mirror of
https://github.com/philomena-dev/philomena.git
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484 lines
16 KiB
Elixir
484 lines
16 KiB
Elixir
defmodule PhilomenaQuery.Parse.Parser do
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@moduledoc """
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A search language for safely evaluating user-input queries.
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The query language supports the following features:
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- Disjunction (OR/||)
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- Conjunction (AND/&&/,)
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- Negation (NOT/-/!)
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- Expression boosting
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- Parenthetical grouping
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Several types of terms are supported:
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- Booleans
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- Dates (absolute and relative, time points and ranges)
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- Floats
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- Integers
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- IP Addresses
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- Literal text
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- Stemmed text
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Specific terms can support the following features:
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- Range queries (.lte/.lt/.gte/.gt)
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- Fuzzing (~0.5)
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- Wildcarding (*?)
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- CIDR masks (/27)
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The rich search expression grammar is arguably a defining feature of Philomena, and its
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feature set makes it stand out in comparison to traditional boorus.
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"""
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alias PhilomenaQuery.Parse.{
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BoolParser,
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DateParser,
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FloatParser,
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IntParser,
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IpParser,
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Lexer,
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LiteralParser,
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NgramParser,
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Parser,
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TermRangeParser
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}
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@typedoc """
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User-supplied context argument.
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Provided to `parse/3` and passed to the transform callback.
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"""
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@type context :: any()
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@typedoc "Query in the search engine JSON query language."
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@type query :: map()
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@typedoc "Whether the default field is `:term` (not analyzed) or `:ngram` (analyzed)."
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@type default_field_type :: :term | :ngram
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@typedoc """
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Return value of the transform callback.
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On `{:ok, query}`, the query is incorporated into the parse tree at the current location.
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On `{:error, error}`, parsing immediately stops and the error is returned from the parser.
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"""
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@type transform_result :: {:ok, query()} | {:error, String.t()}
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@typedoc """
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Type of the transform callback.
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The transform callback receives the context argument passed to `parse/3` and the remainder of
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the term. For instance `my:example` would match a transform rule with the key `"my"`, and
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the remainder passed to the callback would be `"example"`.
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"""
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@type transform :: (context, String.t() -> transform_result())
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@type t :: %__MODULE__{
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default_field: {String.t(), default_field_type()},
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bool_fields: [String.t()],
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date_fields: [String.t()],
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float_fields: [String.t()],
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int_fields: [String.t()],
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ip_fields: [String.t()],
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literal_fields: [String.t()],
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ngram_fields: [String.t()],
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custom_fields: [String.t()],
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transforms: %{String.t() => transform()},
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aliases: %{String.t() => String.t()},
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no_downcase_fields: [String.t()],
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__fields__: map(),
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__data__: context()
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}
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defstruct [
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:default_field,
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bool_fields: [],
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date_fields: [],
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float_fields: [],
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int_fields: [],
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ip_fields: [],
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literal_fields: [],
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ngram_fields: [],
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custom_fields: [],
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transforms: %{},
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aliases: %{},
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no_downcase_fields: [],
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__fields__: %{},
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__data__: nil
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]
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@max_clause_count 512
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@doc """
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Creates a `Parser` suitable for safely parsing user-input queries.
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Fields refer to attributes of the indexed document which will be searchable with
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`m:PhilomenaQuery.Search`.
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Available options:
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- `bool_fields` - a list of field names parsed as booleans
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- `float_fields` - a list of field names parsed as floats
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- `int_fields` - a list of field names parsed as integers
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- `ip_fields` - a list of field names parsed as IP CIDR masks
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- `literal_fields` - wildcardable fields which are searched as the exact value
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- `ngram_fields` - wildcardable fields which are searched as stemmed values
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- `custom_fields` - fields which do not exist on the document and are created by a callback
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- `transforms` - a map of custom field names to transform functions
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- `aliases` - a map of field names to the names they should have in the search engine
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- `no_downcase_fields` - a list of field names which do not have string downcasing applied
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## Example
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options = [
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bool_fields: ["hidden"],
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custom_fields: ["example"],
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transforms: %{"example" => fn _ctx, term -> %{term: %{term => "example"}} end},
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aliases: %{"hidden" => "hidden_from_users"}
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]
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Parser.new(options)
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"""
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@spec new(keyword()) :: t()
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def new(options) do
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parser = struct(Parser, options)
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fields =
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Enum.map(parser.bool_fields, fn f -> {f, BoolParser} end) ++
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Enum.map(parser.date_fields, fn f -> {f, DateParser} end) ++
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Enum.map(parser.float_fields, fn f -> {f, FloatParser} end) ++
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Enum.map(parser.int_fields, fn f -> {f, IntParser} end) ++
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Enum.map(parser.ip_fields, fn f -> {f, IpParser} end) ++
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Enum.map(parser.literal_fields, fn f -> {f, LiteralParser} end) ++
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Enum.map(parser.ngram_fields, fn f -> {f, NgramParser} end) ++
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Enum.map(parser.custom_fields, fn f -> {f, :custom_field} end)
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%{parser | __fields__: Map.new(fields)}
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end
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@doc """
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Parse the query into a definition suitable for the search engine.
