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379 lines
11 KiB
C
379 lines
11 KiB
C
/* awlut.c: POOL CLASS AWL UNIT 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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*
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* DESIGN
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*
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* .design: see <design/poolawl/#test>.*
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*/
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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 "testlib.h"
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#include "mpslib.h"
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#include "mps.h"
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#include "mpstd.h"
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#include <stdio.h> /* printf */
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#include <string.h> /* strlen */
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#define testArenaSIZE ((size_t)64<<20)
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#define TABLE_SLOTS 49
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#define ITERATIONS 5000
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#define CHATTER 100
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static mps_word_t bogus_class;
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#define UNINIT 0x041412ED
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#define DYLAN_ALIGN 4 /* depends on value defined in fmtdy.c */
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/* size_tAlignUp -- align w up to alignment a */
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#define size_tAlignUp(w, a) (((w) + (a) - 1) & ~((size_t)(a) - 1))
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static mps_word_t wrapper_wrapper[] = {
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UNINIT, /* wrapper */
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UNINIT, /* class */
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0, /* Extra word */
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(mps_word_t)4<<2|2, /* F */
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(mps_word_t)2<<(MPS_WORD_WIDTH - 8), /* V */
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(mps_word_t)1<<2|1, /* VL */
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1 /* patterns */
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};
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static mps_word_t string_wrapper[] = {
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UNINIT, /* wrapper */
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UNINIT, /* class */
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0, /* extra word */
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0, /* F */
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(mps_word_t)2<<(MPS_WORD_WIDTH - 8)|(mps_word_t)3<<3|4, /* V */
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1 /* VL */
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};
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static mps_word_t table_wrapper[] = {
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UNINIT, /* wrapper */
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UNINIT, /* class */
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0, /* extra word */
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(mps_word_t)1<<2|1, /* F */
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(mps_word_t)2<<(MPS_WORD_WIDTH - 8)|2, /* V */
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1 /* VL */
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};
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static void initialise_wrapper(mps_word_t *wrapper)
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{
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wrapper[0] = (mps_word_t)&wrapper_wrapper;
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wrapper[1] = (mps_word_t)&bogus_class;
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}
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/* alloc_string - create a dylan string object
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*
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* create a dylan string object (byte vector) whose contents
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* are the string s (including the terminating NUL)
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* .assume.dylan-obj
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*/
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static mps_word_t *alloc_string(const char *s, mps_ap_t ap)
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{
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size_t l;
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size_t objsize;
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void *p;
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mps_word_t *object;
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l = strlen(s)+1;
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/* number of words * sizeof word */
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objsize = (2 + (l+sizeof(mps_word_t)-1)/sizeof(mps_word_t))
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* sizeof(mps_word_t);
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objsize = size_tAlignUp(objsize, DYLAN_ALIGN);
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do {
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size_t i;
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char *s2;
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die(mps_reserve(&p, ap, objsize), "Reserve Leaf\n");
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object = p;
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object[0] = (mps_word_t)string_wrapper;
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object[1] = l << 2 | 1;
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s2 = (char *)&object[2];
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for(i = 0; i < l; ++i) {
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s2[i] = s[i];
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}
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} while(!mps_commit(ap, p, objsize));
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return object;
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}
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/* alloc_table -- create a table with n variable slots
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*
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* .assume.dylan-obj
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*/
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static mps_word_t *alloc_table(size_t n, mps_ap_t ap)
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{
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size_t objsize;
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void *p;
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mps_word_t *object;
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objsize = (3 + n) * sizeof(mps_word_t);
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objsize = size_tAlignUp(objsize, MPS_PF_ALIGN);
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do {
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size_t i;
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die(mps_reserve(&p, ap, objsize), "Reserve Table\n");
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object = p;
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object[0] = (mps_word_t)table_wrapper;
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object[1] = 0;
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object[2] = n << 2 | 1;
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for(i = 0; i < n; ++i) {
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object[3+i] = 0;
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}
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} while(!mps_commit(ap, p, objsize));
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return object;
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}
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/* gets the nth slot from a table
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* .assume.dylan-obj
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*/
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static mps_word_t *table_slot(mps_word_t *table, size_t n)
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{
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return (mps_word_t *)table[3+n];
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}
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/* sets the nth slot in a table
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* .assume.dylan-obj
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*/
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static void set_table_slot(mps_word_t *table, size_t n, mps_word_t *p)
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{
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cdie(table[0] == (mps_word_t)table_wrapper, "set_table_slot");
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table[3+n] = (mps_word_t)p;
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}
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/* links two tables together via their link slot
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* (1st fixed part slot)
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*/
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static void table_link(mps_word_t *t1, mps_word_t *t2)
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{
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cdie(t1[0] == (mps_word_t)table_wrapper, "table_link 1");
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cdie(t2[0] == (mps_word_t)table_wrapper, "table_link 2");
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t1[1] = (mps_word_t)t2;
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t2[1] = (mps_word_t)t1;
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}
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static void test(mps_arena_t arena,
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mps_ap_t leafap, mps_ap_t exactap, mps_ap_t weakap,
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mps_ap_t bogusap)
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{
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mps_word_t *weaktable;
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mps_word_t *exacttable;
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mps_word_t *preserve[TABLE_SLOTS]; /* preserves objects in the weak */
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/* table by referring to them */
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size_t i, j;
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void *p;
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exacttable = alloc_table(TABLE_SLOTS, exactap);
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weaktable = alloc_table(TABLE_SLOTS, weakap);
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table_link(exacttable, weaktable);
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/* Leave bogusap between reserve and commit for the duration */
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die(mps_reserve(&p, bogusap, 64), "Reserve bogus");
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for(i = 0; i < TABLE_SLOTS; ++i) {
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mps_word_t *string;
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/* Ensure that the first and last entries in the table are
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* preserved, so that we don't get false positives due to the
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* local variables 'weak_table' and 'string' keeping these entries
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* alive (see job003436).
