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src/libcfa/concurrency/coroutine.c (modified) (3 diffs)
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src/libcfa/concurrency/coroutine.c
rb10affd rde6319f 39 39 //----------------------------------------------------------------------------- 40 40 // Coroutine ctors and dtors 41 void ?{}(coStack_t& this) with( this ) { 42 size = 65000; // size of stack 43 storage = NULL; // pointer to stack 44 limit = NULL; // stack grows towards stack limit 45 base = NULL; // base of stack 46 context = NULL; // address of cfa_context_t 47 top = NULL; // address of top of storage 48 userStack = false; 49 } 50 51 void ?{}(coStack_t& this, size_t size) { 52 this{}; 53 this.size = size; 54 55 create_stack(&this, this.size); 56 } 57 58 void ?{}(coroutine_desc& this) { 59 this{ "Anonymous Coroutine" }; 60 } 61 62 void ?{}(coroutine_desc& this, const char * name) with( this ) { 63 this.name = name; 64 errno_ = 0; 65 state = Start; 66 starter = NULL; 67 last = NULL; 68 } 69 70 void ?{}(coroutine_desc& this, size_t size) { 71 this{}; 72 (this.stack){size}; 41 void ?{}( coStack_t & this, void * storage, size_t storageSize ) with( this ) { 42 size = storageSize == 0 ? 65000 : storageSize; // size of stack 43 this.storage = storage; // pointer to stack 44 limit = NULL; // stack grows towards stack limit 45 base = NULL; // base of stack 46 context = NULL; // address of cfa_context_t 47 top = NULL; // address of top of storage 48 userStack = storage != NULL; 73 49 } 74 50 75 51 void ^?{}(coStack_t & this) { 76 if ( ! this.userStack && this.storage ) { 77 __cfaabi_dbg_debug_do( 78 if ( mprotect( this.storage, pageSize, PROT_READ | PROT_WRITE ) == -1 ) { 79 abort( "(coStack_t *)%p.^?{}() : internal error, mprotect failure, error(%d) %s.", &this, errno, strerror( errno ) ); 80 } 81 ); 82 free( this.storage ); 83 } 52 if ( ! this.userStack && this.storage ) { 53 __cfaabi_dbg_debug_do( 54 if ( mprotect( this.storage, pageSize, PROT_READ | PROT_WRITE ) == -1 ) { 55 abort( "(coStack_t *)%p.^?{}() : internal error, mprotect failure, error(%d) %s.", &this, errno, strerror( errno ) ); 56 } 57 ); 58 free( this.storage ); 59 } 60 } 61 62 void ?{}( coroutine_desc & this, const char * name, void * storage, size_t storageSize ) with( this ) { 63 (this.stack){storage, storageSize}; 64 this.name = name; 65 errno_ = 0; 66 state = Start; 67 starter = NULL; 68 last = NULL; 84 69 } 85 70 … … 90 75 forall(dtype T | is_coroutine(T)) 91 76 void prime(T& cor) { 92 coroutine_desc* this = get_coroutine(cor);93 assert(this->state == Start);77 coroutine_desc* this = get_coroutine(cor); 78 assert(this->state == Start); 94 79 95 this->state = Primed;96 resume(cor);80 this->state = Primed; 81 resume(cor); 97 82 } 98 83 99 84 // Wrapper for co 100 85 void CoroutineCtxSwitch(coroutine_desc* src, coroutine_desc* dst) { 101 verify( TL_GET( preemption_state ).enabled || TL_GET( this_processor )->do_terminate );102 disable_interrupts();86 verify( TL_GET( preemption_state ).enabled || TL_GET( this_processor )->do_terminate ); 87 disable_interrupts(); 103 88 104 // set state of current coroutine to inactive105 src->state = src->state == Halted ? Halted : Inactive;89 // set state of current coroutine to inactive 90 src->state = src->state == Halted ? Halted : Inactive; 106 91 107 // set new coroutine that