Improve ReasonLIGO documentation.
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@ -21,7 +21,7 @@ let a: bool = true
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let b: bool = false
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: bool = true;
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let b: bool = false;
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@ -50,7 +50,7 @@ let b: string = "Alice"
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// true
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let c: bool = (a = b)
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: string = "Alice";
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let b: string = "Alice";
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@ -86,7 +86,7 @@ let g: bool = (a >= b)
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let h: bool = (a =/= b)
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: int = 5;
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let b: int = 4;
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@ -118,7 +118,7 @@ let b: tez = 10mutez
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// false
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let c: bool = (a = b)
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: tez = 5mutez;
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let b: tez = 10mutez;
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@ -176,7 +176,7 @@ let min_age: nat = 16n
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let is_adult (age: nat) : bool =
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if (age > min_age) then true else false
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let min_age: nat = 16n;
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@ -199,7 +199,7 @@ let is_adult = (age: nat): bool =>
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> You can run the function above with
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> ```
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> ligo run-function -s cameligo src/if-else.mligo is_adult 21n
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> ligo run-function -s reasonligo src/if-else.religo is_adult 21n
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> ```
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<!--END_DOCUSAURUS_CODE_TABS-->
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@ -70,6 +70,22 @@ let add (a: int) (b: int) : int = a + b
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The function body is a series of expressions, which are evaluated to give the return
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value.
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<!--ReasonLIGO-->
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Functions in ReasonLIGO are defined using the `let` keyword, like value bindings.
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The difference is that after the value name a list of function parameters is provided,
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along with a return type.
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Here's how you define a basic function that accepts two `ints` and returns an `int` as well:
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```reasonligo
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let add (a: int, b: int) : int = a + b;
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```
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The function body is a series of expressions, which are evaluated to give the return
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value.
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<!--END_DOCUSAURUS_CODE_TABS-->
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<!--DOCUSAURUS_CODE_TABS-->
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@ -99,7 +115,7 @@ const a: int = increment(1);
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let increment : (int -> int) = fun (i: int) -> i + 1
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let increment: (int => int) = (i: int) => i + 1;
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```
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@ -22,7 +22,7 @@ type ledger is map(address, tez);
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type ledger = (address, tez) map
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type ledger = map(address, tez);
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```
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@ -57,19 +57,19 @@ let ledger: ledger = Map.literal
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>
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> `("<string value>": address)` means that we type-cast a string into an address.
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let ledger: ledger =
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Map.literal([
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("tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx": address, 1000(mutez)),
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("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": address, 2000(mutez)),
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("tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx": address, 1000mutez),
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("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": address, 2000mutez),
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]);
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```
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> Map.literal constructs the map from a list of key-value pair tuples, `(<key>, <value>)`.
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>
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> `("<string value>": address)` means that we type-cast a string into an address.
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```
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<!--END_DOCUSAURUS_CODE_TABS-->
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### Accessing map values by key
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@ -88,7 +88,7 @@ const balance: option(tez) = ledger[("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": add
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let balance: tez option = Map.find_opt ("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": address) ledger
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let balance: option(tez) =
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@ -112,7 +112,7 @@ const balance: tez = get_force(("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": address)
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let balance: tez = Map.find ("tz1gjaF81ZRRvdzjobyfVNsAeSC6PScjfQwN": address) ledger
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let balance: tez =
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@ -146,7 +146,7 @@ let iter_op (m : ledger) : unit =
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in Map.iter assert_eq m
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let iter_op = (m: ledger): unit => {
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let assert_eq = (i: address, j: tez) => assert(j > 100);
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@ -173,7 +173,7 @@ let map_op (m : ledger) : ledger =
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in Map.map increment m
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let map_op = (m: ledger): ledger => {
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let increment = (ignore: address, j: tez) => j + 1;
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@ -207,7 +207,7 @@ let fold_op (m : ledger) : ledger =
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in Map.fold aggregate m 10
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let fold_op = (m: ledger): ledger => {
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let aggregate = (ignore: address, j: (tez, tez)) => j[0] + j[1];
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@ -243,7 +243,7 @@ type user = {
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}
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type user = {
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id: nat,
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@ -275,7 +275,7 @@ let user: user = {
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}
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let user: user = {
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id: 1n,
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@ -301,7 +301,7 @@ const is_admin: bool = user.is_admin;
