defmodule OpenTelemetry.SemConv.Incubating.NetworkAttributes do # This is an auto-generated file @moduledoc """ OpenTelemetry Semantic Conventions for Network attributes. """ defdelegate network_local_address(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_local_port(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_peer_address(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_peer_port(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_protocol_name(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_protocol_version(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_transport(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_transport_values(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_type(), to: OpenTelemetry.SemConv.NetworkAttributes defdelegate network_type_values(), to: OpenTelemetry.SemConv.NetworkAttributes @deprecated """ Replaced by `network.local.address`. """ @spec net_host_ip :: :"net.host.ip" def net_host_ip do :"net.host.ip" end @deprecated """ Replaced by `server.address`. """ @spec net_host_name :: :"net.host.name" def net_host_name do :"net.host.name" end @deprecated """ Replaced by `server.port`. """ @spec net_host_port :: :"net.host.port" def net_host_port do :"net.host.port" end @deprecated """ Replaced by `network.peer.address`. """ @spec net_peer_ip :: :"net.peer.ip" def net_peer_ip do :"net.peer.ip" end @deprecated """ Replaced by `server.address` on client spans and `client.address` on server spans. """ @spec net_peer_name :: :"net.peer.name" def net_peer_name do :"net.peer.name" end @deprecated """ Replaced by `server.port` on client spans and `client.port` on server spans. """ @spec net_peer_port :: :"net.peer.port" def net_peer_port do :"net.peer.port" end @deprecated """ Replaced by `network.protocol.name`. """ @spec net_protocol_name :: :"net.protocol.name" def net_protocol_name do :"net.protocol.name" end @deprecated """ Replaced by `network.protocol.version`. """ @spec net_protocol_version :: :"net.protocol.version" def net_protocol_version do :"net.protocol.version" end @typedoc """ Deprecated, use `network.transport` and `network.type`. ### Enum Values * `:inet` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - IPv4 address * `:inet6` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - IPv6 address * `:unix` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - Unix domain socket path """ @type net_sock_family_values() :: %{ :inet => :inet, :inet6 => :inet6, :unix => :unix } @deprecated """ Split to `network.transport` and `network.type`. """ @spec net_sock_family :: :"net.sock.family" def net_sock_family do :"net.sock.family" end @spec net_sock_family_values() :: net_sock_family_values() def net_sock_family_values() do %{ :inet => :inet, :inet6 => :inet6, :unix => :unix } end @deprecated """ Replaced by `network.local.address`. """ @spec net_sock_host_addr :: :"net.sock.host.addr" def net_sock_host_addr do :"net.sock.host.addr" end @deprecated """ Replaced by `network.local.port`. """ @spec net_sock_host_port :: :"net.sock.host.port" def net_sock_host_port do :"net.sock.host.port" end @deprecated """ Replaced by `network.peer.address`. """ @spec net_sock_peer_addr :: :"net.sock.peer.addr" def net_sock_peer_addr do :"net.sock.peer.addr" end @deprecated """ Removed. """ @spec net_sock_peer_name :: :"net.sock.peer.name" def net_sock_peer_name do :"net.sock.peer.name" end @deprecated """ Replaced by `network.peer.port`. """ @spec net_sock_peer_port :: :"net.sock.peer.port" def net_sock_peer_port do :"net.sock.peer.port" end @typedoc """ Deprecated, use `network.transport`. ### Enum Values * `:ip_tcp` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:ip_udp` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:pipe` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - Named or anonymous pipe. * `:inproc` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - In-process communication. * `:other` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - Something else (non IP-based). """ @type net_transport_values() :: %{ :ip_tcp => :ip_tcp, :ip_udp => :ip_udp, :pipe => :pipe, :inproc => :inproc, :other => :other } @deprecated """ Replaced by `network.transport`. """ @spec net_transport :: :"net.transport" def net_transport do :"net.transport" end @spec net_transport_values() :: net_transport_values() def net_transport_values() do %{ :ip_tcp => :ip_tcp, :ip_udp => :ip_udp, :pipe => :pipe, :inproc => :inproc, :other => :other } end @doc """ The ISO 3166-1 alpha-2 2-character country code associated with the mobile carrier network. ### Value type Value must be of type `atom() | String.t()`. ### Examples ``` DE ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_carrier_icc() :"network.carrier.icc" ### Erlang ```erlang ?NETWORK_CARRIER_ICC. 