зеркало из https://github.com/github/ruby.git
378 строки
11 KiB
Ruby
378 строки
11 KiB
Ruby
module RubyVM::RJIT
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# Maximum number of temp value types we keep track of
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MAX_TEMP_TYPES = 8
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# Maximum number of local variable types we keep track of
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MAX_LOCAL_TYPES = 8
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# Operand to a YARV bytecode instruction
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SelfOpnd = :SelfOpnd # The value is self
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StackOpnd = Data.define(:index) # Temporary stack operand with stack index
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# Potential mapping of a value on the temporary stack to self,
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# a local variable, or constant so that we can track its type
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MapToStack = :MapToStack # Normal stack value
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MapToSelf = :MapToSelf # Temp maps to the self operand
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MapToLocal = Data.define(:local_index) # Temp maps to a local variable with index
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class Context < Struct.new(
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:stack_size, # @param [Integer] The number of values on the stack
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:sp_offset, # @param [Integer] JIT sp offset relative to the interpreter's sp
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:chain_depth, # @param [Integer] jit_chain_guard depth
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:local_types, # @param [Array<RubyVM::RJIT::Type>] Local variable types we keep track of
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:temp_types, # @param [Array<RubyVM::RJIT::Type>] Temporary variable types we keep track of
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:self_type, # @param [RubyVM::RJIT::Type] Type we track for self
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:temp_mapping, # @param [Array<Symbol>] Mapping of temp stack entries to types we track
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)
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def initialize(
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stack_size: 0,
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sp_offset: 0,
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chain_depth: 0,
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local_types: [Type::Unknown] * MAX_LOCAL_TYPES,
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temp_types: [Type::Unknown] * MAX_TEMP_TYPES,
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self_type: Type::Unknown,
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temp_mapping: [MapToStack] * MAX_TEMP_TYPES
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) = super
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# Deep dup by default for safety
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def dup
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ctx = super
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ctx.local_types = ctx.local_types.dup
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ctx.temp_types = ctx.temp_types.dup
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ctx.temp_mapping = ctx.temp_mapping.dup
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ctx
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end
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# Create a new Context instance with a given stack_size and sp_offset adjusted
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# accordingly. This is useful when you want to virtually rewind a stack_size for
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# generating a side exit while considering past sp_offset changes on gen_save_sp.
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def with_stack_size(stack_size)
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ctx = self.dup
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ctx.sp_offset -= ctx.stack_size - stack_size
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ctx.stack_size = stack_size
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ctx
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end
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def stack_opnd(depth_from_top)
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[SP, C.VALUE.size * (self.sp_offset - 1 - depth_from_top)]
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end
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def sp_opnd(offset_bytes = 0)
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[SP, (C.VALUE.size * self.sp_offset) + offset_bytes]
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end
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# Push one new value on the temp stack with an explicit mapping
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# Return a pointer to the new stack top
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def stack_push_mapping(mapping_temp_type)
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stack_size = self.stack_size
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# Keep track of the type and mapping of the value
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if stack_size < MAX_TEMP_TYPES
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mapping, temp_type = mapping_temp_type
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self.temp_mapping[stack_size] = mapping
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self.temp_types[stack_size] = temp_type
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case mapping
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in MapToLocal[idx]
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assert(idx < MAX_LOCAL_TYPES)
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else
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end
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end
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self.stack_size += 1
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self.sp_offset += 1
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return self.stack_opnd(0)
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end
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# Push one new value on the temp stack
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# Return a pointer to the new stack top
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def stack_push(val_type)
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return self.stack_push_mapping([MapToStack, val_type])
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end
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# Push the self value on the stack
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def stack_push_self
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return self.stack_push_mapping([MapToStack, Type::Unknown])
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end
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# Push a local variable on the stack
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def stack_push_local(local_idx)
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if local_idx >= MAX_LOCAL_TYPES
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return self.stack_push(Type::Unknown)
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end
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return self.stack_push_mapping([MapToLocal[local_idx], Type::Unknown])
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end
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# Pop N values off the stack
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# Return a pointer to the stack top before the pop operation
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def stack_pop(n = 1)
