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[/] [openrisc/] [trunk/] [gnu-dev/] [or1k-gcc/] [libstdc++-v3/] [testsuite/] [decimal/] [operator_neg.cc] - Blame information for rev 848

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1 742 jeremybenn
// Copyright (C) 2009 Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library.  This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 3, or (at your option)
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// any later version.
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License along
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// with this library; see the file COPYING3.  If not see
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// <http://www.gnu.org/licenses/>.
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// { dg-do compile }
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// { dg-require-effective-target dfp }
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// Test that C++ binary operators that are restricted to integer operands
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// do not accept decimal float operands.
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#include <decimal/decimal>
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using namespace std::decimal;
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decimal32 a32, b32, c32;
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decimal64 a64, b64, c64;
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decimal128 a128, b128, c128;
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void
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modulus (void)
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{
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  a32 = b32 % c32;      // { dg-error "error" } 
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  a64 = b64 % c64;      // { dg-error "error" } 
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  a128 = b128 % c128;   // { dg-error "error" } 
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  a128 = b32 % c128;    // { dg-error "error" } 
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  a128 = b64 % c128;    // { dg-error "error" } 
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  a32 = 100 % c32;      // { dg-error "error" } 
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  a64 = 10 % c64;       // { dg-error "error" } 
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  a128 = 1000 % c128;   // { dg-error "error" } 
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  a32 = b32 % 7;        // { dg-error "error" } 
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  a64 = b64 % 5;        // { dg-error "error" } 
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  a128 = b128 % 3;      // { dg-error "error" } 
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}
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void
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bitwise_right_shift (void)
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{
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  a32 = b32 >> c32;     // { dg-error "error" }
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  a64 = b64 >> c64;     // { dg-error "error" }
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  a128 = b128 >> c128;  // { dg-error "error" }
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  a128 = b32 >> c128;   // { dg-error "error" }
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  a128 = b64 >> c128;   // { dg-error "error" }
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  a32 = 100 >> c32;     // { dg-error "error" }
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  a64 = 10 >> c64;      // { dg-error "error" }
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  a128 = 1000 >> c128;  // { dg-error "error" }
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  a32 = b32 >> 7;       // { dg-error "error" }
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  a64 = b64 >> 5;       // { dg-error "error" }
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  a128 = b128 >> 3;     // { dg-error "error" }
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}
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void
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bitwise_left_shift (void)
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{
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  a32 = b32 << c32;     // { dg-error "error" } 
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  a64 = b64 << c64;     // { dg-error "error" } 
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  a128 = b128 << c128;  // { dg-error "error" } 
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  a128 = b32 << c128;   // { dg-error "error" } 
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  a128 = b64 << c128;   // { dg-error "error" } 
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  a32 = 100 << c32;     // { dg-error "error" } 
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  a64 = 10 << c64;      // { dg-error "error" } 
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  a128 = 1000 << c128;  // { dg-error "error" } 
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  a32 = b32 << 7;       // { dg-error "error" } 
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  a64 = b64 << 5;       // { dg-error "error" } 
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  a128 = b128 << 3;     // { dg-error "error" } 
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}
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void
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bitwise_exclusive_or (void)
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{
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  a32 = b32 ^ c32;      // { dg-error "error" } 
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  a64 = b64 ^ c64;      // { dg-error "error" } 
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  a128 = b128 ^ c128;   // { dg-error "error" } 
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  a128 = b32 ^ c128;    // { dg-error "error" } 
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  a128 = b64 ^ c128;    // { dg-error "error" } 
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  a32 = 100 ^ c32;      // { dg-error "error" } 
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  a64 = 10 ^ c64;       // { dg-error "error" } 
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  a128 = 1000 ^ c128;   // { dg-error "error" } 
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  a32 = b32 ^ 7;        // { dg-error "error" } 
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  a64 = b64 ^ 5;        // { dg-error "error" } 
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  a128 = b128 ^ 3;      // { dg-error "error" } 
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}
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void
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bitwise_inclusive_or (void)
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{
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  a32 = b32 | c32;      // { dg-error "error" } 
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  a64 = b64 | c64;      // { dg-error "error" } 
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  a128 = b128 | c128;   // { dg-error "error" } 
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  a128 = b32 | c128;    // { dg-error "error" } 
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  a128 = b64 | c128;    // { dg-error "error" } 
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  a32 = 100 | c32;      // { dg-error "error" } 
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  a64 = 10 | c64;       // { dg-error "error" } 
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  a128 = 1000 | c128;   // { dg-error "error" } 
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  a32 = b32 | 7;        // { dg-error "error" } 
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  a64 = b64 | 5;        // { dg-error "error" } 
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  a128 = b128 | 3;      // { dg-error "error" } 
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}
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void
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logical_and (void)
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{
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  a32 = b32 && c32;     // { dg-error "error" } 
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  a64 = b64 && c64;     // { dg-error "error" } 
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  a128 = b128 && c128;  // { dg-error "error" } 
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  a128 = b32 && c128;   // { dg-error "error" } 
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  a128 = b64 && c128;   // { dg-error "error" } 
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  a32 = 100 && c32;     // { dg-error "error" } 
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  a64 = 10 && c64;      // { dg-error "error" } 
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  a128 = 1000 && c128;  // { dg-error "error" } 
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  a32 = b32 && 7;       // { dg-error "error" } 
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  a64 = b64 && 5;       // { dg-error "error" } 
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  a128 = b128 && 3;     // { dg-error "error" } 
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}
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void
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logical_or (void)
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{
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  a32 = b32 || c32;     // { dg-error "error" } 
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  a64 = b64 || c64;     // { dg-error "error" } 
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  a128 = b128 || c128;  // { dg-error "error" } 
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  a128 = b32 || c128;   // { dg-error "error" } 
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  a128 = b64 || c128;   // { dg-error "error" } 
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  a32 = 100 || c32;     // { dg-error "error" } 
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  a64 = 10 || c64;      // { dg-error "error" } 
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  a128 = 1000 || c128;  // { dg-error "error" } 
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  a32 = b32 || 7;       // { dg-error "error" } 
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  a64 = b64 || 5;       // { dg-error "error" } 
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  a128 = b128 || 3;     // { dg-error "error" } 
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}
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void
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bitwise_complement (void)
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{
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  a32 = ~b32;           // { dg-error "error" } 
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  a64 = ~b64;           // { dg-error "error" } 
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  a128 = ~b128;         // { dg-error "error" } 
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}
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void
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logical_not (void)
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{
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  a32 = !b32;           // { dg-error "error" } 
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  a64 = !b64;           // { dg-error "error" } 
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  a128 = !b128;         // { dg-error "error" } 
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}
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