<?xml version="1.0" ?><?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) 2010-2026 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="SWPP" title="SWPP, SWPPA, SWPPAL, SWPPL -- A64" type="instruction">
  <docvars>
    <docvar key="instr-class" value="general"/>
    <docvar key="isa" value="A64"/>
  </docvars>
  <heading>SWPP, SWPPA, SWPPAL, SWPPL</heading>
  <desc>
    <brief>
      <para>Swap quadword in memory</para>
    </brief>
    <authored>
      <para>This instruction atomically loads a 128-bit quadword from a memory location, and stores the value
held in a pair of registers back to the same memory location. The value initially loaded from
memory is returned in the same pair of registers.</para>
      <list type="unordered">
        <listitem>
          <content>
            <instruction>SWPPA</instruction> and <instruction>SWPPAL</instruction> load from memory with acquire semantics.</content>
        </listitem>
        <listitem>
          <content>
            <instruction>SWPPL</instruction> and <instruction>SWPPAL</instruction> store to memory with release semantics.</content>
        </listitem>
        <listitem>
          <content>
            <instruction>SWPP</instruction> has neither acquire nor release semantics.</content>
        </listitem>
      </list>
    </authored>
    <encodingnotes>
      <para>For information about the <arm-defined-word>CONSTRAINED UNPREDICTABLE</arm-defined-word> behavior of this instruction, see <xref linkend="CHDJDBHJ">Architectural Constraints on UNPREDICTABLE behaviors</xref>, and particularly <xref linkend="128_bit_atomic_memory_operations">128-bit Atomic Memory Operations</xref>.</para>
    </encodingnotes>
  </desc>
  <operationalnotes>
    <operationalnote>
      <operationalnote_content>
        <para>This instruction is a data-independent-time instruction as described in <xref linkend="ARMARM_BEICCDDAB3">About PSTATE.DIT</xref>.</para>
      </operationalnote_content>
    </operationalnote>
  </operationalnotes>
  <alias_list howmany="0"/>
  <classes>
    <iclass name="Integer" oneof="1" id="iclass_integer" no_encodings="4" isa="A64">
      <docvars>
        <docvar key="instr-class" value="general"/>
        <docvar key="isa" value="A64"/>
      </docvars>
      <iclassintro count="4"/>
      <arch_variants>
        <arch_variant feature="FEAT_LSE128" name="v9Ap4"/>
      </arch_variants>
      <regdiagram form="32" psname="A64.ldst.memop_128.SWPP_128_memop_128" tworows="1">
        <box hibit="31" width="1" settings="1">
          <c>0</c>
        </box>
        <box hibit="30" name="S" usename="1" settings="1" psbits="x">
          <c>0</c>
        </box>
        <box hibit="29" width="6" settings="6">
          <c>0</c>
          <c>1</c>
          <c>1</c>
          <c>0</c>
          <c>0</c>
          <c>1</c>
        </box>
        <box hibit="23" width="1" name="A" usename="1">
          <c colspan="1"/>
        </box>
        <box hibit="22" width="1" name="R" usename="1">
          <c colspan="1"/>
        </box>
        <box hibit="21" width="1" settings="1">
          <c>1</c>
        </box>
        <box hibit="20" width="5" name="Rt2" usename="1">
          <c colspan="5"/>
        </box>
        <box hibit="15" name="o3" usename="1" settings="1" psbits="x">
          <c>1</c>
        </box>
        <box hibit="14" width="3" name="opc" usename="1" settings="3" psbits="xxx">
          <c>0</c>
          <c>0</c>
          <c>0</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"/>
        </box>
        <box hibit="4" width="5" name="Rt" usename="1">
          <c colspan="5"/>
        </box>
      </regdiagram>
      <encoding name="SWPP_128_memop_128" oneofinclass="4" oneof="4" label="SWPP" bitdiffs="A == 0 &amp;&amp; R == 0">
        <docvars>
          <docvar key="instr-class" value="general"/>
          <docvar key="isa" value="A64"/>
          <docvar key="mnemonic" value="SWPP"/>
        </docvars>
        <box hibit="23" width="1" name="A">
          <c>0</c>
        </box>
        <box hibit="22" width="1" name="R">
          <c>0</c>
        </box>