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The parser argument should have been created with a previous call to `parser/1`. When the
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`context` argument is passed, it becomes the first argument to any transform functions defined
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in the `transform` option.
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## Example
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iex> Parser.parse(parser, "safe")
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{:ok, %{term: %{"namespaced_tags.name" => "safe"}}}
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iex> Parser.parse(nil, "safe OR solo")
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{:ok,
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%{
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bool: %{
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should: [
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%{term: %{"namespaced_tags.name" => "safe"}},
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%{term: %{"namespaced_tags.name" => "solo"}}
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]
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}
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}}
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iex> Parser.parse(parser, ")")
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{:error, "Imbalanced parentheses."}
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"""
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@spec parse(t(), String.t(), context()) :: {:ok, query()} | {:error, String.t()}
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def parse(parser, input, context \\ nil)
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def parse(%Parser{} = parser, input, context) do
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parser = %{parser | __data__: context}
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with {:ok, input} <- coerce_string(input),
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{:ok, tokens, _1, _2, _3, _4} <- Lexer.lex(input),
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{:ok, tokens} <- convert_empty_token_list(tokens),
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{:ok, {tree, []}} <- search_top(parser, tokens) do
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{:ok, tree}
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else
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{:error, :empty_query} ->
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{:ok, %{match_none: %{}}}
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{:ok, {_tree, tokens}} ->
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{:error, "junk at end of expression: " <> debug_tokens(tokens)}
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{:error, msg, start_pos, _1, _2, _3} ->
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{:error, msg <> ", starting at: " <> start_pos}
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{:error, msg} ->
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{:error, msg}
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err ->
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err
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# {:error, "unknown parsing error"}
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end
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end
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defp coerce_string(term) when is_binary(term), do: {:ok, term}
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defp coerce_string(nil), do: {:ok, ""}
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defp coerce_string(_), do: {:error, "search query is not a string"}
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defp convert_empty_token_list([]), do: {:error, :empty_query}
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defp convert_empty_token_list(tokens), do: {:ok, tokens}
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defp debug_tokens(tokens) do
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Enum.map_join(tokens, fn {_k, v} -> v end)
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end
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#
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# Predictive LL(1) RD parser for search grammar
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#
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defp search_top(parser, tokens), do: search_or(parser, tokens)
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defp search_or(parser, tokens) do
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with {:ok, {left, [{:or, _} | r_tokens]}} <- search_and(parser, tokens),
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{:ok, {right, rest}} <- search_or(parser, r_tokens) do
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{:ok, {flatten_disjunction_child(left, right), rest}}
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else
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value ->
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value
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end
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end
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defp search_and(parser, tokens) do
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with {:ok, {left, [{:and, _} | r_tokens]}} <- search_boost(parser, tokens),
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{:ok, {right, rest}} <- search_and(parser, r_tokens) do
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{:ok, {flatten_conjunction_child(left, right), rest}}
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else
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value ->
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value
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end
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end
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defp search_boost(parser, tokens) do
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case search_not(parser, tokens) do
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{:ok, {child, [{:boost, value} | r_tokens]}} when value >= 0 ->
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{:ok, {%{function_score: %{query: child, boost: value}}, r_tokens}}
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{:ok, {_child, [{:boost, _value} | _r_tokens]}} ->
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{:error, "Boost value must be non-negative."}
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value ->
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value
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end
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end
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defp search_not(parser, [{:not, _} | rest]) do
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case search_group(parser, rest) do
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{:ok, {child, r_tokens}} ->
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{:ok, {flatten_negation_child(child), r_tokens}}
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value ->
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value
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end
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end
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defp search_not(parser, tokens), do: search_group(parser, tokens)
