//! Generated by `trust-tasks-codegen` — do not edit by hand.
//!
//! Spec slug: `persona/contact/put`. Version: `1.0`.
#[allow(unused_imports)]
use serde::{Deserialize, Serialize};
/// Error types.
pub mod error {
/// Error from a `TryFrom` or `FromStr` implementation.
pub struct ConversionError(::std::borrow::Cow<'static, str>);
impl ::std::error::Error for ConversionError {}
impl ::std::fmt::Display for ConversionError {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> Result<(), ::std::fmt::Error> {
::std::fmt::Display::fmt(&self.0, f)
}
}
impl ::std::fmt::Debug for ConversionError {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> Result<(), ::std::fmt::Error> {
::std::fmt::Debug::fmt(&self.0, f)
}
}
impl From<&'static str> for ConversionError {
fn from(value: &'static str) -> Self {
Self(value.into())
}
}
impl From<String> for ConversionError {
fn from(value: String) -> Self {
Self(value.into())
}
}
}
/**
The vocabulary token naming what a value IS — `name.legal`, `phone.mobile`, `address.postal`, `person.birthDate`. Dotted, most-general segment first, so that a consumer with no knowledge of the specific token can still group by its prefix.
The token is the maintainer's own; no external vocabulary is primary. External vocabularies (vCard/jCard, OIDC standard claims, schema.org) are mappings applied at PRESENTATION by a renderer, not at rest, so that a query written in any of them can be matched without the store having to live inside any one of them.
The `x:` prefix is an open extension namespace and is not decoration. The closest prior art — Windows CardSpace's self-issued card — supported exactly fifteen predefined claim types with no extensibility, and that is the specific way it failed the requirement a holder actually has. An `x:` attribute stores, composes, binds and discloses exactly like a known one; it renders generically and matches only an explicit query.*/
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "ClaimType",
/// "description": "\nThe vocabulary token naming what a value IS — `name.legal`, `phone.mobile`, `address.postal`, `person.birthDate`. Dotted, most-general segment first, so that a consumer with no knowledge of the specific token can still group by its prefix.\n\nThe token is the maintainer's own; no external vocabulary is primary. External vocabularies (vCard/jCard, OIDC standard claims, schema.org) are mappings applied at PRESENTATION by a renderer, not at rest, so that a query written in any of them can be matched without the store having to live inside any one of them.\n\nThe `x:` prefix is an open extension namespace and is not decoration. The closest prior art — Windows CardSpace's self-issued card — supported exactly fifteen predefined claim types with no extensibility, and that is the specific way it failed the requirement a holder actually has. An `x:` attribute stores, composes, binds and discloses exactly like a known one; it renders generically and matches only an explicit query.",
/// "type": "string",
/// "maxLength": 128,
/// "minLength": 1,
/// "pattern": "^(x:)?[a-z][a-zA-Z0-9]*(\\.[a-z][a-zA-Z0-9]*)*$"
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ClaimType(::std::string::String);
impl ::std::ops::Deref for ClaimType {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ClaimType> for ::std::string::String {
fn from(value: ClaimType) -> Self {
value.0
}
}
impl ::std::str::FromStr for ClaimType {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 128usize {
return Err("longer than 128 characters".into());
}
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
static PATTERN: ::std::sync::LazyLock<::regress::Regex> =
::std::sync::LazyLock::new(|| {
::regress::Regex::new("^(x:)?[a-z][a-zA-Z0-9]*(\\.[a-z][a-zA-Z0-9]*)*$").unwrap()
});
if PATTERN.find(value).is_none() {
return Err(
"doesn't match pattern \"^(x:)?[a-z][a-zA-Z0-9]*(\\.[a-z][a-zA-Z0-9]*)*$\"".into(),
);
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ClaimType {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ClaimType {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ClaimType {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ClaimType {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///What a peer disclosed, as received. Structurally the same claim set a holder composes and presents — a profile and a contact card are one schema seen from two sides — which is why a maintainer validates both with the same code and a consumer renders both with the same view.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "ContactDocument",
/// "description": "What a peer disclosed, as received. Structurally the same claim set a holder composes and presents — a profile and a contact card are one schema seen from two sides — which is why a maintainer validates both with the same code and a consumer renders both with the same view.",
/// "type": "object",
/// "required": [
/// "claims"
/// ],
/// "properties": {
/// "cardVersion": {
/// "description": "The publisher's own monotonic counter, if they supplied one. Advisory: it orders the publisher's revisions relative to each other and MUST NOT be trusted to order them against anything else.",
/// "type": "integer",
/// "minimum": 1.0
/// },
/// "claims": {
/// "type": "array",
/// "items": {
/// "type": "object",
/// "required": [
/// "type",
/// "value",
/// "valueType"
/// ],
/// "properties": {
/// "provenance": {
/// "description": "As asserted by the publisher. A recipient MUST NOT treat a claimed credentialBacked provenance as verified — it is a statement about what the publisher says backs the claim, and verification is a separate act against the credential itself.",
/// "$ref": "#/definitions/Provenance"
/// },
/// "type": {
/// "$ref": "#/definitions/ClaimType"
/// },
/// "value": {},
/// "valueType": {
/// "$ref": "#/definitions/ValueType"
/// }
/// },
/// "additionalProperties": false
/// },
/// "maxItems": 256
/// },
/// "publisher": {
/// "description": "The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.",
/// "type": "string",
/// "maxLength": 2048
/// }
/// },
/// "additionalProperties": false
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(deny_unknown_fields)]
#[non_exhaustive]
pub struct ContactDocument {
///The publisher's own monotonic counter, if they supplied one. Advisory: it orders the publisher's revisions relative to each other and MUST NOT be trusted to order them against anything else.
#[serde(
rename = "cardVersion",
default,
skip_serializing_if = "::std::option::Option::is_none"
)]
pub card_version: ::std::option::Option<::std::num::NonZeroU64>,
pub claims: ::std::vec::Vec<ContactDocumentClaimsItem>,
///The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
pub publisher: ::std::option::Option<ContactDocumentPublisher>,
}
impl ContactDocument {
pub fn builder() -> builder::ContactDocument {
Default::default()
}
}
///`ContactDocumentClaimsItem`
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "type": "object",
/// "required": [
/// "type",
/// "value",
/// "valueType"
/// ],
/// "properties": {
/// "provenance": {
/// "description": "As asserted by the publisher. A recipient MUST NOT treat a claimed credentialBacked provenance as verified — it is a statement about what the publisher says backs the claim, and verification is a separate act against the credential itself.",
/// "$ref": "#/definitions/Provenance"
/// },
/// "type": {
/// "$ref": "#/definitions/ClaimType"
/// },
/// "value": {},
/// "valueType": {
/// "$ref": "#/definitions/ValueType"
/// }
/// },
/// "additionalProperties": false
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(deny_unknown_fields)]
#[non_exhaustive]
pub struct ContactDocumentClaimsItem {
///As asserted by the publisher. A recipient MUST NOT treat a claimed credentialBacked provenance as verified — it is a statement about what the publisher says backs the claim, and verification is a separate act against the credential itself.
