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4a94e36819
This commit brings all the changes made by running gdb/copyright.py as per GDB's Start of New Year Procedure. For the avoidance of doubt, all changes in this commits were performed by the script.
566 lines
18 KiB
ArmAsm
566 lines
18 KiB
ArmAsm
/* Tests the multiply instructions.
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Copyright (C) 2017-2022 Free Software Foundation, Inc.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program 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
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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# mach: or1k
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# output: report(0x00000002);\n
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# output: report(0x00000003);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008001);\n
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# output: report(0x0000fffe);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00010000);\n
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# output: report(0x00010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffffffe);\n
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# output: report(0xfffffffd);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0002);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0000);\n
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# output: report(0x80010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff0000);\n
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# output: report(0xfffeffff);\n
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# output: report(0x00010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0xfffffffd);\n
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# output: report(0xfffffffa);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff8000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0x00010000);\n
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# output: report(0x7fff0000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x80000000);\n
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# output: report(0x00000001);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0xfffffffd);\n
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# output: report(0xfffffffa);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0000);\n
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# output: report(0x80010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0x00000003);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00010002);\n
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# output: report(0x00007fff);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00020000);\n
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# output: report(0x00004000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00040000);\n
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# output: report(0x00004000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffffffe);\n
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# output: report(0x0000fffd);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffefffe);\n
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# output: report(0x00008001);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffe0000);\n
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# output: report(0x0000bfff);\n
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# output: report(0x80020000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffdfffe);\n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0x0000fffd);\n
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# output: report(0xfffffffa);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00010000);\n
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# output: report(0x00008000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffdfffc);\n
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# output: report(0x00004000);\n
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# output: report(0x7fff0000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x80000000);\n
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# output: report(0x00000001);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00020000);\n
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# output: report(0x00004000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: report(0xfffffffe);\n
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# output: report(0x0000fffd);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffdfffe);\n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0x00000003);\n
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# output: report(0x00000006);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008001);\n
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# output: report(0x0000fffe);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00010000);\n
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# output: report(0x00010000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xfffffffe);\n
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# output: report(0xfffffffd);\n
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# output: report(0x00000006);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0002);\n
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# output: report(0x7ffffffe);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0000);\n
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# output: report(0x80010000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff0000);\n
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# output: report(0xfffeffff);\n
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# output: report(0x00010000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0xfffffffd);\n
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# output: report(0xfffffffa);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff8000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0x00010000);\n
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# output: report(0x7fff0000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x80000000);\n
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# output: report(0x00000001);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00008000);\n
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# output: report(0x00010000);\n
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# output: report(0x80000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: report(0x00000000);\n
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# output: \n
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# output: report(0x00000002);\n
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# output: report(0xfffffffd);\n
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# output: report(0xfffffffa);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: report(0xffff7fff);\n
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# output: report(0xffff0000);\n
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# output: report(0x80010000);\n
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# output: report(0x00000001);\n
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# output: report(0x00000000);\n
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# output: report(0x00000001);\n
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# output: \n
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# output: exit(0)\n
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#include "or1k-asm-test-helpers.h"
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STANDARD_TEST_ENVIRONMENT
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.section .exception_vectors
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/* Range exception. */
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.org 0xb00
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/* The handling is a bit dubious at present. We just patch the
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instruction with l.nop and restart. This will go wrong in branch
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delay slots, but we are not testing that here. */
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l.addi r1, r1, -EXCEPTION_STACK_SKIP_SIZE
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PUSH r2
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PUSH r3
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/* Save the address of the instruction that caused the problem. */
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MOVE_FROM_SPR r2, SPR_EPCR_BASE
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LOAD_IMMEDIATE r3, 0x15000000 /* Opcode for l.nop */
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l.sw 0(r2), r3
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POP r3
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POP r2
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l.addi r1, r1, EXCEPTION_STACK_SKIP_SIZE
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l.rfe
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.section .text
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start_tests:
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PUSH LINK_REGISTER_R9
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/* Test l.mul */
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/* Multiply two small positive numbers. This should set no flags.
