Class: Number
Class Method Summary collapse
Instance Method Summary collapse
- #%(other) ⇒ Object (also: #modulo)
- #&(other) ⇒ Object
- #*(other) ⇒ Object
- #**(other) ⇒ Object
- #+(other) ⇒ Object
- #+@ ⇒ Object
- #-(other) ⇒ Object
- #-@ ⇒ Object
- #/(other) ⇒ Object (also: #fdiv)
- #<(other) ⇒ Object
- #<<(count) ⇒ Object
- #<=(other) ⇒ Object
- #<=>(other) ⇒ Object
- #==(other) ⇒ Object (also: #eql?)
- #===(other) ⇒ Object
- #>(other) ⇒ Object
- #>=(other) ⇒ Object
- #>>(count) ⇒ Object
- #[](bit) ⇒ Object
- #^(other) ⇒ Object
- #__id__ ⇒ Object (also: #object_id)
- #abs ⇒ Object (also: #magnitude)
- #abs2 ⇒ Object
- #angle ⇒ Object (also: #arg, #phase)
- #bit_length ⇒ Object
- #ceil ⇒ Object
- #chr(encoding = undefined) ⇒ Object
- #coerce(other) ⇒ Object
- #denominator ⇒ Object
- #divmod(other) ⇒ Object
- #downto(stop, &block) ⇒ Object
- #equal?(other) ⇒ Boolean
- #even? ⇒ Boolean
- #finite? ⇒ Boolean
- #floor ⇒ Object
- #gcd(other) ⇒ Object
- #gcdlcm(other) ⇒ Object
- #infinite? ⇒ Boolean
- #instance_of?(klass) ⇒ Boolean
- #integer? ⇒ Boolean
- #is_a?(klass) ⇒ Boolean (also: #kind_of?)
- #lcm(other) ⇒ Object
- #nan? ⇒ Boolean
- #negative? ⇒ Boolean
- #next ⇒ Object (also: #succ)
- #nonzero? ⇒ Boolean
- #numerator ⇒ Object
- #odd? ⇒ Boolean
- #ord ⇒ Object
- #positive? ⇒ Boolean
- #pred ⇒ Object
- #quo(other) ⇒ Object
- #rationalize(eps = undefined) ⇒ Object
- #round(ndigits = undefined) ⇒ Object
-
#size ⇒ Object
Since bitwise operations are 32 bit, declare it to be so.
- #step(limit = undefined, step = undefined, to: undefined, by: undefined, &block) ⇒ Object
- #times(&block) ⇒ Object
- #to_f ⇒ Object
- #to_i ⇒ Object (also: #to_int, #truncate)
- #to_r ⇒ Object
- #to_s(base = 10) ⇒ Object (also: #inspect)
- #upto(stop, &block) ⇒ Object
- #zero? ⇒ Boolean
- #|(other) ⇒ Object
- #~ ⇒ Object
Methods inherited from Numeric
#__coerced__, #clone, #conj, #div, #dup, #i, #imag, #polar, #real, #real?, #rect, #to_c
Methods included from Comparable
Class Method Details
Instance Method Details
#%(other) ⇒ Object Also known as: modulo
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# File 'opal/opal/corelib/number.rb', line 88 def %(other) %x{ if (other.$$is_number) { if (other == -Infinity) { return other; } else if (other == 0) { #{raise ZeroDivisionError, "divided by 0"}; } else if (other < 0 || self < 0) { return (self % other + other) % other; } else { return self % other; } } else { return #{__coerced__ :%, other}; } } end |
#&(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 110 def &(other) %x{ if (other.$$is_number) { return self & other; } else { return #{__coerced__ :&, other}; } } end |
#*(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 64 def *(other) %x{ if (other.$$is_number) { return self * other; } else { return #{__coerced__ :*, other}; } } end |
#**(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 256 def **(other) if Integer === other if !(Integer === self) || other > 0 `Math.pow(self, other)` else Rational.new(self, 1) ** other end elsif self < 0 && (Float === other || Rational === other) Complex.new(self, 0) ** other.to_f elsif `other.$$is_number != null` `Math.pow(self, other)` else __coerced__ :**, other end end |
#+(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 42 def +(other) %x{ if (other.$$is_number) { return self + other; } else { return #{__coerced__ :+, other}; } } end |
#+@ ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 244 def +@ `+self` end |
#-(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 53 def -(other) %x{ if (other.$$is_number) { return self - other; } else { return #{__coerced__ :-, other}; } } end |
#-@ ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 248 def -@ `-self` end |
#/(other) ⇒ Object Also known as: fdiv
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# File 'opal/opal/corelib/number.rb', line 75 def /(other) %x{ if (other.$$is_number) { return self / other; } else { return #{__coerced__ :/, other}; } } end |
#<(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 143 def <(other) %x{ if (other.$$is_number) { return self < other; } else { return #{__coerced__ :<, other}; } } end |
#<<(count) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 218 def <<(count) count = Opal.coerce_to! count, Integer, :to_int `#{count} > 0 ? self << #{count} : self >> -#{count}` end |
#<=(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 154 def <=(other) %x{ if (other.$$is_number) { return self <= other; } else { return #{__coerced__ :<=, other}; } } end |
#<=>(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 210 def <=>(other) %x{ return spaceship_operator(self, other); } rescue ArgumentError nil end |
#==(other) ⇒ Object Also known as: eql?
