Division of two values results in 0 - go

I'm trying to make a division of two variables, but when I want to print the result, the program prints out 0
the leadTime and endAmount are being correctly printed by te program, but the monthlyAmount is being printed as 0. Also if I remove the float64() around endAmount and leadTime it is being printed as 0
var leadTime int
if currentAge < 45 {
leadTime = 120
} else if currentAge > 45 && currentAge < 55 {
leadTime = 90
} else if currentAge > 55 {
leadTime = 60
}
endAmount, _ := strconv.Atoi(amountAsString)
monthlyAmount:= (float64(endAmount) / float64(leadTime)
fmt.Println("leadTime :", leadTime )
fmt.Println("Total amount:", endAmount)
fmt.Println("monthlyAmount:", monthlyAmount)
with the standardinput I'm testing with, the leadTime = 120 and the endAmount = 93735.00 so the monthlyAmount should be: 781.13

The problem is your trying to convert floating string an int in
endAmount, _ := strconv.Atoi(amountAsString)
This will give an error, but you're just neglecting it. Use strconv.ParseFloat(amountAsString, 64) to solve your problem.
Check the playground example to see the error and the working code

Related

Is it safe to use math.Round instead of this Modf/Ceil/Floor combo

I'm in the progress of converting some Go code to C# and am wondering if the following piece of code:
_, x := math.Modf(frac)
if x >= 0.5 {
frac = math.Ceil(frac)
} else {
frac = math.Floor(frac)
}
would be any different to this:
frac = math.Round(frac)
I know rounding can sometimes be tricky so I wonder if the first snippit acts as a workaround for something.

How to check for a Not a Number (NaN) in Swift 2

The following method calculates the percentage using two variables.
func casePercentage() {
let percentage = Int(Double(cases) / Double(calls) * 100)
percentageLabel.stringValue = String(percentage) + "%"
}
The above method is functioning well except when cases = 1 and calls = 0.
This gives a fatal error: floating point value can not be converted to Int because it is either infinite or NaN
So I created this workaround:
func casePercentage() {
if calls != 0 {
let percentage = Int(Double(cases) / Double(calls) * 100)
percentageLabel.stringValue = String(percentage) + "%"
} else {
percentageLabel.stringValue = "0%"
}
}
This will give no errors but in other languages you can check a variable with an .isNaN() method. How does this work within Swift2?
You can "force unwrap" the optional type using the ! operator:
calls! //asserts that calls is NOT nil and gives a non-optional type
However, this will result in a runtime error if it is nil.
One option to prevent using nil or 0 is to do what you have done and check if it's 0.
The second is option is to nil-check
if calls != nil
The third (and most Swift-y) option is to use the if let structure:
if let nonNilCalls = calls {
//...
}
The inside of the if block won't run if calls is nil.
Note that nil-checking and if let will NOT protect you from dividing by 0. You will have to check for that separately.
Combining second and your method:
//calls can neither be nil nor <= 0
if calls != nil && calls > 0

Do-While loop is not looping as While is executed regardless of whether it is true or false

static double myconversion(string farenheitinput)
{
double temporary = 0;
try
{
double farenheit = double.Parse(farenheitinput);
temporary = farenheit;
}
catch
{
Console.Write("\nWrong! you must write a number");
}
double celsius = (temporary - 32) * 5 / 9;
return celsius;
}
public void Main(string[] args)
{
double celsius = 0;
do
{
Console.Write("\nWrite your temperature in farenheit: ");
string farenheitinput = (Console.ReadLine());
celsius = myconversion(farenheitinput);
if (celsius < 73)
{
Console.WriteLine("\nThat temperature is too cold");
}
else if (celsius > 77)
{
Console.WriteLine("\nThat temperature is too hot");
}
}
while ((celsius >= 73) && (celsius <= 77));
{
Console.WriteLine("\nThe temperature is perfect");
}
Console.Write("\nPress any key to close program...");
Console.ReadKey();
}
I'm using a method to convert farenheit to celsius.
Here's the code that I'm using for my loop and the method, when I debug it shows that double celsius = 87.7 if 190 farenheit is input by the user which is a false condition for while and the code should loop, however it doesn't and steps into the while code anyways and ends the loop. I have no idea what is causing it so I thought id come here to ask.
Loop Conditional Expressions:
The way loop conditionals work is they continue when they evaluate to true.
runs 0 or more times while true
while (boolean expression|reference == true) { // do stuff }
runs 1 or more times while true
do { // do stuff } while (boolean expression|reference == true);
In either case on the first false encountered the looping stops.
Solution
What you did:
do
{
// input stuff
}
while ((73 >= celsius) && (77 <= celsius));
{
Console.WriteLine("\nTemperaturen är perfekt");
}
should be:
do
{
// input stuff
} while (celsius < 73 || celsius > 77);
Console.WriteLine("\nTemperaturen är perfekt");
do you see the difference?
Better yet is to avoid the do/while construct completely.
while (celsius < 73 || celsius > 77)
{
// input stuff
}
Console.WriteLine("\nTemperaturen är perfekt");
You might be tempted to replace (celsius < 73 || celsius > 77) with something like (!(73 >= celsius && 77 <= celsius)) but do not do it.