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
pub provenance: ::std::option::Option<Provenance>,
#[serde(rename = "type")]
pub type_: ClaimType,
pub value: ::serde_json::Value,
#[serde(rename = "valueType")]
pub value_type: ValueType,
}
impl ContactDocumentClaimsItem {
pub fn builder() -> builder::ContactDocumentClaimsItem {
Default::default()
}
}
///The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.",
/// "type": "string",
/// "maxLength": 2048
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ContactDocumentPublisher(::std::string::String);
impl ::std::ops::Deref for ContactDocumentPublisher {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ContactDocumentPublisher> for ::std::string::String {
fn from(value: ContactDocumentPublisher) -> Self {
value.0
}
}
impl ::std::str::FromStr for ContactDocumentPublisher {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 2048usize {
return Err("longer than 2048 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ContactDocumentPublisher {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ContactDocumentPublisher {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ContactDocumentPublisher {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ContactDocumentPublisher {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Vendor-namespaced extension object per SPEC.md §4.5.1. Each immediate key MUST be a reverse-DNS namespace; structure under each namespace is opaque to the framework.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "Ext",
/// "description": "Vendor-namespaced extension object per SPEC.md §4.5.1. Each immediate key MUST be a reverse-DNS namespace; structure under each namespace is opaque to the framework.",
/// "type": "object",
/// "minProperties": 1,
/// "additionalProperties": true,
/// "propertyNames": {
/// "pattern": "^[a-z][a-z0-9-]*(\\.[a-z0-9-]+)+$"
/// }
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(transparent)]
pub struct Ext(pub ::std::collections::HashMap<ExtKey, ::serde_json::Value>);
impl ::std::ops::Deref for Ext {
type Target = ::std::collections::HashMap<ExtKey, ::serde_json::Value>;
fn deref(&self) -> &::std::collections::HashMap<ExtKey, ::serde_json::Value> {
&self.0
}
}
impl ::std::convert::From<Ext> for ::std::collections::HashMap<ExtKey, ::serde_json::Value> {
fn from(value: Ext) -> Self {
value.0
}
}
impl ::std::convert::From<::std::collections::HashMap<ExtKey, ::serde_json::Value>> for Ext {
fn from(value: ::std::collections::HashMap<ExtKey, ::serde_json::Value>) -> Self {
Self(value)
}
}
///`ExtKey`
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "type": "string",
/// "pattern": "^[a-z][a-z0-9-]*(\\.[a-z0-9-]+)+$"
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ExtKey(::std::string::String);
impl ::std::ops::Deref for ExtKey {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ExtKey> for ::std::string::String {
fn from(value: ExtKey) -> Self {
value.0
}
}
impl ::std::str::FromStr for ExtKey {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
static PATTERN: ::std::sync::LazyLock<::regress::Regex> =
::std::sync::LazyLock::new(|| {
::regress::Regex::new("^[a-z][a-z0-9-]*(\\.[a-z0-9-]+)+$").unwrap()
});
if PATTERN.find(value).is_none() {
return Err("doesn't match pattern \"^[a-z][a-z0-9-]*(\\.[a-z0-9-]+)+$\"".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ExtKey {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ExtKey {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ExtKey {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ExtKey {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///File what a peer disclosed. Appends a revision; never overwrites, so a changed value is visible as a change rather than arriving silently.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "$id": "https://trusttasks.org/spec/persona/contact/put/1.0",
/// "title": "Payload",
/// "description": "File what a peer disclosed. Appends a revision; never overwrites, so a changed value is visible as a change rather than arriving silently.",
/// "type": "object",
/// "required": [
/// "contextId",
/// "document",
/// "knownByPersona",
/// "subjectDid"
/// ],
/// "properties": {
/// "contextId": {
/// "type": "string",
/// "minLength": 1
/// },
/// "credentialRefs": {
/// "description": "Vault identifiers of credentials the peer presented alongside the document. The credentials themselves belong in the credential vault — two stores for credentials is the mistake this family's existence argues against — and the contact holds references.",
/// "type": "array",
/// "items": {
/// "type": "string",
/// "minLength": 1
/// },
/// "maxItems": 256
/// },
/// "document": {
/// "$ref": "#/definitions/ContactDocument"
/// },
/// "ext": {
/// "$ref": "#/definitions/Ext"
/// },
/// "knownByPersona": {
/// "description": "Which of the holder's personas knows this contact. A contact belongs to the relationship, not to the holder at large — the same peer met through two personas is two contacts, and collapsing them would correlate the holder's own personas in their own address book.",
/// "type": "string",
/// "maxLength": 2048,
/// "minLength": 1
/// },
/// "notes": {
/// "description": "The holder's private note about this contact. Never disclosed to anyone, including the contact.",
/// "type": "string",
/// "maxLength": 4096
/// },
/// "subjectDid": {
/// "description": "The DID the document is about, as disclosed. Normally pairwise, so it names this relationship and not the person across all of theirs.",
/// "type": "string",
/// "maxLength": 2048,
/// "minLength": 1
/// }
/// },
/// "additionalProperties": false
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(deny_unknown_fields)]
#[non_exhaustive]
pub struct Payload {
#[serde(rename = "contextId")]
pub context_id: PayloadContextId,
///Vault identifiers of credentials the peer presented alongside the document. The credentials themselves belong in the credential vault — two stores for credentials is the mistake this family's existence argues against — and the contact holds references.
#[serde(
rename = "credentialRefs",
default,
skip_serializing_if = "::std::vec::Vec::is_empty"
)]
pub credential_refs: ::std::vec::Vec<PayloadCredentialRefsItem>,
pub document: ContactDocument,
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
pub ext: ::std::option::Option<Ext>,
///Which of the holder's personas knows this contact. A contact belongs to the relationship, not to the holder at large — the same peer met through two personas is two contacts, and collapsing them would correlate the holder's own personas in their own address book.
#[serde(rename = "knownByPersona")]
pub known_by_persona: PayloadKnownByPersona,
///The holder's private note about this contact. Never disclosed to anyone, including the contact.
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
pub notes: ::std::option::Option<PayloadNotes>,
///The DID the document is about, as disclosed. Normally pairwise, so it names this relationship and not the person across all of theirs.
#[serde(rename = "subjectDid")]
pub subject_did: PayloadSubjectDid,
}
impl Payload {
pub fn builder() -> builder::Payload {
Default::default()
}
}
///`PayloadContextId`
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "type": "string",
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct PayloadContextId(::std::string::String);
impl ::std::ops::Deref for PayloadContextId {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<PayloadContextId> for ::std::string::String {
fn from(value: PayloadContextId) -> Self {
value.0
}
}
impl ::std::str::FromStr for PayloadContextId {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for PayloadContextId {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for PayloadContextId {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for PayloadContextId {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for PayloadContextId {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///`PayloadCredentialRefsItem`
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "type": "string",
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct PayloadCredentialRefsItem(::std::string::String);
impl ::std::ops::Deref for PayloadCredentialRefsItem {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<PayloadCredentialRefsItem> for ::std::string::String {
fn from(value: PayloadCredentialRefsItem) -> Self {
value.0
}
}
impl ::std::str::FromStr for PayloadCredentialRefsItem {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for PayloadCredentialRefsItem {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for PayloadCredentialRefsItem {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for PayloadCredentialRefsItem {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for PayloadCredentialRefsItem {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Which of the holder's personas knows this contact. A contact belongs to the relationship, not to the holder at large — the same peer met through two personas is two contacts, and collapsing them would correlate the holder's own personas in their own address book.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "Which of the holder's personas knows this contact. A contact belongs to the relationship, not to the holder at large — the same peer met through two personas is two contacts, and collapsing them would correlate the holder's own personas in their own address book.",
/// "type": "string",
/// "maxLength": 2048,
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct PayloadKnownByPersona(::std::string::String);
impl ::std::ops::Deref for PayloadKnownByPersona {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<PayloadKnownByPersona> for ::std::string::String {
fn from(value: PayloadKnownByPersona) -> Self {
value.0
}
}
impl ::std::str::FromStr for PayloadKnownByPersona {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 2048usize {
return Err("longer than 2048 characters".into());
}
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for PayloadKnownByPersona {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for PayloadKnownByPersona {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for PayloadKnownByPersona {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for PayloadKnownByPersona {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///The holder's private note about this contact. Never disclosed to anyone, including the contact.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "The holder's private note about this contact. Never disclosed to anyone, including the contact.",
/// "type": "string",
/// "maxLength": 4096
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct PayloadNotes(::std::string::String);
impl ::std::ops::Deref for PayloadNotes {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<PayloadNotes> for ::std::string::String {
fn from(value: PayloadNotes) -> Self {
value.0
}
}
impl ::std::str::FromStr for PayloadNotes {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 4096usize {
return Err("longer than 4096 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for PayloadNotes {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for PayloadNotes {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for PayloadNotes {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for PayloadNotes {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///The DID the document is about, as disclosed. Normally pairwise, so it names this relationship and not the person across all of theirs.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "The DID the document is about, as disclosed. Normally pairwise, so it names this relationship and not the person across all of theirs.",
/// "type": "string",
/// "maxLength": 2048,
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct PayloadSubjectDid(::std::string::String);
impl ::std::ops::Deref for PayloadSubjectDid {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<PayloadSubjectDid> for ::std::string::String {
fn from(value: PayloadSubjectDid) -> Self {
value.0
}
}
impl ::std::str::FromStr for PayloadSubjectDid {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 2048usize {
return Err("longer than 2048 characters".into());
}
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for PayloadSubjectDid {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for PayloadSubjectDid {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for PayloadSubjectDid {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for PayloadSubjectDid {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
/**
How strongly a credential-backed claim is hidden when presented, ordered most private first. `predicate` proves a statement over a claim without disclosing the claim. `derived` discloses exactly the claims needed via an unlinkable derived proof, so two presentations cannot be joined. `selectiveDisclosure` discloses exactly the claims needed but carries the issuer's signature unchanged, so two presentations ARE linkable. `whole` discloses the entire credential.
