Class: CryptoApis::GetBlockDetailsByBlockHeightRIBSB
- Inherits:
-
Object
- Object
- CryptoApis::GetBlockDetailsByBlockHeightRIBSB
- Defined in:
- lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb
Overview
Bitcoin
Instance Attribute Summary collapse
-
#bits ⇒ Object
A sub-unit of BTC equal to 0.000001 BTC, or 100 Satoshi, and is the same as microbitcoin (μBTC).
-
#chainwork ⇒ Object
Represents a hexadecimal number of all the hashes necessary to produce the current chain.
-
#difficulty ⇒ Object
Represents a mathematical value of how hard it is to find a valid hash for this block.
-
#merkle_root ⇒ Object
Defines the single and final (root) node of a Merkle tree.
-
#nonce ⇒ Object
Represents a random value that can be adjusted to satisfy the Proof of Work.
-
#size ⇒ Object
Represents the total size of the block in Bytes.
-
#stripped_size ⇒ Object
Defines the numeric representation of the block size excluding the witness data.
-
#version ⇒ Object
Represents the version of the specific block on the blockchain.
-
#version_hex ⇒ Object
Is the hexadecimal string representation of the block’s version.
-
#weight ⇒ Object
Represents a measurement to compare the size of different transactions to each other in proportion to the block size limit.
Class Method Summary collapse
-
.acceptable_attributes ⇒ Object
Returns all the JSON keys this model knows about.
-
.attribute_map ⇒ Object
Attribute mapping from ruby-style variable name to JSON key.
-
.build_from_hash(attributes) ⇒ Object
Builds the object from hash.
-
.openapi_nullable ⇒ Object
List of attributes with nullable: true.
-
.openapi_types ⇒ Object
Attribute type mapping.
Instance Method Summary collapse
-
#==(o) ⇒ Object
Checks equality by comparing each attribute.
-
#_deserialize(type, value) ⇒ Object
Deserializes the data based on type.
-
#_to_hash(value) ⇒ Hash
Outputs non-array value in the form of hash For object, use to_hash.
-
#build_from_hash(attributes) ⇒ Object
Builds the object from hash.
- #eql?(o) ⇒ Boolean
-
#hash ⇒ Integer
Calculates hash code according to all attributes.
-
#initialize(attributes = {}) ⇒ GetBlockDetailsByBlockHeightRIBSB
constructor
Initializes the object.
-
#list_invalid_properties ⇒ Object
Show invalid properties with the reasons.
-
#to_body ⇒ Hash
to_body is an alias to to_hash (backward compatibility).
-
#to_hash ⇒ Hash
Returns the object in the form of hash.
-
#to_s ⇒ String
Returns the string representation of the object.
-
#valid? ⇒ Boolean
Check to see if the all the properties in the model are valid.
Constructor Details
#initialize(attributes = {}) ⇒ GetBlockDetailsByBlockHeightRIBSB
Initializes the object
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 94 def initialize(attributes = {}) if (!attributes.is_a?(Hash)) fail ArgumentError, "The input argument (attributes) must be a hash in `CryptoApis::GetBlockDetailsByBlockHeightRIBSB` initialize method" end # check to see if the attribute exists and convert string to symbol for hash key attributes = attributes.each_with_object({}) { |(k, v), h| if (!self.class.attribute_map.key?(k.to_sym)) fail ArgumentError, "`#{k}` is not a valid attribute in `CryptoApis::GetBlockDetailsByBlockHeightRIBSB`. Please check the name to make sure it's valid. List of attributes: " + self.class.attribute_map.keys.inspect end h[k.to_sym] = v } if attributes.key?(:'difficulty') self.difficulty = attributes[:'difficulty'] end if attributes.key?(:'nonce') self.nonce = attributes[:'nonce'] end if attributes.key?(:'size') self.size = attributes[:'size'] end if attributes.key?(:'bits') self.bits = attributes[:'bits'] end if attributes.key?(:'chainwork') self.chainwork = attributes[:'chainwork'] end if attributes.key?(:'merkle_root') self.merkle_root = attributes[:'merkle_root'] end if attributes.key?(:'stripped_size') self.stripped_size = attributes[:'stripped_size'] end if attributes.key?(:'version') self.version = attributes[:'version'] end if attributes.key?(:'version_hex') self.version_hex = attributes[:'version_hex'] end if attributes.key?(:'weight') self.weight = attributes[:'weight'] end end |
Instance Attribute Details
#bits ⇒ Object
A sub-unit of BTC equal to 0.000001 BTC, or 100 Satoshi, and is the same as microbitcoin (μBTC). Bits have two-decimal precision.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 29 def bits @bits end |
#chainwork ⇒ Object
