/* * PROGRAM: Client/Server Common Code * MODULE: class_perf.cpp * DESCRIPTION: Class library performance measurements * * The contents of this file are subject to the Initial * Developer's Public License Version 1.0 (the "License"); * you may not use this file except in compliance with the * License. You may obtain a copy of the License at * http://www.ibphoenix.com/main.nfs?a=ibphoenix&page=ibp_idpl. * * Software distributed under the License is distributed AS IS, * WITHOUT WARRANTY OF ANY KIND, either express or implied. * See the License for the specific language governing rights * and limitations under the License. * * The Original Code was created by Nickolay Samofatov * for the Firebird Open Source RDBMS project. * * Copyright (c) 2004 Nickolay Samofatov * and all contributors signed below. * * All Rights Reserved. * Contributor(s): ______________________________________. * * * $Id: class_perf.cpp,v 1.14 2004-08-22 21:31:19 skidder Exp $ * */ #include "tree.h" #include "alloc.h" //#include "../memory/memory_pool.h" #include #include #include clock_t t; void start() { t = clock(); } const int TEST_ITEMS = 5000000; void report(int scaleNode, int scaleTree) { clock_t d = clock(); printf("Add+remove %d elements from tree of scale %d/%d took %d milliseconds. \n", TEST_ITEMS, scaleNode, scaleTree, (int)(d-t)*1000/CLOCKS_PER_SEC); } using namespace Firebird; static void testTree() { printf("Fill array with test data (%d items)...", TEST_ITEMS); Vector *v = new Vector(); int n = 0; int i; for (i=0;iadd(((i+n) % TEST_ITEMS + TEST_ITEMS)/2); } printf(" DONE\n"); MallocAllocator temp; start(); BePlusTree, DefaultComparator, 30, 30> tree30(NULL); for (i=0; i, DefaultComparator, 50, 50> tree50(NULL); for (i=0; i, DefaultComparator, 75, 75> tree75(NULL); for (i=0; i, DefaultComparator, 100, 100> tree100(NULL); for (i=0; i, DefaultComparator, 100, 250> tree100_250(NULL); for (i=0; i, DefaultComparator, 200, 200> tree200(NULL); for (i=0; i stlTree; start(); for (i=0; i i2.order || (i1.order==i2.order && i1.item > i2.item); } }; static void testAllocatorOverhead() { printf("Calculating measurement overhead...\n"); start(); MallocAllocator allocator; BePlusTree,AllocItem> items(&allocator), bigItems(&allocator); // Allocate small items int n = 0; int i; for (i=0;i,AllocItem> items(&allocator), bigItems(&allocator); // Allocate small items int i, n = 0; for (i=0;iallocate((n % MAX_ITEM_SIZE + MAX_ITEM_SIZE)/2+1)}; items.add(temp); } // Deallocate half of small items n = 0; if (items.getFirst()) do { pool->deallocate(items.current().item); n++; } while (n < ALLOC_ITEMS/2 && items.getNext()); // Allocate big items for (i=0;iallocate((n % BIG_SIZE + BIG_SIZE)/2+1)}; bigItems.add(temp); } // Deallocate the rest of small items while (items.getNext()) { pool->deallocate(items.current().item); } // Deallocate big items if (bigItems.getFirst()) do { pool->deallocate(bigItems.current().item); } while (bigItems.getNext()); Firebird::MemoryPool::deletePool(pool); report(); } static void testAllocatorMalloc() { printf("Test reference run for ::malloc...\n"); start(); MallocAllocator allocator; BePlusTree,AllocItem> items(&allocator), bigItems(&allocator); // Allocate small items int i, n = 0; for (i=0;i,AllocItem> items(&allocator), bigItems(&allocator); // Allocate small items int n = 0; int i; for (i=0;iallocate((n % MAX_ITEM_SIZE + MAX_ITEM_SIZE)/2+1,0)}; items.add(temp); } // Deallocate half of small items n = 0; if (items.getFirst()) do { pool->deallocate(items.current().item); n++; } while (n < ALLOC_ITEMS/2 && items.getNext()); // Allocate big items for (i=0;iallocate((n % BIG_SIZE + BIG_SIZE)/2+1,0)}; bigItems.add(temp); } // Deallocate the rest of small items while (items.getNext()) { pool->deallocate(items.current().item); } // Deallocate big items if (bigItems.getFirst()) do { pool->deallocate(bigItems.current().item); } while (bigItems.getNext()); delete pool; report(); }*/ int main() { testTree(); testAllocatorOverhead(); testAllocatorMemoryPool(); testAllocatorMalloc(); // testAllocatorOldPool(); }