Class: Api::Score
- Inherits:
-
Object
- Object
- Api::Score
- Defined in:
- lib/sc2ai/protocol/score_pb.rb
Defined Under Namespace
Modules: ScoreType
Instance Attribute Summary collapse
-
#score ⇒ Object
optional field readers.
-
#score_details ⇒ Object
Returns the value of attribute score_details.
Class Method Summary collapse
Instance Method Summary collapse
- #_encode(buff) ⇒ Object
- #decode_from(buff, index, len) ⇒ Object
- #has_score? ⇒ Boolean
- #has_score_details? ⇒ Boolean
-
#initialize(score_type: nil, score: nil, score_details: nil) ⇒ Score
constructor
END writers for optional fields.
-
#score_type ⇒ Object
enum readers.
-
#score_type=(v) ⇒ Object
enum writers.
- #to_h ⇒ Object
- #to_proto(_options = {}) ⇒ Object
Constructor Details
#initialize(score_type: nil, score: nil, score_details: nil) ⇒ Score
END writers for optional fields
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# File 'lib/sc2ai/protocol/score_pb.rb', line 74 def initialize(score_type: nil, score: nil, score_details: nil) @_bitmask = 0 if score_type == nil @score_type = 0 else @_bitmask |= 0x0000000000000001 @score_type = Api::Score::ScoreType.resolve(score_type) || score_type end if score == nil @score = 0 else unless -2_147_483_648 <= score && score <= 2_147_483_647 raise RangeError, "Value (#{score}) for field score is out of bounds (-2147483648..2147483647)" end @_bitmask |= 0x0000000000000002 @score = score end if score_details == nil @score_details = nil else @_bitmask |= 0x0000000000000004 @score_details = score_details end end |
Instance Attribute Details
#score ⇒ Object
optional field readers
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# File 'lib/sc2ai/protocol/score_pb.rb', line 47 def score @score end |
#score_details ⇒ Object
Returns the value of attribute score_details.
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# File 'lib/sc2ai/protocol/score_pb.rb', line 49 def score_details @score_details end |
Class Method Details
.decode(buff) ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 7 def self.decode(buff) allocate.decode_from(buff.b, 0, buff.bytesize) end |
.encode(obj) ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 11 def self.encode(obj) obj._encode("".b) end |
Instance Method Details
#_encode(buff) ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 675 def _encode(buff) val = @score_type if val != 0 buff << 0x30 while val != 0 byte = val & 0x7F val >>= 7 # This drops the top bits, # Otherwise, with a signed right shift, # we get infinity one bits at the top val &= (1 << 57) - 1 byte |= 0x80 if val != 0 buff << byte end end val = @score if val != 0 buff << 0x38 while val != 0 byte = val & 0x7F val >>= 7 # This drops the top bits, # Otherwise, with a signed right shift, # we get infinity one bits at the top val &= (1 << 57) - 1 byte |= 0x80 if val != 0 buff << byte end end val = @score_details if val buff << 0x42 # Save the buffer size before appending the submessage current_len = buff.bytesize # Write a single dummy byte to later store encoded length buff << 42 # "*" val._encode(buff) # Calculate the submessage's size = buff.bytesize - current_len - 1 # Hope the size fits in one byte byte = & 0x7F >>= 7 byte |= 0x80 if > 0 buff.setbyte(current_len, byte) # If the sub message was bigger if > 0 current_len += 1 # compute how much we need to shift encoded_int_len = 0 remaining_size = while remaining_size != 0 remaining_size >>= 7 encoded_int_len += 1 end # Make space in the string with dummy bytes buff.bytesplice(current_len, 0, "*********", 0, encoded_int_len) # Overwrite the dummy bytes with the encoded length while != 0 byte = & 0x7F >>= 7 byte |= 0x80 if > 0 buff.setbyte(current_len, byte) current_len += 1 end end buff end buff end |
