source: libcfa/src/concurrency/invoke.c @ e8e457e

ADTarm-ehast-experimentalcleanup-dtorsenumforall-pointer-decayjacob/cs343-translationjenkins-sandboxnew-astnew-ast-unique-exprpthread-emulationqualifiedEnum
Last change on this file since e8e457e was e8e457e, checked in by tdelisle <tdelisle@…>, 5 years ago

Thread context is now distinct from coroutine context

  • Property mode set to 100644
File size: 5.9 KB
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[8def349]1//
2// Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// invoke.c --
8//
9// Author           : Thierry Delisle
10// Created On       : Tue Jan 17 12:27:26 2016
[6b0b624]11// Last Modified By : Peter A. Buhr
[bede27b]12// Last Modified On : Fri Feb  9 16:37:42 2018
13// Update Count     : 5
[8def349]14//
[78b3f52]15
16#include <stdbool.h>
17#include <stdlib.h>
18#include <stdio.h>
[76e069f]19#include <unwind.h>
[78b3f52]20
21#include "invoke.h"
22
[5c81105]23#define __CFA_INVOKE_PRIVATE__
24#include "invoke.h"
[78b3f52]25
26// magically invoke the "main" of the most derived class
27// Called from the kernel when starting a coroutine or task so must switch back to user mode.
[5c81105]28
[0c92c9f]29extern void __suspend_internal(void);
[212c2187]30extern void __leave_coroutine( struct coroutine_desc * );
[e8e457e]31extern void __finish_creation( struct thread_desc * );
[1c273d0]32extern void __leave_thread_monitor( struct thread_desc * this );
[82ff5845]33extern void disable_interrupts();
[36982fc]34extern void enable_interrupts( __cfaabi_dbg_ctx_param );
[78b3f52]35
[b58a5772]36void CtxInvokeCoroutine(
[36982fc]37        void (*main)(void *),
38        struct coroutine_desc *(*get_coroutine)(void *),
39        void *this
[80d9e49]40) {
[36982fc]41        struct coroutine_desc* cor = get_coroutine( this );
[80d9e49]42
[36982fc]43        if(cor->state == Primed) {
44                __suspend_internal();
45        }
[80d9e49]46
[36982fc]47        cor->state = Active;
[78b3f52]48
[b69ea6b]49        enable_interrupts( __cfaabi_dbg_ctx );
50
[36982fc]51        main( this );
[78b3f52]52
[36982fc]53        //Final suspend, should never return
[212c2187]54        __leave_coroutine( cor );
[169d944]55        __cabi_abort( "Resumed dead coroutine" );
[8118303]56}
57
[76e069f]58static _Unwind_Reason_Code _CtxCoroutine_UnwindStop(
59        __attribute((__unused__)) int version,
60        _Unwind_Action actions,
61        __attribute((__unused__)) _Unwind_Exception_Class exceptionClass,
62        __attribute((__unused__)) struct _Unwind_Exception * unwind_exception,
63        __attribute((__unused__)) struct _Unwind_Context * context,
[212c2187]64        void * param
[76e069f]65) {
66        if( actions & _UA_END_OF_STACK  ) {
67                // We finished unwinding the coroutine,
68                // leave it
[212c2187]69                __leave_coroutine( param );
[76e069f]70                __cabi_abort( "Resumed dead coroutine" );
71        }
72        if( actions & _UA_CLEANUP_PHASE ) return _URC_NO_REASON;
73
74        return _URC_FATAL_PHASE2_ERROR;
75}
76
[212c2187]77void _CtxCoroutine_Unwind(struct _Unwind_Exception * storage, struct coroutine_desc * cor) __attribute__ ((__noreturn__));
78void _CtxCoroutine_Unwind(struct _Unwind_Exception * storage, struct coroutine_desc * cor) {
79        _Unwind_Reason_Code ret = _Unwind_ForcedUnwind( storage, _CtxCoroutine_UnwindStop, cor );
[76e069f]80        printf("UNWIND ERROR %d after force unwind\n", ret);
81        abort();
82}
83
[8118303]84void CtxInvokeThread(
[36982fc]85        void (*dtor)(void *),
86        void (*main)(void *),
87        struct thread_desc *(*get_thread)(void *),
88        void *this
[8118303]89) {
[212c2187]90        // Fetch the thread handle from the user defined thread structure
91        struct thread_desc* thrd = get_thread( this );
92
[36982fc]93        // First suspend, once the thread arrives here,
94        // the function pointer to main can be invalidated without risk
[e8e457e]95        __finish_creation( thrd );
[36982fc]96
97        // Officially start the thread by enabling preemption
98        enable_interrupts( __cfaabi_dbg_ctx );
99
100        // Call the main of the thread
101        main( this );
102
103        // To exit a thread we must :
104        // 1 - Mark it as halted
