52065d8f46
Tested-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com> Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com> Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
257 lines
12 KiB
Plaintext
257 lines
12 KiB
Plaintext
#
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# MicroBlaze instruction decode definitions.
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#
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# Copyright (c) 2020 Richard Henderson <rth@twiddle.net>
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#
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2.1 of the License, or (at your option) any later version.
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#
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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 GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, see <http://www.gnu.org/licenses/>.
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#
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&typea0 rd ra
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&typea rd ra rb
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&typea_br rd rb
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&typea_bc ra rb
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&typeb rd ra imm
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&typeb_br rd imm
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&typeb_bc ra imm
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&type_msr rd imm
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# Include any IMM prefix in the value reported.
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%extimm 0:s16 !function=typeb_imm
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@typea ...... rd:5 ra:5 rb:5 ... .... .... &typea
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@typeb ...... rd:5 ra:5 ................ &typeb imm=%extimm
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# Officially typea, but with rb==0, which is not used.
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@typea0 ...... rd:5 ra:5 ................ &typea0
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# Officially typea, but with ra as opcode.
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@typea_br ...... rd:5 ..... rb:5 ........... &typea_br
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# Officially typea, but with rd as opcode.
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@typea_bc ...... ..... ra:5 rb:5 ........... &typea_bc
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# Officially typeb, but any immediate extension is unused.
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@typeb_bs ...... rd:5 ra:5 ..... ...... imm:5 &typeb
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# Officially typeb, but with ra as opcode.
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@typeb_br ...... rd:5 ..... ................ &typeb_br imm=%extimm
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# Officially typeb, but with rd as opcode.
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@typeb_bc ...... ..... ra:5 ................ &typeb_bc imm=%extimm
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# For convenience, extract the two imm_w/imm_s fields, then pack
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# them back together as "imm". Doing this makes it easiest to
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# match the required zero at bit 5.
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%ieimm 6:5 0:5
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@typeb_ie ...... rd:5 ra:5 ..... ..... . ..... &typeb imm=%ieimm
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@type_msr ...... rd:5 ...... imm:15 &type_msr
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###
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{
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zero 000000 00000 00000 00000 000 0000 0000
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add 000000 ..... ..... ..... 000 0000 0000 @typea
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}
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addc 000010 ..... ..... ..... 000 0000 0000 @typea
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addk 000100 ..... ..... ..... 000 0000 0000 @typea
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addkc 000110 ..... ..... ..... 000 0000 0000 @typea
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addi 001000 ..... ..... ................ @typeb
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addic 001010 ..... ..... ................ @typeb
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addik 001100 ..... ..... ................ @typeb
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addikc 001110 ..... ..... ................ @typeb
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and 100001 ..... ..... ..... 000 0000 0000 @typea
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andi 101001 ..... ..... ................ @typeb
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andn 100011 ..... ..... ..... 000 0000 0000 @typea
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andni 101011 ..... ..... ................ @typeb
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beq 100111 00000 ..... ..... 000 0000 0000 @typea_bc
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bge 100111 00101 ..... ..... 000 0000 0000 @typea_bc
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bgt 100111 00100 ..... ..... 000 0000 0000 @typea_bc
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ble 100111 00011 ..... ..... 000 0000 0000 @typea_bc
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blt 100111 00010 ..... ..... 000 0000 0000 @typea_bc
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bne 100111 00001 ..... ..... 000 0000 0000 @typea_bc
