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11
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int pPrevPrev = 1, pPrev = 1, pCurr = 1, pNext = 1; for ( int i = 3; i <= n; i ++ ) { pNext = pPrevPrev + pPrev; pPrevPrev = pPrev; pPrev = pCurr; pCurr = pNext; } return pNext; }
[ "import itertools" ]
null
[]
N_TH_NUMBER_WHOSE_SUM_OF_DIGITS_IS_TEN
python
[]
import itertools def f_gold ( n ) : count = 0 for curr in itertools.count ( ) : sum = 0 x = curr while ( x ) : sum = sum + x % 10 x = x // 10 if ( sum == 10 ) : count = count + 1 if ( count == n ) : return curr return - 1
code_translation
[ [ "37", "406" ], [ "13", "136" ], [ "51", "613" ], [ "69", "1054" ], [ "76", "1126" ], [ "10", "109" ], [ "97", "1360" ], [ "40", "433" ], [ "69", "1054" ], [ "4", "46" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int low, int high, int x ) { int i; if ( x <= arr [ low ] ) return low; for ( i = low; i < high; i ++ ) { if ( arr [ i ] == x ) return i; if ( arr [ i ] < x && arr [ i + 1 ] >= x ) return i + 1; } return - 1; }
[]
null
[]
MINIMUM_COST_SORT_MATRIX_NUMBERS_0_N2_1
python
[]
def f_gold ( mat , n ) : tot_energy = 0 for i in range ( n ) : for j in range ( n ) : q = mat [ i ] [ j ] // n i_des = q j_des = mat [ i ] [ j ] - ( n * q ) tot_energy += ( abs ( i_des - i ) + abs ( j_des - j ) ) return tot_energy
code_translation
[ [ "[[4, 7, 10, 11, 14, 22, 27, 43, 45, 47, 48, 48, 49, 49, 51, 54, 56, 57, 59, 62, 63, 64, 66, 79, 82, 83, 87, 96, 97, 97, 98], [1, 1, 10, 13, 14, 18, 31, 33, 35, 37, 37, 42, 43, 44, 46, 54, 60, 61, 63, 63, 67, 67, 74, 76, 81, 83, 88, 91, 91, 96, 97], [2, 3, 4, 10, 11, 13, 17, 27, 30, 35, 35, 38, 39, 44, 47, 52...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int ar [ ], int n ) { if ( n <= 4 ) return * min_element ( ar, ar + n ); int sum [ n ]; sum [ 0 ] = ar [ 0 ]; sum [ 1 ] = ar [ 1 ]; sum [ 2 ] = ar [ 2 ]; sum [ 3 ] = ar [ 3 ]; for ( int i = 4; i < n; i ++ ) sum [ i ] = ar [ i ] + ( * min_element ( sum + i - 4, sum + i ) ); return * min_element ( sum + n - 4, sum + n ); }
[]
null
[]
NUMBER_TRIANGLES_N_MOVES
python
[]
def f_gold ( n ) : answer = [ None ] * ( n + 1 ) ; answer [ 0 ] = 1 ; i = 1 while i <= n : answer [ i ] = answer [ i - 1 ] * 3 + 2 ; i = i + 1 return answer [ n ] ;
code_translation
[ [ "33", "11118121133111045" ], [ "72", "45056799089878348823680295749545281" ], [ "81", "886852976486075539896499261238299785605" ], [ "93", "471310032676736470998135463891743276362238245" ], [ "8", "13121" ], [ "76", "36496007262801462547181039557...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr1 [ ], int arr2 [ ], int m, int n, int x ) { int count = 0; for ( int i = 0; i < m; i ++ ) for ( int j = 0; j < n; j ++ ) if ( ( arr1 [ i ] + arr2 [ j ] ) == x ) count ++; return count; }
[]
null
[]
MAXIMUM_PROFIT_BY_BUYING_AND_SELLING_A_SHARE_AT_MOST_K_TIMES_1
python
[]
def f_gold ( price , n , k ) : profit = [ [ 0 for i in range ( n + 1 ) ] for j in range ( k + 1 ) ] for i in range ( 1 , k + 1 ) : prevDiff = float ( '-inf' ) for j in range ( 1 , n ) : prevDiff = max ( prevDiff , profit [ i - 1 ] [ j - 1 ] - price [ j - 1 ] ) profit [ i ] [ j ] = max ( profit [ i ] [ j - 1 ] , price [ j ] + prevDiff ) return profit [ k ] [ n - 1 ]
code_translation
[ [ "[3, 6, 16, 16, 19, 37, 47, 49, 74, 77, 86, 96], 6, 6", "34" ], [ "[-6, -70, -26, 78, 98, -72, 48, -94, -38, 52, -50, 58, 84, 16, -74, 32, -44, -50, 68, -48, 28, 94, -26, -96, -42, 96, -24, 42, -70, 10, -16, -32, 98, 38, -2, 26, -26, -78, 44, -72, -56, -22], 31, 32", "1272" ], [ "[0, 0...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int num ) { if ( num / 10 == 0 ) return true; while ( num != 0 ) { if ( num / 10 == 0 ) return true; int digit1 = num % 10; int digit2 = ( num / 10 ) % 10; if ( abs ( digit2 - digit1 ) > 1 ) return false; num = num / 10; } return true; }
[]
null
[]
COUNT_SUBARRAYS_TOTAL_DISTINCT_ELEMENTS_ORIGINAL_ARRAY
python
[]
def f_gold(arr, n): vis = dict() for i in range(n): vis[arr[i]] = 1 k = len(vis) vid = dict() ans = 0 right = 0 window = 0 for left in range(n): while (right < n and window < k): if arr[right] in vid.keys(): vid[arr[right]] += 1 else: vid[arr[right]] = 1 if (vid[arr[right]] == 1): window += 1 right += 1 if (window == k): ans += (n - right + 1) vid[arr[left]] -= 1 if (vid[arr[left]] == 0): window -= 1 return ans
code_translation