        <asmtemplate><text>SWPP  </text><a hover="Is the 64-bit name of the first general-purpose register to be transferred, encoded in the &quot;Rt&quot; field." link="Xt1OrXZR">&lt;Xt1&gt;</a><text>, </text><a hover="Is the 64-bit name of the second general-purpose register to be transferred, encoded in the &quot;Rt2&quot; field." link="Xt2OrXZR">&lt;Xt2&gt;</a><text>, [</text><a hover="Is the 64-bit name of the general-purpose base register or stack pointer, encoded in the &quot;Rn&quot; field." link="XnSP_option">&lt;Xn|SP&gt;</a><text>]</text></asmtemplate>
      </encoding>
      <encoding name="SWPPA_128_memop_128" oneofinclass="4" oneof="4" label="SWPPA" bitdiffs="A == 1 &amp;&amp; R == 0">
        <docvars>
          <docvar key="instr-class" value="general"/>
          <docvar key="isa" value="A64"/>
          <docvar key="mnemonic" value="SWPPA"/>
        </docvars>
        <box hibit="23" width="1" name="A">
          <c>1</c>
        </box>
        <box hibit="22" width="1" name="R">
          <c>0</c>
        </box>
        <asmtemplate><text>SWPPA  </text><a hover="Is the 64-bit name of the first general-purpose register to be transferred, encoded in the &quot;Rt&quot; field." link="Xt1OrXZR">&lt;Xt1&gt;</a><text>, </text><a hover="Is the 64-bit name of the second general-purpose register to be transferred, encoded in the &quot;Rt2&quot; field." link="Xt2OrXZR">&lt;Xt2&gt;</a><text>, [</text><a hover="Is the 64-bit name of the general-purpose base register or stack pointer, encoded in the &quot;Rn&quot; field." link="XnSP_option">&lt;Xn|SP&gt;</a><text>]</text></asmtemplate>
      </encoding>
      <encoding name="SWPPAL_128_memop_128" oneofinclass="4" oneof="4" label="SWPPAL" bitdiffs="A == 1 &amp;&amp; R == 1">
        <docvars>
          <docvar key="instr-class" value="general"/>
          <docvar key="isa" value="A64"/>
          <docvar key="mnemonic" value="SWPPAL"/>
        </docvars>
        <box hibit="23" width="1" name="A">
          <c>1</c>
        </box>
        <box hibit="22" width="1" name="R">
          <c>1</c>
        </box>
        <asmtemplate><text>SWPPAL  </text><a hover="Is the 64-bit name of the first general-purpose register to be transferred, encoded in the &quot;Rt&quot; field." link="Xt1OrXZR">&lt;Xt1&gt;</a><text>, </text><a hover="Is the 64-bit name of the second general-purpose register to be transferred, encoded in the &quot;Rt2&quot; field." link="Xt2OrXZR">&lt;Xt2&gt;</a><text>, [</text><a hover="Is the 64-bit name of the general-purpose base register or stack pointer, encoded in the &quot;Rn&quot; field." link="XnSP_option">&lt;Xn|SP&gt;</a><text>]</text></asmtemplate>
      </encoding>
      <encoding name="SWPPL_128_memop_128" oneofinclass="4" oneof="4" label="SWPPL" bitdiffs="A == 0 &amp;&amp; R == 1">
        <docvars>
          <docvar key="instr-class" value="general"/>
          <docvar key="isa" value="A64"/>
          <docvar key="mnemonic" value="SWPPL"/>
        </docvars>
        <box hibit="23" width="1" name="A">
          <c>0</c>
        </box>
        <box hibit="22" width="1" name="R">
          <c>1</c>
        </box>
        <asmtemplate><text>SWPPL  </text><a hover="Is the 64-bit name of the first general-purpose register to be transferred, encoded in the &quot;Rt&quot; field." link="Xt1OrXZR">&lt;Xt1&gt;</a><text>, </text><a hover="Is the 64-bit name of the second general-purpose register to be transferred, encoded in the &quot;Rt2&quot; field." link="Xt2OrXZR">&lt;Xt2&gt;</a><text>, [</text><a hover="Is the 64-bit name of the general-purpose base register or stack pointer, encoded in the &quot;Rn&quot; field." link="XnSP_option">&lt;Xn|SP&gt;</a><text>]</text></asmtemplate>
      </encoding>
      <ps_section howmany="1">
        <ps name="A64.ldst.memop_128.SWPP_128_memop_128" sections="1" secttype="noheading">
          <pstext mayhavelinks="1" section="Decode" rep_section="decode">if !IsFeatureImplemented(FEAT_LSE128) then <a link="func_EndOfDecode_1" file="shared_pseudocode.xml">EndOfDecode</a>(<a link="enum_Decode_UNDEF" file="shared_pseudocode.xml">Decode_UNDEF</a>); end;
if Rt  == '11111' then <a link="func_EndOfDecode_1" file="shared_pseudocode.xml">EndOfDecode</a>(<a link="enum_Decode_UNDEF" file="shared_pseudocode.xml">Decode_UNDEF</a>); end;
if Rt2 == '11111' then <a link="func_EndOfDecode_1" file="shared_pseudocode.xml">EndOfDecode</a>(<a link="enum_Decode_UNDEF" file="shared_pseudocode.xml">Decode_UNDEF</a>); end;

