mirror of
https://github.com/pound-emu/ballistic.git
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202 lines
10 KiB
XML
202 lines
10 KiB
XML
<?xml version="1.0" encoding="utf-8"?>
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<?xml-stylesheet type="text/xsl" encoding="UTF-8" href="iform.xsl" version="1.0"?>
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<!DOCTYPE instructionsection PUBLIC "-//ARM//DTD instructionsection //EN" "iform-p.dtd">
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<!-- Copyright (c) 2010-2022 Arm Limited or its affiliates. All rights reserved. -->
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<!-- This document is Non-Confidential. This document may only be used and distributed in accordance with the terms of the agreement entered into by Arm and the party that Arm delivered this document to. -->
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<instructionsection id="USDOT_advsimd_vec" title="USDOT (vector) -- A64" type="instruction">
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<docvars>
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<docvar key="advsimd-type" value="simd" />
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<docvar key="instr-class" value="advsimd" />
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<docvar key="isa" value="A64" />
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<docvar key="mnemonic" value="USDOT" />
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</docvars>
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<heading>USDOT (vector)</heading>
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<desc>
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<brief>
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<para>Dot Product with unsigned and signed integers (vector)</para>
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</brief>
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<authored>
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<para>Dot Product vector form with unsigned and signed integers. This instruction performs the dot product of the four unsigned 8-bit integer values in each 32-bit element of the first source register with the four signed 8-bit integer values in the corresponding 32-bit element of the second source register, accumulating the result into the corresponding 32-bit element of the destination register.</para>
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<para>From Armv8.2 to Armv8.5, this is an <arm-defined-word>optional</arm-defined-word> instruction. From Armv8.6 it is mandatory for implementations that include Advanced SIMD to support it. <xref linkend="AArch64.id_aa64isar1_el1">ID_AA64ISAR1_EL1</xref>.I8MM indicates whether this instruction is supported.</para>
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</authored>
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</desc>
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<alias_list howmany="0"></alias_list>
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<classes>
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<iclass name="Vector" oneof="1" id="iclass_simd" no_encodings="1" isa="A64">
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<docvars>
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<docvar key="advsimd-type" value="simd" />
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<docvar key="instr-class" value="advsimd" />
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<docvar key="isa" value="A64" />
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<docvar key="mnemonic" value="USDOT" />
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</docvars>
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<iclassintro count="1"></iclassintro>
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<arch_variants>
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<arch_variant name="ARMv8.6" feature="FEAT_I8MM" />
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</arch_variants>
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<regdiagram form="32" psname="aarch64/instrs/vector/arithmetic/binary/uniform/mat-mul/int/usdot">
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<box hibit="31" settings="1">
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<c>0</c>
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</box>
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<box hibit="30" name="Q" usename="1">
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<c></c>
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</box>
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<box hibit="29" name="U" settings="1">
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<c>0</c>
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</box>
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<box hibit="28" width="5" settings="5">
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<c>0</c>
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<c>1</c>
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<c>1</c>
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<c>1</c>
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<c>0</c>
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</box>
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<box hibit="23" width="2" name="size" settings="2">
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<c>1</c>
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<c>0</c>
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</box>
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<box hibit="21" settings="1">
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<c>0</c>
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</box>
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<box hibit="20" width="5" name="Rm" usename="1">
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<c colspan="5"></c>
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</box>
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<box hibit="15" settings="1">
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<c>1</c>
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</box>
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<box hibit="14" width="4" name="opcode" settings="4">
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<c>0</c>
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<c>0</c>
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<c>1</c>
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<c>1</c>
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</box>
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<box hibit="10" settings="1">
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<c>1</c>
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</box>
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<box hibit="9" width="5" name="Rn" usename="1">
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<c colspan="5"></c>
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</box>
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<box hibit="4" width="5" name="Rd" usename="1">
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<c colspan="5"></c>
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</box>
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</regdiagram>
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<encoding name="USDOT_asimdsame2_D" oneofinclass="1" oneof="1" label="">
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<docvars>
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<docvar key="advsimd-type" value="simd" />
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<docvar key="instr-class" value="advsimd" />
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<docvar key="isa" value="A64" />
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<docvar key="mnemonic" value="USDOT" />
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</docvars>
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<asmtemplate><text>USDOT </text><a link="sa_vd" hover="SIMD&FP third source and destination register (field "Rd")"><Vd></a><text>.</text><a link="sa_ta" hover="Arrangement specifier (field "Q") [2S,4S]"><Ta></a><text>, </text><a link="sa_vn" hover="First SIMD&FP source register (field "Rn")"><Vn></a><text>.</text><a link="sa_tb" hover="Arrangement specifier (field "Q") [8B,16B]"><Tb></a><text>, </text><a link="sa_vm" hover="Second SIMD&FP source register (field "Rm")"><Vm></a><text>.</text><a link="sa_tb" hover="Arrangement specifier (field "Q") [8B,16B]"><Tb></a></asmtemplate>
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</encoding>
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<ps_section howmany="1">
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<ps name="aarch64/instrs/vector/arithmetic/binary/uniform/mat-mul/int/usdot" mylink="aarch64.instrs.vector.arithmetic.binary.uniform.mat-mul.int.usdot" enclabels="" sections="1" secttype="noheading">
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<pstext mayhavelinks="1" section="Decode" rep_section="decode">if !<a link="impl-shared.HaveInt8MatMulExt.0" file="shared_pseudocode.xml" hover="function: boolean HaveInt8MatMulExt()">HaveInt8MatMulExt</a>() then UNDEFINED;
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integer n = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rn);
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integer m = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rm);
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integer d = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rd);
