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Added stack scanning to write barrier. Does not seem to help, though
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3 changed files with 78 additions and 11 deletions
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@ -5,9 +5,5 @@ Phase 4 (gc-dev4) - Integrating new tracing GC algorithm, added new thread data
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Phase 5 (gc-dev5) - Require pthreads library, stand cyclone back up using new GC algorithm.
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Debugging notes:
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__glo_list_91ref -
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tag is 0
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car appears corrupt
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cdr is set to 0x2 during a segfault.
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how could this have happened? this variable should always be assigned a closure
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TODO:
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- add_mutation will need to be brought into thread local data
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78
gc.c
78
gc.c
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@ -526,7 +526,81 @@ PHASE 2 - multi-threaded mutator (IE, more than one stack thread):
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/////////////////////////////////////////////
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// GC functions called by the Mutator threads
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// Write barrier for updates to heap-allocated objects
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// Scan the given object and its refs, marking all heap objects. The issue
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// here is that the heap's write barrier can be invoked at any time and
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// we need to ensure any heap objects affected are traced
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void gc_stack_mark_gray(gc_thread_data *thd, object obj)
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{
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int color;
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if (is_object_type(obj)) {
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color = mark(obj);
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if (color == gc_color_clear) {
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gc_mark_gray(thd, obj);
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} else if (color == gc_color_red) {
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gc_stack_mark_refs_gray(thd, obj);
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}
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}
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}
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// Should only be called from above function as a helper
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//
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// TODO: this will probably hang procssing circular
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// references!!!! need to extend this once the concept is proven
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//
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// ideally would need some way of recording which nodes have
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// been visited. trick is that, unlike in other places, the
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// nodes may be visited multiple times so cannot destructively
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// alter them.
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void gc_stack_mark_refs_gray(gc_thread_data *thd, object obj)
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{
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switch(type_of(obj)) {
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case cons_tag: {
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gc_stack_mark_gray(thd, car(obj));
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gc_stack_mark_gray(thd, cdr(obj));
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break;
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}
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case closure1_tag:
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gc_stack_mark_gray(thd, ((closure1) obj)->elt1);
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break;
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case closure2_tag:
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gc_stack_mark_gray(thd, ((closure2) obj)->elt1);
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gc_stack_mark_gray(thd, ((closure2) obj)->elt2);
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case closure3_tag:
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gc_stack_mark_gray(thd, ((closure3) obj)->elt1);
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gc_stack_mark_gray(thd, ((closure3) obj)->elt2);
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gc_stack_mark_gray(thd, ((closure3) obj)->elt3);
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case closure4_tag:
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gc_stack_mark_gray(thd, ((closure4) obj)->elt1);
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gc_stack_mark_gray(thd, ((closure4) obj)->elt2);
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gc_stack_mark_gray(thd, ((closure4) obj)->elt3);
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gc_stack_mark_gray(thd, ((closure4) obj)->elt4);
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break;
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case closureN_tag: {
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int i, n = ((closureN) obj)->num_elt;
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for (i = 0; i < n; i++) {
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gc_stack_mark_gray(thd, ((closureN) obj)->elts[i]);
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}
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break;
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}
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case vector_tag: {
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int i, n = ((vector) obj)->num_elt;
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for (i = 0; i < n; i++) {
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gc_stack_mark_gray(thd, ((vector) obj)->elts[i]);
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}
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break;
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}
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default:
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break;
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}
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}
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/**
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Write barrier for updates to heap-allocated objects
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Plans:
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The key for this barrier is to identify stack objects that contain
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heap references, so they can be marked to avoid collection.
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*/
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void gc_mut_update(gc_thread_data *thd, object old_obj, object value)
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{
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int status = ATOMIC_GET(&gc_status_col),
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@ -539,7 +613,7 @@ void gc_mut_update(gc_thread_data *thd, object old_obj, object value)
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////printf(" for heap object ");
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//printf("\n");
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gc_mark_gray(thd, old_obj);
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gc_mark_gray(thd, value);
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gc_stack_mark_gray(thd, value);
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} else if (stage == STAGE_TRACING) {
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//printf("DEBUG - GC async tracing marking heap obj %p ", old_obj);
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//Cyc_display(old_obj, stdout);
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@ -12,9 +12,6 @@
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//int JAE_DEBUG = 0;
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//int gcMoveCountsDEBUG[20] = {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0};
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TODO: still not good enough, need to be smarter when marking grey objs that are
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still on the stack (??). see reg-port in read.sld
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object Cyc_global_set(void *thd, object *glo, object value)
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{
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gc_mut_update((gc_thread_data *)thd, *glo, value);
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