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*/
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TEST_INST_I32_I32 l.mul, 0x00000002, 0x00000003
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/* Multiply two quite large positive numbers. This should set no
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flags */
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TEST_INST_I32_I32 l.mul, 0x00008001, 0x0000fffe
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/* Multiply two slightly too large positive numbers. This should
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set the overflow, but not the carry flag . */
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TEST_INST_I32_I32 l.mul, 0x00008000, 0x00010000
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/* Multiply two large positive numbers. This should set the
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overflow flags (even though the result is not a negative
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number. */
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TEST_INST_I32_I32 l.mul, 0x00010000, 0x00010000
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/* Multiply two small negative numbers. This will set no flags. */
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TEST_INST_I32_I32 l.mul, 0xfffffffe, 0xfffffffd
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/* Multiply two quite large negative numbers. This will no flags. */
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TEST_INST_I32_I32 l.mul, 0xffff7fff, 0xffff0002
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/* Multiply two slightly too large negative numbers. This should
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set the overflow flag. */
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TEST_INST_I32_I32 l.mul, 0xffff7fff, 0xffff0000
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/* Multiply two large negative numbers. This should set the
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both the carry and overflow flags (even though the result is a
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positive number. */
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TEST_INST_I32_I32 l.mul, 0xffff0000, 0xfffeffff
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/* Multiply one small negative number and one small positive
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number. This will set the no flags. */
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TEST_INST_I32_I32 l.mul, 0x00000002, 0xfffffffd
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/* Multiply one quite large negative number and one quite large
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positive number. This will set no flags. */
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TEST_INST_I32_I32 l.mul, 0xffff8000, 0x00010000
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/* Multiply one slightly too large negative number and one slightly
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too large positive number. This should set the overflow flag. */
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TEST_INST_I32_I32 l.mul, 0xffff7fff, 0x00010000
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/* Multiply the largest negative number by positive unity. This
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should set neither carry, nor overflow flag. */
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TEST_INST_I32_I32 l.mul, 0x80000000, 0x00000001
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/* Check that range exceptions are triggered. */
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SET_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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/* Check that an overflow alone causes a RANGE Exception. */
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TEST_INST_I32_I32 l.mul, 0x00008000, 0x00010000
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/* Check multiply of a negative and positive does not cause a RANGE
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Exception. */
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TEST_INST_I32_I32 l.mul, 0x00000002, 0xfffffffd
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/* Check that negative overflow causes a RANGE exception. */
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TEST_INST_I32_I32 l.mul, 0xffff7fff, 0xffff0000
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CLEAR_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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/* Test l.muli */
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/* Multiply two small positive numbers. This should set no flags. */
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TEST_INST_I32_I16 l.muli, 0x00000002, 0x0003
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/* Multiply two quite large positive numbers. This should set no
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flags */
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TEST_INST_I32_I16 l.muli, 0x00010002, 0x7fff
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/* Multiply two slightly too large positive numbers. This should
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set the overflow, but not the carry flag. */
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TEST_INST_I32_I16 l.muli, 0x00020000, 0x4000
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/* Multiply two large positive numbers. This should set the
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overflow flag, even though the result is not a negative number. */
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TEST_INST_I32_I16 l.muli, 0x00040000, 0x4000
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/* Multiply two small negative numbers. This should set no flags. */
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TEST_INST_I32_I16 l.muli, 0xfffffffe, 0xfffd
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/* Multiply two quite large negative numbers. This will set no
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flags. */
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TEST_INST_I32_I16 l.muli, 0xfffefffe, 0x8001
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/* Multiply two slightly too large negative numbers. This should
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set the overflow flag. */
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TEST_INST_I32_I16 l.muli, 0xfffe0000, 0xbfff
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/* Multiply two large negative numbers. This should set the
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overflow flag, even though the result is a positive number. */
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TEST_INST_I32_I16 l.muli, 0xfffdfffe, 0x8000
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/* Multiply one small negative number and one small positive
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number. This will set no flags. */
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TEST_INST_I32_I16 l.muli, 0x00000002, 0xfffd