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beqd 100111 10000 ..... ..... 000 0000 0000 @typea_bc
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bged 100111 10101 ..... ..... 000 0000 0000 @typea_bc
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bgtd 100111 10100 ..... ..... 000 0000 0000 @typea_bc
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bled 100111 10011 ..... ..... 000 0000 0000 @typea_bc
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bltd 100111 10010 ..... ..... 000 0000 0000 @typea_bc
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bned 100111 10001 ..... ..... 000 0000 0000 @typea_bc
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beqi 101111 00000 ..... ................ @typeb_bc
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bgei 101111 00101 ..... ................ @typeb_bc
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bgti 101111 00100 ..... ................ @typeb_bc
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blei 101111 00011 ..... ................ @typeb_bc
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blti 101111 00010 ..... ................ @typeb_bc
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bnei 101111 00001 ..... ................ @typeb_bc
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beqid 101111 10000 ..... ................ @typeb_bc
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bgeid 101111 10101 ..... ................ @typeb_bc
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bgtid 101111 10100 ..... ................ @typeb_bc
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bleid 101111 10011 ..... ................ @typeb_bc
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bltid 101111 10010 ..... ................ @typeb_bc
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bneid 101111 10001 ..... ................ @typeb_bc
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br 100110 ..... 00000 ..... 000 0000 0000 @typea_br
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bra 100110 ..... 01000 ..... 000 0000 0000 @typea_br
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brd 100110 ..... 10000 ..... 000 0000 0000 @typea_br
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brad 100110 ..... 11000 ..... 000 0000 0000 @typea_br
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brld 100110 ..... 10100 ..... 000 0000 0000 @typea_br
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brald 100110 ..... 11100 ..... 000 0000 0000 @typea_br
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bri 101110 ..... 00000 ................ @typeb_br
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brai 101110 ..... 01000 ................ @typeb_br
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brid 101110 ..... 10000 ................ @typeb_br
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braid 101110 ..... 11000 ................ @typeb_br
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brlid 101110 ..... 10100 ................ @typeb_br
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bralid 101110 ..... 11100 ................ @typeb_br
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brk 100110 ..... 01100 ..... 000 0000 0000 @typea_br
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brki 101110 ..... 01100 ................ @typeb_br
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bsrl 010001 ..... ..... ..... 000 0000 0000 @typea
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bsra 010001 ..... ..... ..... 010 0000 0000 @typea
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bsll 010001 ..... ..... ..... 100 0000 0000 @typea
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bsrli 011001 ..... ..... 00000 000000 ..... @typeb_bs
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bsrai 011001 ..... ..... 00000 010000 ..... @typeb_bs
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bslli 011001 ..... ..... 00000 100000 ..... @typeb_bs
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bsefi 011001 ..... ..... 01000 .....0 ..... @typeb_ie
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bsifi 011001 ..... ..... 10000 .....0 ..... @typeb_ie
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clz 100100 ..... ..... 00000 000 1110 0000 @typea0
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cmp 000101 ..... ..... ..... 000 0000 0001 @typea
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cmpu 000101 ..... ..... ..... 000 0000 0011 @typea
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fadd 010110 ..... ..... ..... 0000 000 0000 @typea
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frsub 010110 ..... ..... ..... 0001 000 0000 @typea
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fmul 010110 ..... ..... ..... 0010 000 0000 @typea
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fdiv 010110 ..... ..... ..... 0011 000 0000 @typea
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fcmp_un 010110 ..... ..... ..... 0100 000 0000 @typea
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fcmp_lt 010110 ..... ..... ..... 0100 001 0000 @typea
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fcmp_eq 010110 ..... ..... ..... 0100 010 0000 @typea
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fcmp_le 010110 ..... ..... ..... 0100 011 0000 @typea
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fcmp_gt 010110 ..... ..... ..... 0100 100 0000 @typea
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fcmp_ne 010110 ..... ..... ..... 0100 101 0000 @typea
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fcmp_ge 010110 ..... ..... ..... 0100 110 0000 @typea
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# Note that flt and fint, unlike fsqrt, are documented as having the RB
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# operand which is unused. So allow the field to be non-zero but discard
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# the value and treat as 2-operand insns.
