Topic: What should the semantic of wrapper classes be?


Author: Vincent Reverdy <vince.rev@gmail.com>
Date: Mon, 25 Jul 2016 23:05:33 -0700 (PDT)
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Hello.

Please find the document attached.
It's not really a proposal... but we need help on this question and people
really don't seem to agree.
So... any help, advice, opinion is welcome.

Thanks,
Vincent

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<div dir=3D"ltr">Hello.<br><br>Please find the document attached.<br>It&#39=
;s not really a proposal... but we need help on this question and people re=
ally don&#39;t seem to agree.<br>So... any help, advice, opinion is welcome=
..<br><br>Thanks,<br>Vincent<br><br></div>

<p></p>

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------=_Part_0_1452164566.1469513133054--

.


Author: Tony V E <tvaneerd@gmail.com>
Date: Tue, 26 Jul 2016 18:34:36 -0400
Raw View
--001a114b703a754f5e05389181a0
Content-Type: text/plain; charset=UTF-8

On Tue, Jul 26, 2016 at 2:05 AM, Vincent Reverdy <vince.rev@gmail.com>
wrote:

> Hello.
>
> Please find the document attached.
> It's not really a proposal... but we need help on this question and people
> really don't seem to agree.
> So... any help, advice, opinion is welcome.
>


I would say value<const T> makes no sense.

A value is a value.  All values are const.  17 is const.  It is always 17.
What may be NOT const is a variable holding the value 17.

So value<const T> should not exist.  It should be collapsed to value<T>.
const value<T> is fine.

pointer<const T> makes sense, because it is referring to a value living
somewhere else.
But for value<T> I assume the T lives within value<T>.

Alternatively, value<const T> should work the same as const value<T>.

What does auto do?

const int x = 17;
auto y = x; // y is not const?

What does optional<const T> do?

Based on the "essence" of optional, if it worked at all, it should allow
you to assign to it once (first assign is construction) and then fail
further assignments.
But I'm pretty sure we didn't make it throw an exception in that case.

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<div dir=3D"ltr"><br><div class=3D"gmail_extra"><br><div class=3D"gmail_quo=
te">On Tue, Jul 26, 2016 at 2:05 AM, Vincent Reverdy <span dir=3D"ltr">&lt;=
<a href=3D"mailto:vince.rev@gmail.com" target=3D"_blank">vince.rev@gmail.co=
m</a>&gt;</span> wrote:<br><blockquote class=3D"gmail_quote" style=3D"margi=
n:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex"><div dir=3D"ltr">=
Hello.<br><br>Please find the document attached.<br>It&#39;s not really a p=
roposal... but we need help on this question and people really don&#39;t se=
em to agree.<br>So... any help, advice, opinion is welcome.<br></div></bloc=
kquote></div><br><br></div><div class=3D"gmail_extra">I would say value&lt;=
const T&gt; makes no sense.<br><br></div><div class=3D"gmail_extra">A value=
 is a value.=C2=A0 All values are const.=C2=A0 17 is const.=C2=A0 It is alw=
ays 17.<br></div><div class=3D"gmail_extra">What may be NOT const is a vari=
able holding the value 17.<br><br></div><div class=3D"gmail_extra">So value=
&lt;const T&gt; should not exist.=C2=A0 It should be collapsed to value&lt;=
T&gt;.=C2=A0 const value&lt;T&gt; is fine.<br><br></div><div class=3D"gmail=
_extra">pointer&lt;const T&gt; makes sense, because it is referring to a va=
lue living somewhere else.<br></div><div class=3D"gmail_extra">But for valu=
e&lt;T&gt; I assume the T lives within value&lt;T&gt;.<br><br></div><div cl=
ass=3D"gmail_extra">Alternatively, value&lt;const T&gt; should work the sam=
e as const value&lt;T&gt;.<br><br></div><div class=3D"gmail_extra">What doe=
s auto do?<br><br></div><div class=3D"gmail_extra">const int x =3D 17;<br><=
/div><div class=3D"gmail_extra">auto y =3D x; // y is not const?<br></div><=
div class=3D"gmail_extra"><br></div><div class=3D"gmail_extra">What does op=
tional&lt;const T&gt; do?<br><br></div><div class=3D"gmail_extra">Based on =
the &quot;essence&quot; of optional, if it worked at all, it should allow y=
ou to assign to it once (first assign is construction) and then fail furthe=
r assignments.<br></div><div class=3D"gmail_extra">But I&#39;m pretty sure =
we didn&#39;t make it throw an exception in that case.<br><br><br></div><di=
v class=3D"gmail_extra"><br></div></div>

<p></p>

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--001a114b703a754f5e05389181a0--

.


Author: Tony V E <tvaneerd@gmail.com>
Date: Tue, 26 Jul 2016 18:35:57 -0400
Raw View
--001a114ba3904cf75905389186df
Content-Type: text/plain; charset=UTF-8

On Tue, Jul 26, 2016 at 2:05 AM, Vincent Reverdy <vince.rev@gmail.com>
wrote:

> Hello.
>
> Please find the document attached.
> It's not really a proposal... but we need help on this question and people
> really don't seem to agree.
> So... any help, advice, opinion is welcome.
>
>
By the way, thanks for tackling this.  We really need some of these
higher-level papers to help us form guidance going forward.

Tony

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Content-Transfer-Encoding: quoted-printable

<div dir=3D"ltr"><br><div class=3D"gmail_extra"><br><div class=3D"gmail_quo=
te">On Tue, Jul 26, 2016 at 2:05 AM, Vincent Reverdy <span dir=3D"ltr">&lt;=
<a href=3D"mailto:vince.rev@gmail.com" target=3D"_blank">vince.rev@gmail.co=
m</a>&gt;</span> wrote:<br><blockquote class=3D"gmail_quote" style=3D"margi=
n:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex"><div dir=3D"ltr">=
Hello.<br><br>Please find the document attached.<br>It&#39;s not really a p=
roposal... but we need help on this question and people really don&#39;t se=
em to agree.<br>So... any help, advice, opinion is welcome.<br><br></div></=
blockquote><br></div>By the way, thanks for tackling this.=C2=A0 We really =
need some of these higher-level papers to help us form guidance going forwa=
rd.<br><br></div><div class=3D"gmail_extra">Tony<br><br></div></div>

<p></p>

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L5EjVejxb0stfmew%40mail.gmail.com?utm_medium=3Demail&utm_source=3Dfooter">h=
ttps://groups.google.com/a/isocpp.org/d/msgid/std-proposals/CAOHCbis37eZ0Aq=
t0q%2Bybyg1Y3AZy3T9N86L5EjVejxb0stfmew%40mail.gmail.com</a>.<br />

--001a114ba3904cf75905389186df--

.