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# File 'opal/opal/corelib/number.rb', line 286 def ==(other) %x{ if (other.$$is_number) { return self.valueOf() === other.valueOf(); } else if (#{other.respond_to? :==}) { return #{other == self}; } else { return false; } } end |
#===(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 272 def ===(other) %x{ if (other.$$is_number) { return self.valueOf() === other.valueOf(); } else if (#{other.respond_to? :==}) { return #{other == self}; } else { return false; } } end |
#>(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 165 def >(other) %x{ if (other.$$is_number) { return self > other; } else { return #{__coerced__ :>, other}; } } end |
#>=(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 176 def >=(other) %x{ if (other.$$is_number) { return self >= other; } else { return #{__coerced__ :>=, other}; } } end |
#>>(count) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 224 def >>(count) count = Opal.coerce_to! count, Integer, :to_int `#{count} > 0 ? self >> #{count} : self << -#{count}` end |
#[](bit) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 230 def [](bit) bit = Opal.coerce_to! bit, Integer, :to_int %x{ if (#{bit} < 0) { return 0; } if (#{bit} >= 32) { return #{ self } < 0 ? 1 : 0; } return (self >> #{bit}) & 1; } end |
#^(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 132 def ^(other) %x{ if (other.$$is_number) { return self ^ other; } else { return #{__coerced__ :^, other}; } } end |
#__id__ ⇒ Object Also known as: object_id
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# File 'opal/opal/corelib/number.rb', line 36 def __id__ `(self * 2) + 1` end |
#abs ⇒ Object Also known as: magnitude
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# File 'opal/opal/corelib/number.rb', line 300 def abs `Math.abs(self)` end |
#abs2 ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 304 def abs2 `Math.abs(self * self)` end |
#angle ⇒ Object Also known as: arg, phase
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# File 'opal/opal/corelib/number.rb', line 308 def angle return self if nan? %x{ if (self == 0) { if (1 / self > 0) { return 0; } else { return Math.PI; } } else if (self < 0) { return Math.PI; } else { return 0; } } end |
#bit_length ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 332 def bit_length unless Integer === self raise NoMethodError.new("undefined method `bit_length` for #{self}:Float", 'bit_length') end %x{ if (self === 0 || self === -1) { return 0; } var result = 0, value = self < 0 ? ~self : self; while (value != 0) { result += 1; value >>>= 1; } return result; } end |
#ceil ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 354 def ceil `Math.ceil(self)` end |
#chr(encoding = undefined) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 358 def chr(encoding = undefined) `String.fromCharCode(self)` end |
#coerce(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 16 def coerce(other) %x{ if (other === nil) { #{raise TypeError, "can't convert #{other.class} into Float"}; } else if (other.$$is_string) { return [#{Float(other)}, self]; } else if (#{other.respond_to?(:to_f)}) { return [#{Opal.coerce_to!(other, Float, :to_f)}, self]; } else if (other.$$is_number) { return [other, self]; } else { #{raise TypeError, "can't convert #{other.class} into Float"}; } } end |
#denominator ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 362 def denominator if nan? || infinite? 1 else super end end |
#divmod(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 818 def divmod(other) if nan? || other.nan? raise FloatDomainError, "NaN" elsif infinite? raise FloatDomainError, "Infinity" else super end end |
#downto(stop, &block) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 370 def downto(stop, &block) return enum_for(:downto, stop){ raise ArgumentError, "comparison of #{self.class} with #{stop.class} failed" unless Numeric === stop stop > self ? 0 : self - stop + 1 } unless block_given? %x{ if (!stop.$$is_number) { #{raise ArgumentError, "comparison of #{self.class} with #{stop.class} failed"} } for (var i = self; i >= stop; i--) { block(i); } } self end |
#equal?(other) ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 390 def equal?(other) self == other || `isNaN(self) && isNaN(other)` end |
#even? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 394 def even? `self % 2 === 0` end |
#finite? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 859 def finite? `self != Infinity && self != -Infinity && !isNaN(self)` end |
#floor ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 398 def floor `Math.floor(self)` end |
#gcd(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 402 def gcd(other) unless Integer === other raise TypeError, 'not an integer' end %x{ var min = Math.abs(self), max = Math.abs(other); while (min > 0) { var tmp = min; min = max % min; max = tmp; } return max; } end |
#gcdlcm(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 422 def gcdlcm(other) [gcd, lcm] end |
#infinite? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 863 def infinite? %x{ if (self == Infinity) { return +1; } else if (self == -Infinity) { return -1; } else { return nil; } } end |
#instance_of?(klass) ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 440 def instance_of?(klass) return true if klass == Fixnum && Integer === self return true if klass == Integer && Integer === self return true if klass == Float && Float === self super end |
#integer? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 426 def integer? `self % 1 === 0` end |
#is_a?(klass) ⇒ Boolean Also known as: kind_of?