The distinction between the first two and the last two is of kind, not degree: only `predicate` and `derived` avoid handing two verifiers a join key. A maintainer MUST default to the highest rung the credential's format supports, and MUST NOT silently fall to a lower one — a request that cannot be satisfied at the rung a producer asked for is refused, because a silent privacy downgrade discloses material the holder believed was hidden.*/
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "ProofRung",
/// "description": "\nHow strongly a credential-backed claim is hidden when presented, ordered most private first. `predicate` proves a statement over a claim without disclosing the claim. `derived` discloses exactly the claims needed via an unlinkable derived proof, so two presentations cannot be joined. `selectiveDisclosure` discloses exactly the claims needed but carries the issuer's signature unchanged, so two presentations ARE linkable. `whole` discloses the entire credential.\n\nThe distinction between the first two and the last two is of kind, not degree: only `predicate` and `derived` avoid handing two verifiers a join key. A maintainer MUST default to the highest rung the credential's format supports, and MUST NOT silently fall to a lower one — a request that cannot be satisfied at the rung a producer asked for is refused, because a silent privacy downgrade discloses material the holder believed was hidden.",
/// "type": "string",
/// "enum": [
/// "predicate",
/// "derived",
/// "selectiveDisclosure",
/// "whole"
/// ]
///}
/// ```
/// </details>
#[derive(
::serde::Deserialize,
::serde::Serialize,
Clone,
Copy,
Debug,
Eq,
Hash,
Ord,
PartialEq,
PartialOrd,
)]
#[non_exhaustive]
pub enum ProofRung {
#[serde(rename = "predicate")]
Predicate,
#[serde(rename = "derived")]
Derived,
#[serde(rename = "selectiveDisclosure")]
SelectiveDisclosure,
#[serde(rename = "whole")]
Whole,
}
impl ::std::fmt::Display for ProofRung {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
match *self {
Self::Predicate => f.write_str("predicate"),
Self::Derived => f.write_str("derived"),
Self::SelectiveDisclosure => f.write_str("selectiveDisclosure"),
Self::Whole => f.write_str("whole"),
}
}
}
impl ::std::str::FromStr for ProofRung {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
match value {
"predicate" => Ok(Self::Predicate),
"derived" => Ok(Self::Derived),
"selectiveDisclosure" => Ok(Self::SelectiveDisclosure),
"whole" => Ok(Self::Whole),
_ => Err("invalid value".into()),
}
}
}
impl ::std::convert::TryFrom<&str> for ProofRung {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProofRung {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProofRung {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
/**
Where a value comes from, and the member that makes this family worth building on a trust stack rather than in an address book. It survives to the verifier, so a recipient can tell — per field — what the holder typed from what an issuer attested.
`selfAsserted` — the holder supplied it.
`credentialBacked` — the value is derived from a credential in the vault at `claimPath`. The stored value is a CACHE FOR DISPLAY; the credential is the truth. A maintainer MUST re-derive it on read and MUST fail closed (never presenting a stale value) when the credential has been revoked, has expired, or has been archived or deleted.
`generated` — the value is minted per verifier at disclosure time and recorded against that verifier, so every relying party receives a different one that routes back to the holder. This is the shape of the most widely adopted consumer privacy feature in this space; a maintainer need not operate a relay to conform, but the shape must exist, because retrofitting per-verifier values into a pool-of-values model is a migration rather than an addition.
`derived` — the value was taken from a source the holder connected or supplied — a code-hosting profile, an uploaded CV — rather than typed by them or attested by an issuer. Nobody signed it: it is the holder's claim that the source said so, and a consumer MUST NOT present it as attested. It exists as its own kind because a derived value is neither of the others — the holder did not author it, and no one vouches for it — and a holder deciding whether to disclose deserves to know which of their values they typed.
For how strongly a disclosed value identifies the holder, the kinds rank `credentialBacked` above `derived` above `selfAsserted`; `generated` values are per-verifier and do not correlate.*/
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "Provenance",
/// "description": "\nWhere a value comes from, and the member that makes this family worth building on a trust stack rather than in an address book. It survives to the verifier, so a recipient can tell — per field — what the holder typed from what an issuer attested.\n\n`selfAsserted` — the holder supplied it.\n\n`credentialBacked` — the value is derived from a credential in the vault at `claimPath`. The stored value is a CACHE FOR DISPLAY; the credential is the truth. A maintainer MUST re-derive it on read and MUST fail closed (never presenting a stale value) when the credential has been revoked, has expired, or has been archived or deleted.\n\n`generated` — the value is minted per verifier at disclosure time and recorded against that verifier, so every relying party receives a different one that routes back to the holder. This is the shape of the most widely adopted consumer privacy feature in this space; a maintainer need not operate a relay to conform, but the shape must exist, because retrofitting per-verifier values into a pool-of-values model is a migration rather than an addition.\n\n`derived` — the value was taken from a source the holder connected or supplied — a code-hosting profile, an uploaded CV — rather than typed by them or attested by an issuer. Nobody signed it: it is the holder's claim that the source said so, and a consumer MUST NOT present it as attested. It exists as its own kind because a derived value is neither of the others — the holder did not author it, and no one vouches for it — and a holder deciding whether to disclose deserves to know which of their values they typed.\n\nFor how strongly a disclosed value identifies the holder, the kinds rank `credentialBacked` above `derived` above `selfAsserted`; `generated` values are per-verifier and do not correlate.",
/// "type": "object",
/// "oneOf": [
/// {
/// "required": [
/// "kind"
/// ],
/// "properties": {
/// "kind": {
/// "const": "selfAsserted"
/// }
/// },
/// "additionalProperties": false
/// },
/// {
/// "required": [
/// "claimPath",
/// "credentialId",
/// "kind"
/// ],
/// "properties": {
/// "claimPath": {
/// "description": "RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.",
/// "type": "string",
/// "pattern": "^(/[^/~]*(~[01][^/~]*)*)*$"
/// },
/// "credentialId": {
/// "description": "Vault identifier of the backing credential.",
/// "type": "string",
/// "minLength": 1
/// },
/// "issuerDid": {
/// "description": "Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.",
/// "type": "string",
/// "minLength": 1
/// },
/// "kind": {
/// "const": "credentialBacked"
/// },
/// "proof": {
/// "description": "The disclosure rung this claim was, or will be, presented at.",
/// "$ref": "#/definitions/ProofRung"
/// }
/// },
/// "additionalProperties": false
/// },
/// {
/// "required": [
/// "generator",
/// "kind"
/// ],
/// "properties": {
/// "generator": {
/// "description": "Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.",
/// "type": "string",
/// "maxLength": 64,
/// "minLength": 1
/// },
/// "kind": {
/// "const": "generated"
/// },
/// "perVerifier": {
/// "description": "When true (the default and the only useful setting), a distinct value is minted for each verifier.",
/// "default": true,
/// "type": "boolean"
/// }
/// },
/// "additionalProperties": false
/// },
/// {
/// "required": [
/// "derivedAt",
/// "kind",
/// "source"
/// ],
/// "properties": {
/// "derivedAt": {
/// "description": "When the value was taken from the source. A derived value is a snapshot: the source may have changed since, and nothing re-derives it.",
/// "type": "string",
/// "format": "date-time"
/// },
/// "kind": {
/// "const": "derived"
/// },
/// "source": {
/// "description": "The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.",
/// "type": "string",
/// "maxLength": 64,
/// "minLength": 1,
/// "pattern": "^[a-z][A-Za-z0-9.-]*$"
/// }
/// },
/// "additionalProperties": false
/// }
/// ],
/// "required": [
/// "kind"
/// ]
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(untagged, deny_unknown_fields)]
#[non_exhaustive]
pub enum Provenance {
Variant0 {
kind: ::serde_json::Value,
},
Variant1 {
///RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.
#[serde(rename = "claimPath")]
claim_path: ProvenanceVariant1ClaimPath,
///Vault identifier of the backing credential.
#[serde(rename = "credentialId")]
credential_id: ProvenanceVariant1CredentialId,
///Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.
#[serde(
rename = "issuerDid",
default,
skip_serializing_if = "::std::option::Option::is_none"
)]
issuer_did: ::std::option::Option<ProvenanceVariant1IssuerDid>,
kind: ::serde_json::Value,
///The disclosure rung this claim was, or will be, presented at.
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
proof: ::std::option::Option<ProofRung>,
},
Variant2 {
///Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.
generator: ProvenanceVariant2Generator,
kind: ::serde_json::Value,
///When true (the default and the only useful setting), a distinct value is minted for each verifier.
#[serde(rename = "perVerifier", default = "defaults::default_bool::<true>")]
per_verifier: bool,
},
Variant3 {
///When the value was taken from the source. A derived value is a snapshot: the source may have changed since, and nothing re-derives it.