#decode_from(buff, index, len) ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 115 def decode_from(buff, index, len) @_bitmask = 0 @score_type = 0 @score = 0 @score_details = nil return self if index >= len ## PULL_UINT64 tag = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 found = true while true # If we have looped around since the last found tag this one is # unexpected, so discard it and continue. if !found wire_type = tag & 0x7 case wire_type when 0 i = 0 while true newbyte = buff.getbyte(index) index += 1 break if newbyte.nil? || newbyte < 0x80 i += 1 break if i > 9 end when 1 index += 8 when 2 ## PULL_BYTES value = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end buff.byteslice(index, value) index += value ## END PULL_BYTES when 5 index += 4 else raise "unknown wire type #{wire_type}" end return self if index >= len ## PULL_UINT64 tag = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 end found = false if tag == 0x30 found = true ## PULL_INT64 @score_type = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 # Negative 32 bit integers are still encoded with 10 bytes # handle 2's complement negative numbers # If the top bit is 1, then it must be negative. -( ( ( ~( (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) ) ) & 0xFFFF_FFFF_FFFF_FFFF ) + 1 ) else raise "integer decoding error" end ## END PULL_INT64 @_bitmask |= 0x0000000000000001 return self if index >= len ## PULL_UINT64 tag = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 end if tag == 0x38 found = true ## PULL_INT32 @score = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 # Negative 32 bit integers are still encoded with 10 bytes # handle 2's complement negative numbers # If the top bit is 1, then it must be negative. -( ( ( ~( (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) ) ) & 0xFFFF_FFFF ) + 1 ) else raise "integer decoding error" end ## END PULL_INT32 @_bitmask |= 0x0000000000000002 return self if index >= len ## PULL_UINT64 tag = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 end if tag == 0x42 found = true ## PULL_MESSAGE ## PULL_UINT64 msg_len = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 @score_details = Api::ScoreDetails.allocate.decode_from( buff, index, index += msg_len ) ## END PULL_MESSAGE @_bitmask |= 0x0000000000000004 return self if index >= len ## PULL_UINT64 tag = if (byte0 = buff.getbyte(index)) < 0x80 index += 1 byte0 elsif (byte1 = buff.getbyte(index + 1)) < 0x80 index += 2 (byte1 << 7) | (byte0 & 0x7F) elsif (byte2 = buff.getbyte(index + 2)) < 0x80 index += 3 (byte2 << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte3 = buff.getbyte(index + 3)) < 0x80 index += 4 (byte3 << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte4 = buff.getbyte(index + 4)) < 0x80 index += 5 (byte4 << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte5 = buff.getbyte(index + 5)) < 0x80 index += 6 (byte5 << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte6 = buff.getbyte(index + 6)) < 0x80 index += 7 (byte6 << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte7 = buff.getbyte(index + 7)) < 0x80 index += 8 (byte7 << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte8 = buff.getbyte(index + 8)) < 0x80 index += 9 (byte8 << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) elsif (byte9 = buff.getbyte(index + 9)) < 0x80 index += 10 (byte9 << 63) | ((byte8 & 0x7F) << 56) | ((byte7 & 0x7F) << 49) | ((byte6 & 0x7F) << 42) | ((byte5 & 0x7F) << 35) | ((byte4 & 0x7F) << 28) | ((byte3 & 0x7F) << 21) | ((byte2 & 0x7F) << 14) | ((byte1 & 0x7F) << 7) | (byte0 & 0x7F) else raise "integer decoding error" end ## END PULL_UINT64 end return self if index >= len end end |
#has_score? ⇒ Boolean
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# File 'lib/sc2ai/protocol/score_pb.rb', line 107 def has_score? (@_bitmask & 0x0000000000000002) == 0x0000000000000002 end |
#has_score_details? ⇒ Boolean
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# File 'lib/sc2ai/protocol/score_pb.rb', line 111 def has_score_details? (@_bitmask & 0x0000000000000004) == 0x0000000000000004 end |
#score_type ⇒ Object
enum readers
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# File 'lib/sc2ai/protocol/score_pb.rb', line 42 def score_type Api::Score::ScoreType.lookup(@score_type) || @score_type end |
#score_type=(v) ⇒ Object
enum writers
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# File 'lib/sc2ai/protocol/score_pb.rb', line 52 def score_type=(v) @score_type = Api::Score::ScoreType.resolve(v) || v end |
#to_h ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 763 def to_h result = {} result["score_type".to_sym] = @score_type result["score".to_sym] = @score result["score_details".to_sym] = @score_details.to_h result end |
#to_proto(_options = {}) ⇒ Object
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# File 'lib/sc2ai/protocol/score_pb.rb', line 103 def to_proto( = {}) self.class.encode(self) end |