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let is_admin: bool = user.is_admin
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let is_admin: bool = user.is_admin;
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```
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@ -60,7 +60,7 @@ let g: int = 1_000_000
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>let g: int = 1_000_000;
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>```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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// int + int produces int
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@ -71,6 +71,7 @@ let b: int = 5n + 10;
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let c: tez = 5mutez + 10mutez;
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// you can't add tez + int or tez + nat, this won't compile
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// let d: tez = 5mutez + 10n;
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// two nats produce a nat
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let e: nat = 5n + 10n;
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// nat + int produces an int, this won't compile
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// let f: nat = 5n + 10;
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@ -112,7 +113,7 @@ let b: int = 5n - 2n
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let d: tez = 5mutez - 1mt
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: int = 5 - 10;
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// substraction of two nats, yields an int
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@ -147,7 +148,7 @@ let b: nat = 5n * 5n
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let c: tez = 5n * 5mutez
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: int = 5 * 5;
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let b: nat = 5n * 5n;
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@ -179,7 +180,7 @@ let b: nat = 10n / 3n
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let c: nat = 10mutez / 3mutez
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let a: int = 10 / 3;
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let b: nat = 10n / 3n;
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@ -199,4 +200,10 @@ const a: int = int(1n);
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const b: nat = abs(1);
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```
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<!--ReasonLIGO-->
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```reasonligo
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let a: int = int(1n);
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let b: nat = abs(1);
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```
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<!--END_DOCUSAURUS_CODE_TABS-->
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@ -31,7 +31,7 @@ let my_set: int_set =
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Set.add 3 (Set.add 2 (Set.add 1 (Set.empty: int set)))
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type int_set = set(int);
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let my_set: int_set =
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@ -52,7 +52,7 @@ const my_set_2: int_set = set_empty;
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```cameligo
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let my_set: int_set = (Set.empty: int set)
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let my_set: int_set = (Set.empty: set(int));
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```
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@ -72,7 +72,7 @@ const contains_three_fn: bool = set_mem(3, my_set);
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```cameligo
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let contains_three: bool = Set.mem 3 my_set
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let contains_three: bool = Set.mem(3, my_set);
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```
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@ -92,7 +92,7 @@ const set_size: nat = size(my_set);
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let set_size: nat = Set.size my_set
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let set_size: nat = Set.size(my_set);
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```
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@ -115,7 +115,7 @@ let larger_set: int_set = Set.add 4 my_set
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let smaller_set: int_set = Set.remove 3 my_set
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let larger_set: int_set = Set.add(4, my_set);
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@ -140,7 +140,7 @@ let sum (result: int) (i: int) : int = result + i
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let sum_of_a_set: int = Set.fold sum my_set 0
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let sum = (result: int, i: int): int => result + i;
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let sum_of_a_set: int = Set.fold(sum, my_set, 0);
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@ -172,7 +172,7 @@ type int_list = int list
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let my_list: int_list = [1; 2; 3]
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type int_list = list(int);
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let my_list: int_list = [1, 2, 3];
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@ -196,10 +196,10 @@ let larger_list: int_list = 4 :: my_list
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(* CameLIGO doesn't have a List.cons *)
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let larger_list: int_list = [4, ...my_list];
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/* Reasonligo doesn't have a List.cons */
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/* ReasonLIGO doesn't have a List.cons */
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```
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<!--END_DOCUSAURUS_CODE_TABS-->
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@ -226,7 +226,7 @@ let incremented_list: int_list = List.map increment larger_list
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let increment = (i: int): int => i + 1;
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@ -254,7 +254,7 @@ let sum (result: int) (i: int) : int = result + i
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let sum_of_a_list: int = List.fold sum my_list 0
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let sum = (result: int, i: int): int => result + i;
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@ -299,7 +299,7 @@ type full_name = string * string
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let full_name: full_name = ("Alice", "Johnson")
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type full_name = (string, string);
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/* The parenthesis here are optional */
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@ -329,7 +329,7 @@ const first_name: string = full_name.1;
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let first_name: string = full_name.1
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let first_name: string = full_name[1];
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```
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@ -0,0 +1,4 @@
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let add = (a: int, b: int): int => {
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let c: int = a + b;
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c;
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};
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@ -0,0 +1 @@
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let age : int = 25;
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@ -16,15 +16,19 @@ const a: string = "Hello Alice";
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```
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let a: string = "Hello Alice"
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```
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<!--ReasonLIGO-->
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```
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let a: string = "Hello Alice";
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```
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<!--END_DOCUSAURUS_CODE_TABS-->
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## Concatenating strings
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Strings can be concatenated using the `^` operator.