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# File 'opal/opal/corelib/number.rb', line 430 def is_a?(klass) return true if klass == Fixnum && Integer === self return true if klass == Integer && Integer === self return true if klass == Float && Float === self super end |
#lcm(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 448 def lcm(other) unless Integer === other raise TypeError, 'not an integer' end %x{ if (self == 0 || other == 0) { return 0; } else { return Math.abs(self * other / #{gcd(other)}); } } end |
#nan? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 855 def nan? `isNaN(self)` end |
#negative? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 881 def negative? `self == -Infinity || 1 / self < 0` end |
#next ⇒ Object Also known as: succ
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# File 'opal/opal/corelib/number.rb', line 467 def next `self + 1` end |
#nonzero? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 471 def nonzero? `self == 0 ? nil : self` end |
#numerator ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 475 def numerator if nan? || infinite? self else super end end |
#odd? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 483 def odd? `self % 2 !== 0` end |
#ord ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 487 def ord self end |
#positive? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 877 def positive? `self != 0 && (self == Infinity || 1 / self > 0)` end |
#pred ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 491 def pred `self - 1` end |
#quo(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 495 def quo(other) if Integer === self super else self / other end end |
#rationalize(eps = undefined) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 503 def rationalize(eps = undefined) %x{ if (arguments.length > 1) { #{raise ArgumentError, "wrong number of arguments (#{`arguments.length`} for 0..1)"}; } } if Integer === self Rational.new(self, 1) elsif infinite? raise FloatDomainError, "Infinity" elsif nan? raise FloatDomainError, "NaN" elsif `eps == null` f, n = Math.frexp self f = Math.ldexp(f, Float::MANT_DIG).to_i n -= Float::MANT_DIG Rational.new(2 * f, 1 << (1 - n)).rationalize(Rational.new(1, 1 << (1 - n))) else to_r.rationalize(eps) end end |
#round(ndigits = undefined) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 527 def round(ndigits = undefined) if Integer === self if `ndigits == null` return self end if Float === ndigits && ndigits.infinite? raise RangeError, "Infinity" end ndigits = Opal.coerce_to!(ndigits, Integer, :to_int) if ndigits < Integer::MIN raise RangeError, "out of bounds" end if `ndigits >= 0` return self end ndigits = -ndigits; %x{ if (0.415241 * ndigits - 0.125 > #{size}) { return 0; } var f = Math.pow(10, ndigits), x = Math.floor((Math.abs(x) + f / 2) / f) * f; return self < 0 ? -x : x; } else if nan? && `ndigits == null` raise FloatDomainError, "NaN" end ndigits = Opal.coerce_to!(`ndigits || 0`, Integer, :to_int) if ndigits <= 0 if nan? raise RangeError, "NaN" elsif infinite? raise FloatDomainError, "Infinity" end elsif ndigits == 0 return `Math.round(self)` elsif nan? || infinite? return self end _, exp = Math.frexp(self) if ndigits >= (Float::DIG + 2) - (exp > 0 ? exp / 4 : exp / 3 - 1) return self end if ndigits < -(exp > 0 ? exp / 3 + 1 : exp / 4) return 0 end `Math.round(self * Math.pow(10, ndigits)) / Math.pow(10, ndigits)` end end |
#size ⇒ Object
Since bitwise operations are 32 bit, declare it to be so.