Author: FrankHB1989 <frankhb1989@gmail.com>
Date: Tue, 26 Jul 2016 19:17:49 -0700 (PDT)
Raw View
------=_Part_1744_714204362.1469585869180
Content-Type: multipart/alternative;
 boundary="----=_Part_1745_815115251.1469585869181"

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Content-Transfer-Encoding: quoted-printable

=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=9F=E6=9C=9F=E4=B8=89 UTC=
+8=E4=B8=8A=E5=8D=886:34:38=EF=BC=8CTony V E=E5=86=99=E9=81=93=EF=BC=9A
>
>
>
> On Tue, Jul 26, 2016 at 2:05 AM, Vincent Reverdy <vinc...@gmail.com=20
> <javascript:>> wrote:
>
>> Hello.
>>
>> Please find the document attached.
>> It's not really a proposal... but we need help on this question and=20
>> people really don't seem to agree.
>> So... any help, advice, opinion is welcome.
>>
>
>
> I would say value<const T> makes no sense.
>
> A value is a value.  All values are const.  17 is const.  It is always 17=
..
> What may be NOT const is a variable holding the value 17.
>
> No. Both value of expression of class or array types and value stored in=
=20
some object can be either const or non-const. Actually the language=20
specifies that a prvalue of int is not cv-qualified.

Note constant expression does not implying constness.

The essential problems are in the core language design, as it does not urge=
=20
people to differentiate "value of expression" and "stored value of object"=
=20
clearly enough in most cases. Explicit value category (which is only=20
meaningful to the former) may differentiate the contexts, but often messes=
=20
it worse, because people often misunderstand or ignore them. Also note in=
=20
core's terminology, pointers and references are types, but values are=20
fundamentally different. You can't only mimic these words literally, but=20
also need to coin new meaning before simply putting them together with only=
=20
some examples and mapping rules.

=20

> So value<const T> should not exist.  It should be collapsed to value<T>. =
=20
> const value<T> is fine.
>

You are basically folds "rvalue" to "value", as ISO C does. Things are=20
harder in C++ as it may too easily raise more confusion.


> pointer<const T> makes sense, because it is referring to a value living=
=20
> somewhere else.
> But for value<T> I assume the T lives within value<T>.
>
> Alternatively, value<const T> should work the same as const value<T>.
>
> What does auto do?
>
> const int x =3D 17;
> auto y =3D x; // y is not const?
>
> What does optional<const T> do?
>
> Based on the "essence" of optional, if it worked at all, it should allow=
=20
> you to assign to it once (first assign is construction) and then fail=20
> further assignments.
> But I'm pretty sure we didn't make it throw an exception in that case.
>
>
>
>

--=20
You received this message because you are subscribed to the Google Groups "=
ISO C++ Standard - Future Proposals" group.
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mail to std-proposals+unsubscribe@isocpp.org.
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..org/d/msgid/std-proposals/96a6ef6f-5a59-435c-8093-cf32d0d8d75d%40isocpp.or=
g.

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Content-Transfer-Encoding: quoted-printable

<div dir=3D"ltr">=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=9F=E6=
=9C=9F=E4=B8=89 UTC+8=E4=B8=8A=E5=8D=886:34:38=EF=BC=8CTony V E=E5=86=99=E9=
=81=93=EF=BC=9A<blockquote class=3D"gmail_quote" style=3D"margin: 0;margin-=
left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;"><div dir=3D"ltr=
"><br><div><br><div class=3D"gmail_quote">On Tue, Jul 26, 2016 at 2:05 AM, =
Vincent Reverdy <span dir=3D"ltr">&lt;<a href=3D"javascript:" target=3D"_bl=
ank" gdf-obfuscated-mailto=3D"IvV_rJe8BAAJ" rel=3D"nofollow" onmousedown=3D=
"this.href=3D&#39;javascript:&#39;;return true;" onclick=3D"this.href=3D&#3=
9;javascript:&#39;;return true;">vinc...@gmail.com</a>&gt;</span> wrote:<br=
><blockquote class=3D"gmail_quote" style=3D"margin:0 0 0 .8ex;border-left:1=
px #ccc solid;padding-left:1ex"><div dir=3D"ltr">Hello.<br><br>Please find =
the document attached.<br>It&#39;s not really a proposal... but we need hel=
p on this question and people really don&#39;t seem to agree.<br>So... any =
help, advice, opinion is welcome.<br></div></blockquote></div><br><br></div=
><div>I would say value&lt;const T&gt; makes no sense.<br><br></div><div>A =
value is a value.=C2=A0 All values are const.=C2=A0 17 is const.=C2=A0 It i=
s always 17.<br></div><div>What may be NOT const is a variable holding the =
value 17.<br><br></div></div></blockquote><div>No. Both value of expression=
 of class or array types and value stored in some object can be either cons=
t or non-const. Actually the language specifies that a prvalue of int is no=
t cv-qualified.<br><br>Note constant expression does not implying constness=
..<br><br>The essential problems are in the core language design, as it does=
 not urge people to differentiate &quot;value of expression&quot; and &quot=
;stored value of object&quot; clearly enough in most cases. Explicit value =
category (which is only meaningful to the former) may differentiate the con=
texts, but often messes it worse, because people often misunderstand or ign=
ore them. Also note in core&#39;s terminology, pointers and references are =
types, but values are fundamentally different. You can&#39;t only mimic the=
se words literally, but also need to coin new meaning before simply putting=
 them together with only some examples and mapping rules.<br><br>=C2=A0</di=
v><blockquote class=3D"gmail_quote" style=3D"margin: 0;margin-left: 0.8ex;b=
order-left: 1px #ccc solid;padding-left: 1ex;"><div dir=3D"ltr"><div></div>=
<div>So value&lt;const T&gt; should not exist.=C2=A0 It should be collapsed=
 to value&lt;T&gt;.=C2=A0 const value&lt;T&gt; is fine.<br></div></div></bl=
ockquote><div><br>You are basically folds &quot;rvalue&quot; to &quot;value=
&quot;, as ISO C does. Things are harder in C++ as it may too easily raise =
more confusion.<br><br></div><blockquote class=3D"gmail_quote" style=3D"mar=
gin: 0;margin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;"><=
div dir=3D"ltr"><div><br></div><div>pointer&lt;const T&gt; makes sense, bec=
ause it is referring to a value living somewhere else.<br></div><div>But fo=
r value&lt;T&gt; I assume the T lives within value&lt;T&gt;.<br><br></div><=
div>Alternatively, value&lt;const T&gt; should work the same as const value=
&lt;T&gt;.<br><br></div><div>What does auto do?<br><br></div><div>const int=
 x =3D 17;<br></div><div>auto y =3D x; // y is not const?<br></div><div><br=
></div><div>What does optional&lt;const T&gt; do?<br><br></div><div>Based o=
n the &quot;essence&quot; of optional, if it worked at all, it should allow=
 you to assign to it once (first assign is construction) and then fail furt=
her assignments.<br></div><div>But I&#39;m pretty sure we didn&#39;t make i=
t throw an exception in that case.<br><br><br></div><div><br></div></div>
</blockquote></div>

<p></p>

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%40isocpp.org</a>.<br />

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.