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/* Multiply one quite large negative number and one quite large
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positive number. This will set no flags. */
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TEST_INST_I32_I16 l.muli, 0x00010000, 0x8000
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/* Multiply one slightly too large negative number and one slightly
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too large positive number. This will set the overflow flag. */
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TEST_INST_I32_I16 l.muli, 0xfffdfffc, 0x4000
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/* Multiply the largest negative number by positive unity. Should
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set neither carry, nor overflow flag. */
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TEST_INST_I32_I16 l.muli, 0x80000000, 0x0001
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/* Check that range exceptions are triggered. */
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SET_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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/* Check that an overflow alone causes a RANGE Exception. */
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TEST_INST_I32_I16 l.muli, 0x00020000, 0x4000
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/* Check that two negatives will not cause a RANGE Exception. */
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TEST_INST_I32_I16 l.muli, 0xfffffffe, 0xfffd
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/* Check that multiply of larget negative and positive numbers causes
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a RANGE exception and overflow. */
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TEST_INST_I32_I16 l.muli, 0xfffdfffe, 0x8000
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CLEAR_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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/* Test l.mulu */
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/* Multiply two small positive numbers. This should set no flags. */
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TEST_INST_I32_I32 l.mulu, 0x00000002, 0x00000003
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/* Multiply two quite large positive numbers. This should set no
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flags. */
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TEST_INST_I32_I32 l.mulu, 0x00008001, 0x0000fffe
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/* Multiply two slightly too large positive numbers. This will set
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no flags. */
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TEST_INST_I32_I32 l.mulu, 0x00008000, 0x00010000
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/* Multiply two large positive numbers. This will set the overflow
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flag. */
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TEST_INST_I32_I32 l.mulu, 0x00010000, 0x00010000
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/* Multiply two small negative numbers. This will set the
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carry flag, but not the overflow flag. */
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TEST_INST_I32_I32 l.mulu, 0xfffffffe, 0xfffffffd
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/* Multiply two quite large negative numbers. This will set the
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carry flag, but not the overflow flag. */
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TEST_INST_I32_I32 l.mulu, 0xffff7fff, 0xffff0002
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/* Multiply two slightly too large negative numbers. This will set
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the carry flag, and not the overflow flag */
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TEST_INST_I32_I32 l.mulu, 0xffff7fff, 0xffff0000
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/* Multiply two large negative numbers. This will set the both the
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carry flag (even though the result is a positive number.) */
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TEST_INST_I32_I32 l.mulu, 0xffff0000, 0xfffeffff
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/* Multiply one small negative number and one small positive
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number. This will set the carry flag, but not the overflow
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flag. */
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TEST_INST_I32_I32 l.mulu, 0x00000002, 0xfffffffd
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/* Multiply one quite large negative number and one quite large
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positive number. This will set the carry flag, but not the
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overflow flag. */
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TEST_INST_I32_I32 l.mulu, 0xffff8000, 0x00010000
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/* Multiply one slightly too large negative number and one slightly
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too large positive number. This will set the carry flag, but
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not the overflow flag. */
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TEST_INST_I32_I32 l.mulu, 0xffff7fff, 0x00010000
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/* Multiply the largest negative number by positive unity. Should
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set neither carry, nor overflow flag. */
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TEST_INST_I32_I32 l.mulu, 0x80000000, 0x00000001
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/* Check that range exceptions are never triggered. */
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SET_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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/* Check that what would cause an overflow alone in 2's complement
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does not cause a RANGE Exception. */
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TEST_INST_I32_I32 l.mulu, 0x00008000, 0x00010000
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/* Check that a carry causes a RANGE Exception. */
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TEST_INST_I32_I32 l.mulu, 0x00000002, 0xfffffffd
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/* Check that what would cause an overflow and carry in 2's
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complement causes a RANGE Exception. */
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TEST_INST_I32_I32 l.mulu, 0xffff7fff, 0xffff0000
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CLEAR_SPR_SR_FLAGS SPR_SR_OVE, r2, r3
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POP LINK_REGISTER_R9
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RETURN_TO_LINK_REGISTER_R9
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