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Speed up mpsicv by reducing number of objects and by only running the test once (there's no inlined mps_tramp any more). Copied from Perforce Change: 186024 ServerID: perforce.ravenbrook.com
336 lines
11 KiB
C
336 lines
11 KiB
C
/* finaltest.c: LARGE-SCALE FINALIZATION TEST
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*
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* $Id$
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* Copyright (c) 2001-2014 Ravenbrook Limited. See end of file for license.
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* Portions copyright (C) 2002 Global Graphics Software.
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*
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* DESIGN
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*
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* .mode: This test has two modes.
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*
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* .mode.park: In this mode, we use the arena's default generation
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* chain, leave the arena parked and call mps_arena_collect. This
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* tests that the default generation chain works and that all segments
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* get condemned via TraceStartCollectAll. (See job003771 item 4.)
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*
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* .mode.poll: In this mode, we use our own generation chain (with
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* small generations), allocate into generation 1, unclamp the arena,
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* and provoke collection by allocating. This tests that custom
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* generation chains work, and that segments get condemned via
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* TracePoll even if there is no allocation into generation 0 of the
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* chain. (See job003771 item 5.)
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*
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* DEPENDENCIES
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*
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* This test uses the dylan object format, but the reliance on this
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* particular format is not great and could be removed.
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*
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* NOTES
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*
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* This code was created by first copying <code/finalcv.c>
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*/
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#include "mpm.h"
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#include "testlib.h"
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#include "mpslib.h"
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#include "mps.h"
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#include "mpscamc.h"
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#include "mpscams.h"
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#include "mpscawl.h"
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#include "mpsclo.h"
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#include "mpsavm.h"
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#include "fmtdy.h"
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#include "fmtdytst.h"
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#include "mpstd.h"
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#include <stdio.h> /* fflush, printf, stdout */
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enum {
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ModePARK, /* .mode.park */
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ModePOLL /* .mode.poll */
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};
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#define testArenaSIZE ((size_t)16<<20)
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#define rootCOUNT 20
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#define maxtreeDEPTH 9
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#define collectionCOUNT 10
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/* global object counter */
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static mps_word_t object_count = 0;
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static mps_word_t make_numbered_cons(mps_word_t car, mps_word_t cdr,
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mps_ap_t ap)
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{
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mps_word_t cons;
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die(make_dylan_vector(&cons, ap, 3), "make_dylan_vector");
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DYLAN_VECTOR_SLOT(cons, 0) = car;
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DYLAN_VECTOR_SLOT(cons, 1) = cdr;
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DYLAN_VECTOR_SLOT(cons, 2) = DYLAN_INT(object_count);
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++ object_count;
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return cons;
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}
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static mps_word_t make_numbered_tree(mps_word_t depth,
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mps_ap_t ap)
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{
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mps_word_t left, right;
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if (depth < 2) {
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left = DYLAN_INT(object_count);
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right = DYLAN_INT(object_count);
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} else {
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left = make_numbered_tree(depth-1, ap);
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right = make_numbered_tree(depth-1, ap);
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}
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return make_numbered_cons(left, right, ap);
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}
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static void register_numbered_tree(mps_word_t tree, mps_arena_t arena)
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{
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/* don't finalize ints */
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if ((tree & 1) == 0) {
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mps_addr_t tree_ref = (mps_addr_t)tree;
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die(mps_finalize(arena, &tree_ref), "mps_finalize");
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register_numbered_tree(DYLAN_VECTOR_SLOT(tree, 0), arena);
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register_numbered_tree(DYLAN_VECTOR_SLOT(tree, 1), arena);
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}
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}
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static mps_word_t make_indirect_cons(mps_word_t car, mps_word_t cdr,
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mps_ap_t ap)
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{
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mps_word_t cons, indirect;
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die(make_dylan_vector(&indirect, ap, 1), "make_dylan_vector");
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DYLAN_VECTOR_SLOT(indirect, 0) = DYLAN_INT(object_count);
