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Implementations testthrix.c for Unix and testthrw3.c for Windows. Multi-threaded test cases use the new interface. Rename lockutw3 to lockut (no longer Windows-specific). Run multi-threaded test cases on Windows and lockut elsewhere. Copied from Perforce Change: 185350 ServerID: perforce.ravenbrook.com
390 lines
12 KiB
C
390 lines
12 KiB
C
/* amcssth.c: POOL CLASS AMC STRESS TEST WITH TWO THREADS
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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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* .posix: This is Posix only.
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*/
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#define _POSIX_C_SOURCE 199309L
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#include "fmtdy.h"
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#include "fmtdytst.h"
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#include "testlib.h"
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#include "testthr.h"
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#include "mpslib.h"
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#include "mpscamc.h"
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#include "mpsavm.h"
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#include <stdio.h> /* fflush, printf, putchar */
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/* These values have been tuned in the hope of getting one dynamic collection. */
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#define testArenaSIZE ((size_t)1000*1024)
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#define gen1SIZE ((size_t)150)
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#define gen2SIZE ((size_t)170)
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#define avLEN 3
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#define exactRootsCOUNT 180
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#define ambigRootsCOUNT 50
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#define genCOUNT 2
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#define collectionsCOUNT 37
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#define rampSIZE 9
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#define initTestFREQ 6000
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/* testChain -- generation parameters for the test */
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static mps_gen_param_s testChain[genCOUNT] = {
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{ gen1SIZE, 0.85 }, { gen2SIZE, 0.45 } };
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/* objNULL needs to be odd so that it's ignored in exactRoots. */
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#define objNULL ((mps_addr_t)MPS_WORD_CONST(0xDECEA5ED))
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static mps_addr_t exactRoots[exactRootsCOUNT];
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static mps_addr_t ambigRoots[ambigRootsCOUNT];
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/* report - report statistics from any terminated GCs */
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static void report(mps_arena_t arena)
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{
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mps_message_t message;
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static int nCollections = 0;
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while (mps_message_get(&message, arena, mps_message_type_gc())) {
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size_t live, condemned, not_condemned;
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live = mps_message_gc_live_size(arena, message);
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condemned = mps_message_gc_condemned_size(arena, message);
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not_condemned = mps_message_gc_not_condemned_size(arena, message);
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printf("\nCollection %d finished:\n", ++nCollections);
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printf("live %"PRIuLONGEST"\n", (ulongest_t)live);
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printf("condemned %"PRIuLONGEST"\n", (ulongest_t)condemned);
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printf("not_condemned %"PRIuLONGEST"\n", (ulongest_t)not_condemned);
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mps_message_discard(arena, message);
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if (condemned > (gen1SIZE + gen2SIZE + (size_t)128) * 1024)
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/* When condemned size is larger than could happen in a gen 2
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* collection (discounting ramps, natch), guess that was a dynamic
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* collection, and reset the commit limit, so it doesn't run out. */
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die(mps_arena_commit_limit_set(arena, 2 * testArenaSIZE), "set limit");
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}
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}
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mps_arena_t arena;
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mps_fmt_t format;
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mps_chain_t chain;
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mps_root_t exactRoot, ambigRoot;
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unsigned long objs = 0;
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/* make -- create one new object */
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static mps_addr_t make(mps_ap_t ap, size_t roots_count)
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{
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size_t length = rnd() % (2*avLEN);
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size_t size = (length+2) * sizeof(mps_word_t);
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mps_addr_t p;
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mps_res_t res;
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do {
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MPS_RESERVE_BLOCK(res, p, ap, size);
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if (res)
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die(res, "MPS_RESERVE_BLOCK");
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res = dylan_init(p, size, exactRoots, roots_count);
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if (res)
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die(res, "dylan_init");
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} while(!mps_commit(ap, p, size));
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return p;
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}
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/* test_stepper -- stepping function for walk */
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static void test_stepper(mps_addr_t object, mps_fmt_t fmt, mps_pool_t pool,
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void *p, size_t s)
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{
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testlib_unused(object); testlib_unused(fmt); testlib_unused(pool);
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testlib_unused(s);