Represents a hexadecimal number of all the hashes necessary to produce the current chain. E.g., when converting 0000000000000000000000000000000000000000000086859f7a841475b236fd to a decimal you get 635262017308958427068157 hashes, or 635262 exahashes.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 32 def chainwork @chainwork end |
#difficulty ⇒ Object
Represents a mathematical value of how hard it is to find a valid hash for this block.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 20 def difficulty @difficulty end |
#merkle_root ⇒ Object
Defines the single and final (root) node of a Merkle tree. It is the combined hash of all transactions’ hashes that are part of a blockchain block.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 35 def merkle_root @merkle_root end |
#nonce ⇒ Object
Represents a random value that can be adjusted to satisfy the Proof of Work.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 23 def nonce @nonce end |
#size ⇒ Object
Represents the total size of the block in Bytes.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 26 def size @size end |
#stripped_size ⇒ Object
Defines the numeric representation of the block size excluding the witness data.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 38 def stripped_size @stripped_size end |
#version ⇒ Object
Represents the version of the specific block on the blockchain.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 41 def version @version end |
#version_hex ⇒ Object
Is the hexadecimal string representation of the block’s version.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 44 def version_hex @version_hex end |
#weight ⇒ Object
Represents a measurement to compare the size of different transactions to each other in proportion to the block size limit.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 47 def weight @weight end |
Class Method Details
.acceptable_attributes ⇒ Object
Returns all the JSON keys this model knows about
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 66 def self.acceptable_attributes attribute_map.values end |
.attribute_map ⇒ Object
Attribute mapping from ruby-style variable name to JSON key.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 50 def self.attribute_map { :'difficulty' => :'difficulty', :'nonce' => :'nonce', :'size' => :'size', :'bits' => :'bits', :'chainwork' => :'chainwork', :'merkle_root' => :'merkleRoot', :'stripped_size' => :'strippedSize', :'version' => :'version', :'version_hex' => :'versionHex', :'weight' => :'weight' } end |
.build_from_hash(attributes) ⇒ Object
Builds the object from hash
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 243 def self.build_from_hash(attributes) new.build_from_hash(attributes) end |
.openapi_nullable ⇒ Object
List of attributes with nullable: true
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 87 def self.openapi_nullable Set.new([ ]) end |
.openapi_types ⇒ Object
Attribute type mapping.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 71 def self.openapi_types { :'difficulty' => :'String', :'nonce' => :'String', :'size' => :'Integer', :'bits' => :'String', :'chainwork' => :'String', :'merkle_root' => :'String', :'stripped_size' => :'Integer', :'version' => :'Integer', :'version_hex' => :'String', :'weight' => :'Integer' } end |
Instance Method Details
#==(o) ⇒ Object
Checks equality by comparing each attribute.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 213 def ==(o) return true if self.equal?(o) self.class == o.class && difficulty == o.difficulty && nonce == o.nonce && size == o.size && bits == o.bits && chainwork == o.chainwork && merkle_root == o.merkle_root && stripped_size == o.stripped_size && version == o.version && version_hex == o.version_hex && weight == o.weight end |
#_deserialize(type, value) ⇒ Object
Deserializes the data based on type
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 274 def _deserialize(type, value) case type.to_sym when :Time Time.parse(value) when :Date Date.parse(value) when :String value.to_s when :Integer value.to_i when :Float value.to_f when :Boolean if value.to_s =~ /\A(true|t|yes|y|1)\z/i true else false end when :Object # generic object (usually a Hash), return directly value when /\AArray<(?<inner_type>.+)>\z/ inner_type = Regexp.last_match[:inner_type] value.map { |v| _deserialize(inner_type, v) } when /\AHash<(?<k_type>.+?), (?<v_type>.+)>\z/ k_type = Regexp.last_match[:k_type] v_type = Regexp.last_match[:v_type] {}.tap do |hash| value.each do |k, v| hash[_deserialize(k_type, k)] = _deserialize(v_type, v) end end else # model # models (e.g. Pet) or oneOf klass = CryptoApis.const_get(type) klass.respond_to?(:openapi_one_of) ? klass.build(value) : klass.build_from_hash(value) end end |