[ [ "[13, 39, 49, 52, 53, 69, 72, 79, 83, 96], 5", "1" ], [ "[-98, -98, 22, -10, -28, 0, 56, 72, 36, 88, 96, 22, 90, 74, -60, -64, 0, 2, -42, 0, 94, -82, -74], 20", "4" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 26", "160" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string str ) { int checker = 0; for ( int i = 0; i < str . length ( ); ++ i ) { int val = ( str [ i ] - 'a' ); if ( ( checker & ( 1 << val ) ) > 0 ) return i; checker |= ( 1 << val ); } return - 1; }
[]
null
[]
FIND_REPETITIVE_ELEMENT_1_N_1
python
[]
def f_gold ( arr , n ) : return sum ( arr ) - ( ( ( n - 1 ) * n ) // 2 )
code_translation
[ [ "[4, 8, 27, 34, 39, 42, 43, 54, 72], 5", "313" ], [ "[-38, -66, -38, -48, -96, 74, -32, -62, -34, -32, -88, -12, -8, -4], 9", "-520" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1], 8", "-23" ], [ "[88, 86, 23, 81, 76, 16, 94, 64, 59, 50, 71, 62, 10, 89, 73, 64, 65, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; string f_gold ( string str ) { int n = str . length ( ); int dp [ n + 1 ] [ n + 1 ]; for ( int i = 0; i <= n; i ++ ) for ( int j = 0; j <= n; j ++ ) dp [ i ] [ j ] = 0; for ( int i = 1; i <= n; i ++ ) for ( int j = 1; j <= n; j ++ ) if ( str [ i - 1 ] == str [ j - 1 ] && i != j ) dp [ i ] [ j ] = 1 + dp [ i - 1 ] [ j - 1 ]; else dp [ i ] [ j ] = max ( dp [ i ] [ j - 1 ], dp [ i - 1 ] [ j ] ); string res = ""; int i = n, j = n; while ( i > 0 && j > 0 ) { if ( dp [ i ] [ j ] == dp [ i - 1 ] [ j - 1 ] + 1 ) { res = res + str [ i - 1 ]; i --; j --; } else if ( dp [ i ] [ j ] == dp [ i - 1 ] [ j ] ) i --; else j --; } reverse ( res . begin ( ), res . end ( ) ); return res; }
[]
null
[]
SEQUENCES_GIVEN_LENGTH_EVERY_ELEMENT_EQUAL_TWICE_PREVIOUS
python
[]
def f_gold(m, n): if m < n: return 0 if n == 0: return 1 res = (f_gold(m - 1, n) + f_gold(m // 2, n - 1)) return res
code_translation
[ [ "38, 34", "0" ], [ "39, 29", "0" ], [ "24, 99", "0" ], [ "90, 23", "0" ], [ "44, 2", "484" ], [ "49, 70", "0" ], [ "58, 84", "0" ], [ "97, 34", "0" ], [ "99, 72", "0" ], [ "19, 67", "0" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int ans = 0; for ( int length = 1; length <= sqrt ( n ); ++ length ) for ( int height = length; height * length <= n; ++ height ) ans ++; return ans; }
[]
null
[]
MAXIMUM_AREA_RECTANGLE_PICKING_FOUR_SIDES_ARRAY_1
python
[]
def f_gold ( arr , n ) : s = [ ] first = 0 second = 0 for i in range ( n ) : if arr [ i ] not in s : s.append ( arr [ i ] ) continue if ( arr [ i ] > first ) : second = first first = arr [ i ] elif ( arr [ i ] > second ) : second = arr [ i ] return ( first * second )
code_translation
[ [ "[4, 6, 7, 8, 12, 13, 14, 15, 18, 18, 19, 19, 26, 26, 32, 32, 33, 34, 34, 36, 41, 43, 47, 47, 51, 51, 52, 53, 55, 56, 57, 60, 61, 71, 74, 75, 76, 77, 79, 87, 87, 87, 90, 95, 98, 99], 37", "2397" ], [ "[-64, -72, 6, -62, 54, 14, 28, 60, -96, 14, -32, -2, 80, 8, -56, 68, 86, 64, 86, -12, 82], 12", ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n, int idx ) { int result = 0; for ( int i = 0; i < n; i ++ ) { if ( arr [ i ] < arr [ idx ] ) result ++; if ( arr [ i ] == arr [ idx ] && i < idx ) result ++; } return result; }
[]
null
[]
MINIMUM_TIME_WRITE_CHARACTERS_USING_INSERT_DELETE_COPY_OPERATION
python
[]
def f_gold ( N , insrt , remov , cpy ) : if N == 0 : return 0 if N == 1 : return insrt dp = [ 0 ] * ( N + 1 ) for i in range ( 1 , N + 1 ) : if i % 2 == 0 : dp [ i ] = min ( dp [ i - 1 ] + insrt , dp [ i // 2 ] + cpy ) else : dp [ i ] = min ( dp [ i - 1 ] + insrt , dp [ ( i + 1 ) // 2 ] + cpy + remov ) return dp [ N ]
code_translation
[ [ "59, 75, 12, 45", "351" ], [ "66, 68, 32, 41", "382" ], [ "98, 55, 69, 5", "195" ], [ "63, 4, 41, 12", "76" ], [ "99, 37, 98, 55", "460" ], [ "45, 28, 59, 7", "147" ], [ "60, 53, 40, 52", "405" ], [ "11, 96, 50, 50", "392"...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( char s [ ] ) { int n = strlen ( s ); int count = 0; for ( int i = 0; i < n; ++ i ) if ( s [ i ] == '4' || s [ i ] == '8' || s [ i ] == '0' ) count ++; for ( int i = 0; i < n - 1; ++ i ) { int h = ( s [ i ] - '0' ) * 10 + ( s [ i + 1 ] - '0' ); if ( h % 4 == 0 ) count = count + i + 1; } return count; }
[]
null
[]
POSSIBLE_FORM_TRIANGLE_ARRAY_VALUES
python
[]
def f_gold ( arr , N ) : if N < 3 : return False arr.sort ( ) for i in range ( N - 2 ) : if arr [ i ] + arr [ i + 1 ] > arr [ i + 2 ] : return True
code_translation
[ [ "[2, 6, 8, 10, 14, 15, 16, 19, 21, 26, 26, 26, 28, 29, 30, 33, 33, 35, 36, 36, 41, 44, 45, 45, 45, 49, 51, 54, 57, 59, 61, 64, 68, 70, 70, 72, 73, 74, 76, 78, 87, 89, 89, 91, 92, 93, 94, 95, 97], 25", "True" ], [ "[-96, -94, -90, -86, -78, -78, -74, -72, -64, -64, -58, -56, -50, -46, -44, -36, -26...