Author: Thiago Macieira <thiago@macieira.org>
Date: Tue, 26 Jul 2016 19:24:42 -0700
Raw View
On ter=C3=A7a-feira, 26 de julho de 2016 18:34:36 PDT Tony V E wrote:
> So value<const T> should not exist.  It should be collapsed to value<T>.
> const value<T> is fine.
>=20
> But for value<T> I assume the T lives within value<T>.
>=20
> Alternatively, value<const T> should work the same as const value<T>.

I still don't understand the point of value<T>. If T stores a value, why do=
 we=20
need value<T>? It stands to reason that value<T> does something extra, on t=
op=20
of what T can do. That something extra is quite important and may affect wh=
at=20
a value<const T> might be.

Should I understand it like optional<T>, which can store a T, but it can al=
so=20
be disengaged and store nothing? optional<const int> makes no sense.

Or maybe like atomic<T>. Here we have that atomic<const T> is the same as=
=20
const atomic<T>.

--=20
Thiago Macieira - thiago (AT) macieira.info - thiago (AT) kde.org
   Software Architect - Intel Open Source Technology Center

--=20
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.


Author: FrankHB1989 <frankhb1989@gmail.com>
Date: Tue, 26 Jul 2016 20:49:48 -0700 (PDT)
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=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=9F=E6=9C=9F=E4=B8=89 UTC=
+8=E4=B8=8A=E5=8D=8810:24:54=EF=BC=8CThiago Macieira=E5=86=99=E9=81=93=EF=
=BC=9A
>
> On ter=C3=A7a-feira, 26 de julho de 2016 18:34:36 PDT Tony V E wrote:=20
> > So value<const T> should not exist.  It should be collapsed to value<T>=
..=20
> > const value<T> is fine.=20
> >=20
> > But for value<T> I assume the T lives within value<T>.=20
> >=20
> > Alternatively, value<const T> should work the same as const value<T>.=
=20
>
> I still don't understand the point of value<T>. If T stores a value, why=
=20
> do we=20
> need value<T>? It stands to reason that value<T> does something extra, on=
=20
> top=20
> of what T can do. That something extra is quite important and may affect=
=20
> what=20
> a value<const T> might be.=20
>
> Should I understand it like optional<T>, which can store a T, but it can=
=20
> also=20
> be disengaged and store nothing? optional<const int> makes no sense.=20
>
> Or maybe like atomic<T>. Here we have that atomic<const T> is the same as=
=20
> const atomic<T>.=20
>
If you want to assume that T lives within lifetime of value<T>, you perhaps=
=20
have to also assume T stores a value, as I don't find another obvious way=
=20
to guarantee the lifetime of T. Then value<T> and value<const T> are=20
essentially different.
Otherwise, if you only want to use value<T> as rvalue of type T, then=20
value<const T> should always decay to value<T>. However, then it will=20
behave more like a "reference".
I'm not sure which kind of "value" is intended by the spelling. It is at=20
least confusing to me.

If both use are needed, just use object type T as usual. Perhaps the only=
=20
reason to wrap it is that operations on bit-fields are too limited, as they=
=20
are not capable as operand of builitin& or bound to a reference, etc. Ugly.


> --=20
> Thiago Macieira - thiago (AT) macieira.info - thiago (AT) kde.org=20
>    Software Architect - Intel Open Source Technology Center=20
>
>

--=20
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ISO C++ Standard - Future Proposals" group.
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g.

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<div dir=3D"ltr"><br><br>=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=
=9F=E6=9C=9F=E4=B8=89 UTC+8=E4=B8=8A=E5=8D=8810:24:54=EF=BC=8CThiago Maciei=
ra=E5=86=99=E9=81=93=EF=BC=9A<blockquote class=3D"gmail_quote" style=3D"mar=
gin: 0;margin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;">O=
n ter=C3=A7a-feira, 26 de julho de 2016 18:34:36 PDT Tony V E wrote:
<br>&gt; So value&lt;const T&gt; should not exist. =C2=A0It should be colla=
psed to value&lt;T&gt;.
<br>&gt; const value&lt;T&gt; is fine.
<br>&gt;=20
<br>&gt; But for value&lt;T&gt; I assume the T lives within value&lt;T&gt;.
<br>&gt;=20
<br>&gt; Alternatively, value&lt;const T&gt; should work the same as const =
value&lt;T&gt;.
<br>
<br>I still don&#39;t understand the point of value&lt;T&gt;. If T stores a=
 value, why do we=20
<br>need value&lt;T&gt;? It stands to reason that value&lt;T&gt; does somet=
hing extra, on top=20
<br>of what T can do. That something extra is quite important and may affec=
t what=20
<br>a value&lt;const T&gt; might be.
<br>
<br>Should I understand it like optional&lt;T&gt;, which can store a T, but=
 it can also=20
<br>be disengaged and store nothing? optional&lt;const int&gt; makes no sen=
se.
<br>
<br>Or maybe like atomic&lt;T&gt;. Here we have that atomic&lt;const T&gt; =
is the same as=20
<br>const atomic&lt;T&gt;.
<br></blockquote><div>If you want to assume that T lives within lifetime of=
 value&lt;T&gt;, you perhaps have to also assume T stores a value, as I don=
&#39;t find another obvious way to guarantee the lifetime of T. Then value&=
lt;T&gt; and value&lt;const T&gt; are essentially different.<br>Otherwise, =
if you only want to use value&lt;T&gt; as rvalue of type T, then value&lt;c=
onst T&gt; should always decay to value&lt;T&gt;. However, then it will beh=
ave more like a &quot;reference&quot;.<br>I&#39;m not sure which kind of &q=
uot;value&quot; is intended by the spelling. It is at least confusing to me=
..<br><br>If both use are needed, just use object type T as usual. Perhaps t=
he only reason to wrap it is that operations on bit-fields are too limited,=
 as they are not capable as operand of builitin&amp; or bound to a referenc=
e, etc. Ugly.<br><br> </div><blockquote class=3D"gmail_quote" style=3D"marg=
in: 0;margin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;">
<br>--=20
<br>Thiago Macieira - thiago (AT) <a href=3D"http://macieira.info" target=
=3D"_blank" rel=3D"nofollow" onmousedown=3D"this.href=3D&#39;http://www.goo=
gle.com/url?q\x3dhttp%3A%2F%2Fmacieira.info\x26sa\x3dD\x26sntz\x3d1\x26usg\=
x3dAFQjCNEswDUBNCNanbu7euhqLn_62FW8ag&#39;;return true;" onclick=3D"this.hr=
ef=3D&#39;http://www.google.com/url?q\x3dhttp%3A%2F%2Fmacieira.info\x26sa\x=
3dD\x26sntz\x3d1\x26usg\x3dAFQjCNEswDUBNCNanbu7euhqLn_62FW8ag&#39;;return t=
rue;">macieira.info</a> - thiago (AT) <a href=3D"http://kde.org" target=3D"=
_blank" rel=3D"nofollow" onmousedown=3D"this.href=3D&#39;http://www.google.=
com/url?q\x3dhttp%3A%2F%2Fkde.org\x26sa\x3dD\x26sntz\x3d1\x26usg\x3dAFQjCNH=
GRJdo5_JYG1DowztwAHAKs80XSA&#39;;return true;" onclick=3D"this.href=3D&#39;=
http://www.google.com/url?q\x3dhttp%3A%2F%2Fkde.org\x26sa\x3dD\x26sntz\x3d1=
\x26usg\x3dAFQjCNHGRJdo5_JYG1DowztwAHAKs80XSA&#39;;return true;">kde.org</a=
>
<br>=C2=A0 =C2=A0Software Architect - Intel Open Source Technology Center
<br>
<br></blockquote></div>