task is executing108 TL_SET( this_coroutine, dst );92 // set new coroutine that task is executing 93 TL_SET( this_coroutine, dst ); 109 94 110 // context switch to specified coroutine111 assert( src->stack.context );112 CtxSwitch( src->stack.context, dst->stack.context );113 // when CtxSwitch returns we are back in the src coroutine95 // context switch to specified coroutine 96 assert( src->stack.context ); 97 CtxSwitch( src->stack.context, dst->stack.context ); 98 // when CtxSwitch returns we are back in the src coroutine 114 99 115 // set state of new coroutine to active116 src->state = Active;100 // set state of new coroutine to active 101 src->state = Active; 117 102 118 enable_interrupts( __cfaabi_dbg_ctx );119 verify( TL_GET( preemption_state ).enabled || TL_GET( this_processor )->do_terminate );103 enable_interrupts( __cfaabi_dbg_ctx ); 104 verify( TL_GET( preemption_state ).enabled || TL_GET( this_processor )->do_terminate ); 120 105 } //ctxSwitchDirect 121 106 122 107 void create_stack( coStack_t* this, unsigned int storageSize ) with( *this ) { 123 //TEMP HACK do this on proper kernel startup124 if(pageSize == 0ul) pageSize = sysconf( _SC_PAGESIZE );108 //TEMP HACK do this on proper kernel startup 109 if(pageSize == 0ul) pageSize = sysconf( _SC_PAGESIZE ); 125 110 126 size_t cxtSize = libCeiling( sizeof(machine_context_t), 8 ); // minimum alignment111 size_t cxtSize = libCeiling( sizeof(machine_context_t), 8 ); // minimum alignment 127 112 128 if ( (intptr_t)storage == 0 ) { 129 userStack = false; 130 size = libCeiling( storageSize, 16 ); 131 // use malloc/memalign because "new" raises an exception for out-of-memory 113 if ( !storage ) { 114 __cfaabi_dbg_print_safe("Kernel : Creating stack of size %zu for stack obj %p\n", cxtSize + size + 8, this); 132 115 133 // assume malloc has 8 byte alignment so add 8 to allow rounding up to 16 byte alignment 134 __cfaabi_dbg_debug_do( storage = memalign( pageSize, cxtSize + size + pageSize ));135 __cfaabi_dbg_no_debug_do( storage = malloc( cxtSize + size + 8 ) ); 116 userStack = false; 117 size = libCeiling( storageSize, 16 ); 118 // use malloc/memalign because "new" raises an exception for out-of-memory 136 119 137 __cfaabi_dbg_debug_do( 138 if ( mprotect( storage, pageSize, PROT_NONE ) == -1 ) { 139 abort( "(uMachContext &)%p.createContext() : internal error, mprotect failure, error(%d) %s.", this, (int)errno, strerror( (int)errno ) ); 140 } // if 141 ); 120 // assume malloc has 8 byte alignment so add 8 to allow rounding up to 16 byte alignment 121 __cfaabi_dbg_debug_do( storage = memalign( pageSize, cxtSize + size + pageSize ) ); 122 __cfaabi_dbg_no_debug_do( storage = malloc( cxtSize + size + 8 ) ); 142 123 143 if ( (intptr_t)storage == 0 ) { 144 abort( "Attempt to allocate %zd bytes of storage for coroutine or task execution-state but insufficient memory available.", size ); 145 } // if 124 __cfaabi_dbg_debug_do( 125 if ( mprotect( storage, pageSize, PROT_NONE ) == -1 ) { 126 abort( "(uMachContext &)%p.createContext() : internal error, mprotect failure, error(%d) %s.", this, (int)errno, strerror( (int)errno ) ); 127 } // if 128 ); 146 129 147 __cfaabi_dbg_debug_do( limit = (char *)storage + pageSize ); 148 __cfaabi_dbg_no_debug_do( limit = (char *)libCeiling( (unsigned long)storage, 16 ) ); // minimum alignment 130 if ( (intptr_t)storage == 0 ) { 131 abort( "Attempt to allocate %zd bytes of storage for coroutine or task execution-state but insufficient memory available.", size ); 132 } // if 149 133 150 } else { 151 assertf( ((size_t)storage & (libAlign() - 1)) != 0ul, "Stack storage %p for task/coroutine must be aligned on %d byte boundary.", storage, (int)libAlign() ); 152 userStack = true; 153 size = storageSize - cxtSize; 134 __cfaabi_dbg_debug_do( limit = (char *)storage + pageSize ); 135 __cfaabi_dbg_no_debug_do( limit = (char *)libCeiling( (unsigned long)storage, 16 ) ); // minimum alignment 154 136 155 if ( size % 16 != 0u ) size -= 8; 137 } else { 138 __cfaabi_dbg_print_safe("Kernel : stack obj %p using user stack %p(%u bytes)\n", this, storage, storageSize); 156 139 157 limit = (char *)libCeiling( (unsigned long)storage, 16 ); // minimum alignment 158 } // if 159 assertf( size >= MinStackSize, "Stack size %zd provides less than minimum of %d bytes for a stack.", size, MinStackSize );140 assertf( ((size_t)storage & (libAlign() - 1)) == 0ul, "Stack storage %p for task/coroutine must be aligned on %d byte boundary.", storage, (int)libAlign() ); 141 userStack = true; 142 size = storageSize - cxtSize; 160 143 161 base = (char *)limit + size; 162 context = base; 163 top = (char *)context + cxtSize; 144 if ( size % 16 != 0u ) size -= 8; 145 146 limit = (char *)libCeiling( (unsigned long)storage, 16 ); // minimum alignment 147 } // if 148 assertf( size >= MinStackSize, "Stack size %zd provides less than minimum of %d bytes for a stack.", size, MinStackSize ); 149 150 base = (char *)limit + size; 151 context = base; 152 top = (char *)context + cxtSize; 164 153 } 165 154 … … 167 156 // is not inline (We can't inline Cforall in C) 168 157 extern "C" { 169 void __suspend_internal(void) {170 suspend();171 }158 void __suspend_internal(void) { 159 suspend(); 160 } 172 161 173 void __leave_coroutine(void) {174 coroutine_desc * src = TL_GET( this_coroutine ); // optimization162 void __leave_coroutine(void) { 163 coroutine_desc * src = TL_GET( this_coroutine ); // optimization 175 164 176 assertf( src->starter != 0,177 "Attempt to suspend/leave coroutine \"%.256s\" (%p) that has never been resumed.\n"178 "Possible cause is a suspend executed in a member called by a coroutine user rather than by the coroutine main.",179 src->name, src );180 assertf( src->starter->state != Halted,181 "Attempt by coroutine \"%.256s\" (%p) to suspend/leave back to terminated coroutine \"%.256s\" (%p).\n"182 "Possible cause is terminated coroutine's main routine has already returned.",183 src->name, src, src->starter->name, src->starter );165 assertf( src->starter != 0, 166 "Attempt to suspend/leave coroutine \"%.256s\" (%p) that has never been resumed.\n" 167 "Possible cause is a suspend executed in a member called by a coroutine user rather than by the coroutine main.", 168 src->name, src ); 169 assertf( src->starter->state != Halted, 170 "Attempt by coroutine \"%.256s\" (%p) to suspend/leave back to terminated coroutine \"%.256s\" (%p).\n" 171 "Possible cause is terminated coroutine's main routine has already returned.", 172 src->name, src, src->starter->name, src->starter ); 184 173 185 CoroutineCtxSwitch( src, src->starter );186 }174 CoroutineCtxSwitch( src, src->starter ); 175 } 187 176 } 188 177
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