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archived-ballistic/spec/arm64_xml/uaddw_advsimd.xml
Ronald Caesar 26a677f8b4 decoder: Add ARM specification docs
Signed-off-by: Ronald Caesar <github43132@proton.me>
2025-12-12 18:11:36 -04:00

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<?xml version="1.0" encoding="utf-8"?>
<?xml-stylesheet type="text/xsl" encoding="UTF-8" href="iform.xsl" version="1.0"?>
<!DOCTYPE instructionsection PUBLIC "-//ARM//DTD instructionsection //EN" "iform-p.dtd">
<!-- Copyright (c) 2010-2022 Arm Limited or its affiliates. All rights reserved. -->
<!-- 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. -->
<instructionsection id="UADDW_advsimd" title="UADDW, UADDW2 -- A64" type="instruction">
<docvars>
<docvar key="advsimd-reguse" value="3reg-diff" />
<docvar key="advsimd-type" value="simd" />
<docvar key="instr-class" value="advsimd" />
<docvar key="isa" value="A64" />
<docvar key="mnemonic" value="UADDW" />
</docvars>
<heading>UADDW, UADDW2</heading>
<desc>
<brief>
<para>Unsigned Add Wide</para>
</brief>
<authored>
<para>Unsigned Add Wide. This instruction adds the vector elements of the first source SIMD&amp;FP register to the corresponding vector elements in the lower or upper half of the second source SIMD&amp;FP register, places the result in a vector, and writes the vector to the SIMD&amp;FP destination register. The vector elements of the destination register and the first source register are twice as long as the vector elements of the second source register. All the values in this instruction are unsigned integer values.</para>
<para>The <instruction>UADDW</instruction> instruction extracts vector elements from the lower half of the second source register. The <instruction>UADDW2</instruction> instruction extracts vector elements from the upper half of the second source register.</para>
<para>Depending on the settings in the <xref linkend="AArch64.cpacr_el1">CPACR_EL1</xref>, <xref linkend="AArch64.cptr_el2">CPTR_EL2</xref>, and <xref linkend="AArch64.cptr_el3">CPTR_EL3</xref> registers, and the current Security state and Exception level, an attempt to execute the instruction might be trapped.</para>
</authored>
</desc>
<operationalnotes>
<para>If PSTATE.DIT is 1:</para>
<list type="unordered">
<listitem><content>The execution time of this instruction is independent of:<list type="unordered"><listitem><content>The values of the data supplied in any of its registers.</content></listitem><listitem><content>The values of the NZCV flags.</content></listitem></list></content></listitem>
<listitem><content>The response of this instruction to asynchronous exceptions does not vary based on:<list type="unordered"><listitem><content>The values of the data supplied in any of its registers.</content></listitem><listitem><content>The values of the NZCV flags.</content></listitem></list></content></listitem>
</list>
</operationalnotes>
<alias_list howmany="0"></alias_list>
<classes>
<iclass name="Three registers, not all the same type" oneof="1" id="iclass_3reg_diff" no_encodings="1" isa="A64">
<docvars>
<docvar key="advsimd-reguse" value="3reg-diff" />
<docvar key="advsimd-type" value="simd" />
<docvar key="instr-class" value="advsimd" />
<docvar key="isa" value="A64" />
<docvar key="mnemonic" value="UADDW" />
</docvars>
<iclassintro count="1"></iclassintro>
<regdiagram form="32" psname="aarch64/instrs/vector/arithmetic/binary/disparate/add-sub/wide" tworows="1">
<box hibit="31" settings="1">
<c>0</c>
</box>
<box hibit="30" name="Q" usename="1">
<c></c>
</box>
<box hibit="29" name="U" usename="1" settings="1" psbits="x">
<c>1</c>
</box>
<box hibit="28" width="5" settings="5">
<c>0</c>
<c>1</c>
<c>1</c>
<c>1</c>
<c>0</c>
</box>
<box hibit="23" width="2" name="size" usename="1">
<c colspan="2"></c>
</box>