<p></p>

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40isocpp.org?utm_medium=3Demail&utm_source=3Dfooter">https://groups.google.=
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%40isocpp.org</a>.<br />

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Author: FrankHB1989 <frankhb1989@gmail.com>
Date: Tue, 26 Jul 2016 20:53:20 -0700 (PDT)
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=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=9F=E6=9C=9F=E4=B8=89 UTC=
+8=E4=B8=8A=E5=8D=8811:49:48=EF=BC=8CFrankHB1989=E5=86=99=E9=81=93=EF=BC=9A
>
>
>
> If you want to assume that T lives within lifetime of value<T>, you=20
> perhaps have to also assume T stores a value, as I don't find another=20
> obvious way to guarantee the lifetime of T.
>

Sorry, I meant "value<T> stores a value of object type T".
=20

--=20
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<div dir=3D"ltr"><br><br>=E5=9C=A8 2016=E5=B9=B47=E6=9C=8827=E6=97=A5=E6=98=
=9F=E6=9C=9F=E4=B8=89 UTC+8=E4=B8=8A=E5=8D=8811:49:48=EF=BC=8CFrankHB1989=
=E5=86=99=E9=81=93=EF=BC=9A<blockquote class=3D"gmail_quote" style=3D"margi=
n: 0;margin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;"><di=
v dir=3D"ltr"><br><br><div>If you want to assume that T lives within lifeti=
me of value&lt;T&gt;, you perhaps have to also assume T stores a value, as =
I don&#39;t find another obvious way to guarantee the lifetime of T.<br></d=
iv></div></blockquote><div><br>Sorry, I meant &quot;value&lt;T&gt; stores a=
 value of object type T&quot;.<br>=C2=A0<br></div></div>

<p></p>

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.


Author: Vincent Reverdy <vince.rev@gmail.com>
Date: Tue, 26 Jul 2016 22:31:38 -0700 (PDT)
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>
> I still don't understand the point of value<T>. If T stores a value, why
> do we
> need value<T>?
>

In the context of the bit proposal, originally bit_value was not a class
template and was implemented as a wrapper around a bool providing the right
semantics for a bit (like no weird integral promotion) and some extra
functionalities (like set/reset/flip members).

However if bit_value is a wrapper around a bool, while bit_reference
references a bit within an unsigned integer (for example the 3rd bit of a
value of uint64_t type), it is impossible for a bit_reference to reference
a bit within a bit_value: one cannot make implicit conversions from a
bit_value& to a bit_reference<uint64_t>. If bit_value is templated, then
the value of the bit can be stored in any unsigned integral type, and it
becomes possible to implicitly convert a bit_value<uint64_t>& to a
bit_reference<uint64_t>. It adds some flexibility to the design that could
help the writing of generic algorithms. (If you don't agree, please let me
know, the idea of make bit_value a template class was brought to me at the
Oulu meeting so it's very recent).

--
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<div dir=3D"ltr"><blockquote style=3D"margin: 0px 0px 0px 0.8ex; border-lef=
t: 1px solid rgb(204, 204, 204); padding-left: 1ex;" class=3D"gmail_quote">=
I still don&#39;t understand the point of value&lt;T&gt;. If T stores a val=
ue, why do we=20
<br>need value&lt;T&gt;?<br></blockquote><br>In the context of the bit prop=
osal, originally <span style=3D"font-family: courier new,monospace;">bit_va=
lue</span> was not a class template and was implemented as a wrapper around=
 a <span style=3D"font-family: courier new,monospace;">bool</span> providin=
g the right semantics for a bit (like no weird integral promotion) and some=
 extra functionalities (like <span style=3D"font-family: courier new,monosp=
ace;">set</span>/<span style=3D"font-family: courier new,monospace;">reset<=
/span>/<span style=3D"font-family: courier new,monospace;">flip</span> memb=
ers).<br><br>However if <span style=3D"font-family: courier new,monospace;"=
>bit_value</span> is a wrapper around a <span style=3D"font-family: courier=
 new,monospace;">bool</span>, while <span style=3D"font-family: courier new=
,monospace;">bit_reference</span> references a bit within an unsigned integ=
er (for example the 3rd bit of a value of <span style=3D"font-family: couri=
er new,monospace;">uint64_t</span> type), it is impossible for a <span styl=
e=3D"font-family: courier new,monospace;">bit_reference</span> to reference=
 a bit within a <span style=3D"font-family: courier new,monospace;">bit_val=
ue</span>: one cannot make implicit conversions from a <span style=3D"font-=
family: courier new,monospace;">bit_value&amp;<span style=3D"font-family: a=
rial,sans-serif;"> to a </span>bit_reference&lt;uint64_t&gt;<span style=3D"=
font-family: arial,sans-serif;">. If </span>bit_value<span style=3D"font-fa=
mily: arial,sans-serif;"> is templated, then the value of the bit can be st=
ored in any unsigned integral type, and it becomes possible to implicitly c=
onvert a </span>bit_value&lt;uint64_t&gt;&amp;<span style=3D"font-family: a=
rial,sans-serif;"> to a </span>bit_reference&lt;uint64_t&gt;<span style=3D"=
font-family: arial,sans-serif;">. It adds some flexibility to the design th=
at could help the writing of generic algorithms.</span> <span style=3D"font=
-family: arial,sans-serif;">(If you don&#39;t agree, please let me know, th=
e idea of make <span style=3D"font-family: courier new,monospace;">bit_valu=
e</span> a template class was brought to me at the Oulu meeting so it&#39;s=
 very recent).</span><br></span></div>

<p></p>

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.


