This was a bit tricky to build, because it is possible to have an
indirection through a `static` there. Thanks to Rust's extensive
const-fn capabilities, though, it's in fact possible to cover all cases.
We still do two different checks to improve user experience. If we can,
from within the proc macro, determine that two fields refer to the same
XML attribute (because their namespace/name values use the same Rust
tokens), then we reject the fields with a clear error message pointing
at both fields.
In the other case, when there's e.g. `#[xml(lang)]` and
`#[xml(attribute(namespace = rxml::XMLNS_XML, name = "lang"))]`, the
macro cannot be sure that XMLNS_XML is in fact the XML namespace. For
that case, we generate code which is evaluated at compile time (and
has no runtime impact) which panics if the namespace and name of two
attribute-matching fields is the same.
The error message will be less clear (because it contains extra,
unchangeable wording like "evaluation of constant value failed" and "the
evaluated program panicked at", which may be a bit confusing) than the
message generated by the macros themselves, but it's a price we have to
pay unfortunately.
Note that this check may seem cosmetic and purely for better user
experience, but it is in fact needed to avoid generating not-well-formed
and/or not-namespace-well-formed XML: As `AsXml` generates `xso::Item`,
where each attribute is emitted separated (and not aggregated in a
map structure), a naive (and efficient) implementation of a writer might
not double-check that no duplicate attributes are generated.
This allows exactly one arbitrary payload in any element, and is handled
after every other element with a more specific matcher has been parsed.
Both the #[xml(element(n = 1))] meta and its shortcut #[xml(element)]
are allowed and treated the exact same way.
This reverts commit 4e5f0bc961.
Unfortunately, in std contexts, the `alloc` crate is not imported. That
means we cannot rely on it being accessible and it in fact breaks builds
of crates which are not `no_std`.
Fixes#155.
These more closely mirror how enums work currently with the macros.
Non-exhaustive enums may be useful though and kind of were the natural
thing to implement.
This allows stateful or configurable codecs without having to express
all configuration in the type name itself. For example, we could have a
Base64 type with configurable Base64 engines without having to duplicate
the Base64 type itself.
(Note that the different engines in the Base64 crate are values, not
types.)
In 1265f4b, we introduced a change which may cause a conflict of type
names when deriving the traits on two different types. While a
workaround existed (use `mod`s to isolate the implementation), that is
ugly.
This commit allows overriding the choice of type names.
Text codecs allow to customize the conversion of data from/to XML,
in particular in two scenarios:
1. When the type for which the behaviour is to be defined comes from a
foreign crate, preventing the implementation of
FromXmlText/IntoXmlText.
2. When there is not one obvious, or more than one sensible, way to
convert a value to XML text and back.
Previously, we only enforced the existence of at most one `#[xml(text)]`
field only at code generation time for `FromXml`. This change enforces
it at parsing time, which is more consistent and allows for a clearer
error message.
This is bare-bones and is missing many features which we intend to add
in future commits, such as parsing from attributes whose names differ
from the field names and parsing into non-String types.