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integer datasize = if Q == '1' then 128 else 64;
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integer elements = datasize DIV 32;</pstext>
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</ps>
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</ps_section>
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</iclass>
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</classes>
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<explanations scope="all">
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<explanation enclist="USDOT_asimdsame2_D" symboldefcount="1">
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<symbol link="sa_vd"><Vd></symbol>
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<account encodedin="Rd">
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<intro>
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<para>Is the name of the SIMD&FP third source and destination register, encoded in the "Rd" field.</para>
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</intro>
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</account>
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</explanation>
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<explanation enclist="USDOT_asimdsame2_D" symboldefcount="1">
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<symbol link="sa_ta"><Ta></symbol>
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<definition encodedin="Q">
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<intro>Is an arrangement specifier, </intro>
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<table class="valuetable">
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<tgroup cols="2">
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<thead>
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<row>
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<entry class="bitfield">Q</entry>
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<entry class="symbol"><Ta></entry>
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</row>
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</thead>
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<tbody>
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<row>
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<entry class="bitfield">0</entry>
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<entry class="symbol">2S</entry>
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</row>
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<row>
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<entry class="bitfield">1</entry>
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<entry class="symbol">4S</entry>
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</row>
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</tbody>
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</tgroup>
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</table>
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</definition>
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</explanation>
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<explanation enclist="USDOT_asimdsame2_D" symboldefcount="1">
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<symbol link="sa_vn"><Vn></symbol>
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<account encodedin="Rn">
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<intro>
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<para>Is the name of the first SIMD&FP source register, encoded in the "Rn" field.</para>
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</intro>
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</account>
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</explanation>
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<explanation enclist="USDOT_asimdsame2_D" symboldefcount="1">
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<symbol link="sa_tb"><Tb></symbol>
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<definition encodedin="Q">
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<intro>Is an arrangement specifier, </intro>
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<table class="valuetable">
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<tgroup cols="2">
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<thead>
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<row>
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<entry class="bitfield">Q</entry>
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<entry class="symbol"><Tb></entry>
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</row>
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</thead>
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<tbody>
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<row>
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<entry class="bitfield">0</entry>
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<entry class="symbol">8B</entry>
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</row>
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<row>
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<entry class="bitfield">1</entry>
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<entry class="symbol">16B</entry>
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</row>
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</tbody>
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</tgroup>
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</table>
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</definition>
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</explanation>
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<explanation enclist="USDOT_asimdsame2_D" symboldefcount="1">
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<symbol link="sa_vm"><Vm></symbol>
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<account encodedin="Rm">
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<intro>
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<para>Is the name of the second SIMD&FP source register, encoded in the "Rm" field.</para>
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</intro>
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</account>
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</explanation>
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</explanations>
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<ps_section howmany="1">
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<ps name="aarch64/instrs/vector/arithmetic/binary/uniform/mat-mul/int/usdot" mylink="execute" enclabels="" sections="1" secttype="Operation">
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<pstext mayhavelinks="1" section="Execute" rep_section="execute"><a link="impl-aarch64.CheckFPAdvSIMDEnabled64.0" file="shared_pseudocode.xml" hover="function: CheckFPAdvSIMDEnabled64()">CheckFPAdvSIMDEnabled64</a>();
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bits(datasize) operand1 = <a link="impl-aarch64.V.read.2" file="shared_pseudocode.xml" hover="accessor: bits(width) V[integer n, integer width]">V</a>[n, datasize];
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bits(datasize) operand2 = <a link="impl-aarch64.V.read.2" file="shared_pseudocode.xml" hover="accessor: bits(width) V[integer n, integer width]">V</a>[m, datasize];
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bits(datasize) operand3 = <a link="impl-aarch64.V.read.2" file="shared_pseudocode.xml" hover="accessor: bits(width) V[integer n, integer width]">V</a>[d, datasize];
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bits(datasize) result;
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for e = 0 to elements-1
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bits(32) res = <a link="impl-shared.Elem.read.3" file="shared_pseudocode.xml" hover="accessor: bits(size) Elem[bits(N) vector, integer e, integer size]">Elem</a>[operand3, e, 32];
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for b = 0 to 3
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integer element1 = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(<a link="impl-shared.Elem.read.3" file="shared_pseudocode.xml" hover="accessor: bits(size) Elem[bits(N) vector, integer e, integer size]">Elem</a>[operand1, 4 * e + b, 8]);
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integer element2 = <a link="impl-shared.SInt.1" file="shared_pseudocode.xml" hover="function: integer SInt(bits(N) x)">SInt</a>(<a link="impl-shared.Elem.read.3" file="shared_pseudocode.xml" hover="accessor: bits(size) Elem[bits(N) vector, integer e, integer size]">Elem</a>[operand2, 4 * e + b, 8]);
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res = res + element1 * element2;
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<a link="impl-shared.Elem.write.3" file="shared_pseudocode.xml" hover="accessor: Elem[bits(N) &vector, integer e, integer size] = bits(size) value">Elem</a>[result, e, 32] = res;
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<a link="impl-aarch64.V.write.2" file="shared_pseudocode.xml" hover="accessor: V[integer n, integer width] = bits(width) value">V</a>[d, datasize] = result;</pstext>
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</ps>
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</ps_section>
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</instructionsection>
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