Avoid negation logic if at all possible, even when you think the negative is more readable, trust me on this. That little ! is really hard to see sometimes. And even when it is, it takes a human brain more effort to think about !(true) and even more effort to think about !(false).

Code Golf: Email Address Validation without Regular Expressions

Locked. This question and its answers are locked because the question is off-topic but has historical significance. It is not currently accepting new answers or interactions.
(Edit: What is Code Golf: Code Golf are challenges to solve a specific problem with the shortest amount of code by character count in whichever language you prefer. More info here on Meta StackOverflow. )
Code Golfers, here's a challenge on string operations.
Email Address Validation, but without regular expressions (or similar parsing library) of course. It's not so much about the email addresses but how short you can write the different string operations and constraints given below.
The rules are the following (yes, I know, this is not RFC compliant, but these are going to be the 5 rules for this challenge):
At least 1 character out of this group before the #:
A-Z, a-z, 0-9, . (period), _ (underscore)
# has to exist, exactly one time
john#smith.com
^
Period (.) has to exist exactly one time after the #
john#smith.com
^
At least 1 only [A-Z, a-z] character between # and the following . (period)
john#s.com
^
At least 2 only [A-Z, a-z] characters after the final . period
john#smith.ab
^^
Please post the method/function only, which would take a string (proposed email address) and then return a Boolean result (true/false) depending on the email address being valid (true) or invalid (false).
Samples:
b#w.org (valid/true) #w.org (invalid/false)
b#c#d.org (invalid/false) test#org (invalid/false)
test#%.org (invalid/false) s%p#m.org (invalid/false)
j_r#x.c.il (invalid/false) j_r#x.mil (valid/true)
r..t#x.tw (valid/true) foo#a%.com (invalid/false)
Good luck!
C89 (166 characters)
#define B(c)isalnum(c)|c==46|c==95
#define C(x)if(!v|*i++-x)return!1;
#define D(x)for(v=0;x(*i);++i)++v;
v;e(char*i){D(B)C(64)D(isalpha)C(46)D(isalpha)return!*i&v>1;}
Not re-entrant, but can be run multiple times. Test bed:
#include<stdio.h>
#include<assert.h>
main(){
assert(e("b#w.org"));
assert(e("r..t#x.tw"));
assert(e("j_r#x.mil"));
assert(!e("b#c#d.org"));
assert(!e("test#%.org"));
assert(!e("j_r#x.c.il"));
assert(!e("#w.org"));
assert(!e("test#org"));
assert(!e("s%p#m.org"));
assert(!e("foo#a%.com"));
puts("success!");
}
J
:[[/%^(:[[+-/^,&i|:[$[' ']^j+0__:k<3:]]
C89, 175 characters.
#define G &&*((a+=t+1)-1)==
#define H (t=strspn(a,A
t;e(char*a){char A[66]="_.0123456789Aa";short*s=A+12;for(;++s<A+64;)*s=s[-1]+257;return H))G 64&&H+12))G 46&&H+12))>1 G 0;}
I am using the standard library function strspn(), so I feel this answer isn't as "clean" as strager's answer which does without any library functions. (I also stole his idea of declaring a global variable without a type!)
One of the tricks here is that by putting . and _ at the start of the string A, it's possible to include or exclude them easily in a strspn() test: when you want to allow them, use strspn(something, A); when you don't, use strspn(something, A+12). Another is assuming that sizeof (short) == 2 * sizeof (char), and building up the array of valid characters 2 at a time from the "seed" pair Aa. The rest was just looking for a way to force subexpressions to look similar enough that they could be pulled out into #defined macros.
To make this code more "portable" (heh :-P) you can change the array-building code from
char A[66]="_.0123456789Aa";short*s=A+12;for(;++s<A+64;)*s=s[-1]+257;
to
char*A="_.0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz";
for a cost of 5 additional characters.
Python (181 characters including newlines)
def v(E):
import string as t;a=t.ascii_letters;e=a+"1234567890_.";t=e,e,"#",e,".",a,a,a,a,a,"",a
for c in E:
if c in t[0]:t=t[2:]
elif not c in t[1]:return 0>1
return""==t[0]
Basically just a state machine using obfuscatingly short variable names.
C (166 characters)
#define F(t,u)for(r=s;t=(*s-64?*s-46?isalpha(*s)?3:isdigit(*s)|*s==95?4:0:2:1);++s);if(s-r-1 u)return 0;
V(char*s){char*r;F(2<,<0)F(1=)F(3=,<0)F(2=)F(3=,<1)return 1;}
The single newline is required, and I've counted it as one character.
Python, 149 chars (after putting the whole for loop into one semicolon-separated line, which I haven't done here for "readability" purposes):
def v(s,t=0,o=1):
for c in s:
k=c=="#"
p=c=="."
A=c.isalnum()|p|(c=="_")
L=c.isalpha()
o&=[A,k|A,L,L|p,L,L,L][t]
t+=[1,k,1,p,1,1,0][t]
return(t>5)&o
Test cases, borrowed from strager's answer:
assert v("b#w.org")
assert v("r..t#x.tw")
assert v("j_r#x.mil")
assert not v("b#c#d.org")
assert not v("test#%.org")
assert not v("j_r#x.c.il")
assert not v("#w.org")
assert not v("test#org")
assert not v("s%p#m.org")
assert not v("foo#a%.com")
print "Yeah!"
