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/** |
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* This module contains a specialized bitset implementation. |
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* |
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* Copyright: Copyright (C) 2005-2006 Digital Mars, www.digitalmars.com. |
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* All rights reserved. |
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* License: |
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* This software is provided 'as-is', without any express or implied |
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* warranty. In no event will the authors be held liable for any damages |
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* arising from the use of this software. |
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* |
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* Permission is granted to anyone to use this software for any purpose, |
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* including commercial applications, and to alter it and redistribute it |
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* freely, in both source and binary form, subject to the following |
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* restrictions: |
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* |
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* o The origin of this software must not be misrepresented; you must not |
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* claim that you wrote the original software. If you use this software |
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* in a product, an acknowledgment in the product documentation would be |
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* appreciated but is not required. |
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* o Altered source versions must be plainly marked as such, and must not |
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* be misrepresented as being the original software. |
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* o This notice may not be removed or altered from any source |
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* distribution. |
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* Authors: Walter Bright, David Friedman, Sean Kelly |
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*/ |
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module rt.gc.basic.gcbits; |
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|
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private import tango.core.BitManip; |
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private import tango.stdc.string : memset, memcpy; |
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private import tango.stdc.stdlib : free, calloc; |
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private extern (C) void onOutOfMemoryError(); |
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|
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|
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version (DigitalMars) |
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{ |
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version = bitops; |
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} |
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else version (GNU) |
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{ |
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// use the unoptimized version |
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} |
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else version(LDC) |
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{ |
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// ditto |
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} |
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else version (D_InlineAsm_X86) |
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{ |
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version = Asm86; |
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} |
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|
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struct GCBits |
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{ |
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const int BITS_PER_WORD = 32; |
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const int BITS_SHIFT = 5; |
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const int BITS_MASK = 31; |
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|
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uint* data = null; |
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size_t nwords = 0; // allocated words in data[] excluding sentinals |
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size_t nbits = 0; // number of bits in data[] excluding sentinals |
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|
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void Dtor() |
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{ |
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if (data) |
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{ |
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free(data); |
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data = null; |
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} |
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} |
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|
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invariant |
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{ |
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if (data) |
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{ |
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assert(nwords * data[0].sizeof * 8 >= nbits); |
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} |
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} |
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|
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void alloc(size_t nbits) |
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{ |
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this.nbits = nbits; |
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nwords = (nbits + (BITS_PER_WORD - 1)) >> BITS_SHIFT; |
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data = cast(uint*)calloc(nwords + 2, uint.sizeof); |
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if (!data) |
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onOutOfMemoryError(); |
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} |
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|
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uint test(size_t i) |
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in |
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{ |
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assert(i < nbits); |
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} |
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body |
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{ |
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//return (cast(bit *)(data + 1))[i]; |
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return data[1 + (i >> BITS_SHIFT)] & (1 << (i & BITS_MASK)); |
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} |
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|
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void set(size_t i) |
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in |
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{ |
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assert(i < nbits); |
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} |
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body |
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{ |
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//(cast(bit *)(data + 1))[i] = 1; |
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data[1 + (i >> BITS_SHIFT)] |= (1 << (i & BITS_MASK)); |
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} |
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|
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void clear(size_t i) |
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in |
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{ |
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assert(i < nbits); |
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} |
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body |
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{ |
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//(cast(bit *)(data + 1))[i] = 0; |
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data[1 + (i >> BITS_SHIFT)] &= ~(1 << (i & BITS_MASK)); |
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} |
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|
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uint testClear(size_t i) |
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{ |
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version (bitops) |
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{ |
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return std.intrinsic.btr(data + 1, i); |
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} |
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else version (Asm86) |
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{ |
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asm |
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{ |
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naked ; |
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mov EAX,data[EAX] ; |
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mov ECX,i-4[ESP] ; |
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btr 4[EAX],ECX ; |
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sbb EAX,EAX ; |
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ret 4 ; |
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} |
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} |
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else |
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{ uint result; |
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|
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//result = (cast(bit *)(data + 1))[i]; |
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//(cast(bit *)(data + 1))[i] = 0; |
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uint* p = &data[1 + (i >> BITS_SHIFT)]; |
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uint mask = (1 << (i & BITS_MASK)); |
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result = *p & mask; |
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*p &= ~mask; |
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return result; |
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} |
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} |
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|
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void zero() |
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{ |
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version(MEMCPY_NON_SIG_SAFE) { |
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uint * d1=data+1,dEnd=d1+nwords; |
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for (;d1!=dEnd;++d1) |
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*d1=0u; |
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} else { |
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memset(data + 1, 0, nwords * uint.sizeof); |
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} |
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} |
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|
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void copy(GCBits *f) |
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in |
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{ |
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assert(nwords == f.nwords); |
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} |
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body |
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{ |
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version(MEMCPY_NON_SIG_SAFE) { |
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uint * d1=data+1,d2=f.data+1,dEnd=d1+nwords; |
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for (;d1!=dEnd;++d1,++d2) |
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*d1=*d2; |
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} else { |
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memcpy(data + 1, f.data + 1, nwords * uint.sizeof); |
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} |
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} |
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|
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uint* base() |
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in |
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{ |
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assert(data); |
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} |
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body |
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{ |
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return data + 1; |
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} |
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} |
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|
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unittest |
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{ |
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GCBits b; |
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|
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b.alloc(786); |
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assert(b.test(123) == 0); |
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assert(b.testClear(123) == 0); |
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b.set(123); |
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assert(b.test(123) != 0); |
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assert(b.testClear(123) != 0); |
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assert(b.test(123) == 0); |
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b.set(785); |
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b.set(0); |
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assert(b.test(785) != 0); |
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assert(b.test(0) != 0); |
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b.zero(); |
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assert(b.test(785) == 0); |
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assert(b.test(0) == 0); |
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GCBits b2; |
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b2.alloc(786); |
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b2.set(38); |
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b.copy(&b2); |
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assert(b.test(38) != 0); |
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b2.Dtor(); |
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b.Dtor(); |
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} |
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