Author: "T. C." <rs2740@gmail.com>
Date: Wed, 27 Jul 2016 15:31:54 -0700 (PDT)
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On Wednesday, July 27, 2016 at 1:31:39 AM UTC-4, Vincent Reverdy wrote:
>
> I still don't understand the point of value<T>. If T stores a value, why
>> do we
>> need value<T>?
>>
>
> In the context of the bit proposal, originally bit_value was not a class
> template and was implemented as a wrapper around a bool providing the
> right semantics for a bit (like no weird integral promotion) and some extra
> functionalities (like set/reset/flip members).
>
> However if bit_value is a wrapper around a bool, while bit_reference
> references a bit within an unsigned integer (for example the 3rd bit of a
> value of uint64_t type), it is impossible for a bit_reference to
> reference a bit within a bit_value: one cannot make implicit conversions
> from a bit_value& to a bit_reference<uint64_t>. If bit_value is
> templated, then the value of the bit can be stored in any unsigned integral
> type, and it becomes possible to implicitly convert a bit_value<uint64_t>&
> to a bit_reference<uint64_t>. It adds some flexibility to the design that
> could help the writing of generic algorithms. (If you don't agree, please
> let me know, the idea of make bit_value a template class was brought to
> me at the Oulu meeting so it's very recent).
>

It would be much easier to understand this argument if you can show a
sample algorithm that works better with the implicit conversion.

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<div dir=3D"ltr"><br><br>On Wednesday, July 27, 2016 at 1:31:39 AM UTC-4, V=
incent Reverdy wrote:<blockquote class=3D"gmail_quote" style=3D"margin: 0;m=
argin-left: 0.8ex;border-left: 1px #ccc solid;padding-left: 1ex;"><div dir=
=3D"ltr"><blockquote style=3D"margin:0px 0px 0px 0.8ex;border-left:1px soli=
d rgb(204,204,204);padding-left:1ex" class=3D"gmail_quote">I still don&#39;=
t understand the point of value&lt;T&gt;. If T stores a value, why do we=20
<br>need value&lt;T&gt;?<br></blockquote><br>In the context of the bit prop=
osal, originally <span style=3D"font-family:courier new,monospace">bit_valu=
e</span> was not a class template and was implemented as a wrapper around a=
 <span style=3D"font-family:courier new,monospace">bool</span> providing th=
e right semantics for a bit (like no weird integral promotion) and some ext=
ra functionalities (like <span style=3D"font-family:courier new,monospace">=
set</span>/<span style=3D"font-family:courier new,monospace">reset</span>/<=
span style=3D"font-family:courier new,monospace">flip</span> members).<br><=
br>However if <span style=3D"font-family:courier new,monospace">bit_value</=
span> is a wrapper around a <span style=3D"font-family:courier new,monospac=
e">bool</span>, while <span style=3D"font-family:courier new,monospace">bit=
_reference</span> references a bit within an unsigned integer (for example =
the 3rd bit of a value of <span style=3D"font-family:courier new,monospace"=
>uint64_t</span> type), it is impossible for a <span style=3D"font-family:c=
ourier new,monospace">bit_reference</span> to reference a bit within a <spa=
n style=3D"font-family:courier new,monospace">bit_value</span>: one cannot =
make implicit conversions from a <span style=3D"font-family:courier new,mon=
ospace">bit_value&amp;<span style=3D"font-family:arial,sans-serif"> to a </=
span>bit_reference&lt;uint64_t&gt;<span style=3D"font-family:arial,sans-ser=
if">. If </span>bit_value<span style=3D"font-family:arial,sans-serif"> is t=
emplated, then the value of the bit can be stored in any unsigned integral =
type, and it becomes possible to implicitly convert a </span>bit_value&lt;u=
int64_t&gt;&amp;<span style=3D"font-family:arial,sans-serif"> to a </span>b=
it_reference&lt;uint64_t&gt;<span style=3D"font-family:arial,sans-serif">. =
It adds some flexibility to the design that could help the writing of gener=
ic algorithms.</span> <span style=3D"font-family:arial,sans-serif">(If you =
don&#39;t agree, please let me know, the idea of make <span style=3D"font-f=
amily:courier new,monospace">bit_value</span> a template class was brought =
to me at the Oulu meeting so it&#39;s very recent).</span></span></div></bl=
ockquote><div><br></div><div>It would be much easier to understand this arg=
ument if you can show a sample algorithm that works better with the implici=
t conversion.</div></div>

<p></p>

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%40isocpp.org</a>.<br />

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.


Author: "'Matt Calabrese' via ISO C++ Standard - Future Proposals" <std-proposals@isocpp.org>
Date: Wed, 27 Jul 2016 17:34:45 -0700
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--94eb2c11ab080952b10538a74d93
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On Mon, Jul 25, 2016 at 11:05 PM, Vincent Reverdy <vince.rev@gmail.com>
wrote:

> Hello.
>
> Please find the document attached.
> It's not really a proposal... but we need help on this question and people
> really don't seem to agree.
> So... any help, advice, opinion is welcome.
>

When I'm in generic code and I need to make a member of a dependent type
"T", I instead encapsulate an instance of a wrapper type that makes it
appropriately Regular in a way that is logically consistent and allows
proper encapsulation of cv-qualified objects and reference types. Something
similar to what I use is shown below (this is a simplified, untested
approximation of what I actually use). I used to not have cv support, sort
of similar to what Tony described, though I've discovered that what I
present here actually handles cv-qualification and is what is consistent
with intent in a logically-consistent manner. Basically what it does with
cv qualification is it encapsulates the cv-unqualified version, with the
associated functions of a Regular type defined in terms of the
cv-unqualified version, but with user-level accessors of the underlying
object that only ever give back references to the object with the
originally-specified qualifiers attached. This wrapper that I describe is
only ever used internal to something like a container implementation or an
optional or variant implementation is never leaked back to the user. It is
just used behind-the-scenes to give logically consistent semantics.

