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1. On w3i6mv, int and long are 32 bits, so these types can't be used to hold a size_t or an mps_word_t. See 26.c, 38.c, 47.c, 66.c, 123.c, 136.c, 164.c, 165.c, 200.c, 203.c, 204.c, 205.c, 206.c, 207.c, 215.c, 223.c. 2. The Windows command line doesn't cope with parentheses. See 170.c. 3. The natural platform alignment is 16 bytes on w3i6mv, so allocations into pools using the default alignment need to be rounded up. See 21.c, 22.c, 203.c, 204.c, 205.c. 4. Microsoft Visual C/C++ is fussy about signed/unsigned comparison. See 226.c. 5. windows.h defines a SIZE macro so you can't use it as a parameter. See 232.c. Copied from Perforce Change: 191569 ServerID: perforce.ravenbrook.com
214 lines
5.3 KiB
C
214 lines
5.3 KiB
C
/*
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TEST_HEADER
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id = $Id$
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summary = new MVT allocation test, extra deep
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language = c
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link = testlib.o
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parameters = ITERATIONS=1000
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END_HEADER
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*/
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#include <time.h>
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#include "testlib.h"
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#include "mpscmvt.h"
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#include "mpsavm.h"
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#define MAXNUMBER 1000000
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void *stackpointer;
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mps_arena_t arena;
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static struct {mps_addr_t addr; size_t size;} queue[MAXNUMBER];
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enum {SEQ=0, RAN=1, SEQGAP=2, RANGAP=3, DUMMY=4};
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static char *tdesc[] = {"sequential", "random",
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"sequential gap", "random gap", "dummy"};
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static void setobj(mps_addr_t a, size_t size, unsigned char val)
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{
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unsigned char *b;
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b = a;
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while (size>0)
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{
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*b=val;
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/* comment("%p = %i", b, (int) val);
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*/
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b++;
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size--;
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}
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}
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static mps_res_t mvt_alloc(mps_addr_t *ref, mps_ap_t ap, size_t size) {
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mps_res_t res;
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size = (size + MPS_PF_ALIGN - 1) & ~ (MPS_PF_ALIGN - 1);
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do {
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MPS_RESERVE_BLOCK(res, *ref, ap, size);
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if (res != MPS_RES_OK) return res;
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} while (!mps_commit(ap, *ref, size));
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return MPS_RES_OK;
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}
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static int chkobj(mps_addr_t a, size_t size, unsigned char val)
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{
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unsigned char *b;
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b = a;
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while (size>0)
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{
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/* comment("%p == %i", b, (int) val);
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*/
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if (*b != val) return 0;
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b++;
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size--;
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}
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return 1;
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}
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static void dt(int kind,
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size_t minSize, size_t avgSize, size_t maxSize,
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mps_word_t depth, mps_word_t fragLimit,
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unsigned long mins, unsigned long maxs, int number, int iter)
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{
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mps_pool_t pool;
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mps_ap_t ap;
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int i, hd;
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clock_t time0, time1;
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size_t size;
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double secs;
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asserts(number <= MAXNUMBER, "number too big");
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time0 = clock();
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asserts(time0 != -1, "processor time not available");
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die(
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mps_pool_create(&pool, arena, mps_class_mvt(),
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minSize, avgSize, maxSize, depth, fragLimit),
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"create MVT pool");
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die(mps_ap_create(&ap, pool, mps_rank_ambig()), "create ap");
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for(hd=0; hd<number; hd++)
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{
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size = ranrange(mins, maxs);
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if ((ranint(2) && (kind & 2)) || (kind==DUMMY))
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{
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queue[hd].addr=NULL;
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}
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else
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{
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die(mvt_alloc(&queue[hd].addr, ap, size), "alloc");
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setobj(queue[hd].addr, size, (unsigned char) (hd%256));
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queue[hd].size = size;