#[serde(rename = "derivedAt")]
derived_at: ::chrono::DateTime<::chrono::offset::Utc>,
kind: ::serde_json::Value,
///The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.
source: ProvenanceVariant3Source,
},
}
///RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.",
/// "type": "string",
/// "pattern": "^(/[^/~]*(~[01][^/~]*)*)*$"
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ProvenanceVariant1ClaimPath(::std::string::String);
impl ::std::ops::Deref for ProvenanceVariant1ClaimPath {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ProvenanceVariant1ClaimPath> for ::std::string::String {
fn from(value: ProvenanceVariant1ClaimPath) -> Self {
value.0
}
}
impl ::std::str::FromStr for ProvenanceVariant1ClaimPath {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
static PATTERN: ::std::sync::LazyLock<::regress::Regex> =
::std::sync::LazyLock::new(|| {
::regress::Regex::new("^(/[^/~]*(~[01][^/~]*)*)*$").unwrap()
});
if PATTERN.find(value).is_none() {
return Err("doesn't match pattern \"^(/[^/~]*(~[01][^/~]*)*)*$\"".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ProvenanceVariant1ClaimPath {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProvenanceVariant1ClaimPath {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProvenanceVariant1ClaimPath {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ProvenanceVariant1ClaimPath {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Vault identifier of the backing credential.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "Vault identifier of the backing credential.",
/// "type": "string",
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ProvenanceVariant1CredentialId(::std::string::String);
impl ::std::ops::Deref for ProvenanceVariant1CredentialId {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ProvenanceVariant1CredentialId> for ::std::string::String {
fn from(value: ProvenanceVariant1CredentialId) -> Self {
value.0
}
}
impl ::std::str::FromStr for ProvenanceVariant1CredentialId {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ProvenanceVariant1CredentialId {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProvenanceVariant1CredentialId {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProvenanceVariant1CredentialId {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ProvenanceVariant1CredentialId {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.",
/// "type": "string",
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ProvenanceVariant1IssuerDid(::std::string::String);
impl ::std::ops::Deref for ProvenanceVariant1IssuerDid {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ProvenanceVariant1IssuerDid> for ::std::string::String {
fn from(value: ProvenanceVariant1IssuerDid) -> Self {
value.0
}
}
impl ::std::str::FromStr for ProvenanceVariant1IssuerDid {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ProvenanceVariant1IssuerDid {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProvenanceVariant1IssuerDid {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProvenanceVariant1IssuerDid {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ProvenanceVariant1IssuerDid {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.",
/// "type": "string",
/// "maxLength": 64,
/// "minLength": 1
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ProvenanceVariant2Generator(::std::string::String);
impl ::std::ops::Deref for ProvenanceVariant2Generator {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ProvenanceVariant2Generator> for ::std::string::String {
fn from(value: ProvenanceVariant2Generator) -> Self {
value.0
}
}
impl ::std::str::FromStr for ProvenanceVariant2Generator {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 64usize {
return Err("longer than 64 characters".into());
}
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ProvenanceVariant2Generator {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProvenanceVariant2Generator {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProvenanceVariant2Generator {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ProvenanceVariant2Generator {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "description": "The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.",
/// "type": "string",
/// "maxLength": 64,
/// "minLength": 1,
/// "pattern": "^[a-z][A-Za-z0-9.-]*$"
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct ProvenanceVariant3Source(::std::string::String);
impl ::std::ops::Deref for ProvenanceVariant3Source {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<ProvenanceVariant3Source> for ::std::string::String {
fn from(value: ProvenanceVariant3Source) -> Self {
value.0
}
}
impl ::std::str::FromStr for ProvenanceVariant3Source {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
if value.chars().count() > 64usize {
return Err("longer than 64 characters".into());
}
if value.chars().count() < 1usize {
return Err("shorter than 1 characters".into());
}
static PATTERN: ::std::sync::LazyLock<::regress::Regex> =
::std::sync::LazyLock::new(|| ::regress::Regex::new("^[a-z][A-Za-z0-9.-]*$").unwrap());
if PATTERN.find(value).is_none() {
return Err("doesn't match pattern \"^[a-z][A-Za-z0-9.-]*$\"".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for ProvenanceVariant3Source {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ProvenanceVariant3Source {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ProvenanceVariant3Source {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for ProvenanceVariant3Source {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///Success response to persona/contact/put. Type https://trusttasks.org/spec/persona/contact/put/1.0#response.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "Response",
/// "description": "Success response to persona/contact/put. Type https://trusttasks.org/spec/persona/contact/put/1.0#response.",
/// "type": "object",
/// "required": [
/// "contactId",
/// "created",
/// "rev"
/// ],
/// "properties": {
/// "changedClaims": {
/// "description": "Claim types whose value differs from the previous revision. Present only on an update. This is the member that turns revisioning into a defence rather than an archive: a producer can tell the holder that a payment address changed four minutes ago, which is the moment the change matters.",
/// "type": "array",
/// "items": {
/// "$ref": "#/definitions/ClaimType"
/// },
/// "maxItems": 256
/// },
/// "contactId": {
/// "$ref": "#/definitions/Ulid"
/// },
/// "created": {
/// "description": "True when this is the first revision for the subject.",
/// "type": "boolean"
/// },
/// "ext": {
/// "$ref": "#/definitions/Ext"
/// },
/// "rev": {
/// "type": "integer",
/// "minimum": 1.0
/// }
/// },
/// "additionalProperties": false,
/// "$anchor": "response"
///}
/// ```
/// </details>
#[derive(::serde::Deserialize, ::serde::Serialize, Clone, Debug)]
#[serde(deny_unknown_fields)]
#[non_exhaustive]
pub struct Response {
///Claim types whose value differs from the previous revision. Present only on an update. This is the member that turns revisioning into a defence rather than an archive: a producer can tell the holder that a payment address changed four minutes ago, which is the moment the change matters.
#[serde(
rename = "changedClaims",
default,
skip_serializing_if = "::std::vec::Vec::is_empty"
)]
pub changed_claims: ::std::vec::Vec<ClaimType>,
#[serde(rename = "contactId")]
pub contact_id: Ulid,
///True when this is the first revision for the subject.
pub created: bool,
#[serde(default, skip_serializing_if = "::std::option::Option::is_none")]
pub ext: ::std::option::Option<Ext>,
pub rev: ::std::num::NonZeroU64,
}
impl Response {
pub fn builder() -> builder::Response {
Default::default()
}
}
///A ULID in Crockford base32, uppercase. Used for `attributeId` and `profileId`. Chosen over a UUID because the leading 48 bits are a timestamp, so a key-ordered scan of the store is also creation-ordered and a `list` needs no secondary sort. Server-assigned on create; a producer MAY supply one to make a create idempotent, and a maintainer MUST reject a supplied value that already exists rather than silently overwriting.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "Ulid",
/// "description": "A ULID in Crockford base32, uppercase. Used for `attributeId` and `profileId`. Chosen over a UUID because the leading 48 bits are a timestamp, so a key-ordered scan of the store is also creation-ordered and a `list` needs no secondary sort. Server-assigned on create; a producer MAY supply one to make a create idempotent, and a maintainer MUST reject a supplied value that already exists rather than silently overwriting.",
/// "type": "string",
/// "pattern": "^[0-9A-HJKMNP-TV-Z]{26}$"
///}
/// ```
/// </details>
#[derive(::serde::Serialize, Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[serde(transparent)]
pub struct Ulid(::std::string::String);
impl ::std::ops::Deref for Ulid {
type Target = ::std::string::String;
fn deref(&self) -> &::std::string::String {
&self.0
}
}
impl ::std::convert::From<Ulid> for ::std::string::String {
fn from(value: Ulid) -> Self {
value.0
}
}
impl ::std::str::FromStr for Ulid {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
static PATTERN: ::std::sync::LazyLock<::regress::Regex> =
::std::sync::LazyLock::new(|| {
::regress::Regex::new("^[0-9A-HJKMNP-TV-Z]{26}$").unwrap()
});
if PATTERN.find(value).is_none() {
return Err("doesn't match pattern \"^[0-9A-HJKMNP-TV-Z]{26}$\"".into());
}
Ok(Self(value.to_string()))
}
}
impl ::std::convert::TryFrom<&str> for Ulid {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for Ulid {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for Ulid {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl<'de> ::serde::Deserialize<'de> for Ulid {
fn deserialize<D>(deserializer: D) -> ::std::result::Result<Self, D::Error>
where
D: ::serde::Deserializer<'de>,
{
::std::string::String::deserialize(deserializer)?
.parse()
.map_err(|e: self::error::ConversionError| {
<D::Error as ::serde::de::Error>::custom(e.to_string())
})
}
}
///The JSON shape of `value`, declared so that a consumer can render and compare without guessing. The maintainer validates that `value` agrees with this member and does nothing further: it does NOT validate a phone number against a phone-number grammar. That is a producer's affordance, and a store that grows opinions about the contents of its records eventually blocks its consumer's release.