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defp search_group(parser, [{:lparen, _} | rest]) do
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case search_top(parser, rest) do
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{:ok, {child, [{:rparen, _} | r_tokens]}} ->
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{:ok, {child, r_tokens}}
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{:ok, {_child, _tokens}} ->
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{:error, "Imbalanced parentheses."}
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value ->
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value
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end
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end
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defp search_group(_parser, [{:rparen, _} | _rest]) do
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{:error, "Imbalanced parentheses."}
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end
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defp search_group(parser, tokens), do: search_field(parser, tokens)
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defp search_field(parser, [{:term, value} | r_tokens]) do
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tokens = TermRangeParser.parse(value, parser.__fields__, parser.default_field)
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case field_top(parser, tokens) do
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{:ok, {child, []}} ->
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{:ok, {child, r_tokens}}
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err ->
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err
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end
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end
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defp search_field(_parser, _tokens), do: {:error, "Expected a term."}
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#
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# Predictive LL(k) RD parser for search terms in parent grammar
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#
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defp field_top(parser, tokens), do: field_term(parser, tokens)
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defp field_term(parser, custom_field: field_name, range: :eq, value: value) do
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case parser.transforms[field_name].(parser.__data__, String.trim(value)) do
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{:ok, child} ->
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{:ok, {child, []}}
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err ->
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err
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end
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end
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defp field_term(parser, [{field_parser, field_name}, {:range, range}, {:value, value}]) do
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# N.B.: field_parser is an atom
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case field_parser.parse(value) do
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{:ok, extra_tokens, _1, _2, _3, _4} ->
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field_type(parser, [{field_parser, field_name}, {:range, range}] ++ extra_tokens)
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err ->
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err
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end
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end
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# Types which do not support ranges
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defp field_type(parser, [{LiteralParser, field_name}, range: :eq, literal: value]),
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do:
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{:ok,
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{%{term: %{field(parser, field_name) => normalize_value(parser, field_name, value)}}, []}}
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defp field_type(parser, [{LiteralParser, field_name}, range: :eq, literal: value, fuzz: fuzz]),
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do:
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{:ok,
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{%{
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fuzzy: %{
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field(parser, field_name) => %{
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value: normalize_value(parser, field_name, value),
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fuzziness: fuzz
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}
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}
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}, []}}
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defp field_type(_parser, [{LiteralParser, _field_name}, range: :eq, wildcard: "*"]),
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do: {:ok, {%{match_all: %{}}, []}}
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defp field_type(parser, [{LiteralParser, field_name}, range: :eq, wildcard: value]),
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do:
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{:ok,
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{%{wildcard: %{field(parser, field_name) => normalize_value(parser, field_name, value)}},
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[]}}
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defp field_type(_parser, [{LiteralParser, field_name}, _range, _value]),
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do: {:error, "range specified for " <> field_name}
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defp field_type(parser, [{NgramParser, field_name}, range: :eq, literal: value]),
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do:
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{:ok,
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{%{
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match_phrase: %{field(parser, field_name) => normalize_value(parser, field_name, value)}
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}, []}}
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defp field_type(parser, [{NgramParser, field_name}, range: :eq, literal: value, fuzz: _fuzz]),
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do:
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{:ok,
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{%{
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match_phrase: %{field(parser, field_name) => normalize_value(parser, field_name, value)}
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}, []}}
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defp field_type(_parser, [{NgramParser, _field_name}, range: :eq, wildcard: "*"]),
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do: {:ok, {%{match_all: %{}}, []}}
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defp field_type(parser, [{NgramParser, field_name}, range: :eq, wildcard: value]),
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do:
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{:ok,
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{%{wildcard: %{field(parser, field_name) => normalize_value(parser, field_name, value)}},