<box hibit="21" settings="1">
<c>1</c>
</box>
<box hibit="20" width="5" name="Rm" usename="1">
<c colspan="5"></c>
</box>
<box hibit="15" width="2" name="opcode[3:2]" settings="2">
<c>0</c>
<c>0</c>
</box>
<box hibit="13" name="o1" usename="1" settings="1" psbits="x">
<c>0</c>
</box>
<box hibit="12" name="opcode[0]" settings="1">
<c>1</c>
</box>
<box hibit="11" width="2" settings="2">
<c>0</c>
<c>0</c>
</box>
<box hibit="9" width="5" name="Rn" usename="1">
<c colspan="5"></c>
</box>
<box hibit="4" width="5" name="Rd" usename="1">
<c colspan="5"></c>
</box>
</regdiagram>
<encoding name="UADDW_asimddiff_W" oneofinclass="1" oneof="1" label="">
<docvars>
<docvar key="advsimd-reguse" value="3reg-diff" />
<docvar key="advsimd-type" value="simd" />
<docvar key="instr-class" value="advsimd" />
<docvar key="isa" value="A64" />
<docvar key="mnemonic" value="UADDW" />
</docvars>
<asmtemplate><text>UADDW</text><a link="sa_2" hover="Second and upper half specifier (field &quot;Q&quot;)">{2}</a><text> </text><a link="sa_vd" hover="SIMD&amp;FP destination register (field &quot;Rd&quot;)">&lt;Vd&gt;</a><text>.</text><a link="sa_ta" hover="Arrangement specifier (field &quot;size&quot;) [2D,4S,8H]">&lt;Ta&gt;</a><text>, </text><a link="sa_vn" hover="First SIMD&amp;FP source register (field &quot;Rn&quot;)">&lt;Vn&gt;</a><text>.</text><a link="sa_ta" hover="Arrangement specifier (field &quot;size&quot;) [2D,4S,8H]">&lt;Ta&gt;</a><text>, </text><a link="sa_vm" hover="Second SIMD&amp;FP source register (field &quot;Rm&quot;)">&lt;Vm&gt;</a><text>.</text><a link="sa_tb" hover="Arrangement specifier (field &quot;size:Q&quot;) [2S,4H,4S,8B,8H,16B]">&lt;Tb&gt;</a></asmtemplate>
</encoding>
<ps_section howmany="1">
<ps name="aarch64/instrs/vector/arithmetic/binary/disparate/add-sub/wide" mylink="aarch64.instrs.vector.arithmetic.binary.disparate.add-sub.wide" enclabels="" sections="1" secttype="noheading">
<pstext mayhavelinks="1" section="Decode" rep_section="decode">integer d = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rd);
integer n = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rn);
integer m = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Rm);
if size == '11' then UNDEFINED;
integer esize = 8 &lt;&lt; <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(size);
integer datasize = 64;
integer part = <a link="impl-shared.UInt.1" file="shared_pseudocode.xml" hover="function: integer UInt(bits(N) x)">UInt</a>(Q);
integer elements = datasize DIV esize;
boolean sub_op = (o1 == '1');
boolean unsigned = (U == '1');</pstext>
</ps>
</ps_section>
</iclass>
</classes>
<explanations scope="all">
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_2">2</symbol>
<definition encodedin="Q">
<intro>Is the second and upper half specifier. If present it causes the operation to be performed on the upper 64 bits of the registers holding the narrower elements, and is </intro>
<table class="valuetable">
<tgroup cols="2">
<thead>
<row>
<entry class="bitfield">Q</entry>
<entry class="symbol">2</entry>
</row>
</thead>
<tbody>
<row>
<entry class="bitfield">0</entry>
<entry class="symbol">[absent]</entry>
</row>
<row>
<entry class="bitfield">1</entry>
<entry class="symbol">[present]</entry>
</row>
</tbody>
</tgroup>
</table>
</definition>
</explanation>
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_vd">&lt;Vd&gt;</symbol>
<account encodedin="Rd">
<intro>
<para>Is the name of the SIMD&amp;FP destination register, encoded in the "Rd" field.</para>
</intro>
</account>
</explanation>
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_ta">&lt;Ta&gt;</symbol>
<definition encodedin="size">
<intro>Is an arrangement specifier, </intro>
<table class="valuetable">
<tgroup cols="2">
<thead>
<row>
<entry class="bitfield">size</entry>
<entry class="symbol">&lt;Ta&gt;</entry>
