Add some more type classes.
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@@ -178,8 +178,8 @@ called a *lane*. The number of lanes must be a power of two in the range 2-256.
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Like the :type:`bool` type, a boolean vector cannot be stored in memory.
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Pseudo-types
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------------
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Pseudo-types and type classes
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-----------------------------
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These are not concrete types, but convenient names uses to refer to real types
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in this reference.
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@@ -191,10 +191,38 @@ in this reference.
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This is either :type:`i32`, or :type:`i64`, depending on whether the target
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platform has 32-bit or 64-bit pointers.
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.. type:: iN
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.. type:: iB
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Any of the scalar integer types :type:`i8` -- :type:`i64`.
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.. type:: Int
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Any scalar *or vector* integer type: :type:`iB` or :type:`iBxN`.
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.. type:: fB
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Either of the floating point scalar types: :type:`f32` or :type:`f64.
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.. type:: Float
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Any scalar *or vector* floating point type: :type:`fB` or :type:`fBxN`.
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.. type:: %Tx%N
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Any SIMD vector type.
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.. type:: Mem
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Any type that can be stored in memory: :type:`Int` or :type:`Float`.
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.. type:: Logic
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Either :type:`bool` or :type:`boolxN`.
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.. type:: Testable
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Either :type:`bool` or :type:`iN`.
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Control flow
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============
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@@ -222,7 +250,7 @@ instruction in the EBB.
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If ``x`` is a :type:`bool` value, take the branch when ``x`` is false. If
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``x`` is an integer value, take the branch when ``x = 0``.
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:arg iN/bool x: Value to test.
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:arg Testable x: Value to test.
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:arg EBB: Destination extended basic block.
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:arg args...: Arguments passed to EBB.
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:result: None.
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@@ -234,7 +262,7 @@ instruction in the EBB.
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If ``x`` is a :type:`bool` value, take the branch when ``x`` is true. If
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``x`` is an integer value, take the branch when ``x != 0``.
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:arg iN/bool x: Value to test.
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:arg Testable x: Value to test.
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:arg EBB: Destination extended basic block.
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:arg args...: Zero or more arguments passed to EBB.
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:result: None.
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@@ -288,7 +316,7 @@ is zero.
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if ``x`` is non-zero, execution continues at the following instruction.
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:arg iN/bool x: Value to test.
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:arg Testable x: Value to test.
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:result: None.
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.. inst:: trapnz x
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@@ -297,7 +325,7 @@ is zero.
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if ``x`` is zero, execution continues at the following instruction.
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:arg iN/bool x: Value to test.
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:arg Testable x: Value to test.
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:result: None.
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@@ -618,6 +646,8 @@ load a constant into an SSA value.
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Create a scalar integer SSA value with an immediate constant value, or an
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integer vector where all the lanes have the same value.
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:result Int a: Constant value.
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.. inst:: a = fconst N
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Floating point constant.
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@@ -625,12 +655,16 @@ load a constant into an SSA value.
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Create a :type:`f32` or :type:`f64` SSA value with an immediate constant
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value, or a floating point vector where all the lanes have the same value.
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:result Float a: Constant value.
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.. inst:: a = vconst N
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Vector constant (floating point or integer).
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Create a SIMD vector value where the lanes don't have to be identical.
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:result TxN a: Constant value.
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.. inst:: a = select c, x, y
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Conditional select.
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@@ -638,7 +672,7 @@ load a constant into an SSA value.
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:arg bool c: Controlling flag.
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:arg T x: Value to return when ``c`` is true.
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:arg T y: Value to return when ``c`` is false. Must be same type as ``x``.
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:rtype: T. Same type as ``x`` and ``y``.
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:result T a: Same type as ``x`` and ``y``.
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This instruction selects whole values. Use :inst:`vselect` for lane-wise
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selection.
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@@ -653,12 +687,12 @@ Vector operations
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Select lanes from ``x`` or ``y`` controlled by the lanes of the boolean
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vector ``c``.
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:arg boolx%N c: Controlling flag vector.
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:arg x: Vector with lanes selected by the true lanes of ``c``.
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:arg boolxN c: Controlling flag vector.
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:arg TxN x: Vector with lanes selected by the true lanes of ``c``.
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Must be a vector type with the same number of lanes as ``c``.
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:arg y: Vector with lanes selected by the false lanes of ``c``.
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:arg TxN y: Vector with lanes selected by the false lanes of ``c``.
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Must be same type as ``x``.
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:rtype: Same type as ``x`` and ``y``.
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:result TxN a: Same type as ``x`` and ``y``.
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.. inst:: a = vbuild x, y, z, ...
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@@ -672,20 +706,32 @@ Vector operations
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Return a vector whose lanes are all ``x``.
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.. inst:: a = insertlane x, idx, y
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:arg T x: Scalar value to be replicated.
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:result TxN a: Vector with identical lanes.
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Insert ``y`` as lane ``idx`` in x.
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.. inst:: a = insertlane x, Idx, y
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The lane index, ``idx``, is an immediate value, not an SSA value. It must
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Insert ``y`` as lane ``Idx`` in x.
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The lane index, ``Idx``, is an immediate value, not an SSA value. It must
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indicate a valid lane index for the type of ``x``.
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.. inst:: a = extractlane x, idx
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:arg TxN x: Vector to modify.
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:arg Idx: Lane index smaller than N.
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:arg T y: New lane value.
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:result TxN y: Updated vector.
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Extract lane ``idx`` from ``x``.
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.. inst:: a = extractlane x, Idx
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The lane index, ``idx``, is an immediate value, not an SSA value. It must
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Extract lane ``Idx`` from ``x``.
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The lane index, ``Idx``, is an immediate value, not an SSA value. It must
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indicate a valid lane index for the type of ``x``.
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:arg TxN x: Source vector
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:arg Idx: Lane index
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:result T a: Lane value.
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Integer operations
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------------------
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@@ -694,10 +740,9 @@ Integer operations
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Integer comparison.
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:arg Cond: Condition code determining how ``x`` and ``y`` are compared.
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:arg x: First value to compare.
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:arg y: Second value to compare.
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:rtype: :type:`bool` or :type:`boolxN` with the same number of lanes as
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``x`` and ``y``.
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:arg Int x: First value to compare.
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:arg Int y: Second value to compare.
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:result Logic a: With the same number of lanes as ``x`` and ``y``.
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The condition code determines if the operands are interpreted as signed or
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unsigned integers.
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