Explanation: When iterating over the string, two variables keep getting updated.
t keeps the current state:
t = 0: We're at the beginning.
t = 1: We where at the beginning and have found at least one legal character (letter, number, underscore, period)
t = 2: We have found the "#"
t = 3: We have found at least on legal character (i.e. letter) after the "#"
t = 4: We have found the period in the domain name
t = 5: We have found one legal character (letter) after the period
t = 6: We have found at least two legal characters after the period
o as in "okay" starts as 1, i.e. true, and is set to 0 as soon as a character is found that is illegal in the current state.
Legal characters are:
In state 0: letter, number, underscore, period (change state to 1 in any case)
In state 1: letter, number, underscore, period, at-sign (change state to 2 if "#" is found)
In state 2: letter (change state to 3)
In state 3: letter, period (change state to 4 if period found)
In states 4 thru 6: letter (increment state when in 4 or 5)
When we have gone all the way through the string, we return whether t==6 (t>5 is one char less) and o is 1.
Whatever version of C++ MSVC2008 supports.
Here's my humble submission. Now I know why they told me never to do the things I did in here:
#define N return 0
#define I(x) &&*x!='.'&&*x!='_'
bool p(char*a) {
if(!isalnum(a[0])I(a))N;
char*p=a,*b=0,*c=0;
for(int d=0,e=0;*p;p++){
if(*p=='#'){d++;b=p;}
else if(*p=='.'){if(d){e++;c=p;}}
else if(!isalnum(*p)I(p))N;
if (d>1||e>1)N;
}
if(b>c||b+1>=c||c+2>=p)N;
return 1;
}
Not the greatest solution no doubt, and pretty darn verbose, but it is valid.
Fixed (All test cases pass now)
static bool ValidateEmail(string email)
{
var numbers = "1234567890";
var uppercase = "ABCDEFGHIJKLMNOPQRSTUVWXYZ";
var lowercase = uppercase.ToLower();
var arUppercase = uppercase.ToCharArray();
var arLowercase = lowercase.ToCharArray();
var arNumbers = numbers.ToCharArray();
var atPieces = email.Split(new string[] { "#"}, StringSplitOptions.RemoveEmptyEntries);
if (atPieces.Length != 2)
return false;
foreach (var c in atPieces[0])
{
if (!(arNumbers.Contains(c) || arLowercase.Contains(c) || arUppercase.Contains(c) || c == '.' || c == '_'))
return false;
}
if(!atPieces[1].Contains("."))
return false;
var dotPieces = atPieces[1].Split('.');
if (dotPieces.Length != 2)
return false;
foreach (var c in dotPieces[0])
{
if (!(arLowercase.Contains(c) || arUppercase.Contains(c)))
return false;
}
var found = 0;
foreach (var c in dotPieces[1])
{
if ((arLowercase.Contains(c) || arUppercase.Contains(c)))
found++;
else
return false;
}
return found >= 2;
}
C89 character set agnostic (262 characters)
#include <stdio.h>
/* the 'const ' qualifiers should be removed when */
/* counting characters: I don't like warnings :) */
/* also the 'int ' should not be counted. */
/* it needs only 2 spaces (after the returns), should be only 2 lines */
/* that's a total of 262 characters (1 newline, 2 spaces) */
/* code golf starts here */
#include<string.h>
int v(const char*e){
const char*s="0123456789._abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ";
if(e=strpbrk(e,s))
if(e=strchr(e+1,'#'))
if(!strchr(e+1,'#'))
if(e=strpbrk(e+1,s+12))
if(e=strchr(e+1,'.'))
if(!strchr(e+1,'.'))
if(strlen(e+1)>1)
return 1;
return 0;
}
/* code golf ends here */
int main(void) {
const char *t;
t = "b#w.org"; printf("%s ==> %d\n", t, v(t));
t = "r..t#x.tw"; printf("%s ==> %d\n", t, v(t));
t = "j_r#x.mil"; printf("%s ==> %d\n", t, v(t));
t = "b#c#d.org"; printf("%s ==> %d\n", t, v(t));
t = "test#%.org"; printf("%s ==> %d\n", t, v(t));
t = "j_r#x.c.il"; printf("%s ==> %d\n", t, v(t));
t = "#w.org"; printf("%s ==> %d\n", t, v(t));
t = "test#org"; printf("%s ==> %d\n", t, v(t));
t = "s%p#m.org"; printf("%s ==> %d\n", t, v(t));
t = "foo#a%.com"; printf("%s ==> %d\n", t, v(t));
return 0;
}
Version 2
Still C89 character set agnostic, bugs hopefully corrected (303 chars; 284 without the #include)
#include<string.h>
#define Y strchr
#define X{while(Y
v(char*e){char*s="0123456789_.abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ";
if(*e!='#')X(s,*e))e++;if(*e++=='#'&&!Y(e,'#')&&Y(e+1,'.'))X(s+12,*e))e++;if(*e++=='.'
&&!Y(e,'.')&&strlen(e)>1){while(*e&&Y(s+12,*e++));if(!*e)return 1;}}}return 0;}
That #define X is absolutely disgusting!
Test as for my first (buggy) version.