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*/
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if (rnd() % 2 == 0 || i == 0 || i + 1 == TABLE_SLOTS) {
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string = alloc_string("iamalive", leafap);
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preserve[i] = string;
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} else {
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string = alloc_string("iamdead", leafap);
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preserve[i] = 0;
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}
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set_table_slot(weaktable, i, string);
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string = alloc_string("iamexact", leafap);
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set_table_slot(exacttable, i, string);
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}
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for(j = 0; j < ITERATIONS; ++j) {
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for(i = 0; i < TABLE_SLOTS; ++i) {
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(void)alloc_string("spong", leafap);
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}
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}
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die(mps_arena_collect(arena), "mps_arena_collect");
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mps_arena_release(arena);
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for(i = 0; i < TABLE_SLOTS; ++i) {
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if (preserve[i] == 0) {
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if (table_slot(weaktable, i)) {
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error("Strongly unreachable weak table entry found, "
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"slot %"PRIuLONGEST".\n", (ulongest_t)i);
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} else {
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if (table_slot(exacttable, i) != 0) {
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error("Weak table entry deleted, but corresponding "
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"exact table entry not deleted, slot %"PRIuLONGEST".\n",
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(ulongest_t)i);
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}
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}
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}
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}
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(void)mps_commit(bogusap, p, 64);
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}
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/* setup -- set up pools for the test
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*
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* v serves two purposes:
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* - a pseudo stack base for the stack root.
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* - pointer to a guff structure, which packages some values needed
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* (arena and thr mostly)
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*/
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struct guff_s {
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mps_arena_t arena;
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mps_thr_t thr;
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};
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static void *setup(void *v, size_t s)
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{
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struct guff_s *guff;
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mps_arena_t arena;
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mps_pool_t leafpool;
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mps_pool_t tablepool;
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mps_fmt_t dylanfmt;
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mps_fmt_t dylanweakfmt;
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mps_ap_t leafap, exactap, weakap, bogusap;
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mps_root_t stack;
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mps_thr_t thr;
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guff = (struct guff_s *)v;
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(void)s;
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arena = guff->arena;
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thr = guff->thr;
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die(mps_root_create_reg(&stack, arena, mps_rank_ambig(), 0, thr,
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mps_stack_scan_ambig, v, 0),
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"Root Create\n");
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die(mps_fmt_create_A(&dylanfmt, arena, dylan_fmt_A()),
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"Format Create\n");
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die(mps_fmt_create_A(&dylanweakfmt, arena, dylan_fmt_A_weak()),
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"Format Create (weak)\n");
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MPS_ARGS_BEGIN(args) {
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/* Ask the leafpool to allocate in the nursery, as we're using it to test
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weaknesss and want things to die in it promptly. */
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MPS_ARGS_ADD(args, MPS_KEY_GEN, 0);
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MPS_ARGS_ADD(args, MPS_KEY_FORMAT, dylanfmt);
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die(mps_pool_create_k(&leafpool, arena, mps_class_lo(), args),
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"Leaf Pool Create\n");
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} MPS_ARGS_END(args);
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die(mps_pool_create(&tablepool, arena, mps_class_awl(), dylanweakfmt,
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dylan_weak_dependent),
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"Table Pool Create\n");
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die(mps_ap_create(&leafap, leafpool, mps_rank_exact()),
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"Leaf AP Create\n");
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die(mps_ap_create(&exactap, tablepool, mps_rank_exact()),
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"Exact AP Create\n");
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die(mps_ap_create(&weakap, tablepool, mps_rank_weak()),
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"Weak AP Create\n");
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die(mps_ap_create(&bogusap, tablepool, mps_rank_exact()),
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"Bogus AP Create\n");
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test(arena, leafap, exactap, weakap, bogusap);
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mps_ap_destroy(bogusap);
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mps_ap_destroy(weakap);
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mps_ap_destroy(exactap);
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mps_ap_destroy(leafap);
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mps_pool_destroy(tablepool);
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mps_pool_destroy(leafpool);
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mps_fmt_destroy(dylanweakfmt);
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mps_fmt_destroy(dylanfmt);
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mps_root_destroy(stack);
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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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struct guff_s guff;
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mps_arena_t arena;
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mps_thr_t thread;
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void *r;
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testlib_init(argc, argv);
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initialise_wrapper(wrapper_wrapper);
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initialise_wrapper(string_wrapper);
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initialise_wrapper(table_wrapper);
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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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die(mps_thread_reg(&thread, arena), "thread_reg");
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guff.arena = arena;
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guff.thr = thread;
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mps_tramp(&r, setup, &guff, 0);
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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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