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(*(unsigned long *)p)++;
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}
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/* init -- initialize roots and chain */
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static void init(void)
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{
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size_t i;
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die(dylan_fmt(&format, arena), "fmt_create");
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die(mps_chain_create(&chain, arena, genCOUNT, testChain), "chain_create");
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for(i = 0; i < exactRootsCOUNT; ++i)
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exactRoots[i] = objNULL;
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for(i = 0; i < ambigRootsCOUNT; ++i)
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ambigRoots[i] = rnd_addr();
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die(mps_root_create_table_masked(&exactRoot, arena,
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mps_rank_exact(), (mps_rm_t)0,
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&exactRoots[0], exactRootsCOUNT,
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(mps_word_t)1),
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"root_create_table(exact)");
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die(mps_root_create_table(&ambigRoot, arena,
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mps_rank_ambig(), (mps_rm_t)0,
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&ambigRoots[0], ambigRootsCOUNT),
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"root_create_table(ambig)");
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}
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/* finish -- finish roots and chain */
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static void finish(void)
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{
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mps_root_destroy(exactRoot);
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mps_root_destroy(ambigRoot);
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mps_chain_destroy(chain);
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mps_fmt_destroy(format);
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}
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/* churn -- create an object and install into roots */
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static void churn(mps_ap_t ap, size_t roots_count)
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{
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size_t i;
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size_t r;
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++objs;
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r = (size_t)rnd();
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if (r & 1) {
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i = (r >> 1) % exactRootsCOUNT;
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if (exactRoots[i] != objNULL)
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cdie(dylan_check(exactRoots[i]), "dying root check");
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exactRoots[i] = make(ap, roots_count);
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if (exactRoots[(exactRootsCOUNT-1) - i] != objNULL)
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dylan_write(exactRoots[(exactRootsCOUNT-1) - i],
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exactRoots, exactRootsCOUNT);
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} else {
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i = (r >> 1) % ambigRootsCOUNT;
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ambigRoots[(ambigRootsCOUNT-1) - i] = make(ap, roots_count);
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/* Create random interior pointers */
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ambigRoots[i] = (mps_addr_t)((char *)(ambigRoots[i/2]) + 1);
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}
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}
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typedef struct closure_s {
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mps_pool_t pool;
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size_t roots_count;
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} closure_s, *closure_t;
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static void *kid_thread(void *arg)
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{
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void *marker = ▮
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mps_thr_t thread;
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mps_root_t reg_root;
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mps_ap_t ap;
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closure_t cl = arg;
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die(mps_thread_reg(&thread, (mps_arena_t)arena), "thread_reg");
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die(mps_root_create_reg(®_root, arena, mps_rank_ambig(), 0, thread,
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mps_stack_scan_ambig, marker, 0), "root_create");
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die(mps_ap_create(&ap, cl->pool, mps_rank_exact()), "BufferCreate(fooey)");
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while(mps_collections(arena) < collectionsCOUNT) {
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churn(ap, cl->roots_count);
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}
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mps_ap_destroy(ap);
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mps_root_destroy(reg_root);
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mps_thread_dereg(thread);
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return NULL;
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}
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/* test -- the body of the test */
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static void *test(mps_class_t pool_class, size_t roots_count)
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{
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size_t i;
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mps_word_t collections, rampSwitch;
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mps_alloc_pattern_t ramp = mps_alloc_pattern_ramp();
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int ramping;
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mps_ap_t ap, busy_ap;
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mps_addr_t busy_init;
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mps_pool_t pool;
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testthr_t kids[10];
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closure_s cl;
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die(mps_pool_create(&pool, arena, pool_class, format, chain),
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"pool_create(amc)");
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cl.pool = pool;
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cl.roots_count = roots_count;
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for (i = 0; i < sizeof(kids)/sizeof(kids[0]); ++i)