VBA/VB6 - 484 chars
Explicit off
usage: VE("b#w.org")
Function V(S, C)
V = True
For I = 1 To Len(S)
If InStr(C, Mid(S, I, 1)) = 0 Then
V = False: Exit For
End If
Next
End Function
Function VE(E)
VE = False
C1 = "abcdefghijklmnopqrstuvwxyzABCDEFGHILKLMNOPQRSTUVWXYZ"
C2 = "0123456789._"
P = Split(E, "#")
If UBound(P) <> 1 Then GoTo X
If Len(P(0)) < 1 Or Not V(P(0), C1 & C2) Then GoTo X
E = P(1): P = Split(E, ".")
If UBound(P) <> 1 Then GoTo X
If Len(P(0)) < 1 Or Not V(P(0), C1) Or Len(P(1)) < 2 Or Not V(P(1), C1) Then GoTo X
VE = True
X:
End Function
Java: 257 chars (not including the 3 end of lines for readability ;-)).
boolean q(char[]s){int a=0,b=0,c=0,d=0,e=0,f=0,g,y=-99;for(int i:s)
d=(g="#._0123456789QWERTYUIOPASDFGHJKLZXCVBNMqwertyuiopasdfghjklzxcvbnm".indexOf(i))<0?
y:g<1&&++e>0&(b<1|++a>1)?y:g==1&e>0&(c<1||f++>0)?y:++b>0&g>12?f>0?d+1:f<1&e>0&&++c>0?
d:d:d;return d>1;}
Passes all the tests (my older version was incorrect).
Erlang 266 chars:
-module(cg_email).
-export([test/0]).
%%% golf code begin %%%
-define(E,when X>=$a,X=<$z;X>=$A,X=<$Z).
-define(I(Y,Z),Y([X|L])?E->Z(L);Y(_)->false).
-define(L(Y,Z),Y([X|L])?E;X>=$0,X=<$9;X=:=$.;X=:=$_->Z(L);Y(_)->false).
?L(e,m).
m([$#|L])->a(L);?L(m,m).
?I(a,i).
i([$.|L])->l(L);?I(i,i).
?I(l,c).
?I(c,g).
g([])->true;?I(g,g).
%%% golf code end %%%
test() ->
true = e("b#w.org"),
false = e("b#c#d.org"),
false = e("test#%.org"),
false = e("j_r#x.c.il"),
true = e("r..t#x.tw"),
false = e("test#org"),
false = e("s%p#m.org"),
true = e("j_r#x.mil"),
false = e("foo#a%.com"),
ok.
Ruby, 225 chars.
This is my first Ruby program, so it's probably not very Ruby-like :-)
def v z;r=!a=b=c=d=e=f=0;z.chars{|x|case x when'#';r||=b<1||!e;e=!1 when'.'
e ?b+=1:(a+=1;f=e);r||=a>1||(c<1&&!e)when'0'..'9';b+=1;r|=!e when'A'..'Z','a'..'z'
e ?b+=1:f ?c+=1:d+=1;else r=1 if x!='_'||!e|!b+=1;end};!r&&d>1 end
'Using no regex':
PHP 47 Chars.
<?=filter_var($argv[1],FILTER_VALIDATE_EMAIL);
Haskell (GHC 6.8.2), 165 161 144C Characters
Using pattern matching, elem, span and all:
a=['A'..'Z']++['a'..'z']
e=f.span(`elem`"._0123456789"++a)
f(_:_,'#':d)=g$span(`elem`a)d
f _=False
g(_:_,'.':t#(_:_:_))=all(`elem`a)t
g _=False
The above was tested with the following code:
main :: IO ()
main = print $ and [
e "b#w.org",
e "r..t#x.tw",
e "j_r#x.mil",
not $ e "b#c#d.org",
not $ e "test#%.org",
not $ e "j_r#x.c.il",
not $ e "#w.org",
not $ e "test#org",
not $ e "s%p#m.org",
not $ e "foo#a%.com"
]

How do I create a URL shortener? [closed]

Closed. This question needs to be more focused. It is not currently accepting answers.
Closed 1 year ago.
Locked. This question and its answers are locked because the question is off-topic but has historical significance. It is not currently accepting new answers or interactions.
I want to create a URL shortener service where you can write a long URL into an input field and the service shortens the URL to "http://www.example.org/abcdef".
Instead of "abcdef" there can be any other string with six characters containing a-z, A-Z and 0-9. That makes 56~57 billion possible strings.
My approach:
I have a database table with three columns:
id, integer, auto-increment
long, string, the long URL the user entered
short, string, the shortened URL (or just the six characters)
I would then insert the long URL into the table. Then I would select the auto-increment value for "id" and build a hash of it. This hash should then be inserted as "short". But what sort of hash should I build? Hash algorithms like MD5 create too long strings. I don't use these algorithms, I think. A self-built algorithm will work, too.
My idea:
For "http://www.google.de/" I get the auto-increment id 239472. Then I do the following steps:
short = '';
if divisible by 2, add "a"+the result to short
if divisible by 3, add "b"+the result to short
... until I have divisors for a-z and A-Z.
That could be repeated until the number isn't divisible any more. Do you think this is a good approach? Do you have a better idea?
Due to the ongoing interest in this topic, I've published an efficient solution to GitHub, with implementations for JavaScript, PHP, Python and Java. Add your solutions if you like :)
I would continue your "convert number to string" approach. However, you will realize that your proposed algorithm fails if your ID is a prime and greater than 52.