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[]}}
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defp field_type(_parser, [{NgramParser, field_name}, _range, _value]),
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do: {:error, "range specified for " <> field_name}
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defp field_type(parser, [{BoolParser, field_name}, range: :eq, bool: value]),
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do: {:ok, {%{term: %{field(parser, field_name) => value}}, []}}
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defp field_type(_parser, [{BoolParser, field_name}, _range, _value]),
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do: {:error, "range specified for " <> field_name}
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defp field_type(parser, [{IpParser, field_name}, range: :eq, ip: value]),
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do: {:ok, {%{term: %{field(parser, field_name) => value}}, []}}
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defp field_type(_parser, [{IpParser, field_name}, _range, _value]),
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do: {:error, "range specified for " <> field_name}
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# Types which do support ranges
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defp field_type(parser, [{IntParser, field_name}, range: :eq, int: value]),
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do: {:ok, {%{term: %{field(parser, field_name) => value}}, []}}
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defp field_type(parser, [{IntParser, field_name}, range: :eq, int_range: [lower, upper]]),
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do: {:ok, {%{range: %{field(parser, field_name) => %{gte: lower, lte: upper}}}, []}}
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defp field_type(parser, [{IntParser, field_name}, range: range, int: value]),
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do: {:ok, {%{range: %{field(parser, field_name) => %{range => value}}}, []}}
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defp field_type(_parser, [{IntParser, field_name}, range: _range, int_range: _value]),
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do: {:error, "multiple ranges specified for " <> field_name}
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defp field_type(parser, [{FloatParser, field_name}, range: :eq, float: value]),
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do: {:ok, {%{term: %{field(parser, field_name) => value}}, []}}
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defp field_type(parser, [{FloatParser, field_name}, range: :eq, float_range: [lower, upper]]),
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do: {:ok, {%{range: %{field(parser, field_name) => %{gte: lower, lte: upper}}}, []}}
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defp field_type(parser, [{FloatParser, field_name}, range: range, float: value]),
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do: {:ok, {%{range: %{field(parser, field_name) => %{range => value}}}, []}}
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defp field_type(_parser, [{FloatParser, field_name}, range: _range, float_range: _value]),
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do: {:error, "multiple ranges specified for " <> field_name}
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defp field_type(parser, [{DateParser, field_name}, range: :eq, date: [lower, upper]]),
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do: {:ok, {%{range: %{field(parser, field_name) => %{gte: lower, lt: upper}}}, []}}
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defp field_type(parser, [{DateParser, field_name}, range: r, date: [_lower, upper]])
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when r in [:lte, :gt],
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do: {:ok, {%{range: %{field(parser, field_name) => %{r => upper}}}, []}}
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defp field_type(parser, [{DateParser, field_name}, range: r, date: [lower, _upper]])
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when r in [:gte, :lt],
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do: {:ok, {%{range: %{field(parser, field_name) => %{r => lower}}}, []}}
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defp field(parser, field_name) do
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parser.aliases[field_name] || field_name
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end
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defp normalize_value(parser, field_name, value) do
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value
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|> String.trim()
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|> maybe_downcase(parser, field_name)
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end
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defp maybe_downcase(value, parser, field_name) do
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if Enum.member?(parser.no_downcase_fields, field_name) do
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value
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else
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String.downcase(value)
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end
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end
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# Flattens the child of a disjunction or conjunction to improve performance.
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defp flatten_disjunction_child(this_child, %{bool: %{should: next_child}} = child)
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when child == %{bool: %{should: next_child}} and is_list(next_child) and
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length(next_child) <= @max_clause_count,
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do: %{bool: %{should: [this_child | next_child]}}
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defp flatten_disjunction_child(this_child, next_child),
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do: %{bool: %{should: [this_child, next_child]}}
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defp flatten_conjunction_child(this_child, %{bool: %{must: next_child}} = child)
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when child == %{bool: %{must: next_child}} and is_list(next_child) and
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length(next_child) <= @max_clause_count,
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do: %{bool: %{must: [this_child | next_child]}}
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defp flatten_conjunction_child(this_child, next_child),
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do: %{bool: %{must: [this_child, next_child]}}
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# Flattens the child of a negation to eliminate double negation.
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defp flatten_negation_child(%{bool: %{must_not: next_child}} = child)
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when child == %{bool: %{must_not: next_child}} and is_map(next_child),
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do: next_child
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defp flatten_negation_child(next_child),
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do: %{bool: %{must_not: next_child}}
|
|
end
|