///
/// <details><summary>JSON schema</summary>
///
/// ```json
///{
/// "title": "ValueType",
/// "description": "The JSON shape of `value`, declared so that a consumer can render and compare without guessing. The maintainer validates that `value` agrees with this member and does nothing further: it does NOT validate a phone number against a phone-number grammar. That is a producer's affordance, and a store that grows opinions about the contents of its records eventually blocks its consumer's release.",
/// "type": "string",
/// "enum": [
/// "string",
/// "number",
/// "boolean",
/// "date",
/// "object"
/// ]
///}
/// ```
/// </details>
#[derive(
::serde::Deserialize,
::serde::Serialize,
Clone,
Copy,
Debug,
Eq,
Hash,
Ord,
PartialEq,
PartialOrd,
)]
#[non_exhaustive]
pub enum ValueType {
#[serde(rename = "string")]
String,
#[serde(rename = "number")]
Number,
#[serde(rename = "boolean")]
Boolean,
#[serde(rename = "date")]
Date,
#[serde(rename = "object")]
Object,
}
impl ::std::fmt::Display for ValueType {
fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
match *self {
Self::String => f.write_str("string"),
Self::Number => f.write_str("number"),
Self::Boolean => f.write_str("boolean"),
Self::Date => f.write_str("date"),
Self::Object => f.write_str("object"),
}
}
}
impl ::std::str::FromStr for ValueType {
type Err = self::error::ConversionError;
fn from_str(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
match value {
"string" => Ok(Self::String),
"number" => Ok(Self::Number),
"boolean" => Ok(Self::Boolean),
"date" => Ok(Self::Date),
"object" => Ok(Self::Object),
_ => Err("invalid value".into()),
}
}
}
impl ::std::convert::TryFrom<&str> for ValueType {
type Error = self::error::ConversionError;
fn try_from(value: &str) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<&::std::string::String> for ValueType {
type Error = self::error::ConversionError;
fn try_from(
value: &::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
impl ::std::convert::TryFrom<::std::string::String> for ValueType {
type Error = self::error::ConversionError;
fn try_from(
value: ::std::string::String,
) -> ::std::result::Result<Self, self::error::ConversionError> {
value.parse()
}
}
/// Types for composing complex structures.
pub mod builder {
#[derive(Clone, Debug)]
pub struct ContactDocument {
card_version: ::std::result::Result<
::std::option::Option<::std::num::NonZeroU64>,
::std::string::String,
>,
claims: ::std::result::Result<
::std::vec::Vec<super::ContactDocumentClaimsItem>,
::std::string::String,
>,
publisher: ::std::result::Result<
::std::option::Option<super::ContactDocumentPublisher>,
::std::string::String,
>,
}
impl ::std::default::Default for ContactDocument {
fn default() -> Self {
Self {
card_version: Ok(Default::default()),
claims: Err("no value supplied for claims".to_string()),
publisher: Ok(Default::default()),
}
}
}
impl ContactDocument {
pub fn card_version<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<::std::num::NonZeroU64>>,
T::Error: ::std::fmt::Display,
{
self.card_version = value
.try_into()
.map_err(|e| format!("error converting supplied value for card_version: {e}"));
self
}
pub fn claims<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::vec::Vec<super::ContactDocumentClaimsItem>>,
T::Error: ::std::fmt::Display,
{
self.claims = value
.try_into()
.map_err(|e| format!("error converting supplied value for claims: {e}"));
self
}
pub fn publisher<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<super::ContactDocumentPublisher>>,
T::Error: ::std::fmt::Display,
{
self.publisher = value
.try_into()
.map_err(|e| format!("error converting supplied value for publisher: {e}"));
self
}
}
impl ::std::convert::TryFrom<ContactDocument> for super::ContactDocument {
type Error = super::error::ConversionError;
fn try_from(
value: ContactDocument,
) -> ::std::result::Result<Self, super::error::ConversionError> {
Ok(Self {
card_version: value.card_version?,
claims: value.claims?,
publisher: value.publisher?,
})
}
}
impl ::std::convert::From<super::ContactDocument> for ContactDocument {
fn from(value: super::ContactDocument) -> Self {
Self {
card_version: Ok(value.card_version),
claims: Ok(value.claims),
publisher: Ok(value.publisher),
}
}
}
#[derive(Clone, Debug)]
pub struct ContactDocumentClaimsItem {
provenance:
::std::result::Result<::std::option::Option<super::Provenance>, ::std::string::String>,
type_: ::std::result::Result<super::ClaimType, ::std::string::String>,
value: ::std::result::Result<::serde_json::Value, ::std::string::String>,
value_type: ::std::result::Result<super::ValueType, ::std::string::String>,
}
impl ::std::default::Default for ContactDocumentClaimsItem {
fn default() -> Self {
Self {
provenance: Ok(Default::default()),
type_: Err("no value supplied for type_".to_string()),
value: Err("no value supplied for value".to_string()),
value_type: Err("no value supplied for value_type".to_string()),
}
}
}
impl ContactDocumentClaimsItem {
pub fn provenance<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<super::Provenance>>,
T::Error: ::std::fmt::Display,
{
self.provenance = value
.try_into()
.map_err(|e| format!("error converting supplied value for provenance: {e}"));
self
}
pub fn type_<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::ClaimType>,
T::Error: ::std::fmt::Display,
{
self.type_ = value
.try_into()
.map_err(|e| format!("error converting supplied value for type_: {e}"));
self
}
pub fn value<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::serde_json::Value>,
T::Error: ::std::fmt::Display,
{
self.value = value
.try_into()
.map_err(|e| format!("error converting supplied value for value: {e}"));
self
}
pub fn value_type<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::ValueType>,
T::Error: ::std::fmt::Display,
{
self.value_type = value
.try_into()
.map_err(|e| format!("error converting supplied value for value_type: {e}"));
self
}
}
impl ::std::convert::TryFrom<ContactDocumentClaimsItem> for super::ContactDocumentClaimsItem {
type Error = super::error::ConversionError;
fn try_from(
value: ContactDocumentClaimsItem,
) -> ::std::result::Result<Self, super::error::ConversionError> {
Ok(Self {
provenance: value.provenance?,
type_: value.type_?,
value: value.value?,
value_type: value.value_type?,
})
}
}
impl ::std::convert::From<super::ContactDocumentClaimsItem> for ContactDocumentClaimsItem {
fn from(value: super::ContactDocumentClaimsItem) -> Self {
Self {
provenance: Ok(value.provenance),
type_: Ok(value.type_),
value: Ok(value.value),
value_type: Ok(value.value_type),
}
}
}
#[derive(Clone, Debug)]
pub struct Payload {
context_id: ::std::result::Result<super::PayloadContextId, ::std::string::String>,
credential_refs: ::std::result::Result<
::std::vec::Vec<super::PayloadCredentialRefsItem>,
::std::string::String,
>,
document: ::std::result::Result<super::ContactDocument, ::std::string::String>,
ext: ::std::result::Result<::std::option::Option<super::Ext>, ::std::string::String>,
known_by_persona:
::std::result::Result<super::PayloadKnownByPersona, ::std::string::String>,
notes: ::std::result::Result<
::std::option::Option<super::PayloadNotes>,
::std::string::String,
>,
subject_did: ::std::result::Result<super::PayloadSubjectDid, ::std::string::String>,
}
impl ::std::default::Default for Payload {
fn default() -> Self {
Self {
context_id: Err("no value supplied for context_id".to_string()),
credential_refs: Ok(Default::default()),
document: Err("no value supplied for document".to_string()),
ext: Ok(Default::default()),
known_by_persona: Err("no value supplied for known_by_persona".to_string()),
notes: Ok(Default::default()),
subject_did: Err("no value supplied for subject_did".to_string()),
}
}
}
impl Payload {
pub fn context_id<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::PayloadContextId>,
T::Error: ::std::fmt::Display,
{
self.context_id = value
.try_into()
.map_err(|e| format!("error converting supplied value for context_id: {e}"));
self
}
pub fn credential_refs<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::vec::Vec<super::PayloadCredentialRefsItem>>,
T::Error: ::std::fmt::Display,
{
self.credential_refs = value
.try_into()
.map_err(|e| format!("error converting supplied value for credential_refs: {e}"));
self
}
pub fn document<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::ContactDocument>,
T::Error: ::std::fmt::Display,
{
self.document = value
.try_into()
.map_err(|e| format!("error converting supplied value for document: {e}"));
self
}
pub fn ext<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<super::Ext>>,
T::Error: ::std::fmt::Display,
{
self.ext = value
.try_into()
.map_err(|e| format!("error converting supplied value for ext: {e}"));
self
}
pub fn known_by_persona<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::PayloadKnownByPersona>,
T::Error: ::std::fmt::Display,
{
self.known_by_persona = value
.try_into()
.map_err(|e| format!("error converting supplied value for known_by_persona: {e}"));
self
}
pub fn notes<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<super::PayloadNotes>>,
T::Error: ::std::fmt::Display,
{
self.notes = value
.try_into()
.map_err(|e| format!("error converting supplied value for notes: {e}"));
self
}
pub fn subject_did<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::PayloadSubjectDid>,
T::Error: ::std::fmt::Display,
{
self.subject_did = value
.try_into()
.map_err(|e| format!("error converting supplied value for subject_did: {e}"));
self
}
}
impl ::std::convert::TryFrom<Payload> for super::Payload {
type Error = super::error::ConversionError;
fn try_from(value: Payload) -> ::std::result::Result<Self, super::error::ConversionError> {
Ok(Self {
context_id: value.context_id?,
credential_refs: value.credential_refs?,
document: value.document?,
ext: value.ext?,
known_by_persona: value.known_by_persona?,
notes: value.notes?,
subject_did: value.subject_did?,
})
}
}
impl ::std::convert::From<super::Payload> for Payload {
fn from(value: super::Payload) -> Self {
Self {
context_id: Ok(value.context_id),
credential_refs: Ok(value.credential_refs),
document: Ok(value.document),
ext: Ok(value.ext),
known_by_persona: Ok(value.known_by_persona),
notes: Ok(value.notes),
subject_did: Ok(value.subject_did),
}
}
}
#[derive(Clone, Debug)]
pub struct Response {
changed_claims:
::std::result::Result<::std::vec::Vec<super::ClaimType>, ::std::string::String>,
contact_id: ::std::result::Result<super::Ulid, ::std::string::String>,
created: ::std::result::Result<bool, ::std::string::String>,
ext: ::std::result::Result<::std::option::Option<super::Ext>, ::std::string::String>,
rev: ::std::result::Result<::std::num::NonZeroU64, ::std::string::String>,
}
impl ::std::default::Default for Response {
fn default() -> Self {
Self {
changed_claims: Ok(Default::default()),
contact_id: Err("no value supplied for contact_id".to_string()),
created: Err("no value supplied for created".to_string()),
ext: Ok(Default::default()),
rev: Err("no value supplied for rev".to_string()),
}
}
}
impl Response {
pub fn changed_claims<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::vec::Vec<super::ClaimType>>,
T::Error: ::std::fmt::Display,
{
self.changed_claims = value
.try_into()
.map_err(|e| format!("error converting supplied value for changed_claims: {e}"));
self
}
pub fn contact_id<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<super::Ulid>,
T::Error: ::std::fmt::Display,
{
self.contact_id = value
.try_into()
.map_err(|e| format!("error converting supplied value for contact_id: {e}"));
self
}
pub fn created<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<bool>,
T::Error: ::std::fmt::Display,
{
self.created = value
.try_into()
.map_err(|e| format!("error converting supplied value for created: {e}"));
self
}
pub fn ext<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::option::Option<super::Ext>>,
T::Error: ::std::fmt::Display,
{
self.ext = value
.try_into()
.map_err(|e| format!("error converting supplied value for ext: {e}"));
self
}
pub fn rev<T>(mut self, value: T) -> Self
where
T: ::std::convert::TryInto<::std::num::NonZeroU64>,
T::Error: ::std::fmt::Display,
{
self.rev = value
.try_into()
.map_err(|e| format!("error converting supplied value for rev: {e}"));
self
}
}
impl ::std::convert::TryFrom<Response> for super::Response {
type Error = super::error::ConversionError;
fn try_from(value: Response) -> ::std::result::Result<Self, super::error::ConversionError> {
Ok(Self {
changed_claims: value.changed_claims?,
contact_id: value.contact_id?,
created: value.created?,
ext: value.ext?,
rev: value.rev?,
})
}
}
impl ::std::convert::From<super::Response> for Response {
fn from(value: super::Response) -> Self {
Self {
changed_claims: Ok(value.changed_claims),
contact_id: Ok(value.contact_id),
created: Ok(value.created),
ext: Ok(value.ext),
rev: Ok(value.rev),
}
}
}
}
/// Generation of default values for serde.