</row>
</thead>
<tbody>
<row>
<entry class="bitfield">00</entry>
<entry class="symbol">8H</entry>
</row>
<row>
<entry class="bitfield">01</entry>
<entry class="symbol">4S</entry>
</row>
<row>
<entry class="bitfield">10</entry>
<entry class="symbol">2D</entry>
</row>
<row>
<entry class="bitfield">11</entry>
<entry class="symbol">RESERVED</entry>
</row>
</tbody>
</tgroup>
</table>
</definition>
</explanation>
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_vn">&lt;Vn&gt;</symbol>
<account encodedin="Rn">
<intro>
<para>Is the name of the first SIMD&amp;FP source register, encoded in the "Rn" field.</para>
</intro>
</account>
</explanation>
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_vm">&lt;Vm&gt;</symbol>
<account encodedin="Rm">
<intro>
<para>Is the name of the second SIMD&amp;FP source register, encoded in the "Rm" field.</para>
</intro>
</account>
</explanation>
<explanation enclist="UADDW_asimddiff_W" symboldefcount="1">
<symbol link="sa_tb">&lt;Tb&gt;</symbol>
<definition encodedin="size:Q">
<intro>Is an arrangement specifier, </intro>
<table class="valuetable">
<tgroup cols="3">
<thead>
<row>
<entry class="bitfield">size</entry>
<entry class="bitfield">Q</entry>
<entry class="symbol">&lt;Tb&gt;</entry>
</row>
</thead>
<tbody>
<row>
<entry class="bitfield">00</entry>
<entry class="bitfield">0</entry>
<entry class="symbol">8B</entry>
</row>
<row>
<entry class="bitfield">00</entry>
<entry class="bitfield">1</entry>
<entry class="symbol">16B</entry>
</row>
<row>
<entry class="bitfield">01</entry>
<entry class="bitfield">0</entry>
<entry class="symbol">4H</entry>
</row>
<row>
<entry class="bitfield">01</entry>
<entry class="bitfield">1</entry>
<entry class="symbol">8H</entry>
</row>
<row>
<entry class="bitfield">10</entry>
<entry class="bitfield">0</entry>
<entry class="symbol">2S</entry>
</row>
<row>
<entry class="bitfield">10</entry>
<entry class="bitfield">1</entry>
<entry class="symbol">4S</entry>
</row>
<row>
<entry class="bitfield">11</entry>
<entry class="bitfield">x</entry>
<entry class="symbol">RESERVED</entry>
</row>
</tbody>
</tgroup>
</table>
</definition>
</explanation>
</explanations>
<ps_section howmany="1">
<ps name="aarch64/instrs/vector/arithmetic/binary/disparate/add-sub/wide" mylink="execute" enclabels="" sections="1" secttype="Operation">
<pstext mayhavelinks="1" section="Execute" rep_section="execute"><a link="impl-aarch64.CheckFPAdvSIMDEnabled64.0" file="shared_pseudocode.xml" hover="function: CheckFPAdvSIMDEnabled64()">CheckFPAdvSIMDEnabled64</a>();
bits(2*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, 2*datasize];
bits(datasize) operand2 = <a link="impl-aarch64.Vpart.read.3" file="shared_pseudocode.xml" hover="accessor: bits(width) Vpart[integer n, integer part, integer width]">Vpart</a>[m, part, datasize];
bits(2*datasize) result;
integer element1;
integer element2;
integer sum;
for e = 0 to elements-1
element1 = <a link="impl-shared.Int.2" file="shared_pseudocode.xml" hover="function: integer Int(bits(N) x, boolean unsigned)">Int</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, e, 2*esize], unsigned);
element2 = <a link="impl-shared.Int.2" file="shared_pseudocode.xml" hover="function: integer Int(bits(N) x, boolean unsigned)">Int</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, e, esize], unsigned);
if sub_op then
sum = element1 - element2;
else
sum = element1 + element2;
<a link="impl-shared.Elem.write.3" file="shared_pseudocode.xml" hover="accessor: Elem[bits(N) &amp;vector, integer e, integer size] = bits(size) value">Elem</a>[result, e, 2*esize] = sum&lt;2*esize-1:0&gt;;
<a link="impl-aarch64.V.write.2" file="shared_pseudocode.xml" hover="accessor: V[integer n, integer width] = bits(width) value">V</a>[d, 2*datasize] = result;</pstext>
</ps>
</ps_section>
</instructionsection>