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die(make_dylan_vector(&cons, ap, 3), "make_dylan_vector");
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DYLAN_VECTOR_SLOT(cons, 0) = car;
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DYLAN_VECTOR_SLOT(cons, 1) = cdr;
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DYLAN_VECTOR_SLOT(cons, 2) = indirect;
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++ object_count;
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return cons;
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}
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static mps_word_t make_indirect_tree(mps_word_t depth,
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mps_ap_t ap)
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{
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mps_word_t left, right;
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if (depth < 2) {
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left = DYLAN_INT(object_count);
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right = DYLAN_INT(object_count);
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} else {
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left = make_indirect_tree(depth-1, ap);
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right = make_indirect_tree(depth-1, ap);
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}
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return make_indirect_cons(left, right, ap);
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}
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static void register_indirect_tree(mps_word_t tree, mps_arena_t arena)
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{
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/* don't finalize ints */
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if ((tree & 1) == 0) {
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mps_word_t indirect = DYLAN_VECTOR_SLOT(tree,2);
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mps_addr_t indirect_ref = (mps_addr_t)indirect;
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die(mps_finalize(arena, &indirect_ref), "mps_finalize");
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register_indirect_tree(DYLAN_VECTOR_SLOT(tree, 0), arena);
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register_indirect_tree(DYLAN_VECTOR_SLOT(tree, 1), arena);
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}
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}
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static mps_addr_t test_awl_find_dependent(mps_addr_t addr)
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{
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testlib_unused(addr);
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return NULL;
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}
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static void *root[rootCOUNT];
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static void test_trees(int mode, const char *name, mps_arena_t arena,
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mps_ap_t ap,
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mps_word_t (*make)(mps_word_t, mps_ap_t),
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void (*reg)(mps_word_t, mps_arena_t))
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{
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size_t collections = 0;
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size_t finals = 0;
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size_t i;
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int object_alloc;
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object_count = 0;
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printf("Making some %s finalized trees of objects.\n", name);
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mps_arena_park(arena);
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/* make some trees */
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for(i = 0; i < rootCOUNT; ++i) {
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root[i] = (void *)(*make)(maxtreeDEPTH, ap);
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(*reg)((mps_word_t)root[i], arena);
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}
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printf("Losing all pointers to the trees.\n");
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/* clean out the roots */
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for(i = 0; i < rootCOUNT; ++i) {
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root[i] = 0;
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}
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while (finals < object_count && collections < collectionCOUNT) {
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mps_word_t final_this_time = 0;
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switch (mode) {
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default:
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case ModePARK:
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printf("Collecting...");
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(void)fflush(stdout);
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die(mps_arena_collect(arena), "collect");
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printf(" Done.\n");
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break;
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case ModePOLL:
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mps_arena_release(arena);
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printf("Allocating...");
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(void)fflush(stdout);
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object_alloc = 0;
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while (object_alloc < 1000 && !mps_message_poll(arena))
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(void)DYLAN_INT(object_alloc++);
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break;
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}
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++ collections;
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while (mps_message_poll(arena)) {
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mps_message_t message;
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mps_addr_t objaddr;
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cdie(mps_message_get(&message, arena, mps_message_type_finalization()),
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"message_get");
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mps_message_finalization_ref(&objaddr, arena, message);
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mps_message_discard(arena, message);
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++ final_this_time;
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}
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finals += final_this_time;
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printf("%"PRIuLONGEST" objects finalized: total %"PRIuLONGEST
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" of %"PRIuLONGEST"\n", (ulongest_t)final_this_time,
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(ulongest_t)finals, (ulongest_t)object_count);
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}
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if (finals != object_count)
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error("Not all objects were finalized for %s in mode %s.",
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BufferOfAP(ap)->pool->class->name,
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mode == ModePOLL ? "POLL" : "PARK");
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}