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
GOOGLE_CASE_GIVEN_SENTENCE
python
[]
def f_gold(s): n = len(s) s1 = "" s1 = s1 + s[0].lower() i = 1 while i < n: if (s[i] == ' ' and i <= n): s1 = s1 + " " + (s[i + 1]).lower() i = i + 1 else: s1 = s1 + (s[i]).upper() i = i + 1 return s1
code_translation
[ [ "'TEYndweqZA'", "'tEYNDWEQZA'" ], [ "'01865'", "'01865'" ], [ "'11001100'", "'11001100'" ], [ "'CzwznJmQet'", "'cZWZNJMQET'" ], [ "'318305446'", "'318305446'" ], [ "'0000001111110'", "'0000001111110'" ], [ "'yzT'", "'yZT'" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; long f_gold ( long n ) { return ( ( n << 3 ) - n ); }
[]
null
[]
PROGRAM_BINARY_DECIMAL_CONVERSION_1
python
[]
def f_gold ( n ) : num = n ; dec_value = 0 ; base1 = 1 ; len1 = len ( num ) ; for i in range ( len1 - 1 , - 1 , - 1 ) : if ( num [ i ] == '1' ) : dec_value += base1 ; base1 = base1 * 2 ; return dec_value ;
code_translation
[ [ "'uEmIAgF'", "0" ], [ "'753310137'", "20" ], [ "'010011010'", "154" ], [ "'kNi'", "0" ], [ "'04562016903312'", "130" ], [ "'000111101'", "61" ], [ "'bk'", "0" ], [ "'9'", "0" ], [ "'1'", "1" ], [ "'XxT ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int C [ n + 1 ] [ n + 1 ]; for ( int i = 0; i <= n; i ++ ) { for ( int j = 0; j <= min ( i, n ); j ++ ) { if ( j == 0 || j == i ) C [ i ] [ j ] = 1; else C [ i ] [ j ] = C [ i - 1 ] [ j - 1 ] + C [ i - 1 ] [ j ]; } } int maxvalue = 0; for ( int i = 0; i <= n; i ++ ) maxvalue = max ( maxvalue, C [ n ] [ i ] ); return maxvalue; }
[]
null
[]
MINIMUM_COST_MAKE_ARRAY_SIZE_1_REMOVING_LARGER_PAIRS
python
[]
def f_gold ( a , n ) : return ( ( n - 1 ) * min ( a ) )
code_translation
[ [ "[1, 2, 3, 4, 7, 8, 10, 10, 16, 20, 22, 22, 23, 23, 23, 27, 29, 32, 35, 39, 41, 46, 51, 53, 54, 59, 59, 60, 61, 69, 70, 70, 79, 79, 81, 84, 90, 91, 98], 25", "24" ], [ "[-6, 10], 1", "0" ], [ "[0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 15", "0" ], [ "[20, 61, 9...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; float f_gold ( float l, float b, float h ) { float volume = ( l * b * h ) / 2; return volume; }
[]
null
[]
MULTIPLY_LARGE_INTEGERS_UNDER_LARGE_MODULO
python
[]
def f_gold ( a , b , mod ) : res = 0 ; a = a % mod ; while ( b ) : if ( b & 1 ) : res = ( res + a ) % mod ; a = ( 2 * a ) % mod ; b >>= 1 ; return res ;
code_translation
[ [ "60, 24, 58", "48" ], [ "46, 43, 29", "6" ], [ "4, 50, 71", "58" ], [ "67, 1, 66", "1" ], [ "93, 35, 73", "43" ], [ "89, 97, 8", "1" ], [ "8, 78, 55", "19" ], [ "53, 73, 22", "19" ], [ "96, 92, 83", "34" ], ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { if ( n <= 0 ) return 0; int incl = arr [ 0 ]; int excl = 0; for ( int i = 1; i < n; i ++ ) { int incl_new = arr [ i ] + min ( excl, incl ); int excl_new = incl; incl = incl_new; excl = excl_new; } return min ( incl, excl ); }
[ "import math" ]
null
[]
NUMBER_DAYS_TANK_WILL_BECOME_EMPTY
python
[]
import math def f_gold ( C , l ) : if ( l >= C ) : return C eq_root = ( math.sqrt ( 1 + 8 * ( C - l ) ) - 1 ) / 2 return math.ceil ( eq_root ) + l
code_translation
[ [ "91, 29", "40" ], [ "99, 55", "64" ], [ "11, 56", "11" ], [ "23, 56", "23" ], [ "12, 97", "12" ], [ "1, 64", "1" ], [ "18, 5", "10" ], [ "14, 37", "14" ], [ "13, 55", "13" ], [ "36, 99", "36" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; double f_gold ( double side ) { return ( 2 * ( sqrt ( 3 ) ) * ( side * side ) ); }
[]
null
[]
PROGRAM_FOR_DEADLOCK_FREE_CONDITION_IN_OPERATING_SYSTEM
python
[]
def f_gold ( process , need ) : minResources = 0 minResources = process * ( need - 1 ) + 1 return minResources
code_translation
[ [ "38, 37", "1369" ], [ "82, 3", "165" ], [ "2, 26", "51" ], [ "38, 72", "2699" ], [ "31, 85", "2605" ], [ "80, 73", "5761" ], [ "11, 9", "89" ], [ "2, 31", "61" ], [ "26, 59", "1509" ], [ "37, 67", "...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( string s, char c ) { bool oneSeen = false; int i = 0, n = s . length ( ); while ( i < n ) { if ( s [ i ] == c ) { if ( oneSeen == true ) return false; while ( i < n && s [ i ] == c ) i ++; oneSeen = true; } else i ++; } return true; }
[]
null
[]
LONGEST_SUBARRAY_COUNT_1S_ONE_COUNT_0S
python
[]
def f_gold ( arr , n ) : um = { i : 0 for i in range ( 10 ) } sum = 0 maxLen = 0 for i in range ( n ) : if arr [ i ] == 0 : sum += - 1 else : sum += 1 if ( sum == 1 ) : maxLen = i + 1 elif ( sum not in um ) : um [ sum ] = i if ( ( sum - 1 ) in um ) : if ( maxLen < ( i - um [ sum - 1 ] ) ) : maxLen = i - um [ sum - 1 ] return maxLen
code_translation
[ [ "[6, 10, 31, 35], 2", "1" ], [ "[4, 88, -72, 28, -54, 32, -34], 6", "5" ], [ "[0, 0, 0, 1, 1, 1, 1, 1, 1], 4", "1" ], [ "[39, 22, 15, 10, 34, 87, 46, 83, 74, 77, 61, 90, 43, 67, 64, 72, 92, 52, 68, 53, 67, 32, 82, 76, 76, 47, 74, 47, 8, 80, 85, 58, 75], 26", "9" ], ...
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
NEXT_POWER_OF_2
python
[]
def f_gold ( n ) : count = 0 ; if ( n and not ( n & ( n - 1 ) ) ) : return n while ( n != 0 ) : n >>= 1 count += 1 return 1 << count ;
code_translation
[ [ "74", "128" ], [ "70", "128" ], [ "85", "128" ], [ "78", "128" ], [ "71", "128" ], [ "32", "32" ], [ "97", "128" ], [ "90", "128" ], [ "64", "64" ], [ "48", "64" ] ]
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
CALCULATE_MAXIMUM_VALUE_USING_SIGN_TWO_NUMBERS_STRING
