# Calculator-IV

Challenging
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The first known tools used to aid arithmetic calculations were: bones (used to tally items), pebbles, and counting boards, and the abacus, known to have been used by Sumerians and Egyptians before 2000 BC. Except for the Antikythera mechanism (an "out of the time" astronomical device), development of computing tools arrived near the start of the 17th century: the geometric-military compass (by Galileo), logarithms and Napier bones (by Napier), and the slide rule (by Edmund Gunter). Find more on wikipedia page...

In this series of missions you are going to build an elementary calculator.

As an input, you get a sequence of keys pressed, and, as the result of that function, you should show what will be shown on the screen when the last key is pressed. Be attentive, it's not always the result of the expression. Actually, playing with the physical calculator or app will really helps you to catch edge cases.

In the forth mission float numbers are allowed. The "." takes space as one digit, so max digit space is 4 for float number results. It means that the maximum float number you can enter is "9999.".

Expected behavior:

• beginning zeros should be removed, only-zeros number - converted to single zero;
• among +- signs between numbers, the last one should be taken;
• "==" means repeating the last operation;
• "+=" or "-=" - adding/subtracting the number (or operations result) before the combination (doubling the number/subtracting itself);
• the calculator ignores digit you enter after 5th;
• "-" for numbers < 0 is NOT taking digit place;
• if the abs(result) is more than 99999 - "error" is shown as a result;
• for float, if the integer part of abs(result) is more then 9999 - "error" is shown as a result;
• for float, in case the total length of number is more than 5 digits, it should be rounded to 5 digits (1.23456 -> 1.235);
• for float, beginning and trailing zeros should be removed (until the "." if possible): 0.1200 -> .12 , 123.00 -> 123. . It should be done after the rounding: 1.000123 -> 1. . Stripping of trailing zeros should only be done after entering a number has concluded (non-digit character pressed).

Input: String.

Output: String.

Examples:

```assert calculator("0001.1000") == "1.100"
assert calculator("0001.1000-") == "1.1"
assert calculator("999.9999999+=") == "2000."
assert calculator("1.000123") == "1.000"
```

How it’s used: Calculators are widely used. Understanding the principles of its input and output are interesting and useful.

Precondition: Allowed characters: digits (0-9), dot (.), signs plus (+), minus (-) or equation (=) and their combinations (+=, +-, == etc.). The integer number may contain no more than 5 digits, float - 4.

Settings
Code:
Other:
Invalid hot key. Each hot key should be unique and valid
Hot keys:
•  to Run Code: to Check Solution: to Stop:
CheckiO Extensions

CheckiO Extensions allow you to use local files to solve missions. More info in a blog post.

In order to install CheckiO client you'll need installed Python (version at least 3.8)

Install CheckiO Client first:

`pip3 install checkio_client`

`checkio --domain=py config --key=`

Sync solutions into your local folder

`checkio sync`

(in beta testing) Launch local server so your browser can use it and sync solution between local file end extension on the fly. (doesn't work for safari)

`checkio serv -d`

Alternatevly, you can install Chrome extension or FF addon

`checkio install-plugin`
`checkio install-plugin --ff`
`checkio install-plugin --chromium`

Read more here about other functionality that the checkio client provides. Feel free to submit an issue in case of any difficulties.

Pair Programming (Beta-version)

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