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3609e305c1
git-svn-id: file:///svn/toku/tokudb@44129 c7de825b-a66e-492c-adef-691d508d4ae1
175 lines
5 KiB
C
175 lines
5 KiB
C
/* -*- mode: C; c-basic-offset: 4; indent-tabs-mode: nil -*- */
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// vim: expandtab:ts=8:sw=4:softtabstop=4:
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#ident "$Id$"
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#ident "Copyright (c) 2007-2011 Tokutek Inc. All rights reserved."
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#include "includes.h"
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#include "test.h"
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BOOL v1_written;
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u_int64_t val1;
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BOOL v2_written;
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u_int64_t val2;
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u_int64_t val3;
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BOOL check_me;
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static void
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flush (CACHEFILE f __attribute__((__unused__)),
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int UU(fd),
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CACHEKEY k __attribute__((__unused__)),
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void *v __attribute__((__unused__)),
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void** UU(dd),
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void *e __attribute__((__unused__)),
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PAIR_ATTR s __attribute__((__unused__)),
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PAIR_ATTR* new_size __attribute__((__unused__)),
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BOOL w __attribute__((__unused__)),
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BOOL keep __attribute__((__unused__)),
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BOOL c __attribute__((__unused__)),
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BOOL UU(is_clone)
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) {
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/* Do nothing */
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if (verbose) { printf("FLUSH: %d\n", (int)k.b); }
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//usleep (5*1024*1024);
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if(check_me) {
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assert(c);
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assert(keep);
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assert(w);
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if (v == &val1) {
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v1_written = TRUE;
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}
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else if (v == &val2) {
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v2_written = TRUE;
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}
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else {
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assert(FALSE);
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}
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}
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}
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static int
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fetch (CACHEFILE f __attribute__((__unused__)),
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int UU(fd),
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CACHEKEY k __attribute__((__unused__)),
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u_int32_t fullhash __attribute__((__unused__)),
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void **value __attribute__((__unused__)),
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void** UU(dd),
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PAIR_ATTR *sizep __attribute__((__unused__)),
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int *dirtyp,
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void *extraargs __attribute__((__unused__))
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) {
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*dirtyp = 0;
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*value = extraargs;
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*sizep = make_pair_attr(8);
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return 0;
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}
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static void
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cachetable_test (BOOL write_first, BOOL write_second, BOOL start_checkpoint) {
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const int test_limit = 12;
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int r;
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CACHETABLE ct;
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r = toku_create_cachetable(&ct, test_limit, ZERO_LSN, NULL_LOGGER); assert(r == 0);
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char fname1[] = __SRCFILE__ "test1.dat";
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unlink(fname1);
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CACHEFILE f1;
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r = toku_cachetable_openf(&f1, ct, fname1, O_RDWR|O_CREAT, S_IRWXU|S_IRWXG|S_IRWXO); assert(r == 0);
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void* v1;
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void* v2;
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void* v3;
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long s1;
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long s2;
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long s3;
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CACHETABLE_WRITE_CALLBACK wc = def_write_callback(&val1);
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wc.flush_callback = flush;
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wc.write_extraargs = &val1;
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r = toku_cachetable_get_and_pin(f1, make_blocknum(1), 1, &v1, &s1, wc, fetch, def_pf_req_callback, def_pf_callback, TRUE, &val1);
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wc.write_extraargs = &val2;
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r = toku_cachetable_get_and_pin(f1, make_blocknum(2), 2, &v2, &s2, wc, fetch, def_pf_req_callback, def_pf_callback, TRUE, &val2);
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CACHEFILE dependent_cfs[2];
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dependent_cfs[0] = f1;
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dependent_cfs[1] = f1;
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CACHEKEY dependent_keys[2];
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dependent_keys[0] = make_blocknum(1);
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dependent_keys[1] = make_blocknum(2);
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u_int32_t dependent_fullhash[2];
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dependent_fullhash[0] = 1;
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dependent_fullhash[1] = 2;
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// now we set the dirty state of these two.
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enum cachetable_dirty cd[2];
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cd[0] = write_first ? CACHETABLE_DIRTY : CACHETABLE_CLEAN;
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cd[1] = write_second ? CACHETABLE_DIRTY : CACHETABLE_CLEAN;
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if (start_checkpoint) {
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//
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// should mark the v1 and v2 as pending
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//
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r = toku_cachetable_begin_checkpoint(ct, NULL); assert(r==0);
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}
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//
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// This call should cause a flush for both
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//
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check_me = TRUE;
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v1_written = FALSE;
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v2_written = FALSE;
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wc.write_extraargs = &val3;
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r = toku_cachetable_get_and_pin_with_dep_pairs(
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f1,
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make_blocknum(3),
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3,
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&v3,
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&s3,
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wc, fetch, def_pf_req_callback, def_pf_callback,
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TRUE,
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&val3,
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2, //num_dependent_pairs
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dependent_cfs,
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dependent_keys,
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dependent_fullhash,
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cd
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);
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if (start_checkpoint) {
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assert(v1_written == write_first);
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assert(v2_written == write_second);
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}
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else {
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assert(!v1_written);
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assert(!v2_written);
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}
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check_me = FALSE;
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r = toku_cachetable_unpin(f1, make_blocknum(1), 1, CACHETABLE_CLEAN, make_pair_attr(8));
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r = toku_cachetable_unpin(f1, make_blocknum(2), 2, CACHETABLE_CLEAN, make_pair_attr(8));
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r = toku_cachetable_unpin(f1, make_blocknum(3), 3, CACHETABLE_CLEAN, make_pair_attr(8));
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if (start_checkpoint) {
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r = toku_cachetable_end_checkpoint(
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ct,
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NULL,
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NULL,
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NULL
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);
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assert(r==0);
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}
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toku_cachetable_verify(ct);
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r = toku_cachefile_close(&f1, 0, FALSE, ZERO_LSN); assert(r == 0);
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r = toku_cachetable_close(&ct); lazy_assert_zero(r);
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}
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int
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test_main(int argc, const char *argv[]) {
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default_parse_args(argc, argv);
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cachetable_test(FALSE,FALSE,TRUE);
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cachetable_test(FALSE,TRUE,TRUE);
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cachetable_test(TRUE,FALSE,TRUE);
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cachetable_test(TRUE,TRUE,TRUE);
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cachetable_test(FALSE,FALSE,FALSE);
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cachetable_test(FALSE,TRUE,FALSE);
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cachetable_test(TRUE,FALSE,FALSE);
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cachetable_test(TRUE,TRUE,FALSE);
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return 0;
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}
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