#_to_hash(value) ⇒ Hash
Outputs non-array value in the form of hash For object, use to_hash. Otherwise, just return the value
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 345 def _to_hash(value) if value.is_a?(Array) value.compact.map { |v| _to_hash(v) } elsif value.is_a?(Hash) {}.tap do |hash| value.each { |k, v| hash[k] = _to_hash(v) } end elsif value.respond_to? :to_hash value.to_hash else value end end |
#build_from_hash(attributes) ⇒ Object
Builds the object from hash
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 250 def build_from_hash(attributes) return nil unless attributes.is_a?(Hash) attributes = attributes.transform_keys(&:to_sym) self.class.openapi_types.each_pair do |key, type| if attributes[self.class.attribute_map[key]].nil? && self.class.openapi_nullable.include?(key) self.send("#{key}=", nil) elsif type =~ /\AArray<(.*)>/i # check to ensure the input is an array given that the attribute # is documented as an array but the input is not if attributes[self.class.attribute_map[key]].is_a?(Array) self.send("#{key}=", attributes[self.class.attribute_map[key]].map { |v| _deserialize($1, v) }) end elsif !attributes[self.class.attribute_map[key]].nil? self.send("#{key}=", _deserialize(type, attributes[self.class.attribute_map[key]])) end end self end |
#eql?(o) ⇒ Boolean
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 230 def eql?(o) self == o end |
#hash ⇒ Integer
Calculates hash code according to all attributes.
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 236 def hash [difficulty, nonce, size, bits, chainwork, merkle_root, stripped_size, version, version_hex, weight].hash end |
#list_invalid_properties ⇒ Object
Show invalid properties with the reasons. Usually used together with valid?
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 150 def list_invalid_properties invalid_properties = Array.new if @difficulty.nil? invalid_properties.push('invalid value for "difficulty", difficulty cannot be nil.') end if @nonce.nil? invalid_properties.push('invalid value for "nonce", nonce cannot be nil.') end if @size.nil? invalid_properties.push('invalid value for "size", size cannot be nil.') end if @bits.nil? invalid_properties.push('invalid value for "bits", bits cannot be nil.') end if @chainwork.nil? invalid_properties.push('invalid value for "chainwork", chainwork cannot be nil.') end if @merkle_root.nil? invalid_properties.push('invalid value for "merkle_root", merkle_root cannot be nil.') end if @stripped_size.nil? invalid_properties.push('invalid value for "stripped_size", stripped_size cannot be nil.') end if @version.nil? invalid_properties.push('invalid value for "version", version cannot be nil.') end if @version_hex.nil? invalid_properties.push('invalid value for "version_hex", version_hex cannot be nil.') end if @weight.nil? invalid_properties.push('invalid value for "weight", weight cannot be nil.') end invalid_properties end |
#to_body ⇒ Hash
to_body is an alias to to_hash (backward compatibility)
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 321 def to_body to_hash end |
#to_hash ⇒ Hash
Returns the object in the form of hash
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 327 def to_hash hash = {} self.class.attribute_map.each_pair do |attr, param| value = self.send(attr) if value.nil? is_nullable = self.class.openapi_nullable.include?(attr) next if !is_nullable || (is_nullable && !instance_variable_defined?(:"@#{attr}")) end hash[param] = _to_hash(value) end hash end |
#to_s ⇒ String
Returns the string representation of the object
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 315 def to_s to_hash.to_s end |
#valid? ⇒ Boolean
Check to see if the all the properties in the model are valid
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# File 'lib/crypto_apis/models/get_block_details_by_block_height_ribsb.rb', line 197 def valid? return false if @difficulty.nil? return false if @nonce.nil? return false if @size.nil? return false if @bits.nil? return false if @chainwork.nil? return false if @merkle_root.nil? return false if @stripped_size.nil? return false if @version.nil? return false if @version_hex.nil? return false if @weight.nil? true end |