'network.carrier.icc' ``` """ @spec network_carrier_icc :: :"network.carrier.icc" def network_carrier_icc do :"network.carrier.icc" end @doc """ The mobile carrier country code. ### Value type Value must be of type `atom() | String.t()`. ### Examples ``` 310 ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_carrier_mcc() :"network.carrier.mcc" ### Erlang ```erlang ?NETWORK_CARRIER_MCC. 'network.carrier.mcc' ``` """ @spec network_carrier_mcc :: :"network.carrier.mcc" def network_carrier_mcc do :"network.carrier.mcc" end @doc """ The mobile carrier network code. ### Value type Value must be of type `atom() | String.t()`. ### Examples ``` 001 ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_carrier_mnc() :"network.carrier.mnc" ### Erlang ```erlang ?NETWORK_CARRIER_MNC. 'network.carrier.mnc' ``` """ @spec network_carrier_mnc :: :"network.carrier.mnc" def network_carrier_mnc do :"network.carrier.mnc" end @doc """ The name of the mobile carrier. ### Value type Value must be of type `atom() | String.t()`. ### Examples ``` sprint ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_carrier_name() :"network.carrier.name" ### Erlang ```erlang ?NETWORK_CARRIER_NAME. 'network.carrier.name' ``` """ @spec network_carrier_name :: :"network.carrier.name" def network_carrier_name do :"network.carrier.name" end @typedoc """ This describes more details regarding the connection.type. It may be the type of cell technology connection, but it could be used for describing details about a wifi connection. ### Enum Values * `:gprs` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - GPRS * `:edge` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - EDGE * `:umts` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - UMTS * `:cdma` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - CDMA * `:evdo_0` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - EVDO Rel. 0 * `:evdo_a` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - EVDO Rev. A * `:cdma2000_1xrtt` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - CDMA2000 1XRTT * `:hsdpa` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - HSDPA * `:hsupa` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - HSUPA * `:hspa` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - HSPA * `:iden` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - IDEN * `:evdo_b` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - EVDO Rev. B * `:lte` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - LTE * `:ehrpd` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - EHRPD * `:hspap` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - HSPAP * `:gsm` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - GSM * `:td_scdma` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - TD-SCDMA * `:iwlan` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - IWLAN * `:nr` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - 5G NR (New Radio) * `:nrnsa` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - 5G NRNSA (New Radio Non-Standalone) * `:lte_ca` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ - LTE CA """ @type network_connection_subtype_values() :: %{ :gprs => :gprs, :edge => :edge, :umts => :umts, :cdma => :cdma, :evdo_0 => :evdo_0, :evdo_a => :evdo_a, :cdma2000_1xrtt => :cdma2000_1xrtt, :hsdpa => :hsdpa, :hsupa => :hsupa, :hspa => :hspa, :iden => :iden, :evdo_b => :evdo_b, :lte => :lte, :ehrpd => :ehrpd, :hspap => :hspap, :gsm => :gsm, :td_scdma => :td_scdma, :iwlan => :iwlan, :nr => :nr, :nrnsa => :nrnsa, :lte_ca => :lte_ca } @doc """ This describes more details regarding the connection.type. It may be the type of cell technology connection, but it could be used for describing details about a wifi connection. ### Examples ``` LTE ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_subtype() :"network.connection.subtype" iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_subtype_values().gprs :gprs iex> %{OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_subtype() => OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_subtype_values().gprs} %{:"network.connection.subtype" => :gprs} ### Erlang ```erlang ?NETWORK_CONNECTION_SUBTYPE. 