Before the actual wrapper code, here is an example usage of the value< T >
wrapper, assuming that you want to make a std::vector-like type that works
with vectors of const-qualified types or of reference types:

///////////////////////////

template< class T >
class vector
{
 public:
  /*...*/

  // If T is const, this returns a reference-to-const even though
  // this operator[] is not const.
  // If T is a reference type, this behaves appropriately
  // with respect to reference-collapsing rules.
  decltype( auto ) operator []( std::size_t i ) /*noexcept*/
  {
    // "access" is shown in the implementation example below.
    return access( data[ i ] );
  }

  // Note that things like assignment, push_back, and erase still work.
 private:
  // value< T > is the wrapper template
  std::unique_ptr< value< T >[] > data;
};

///////////////////////////

Similarly, you can use that to make a std::optional of a cv-qualified or
reference type in generic code in a way that makes sense, or you can use it
to make a variant of such types, etc. I've found that this kind of support
is absolutely essential in generic code when directly or indirectly
receiving dependent types from the user,

Here is an example implementation, though again, this is a simplified
version:

///////////////////////////

#include <memory>
#include <type_traits>
#include <utility>

template< class T > struct access_impl {};

template< class T > struct identity { using type = T; };

template< class T >
struct value
{
  friend struct access_impl< value >;
  static_assert( std::is_object< T >::value );

  value() = default;

  template< class LazyT = std::remove_cv_t< T > >
  constexpr explicit value( LazyT v )
    noexcept( std::is_nothrow_move_constructible< LazyT >::value )
    : v( std::move( v ) ) {}

  // NOTE: Comparisons should forward to v.
 private:
  std::remove_cv_t< T > v;
};

template< class T >
struct value< T& >
{
  friend struct access_impl< value >;
  static_assert( std::is_object< T >::value );

  constexpr explicit value( T& v ) noexcept
    : v( std::addressof( v ) ) {}

  // NOTE: Comparisons should deal with the pointer value.
 private:
  T* v;
};

template< class T >
struct value< T&& >
{
  friend struct access_impl< value >;
  static_assert( std::is_object< T >::value );

  constexpr explicit value( T&& v ) noexcept
    : v( std::addressof( v ) ) {}

  // NOTE: One *might* consider the following appropriate (move-only)...
  // value( value&& ) = default;
  // value& operator =( value&& ) = default;

  // NOTE: Comparisons should deal with the pointer value.
 private:
  T* v;
};

// Requires Source is a reference type
template< class Source, class Target >
struct give_qualifiers_to;

#define GIVE_QUALIFIERS_TO_SPEC( qual )          \
template< class Source, class Target >           \
struct give_qualifiers_to< Source qual, Target > \
{                                                \
  using type = Target qual;                      \
}

GIVE_QUALIFIERS_TO_SPEC( & );
GIVE_QUALIFIERS_TO_SPEC( && );
GIVE_QUALIFIERS_TO_SPEC( const& );
GIVE_QUALIFIERS_TO_SPEC( const&& );
GIVE_QUALIFIERS_TO_SPEC( volatile& );
GIVE_QUALIFIERS_TO_SPEC( volatile&& );
GIVE_QUALIFIERS_TO_SPEC( volatile const& );
GIVE_QUALIFIERS_TO_SPEC( volatile const&& );

#undef GIVE_QUALIFIERS_TO_SPEC

template< class Source, class Target >
using give_qualifiers_to_t
  = typename give_qualifiers_to< Source, Target >::type;

template< class T >
struct access_impl< value< T > >
{
  template< class Self >
  static constexpr give_qualifiers_to_t< Self&&, T >
  run( Self&& self ) noexcept
  {
    return std::forward< Self >( self ).v;
  }
};

template< class T >
struct access_impl< value< T& > >
{
  template< class Self >
  static constexpr give_qualifiers_to_t< Self&&, T& > run( Self&& self )
noexcept
  {
    return *self.v;
  }
};

template< class T >
struct access_impl< value< T&& > >
{
  template< class Self >
  static constexpr give_qualifiers_to_t< Self&&, T&& >
  run( Self&& self ) noexcept
  {
    return std::forward< give_qualifiers_to_t< Self&&, T&& > >( *self.v );
  }
};

// Requires: T is a valid instantiation of value
template< class T >
decltype( auto ) access( T&& object ) noexcept
{
  return access_impl< std::remove_cv_t< std::remove_reference_t< T > > >
  ::run( std::forward< T >( object ) );
}

///////////////////////////

I anticipate that this is a controversial view as it is not consistent with
what the standard library containers do, nor what things like
optional/variant do, though I've found this to actually be a failing of the
standard library. I believe that having semantics such as what I describe
benefits both generic code and user code as it removes the need for
higher-level special casing around reference and cv-qualified object types
for both kinds of users (library authors and library users).

- Matt Calabrese

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Content-Type: text/html; charset=UTF-8
Content-Transfer-Encoding: quoted-printable