pub mod defaults {
pub(super) fn default_bool<const V: bool>() -> bool {
V
}
}
impl crate::Payload for Payload {
const TYPE_URI: &'static str = "https://trusttasks.org/spec/persona/contact/put/1.0";
const IS_PROOF_REQUIRED: bool = true;
const IS_ISSUED_AT_REQUIRED: bool = true;
const IS_RECIPIENT_REQUIRED: bool = true;
const PAYLOAD_SCHEMA: Option<&'static str> = Some(
"{\n \"$defs\": {\n \"ClaimType\": {\n \"description\": \"The vocabulary token naming what a value IS — `name.legal`, `phone.mobile`, `address.postal`, `person.birthDate`. Dotted, most-general segment first, so that a consumer with no knowledge of the specific token can still group by its prefix.\\n\\nThe token is the maintainer's own; no external vocabulary is primary. External vocabularies (vCard/jCard, OIDC standard claims, schema.org) are mappings applied at PRESENTATION by a renderer, not at rest, so that a query written in any of them can be matched without the store having to live inside any one of them.\\n\\nThe `x:` prefix is an open extension namespace and is not decoration. The closest prior art — Windows CardSpace's self-issued card — supported exactly fifteen predefined claim types with no extensibility, and that is the specific way it failed the requirement a holder actually has. An `x:` attribute stores, composes, binds and discloses exactly like a known one; it renders generically and matches only an explicit query.\",\n \"maxLength\": 128,\n \"minLength\": 1,\n \"pattern\": \"^(x:)?[a-z][a-zA-Z0-9]*(\\\\.[a-z][a-zA-Z0-9]*)*$\",\n \"title\": \"ClaimType\",\n \"type\": \"string\"\n },\n \"ContactDocument\": {\n \"additionalProperties\": false,\n \"description\": \"What a peer disclosed, as received. Structurally the same claim set a holder composes and presents — a profile and a contact card are one schema seen from two sides — which is why a maintainer validates both with the same code and a consumer renders both with the same view.\",\n \"properties\": {\n \"cardVersion\": {\n \"description\": \"The publisher's own monotonic counter, if they supplied one. Advisory: it orders the publisher's revisions relative to each other and MUST NOT be trusted to order them against anything else.\",\n \"minimum\": 1,\n \"type\": \"integer\"\n },\n \"claims\": {\n \"items\": {\n \"additionalProperties\": false,\n \"properties\": {\n \"provenance\": {\n \"$ref\": \"#/$defs/Provenance\",\n \"description\": \"As asserted by the publisher. A recipient MUST NOT treat a claimed credentialBacked provenance as verified — it is a statement about what the publisher says backs the claim, and verification is a separate act against the credential itself.\"\n },\n \"type\": {\n \"$ref\": \"#/$defs/ClaimType\"\n },\n \"value\": {},\n \"valueType\": {\n \"$ref\": \"#/$defs/ValueType\"\n }\n },\n \"required\": [\n \"type\",\n \"valueType\",\n \"value\"\n ],\n \"type\": \"object\"\n },\n \"maxItems\": 256,\n \"type\": \"array\"\n },\n \"publisher\": {\n \"description\": \"The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.\",\n \"maxLength\": 2048,\n \"type\": \"string\"\n }\n },\n \"required\": [\n \"claims\"\n ],\n \"title\": \"ContactDocument\",\n \"type\": \"object\"\n },\n \"Ext\": {\n \"additionalProperties\": true,\n \"description\": \"Vendor-namespaced extension object per SPEC.md §4.5.1. Each immediate key MUST be a reverse-DNS namespace; structure under each namespace is opaque to the framework.\",\n \"minProperties\": 1,\n \"propertyNames\": {\n \"pattern\": \"^[a-z][a-z0-9-]*(\\\\.[a-z0-9-]+)+$\"\n },\n \"title\": \"Ext\",\n \"type\": \"object\"\n },\n \"ProofRung\": {\n \"description\": \"How strongly a credential-backed claim is hidden when presented, ordered most private first. `predicate` proves a statement over a claim without disclosing the claim. `derived` discloses exactly the claims needed via an unlinkable derived proof, so two presentations cannot be joined. `selectiveDisclosure` discloses exactly the claims needed but carries the issuer's signature unchanged, so two presentations ARE linkable. `whole` discloses the entire credential.\\n\\nThe distinction between the first two and the last two is of kind, not degree: only `predicate` and `derived` avoid handing two verifiers a join key. A maintainer MUST default to the highest rung the credential's format supports, and MUST NOT silently fall to a lower one — a request that cannot be satisfied at the rung a producer asked for is refused, because a silent privacy downgrade discloses material the holder believed was hidden.\",\n \"enum\": [\n \"predicate\",\n \"derived\",\n \"selectiveDisclosure\",\n \"whole\"\n ],\n \"title\": \"ProofRung\",\n \"type\": \"string\"\n },\n \"Provenance\": {\n \"description\": \"Where a value comes from, and the member that makes this family worth building on a trust stack rather than in an address book. It survives to the verifier, so a recipient can tell — per field — what the holder typed from what an issuer attested.\\n\\n`selfAsserted` — the holder supplied it.\\n\\n`credentialBacked` — the value is derived from a credential in the vault at `claimPath`. The stored value is a CACHE FOR DISPLAY; the credential is the truth. A maintainer MUST re-derive it on read and MUST fail closed (never presenting a stale value) when the credential has been revoked, has expired, or has been archived or deleted.\\n\\n`generated` — the value is minted per verifier at disclosure time and recorded against that verifier, so every relying party receives a different one that routes back to the holder. This is the shape of the most widely adopted consumer privacy feature in this space; a maintainer need not operate a relay to conform, but the shape must exist, because retrofitting per-verifier values into a pool-of-values model is a migration rather than an addition.\\n\\n`derived` — the value was taken from a source the holder connected or supplied — a code-hosting profile, an uploaded CV — rather than typed by them or attested by an issuer. Nobody signed it: it is the holder's claim that the source said so, and a consumer MUST NOT present it as attested. It exists as its own kind because a derived value is neither of the others — the holder did not author it, and no one vouches for it — and a holder deciding whether to disclose deserves to know which of their values they typed.\\n\\nFor how strongly a disclosed value identifies the holder, the kinds rank `credentialBacked` above `derived` above `selfAsserted`; `generated` values are per-verifier and do not correlate.\",\n \"oneOf\": [\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"kind\": {\n \"const\": \"selfAsserted\"\n }\n },\n \"required\": [\n \"kind\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"claimPath\": {\n \"description\": \"RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.\",\n \"pattern\": \"^(/[^/~]*(~[01][^/~]*)*)*$\",\n \"type\": \"string\"\n },\n \"credentialId\": {\n \"description\": \"Vault identifier of the backing credential.\",\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"issuerDid\": {\n \"description\": \"Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.\",\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"credentialBacked\"\n },\n \"proof\": {\n \"$ref\": \"#/$defs/ProofRung\",\n \"description\": \"The disclosure rung this claim was, or will be, presented at.\"\n }\n },\n \"required\": [\n \"kind\",\n \"credentialId\",\n \"claimPath\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"generator\": {\n \"description\": \"Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.\",\n \"maxLength\": 64,\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"generated\"\n },\n \"perVerifier\": {\n \"default\": true,\n \"description\": \"When true (the default and the only useful setting), a distinct value is minted for each verifier.\",\n \"type\": \"boolean\"\n }\n },\n \"required\": [\n \"kind\",\n \"generator\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"derivedAt\": {\n \"description\": \"When the value was taken from the source. A derived value is a snapshot: the source may have changed since, and nothing re-derives it.\",\n \"format\": \"date-time\",\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"derived\"\n },\n \"source\": {\n \"description\": \"The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.\",\n \"maxLength\": 64,\n \"minLength\": 1,\n \"pattern\": \"^[a-z][A-Za-z0-9.