python
[]
def f_gold ( str ) : res = ord ( str [ 0 ] ) - 48 for i in range ( 1 , len ( str ) ) : if ( str [ i ] == '0' or str [ i ] == '1' or res < 2 ) : res += ord ( str [ i ] ) - 48 else : res *= ord ( str [ i ] ) - 48 return res
code_translation
[ [ "'pR'", "2176" ], [ "'9518'", "368" ], [ "'1'", "1" ], [ "'nNMCIXUCpRMmvO'", "6018195974788838400000" ], [ "'3170487'", "6272" ], [ "'0100101010'", "4" ], [ "'Z rONcUqWb'", "-303" ], [ "'00419297'", "5670" ], [ "'0...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int count = 0, ans = 1; while ( n % 2 == 0 ) { count ++; n /= 2; } if ( count % 2 ) ans *= 2; for ( int i = 3; i <= sqrt ( n ); i += 2 ) { count = 0; while ( n % i == 0 ) { count ++; n /= i; } if ( count % 2 ) ans *= i; } if ( n > 2 ) ans *= n; return ans; }
[]
null
[]
COUNT_PAIRS_WHOSE_PRODUCTS_EXIST_IN_ARRAY_1
python
[]
def f_gold ( arr , n ) : result = 0 Hash = set ( ) for i in range ( n ) : Hash.add ( arr [ i ] ) for i in range ( n ) : for j in range ( i + 1 , n ) : product = arr [ i ] * arr [ j ] if product in ( Hash ) : result += 1 return result
code_translation
[ [ "[7, 10, 17, 17, 18, 20, 27, 28, 29, 29, 31, 32, 41, 43, 45, 46, 63, 66, 69, 69, 70, 75, 87, 95], 17", "0" ], [ "[-60], 0", "0" ], [ "[0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 9", "36" ], [ "[52, 83, 36, 57, 93, 11, 32, 91, 52], 8", "0" ], [ "[-98, -94, -90...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int sum = 0; unordered_set < int > s; for ( int i = 0; i < n; i ++ ) { if ( s . find ( arr [ i ] ) == s . end ( ) ) { sum += arr [ i ]; s . insert ( arr [ i ] ); } } return sum; }
[]
null
[]
COUNT_INVERSIONS_OF_SIZE_THREE_IN_A_GIVE_ARRAY_1
python
[]
def f_gold ( arr , n ) : invcount = 0 for i in range ( 1 , n - 1 ) : small = 0 for j in range ( i + 1 , n ) : if ( arr [ i ] > arr [ j ] ) : small += 1 great = 0 ; for j in range ( i - 1 , - 1 , - 1 ) : if ( arr [ i ] < arr [ j ] ) : great += 1 invcount += great * small return invcount
code_translation
[ [ "[4, 75, 89], 1", "0" ], [ "[84, -66, -52, 34, -28, -6, 20, 22, -78, -26, 14, 24, -92, -18, 32, -94, -64, -38, 56, 4, -10, 58, -66, -58, -10, -8, -62, -60, -26], 26", "404" ], [ "[0, 0, 0, 1, 1, 1, 1, 1], 7", "0" ], [ "[18, 7, 43, 57, 94, 37, 38, 41, 59, 64, 97, 29, 51, 37,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; unsigned int f_gold ( unsigned int n ) { if ( n == 0 ) return 1; return n * f_gold ( n - 1 ); }
[]
null
[]
FIND_INDEX_0_REPLACED_1_GET_LONGEST_CONTINUOUS_SEQUENCE_1S_BINARY_ARRAY
python
[]
def f_gold ( arr , n ) : max_count = 0 max_index = 0 prev_zero = - 1 prev_prev_zero = - 1 for curr in range ( n ) : if ( arr [ curr ] == 0 ) : if ( curr - prev_prev_zero > max_count ) : max_count = curr - prev_prev_zero max_index = prev_zero prev_prev_zero = prev_zero prev_zero = curr if ( n - prev_prev_zero > max_count ) : max_index = prev_zero return max_index
code_translation
[ [ "[2, 8, 9, 13, 13, 19, 19, 21, 21, 24, 28, 28, 29, 29, 29, 32, 34, 38, 39, 43, 45, 46, 57, 59, 62, 63, 67, 67, 68, 69, 70, 70, 71, 72, 74, 74, 76, 78, 79, 81, 90, 90, 95, 96, 98], 36", "-1" ], [ "[28, 92, -16, 0, 6, 12, -88, 42, -48, 72, 2, -38, 80, 82, 96, 32, -42, -38, 62, -76, 20, -10, 2, -48, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; string f_gold ( string seq ) { int n = seq . length ( ); if ( n >= 9 ) return "-1"; string result ( n + 1, ' ' ); int count = 1; for ( int i = 0; i <= n; i ++ ) { if ( i == n || seq [ i ] == 'I' ) { for ( int j = i - 1; j >= - 1; j -- ) { result [ j + 1 ] = '0' + count ++; if ( j >= 0 && seq [ j ] == 'I' ) break; } } } return result; }
[]
null
[]
LONGEST_INCREASING_ODD_EVEN_SUBSEQUENCE
python
[]
def f_gold ( arr , n ) : lioes = list ( ) maxLen = 0 for i in range ( n ) : lioes.append ( 1 ) i = 1 for i in range ( n ) : for j in range ( i ) : if ( arr [ i ] > arr [ j ] and ( arr [ i ] + arr [ j ] ) % 2 != 0 and lioes [ i ] < lioes [ j ] + 1 ) : lioes [ i ] = lioes [ j ] + 1 for i in range ( n ) : if maxLen < lioes [ i ] : maxLen = lioes [ i ] return maxLen
code_translation
[ [ "[7, 8, 9, 16, 16, 27, 32, 33, 35, 35, 39, 39, 41, 42, 44, 47, 48, 50, 56, 59, 66, 69, 70, 73, 74, 76, 78, 87, 87, 89, 94, 96, 96, 98, 98], 32", "18" ], [ "[40, 76, -54, -92, -28, -96, 8, 60, 28, -38, -62, -40, -16, 16, 52, 28, 70, -56, -50, 46, 68, -16, -56, 46, 42, 70, 52, -34, 86, -32, -50, 64,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int stack1 [ ], int stack2 [ ], int stack3 [ ], int n1, int n2, int n3 ) { int sum1 = 0, sum2 = 0, sum3 = 0; for ( int i = 0; i < n1; i ++ ) sum1 += stack1 [ i ]; for ( int i = 0; i < n2; i ++ ) sum2 += stack2 [ i ]; for ( int i = 0; i < n3; i ++ ) sum3 += stack3 [ i ]; int top1 = 0, top2 = 0, top3 = 0; int ans = 0; while ( 1 ) { if ( top1 == n1 || top2 == n2 || top3 == n3 ) return 0; if ( sum1 == sum2 && sum2 == sum3 ) return sum1; if ( sum1 >= sum2 && sum1 >= sum3 ) sum1 -= stack1 [ top1 ++ ]; else if ( sum2 >= sum3 && sum2 >= sum3 ) sum2 -= stack2 [ top2 ++ ]; else if ( sum3 >= sum2 && sum3 >= sum1 ) sum3 -= stack3 [ top3 ++ ]; } }
[]
null
[]
PROGRAM_BINARY_DECIMAL_CONVERSION
python
[]
def f_gold ( n ) : num = n ; dec_value = 0 ; base = 1 ; temp = num ; while ( temp ) : last_digit = temp % 10 ; temp = int ( temp / 10 ) ; dec_value += last_digit * base ; base = base * 2 ; return dec_value ;