Theoretical background
You need a Bijective Function f. This is necessary so that you can find a inverse function g('abc') = 123 for your f(123) = 'abc' function. This means:
There must be no x1, x2 (with x1 ≠ x2) that will make f(x1) = f(x2),
and for every y you must be able to find an x so that f(x) = y.
How to convert the ID to a shortened URL
Think of an alphabet we want to use. In your case, that's [a-zA-Z0-9]. It contains 62 letters.
Take an auto-generated, unique numerical key (the auto-incremented id of a MySQL table for example).
For this example, I will use 12510 (125 with a base of 10).
Now you have to convert 12510 to X62 (base 62).
12510 = 2×621 + 1×620 = [2,1]
This requires the use of integer division and modulo. A pseudo-code example:
digits = []
while num > 0
remainder = modulo(num, 62)
digits.push(remainder)
num = divide(num, 62)
digits = digits.reverse
Now map the indices 2 and 1 to your alphabet. This is how your mapping (with an array for example) could look like:
0 → a
1 → b
...
25 → z
...
52 → 0
61 → 9
With 2 → c and 1 → b, you will receive cb62 as the shortened URL.
http://shor.ty/cb
How to resolve a shortened URL to the initial ID
The reverse is even easier. You just do a reverse lookup in your alphabet.
e9a62 will be resolved to "4th, 61st, and 0th letter in the alphabet".
e9a62 = [4,61,0] = 4×622 + 61×621 + 0×620 = 1915810
Now find your database-record with WHERE id = 19158 and do the redirect.
Example implementations (provided by commenters)
C++
Python
Ruby
Haskell
C#
CoffeeScript
Perl
Why would you want to use a hash?
You can just use a simple translation of your auto-increment value to an alphanumeric value. You can do that easily by using some base conversion. Say you character space (A-Z, a-z, 0-9, etc.) has 62 characters, convert the id to a base-40 number and use the characters as the digits.
public class UrlShortener {
private static final String ALPHABET = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
private static final int BASE = ALPHABET.length();
public static String encode(int num) {
StringBuilder sb = new StringBuilder();
while ( num > 0 ) {
sb.append( ALPHABET.charAt( num % BASE ) );
num /= BASE;
}
return sb.reverse().toString();
}
public static int decode(String str) {
int num = 0;
for ( int i = 0; i < str.length(); i++ )
num = num * BASE + ALPHABET.indexOf(str.charAt(i));
return num;
}
}
Not an answer to your question, but I wouldn't use case-sensitive shortened URLs. They are hard to remember, usually unreadable (many fonts render 1 and l, 0 and O and other characters very very similar that they are near impossible to tell the difference) and downright error prone. Try to use lower or upper case only.
Also, try to have a format where you mix the numbers and characters in a predefined form. There are studies that show that people tend to remember one form better than others (think phone numbers, where the numbers are grouped in a specific form). Try something like num-char-char-num-char-char. I know this will lower the combinations, especially if you don't have upper and lower case, but it would be more usable and therefore useful.
My approach: Take the Database ID, then Base36 Encode it. I would NOT use both Upper AND Lowercase letters, because that makes transmitting those URLs over the telephone a nightmare, but you could of course easily extend the function to be a base 62 en/decoder.
Here is my PHP 5 class.
<?php
class Bijective
{
public $dictionary = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
public function __construct()
{
$this->dictionary = str_split($this->dictionary);
}
public function encode($i)
{
if ($i == 0)
return $this->dictionary[0];
$result = '';
$base = count($this->dictionary);
while ($i > 0)
{
$result[] = $this->dictionary[($i % $base)];
$i = floor($i / $base);
}
$result = array_reverse($result);
return join("", $result);
}
public function decode($input)
{
$i = 0;
$base = count($this->dictionary);
$input = str_split($input);
foreach($input as $char)
{
$pos = array_search($char, $this->dictionary);
$i = $i * $base + $pos;
}
return $i;
}
}
A Node.js and MongoDB solution
Since we know the format that MongoDB uses to create a new ObjectId with 12 bytes.
a 4-byte value representing the seconds since the Unix epoch,
a 3-byte machine identifier,
a 2-byte process id
a 3-byte counter (in your machine), starting with a random value.
Example (I choose a random sequence)
a1b2c3d4e5f6g7h8i9j1k2l3
a1b2c3d4 represents the seconds since the Unix epoch,
4e5f6g7 represents machine identifier,
h8i9 represents process id
j1k2l3 represents the counter, starting with a random value.
Since the counter will be unique if we are storing the data in the same machine we can get it with no doubts that it will be duplicate.
So the short URL will be the counter and here is a code snippet assuming that your server is running properly.
const mongoose = require('mongoose');
const Schema = mongoose.Schema;
// Create a schema
const shortUrl = new Schema({
long_url: { type: String, required: true },
short_url: { type: String, required: true, unique: true },
});
const ShortUrl = mongoose.model('ShortUrl', shortUrl);
// The user can request to get a short URL by providing a long URL using a form
app.post('/shorten', function(req ,res){
// Create a new shortUrl */
// The submit form has an input with longURL as its name attribute.
const longUrl = req.body["longURL"];
const newUrl = ShortUrl({
long_url : longUrl,
short_url : "",
});
const shortUrl = newUrl._id.toString().slice(-6);
newUrl.short_url = shortUrl;
console.log(newUrl);
newUrl.save(function(err){
console.log("the new URL is added");
})
});
I keep incrementing an integer sequence per domain in the database and use Hashids to encode the integer into a URL path.
static hashids = Hashids(salt = "my app rocks", minSize = 6)
I ran a script to see how long it takes until it exhausts the character length. For six characters it can do 164,916,224 links and then goes up to seven characters. Bitly uses seven characters. Under five characters looks weird to me.
