Update README.md in kmath-ast
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@ -50,7 +50,7 @@ For example, the following builder:
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MstField { bindSymbol("x") + 2 }.compileToExpression(DoubleField)
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```
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… leads to generation of bytecode, which can be decompiled to the following Java class:
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... leads to generation of bytecode, which can be decompiled to the following Java class:
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```java
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package space.kscience.kmath.asm.generated;
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@ -97,6 +97,7 @@ var executable = function (constants, arguments) {
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};
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```
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JS also supports very experimental expression optimization with [WebAssembly](https://webassembly.org/) IR generation. Currently, only expressions inside `DoubleField` and `IntRing` are supported.
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```kotlin
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import space.kscience.kmath.wasm.*
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@ -104,7 +105,7 @@ import space.kscience.kmath.wasm.*
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MstField { bindSymbol("x") + 2 }.compileToExpression(DoubleField)
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```
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An example of emitted WASM IR in the form of WAT:
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An example of emitted Wasm IR in the form of WAT:
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```lisp
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(func $executable (param $0 f64) (result f64)
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@ -19,7 +19,7 @@ For example, the following builder:
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MstField { bindSymbol("x") + 2 }.compileToExpression(DoubleField)
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```
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… leads to generation of bytecode, which can be decompiled to the following Java class:
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... leads to generation of bytecode, which can be decompiled to the following Java class:
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```java
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package space.kscience.kmath.asm.generated;
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@ -66,6 +66,7 @@ var executable = function (constants, arguments) {
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};
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```
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JS also supports very experimental expression optimization with [WebAssembly](https://webassembly.org/) IR generation. Currently, only expressions inside `DoubleField` and `IntRing` are supported.
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```kotlin
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import space.kscience.kmath.wasm.*
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@ -73,7 +74,7 @@ import space.kscience.kmath.wasm.*
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MstField { bindSymbol("x") + 2 }.compileToExpression(DoubleField)
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```
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An example of emitted WASM IR in the form of WAT:
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An example of emitted Wasm IR in the form of WAT:
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```lisp
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(func \$executable (param \$0 f64) (result f64)
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