code_translation
[ [ "70", "14" ], [ "95", "23" ], [ "41", "9" ], [ "97", "25" ], [ "8", "8" ], [ "16", "8" ], [ "41", "9" ], [ "57", "17" ], [ "81", "17" ], [ "78", "22" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int N, int K ) { int ans = 0; for ( int i = 1; i <= N; i ++ ) ans += ( i % K ); return ans; }
[]
null
[]
COUNT_NATURAL_NUMBERS_WHOSE_PERMUTATION_GREATER_NUMBER
python
[]
def f_gold ( n ) : result = 0 for i in range ( 1 , 10 ) : s = [ ] if ( i <= n ) : s.append ( i ) result += 1 while len ( s ) != 0 : tp = s [ - 1 ] s.pop ( ) for j in range ( tp % 10 , 10 ) : x = tp * 10 + j if ( x <= n ) : s.append ( x ) result += 1 return result
code_translation
[ [ "69", "48" ], [ "72", "48" ], [ "88", "52" ], [ "7", "7" ], [ "66", "45" ], [ "34", "28" ], [ "23", "20" ], [ "37", "31" ], [ "33", "27" ], [ "21", "18" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string & str ) { int n = str . length ( ); int res = - 1; for ( int i = 0; i < n - 1; i ++ ) for ( int j = i + 1; j < n; j ++ ) if ( str [ i ] == str [ j ] ) res = max ( res, abs ( j - i - 1 ) ); return res; }
[]
null
[]
MINIMUM_ROTATIONS_UNLOCK_CIRCULAR_LOCK
python
[]
def f_gold ( input , unlock_code ) : rotation = 0 ; while ( input > 0 or unlock_code > 0 ) : input_digit = input % 10 ; code_digit = unlock_code % 10 ; rotation += min ( abs ( input_digit - code_digit ) , 10 - abs ( input_digit - code_digit ) ) ; input = int ( input / 10 ) ; unlock_code = int ( unlock_code / 10 ) ; return rotation ;
code_translation
[ [ "71, 46", "8" ], [ "90, 65", "8" ], [ "28, 84", "8" ], [ "41, 23", "4" ], [ "32, 58", "6" ], [ "39, 82", "8" ], [ "33, 58", "7" ], [ "89, 32", "8" ], [ "50, 51", "1" ], [ "92, 77", "7" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int a [ ], int n ) { unordered_map < int, int > mp; for ( int i = 0; i < n; i ++ ) mp [ a [ i ] ] ++; for ( auto x : mp ) if ( x . second >= n / 2 ) return true; return false; }
[]
null
[]
FIND_THE_MISSING_NUMBER_1
python
[]
def f_gold ( a , n ) : i , total = 0 , 1 for i in range ( 2 , n + 2 ) : total += i total -= a [ i - 2 ] return total
code_translation
[ [ "[13, 27, 46, 59, 62, 82, 92], 6", "-261" ], [ "[22, 86, -64, -20, -56, -16, 86, 42, 72, -90, 10, 42, 56, 8, 50, 24, -34, 0, -78, 64, 18, 20, -84, -22, 90, -20, 86, 26, -54, 0, 90, -48, 4, 88, 18, -64, -22, -74, 48, -36, -86, -24, 88, -64, 68, 62, 92], 38", "524" ], [ "[0, 0, 0, 0, 0, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int a, int b ) { return ( a + b ) / 2; }
[]
null
[]
LOWER_INSERTION_POINT
python
[]
def f_gold ( arr , n , X ) : if ( X < arr [ 0 ] ) : return 0 ; elif ( X > arr [ n - 1 ] ) : return n lowerPnt = 0 i = 1 while ( i < n and arr [ i ] < X ) : lowerPnt = i i = i * 2 while ( lowerPnt < n and arr [ lowerPnt ] < X ) : lowerPnt += 1 return lowerPnt
code_translation
[ [ "[1, 2, 5, 5, 16, 16, 20, 26, 32, 35, 39, 39, 41, 44, 48, 48, 51, 59, 59, 62, 66, 66, 70, 74, 75, 78, 80, 86, 86, 96], 17, 29", "8" ], [ "[-76, 80, -6, -2, 50, 72, 84, -56, 70, 8, 48, 6, -24, -50, -72], 14, 9", "14" ], [ "[0, 0, 0, 0, 0, 1, 1, 1, 1], 8, 4", "8" ], [ "[74, 6...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string s ) { if ( s . length ( ) == 0 ) cout << 0 << endl; int ans = 0; int o = 0, c = 0; for ( int i = 0; i < s . length ( ); i ++ ) { if ( s [ i ] == '(' ) o ++; if ( s [ i ] == ')' ) c ++; } if ( o != c ) return - 1; int a [ s . size ( ) ]; if ( s [ 0 ] == '(' ) a [ 0 ] = 1; else a [ 0 ] = - 1; if ( a [ 0 ] < 0 ) ans += abs ( a [ 0 ] ); for ( int i = 1; i < s . length ( ); i ++ ) { if ( s [ i ] == '(' ) a [ i ] = a [ i - 1 ] + 1; else a [ i ] = a [ i - 1 ] - 1; if ( a [ i ] < 0 ) ans += abs ( a [ i ] ); } return ans; }
[]
null
[]
COUNT_NEGATIVE_NUMBERS_IN_A_COLUMN_WISE_ROW_WISE_SORTED_MATRIX_1
python
[]
def f_gold ( M , n , m ) : count = 0 i = 0 j = m - 1 while j >= 0 and i < n : if M [ i ] [ j ] < 0 : count += ( j + 1 ) i += 1 else : j -= 1 return count
code_translation
[ [ "[[76, 39, 83, 83, 24, 11, 7, 97, 81, 52, 7, 81, 68, 25, 14, 54, 69, 12, 53, 38, 94, 77, 75, 28, 38, 92, 47, 46, 86], [63, 95, 96, 14, 82, 98, 75, 5, 72, 27, 71, 62, 15, 55, 63, 37, 10, 2, 68, 98, 15, 21, 25, 83, 84, 46, 93, 23, 87], [47, 23, 49, 53, 26, 14, 50, 50, 5, 3, 2, 28, 69, 14, 47, 82, 78, 48, 89, 84...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int l = 0, sum = 0, ans = 360; for ( int i = 0; i < n; i ++ ) { sum += arr [ i ]; while ( sum >= 180 ) { ans = min ( ans, 2 * abs ( 180 - sum ) ); sum -= arr [ l ]; l ++; } ans = min ( ans, 2 * abs ( 180 - sum ) ); } return ans; }
[]
null
[]
COUNT_SUBARRAYS_EQUAL_NUMBER_1S_0S
python
[]
def f_gold ( arr , n ) : um = dict ( ) curr_sum = 0 for i in range ( n ) : curr_sum += ( - 1 if ( arr [ i ] == 0 ) else arr [ i ] ) if um.get ( curr_sum ) : um [ curr_sum ] += 1 else : um [ curr_sum ] = 1 count = 0 for itr in um : if um [ itr ] > 1 : count += ( ( um [ itr ] * int ( um [ itr ] - 1 ) ) / 2 ) if um.get ( 0 ) : count += um [ 0 ] return int ( count )
code_translation
[ [ "[2, 12, 18, 19, 19, 20, 20, 21, 25, 29, 38, 54, 54, 71, 72, 72, 74, 75, 77, 78, 80, 80, 81, 84, 97, 97], 24", "0" ], [ "[10, 70, 24, -38, 32, -68, 88, -28, -24, -70, -64, 50, -30, 64, 54, -6, 18, -30, -30, -62, -10, 94, -54, -22, -88, 96, 22, 26, -92, -40, -76, 46, 36, 30, 24, -52, 0], 24", "...