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static void test_pool(int mode, mps_arena_t arena, mps_chain_t chain,
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mps_class_t pool_class)
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{
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mps_ap_t ap;
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mps_fmt_t fmt;
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mps_pool_t pool;
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mps_root_t mps_root;
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die(mps_fmt_create_A(&fmt, arena, dylan_fmt_A()), "fmt_create\n");
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MPS_ARGS_BEGIN(args) {
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MPS_ARGS_ADD(args, MPS_KEY_FORMAT, fmt);
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if (mode == ModePOLL) {
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MPS_ARGS_ADD(args, MPS_KEY_CHAIN, chain);
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MPS_ARGS_ADD(args, MPS_KEY_GEN, 1);
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}
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if (pool_class == mps_class_awl())
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MPS_ARGS_ADD(args, MPS_KEY_AWL_FIND_DEPENDENT, test_awl_find_dependent);
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die(mps_pool_create_k(&pool, arena, pool_class, args),
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"pool_create\n");
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} MPS_ARGS_END(args);
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die(mps_root_create_table(&mps_root, arena, mps_rank_exact(), (mps_rm_t)0,
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root, (size_t)rootCOUNT),
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"root_create\n");
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die(mps_ap_create(&ap, pool, mps_rank_exact()), "ap_create\n");
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test_trees(mode, "numbered", arena, ap, make_numbered_tree,
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register_numbered_tree);
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test_trees(mode, "indirect", arena, ap, make_indirect_tree,
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register_indirect_tree);
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mps_ap_destroy(ap);
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mps_root_destroy(mps_root);
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mps_pool_destroy(pool);
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mps_fmt_destroy(fmt);
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}
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static void test_mode(int mode, mps_arena_t arena, mps_chain_t chain)
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{
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test_pool(mode, arena, chain, mps_class_amc());
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test_pool(mode, arena, chain, mps_class_amcz());
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test_pool(mode, arena, chain, mps_class_ams());
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/* test_pool(mode, arena, chain, mps_class_lo()); TODO: job003773 */
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/* test_pool(mode, arena, chain, mps_class_awl()); TODO: job003772 */
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}
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int main(int argc, char *argv[])
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{
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mps_arena_t arena;
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mps_thr_t thread;
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mps_chain_t chain;
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mps_gen_param_s params[2];
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size_t gens = 2;
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size_t i;
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testlib_init(argc, argv);
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die(mps_arena_create(&arena, mps_arena_class_vm(), testArenaSIZE),
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"arena_create\n");
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mps_message_type_enable(arena, mps_message_type_finalization());
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die(mps_thread_reg(&thread, arena), "thread_reg\n");
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for (i = 0; i < gens; ++i) {
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params[i].mps_capacity = 1;
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params[i].mps_mortality = 0.5;
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}
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die(mps_chain_create(&chain, arena, gens, params), "chain_create\n");
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test_mode(ModePOLL, arena, chain);
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test_mode(ModePARK, arena, NULL);
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mps_arena_park(arena);
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mps_chain_destroy(chain);
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mps_thread_dereg(thread);
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mps_arena_destroy(arena);
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printf("%s: Conclusion: Failed to find any defects.\n", argv[0]);
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return 0;
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}
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/* C. COPYRIGHT AND LICENSE
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*
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* Copyright (c) 2001-2014 Ravenbrook Limited <http://www.ravenbrook.com/>.
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* All rights reserved. This is an open source license. Contact
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* Ravenbrook for commercial licensing options.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* 3. Redistributions in any form must be accompanied by information on how
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* to obtain complete source code for this software and any accompanying
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* software that uses this software. The source code must either be
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* included in the distribution or be available for no more than the cost
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* of distribution plus a nominal fee, and must be freely redistributable
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* under reasonable conditions. For an executable file, complete source
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* code means the source code for all modules it contains. It does not
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* include source code for modules or files that typically accompany the
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* major components of the operating system on which the executable file
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* runs.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
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* IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
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* PURPOSE, OR NON-INFRINGEMENT, ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT HOLDERS AND CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
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* USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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* ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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