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Add resistor-color-duo #176

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8 changes: 8 additions & 0 deletions config.json
Original file line number Diff line number Diff line change
Expand Up @@ -250,6 +250,14 @@
"transforming"
]
},
{
"slug": "resistor-color-duo",
"name": "Resistor Color Duo",
"uuid": "8f00c858-c288-4dad-a7a8-a6592ce3dd15",
"practices": [],
"prerequisites": [],
"difficulty": 3
},
{
"slug": "triangle",
"name": "Triangle",
Expand Down
33 changes: 33 additions & 0 deletions exercises/practice/resistor-color-duo/.docs/instructions.md
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# Instructions

If you want to build something using a Raspberry Pi, you'll probably use _resistors_.
For this exercise, you need to know two things about them:

- Each resistor has a resistance value.
- Resistors are small - so small in fact that if you printed the resistance value on them, it would be hard to read.

To get around this problem, manufacturers print color-coded bands onto the resistors to denote their resistance values.
Each band has a position and a numeric value.

The first 2 bands of a resistor have a simple encoding scheme: each color maps to a single number.
For example, if they printed a brown band (value 1) followed by a green band (value 5), it would translate to the number 15.

In this exercise you are going to create a helpful program so that you don't have to remember the values of the bands.
The program will take color names as input and output a two digit number, even if the input is more than two colors!

The band colors are encoded as follows:

- Black: 0
- Brown: 1
- Red: 2
- Orange: 3
- Yellow: 4
- Green: 5
- Blue: 6
- Violet: 7
- Grey: 8
- White: 9

From the example above:
brown-green should return 15
brown-green-violet should return 15 too, ignoring the third color.
19 changes: 19 additions & 0 deletions exercises/practice/resistor-color-duo/.meta/config.json
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{
"authors": [
"BNAndras"
],
"files": {
"solution": [
"resistor_color.vim"
],
"test": [
"resistor_color.vader"
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],
"example": [
".meta/example.vim"
]
},
"blurb": "Convert color codes, as used on resistors, to a numeric value.",
"source": "Maud de Vries, Erik Schierboom",
"source_url": "https://github.com/exercism/problem-specifications/issues/1464"
}
9 changes: 9 additions & 0 deletions exercises/practice/resistor-color-duo/.meta/example.vim
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let s:COLORS = ['black', 'brown', 'red', 'orange', 'yellow', 'green', 'blue', 'violet', 'grey', 'white']

function! Value(colors) abort
let [color1, color2; rest] = a:colors
let tens = index(s:COLORS, color1)
let ones = index(s:COLORS, color2)

return tens * 10 + ones
endfunction
31 changes: 31 additions & 0 deletions exercises/practice/resistor-color-duo/.meta/tests.toml
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@@ -0,0 +1,31 @@
# This is an auto-generated file.
#
# Regenerating this file via `configlet sync` will:
# - Recreate every `description` key/value pair
# - Recreate every `reimplements` key/value pair, where they exist in problem-specifications
# - Remove any `include = true` key/value pair (an omitted `include` key implies inclusion)
# - Preserve any other key/value pair
#
# As user-added comments (using the # character) will be removed when this file
# is regenerated, comments can be added via a `comment` key.

[ce11995a-5b93-4950-a5e9-93423693b2fc]
description = "Brown and black"

[7bf82f7a-af23-48ba-a97d-38d59406a920]
description = "Blue and grey"

[f1886361-fdfd-4693-acf8-46726fe24e0c]
description = "Yellow and violet"

[b7a6cbd2-ae3c-470a-93eb-56670b305640]
description = "White and red"

[77a8293d-2a83-4016-b1af-991acc12b9fe]
description = "Orange and orange"

[0c4fb44f-db7c-4d03-afa8-054350f156a8]
description = "Ignore additional colors"

[4a8ceec5-0ab4-4904-88a4-daf953a5e818]
description = "Black and brown, one-digit"
35 changes: 35 additions & 0 deletions exercises/practice/resistor-color-duo/resistor_color_duo.vader
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Execute (Brown and black):
let g:colors = ['brown', 'black']
let g:expected = 10
AssertEqual g:expected, Value(g:colors)

Execute (Blue and grey):
let g:colors = ['blue', 'grey']
let g:expected = 68
AssertEqual g:expected, Value(g:colors)

Execute (Yellow and violet):
let g:colors = ['yellow', 'violet']
let g:expected = 47
AssertEqual g:expected, Value(g:colors)

Execute (White and red):
let g:colors = ['white', 'red']
let g:expected = 92
AssertEqual g:expected, Value(g:colors)

Execute (Orange and orange):
let g:colors = ['orange', 'orange']
let g:expected = 33
AssertEqual g:expected, Value(g:colors)

Execute (Ignore additional colors):
let g:colors = ['green', 'brown', 'orange']
let g:expected = 51
AssertEqual g:expected, Value(g:colors)

Execute (Black and brown, one-digit):
let g:colors = ['black', 'brown']
let g:expected = 1
AssertEqual g:expected, Value(g:colors)
20 changes: 20 additions & 0 deletions exercises/practice/resistor-color-duo/resistor_color_duo.vim
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"
" Returns the resistance value represented by the first two color strings in the passed list
"
" Example:
"
" :echo Value(['black', 'brown'])
" 1
"
" :echo Value(['brown', 'black'])
" 10
"
" :echo Value(['green', 'brown'])
" 51
"
" :echo Value(['green', 'brown', 'orange'])
" 51
"
function! Value(colors) abort
" your code goes here
endfunction
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