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
FIND_INDEX_GIVEN_FIBONACCI_NUMBER_CONSTANT_TIME
python
[]
def f_gold ( n ) : if ( n <= 1 ) : return n a = 0 b = 1 c = 1 res = 1 while ( c < n ) : c = a + b res = res + 1 a = b b = c return res
code_translation
[ [ "5", "5" ], [ "19", "8" ], [ "7", "6" ], [ "94", "12" ], [ "58", "11" ], [ "65", "11" ], [ "69", "11" ], [ "96", "12" ], [ "80", "11" ], [ "14", "8" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int count = 0; if ( n % 2 == 0 ) { count ++; while ( n % 2 == 0 ) n = n / 2; } for ( int i = 3; i <= sqrt ( n ); i = i + 2 ) { if ( n % i == 0 ) { count ++; while ( n % i == 0 ) n = n / i; } } if ( n > 2 ) count ++; return count; }
[]
null
[]
POSITIVE_ELEMENTS_EVEN_NEGATIVE_ODD_POSITIONS
python
[]
def f_gold ( a , size ) : positive = 0 negative = 1 while ( True ) : while ( positive < size and a [ positive ] >= 0 ) : positive = positive + 2 while ( negative < size and a [ negative ] <= 0 ) : negative = negative + 2 if ( positive < size and negative < size ) : temp = a [ positive ] a [ positive ] = a [ negative ] a [ negative ] = temp else : break
code_translation
[ [ "[8, 11, 18, 23, 24, 28, 28, 34, 35, 42, 44, 53, 57, 65, 71, 72, 76, 78, 82, 82, 85, 86, 92, 93], 15", "None" ], [ "[0, -95, 27, -2, -70, -28, 3, -37, 75, -74, 85, -63, -93, -51, 68, -8, 67, 90, 3, -47, 32, 8, 12, 53, -93, 56, 97], 15", "None" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n, int m ) { return ( n == m ) ? n : 1; }
[]
null
[]
NUMBER_OF_SUBSTRINGS_WITH_ODD_DECIMAL_VALUE_IN_A_BINARY_STRING
python
[]
def f_gold ( s ) : n = len ( s ) auxArr = [ 0 for i in range ( n ) ] if ( s [ 0 ] == '1' ) : auxArr [ 0 ] = 1 for i in range ( 0 , n ) : if ( s [ i ] == '1' ) : auxArr [ i ] = auxArr [ i - 1 ] + 1 else : auxArr [ i ] = auxArr [ i - 1 ] count = 0 for i in range ( n - 1 , - 1 , - 1 ) : if ( s [ i ] == '1' ) : count += auxArr [ i ] return count
code_translation
[ [ "'OGiOkJF'", "0" ], [ "'517376'", "1" ], [ "'11'", "3" ], [ "'Ze'", "0" ], [ "'8763644247018'", "1" ], [ "'00111010001'", "15" ], [ "'HGwkBKUOVu'", "0" ], [ "'652'", "0" ], [ "'101000011110'", "21" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int num ) { int sum = 0; for ( int i = 2; i * i <= num; i ++ ) { while ( num % i == 0 ) { sum += i; num /= i; } } sum += num; return sum; }
[]
null
[]
EVEN_FIBONACCI_NUMBERS_SUM
python
[]
def f_gold ( limit ) : if ( limit < 2 ) : return 0 ef1 = 0 ef2 = 2 sm = ef1 + ef2 while ( ef2 <= limit ) : ef3 = 4 * ef2 + ef1 if ( ef3 > limit ) : break ef1 = ef2 ef2 = ef3 sm = sm + ef2 return sm
code_translation
[ [ "67", "44" ], [ "89", "44" ], [ "12", "10" ], [ "94", "44" ], [ "96", "44" ], [ "25", "10" ], [ "49", "44" ], [ "8", "10" ], [ "33", "10" ], [ "59", "44" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; double f_gold ( int n ) { return ( 3.0 * n ) / ( 4.0 * ( n * n ) - 1 ); }
[]
null
[]
CHECK_ARRAY_CONTAINS_CONTIGUOUS_INTEGERS_DUPLICATES_ALLOWED
python
[]
def f_gold ( arr , n ) : max1 = max ( arr ) min1 = min ( arr ) m = max1 - min1 + 1 if ( m > n ) : return False visited = [ 0 ] * m for i in range ( 0 , n ) : visited [ arr [ i ] - min1 ] = True for i in range ( 0 , m ) : if ( visited [ i ] == False ) : return False return True
code_translation
[ [ "[2, 4, 19, 25, 65, 72, 75, 83, 90, 92], 8", "False" ], [ "[46, 2, 28, -44, 74, -36, -8, 30, -96, 60, 52, -58, 16, -38, 78, 38, -28, 16, 26, -42, 48, 40, 6, 72], 14", "False" ], [ "[0, 1, 1, 1], 2", "True" ], [ "[50, 21, 9, 29, 86, 2, 82, 49, 34, 18, 77, 83, 44, 67, 85, 58,...
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
COUNT_PAIRS_TWO_SORTED_ARRAYS_WHOSE_SUM_EQUAL_GIVEN_VALUE_X_2
python
[]
def f_gold ( arr1 , arr2 , m , n , x ) : count , l , r = 0 , 0 , n - 1 while ( l < m and r >= 0 ) : if ( ( arr1 [ l ] + arr2 [ r ] ) == x ) : l += 1 r -= 1 count += 1 elif ( ( arr1 [ l ] + arr2 [ r ] ) < x ) : l += 1 else : r -= 1 return count
code_translation
[ [ "[5, 5, 7, 10, 14, 14, 17, 21, 32, 34, 37, 40, 40, 40, 46, 46, 50, 50, 51, 55, 57, 62, 65, 67, 67, 69, 70, 70, 72, 73, 76, 77, 77, 78, 84, 85, 85, 86, 87, 88, 88, 89, 89, 90, 93, 99], [2, 5, 8, 8, 10, 12, 13, 15, 17, 18, 20, 20, 21, 27, 28, 31, 34, 37, 40, 46, 48, 52, 53, 54, 54, 58, 59, 60, 66, 68, 68, 69, 7...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int num ) { int result = 0; for ( int i = 2; i <= sqrt ( num ); i ++ ) { if ( num % i == 0 ) { if ( i == ( num / i ) ) result += i; else result += ( i + num / i ); } } return ( result + 1 ); }
[]
null
[]
CHECK_LINE_PASSES_ORIGIN
python
[]
def f_gold ( x1 , y1 , x2 , y2 ) : return ( x1 * ( y2 - y1 ) == y1 * ( x2 - x1 ) )
code_translation
[ [ "1, 28, 2, 56", "True" ], [ "10, 0, 20, 0", "True" ], [ "0, 1, 0, 17", "True" ], [ "1, 1, 10, 10", "True" ], [ "82, 86, 19, 4", "False" ], [ "78, 86, 11, 6", "False" ], [ "13, 46, 33, 33", "False" ], [ "18, 29, 95, 12", "F...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n, int m ) { int dp [ n + 1 ] [ m + 1 ]; for ( int i = 0; i <= n; i ++ ) dp [ i ] [ 0 ] = 1; for ( int i = 0; i <= m; i ++ ) dp [ 0 ] [ i ] = 1; for ( int i = 1; i <= n; i ++ ) for ( int j = 1; j <= m; j ++ ) dp [ i ] [ j ] = dp [ i - 1 ] [ j ] + dp [ i ] [ j - 1 ]; return dp [ n ] [ m ]; }
[]
null
[]
HOW_TO_TURN_OFF_A_PARTICULAR_BIT_IN_A_NUMBER
python
[]
def f_gold ( n , k ) : if ( k <= 0 ) : return n return ( n & ~ ( 1 << ( k - 1 ) ) )
code_translation
[ [ "49, 15", "49" ], [ "59, 69", "59" ], [ "76, 20", "76" ], [ "27, 76", "27" ], [ "61, 60", "61" ], [ "67, 27", "67" ], [ "63, 71", "63" ], [ "85, 25", "85" ], [ "90, 64", "90" ], [ "24, 55", "24" ]...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int f [ n + 1 ]; int i; f [ 0 ] = 0; f [ 1 ] = 1; f [ 2 ] = 1; for ( i = 3; i <= n; i ++ ) f [ i ] = f [ f [ i - 1 ] ] + f [ i - f [ i - 1 ] ]; return f [ n ]; }
[]
null
[]
STRING_K_DISTINCT_CHARACTERS_NO_CHARACTERS_ADJACENT
python
[]
def f_gold ( n , k ) : res = "" for i in range ( k ) : res = res + chr ( ord ( 'a' ) + i ) count = 0 for i in range ( n - k ) : res = res + chr ( ord ( 'a' ) + count ) count += 1 if ( count == k ) : count = 0 ; return res
code_translation
[ [ "60, 71", "'abcdefghijklmnopqrstuvwxyz{|}~\\x7f\\x80\\x81\\x82\\x83\\x84\\x85\\x86\\x87\\x88\\x89\\x8a\\x8b\\x8c\\x8d\\x8e\\x8f\\x90\\x91\\x92\\x93\\x94\\x95\\x96\\x97\\x98\\x99\\x9a\\x9b\\x9c\\x9d\\x9e\\x9f\\xa0¡¢£¤¥¦§'" ], [ "56, 17", "'abcdefghijklmnopqabcdefghijklmnopqabcdefghijklmnopqabcd...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int A ) { int n = 2 * A; int dpArray [ n + 1 ] = { 0 }; dpArray [ 0 ] = 1; dpArray [ 2 ] = 1; for ( int i = 4; i <= n; i += 2 ) { for ( int j = 0; j < i - 1; j += 2 ) { dpArray [ i ] += ( dpArray [ j ] * dpArray [ i - 2 - j ] ); } } return dpArray [ n ]; }
[]
null
[]
NUMBER_WAYS_NODE_MAKE_LOOP_SIZE_K_UNDIRECTED_COMPLETE_CONNECTED_GRAPH_N_NODES
python
[]
def f_gold ( n , k ) : p = 1 if ( k % 2 ) : p = - 1 return ( pow ( n - 1 , k ) + p * ( n - 1 ) ) / n
code_translation
[ [ "27, 59", "1.1273629712520942e+82" ], [ "70, 87", "1.3638696152410012e+158" ], [ "77, 40", "2.2184669650003853e+73" ], [ "83, 26", "6.919617201200037e+47" ], [ "16, 2", "15.0" ], [ "90, 66", "5.075723187324977e+126" ], [ "39, 72", "1....
