Inserted ex. 32 unreachable, added quiz4.
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//
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// Zig has an "unreachable" statement. Use it when you want to tell the
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// compiler that a branch of code should never be executed and that the
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// mere act of reaching it is an error.
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//
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// if (true) {
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// ...
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// } else {
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// unreachable;
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// }
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//
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// Here we've made a little virtual machine that performs mathematical
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// operations on a single numeric value. It looks great but there's one
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// little problem: the switch statement doesn't cover every possible
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// value of a u8 number!
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//
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// WE know there are only three operations but Zig doesn't. Use the
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// unreachable statement to make the switch complete. Or ELSE. :-)
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//
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const std = @import("std");
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pub fn main() void {
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const operations = [_]u8{ 1, 1, 1, 3, 2, 2 };
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var current_value: u32 = 0;
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for (operations) |op| {
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switch (op) {
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1 => { current_value += 1; },
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2 => { current_value -= 1; },
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3 => { current_value *= current_value; },
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}
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std.debug.print("{} ", .{current_value});
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}
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std.debug.print("\n", .{});
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}
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@ -0,0 +1,24 @@
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//
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// Quiz time. See if you can make this program work!
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//
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// Solve this any way you like, just be sure the output is:
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//
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// my_num=42
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//
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const std = @import("std");
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const NumError = error{ IllegalNumber };
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pub fn main() void {
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const stdout = std.io.getStdOut().writer();
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const my_num: u32 = getNumber();
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try stdout.print("my_num={}\n", .{my_num});
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}
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// Just don't modify this function. It's "perfect" the way it is. :-)
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fn getNumber() NumError!u32 {
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if( false ) return NumError.IllegalNumber;
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return 42;
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}
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