let t : integer{} = UInt(Rt);
let t2 : integer{} = UInt(Rt2);
let n : integer{} = UInt(Rn);

let acquire : boolean = A == '1';
let release : boolean = R == '1';
let tagchecked : boolean = n != 31;

var rt_unknown : boolean = FALSE;

if t == t2 then
    let c : <a link="type_Constraint" file="shared_pseudocode.xml">Constraint</a> = ConstrainUnpredictable(<a link="enum_Unpredictable_LSE128OVERLAP" file="shared_pseudocode.xml">Unpredictable_LSE128OVERLAP</a>);
    assert c IN {<a link="enum_Constraint_UNKNOWN" file="shared_pseudocode.xml">Constraint_UNKNOWN</a>, <a link="enum_Constraint_UNDEF" file="shared_pseudocode.xml">Constraint_UNDEF</a>, <a link="enum_Constraint_NOP" file="shared_pseudocode.xml">Constraint_NOP</a>};
    case c of
        when <a link="enum_Constraint_UNKNOWN" file="shared_pseudocode.xml">Constraint_UNKNOWN</a> =&gt;    rt_unknown = TRUE;    // result is UNKNOWN
        when <a link="enum_Constraint_UNDEF" file="shared_pseudocode.xml">Constraint_UNDEF</a> =&gt;      <a link="func_EndOfDecode_1" file="shared_pseudocode.xml">EndOfDecode</a>(<a link="enum_Decode_UNDEF" file="shared_pseudocode.xml">Decode_UNDEF</a>);
        when <a link="enum_Constraint_NOP" file="shared_pseudocode.xml">Constraint_NOP</a> =&gt;        <a link="func_EndOfDecode_1" file="shared_pseudocode.xml">EndOfDecode</a>(<a link="enum_Decode_NOP" file="shared_pseudocode.xml">Decode_NOP</a>);
    end;
end;</pstext></ps>
      </ps_section>
    </iclass>
  </classes>
  <explanations scope="all">
    <explanation enclist="SWPP_128_memop_128, SWPPA_128_memop_128, SWPPAL_128_memop_128, SWPPL_128_memop_128" symboldefcount="1">
      <symbol link="Xt1OrXZR">&lt;Xt1&gt;</symbol>
      <account encodedin="Rt">
        <intro>
          <para>Is the 64-bit name of the first general-purpose register to be transferred, encoded in the &quot;Rt&quot; field.</para>
        </intro>
      </account>
    </explanation>
    <explanation enclist="SWPP_128_memop_128, SWPPA_128_memop_128, SWPPAL_128_memop_128, SWPPL_128_memop_128" symboldefcount="1">
      <symbol link="Xt2OrXZR">&lt;Xt2&gt;</symbol>
      <account encodedin="Rt2">
        <intro>
          <para>Is the 64-bit name of the second general-purpose register to be transferred, encoded in the &quot;Rt2&quot; field.</para>
        </intro>
      </account>
    </explanation>
    <explanation enclist="SWPP_128_memop_128, SWPPA_128_memop_128, SWPPAL_128_memop_128, SWPPL_128_memop_128" symboldefcount="1">
      <symbol link="XnSP_option">&lt;Xn|SP&gt;</symbol>
      <account encodedin="Rn">
        <intro>
          <para>Is the 64-bit name of the general-purpose base register or stack pointer, encoded in the &quot;Rn&quot; field.</para>
        </intro>
      </account>
    </explanation>
  </explanations>
  <ps_section howmany="1">
    <ps name="A64.ldst.memop_128.SWPP_128_memop_128" sections="1" secttype="Operation">
      <pstext mayhavelinks="1" section="Execute" rep_section="execute">var address : bits(64);
let value1 : bits(64) = X{}(t);
let value2 : bits(64) = X{}(t2);
var data : bits(128);
var store_value : bits(128);