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; long long int f_gold ( int arr [ ], int n ) { int res = 0; unordered_map < int, int > m; for ( int i = 0; i < n; i ++ ) { int sum = 0; for ( int j = i; j < n; j ++ ) { sum += arr [ j ]; m [ sum ] ++; } } for ( auto x : m ) if ( x . second == 1 ) res += x . first; return res; }
[]
null
[]
BINARY_SEARCH
python
[]
def f_gold ( arr , l , r , x ) : if r >= l : mid = l + ( r - l ) // 2 if arr [ mid ] == x : return mid elif arr [ mid ] > x : return f_gold ( arr , l , mid - 1 , x ) else : return f_gold ( arr , mid + 1 , r , x ) else : return - 1
code_translation
[ [ "[3, 4, 4, 8, 9, 13, 13, 15, 18, 27, 30, 32, 42, 48, 50, 52, 56, 66, 69, 69, 77, 84, 84, 93], 19, 12, 22", "-1" ], [ "[52, -58, -22, -80, 44, -52, -34, 94, -34, -74, 42, 60, -62, 70, 98, 32, 10, 94, 26, 56, -48, -50, 42, 2, 46, 28, -68, -16, -96, -12, 66, -46, 74, -60, -52, 28, -92, -78, 32, 28, 1...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int DP [ n + 1 ]; DP [ 0 ] = 0; DP [ 1 ] = 1; for ( int i = 2; i <= n; i ++ ) { if ( i % 2 == 0 ) DP [ i ] = DP [ i / 2 ]; else DP [ i ] = DP [ ( i - 1 ) / 2 ] + DP [ ( i + 1 ) / 2 ]; } return DP [ n ]; }
[]
null
[]
DICE_THROW_PROBLEM
python
[]
def f_gold ( m , n , x ) : table = [ [ 0 ] * ( x + 1 ) for i in range ( n + 1 ) ] for j in range ( 1 , min ( m + 1 , x + 1 ) ) : table [ 1 ] [ j ] = 1 for i in range ( 2 , n + 1 ) : for j in range ( 1 , x + 1 ) : for k in range ( 1 , min ( m + 1 , j ) ) : table [ i ] [ j ] += table [ i - 1 ] [ j - k ] return table [ - 1 ] [ - 1 ]
code_translation
[ [ "94, 4, 69", "50116" ], [ "7, 12, 33", "77635844" ], [ "20, 44, 24", "0" ], [ "90, 94, 88", "0" ], [ "50, 58, 27", "0" ], [ "32, 90, 29", "0" ], [ "46, 25, 6", "0" ], [ "82, 50, 87", "2893740668169934025792700" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int res [ n + 1 ]; res [ 0 ] = 0; res [ 1 ] = 1; for ( int i = 2; i <= n; i ++ ) res [ i ] = max ( i, ( res [ i / 2 ] + res [ i / 3 ] + res [ i / 4 ] + res [ i / 5 ] ) ); return res [ n ]; }
[]
null
[]
COUNT_NUMBER_OF_WAYS_TO_FILL_A_N_X_4_GRID_USING_1_X_4_TILES
python
[]
def f_gold ( n ) : dp = [ 0 for _ in range ( n + 1 ) ] for i in range ( 1 , n + 1 ) : if i <= 3 : dp [ i ] = 1 elif i == 4 : dp [ i ] = 2 else : dp [ i ] = dp [ i - 1 ] + dp [ i - 4 ] return dp [ n ]
code_translation
[ [ "61", "188941273" ], [ "22", "657" ], [ "65", "685792227" ], [ "57", "52054840" ], [ "36", "59864" ], [ "25", "1728" ], [ "16", "95" ], [ "26", "2385" ], [ "92", "4123691589365" ], [ "5", "3" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; unsigned int f_gold ( unsigned int n ) { unsigned int p = 1; if ( n && ! ( n & ( n - 1 ) ) ) return n; while ( p < n ) p <<= 1; return p; }
[]
null
[]
K_TH_DISTINCT_OR_NON_REPEATING_ELEMENT_IN_AN_ARRAY
python
[]
def f_gold ( arr , n , k ) : dist_count = 0 for i in range ( n ) : j = 0 while j < n : if ( i != j and arr [ j ] == arr [ i ] ) : break j += 1 if ( j == n ) : dist_count += 1 if ( dist_count == k ) : return arr [ i ] return - 1
code_translation
[ [ "[2, 3, 8, 18, 20, 33, 53, 56, 60, 71, 76, 80, 81, 87, 88, 89, 92, 95], 16, 16", "89" ], [ "[-78, 6, 32, 52, -12, -32, 22, -40, -82, 24, 30, 10, -40], 8, 6", "-32" ], [ "[0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1], 7, 5", "-1" ], [ "[3, 28, 55, 21, 42, 60, 96, 83, 98, 75, 29, 73, 51,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n, int k ) { int count = 0; for ( int i = 0; i < n; i ++ ) { for ( int j = i + 1; j < n; j ++ ) if ( arr [ i ] - arr [ j ] == k || arr [ j ] - arr [ i ] == k ) count ++; } return count; }
[]
null
[]
COUNT_SUBARRAYS_WITH_SAME_EVEN_AND_ODD_ELEMENTS
python
[]
def f_gold ( arr , n ) : difference = 0 ans = 0 hash_positive = [ 0 ] * ( n + 1 ) hash_negative = [ 0 ] * ( n + 1 ) hash_positive [ 0 ] = 1 for i in range ( n ) : if ( arr [ i ] & 1 == 1 ) : difference = difference + 1 else : difference = difference - 1 if ( difference < 0 ) : ans += hash_negative [ - difference ] hash_negative [ - difference ] = hash_negative [ - difference ] + 1 else : ans += hash_positive [ difference ] hash_positive [ difference ] = hash_positive [ difference ] + 1 return ans
code_translation