Hashids can decode the URL path back to a integer but a simpler solution is to use the entire short link sho.rt/ka8ds3 as a primary key.
Here is the full concept:
function addDomain(domain) {
table("domains").insert("domain", domain, "seq", 0)
}
function addURL(domain, longURL) {
seq = table("domains").where("domain = ?", domain).increment("seq")
shortURL = domain + "/" + hashids.encode(seq)
table("links").insert("short", shortURL, "long", longURL)
return shortURL
}
// GET /:hashcode
function handleRequest(req, res) {
shortURL = req.host + "/" + req.param("hashcode")
longURL = table("links").where("short = ?", shortURL).get("long")
res.redirect(301, longURL)
}
C# version:
public class UrlShortener
{
private static String ALPHABET = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
private static int BASE = 62;
public static String encode(int num)
{
StringBuilder sb = new StringBuilder();
while ( num > 0 )
{
sb.Append( ALPHABET[( num % BASE )] );
num /= BASE;
}
StringBuilder builder = new StringBuilder();
for (int i = sb.Length - 1; i >= 0; i--)
{
builder.Append(sb[i]);
}
return builder.ToString();
}
public static int decode(String str)
{
int num = 0;
for ( int i = 0, len = str.Length; i < len; i++ )
{
num = num * BASE + ALPHABET.IndexOf( str[(i)] );
}
return num;
}
}
You could hash the entire URL, but if you just want to shorten the id, do as marcel suggested. I wrote this Python implementation:
https://gist.github.com/778542
Take a look at https://hashids.org/ it is open source and in many languages.
Their page outlines some of the pitfalls of other approaches.
If you don't want re-invent the wheel ... http://lilurl.sourceforge.net/
// simple approach
$original_id = 56789;
$shortened_id = base_convert($original_id, 10, 36);
$un_shortened_id = base_convert($shortened_id, 36, 10);
alphabet = map(chr, range(97,123)+range(65,91)) + map(str,range(0,10))
def lookup(k, a=alphabet):
if type(k) == int:
return a[k]
elif type(k) == str:
return a.index(k)
def encode(i, a=alphabet):
'''Takes an integer and returns it in the given base with mappings for upper/lower case letters and numbers 0-9.'''
try:
i = int(i)
except Exception:
raise TypeError("Input must be an integer.")
def incode(i=i, p=1, a=a):
# Here to protect p.
if i <= 61:
return lookup(i)
else:
pval = pow(62,p)
nval = i/pval
remainder = i % pval
if nval <= 61:
return lookup(nval) + incode(i % pval)
else:
return incode(i, p+1)
return incode()
def decode(s, a=alphabet):
'''Takes a base 62 string in our alphabet and returns it in base10.'''
try:
s = str(s)
except Exception:
raise TypeError("Input must be a string.")
return sum([lookup(i) * pow(62,p) for p,i in enumerate(list(reversed(s)))])a
Here's my version for whomever needs it.
Why not just translate your id to a string? You just need a function that maps a digit between, say, 0 and 61 to a single letter (upper/lower case) or digit. Then apply this to create, say, 4-letter codes, and you've got 14.7 million URLs covered.
Here is a decent URL encoding function for PHP...
// From http://snipplr.com/view/22246/base62-encode--decode/
private function base_encode($val, $base=62, $chars='0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ') {
$str = '';
do {
$i = fmod($val, $base);
$str = $chars[$i] . $str;
$val = ($val - $i) / $base;
} while($val > 0);
return $str;
}
Don't know if anyone will find this useful - it is more of a 'hack n slash' method, yet is simple and works nicely if you want only specific chars.
$dictionary = "abcdfghjklmnpqrstvwxyz23456789";
$dictionary = str_split($dictionary);
// Encode
$str_id = '';
$base = count($dictionary);
while($id > 0) {
$rem = $id % $base;
$id = ($id - $rem) / $base;
$str_id .= $dictionary[$rem];
}
// Decode
$id_ar = str_split($str_id);
$id = 0;
for($i = count($id_ar); $i > 0; $i--) {
$id += array_search($id_ar[$i-1], $dictionary) * pow($base, $i - 1);
}
Did you omit O, 0, and i on purpose?
I just created a PHP class based on Ryan's solution.
<?php
$shorty = new App_Shorty();
echo 'ID: ' . 1000;
echo '<br/> Short link: ' . $shorty->encode(1000);
echo '<br/> Decoded Short Link: ' . $shorty->decode($shorty->encode(1000));
/**
* A nice shorting class based on Ryan Charmley's suggestion see the link on Stack Overflow below.
* #author Svetoslav Marinov (Slavi) | http://WebWeb.ca
* #see http://stackoverflow.com/questions/742013/how-to-code-a-url-shortener/10386945#10386945
*/
class App_Shorty {
/**
* Explicitly omitted: i, o, 1, 0 because they are confusing. Also use only lowercase ... as
* dictating this over the phone might be tough.