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<!--DOCUSAURUS_CODE_TABS-->
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<!--Pascaligo-->
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Strings can be concatenated using the `^` operator.
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```pascaligo
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const name: string = "Alice";
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const greeting: string = "Hello";
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@ -34,12 +38,16 @@ const full_greeting: string = greeting ^ " " ^ name;
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const full_greeting_exclamation: string = string_concat(full_greeting, "!");
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```
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<!--Cameligo-->
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Strings can be concatenated using the `^` operator.
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```cameligo
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let name: string = "Alice"
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let greeting: string = "Hello"
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let full_greeting: string = greeting ^ " " ^ name
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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Strings can be concatenated using the `++` operator.
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```reasonligo
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let name: string = "Alice";
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let greeting: string = "Hello";
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@ -64,7 +72,7 @@ const slice: string = string_slice(0n, 1n, name);
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let name: string = "Alice"
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let slice: string = String.slice 0n 1n name
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let name: string = "Alice";
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let slice: string = String.slice(0n, 1n, name);
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@ -89,7 +97,7 @@ const length: nat = size(name);
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let name: string = "Alice"
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let length: nat = String.size name
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let name: string = "Alice";
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let length: nat = String.size(name);
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@ -27,7 +27,7 @@ type animal_breed = string
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let dog_breed: animal_breed = "Saluki"
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type animal_breed = string;
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@ -64,7 +64,7 @@ type account_balances = map(address, tez);
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let ledger: account_balances =
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Map.literal([
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("tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx": address, 10(mutez)),
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("tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx": address, 10mutez),
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]);
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```
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@ -141,7 +141,7 @@ let ledger: account_balances =
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Map.literal([
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(
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"tz1KqTpEZ7Yob7QbPE4Hy4Wo8fHG8LhKxZSx": address,
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{balance: 10(mutez), number_of_transactions: 5n},
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{balance: 10mutez, number_of_transactions: 5n},
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),
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]);
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@ -24,7 +24,7 @@ const n: unit = Unit;
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let n: unit = ()
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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let n: unit = ();
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```
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@ -62,7 +62,7 @@ let u: user = Admin 1000n
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let g: user = Guest ()
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type id = nat;
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type user =
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@ -101,7 +101,7 @@ let p1: dinner = None
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let p2: dinner = Some "Hamburgers"
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```
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<!--Reasonligo-->
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<!--ReasonLIGO-->
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```reasonligo
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type dinner = option(string);
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@ -138,7 +138,7 @@ let is_hungry (d: dinner) : bool =
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||||
| Some s -> false
|
||||
```
|
||||
|
||||
<!--Reasonligo-->
|
||||
<!--ReasonLIGO-->
|
||||
```reasonligo
|
||||
type dinner = option(string);
|
||||
let is_hungry = (d: dinner): bool =>
|
||||
|
@ -5,6 +5,8 @@ title: Constants & Variables
|
||||
|
||||
The next building block after types are constants and variables.
|
||||
|
||||
pleh.
|
||||
|
||||
## Constants
|
||||
|
||||
Constants are immutable by design, which means their values can't be reassigned.
|
||||
@ -32,7 +34,7 @@ ligo evaluate-value -s cameligo gitlab-pages/docs/language-basics/src/variables-
|
||||
# Outputs: 25
|
||||
```
|
||||
|
||||
<!--Reasonligo-->
|
||||
<!--ReasonLIGO-->
|
||||
```reasonligo
|
||||
let age: int = 25;
|
||||
```
|
||||
@ -98,9 +100,9 @@ You can run the `add` function defined above using the LIGO compiler like this:
|
||||
ligo run-function -s cameligo gitlab-pages/docs/language-basics/src/variables-and-constants/add.mligo add '(1,1)'
|
||||
# Outputs: 2
|
||||
```
|
||||
<!--Reasonligo-->
|
||||
<!--ReasonLIGO-->
|
||||
|
||||
As expected from a functional language, Reasonligo uses value-binding
|
||||
As expected from a functional language, ReasonLIGO uses value-binding
|
||||
for variables rather than assignment. Variables are changed by replacement,
|
||||
with a new value being bound in place of the old one.
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user