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175 lines
7.0 KiB
Plaintext
175 lines
7.0 KiB
Plaintext
infer_opaque_hidden_type =
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opaque type's hidden type cannot be another opaque type from the same scope
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.label = one of the two opaque types used here has to be outside its defining scope
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.opaque_type = opaque type whose hidden type is being assigned
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.hidden_type = opaque type being used as hidden type
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infer_type_annotations_needed = {$source_kind ->
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[closure] type annotations needed for the closure `{$source_name}`
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[normal] type annotations needed for `{$source_name}`
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*[other] type annotations needed
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}
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.label = type must be known at this point
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infer_label_bad = {$bad_kind ->
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*[other] cannot infer type
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[more_info] cannot infer {$prefix_kind ->
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*[type] type for {$prefix}
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[const_with_param] the value of const parameter
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[const] the value of the constant
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} `{$name}`{$has_parent ->
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[true] {" "}declared on the {$parent_prefix} `{$parent_name}`
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*[false] {""}
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}
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}
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infer_source_kind_subdiag_let = {$kind ->
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[with_pattern] consider giving `{$name}` an explicit type
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[closure] consider giving this closure parameter an explicit type
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*[other] consider giving this pattern a type
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}{$x_kind ->
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[has_name] , where the {$prefix_kind ->
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*[type] type for {$prefix}
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[const_with_param] the value of const parameter
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[const] the value of the constant
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} `{$arg_name}` is specified
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[underscore] , where the placeholders `_` are specified
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*[empty] {""}
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}
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infer_source_kind_subdiag_generic_label =
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cannot infer {$is_type ->
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[true] type
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*[false] the value
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} of the {$is_type ->
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[true] type
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*[false] const
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} {$parent_exists ->
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[true] parameter `{$param_name}` declared on the {$parent_prefix} `{$parent_name}`
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*[false] parameter {$param_name}
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}
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infer_source_kind_subdiag_generic_suggestion =
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consider specifying the generic {$arg_count ->
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[one] argument
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*[other] arguments
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}
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infer_source_kind_fully_qualified =
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try using a fully qualified path to specify the expected types
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infer_source_kind_closure_return =
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try giving this closure an explicit return type
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# generator_kind may need to be translated
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infer_need_type_info_in_generator =
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type inside {$generator_kind ->
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[async_block] `async` block
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[async_closure] `async` closure
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[async_fn] `async fn` body
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*[generator] generator
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} must be known in this context
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infer_subtype = ...so that the {$requirement ->
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[method_compat] method type is compatible with trait
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[type_compat] associated type is compatible with trait
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[const_compat] const is compatible with trait
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[expr_assignable] expression is assignable
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[if_else_different] `if` and `else` have incompatible types
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[no_else] `if` missing an `else` returns `()`
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[fn_main_correct_type] `main` function has the correct type
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[fn_start_correct_type] #[start]` function has the correct type
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[intristic_correct_type] intrinsic has the correct type
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[method_correct_type] method receiver has the correct type
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*[other] types are compatible
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}
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infer_subtype_2 = ...so that {$requirement ->
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[method_compat] method type is compatible with trait
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[type_compat] associated type is compatible with trait
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[const_compat] const is compatible with trait
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[expr_assignable] expression is assignable
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[if_else_different] `if` and `else` have incompatible types
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[no_else] `if` missing an `else` returns `()`
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[fn_main_correct_type] `main` function has the correct type
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[fn_start_correct_type] #[start]` function has the correct type
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[intristic_correct_type] intrinsic has the correct type
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[method_correct_type] method receiver has the correct type
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*[other] types are compatible
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}
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infer_reborrow = ...so that reference does not outlive borrowed content
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infer_reborrow_upvar = ...so that closure can access `{$name}`
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infer_relate_object_bound = ...so that it can be closed over into an object
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infer_data_borrowed = ...so that the type `{$name}` is not borrowed for too long
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infer_reference_outlives_referent = ...so that the reference type `{$name}` does not outlive the data it points at
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infer_relate_param_bound = ...so that the type `{$name}` will meet its required lifetime bounds{$continues ->
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[true] ...
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*[false] {""}
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}
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infer_relate_param_bound_2 = ...that is required by this bound
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infer_relate_region_param_bound = ...so that the declared lifetime parameter bounds are satisfied
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infer_compare_impl_item_obligation = ...so that the definition in impl matches the definition from the trait
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infer_ascribe_user_type_prove_predicate = ...so that the where clause holds
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infer_nothing = {""}
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infer_lifetime_mismatch = lifetime mismatch
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infer_declared_different = this parameter and the return type are declared with different lifetimes...
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infer_data_returned = ...but data{$label_var1_exists ->
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[true] {" "}from `{$label_var1}`
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*[false] {""}
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} is returned here
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infer_data_lifetime_flow = ...but data with one lifetime flows into the other here
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infer_declared_multiple = this type is declared with multiple lifetimes...
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infer_types_declared_different = these two types are declared with different lifetimes...
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infer_data_flows = ...but data{$label_var1_exists ->
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[true] -> {" "}from `{$label_var1}`
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*[false] -> {""}
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} flows{$label_var2_exists ->
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[true] -> {" "}into `{$label_var2}`
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*[false] -> {""}
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} here
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infer_lifetime_param_suggestion = consider introducing a named lifetime parameter{$is_impl ->
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[true] {" "}and update trait if needed
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*[false] {""}
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}
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infer_lifetime_param_suggestion_elided = each elided lifetime in input position becomes a distinct lifetime
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infer_region_explanation = {$pref_kind ->
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*[should_not_happen] [{$pref_kind}]
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[empty] {""}
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}{$pref_kind ->
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[empty] {""}
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*[other] {" "}
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}{$desc_kind ->
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*[should_not_happen] [{$desc_kind}]
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[restatic] the static lifetime
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[reempty] the empty lifetime
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[reemptyuni] the empty lifetime in universe {$desc_arg}
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[revar] lifetime {$desc_arg}
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[as_defined] the lifetime `{$desc_arg}` as defined here
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[as_defined_anon] the anonymous lifetime as defined here
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[defined_here] the anonymous lifetime defined here
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[anon_num_here] the anonymous lifetime #{$desc_num_arg} defined here
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[defined_here_reg] the lifetime `{$desc_arg}` as defined here
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}{$suff_kind ->
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*[should_not_happen] [{$suff_kind}]
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[empty]{""}
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[continues] ...
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}
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infer_mismatched_static_lifetime = incompatible lifetime on type
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infer_does_not_outlive_static_from_impl = ...does not necessarily outlive the static lifetime introduced by the compatible `impl`
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infer_implicit_static_lifetime_note = this has an implicit `'static` lifetime requirement
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infer_implicit_static_lifetime_suggestion = consider relaxing the implicit `'static` requirement
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infer_msl_introduces_static = introduces a `'static` lifetime requirement
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infer_msl_unmet_req = because this has an unmet lifetime requirement
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infer_msl_trait_note = this has an implicit `'static` lifetime requirement
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infer_msl_trait_sugg = consider relaxing the implicit `'static` requirement
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infer_suggest_add_let_for_letchains = consider adding `let`
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