* #var string
*/
private $dictionary = "abcdfghjklmnpqrstvwxyz23456789";
private $dictionary_array = array();
public function __construct() {
$this->dictionary_array = str_split($this->dictionary);
}
/**
* Gets ID and converts it into a string.
* #param int $id
*/
public function encode($id) {
$str_id = '';
$base = count($this->dictionary_array);
while ($id > 0) {
$rem = $id % $base;
$id = ($id - $rem) / $base;
$str_id .= $this->dictionary_array[$rem];
}
return $str_id;
}
/**
* Converts /abc into an integer ID
* #param string
* #return int $id
*/
public function decode($str_id) {
$id = 0;
$id_ar = str_split($str_id);
$base = count($this->dictionary_array);
for ($i = count($id_ar); $i > 0; $i--) {
$id += array_search($id_ar[$i - 1], $this->dictionary_array) * pow($base, $i - 1);
}
return $id;
}
}
?>
public class TinyUrl {
private final String characterMap = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
private final int charBase = characterMap.length();
public String covertToCharacter(int num){
StringBuilder sb = new StringBuilder();
while (num > 0){
sb.append(characterMap.charAt(num % charBase));
num /= charBase;
}
return sb.reverse().toString();
}
public int covertToInteger(String str){
int num = 0;
for(int i = 0 ; i< str.length(); i++)
num += characterMap.indexOf(str.charAt(i)) * Math.pow(charBase , (str.length() - (i + 1)));
return num;
}
}
class TinyUrlTest{
public static void main(String[] args) {
TinyUrl tinyUrl = new TinyUrl();
int num = 122312215;
String url = tinyUrl.covertToCharacter(num);
System.out.println("Tiny url: " + url);
System.out.println("Id: " + tinyUrl.covertToInteger(url));
}
}
This is what I use:
# Generate a [0-9a-zA-Z] string
ALPHABET = map(str,range(0, 10)) + map(chr, range(97, 123) + range(65, 91))
def encode_id(id_number, alphabet=ALPHABET):
"""Convert an integer to a string."""
if id_number == 0:
return alphabet[0]
alphabet_len = len(alphabet) # Cache
result = ''
while id_number > 0:
id_number, mod = divmod(id_number, alphabet_len)
result = alphabet[mod] + result
return result
def decode_id(id_string, alphabet=ALPHABET):
"""Convert a string to an integer."""
alphabet_len = len(alphabet) # Cache
return sum([alphabet.index(char) * pow(alphabet_len, power) for power, char in enumerate(reversed(id_string))])
It's very fast and can take long integers.
For a similar project, to get a new key, I make a wrapper function around a random string generator that calls the generator until I get a string that hasn't already been used in my hashtable. This method will slow down once your name space starts to get full, but as you have said, even with only 6 characters, you have plenty of namespace to work with.
I have a variant of the problem, in that I store web pages from many different authors and need to prevent discovery of pages by guesswork. So my short URLs add a couple of extra digits to the Base-62 string for the page number. These extra digits are generated from information in the page record itself and they ensure that only 1 in 3844 URLs are valid (assuming 2-digit Base-62). You can see an outline description at http://mgscan.com/MBWL.
Very good answer, I have created a Golang implementation of the bjf:
package bjf
import (
"math"
"strings"
"strconv"
)
const alphabet = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
func Encode(num string) string {
n, _ := strconv.ParseUint(num, 10, 64)
t := make([]byte, 0)
/* Special case */
if n == 0 {
return string(alphabet[0])
}
/* Map */
for n > 0 {
r := n % uint64(len(alphabet))
t = append(t, alphabet[r])
n = n / uint64(len(alphabet))
}
/* Reverse */
for i, j := 0, len(t) - 1; i < j; i, j = i + 1, j - 1 {
t[i], t[j] = t[j], t[i]
}
return string(t)
}
func Decode(token string) int {
r := int(0)
p := float64(len(token)) - 1
for i := 0; i < len(token); i++ {
r += strings.Index(alphabet, string(token[i])) * int(math.Pow(float64(len(alphabet)), p))
p--
}
return r
}
Hosted at github: https://github.com/xor-gate/go-bjf
Implementation in Scala:
class Encoder(alphabet: String) extends (Long => String) {
val Base = alphabet.size
override def apply(number: Long) = {
def encode(current: Long): List[Int] = {
if (current == 0) Nil
else (current % Base).toInt :: encode(current / Base)
}
encode(number).reverse
.map(current => alphabet.charAt(current)).mkString
}
}
class Decoder(alphabet: String) extends (String => Long) {
val Base = alphabet.size
override def apply(string: String) = {
def decode(current: Long, encodedPart: String): Long = {
if (encodedPart.size == 0) current
else decode(current * Base + alphabet.indexOf(encodedPart.head),encodedPart.tail)
}
decode(0,string)
}
}
Test example with Scala test:
import org.scalatest.{FlatSpec, Matchers}
class DecoderAndEncoderTest extends FlatSpec with Matchers {
val Alphabet = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
"A number with base 10" should "be correctly encoded into base 62 string" in {
val encoder = new Encoder(Alphabet)
encoder(127) should be ("cd")
encoder(543513414) should be ("KWGPy")
}
"A base 62 string" should "be correctly decoded into a number with base 10" in {
val decoder = new Decoder(Alphabet)
decoder("cd") should be (127)
decoder("KWGPy") should be (543513414)
}
}
Function based in Xeoncross Class
function shortly($input){
$dictionary = ['a','b','c','d','e','f','g','h','i','j','k','l','m','n','o','p','q','r','s','t','u','v','w','x','y','z','A','B','C','D','E','F','G','H','I','J','K','L','M','N','O','P','Q','R','S','T','U','V','W','X','Y','Z','0','1','2','3','4','5','6','7','8','9'];
if($input===0)
return $dictionary[0];
$base = count($dictionary);
if(is_numeric($input)){
$result = [];
while($input > 0){
$result[] = $dictionary[($input % $base)];
$input = floor($input / $base);
}
return join("", array_reverse($result));
}
$i = 0;
$input = str_split($input);
foreach($input as $char){
$pos = array_search($char, $dictionary);
$i = $i * $base + $pos;
}
return $i;
}
Here is a Node.js implementation that is likely to bit.ly. generate a highly random seven-character string.