-]*$\",\n \"type\": \"string\"\n }\n },\n \"required\": [\n \"kind\",\n \"source\",\n \"derivedAt\"\n ]\n }\n ],\n \"required\": [\n \"kind\"\n ],\n \"title\": \"Provenance\",\n \"type\": \"object\"\n },\n \"Response\": {\n \"$anchor\": \"response\",\n \"additionalProperties\": false,\n \"description\": \"Success response to persona/contact/put. Type https://trusttasks.org/spec/persona/contact/put/1.0#response.\",\n \"properties\": {\n \"changedClaims\": {\n \"description\": \"Claim types whose value differs from the previous revision. Present only on an update. This is the member that turns revisioning into a defence rather than an archive: a producer can tell the holder that a payment address changed four minutes ago, which is the moment the change matters.\",\n \"items\": {\n \"$ref\": \"#/$defs/ClaimType\"\n },\n \"maxItems\": 256,\n \"type\": \"array\"\n },\n \"contactId\": {\n \"$ref\": \"#/$defs/Ulid\"\n },\n \"created\": {\n \"description\": \"True when this is the first revision for the subject.\",\n \"type\": \"boolean\"\n },\n \"ext\": {\n \"$ref\": \"#/$defs/Ext\"\n },\n \"rev\": {\n \"minimum\": 1,\n \"type\": \"integer\"\n }\n },\n \"required\": [\n \"contactId\",\n \"rev\",\n \"created\"\n ],\n \"title\": \"Persona Contact Put — response payload\",\n \"type\": \"object\"\n },\n \"Ulid\": {\n \"description\": \"A ULID in Crockford base32, uppercase. Used for `attributeId` and `profileId`. Chosen over a UUID because the leading 48 bits are a timestamp, so a key-ordered scan of the store is also creation-ordered and a `list` needs no secondary sort. Server-assigned on create; a producer MAY supply one to make a create idempotent, and a maintainer MUST reject a supplied value that already exists rather than silently overwriting.\",\n \"pattern\": \"^[0-9A-HJKMNP-TV-Z]{26}$\",\n \"title\": \"Ulid\",\n \"type\": \"string\"\n },\n \"ValueType\": {\n \"description\": \"The JSON shape of `value`, declared so that a consumer can render and compare without guessing. The maintainer validates that `value` agrees with this member and does nothing further: it does NOT validate a phone number against a phone-number grammar. That is a producer's affordance, and a store that grows opinions about the contents of its records eventually blocks its consumer's release.\",\n \"enum\": [\n \"string\",\n \"number\",\n \"boolean\",\n \"date\",\n \"object\"\n ],\n \"title\": \"ValueType\",\n \"type\": \"string\"\n }\n },\n \"$id\": \"https://trusttasks.org/spec/persona/contact/put/1.0\",\n \"$schema\": \"https://json-schema.org/draft/2020-12/schema\",\n \"additionalProperties\": false,\n \"description\": \"File what a peer disclosed. Appends a revision; never overwrites, so a changed value is visible as a change rather than arriving silently.\",\n \"properties\": {\n \"contextId\": {\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"credentialRefs\": {\n \"description\": \"Vault identifiers of credentials the peer presented alongside the document. The credentials themselves belong in the credential vault — two stores for credentials is the mistake this family's existence argues against — and the contact holds references.\",\n \"items\": {\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"maxItems\": 256,\n \"type\": \"array\"\n },\n \"document\": {\n \"$ref\": \"#/$defs/ContactDocument\"\n },\n \"ext\": {\n \"$ref\": \"#/$defs/Ext\"\n },\n \"knownByPersona\": {\n \"description\": \"Which of the holder's personas knows this contact. A contact belongs to the relationship, not to the holder at large — the same peer met through two personas is two contacts, and collapsing them would correlate the holder's own personas in their own address book.\",\n \"maxLength\": 2048,\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"notes\": {\n \"description\": \"The holder's private note about this contact. Never disclosed to anyone, including the contact.\",\n \"maxLength\": 4096,\n \"type\": \"string\"\n },\n \"subjectDid\": {\n \"description\": \"The DID the document is about, as disclosed. Normally pairwise, so it names this relationship and not the person across all of theirs.\",\n \"maxLength\": 2048,\n \"minLength\": 1,\n \"type\": \"string\"\n }\n },\n \"required\": [\n \"contextId\",\n \"subjectDid\",\n \"knownByPersona\",\n \"document\"\n ],\n \"title\": \"Persona Contact Put — payload\",\n \"type\": \"object\"\n}\n",
);
}
impl crate::Payload for Response {
const TYPE_URI: &'static str = "https://trusttasks.org/spec/persona/contact/put/1.0#response";
const IS_PROOF_REQUIRED: bool = true;
const IS_ISSUED_AT_REQUIRED: bool = true;
const IS_RECIPIENT_REQUIRED: bool = true;
const PAYLOAD_SCHEMA: Option<&'static str> = Some(
"{\n \"$defs\": {\n \"ClaimType\": {\n \"description\": \"The vocabulary token naming what a value IS — `name.legal`, `phone.mobile`, `address.postal`, `person.birthDate`. Dotted, most-general segment first, so that a consumer with no knowledge of the specific token can still group by its prefix.\\n\\nThe token is the maintainer's own; no external vocabulary is primary. External vocabularies (vCard/jCard, OIDC standard claims, schema.org) are mappings applied at PRESENTATION by a renderer, not at rest, so that a query written in any of them can be matched without the store having to live inside any one of them.\\n\\nThe `x:` prefix is an open extension namespace and is not decoration. The closest prior art — Windows CardSpace's self-issued card — supported exactly fifteen predefined claim types with no extensibility, and that is the specific way it failed the requirement a holder actually has. An `x:` attribute stores, composes, binds and discloses exactly like a known one; it renders generically and matches only an explicit query.\",\n \"maxLength\": 128,\n \"minLength\": 1,\n \"pattern\": \"^(x:)?[a-z][a-zA-Z0-9]*(\\\\.[a-z][a-zA-Z0-9]*)*$\",\n \"title\": \"ClaimType\",\n \"type\": \"string\"\n },\n \"ContactDocument\": {\n \"additionalProperties\": false,\n \"description\": \"What a peer disclosed, as received. Structurally the same claim set a holder composes and presents — a profile and a contact card are one schema seen from two sides — which is why a maintainer validates both with the same code and a consumer renders both with the same view.\",\n \"properties\": {\n \"cardVersion\": {\n \"description\": \"The publisher's own monotonic counter, if they supplied one. Advisory: it orders the publisher's revisions relative to each other and MUST NOT be trusted to order them against anything else.\",\n \"minimum\": 1,\n \"type\": \"integer\"\n },\n \"claims\": {\n \"items\": {\n \"additionalProperties\": false,\n \"properties\": {\n \"provenance\": {\n \"$ref\": \"#/$defs/Provenance\",\n \"description\": \"As asserted by the publisher. A recipient MUST NOT treat a claimed credentialBacked provenance as verified — it is a statement about what the publisher says backs the claim, and verification is a separate act against the credential itself.\"\n },\n \"type\": {\n \"$ref\": \"#/$defs/ClaimType\"\n },\n \"value\": {},\n \"valueType\": {\n \"$ref\": \"#/$defs/ValueType\"\n }\n },\n \"required\": [\n \"type\",\n \"valueType\",\n \"value\"\n ],\n \"type\": \"object\"\n },\n \"maxItems\": 256,\n \"type\": \"array\"\n },\n \"publisher\": {\n \"description\": \"The DID that published the document, as it appeared. Normally a pairwise identifier, so it names the relationship rather than the person.\",\n \"maxLength\": 2048,\n \"type\": \"string\"\n }\n },\n \"required\": [\n \"claims\"\n ],\n \"title\": \"ContactDocument\",\n \"type\": \"object\"\n },\n \"Ext\": {\n \"additionalProperties\": true,\n \"description\": \"Vendor-namespaced extension object per SPEC.md §4.5.1. Each immediate key MUST be a reverse-DNS namespace; structure under each namespace is opaque to the framework.\",\n \"minProperties\": 1,\n \"propertyNames\": {\n \"pattern\": \"^[a-z][a-z0-9-]*(\\\\.[a-z0-9-]+)+$\"\n },\n \"title\": \"Ext\",\n \"type\": \"object\"\n },\n \"ProofRung\": {\n \"description\": \"How strongly a credential-backed claim is hidden when presented, ordered most private first. `predicate` proves a statement over a claim without disclosing the claim. `derived` discloses exactly the claims needed via an unlinkable derived proof, so two presentations cannot be joined. `selectiveDisclosure` discloses exactly the claims needed but carries the issuer's signature unchanged, so two presentations ARE linkable. `whole` discloses the entire credential.