<div dir=3D"ltr"><div class=3D"gmail_extra"><div class=3D"gmail_quote">On M=
on, Jul 25, 2016 at 11:05 PM, Vincent Reverdy <span dir=3D"ltr">&lt;<a href=
=3D"mailto:vince.rev@gmail.com" target=3D"_blank">vince.rev@gmail.com</a>&g=
t;</span> wrote:<br><blockquote class=3D"gmail_quote" style=3D"margin:0px 0=
px 0px 0.8ex;border-left-width:1px;border-left-style:solid;border-left-colo=
r:rgb(204,204,204);padding-left:1ex"><div dir=3D"ltr">Hello.<br><br>Please =
find the document attached.<br>It&#39;s not really a proposal... but we nee=
d help on this question and people really don&#39;t seem to agree.<br>So...=
 any help, advice, opinion is welcome.<br></div></blockquote><div><br></div=
><div>When I&#39;m in generic code and I need to make a member of a depende=
nt type &quot;T&quot;, I instead encapsulate an instance of a wrapper type =
that makes it appropriately Regular in a way that is logically consistent a=
nd allows proper encapsulation of cv-qualified objects and reference types.=
=C2=A0Something similar to what I use is shown below (this is a simplified,=
 untested approximation of what I actually use). I used to not have cv supp=
ort, sort of similar to what Tony described, though I&#39;ve discovered tha=
t what I present here actually handles cv-qualification and is what is cons=
istent with intent in a logically-consistent manner. Basically what it does=
 with cv qualification is it encapsulates the cv-unqualified version, with =
the associated functions of a Regular type defined in terms of the cv-unqua=
lified version, but with user-level accessors of the underlying object that=
 only ever give back references to the object with the originally-specified=
 qualifiers attached. This wrapper that I describe is only ever used intern=
al to something like a container implementation or an optional or variant i=
mplementation is never leaked back to the user. It is just used behind-the-=
scenes to give logically consistent semantics.</div><div><br></div><div>Bef=
ore the actual wrapper code, here is an example usage of the value&lt; T &g=
t; wrapper, assuming that you want to make a std::vector-like type that wor=
ks with vectors of const-qualified types or of reference types:<br></div><d=
iv><br></div><div>///////////////////////////<br></div><div><br></div><div>=
template&lt; class T &gt;</div><div>class vector</div><div>{</div>=C2=A0pub=
lic:<div>=C2=A0 /*...*/</div><div><br></div><div>=C2=A0 // If T is const, t=
his returns a reference-to-const even though</div><div>=C2=A0 // this opera=
tor[] is not const.</div><div>=C2=A0 // If T is a reference type, this beha=
ves appropriately</div><div>=C2=A0 // with respect to reference-collapsing =
rules.</div><div>=C2=A0 decltype( auto ) operator []( std::size_t i ) /*noe=
xcept*/</div><div>=C2=A0 {</div><div>=C2=A0 =C2=A0 // &quot;access&quot; is=
 shown in the implementation example below.</div><div>=C2=A0 =C2=A0 return =
access( data[ i ] );</div><div>=C2=A0 }</div><div><br></div><div>=C2=A0 // =
Note that things like assignment, push_back, and erase still work.</div><di=
v>=C2=A0private:</div><div>=C2=A0 // value&lt; T &gt; is the wrapper templa=
te</div><div>=C2=A0 std::unique_ptr&lt; value&lt; T &gt;[] &gt; data;</div>=
<div>};</div><div><br></div><div>///////////////////////////<br></div><div>=
<br></div><div>Similarly, you can use that to make a std::optional of a cv-=
qualified or reference type in generic code in a way that makes sense, or y=
ou can use it to make a variant of such types, etc. I&#39;ve found that thi=
s kind of support is absolutely essential in generic code when directly or =
indirectly receiving dependent types from the user,</div><div><br></div><di=
v>Here is an example implementation, though again, this is a simplified ver=
sion:</div><div><br></div><div>///////////////////////////</div><div><br></=
div><div><div>#include &lt;memory&gt;</div><div>#include &lt;type_traits&gt=
;</div><div>#include &lt;utility&gt;</div><div><br></div><div>template&lt; =
class T &gt; struct access_impl {};</div><div><br></div><div>template&lt; c=
lass T &gt; struct identity { using type =3D T; };</div><div><br></div><div=
>template&lt; class T &gt;</div><div>struct value</div><div>{</div><div>=C2=
=A0 friend struct access_impl&lt; value &gt;;</div><div>=C2=A0 static_asser=
t( std::is_object&lt; T &gt;::value );</div><div><br></div><div>=C2=A0 valu=
e() =3D default;</div><div>=C2=A0=C2=A0</div><div>=C2=A0 template&lt; class=
 LazyT =3D=C2=A0std::remove_cv_t&lt; T &gt;=C2=A0&gt;</div><div>=C2=A0 cons=
texpr explicit value( LazyT v )</div><div>=C2=A0 =C2=A0 noexcept( std::is_n=
othrow_move_constructible&lt; LazyT &gt;::value )</div><div>=C2=A0 =C2=A0 :=
 v( std::move( v ) ) {}</div><div>=C2=A0=C2=A0</div><div>=C2=A0 // NOTE: Co=
mparisons should forward to v.</div><div>=C2=A0private:</div><div>=C2=A0 st=
d::remove_cv_t&lt; T &gt; v;</div><div>};</div><div><br></div><div>template=
&lt; class T &gt;</div><div>struct value&lt; T&amp; &gt;</div><div>{</div><=
div>=C2=A0 friend struct access_impl&lt; value &gt;;</div><div>=C2=A0 stati=
c_assert( std::is_object&lt; T &gt;::value );</div><div>=C2=A0=C2=A0</div><=
div>=C2=A0 constexpr explicit value( T&amp; v ) noexcept</div><div>=C2=A0 =
=C2=A0 : v( std::addressof( v ) ) {}</div><div>=C2=A0=C2=A0</div><div>=C2=
=A0 // NOTE: Comparisons should deal with the pointer value.</div><div>=C2=
=A0private:</div><div>=C2=A0 T* v;</div><div>};</div><div><br></div><div>te=
mplate&lt; class T &gt;</div><div>struct value&lt; T&amp;&amp; &gt;</div><d=
iv>{</div><div>=C2=A0 friend struct access_impl&lt; value &gt;;</div><div>=
=C2=A0 static_assert( std::is_object&lt; T &gt;::value );</div><div><br></d=
iv><div>=C2=A0 constexpr explicit value( T&amp;&amp; v ) noexcept</div><div=
>=C2=A0 =C2=A0 : v( std::addressof( v ) ) {}</div><div>=C2=A0=C2=A0</div><d=
iv>=C2=A0 // NOTE: One *might* consider the following appropriate (move-onl=
y)...</div><div>=C2=A0 // value( value&amp;&amp; ) =3D default;</div><div>=
=C2=A0 // value&amp; operator =3D( value&amp;&amp; ) =3D default;</div><div=
><br></div><div>=C2=A0 // NOTE: Comparisons should deal with the pointer va=
lue.</div><div>=C2=A0private:</div><div>=C2=A0 T* v;</div><div>};</div><div=
><br></div><div>// Requires Source is a reference type</div><div>template&l=
t; class Source, class Target &gt;</div><div>struct give_qualifiers_to;</di=
v><div><br></div><div>#define GIVE_QUALIFIERS_TO_SPEC( qual ) =C2=A0 =C2=A0=
 =C2=A0 =C2=A0 =C2=A0\</div><div>template&lt; class Source, class Target &g=
t; =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 \</div><div>struct give_qualifiers_to=
&lt; Source qual, Target &gt; \</div><div>{ =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=
=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =
=C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0\</div><div>=
=C2=A0 using type =3D Target qual; =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=
=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0 =C2=A0\</div><div>}</div><div><br></div><di=
v>GIVE_QUALIFIERS_TO_SPEC( &amp; );</div><div>GIVE_QUALIFIERS_TO_SPEC( &amp=
;&amp; );</div><div>GIVE_QUALIFIERS_TO_SPEC( const&amp; );</div><div>GIVE_Q=
UALIFIERS_TO_SPEC( const&amp;&amp; );</div><div>GIVE_QUALIFIERS_TO_SPEC( vo=
latile&amp; );</div><div>GIVE_QUALIFIERS_TO_SPEC( volatile&amp;&amp; );</di=
v><div>GIVE_QUALIFIERS_TO_SPEC( volatile const&amp; );</div><div>GIVE_QUALI=
FIERS_TO_SPEC( volatile const&amp;&amp; );</div><div><br></div><div>#undef =
GIVE_QUALIFIERS_TO_SPEC</div><div><br></div><div>template&lt; class Source,=
 class Target &gt;</div><div>using give_qualifiers_to_t</div><div>=C2=A0 =
=3D typename give_qualifiers_to&lt; Source, Target &gt;::type;</div><div><b=
r></div><div>template&lt; class T &gt;</div><div>struct access_impl&lt; val=
ue&lt; T &gt; &gt;</div><div>{</div><div>=C2=A0 template&lt; class Self &gt=
;</div><div>=C2=A0 static constexpr give_qualifiers_to_t&lt; Self&amp;&amp;=
, T &gt;</div><div>=C2=A0 run( Self&amp;&amp; self ) noexcept</div><div>=C2=
=A0 {</div><div>=C2=A0 =C2=A0 return std::forward&lt; Self &gt;( self ).v;<=
/div><div>=C2=A0 }</div><div>};</div><div><br></div><div>template&lt; class=
 T &gt;</div><div>struct access_impl&lt; value&lt; T&amp; &gt; &gt;</div><d=
iv>{</div><div>=C2=A0 template&lt; class Self &gt;</div><div>=C2=A0 static =
constexpr=C2=A0give_qualifiers_to_t&lt; Self&amp;&amp;, T&amp; &gt;=C2=A0ru=
n( Self&amp;&amp; self ) noexcept</div><div>=C2=A0 {</div><div>=C2=A0 =C2=
=A0 return *self.v;</div><div>=C2=A0 }</div><div>};</div><div><br></div><di=
v>template&lt; class T &gt;</div><div>struct access_impl&lt; value&lt; T&am=
p;&amp; &gt; &gt;</div><div>{</div><div>=C2=A0 template&lt; class Self &gt;=
</div><div>=C2=A0 static constexpr give_qualifiers_to_t&lt; Self&amp;&amp;,=
 T&amp;&amp; &gt;</div><div>=C2=A0 run( Self&amp;&amp; self ) noexcept</div=
><div>=C2=A0 {</div><div>=C2=A0 =C2=A0 return std::forward&lt; give_qualifi=
ers_to_t&lt; Self&amp;&amp;, T&amp;&amp; &gt; &gt;( *self.v );</div><div>=
=C2=A0 }</div><div>};</div><div><br></div><div>// Requires: T is a valid in=
stantiation of value</div><div>template&lt; class T &gt;</div><div>decltype=
( auto ) access( T&amp;&amp; object ) noexcept</div><div>{</div><div>=C2=A0=
 return access_impl&lt; std::remove_cv_t&lt; std::remove_reference_t&lt; T =
&gt; &gt; &gt;</div><div>=C2=A0 ::run( std::forward&lt; T &gt;( object ) );=
</div><div>}</div></div><div><br></div><div>///////////////////////////<br>=
</div><div><br></div><div>I anticipate that this is a controversial view as=
 it is not consistent with what the standard library containers do, nor wha=
t things like optional/variant do, though I&#39;ve found this to actually b=
e a failing of the standard library. I believe that having semantics such a=
s what I describe benefits both generic code and user code as it removes th=
e need for higher-level special casing around reference and cv-qualified ob=
ject types for both kinds of users (library authors and library users).</di=
v><div><br></div><div>- Matt Calabrese</div></div></div><div><div class=3D"=
gmail_extra"><div class=3D"gmail_extra"><div class=3D"gmail_extra"><br></di=
v></div></div></div></div>