'network.connection.subtype' ?NETWORK_CONNECTION_SUBTYPE_VALUES_GPRS. 'gprs' \#{?NETWORK_CONNECTION_SUBTYPE => ?NETWORK_CONNECTION_SUBTYPE_VALUES_GPRS}. \#{'network.connection.subtype' => 'gprs'} ``` """ @spec network_connection_subtype :: :"network.connection.subtype" def network_connection_subtype do :"network.connection.subtype" end @spec network_connection_subtype_values() :: network_connection_subtype_values() def network_connection_subtype_values() do %{ :gprs => :gprs, :edge => :edge, :umts => :umts, :cdma => :cdma, :evdo_0 => :evdo_0, :evdo_a => :evdo_a, :cdma2000_1xrtt => :cdma2000_1xrtt, :hsdpa => :hsdpa, :hsupa => :hsupa, :hspa => :hspa, :iden => :iden, :evdo_b => :evdo_b, :lte => :lte, :ehrpd => :ehrpd, :hspap => :hspap, :gsm => :gsm, :td_scdma => :td_scdma, :iwlan => :iwlan, :nr => :nr, :nrnsa => :nrnsa, :lte_ca => :lte_ca } end @typedoc """ The internet connection type. ### Enum Values * `:wifi` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:wired` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:cell` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:unavailable` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:unknown` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ """ @type network_connection_type_values() :: %{ :wifi => :wifi, :wired => :wired, :cell => :cell, :unavailable => :unavailable, :unknown => :unknown } @doc """ The internet connection type. ### Examples ``` wifi ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_type() :"network.connection.type" iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_type_values().wifi :wifi iex> %{OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_type() => OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_connection_type_values().wifi} %{:"network.connection.type" => :wifi} ### Erlang ```erlang ?NETWORK_CONNECTION_TYPE. 'network.connection.type' ?NETWORK_CONNECTION_TYPE_VALUES_WIFI. 'wifi' \#{?NETWORK_CONNECTION_TYPE => ?NETWORK_CONNECTION_TYPE_VALUES_WIFI}. \#{'network.connection.type' => 'wifi'} ``` """ @spec network_connection_type :: :"network.connection.type" def network_connection_type do :"network.connection.type" end @spec network_connection_type_values() :: network_connection_type_values() def network_connection_type_values() do %{ :wifi => :wifi, :wired => :wired, :cell => :cell, :unavailable => :unavailable, :unknown => :unknown } end @typedoc """ The network IO operation direction. ### Enum Values * `:transmit` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ * `:receive` ^[e](`m:OpenTelemetry.SemConv#experimental`)^ """ @type network_io_direction_values() :: %{ :transmit => :transmit, :receive => :receive } @doc """ The network IO operation direction. ### Examples ``` ["transmit"] ``` ### Elixir iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_io_direction() :"network.io.direction" iex> OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_io_direction_values().transmit :transmit iex> %{OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_io_direction() => OpenTelemetry.SemConv.Incubating.NetworkAttributes.network_io_direction_values().transmit} %{:"network.io.direction" => :transmit} ### Erlang ```erlang ?NETWORK_IO_DIRECTION. 'network.io.direction' ?NETWORK_IO_DIRECTION_VALUES_TRANSMIT. 'transmit' \#{?NETWORK_IO_DIRECTION => ?NETWORK_IO_DIRECTION_VALUES_TRANSMIT}. \#{'network.io.direction' => 'transmit'} ``` """ @spec network_io_direction :: :"network.io.direction" def network_io_direction do :"network.io.direction" end @spec network_io_direction_values() :: network_io_direction_values() def network_io_direction_values() do %{ :transmit => :transmit, :receive => :receive } end end