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testthr_create(&kids[i], kid_thread, &cl);
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die(mps_ap_create(&ap, pool, mps_rank_exact()), "BufferCreate");
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die(mps_ap_create(&busy_ap, pool, mps_rank_exact()), "BufferCreate 2");
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/* create an ap, and leave it busy */
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die(mps_reserve(&busy_init, busy_ap, 64), "mps_reserve busy");
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collections = 0;
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rampSwitch = rampSIZE;
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die(mps_ap_alloc_pattern_begin(ap, ramp), "pattern begin (ap)");
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die(mps_ap_alloc_pattern_begin(busy_ap, ramp), "pattern begin (busy_ap)");
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ramping = 1;
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while (collections < collectionsCOUNT) {
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unsigned long c;
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size_t r;
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c = mps_collections(arena);
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if (collections != c) {
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collections = c;
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printf("\nCollection %lu started, %lu objects.\n", c, objs);
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report(arena);
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for (i = 0; i < exactRootsCOUNT; ++i)
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cdie(exactRoots[i] == objNULL || dylan_check(exactRoots[i]),
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"all roots check");
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if (collections == collectionsCOUNT / 2) {
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unsigned long object_count = 0;
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mps_arena_park(arena);
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mps_arena_formatted_objects_walk(arena, test_stepper, &object_count, 0);
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mps_arena_release(arena);
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printf("stepped on %lu objects.\n", object_count);
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}
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if (collections == rampSwitch) {
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int begin_ramp = !ramping
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|| /* Every other time, switch back immediately. */ (collections & 1);
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rampSwitch += rampSIZE;
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if (ramping) {
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die(mps_ap_alloc_pattern_end(ap, ramp), "pattern end (ap)");
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die(mps_ap_alloc_pattern_end(busy_ap, ramp), "pattern end (busy_ap)");
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ramping = 0;
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/* kill half of the roots */
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for(i = 0; i < exactRootsCOUNT; i += 2) {
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if (exactRoots[i] != objNULL) {
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cdie(dylan_check(exactRoots[i]), "ramp kill check");
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exactRoots[i] = objNULL;
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}
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}
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}
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if (begin_ramp) {
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die(mps_ap_alloc_pattern_begin(ap, ramp),
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"pattern rebegin (ap)");
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die(mps_ap_alloc_pattern_begin(busy_ap, ramp),
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"pattern rebegin (busy_ap)");
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ramping = 1;
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}
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}
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}
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churn(ap, roots_count);
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r = (size_t)rnd();
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if (r % initTestFREQ == 0)
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*(int*)busy_init = -1; /* check that the buffer is still there */
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if (objs % 1024 == 0) {
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report(arena);
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putchar('.');
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fflush(stdout);
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}
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}
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(void)mps_commit(busy_ap, busy_init, 64);
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mps_ap_destroy(busy_ap);
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mps_ap_destroy(ap);
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for (i = 0; i < sizeof(kids)/sizeof(kids[0]); ++i)
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testthr_join(&kids[i], NULL);
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mps_pool_destroy(pool);
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return NULL;
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}
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int main(int argc, char *argv[])
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{
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mps_thr_t thread;
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mps_root_t reg_root;
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void *marker = ▮
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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");
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mps_message_type_enable(arena, mps_message_type_gc());
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init();
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die(mps_thread_reg(&thread, arena), "thread_reg");
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die(mps_root_create_reg(®_root, arena, mps_rank_ambig(), 0, thread,
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mps_stack_scan_ambig, marker, 0), "root_create");
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test(mps_class_amc(), exactRootsCOUNT);
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test(mps_class_amcz(), 0);
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mps_root_destroy(reg_root);
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mps_thread_dereg(thread);
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finish();
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report(arena);
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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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