0\n"
|
---|
591 | #else // defined( __ARM_ARCH )
|
---|
592 | " .global __gcfa_personality_v0\n"
|
---|
593 | #endif
|
---|
594 | " .section .gcc_except_table,\"a\",@progbits\n"
|
---|
595 | // TABLE HEADER (important field is the BODY length at the end)
|
---|
596 | ".LLSDACFA2:\n"
|
---|
597 | " .byte 0xff\n"
|
---|
598 | " .byte 0xff\n"
|
---|
599 | " .byte 0x1\n"
|
---|
600 | " .uleb128 .LLSDACSECFA2-.LLSDACSBCFA2\n"
|
---|
601 | // BODY (language specific data)
|
---|
602 | ".LLSDACSBCFA2:\n"
|
---|
603 | // Handled area start (relative to start of function)
|
---|
604 | " .uleb128 .TRYSTART-__cfaehm_try_terminate\n"
|
---|
605 | // Handled area length
|
---|
606 | " .uleb128 .TRYEND-.TRYSTART\n"
|
---|
607 | // Handler landing pad address (relative to start of function)
|
---|
608 | " .uleb128 .CATCH-__cfaehm_try_terminate\n"
|
---|
609 | // Action code, gcc seems to always use 0.
|
---|
610 | " .uleb128 1\n"
|
---|
611 | // TABLE FOOTER
|
---|
612 | ".LLSDACSECFA2:\n"
|
---|
613 | " .text\n"
|
---|
614 | " .size __cfaehm_try_terminate, .-__cfaehm_try_terminate\n"
|
---|
615 | " .ident \"GCC: (Ubuntu 6.2.0-3ubuntu11~16.04) 6.2.0 20160901\"\n"
|
---|
616 | " .section .note.GNU-stack,\"x\",@progbits\n"
|
---|
617 | );
|
---|
618 | #endif // __PIC__
|
---|
619 |
|
---|
620 | #pragma GCC pop_options
|
---|
621 |
|
---|
622 | #else
|
---|
623 | #error unsupported hardware architecture
|
---|
624 | #endif // __x86_64 || __i386 || __ARM_ARCH
|
---|