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assert(n <= self.stack_size)
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top = self.stack_opnd(0)
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# Clear the types of the popped values
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n.times do |i|
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idx = self.stack_size - i - 1
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if idx < MAX_TEMP_TYPES
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self.temp_types[idx] = Type::Unknown
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self.temp_mapping[idx] = MapToStack
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end
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end
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self.stack_size -= n
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self.sp_offset -= n
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return top
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end
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def shift_stack(argc)
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assert(argc < self.stack_size)
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method_name_index = self.stack_size - argc - 1
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(method_name_index...(self.stack_size - 1)).each do |i|
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if i + 1 < MAX_TEMP_TYPES
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self.temp_types[i] = self.temp_types[i + 1]
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self.temp_mapping[i] = self.temp_mapping[i + 1]
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end
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end
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self.stack_pop(1)
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end
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# Get the type of an instruction operand
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def get_opnd_type(opnd)
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case opnd
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in SelfOpnd
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self.self_type
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in StackOpnd[idx]
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assert(idx < self.stack_size)
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stack_idx = self.stack_size - 1 - idx
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# If outside of tracked range, do nothing
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if stack_idx >= MAX_TEMP_TYPES
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return Type::Unknown
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end
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mapping = self.temp_mapping[stack_idx]
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case mapping
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in MapToSelf
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self.self_type
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in MapToStack
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self.temp_types[self.stack_size - 1 - idx]
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in MapToLocal[idx]
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assert(idx < MAX_LOCAL_TYPES)
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self.local_types[idx]
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end
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end
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end
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# Get the currently tracked type for a local variable
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def get_local_type(idx)
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self.local_types[idx] || Type::Unknown
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end
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# Upgrade (or "learn") the type of an instruction operand
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# This value must be compatible and at least as specific as the previously known type.
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# If this value originated from self, or an lvar, the learned type will be
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# propagated back to its source.
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def upgrade_opnd_type(opnd, opnd_type)
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case opnd
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in SelfOpnd
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self.self_type = self.self_type.upgrade(opnd_type)
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in StackOpnd[idx]
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assert(idx < self.stack_size)
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stack_idx = self.stack_size - 1 - idx
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# If outside of tracked range, do nothing
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if stack_idx >= MAX_TEMP_TYPES
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return
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end
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mapping = self.temp_mapping[stack_idx]
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case mapping
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in MapToSelf
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self.self_type = self.self_type.upgrade(opnd_type)
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in MapToStack
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self.temp_types[stack_idx] = self.temp_types[stack_idx].upgrade(opnd_type)
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in MapToLocal[idx]
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assert(idx < MAX_LOCAL_TYPES)
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self.local_types[idx] = self.local_types[idx].upgrade(opnd_type)
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end
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end
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end
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# Get both the type and mapping (where the value originates) of an operand.
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# This is can be used with stack_push_mapping or set_opnd_mapping to copy
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# a stack value's type while maintaining the mapping.
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def get_opnd_mapping(opnd)
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opnd_type = self.get_opnd_type(opnd)
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case opnd
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in SelfOpnd
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return [MapToSelf, opnd_type]
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in StackOpnd[idx]
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assert(idx < self.stack_size)
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stack_idx = self.stack_size - 1 - idx
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if stack_idx < MAX_TEMP_TYPES
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return [self.temp_mapping[stack_idx], opnd_type]
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else
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# We can't know the source of this stack operand, so we assume it is
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# a stack-only temporary. type will be UNKNOWN
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assert(opnd_type == Type::Unknown)
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return [MapToStack, opnd_type]
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end
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end
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end
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# Overwrite both the type and mapping of a stack operand.