105        // 2 - Leave its monitor
106        // 3 - Disable the interupts
107        // 4 - Final suspend
108        // The order of these 4 operations is very important
109        //Final suspend, should never return
110        __leave_thread_monitor( thrd );
[169d944]111        __cabi_abort( "Resumed dead thread" );
[78b3f52]112}
113
[5c81105]114
[b58a5772]115void CtxStart(
[36982fc]116        void (*main)(void *),
117        struct coroutine_desc *(*get_coroutine)(void *),
118        void *this,
119        void (*invoke)(void *)
[80d9e49]120) {
[b2f6113]121        struct coroutine_desc * cor = get_coroutine( this );
122        struct __stack_t * stack = cor->stack.storage;
[78b3f52]123
[381fdee]124#if defined( __i386 )
[d9c44c3]125
126        struct FakeStack {
127            void *fixedRegisters[3];                    // fixed registers ebx, edi, esi (popped on 1st uSwitch, values unimportant)
[17af7d1]128            uint32_t mxcr;                        // SSE Status and Control bits (control bits are preserved across function calls)
[36982fc]129            uint16_t fcw;                         // X97 FPU control word (preserved across function calls)
[17af7d1]130            void *rturn;                          // where to go on return from uSwitch
[d9c44c3]131            void *dummyReturn;                          // fake return compiler would have pushed on call to uInvoke
[80d9e49]132            void *argument[3];                          // for 16-byte ABI, 16-byte alignment starts here
133            void *padding;                              // padding to force 16-byte alignment, as "base" is 16-byte aligned
[d9c44c3]134        };
135
[b2f6113]136        cor->context.SP = (char *)stack->base - sizeof( struct FakeStack );
137        cor->context.FP = NULL;         // terminate stack with NULL fp
[d9c44c3]138
[b2f6113]139        struct FakeStack *fs = (struct FakeStack *)cor->context.SP;
140
141        fs->dummyReturn = NULL;
142        fs->argument[0] = this;     // argument to invoke
143        fs->rturn = invoke;
144        fs->mxcr = 0x1F80; //Vol. 2A 3-520
145        fs->fcw = 0x037F;  //Vol. 1 8-7
[d9c44c3]146
[381fdee]147#elif defined( __x86_64 )
[d9c44c3]148
[36982fc]149        struct FakeStack {
150                void *fixedRegisters[5];            // fixed registers rbx, r12, r13, r14, r15
151                uint32_t mxcr;                      // SSE Status and Control bits (control bits are preserved across function calls)
152                uint16_t fcw;                       // X97 FPU control word (preserved across function calls)
153                void *rturn;                        // where to go on return from uSwitch
154                void *dummyReturn;                  // NULL return address to provide proper alignment
155        };
156
[b2f6113]157        cor->context.SP = (char *)stack->base - sizeof( struct FakeStack );
158        cor->context.FP = NULL;         // terminate stack with NULL fp
159
160        struct FakeStack *fs = (struct FakeStack *)cor->context.SP;
[36982fc]161
[b2f6113]162        fs->dummyReturn = NULL;
163        fs->rturn = CtxInvokeStub;
164        fs->fixedRegisters[0] = this;
165        fs->fixedRegisters[1] = invoke;
166        fs->mxcr = 0x1F80; //Vol. 2A 3-520
167        fs->fcw = 0x037F;  //Vol. 1 8-7
[b158d8f]168
169#elif defined( __ARM_ARCH )
170
171        struct FakeStack {
172                float fpRegs[16];                       // floating point registers
173                void *intRegs[9];                       // integer/pointer registers
174                void *arg[2];                           // placeholder for this pointer
175        };
176
[b2f6113]177        cor->context.SP = (char *)stack->base - sizeof( struct FakeStack );
178        cor->context.FP = NULL;
[b158d8f]179
[b2f6113]180        struct FakeStack *fs = (struct FakeStack *)cor->context.SP;
[b158d8f]181
182        fs->intRegs[8] = CtxInvokeStub;
183        fs->arg[0] = this;
184        fs->arg[1] = invoke;
[381fdee]185
[d9c44c3]186#else
[381fdee]187        #error uknown hardware architecture
[d9c44c3]188#endif
[e4745d7a]189}
[6b0b624]190
191// Local Variables: //
192// mode: c //
193// tab-width: 4 //
194// End: //
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