It uses Node.js crypto to generate a highly random 25 charset rather than randomly selecting seven characters.
var crypto = require("crypto");
exports.shortURL = new function () {
this.getShortURL = function () {
var sURL = '',
_rand = crypto.randomBytes(25).toString('hex'),
_base = _rand.length;
for (var i = 0; i < 7; i++)
sURL += _rand.charAt(Math.floor(Math.random() * _rand.length));
return sURL;
};
}
My Python 3 version
base_list = list("0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ")
base = len(base_list)
def encode(num: int):
result = []
if num == 0:
result.append(base_list[0])
while num > 0:
result.append(base_list[num % base])
num //= base
print("".join(reversed(result)))
def decode(code: str):
num = 0
code_list = list(code)
for index, code in enumerate(reversed(code_list)):
num += base_list.index(code) * base ** index
print(num)
if __name__ == '__main__':
encode(341413134141)
decode("60FoItT")
For a quality Node.js / JavaScript solution, see the id-shortener module, which is thoroughly tested and has been used in production for months.
It provides an efficient id / URL shortener backed by pluggable storage defaulting to Redis, and you can even customize your short id character set and whether or not shortening is idempotent. This is an important distinction that not all URL shorteners take into account.
In relation to other answers here, this module implements the Marcel Jackwerth's excellent accepted answer above.
The core of the solution is provided by the following Redis Lua snippet:
local sequence = redis.call('incr', KEYS[1])
local chars = '0123456789ABCDEFGHJKLMNPQRSTUVWXYZ_abcdefghijkmnopqrstuvwxyz'
local remaining = sequence
local slug = ''
while (remaining > 0) do
local d = (remaining % 60)
local character = string.sub(chars, d + 1, d + 1)
slug = character .. slug
remaining = (remaining - d) / 60
end
redis.call('hset', KEYS[2], slug, ARGV[1])
return slug
Why not just generate a random string and append it to the base URL? This is a very simplified version of doing this in C#.
static string chars = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
static string baseUrl = "https://google.com/";
private static string RandomString(int length)
{
char[] s = new char[length];
Random rnd = new Random();
for (int x = 0; x < length; x++)
{
s[x] = chars[rnd.Next(chars.Length)];
}
Thread.Sleep(10);
return new String(s);
}
Then just add the append the random string to the baseURL:
string tinyURL = baseUrl + RandomString(5);
Remember this is a very simplified version of doing this and it's possible the RandomString method could create duplicate strings. In production you would want to take in account for duplicate strings to ensure you will always have a unique URL. I have some code that takes account for duplicate strings by querying a database table I could share if anyone is interested.
This is my initial thoughts, and more thinking can be done, or some simulation can be made to see if it works well or any improvement is needed:
My answer is to remember the long URL in the database, and use the ID 0 to 9999999999999999 (or however large the number is needed).
But the ID 0 to 9999999999999999 can be an issue, because
it can be shorter if we use hexadecimal, or even base62 or base64. (base64 just like YouTube using A-Z a-z 0-9 _ and -)
if it increases from 0 to 9999999999999999 uniformly, then hackers can visit them in that order and know what URLs people are sending each other, so it can be a privacy issue
We can do this:
have one server allocate 0 to 999 to one server, Server A, so now Server A has 1000 of such IDs. So if there are 20 or 200 servers constantly wanting new IDs, it doesn't have to keep asking for each new ID, but rather asking once for 1000 IDs
for the ID 1, for example, reverse the bits. So 000...00000001 becomes 10000...000, so that when converted to base64, it will be non-uniformly increasing IDs each time.
use XOR to flip the bits for the final IDs. For example, XOR with 0xD5AA96...2373 (like a secret key), and the some bits will be flipped. (whenever the secret key has the 1 bit on, it will flip the bit of the ID). This will make the IDs even harder to guess and appear more random
Following this scheme, the single server that allocates the IDs can form the IDs, and so can the 20 or 200 servers requesting the allocation of IDs. The allocating server has to use a lock / semaphore to prevent two requesting servers from getting the same batch (or if it is accepting one connection at a time, this already solves the problem). So we don't want the line (queue) to be too long for waiting to get an allocation. So that's why allocating 1000 or 10000 at a time can solve the issue.

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