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flt 010110 ..... ..... ----- 0101 000 0000 @typea0
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fint 010110 ..... ..... ----- 0110 000 0000 @typea0
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fsqrt 010110 ..... ..... 00000 0111 000 0000 @typea0
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get 011011 rd:5 00000 0 ctrl:5 000000 imm:4
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getd 010011 rd:5 00000 rb:5 0 ctrl:5 00000
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idiv 010010 ..... ..... ..... 000 0000 0000 @typea
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idivu 010010 ..... ..... ..... 000 0000 0010 @typea
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imm 101100 00000 00000 imm:16
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lbu 110000 ..... ..... ..... 0000 000 0000 @typea
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lbur 110000 ..... ..... ..... 0100 000 0000 @typea
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lbuea 110000 ..... ..... ..... 0001 000 0000 @typea
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lbui 111000 ..... ..... ................ @typeb
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lhu 110001 ..... ..... ..... 0000 000 0000 @typea
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lhur 110001 ..... ..... ..... 0100 000 0000 @typea
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lhuea 110001 ..... ..... ..... 0001 000 0000 @typea
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lhui 111001 ..... ..... ................ @typeb
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lw 110010 ..... ..... ..... 0000 000 0000 @typea
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lwr 110010 ..... ..... ..... 0100 000 0000 @typea
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lwea 110010 ..... ..... ..... 0001 000 0000 @typea
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lwx 110010 ..... ..... ..... 1000 000 0000 @typea
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lwi 111010 ..... ..... ................ @typeb
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mbar 101110 imm:5 00010 0000 0000 0000 0100
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mfs 100101 rd:5 0 e:1 000 10 rs:14
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mts 100101 0 e:1 000 ra:5 11 rs:14
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msrclr 100101 ..... 100010 ............... @type_msr
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msrset 100101 ..... 100000 ............... @type_msr
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mul 010000 ..... ..... ..... 000 0000 0000 @typea
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mulh 010000 ..... ..... ..... 000 0000 0001 @typea
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mulhu 010000 ..... ..... ..... 000 0000 0011 @typea
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mulhsu 010000 ..... ..... ..... 000 0000 0010 @typea
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muli 011000 ..... ..... ................ @typeb
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or 100000 ..... ..... ..... 000 0000 0000 @typea
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ori 101000 ..... ..... ................ @typeb
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pcmpbf 100000 ..... ..... ..... 100 0000 0000 @typea
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pcmpeq 100010 ..... ..... ..... 100 0000 0000 @typea
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pcmpne 100011 ..... ..... ..... 100 0000 0000 @typea
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put 011011 00000 ra:5 1 ctrl:5 000000 imm:4
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putd 010011 00000 ra:5 rb:5 1 ctrl:5 00000
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rsub 000001 ..... ..... ..... 000 0000 0000 @typea
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rsubc 000011 ..... ..... ..... 000 0000 0000 @typea
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rsubk 000101 ..... ..... ..... 000 0000 0000 @typea
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rsubkc 000111 ..... ..... ..... 000 0000 0000 @typea
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rsubi 001001 ..... ..... ................ @typeb
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rsubic 001011 ..... ..... ................ @typeb
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rsubik 001101 ..... ..... ................ @typeb
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rsubikc 001111 ..... ..... ................ @typeb
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rtbd 101101 10010 ..... ................ @typeb_bc
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rtid 101101 10001 ..... ................ @typeb_bc
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rted 101101 10100 ..... ................ @typeb_bc
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rtsd 101101 10000 ..... ................ @typeb_bc
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sb 110100 ..... ..... ..... 0000 000 0000 @typea
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sbr 110100 ..... ..... ..... 0100 000 0000 @typea
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sbea 110100 ..... ..... ..... 0001 000 0000 @typea
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sbi 111100 ..... ..... ................ @typeb
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sh 110101 ..... ..... ..... 0000 000 0000 @typea
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shr 110101 ..... ..... ..... 0100 000 0000 @typea
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shea 110101 ..... ..... ..... 0001 000 0000 @typea
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shi 111101 ..... ..... ................ @typeb
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sw 110110 ..... ..... ..... 0000 000 0000 @typea
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swr 110110 ..... ..... ..... 0100 000 0000 @typea
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swea 110110 ..... ..... ..... 0001 000 0000 @typea
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swx 110110 ..... ..... ..... 1000 000 0000 @typea
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swi 111110 ..... ..... ................ @typeb
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sext8 100100 ..... ..... 00000 000 0110 0000 @typea0
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sext16 100100 ..... ..... 00000 000 0110 0001 @typea0
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sra 100100 ..... ..... 00000 000 0000 0001 @typea0
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src 100100 ..... ..... 00000 000 0010 0001 @typea0
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srl 100100 ..... ..... 00000 000 0100 0001 @typea0
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swapb 100100 ..... ..... 00000 001 1110 0000 @typea0
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swaph 100100 ..... ..... 00000 001 1110 0010 @typea0
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# Cache operations have no effect in qemu: discard the arguments.
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wdic 100100 00000 ----- ----- -00 -11- 01-0 # wdc
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wdic 100100 00000 ----- ----- 000 0110 1000 # wic
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xor 100010 ..... ..... ..... 000 0000 0000 @typea
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xori 101010 ..... ..... ................ @typeb
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