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# File 'opal/opal/corelib/number.rb', line 851 def size 4 end |
#step(limit = undefined, step = undefined, to: undefined, by: undefined, &block) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 592 def step(limit = undefined, step = undefined, to: undefined, by: undefined, &block) %x{ if (limit !== undefined && to !== undefined) { #{raise ArgumentError, "to is given twice"} } if (step !== undefined && by !== undefined) { #{raise ArgumentError, "step is given twice"} } function validateParameters() { if (to !== undefined) { limit = to; } if (limit === undefined) { limit = nil; } if (step === nil) { #{raise TypeError, "step must be numeric"} } if (step === 0) { #{raise ArgumentError, "step can't be 0"} } if (by !== undefined) { step = by; } if (step === nil || step == null) { step = 1; } var sign = #{step <=> 0}; if (sign === nil) { #{raise TypeError, "0 can't be coerced into #{step.class}"} } if (limit === nil || limit == null) { limit = sign > 0 ? #{Float::INFINITY} : #{-Float::INFINITY}; } #{Opal.compare(self, limit)} } function stepFloatSize() { if ((step > 0 && self > limit) || (step < 0 && self < limit)) { return 0; } else if (step === Infinity || step === -Infinity) { return 1; } else { var abs = Math.abs, floor = Math.floor, err = (abs(self) + abs(limit) + abs(limit - self)) / abs(step) * #{Float::EPSILON}; if (err === Infinity || err === -Infinity) { return 0; } else { if (err > 0.5) { err = 0.5; } return floor((limit - self) / step + err) + 1 } } } function stepSize() { validateParameters(); if (step === 0) { return Infinity; } if (step % 1 !== 0) { return stepFloatSize(); } else if ((step > 0 && self > limit) || (step < 0 && self < limit)) { return 0; } else { var ceil = Math.ceil, abs = Math.abs, lhs = abs(self - limit) + 1, rhs = abs(step); return ceil(lhs / rhs); } } } unless block_given? positional_args = [] keyword_args = {} %x{ if (limit !== undefined) { positional_args.push(limit); } if (step !== undefined) { positional_args.push(step); } if (to !== undefined) { Opal.hash_put(keyword_args, "to", to); } if (by !== undefined) { Opal.hash_put(keyword_args, "by", by); } if (!#{keyword_args.empty?}) { positional_args.push(keyword_args); } } return enum_for(:step, *positional_args) { `stepSize()` } end %x{ validateParameters(); if (step === 0) { while (true) { block(self); } } if (self % 1 !== 0 || limit % 1 !== 0 || step % 1 !== 0) { var n = stepFloatSize(); if (n > 0) { if (step === Infinity || step === -Infinity) { block(self); } else { var i = 0, d; if (step > 0) { while (i < n) { d = i * step + self; if (limit < d) { d = limit; } block(d); i += 1; } } else { while (i < n) { d = i * step + self; if (limit > d) { d = limit; } block(d); i += 1 } } } } } else { var value = self; if (step > 0) { while (value <= limit) { block(value); value += step; } } else { while (value >= limit) { block(value); value += step } } } return self; } end |
#times(&block) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 772 def times(&block) return enum_for(:times) { self } unless block %x{ for (var i = 0; i < self; i++) { block(i); } } self end |
#to_f ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 784 def to_f self end |
#to_i ⇒ Object Also known as: to_int, truncate
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# File 'opal/opal/corelib/number.rb', line 788 def to_i `parseInt(self, 10)` end |
#to_r ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 794 def to_r if Integer === self Rational.new(self, 1) else f, e = Math.frexp(self) f = Math.ldexp(f, Float::MANT_DIG).to_i e -= Float::MANT_DIG (f * (Float::RADIX ** e)).to_r end end |
#to_s(base = 10) ⇒ Object Also known as: inspect
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# File 'opal/opal/corelib/number.rb', line 806 def to_s(base = 10) if base < 2 || base > 36 raise ArgumentError, 'base must be between 2 and 36' end `self.toString(base)` end |
#upto(stop, &block) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 828 def upto(stop, &block) return enum_for(:upto, stop){ raise ArgumentError, "comparison of #{self.class} with #{stop.class} failed" unless Numeric === stop stop < self ? 0 : stop - self + 1 } unless block_given? %x{ if (!stop.$$is_number) { #{raise ArgumentError, "comparison of #{self.class} with #{stop.class} failed"} } for (var i = self; i <= stop; i++) { block(i); } } self end |
#zero? ⇒ Boolean
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# File 'opal/opal/corelib/number.rb', line 846 def zero? `self == 0` end |
#|(other) ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 121 def |(other) %x{ if (other.$$is_number) { return self | other; } else { return #{__coerced__ :|, other}; } } end |
#~ ⇒ Object
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# File 'opal/opal/corelib/number.rb', line 252 def ~ `~self` end |