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}
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};
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hd=-1;
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for(i=0; i<iter; i++)
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{
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if (kind & 1) hd = ranint(number);
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else {ranint(number); hd=(hd+1)%number;} /* call raninit anyway
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to use same time */
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if (queue[hd].addr != NULL)
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{
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asserts(chkobj(queue[hd].addr, queue[hd].size, (unsigned char) (hd%256)),
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"corrupt at %x (%s: %x, %x, %x, %i, %i, %lx, %lx, %i, %i)",
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queue[hd].addr,
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tdesc[kind], (int) minSize, (int) avgSize, (int) maxSize,
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(int) depth, (int) fragLimit,
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mins, maxs, number, iter);
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mps_free(pool, queue[hd].addr, queue[hd].size);
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}
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size = ranrange(mins, maxs);
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if ((ranint(2) && (kind & 2)) || (kind==DUMMY))
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{
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queue[hd].addr=NULL;
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}
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else
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{
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die(mvt_alloc(&queue[hd].addr, ap, size),"alloc");
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setobj(queue[hd].addr, size, (unsigned char) (hd%256));
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queue[hd].size = size;
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}
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}
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mps_ap_destroy(ap);
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mps_pool_destroy(pool);
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time1=clock();
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secs=(time1-time0)/(double)CLOCKS_PER_SEC;
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comment("%s test (%x, %x, %x, %i, %i, %lx, %lx, %i, %i) in %.2f s",
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tdesc[kind], (int) minSize, (int) avgSize, (int) maxSize,
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(int) depth, (int) fragLimit,
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mins, maxs, number, iter, secs);
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}
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static void test(void)
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{
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mps_thr_t thread;
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unsigned long mins;
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mps_word_t dep, frag;
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cdie(mps_arena_create(&arena, mps_arena_class_vm(), (size_t) (1024*1024*100)), "create arena");
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cdie(mps_thread_reg(&thread, arena), "register thread");
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mins = sizeof(int);
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dep = 10000;
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for (frag = 40; frag >= 5; frag = (frag >> 1)) {
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comment("Frag: %i", frag);
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dt(SEQ, 8, 8, 9, dep, frag, 8, 9, 5, ITERATIONS);
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dt(RANGAP, 64, 64, 64, dep, frag, 8, 128, 100, ITERATIONS);
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dt(DUMMY, 8, 32, 64, dep, frag, 8, 64, 1000, ITERATIONS);
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dt(SEQ, 8, 32, 64, dep, frag, 8, 64, 1000, ITERATIONS);
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dt(RAN, 8, 32, 64, dep, frag, 8, 64, 1000, ITERATIONS);
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dt(SEQGAP, 8, 32, 64, dep, frag, 8, 64, 1000, ITERATIONS);
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dt(RANGAP, 8, 32, 64, dep, frag, 8, 64, 1000, ITERATIONS);
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dt(DUMMY, 100, 116, 132, dep, frag, 100, 132, 1000, ITERATIONS);
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dt(SEQ, 100, 116, 132, dep, frag, 100, 132, 1000, ITERATIONS);
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dt(RAN, 100, 116, 132, dep, frag, 100, 132, 1000, ITERATIONS);
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dt(SEQGAP, 100, 116, 132, dep, frag, 100, 132, 1000, ITERATIONS);
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dt(RANGAP, 100, 116, 132, dep, frag, 100, 132, 1000, ITERATIONS);
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dt(DUMMY, mins, 60*1024, 120*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(SEQ, mins, 60*1024, 120*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(RAN, mins, 60*1024, 120*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(SEQGAP, mins, 60*1024, 120*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(RANGAP, mins, 60*1024, 120*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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/* try again using exceptional obj for anything over 16K */
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dt(DUMMY, mins, 8*1024, 16*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(SEQ, mins, 8*1024, 16*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(RAN, mins, 8*1024, 16*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(SEQGAP, mins, 8*1024, 16*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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dt(RANGAP, mins, 8*1024, 16*1024, dep, frag, mins, 128*1024, 100, ITERATIONS);
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}
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mps_thread_dereg(thread);
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mps_arena_destroy(arena);
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}
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int main(void)
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{
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void *m;
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stackpointer=&m; /* hack to get stack pointer */
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easy_tramp(test);
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pass();
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return 0;
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}
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