<p></p>

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--94eb2c11ab080952b10538a74d93--

.


Author: "'Matt Calabrese' via ISO C++ Standard - Future Proposals" <std-proposals@isocpp.org>
Date: Thu, 28 Jul 2016 10:07:05 -0700
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On Wed, Jul 27, 2016 at 5:34 PM, Matt Calabrese <calabrese@x.team> wrote:

> Basically what it does with cv qualification is it encapsulates the
> cv-unqualified version, with the associated functions of a Regular type
> defined in terms of the cv-unqualified version, but with user-level
> accessors of the underlying object that only ever give back references to
> the object with the originally-specified qualifiers attached.
>

After looking back at my actual implementation, when dealing with object
types I only strip const and not volatile, and in retrospect, I believe
that was the correct choice.

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<div dir=3D"ltr"><div class=3D"gmail_extra"><div class=3D"gmail_quote">On W=
ed, Jul 27, 2016 at 5:34 PM, Matt Calabrese <span dir=3D"ltr">&lt;<a href=
=3D"mailto:calabrese@x.team" target=3D"_blank">calabrese@x.team</a>&gt;</sp=
an> wrote:<br><blockquote class=3D"gmail_quote" style=3D"margin:0px 0px 0px=
 0.8ex;border-left-width:1px;border-left-style:solid;border-left-color:rgb(=
204,204,204);padding-left:1ex"><div dir=3D"ltr"><div class=3D"gmail_extra">=
<div class=3D"gmail_quote"><div>Basically what it does with cv qualificatio=
n is it encapsulates the cv-unqualified version, with the associated functi=
ons of a Regular type defined in terms of the cv-unqualified version, but w=
ith user-level accessors of the underlying object that only ever give back =
references to the object with the originally-specified qualifiers attached.=
</div></div></div></div></blockquote><div><br></div><div>After looking back=
 at my actual implementation, when dealing with object types I only strip c=
onst and not volatile, and in retrospect, I believe that was the correct ch=
oice.</div></div></div></div>

<p></p>

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om/a/isocpp.org/d/msgid/std-proposals/CANh8DEnDx7cLH7sir%2B%3DUEK35%3DY7hcy=
kzuML3i7nkMoTKLMeMYA%40mail.gmail.com?utm_medium=3Demail&utm_source=3Dfoote=
r">https://groups.google.com/a/isocpp.org/d/msgid/std-proposals/CANh8DEnDx7=
cLH7sir%2B%3DUEK35%3DY7hcykzuML3i7nkMoTKLMeMYA%40mail.gmail.com</a>.<br />

--94eb2c056316dfd3ea0538b52911--

.