let privileged : boolean = <a link="global_PSTATE" file="shared_pseudocode.xml">PSTATE</a>.EL != <a link="global_EL0" file="shared_pseudocode.xml">EL0</a>;
let accdesc : <a link="type_AccessDescriptor" file="shared_pseudocode.xml">AccessDescriptor</a> = <a link="func_CreateAccDescAtomicOp_9" file="shared_pseudocode.xml">CreateAccDescAtomicOp</a>(<a link="enum_MemAtomicOp_SWP" file="shared_pseudocode.xml">MemAtomicOp_SWP</a>, acquire, release,
                                                       tagchecked, privileged, t, t2, t, t2);

if n == 31 then
    <a link="func_CheckSPAlignment_0" file="shared_pseudocode.xml">CheckSPAlignment</a>();
    address = <a link="accessor_SP_1" file="shared_pseudocode.xml">SP</a>{64}();
else
    address = <a link="accessor_X_2" file="shared_pseudocode.xml">X</a>{64}(n);
end;

store_value = if <a link="func_BigEndian_1" file="shared_pseudocode.xml">BigEndian</a>(accdesc.acctype) then value1::value2 else value2::value1;

let comparevalue : bits(128) = ARBITRARY : bits(128); // Irrelevant when not executing CAS
data = <a link="func_MemAtomic_5" file="shared_pseudocode.xml">MemAtomic</a>{128}(address, comparevalue, store_value, accdesc);

if rt_unknown then
    data = ARBITRARY : bits(128);
end;

if <a link="func_BigEndian_1" file="shared_pseudocode.xml">BigEndian</a>(accdesc.acctype) then
    <a link="accessor_X_2" file="shared_pseudocode.xml">X</a>{64}(t)  = data[127:64];
    <a link="accessor_X_2" file="shared_pseudocode.xml">X</a>{64}(t2) = data[63:0];
else
    <a link="accessor_X_2" file="shared_pseudocode.xml">X</a>{64}(t)  = data[63:0];
    <a link="accessor_X_2" file="shared_pseudocode.xml">X</a>{64}(t2) = data[127:64];
end;</pstext></ps>
  </ps_section>
  <timestamp>2026-03-26 20:27:25</timestamp>
  <commit_id>2026-03_rel</commit_id>
</instructionsection>