\\n\\nThe distinction between the first two and the last two is of kind, not degree: only `predicate` and `derived` avoid handing two verifiers a join key. A maintainer MUST default to the highest rung the credential's format supports, and MUST NOT silently fall to a lower one — a request that cannot be satisfied at the rung a producer asked for is refused, because a silent privacy downgrade discloses material the holder believed was hidden.\",\n \"enum\": [\n \"predicate\",\n \"derived\",\n \"selectiveDisclosure\",\n \"whole\"\n ],\n \"title\": \"ProofRung\",\n \"type\": \"string\"\n },\n \"Provenance\": {\n \"description\": \"Where a value comes from, and the member that makes this family worth building on a trust stack rather than in an address book. It survives to the verifier, so a recipient can tell — per field — what the holder typed from what an issuer attested.\\n\\n`selfAsserted` — the holder supplied it.\\n\\n`credentialBacked` — the value is derived from a credential in the vault at `claimPath`. The stored value is a CACHE FOR DISPLAY; the credential is the truth. A maintainer MUST re-derive it on read and MUST fail closed (never presenting a stale value) when the credential has been revoked, has expired, or has been archived or deleted.\\n\\n`generated` — the value is minted per verifier at disclosure time and recorded against that verifier, so every relying party receives a different one that routes back to the holder. This is the shape of the most widely adopted consumer privacy feature in this space; a maintainer need not operate a relay to conform, but the shape must exist, because retrofitting per-verifier values into a pool-of-values model is a migration rather than an addition.\\n\\n`derived` — the value was taken from a source the holder connected or supplied — a code-hosting profile, an uploaded CV — rather than typed by them or attested by an issuer. Nobody signed it: it is the holder's claim that the source said so, and a consumer MUST NOT present it as attested. It exists as its own kind because a derived value is neither of the others — the holder did not author it, and no one vouches for it — and a holder deciding whether to disclose deserves to know which of their values they typed.\\n\\nFor how strongly a disclosed value identifies the holder, the kinds rank `credentialBacked` above `derived` above `selfAsserted`; `generated` values are per-verifier and do not correlate.\",\n \"oneOf\": [\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"kind\": {\n \"const\": \"selfAsserted\"\n }\n },\n \"required\": [\n \"kind\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"claimPath\": {\n \"description\": \"RFC 6901 JSON Pointer to the claim within the credential, e.g. `/credentialSubject/familyName`.\",\n \"pattern\": \"^(/[^/~]*(~[01][^/~]*)*)*$\",\n \"type\": \"string\"\n },\n \"credentialId\": {\n \"description\": \"Vault identifier of the backing credential.\",\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"issuerDid\": {\n \"description\": \"Issuer of the backing credential. Advisory: a consumer MUST verify the credential rather than trusting this member.\",\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"credentialBacked\"\n },\n \"proof\": {\n \"$ref\": \"#/$defs/ProofRung\",\n \"description\": \"The disclosure rung this claim was, or will be, presented at.\"\n }\n },\n \"required\": [\n \"kind\",\n \"credentialId\",\n \"claimPath\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"generator\": {\n \"description\": \"Names the minting scheme, e.g. `relayEmail`. Maintainer-defined.\",\n \"maxLength\": 64,\n \"minLength\": 1,\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"generated\"\n },\n \"perVerifier\": {\n \"default\": true,\n \"description\": \"When true (the default and the only useful setting), a distinct value is minted for each verifier.\",\n \"type\": \"boolean\"\n }\n },\n \"required\": [\n \"kind\",\n \"generator\"\n ]\n },\n {\n \"additionalProperties\": false,\n \"properties\": {\n \"derivedAt\": {\n \"description\": \"When the value was taken from the source. A derived value is a snapshot: the source may have changed since, and nothing re-derives it.\",\n \"format\": \"date-time\",\n \"type\": \"string\"\n },\n \"kind\": {\n \"const\": \"derived\"\n },\n \"source\": {\n \"description\": \"The KIND of source the value was taken from — `github`, `cvUpload`, `linkedIn` — never an account, handle or URL. Provenance survives to the verifier, so this member is disclosed with the claim; a handle here would disclose an identifier the holder never chose to share.\",\n \"maxLength\": 64,\n \"minLength\": 1,\n \"pattern\": \"^[a-z][A-Za-z0-9.-]*$\",\n \"type\": \"string\"\n }\n },\n \"required\": [\n \"kind\",\n \"source\",\n \"derivedAt\"\n ]\n }\n ],\n \"required\": [\n \"kind\"\n ],\n \"title\": \"Provenance\",\n \"type\": \"object\"\n },\n \"Response\": {\n \"$anchor\": \"response\",\n \"additionalProperties\": false,\n \"description\": \"Success response to persona/contact/put. Type https://trusttasks.org/spec/persona/contact/put/1.0#response.\",\n \"properties\": {\n \"changedClaims\": {\n \"description\": \"Claim types whose value differs from the previous revision. Present only on an update. This is the member that turns revisioning into a defence rather than an archive: a producer can tell the holder that a payment address changed four minutes ago, which is the moment the change matters.\",\n \"items\": {\n \"$ref\": \"#/$defs/ClaimType\"\n },\n \"maxItems\": 256,\n \"type\": \"array\"\n },\n \"contactId\": {\n \"$ref\": \"#/$defs/Ulid\"\n },\n \"created\": {\n \"description\": \"True when this is the first revision for the subject.\",\n \"type\": \"boolean\"\n },\n \"ext\": {\n \"$ref\": \"#/$defs/Ext\"\n },\n \"rev\": {\n \"minimum\": 1,\n \"type\": \"integer\"\n }\n },\n \"required\": [\n \"contactId\",\n \"rev\",\n \"created\"\n ],\n \"title\": \"Persona Contact Put — response payload\",\n \"type\": \"object\"\n },\n \"Ulid\": {\n \"description\": \"A ULID in Crockford base32, uppercase. Used for `attributeId` and `profileId`. Chosen over a UUID because the leading 48 bits are a timestamp, so a key-ordered scan of the store is also creation-ordered and a `list` needs no secondary sort. Server-assigned on create; a producer MAY supply one to make a create idempotent, and a maintainer MUST reject a supplied value that already exists rather than silently overwriting.\",\n \"pattern\": \"^[0-9A-HJKMNP-TV-Z]{26}$\",\n \"title\": \"Ulid\",\n \"type\": \"string\"\n },\n \"ValueType\": {\n \"description\": \"The JSON shape of `value`, declared so that a consumer can render and compare without guessing. The maintainer validates that `value` agrees with this member and does nothing further: it does NOT validate a phone number against a phone-number grammar. That is a producer's affordance, and a store that grows opinions about the contents of its records eventually blocks its consumer's release.\",\n \"enum\": [\n \"string\",\n \"number\",\n \"boolean\",\n \"date\",\n \"object\"\n ],\n \"title\": \"ValueType\",\n \"type\": \"string\"\n }\n },\n \"$ref\": \"#/$defs/Response\",\n \"$schema\": \"https://json-schema.org/draft/2020-12/schema\"\n}\n",
);
}
impl crate::RequestPayload for Payload {
type Response = Response;
}
/// The extended error codes this specification declares (SPEC §7.3 item 9,
/// §8.5), in declaration order. Empty when it declares none.
pub const ERROR_CODES: &[crate::DeclaredErrorCode] = &[error_codes::DOCUMENT_TOO_LARGE];
/// One constant per extended error code this specification declares
/// (SPEC §7.3 item 9), named for its local part.
///
/// Emit these rather than a string literal: the code is read from the
/// specification, so it cannot name a code the specification never
/// declared.
pub mod error_codes {
/// `persona/contact/put:documentTooLarge`
///
/// The document exceeds the maintainer's stated per-record cap. The cap and the actual size are both returned, so a producer can tell how far over it is rather than guessing.
///
/// Declared `retryable: false`.
pub const DOCUMENT_TOO_LARGE: crate::DeclaredErrorCode = crate::DeclaredErrorCode {
code: "persona/contact/put:documentTooLarge",
retryable: false,
};
}