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def set_opnd_mapping(opnd, mapping_opnd_type)
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case opnd
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in SelfOpnd
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raise 'self always maps to self'
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in StackOpnd[idx]
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assert(idx < self.stack_size)
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stack_idx = self.stack_size - 1 - idx
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# If outside of tracked range, do nothing
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if stack_idx >= MAX_TEMP_TYPES
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return
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end
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mapping, opnd_type = mapping_opnd_type
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self.temp_mapping[stack_idx] = mapping
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# Only used when mapping == MAP_STACK
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self.temp_types[stack_idx] = opnd_type
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end
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end
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# Set the type of a local variable
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def set_local_type(local_idx, local_type)
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if local_idx >= MAX_LOCAL_TYPES
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return
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end
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# If any values on the stack map to this local we must detach them
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MAX_TEMP_TYPES.times do |stack_idx|
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case self.temp_mapping[stack_idx]
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in MapToStack
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# noop
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in MapToSelf
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# noop
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in MapToLocal[local_idx]
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if stack_idx == local_idx
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self.temp_types[stack_idx] = self.local_types[local_idx];
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self.temp_mapping[stack_idx] = MapToStack
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else
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# noop
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end
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end
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end
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self.local_types[local_idx] = local_type
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end
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# Erase local variable type information
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# eg: because of a call we can't track
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def clear_local_types
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# When clearing local types we must detach any stack mappings to those
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# locals. Even if local values may have changed, stack values will not.
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MAX_TEMP_TYPES.times do |stack_idx|
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case self.temp_mapping[stack_idx]
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in MapToStack
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# noop
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in MapToSelf
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# noop
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in MapToLocal[local_idx]
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self.temp_types[stack_idx] = self.local_types[local_idx]
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self.temp_mapping[stack_idx] = MapToStack
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end
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end
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# Clear the local types
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self.local_types = [Type::Unknown] * MAX_LOCAL_TYPES
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end
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# Compute a difference score for two context objects
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def diff(dst)
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# Self is the source context (at the end of the predecessor)
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src = self
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# Can only lookup the first version in the chain
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if dst.chain_depth != 0
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return TypeDiff::Incompatible
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end
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# Blocks with depth > 0 always produce new versions
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# Sidechains cannot overlap
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if src.chain_depth != 0
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return TypeDiff::Incompatible
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end
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if dst.stack_size != src.stack_size
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return TypeDiff::Incompatible
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end
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if dst.sp_offset != src.sp_offset
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return TypeDiff::Incompatible
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end
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# Difference sum
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diff = 0
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# Check the type of self
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diff += case src.self_type.diff(dst.self_type)
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in TypeDiff::Compatible[diff] then diff
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in TypeDiff::Incompatible then return TypeDiff::Incompatible
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end
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# For each local type we track
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src.local_types.size.times do |i|
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t_src = src.local_types[i]
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t_dst = dst.local_types[i]
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diff += case t_src.diff(t_dst)
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in TypeDiff::Compatible[diff] then diff
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in TypeDiff::Incompatible then return TypeDiff::Incompatible
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end
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end
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# For each value on the temp stack
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src.stack_size.times do |i|
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src_mapping, src_type = src.get_opnd_mapping(StackOpnd[i])
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dst_mapping, dst_type = dst.get_opnd_mapping(StackOpnd[i])
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# If the two mappings aren't the same
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if src_mapping != dst_mapping
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if dst_mapping == MapToStack
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# We can safely drop information about the source of the temp
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# stack operand.
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diff += 1
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else
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return TypeDiff::Incompatible
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end
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end
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diff += case src_type.diff(dst_type)
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in TypeDiff::Compatible[diff] then diff
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in TypeDiff::Incompatible then return TypeDiff::Incompatible
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end
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end
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return TypeDiff::Compatible[diff]
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end
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private
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def assert(cond)
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unless cond
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raise "'#{cond.inspect}' was not true"
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end
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end
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end
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end
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