[ [ "[7, 8, 12, 13, 14, 19, 20, 22, 28, 30, 31, 31, 32, 34, 34, 39, 39, 43, 45, 46, 47, 62, 63, 63, 65, 66, 69, 69, 71, 76, 79, 82, 83, 88, 89, 92, 93, 95, 97, 97], 26", "50" ], [ "[20, -98, -44, -82, 28, 20, -76, -16, 42, 0, -88, 74, 56, 6, -68, -30, 28, 88, 58, -78, 46, 2], 15", "0" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int table [ n + 1 ]; for ( int i = 0; i <= n; i ++ ) table [ i ] = n - i; for ( int i = n; i >= 1; i -- ) { if ( ! ( i % 2 ) ) table [ i / 2 ] = min ( table [ i ] + 1, table [ i / 2 ] ); if ( ! ( i % 3 ) ) table [ i / 3 ] = min ( table [ i ] + 1, table [ i / 3 ] ); } return table [ 1 ]; }
[ "import sys" ]
null
[]
FIND_THE_MINIMUM_DISTANCE_BETWEEN_TWO_NUMBERS_1
python
[]
import sys def f_gold ( arr , n , x , y ) : min_dist = sys.maxsize for i in range ( n ) : if arr [ i ] == x or arr [ i ] == y : prev = i break while i < n : if arr [ i ] == x or arr [ i ] == y : if arr [ prev ] != arr [ i ] and ( i - prev ) < min_dist : min_dist = i - prev prev = i else : prev = i i += 1 return min_dist
code_translation
[ [ "[4, 7, 7, 8, 11, 14, 16, 25, 34, 35, 36, 36, 38, 40, 41, 43, 45, 47, 57, 60, 64, 72, 73, 74, 75, 82, 83, 83, 84, 84, 84, 92], 22, 7, 40", "11" ], [ "[96, 70, 88, -64, -42, 58, 92, 66, -14, 90, -66, 12, 88, -12, 48, -4, 90, 24, 98, 14, 32, 38, 98, 78, 2, 26, 12, -36, 90, 80, 40, 58, 88, 64, 16], 2...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; unsigned int f_gold ( unsigned int n ) { int res = 1, i; for ( i = 2; i <= n; i ++ ) res *= i; return res; }
[]
null
[]
SMALLEST_OF_THREE_INTEGERS_WITHOUT_COMPARISON_OPERATORS_1
python
[]
def f_gold ( x , y , z ) : if ( not ( y / x ) ) : return y if ( not ( y / z ) ) else z return x if ( not ( x / z ) ) else z
code_translation
[ [ "48, 63, 56", "56" ], [ "11, 55, 84", "84" ], [ "50, 89, 96", "96" ], [ "21, 71, 74", "74" ], [ "94, 39, 42", "42" ], [ "22, 44, 86", "86" ], [ "3, 41, 68", "68" ], [ "67, 62, 94", "94" ], [ "59, 2, 83", "83" ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { unordered_map < int, int > freq; for ( int i = 0; i < n; i ++ ) freq [ arr [ i ] ] ++; int ans = 0; for ( int i = 0; i < n; i ++ ) { for ( int j = 0; j < n; j ++ ) { if ( freq [ arr [ i ] ] > freq [ arr [ j ] ] && arr [ i ] > arr [ j ] ) ans = max ( ans, freq [ arr [ i ] ] - freq [ arr [ j ] ] ); else if ( freq [ arr [ i ] ] < freq [ arr [ j ] ] && arr [ i ] < arr [ j ] ) ans = max ( ans, freq [ arr [ j ] ] - freq [ arr [ i ] ] ); } } return ans; }
[]
null
[]
CHECK_GIVEN_MATRIX_SPARSE_NOT
python
[]
def f_gold ( array , m , n ) : counter = 0 for i in range ( 0 , m ) : for j in range ( 0 , n ) : if ( array [ i ] [ j ] == 0 ) : counter = counter + 1 return ( counter > ( ( m * n ) // 2 ) )
code_translation
[ [ "[[79, 48, 59, 39, 33, 8, 8, 47, 45, 54, 35, 40, 70, 98, 70, 81, 48, 52, 74, 83, 67, 46, 14, 60, 47, 12], [95, 48, 3, 19, 14, 81, 2, 3, 72, 55, 5, 88, 98, 97, 75, 61, 42, 46, 49, 14, 20, 16, 9, 66, 21, 66], [98, 83, 30, 38, 55, 85, 23, 83, 32, 84, 5, 6, 76, 59, 12, 22, 33, 28, 36, 9, 2, 9, 18, 24, 65, 73], [5...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int a, int b, int c, int d ) { int sum = a * a + b * b + c * c; if ( d * d == sum ) return true; else return false; }
[]
null
[]
COUNT_CHARACTERS_POSITION_ENGLISH_ALPHABETS
python
[]
def f_gold ( str ) : result = 0 for i in range ( len ( str ) ) : if ( ( i == ord ( str [ i ] ) - ord ( 'a' ) ) or ( i == ord ( str [ i ] ) - ord ( 'A' ) ) ) : result += 1 return result
code_translation
[ [ "'lLkhFeZGcb'", "0" ], [ "'ABcED'", "3" ], [ "'geeksforgeeks'", "1" ], [ "'Alphabetical'", "3" ], [ "'abababab'", "2" ], [ "'bcdefgxyz'", "0" ], [ "'cBzaqx L'", "1" ], [ "' bcd'", "3" ], [ "'11'", "0" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int x ) { int temp = x; int n = 0; while ( x != 0 ) { x /= 10; n ++; } x = temp; int sum = 0; while ( x != 0 ) { sum += pow ( x % 10, n ); x /= 10; } return ( sum == temp ); }
[]
null
[]
N_TH_TERM_SERIES_2_12_36_80_150
python
[]
def f_gold ( n ) : return ( n * n ) + ( n * n * n )
code_translation
[ [ "90", "737100" ], [ "95", "866400" ], [ "22", "11132" ], [ "29", "25230" ], [ "62", "242172" ], [ "40", "65600" ], [ "52", "143312" ], [ "21", "9702" ], [ "33", "37026" ], [ "11", "1452" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int a [ ], int n, int k ) { int max_so_far = INT_MIN, max_ending_here = 0; for ( int i = 0; i < n * k; i ++ ) { max_ending_here = max_ending_here + a [ i % n ]; if ( max_so_far < max_ending_here ) max_so_far = max_ending_here; if ( max_ending_here < 0 ) max_ending_here = 0; } return max_so_far; }
[]
null
[]
COUNT_STRINGS_ADJACENT_CHARACTERS_DIFFERENCE_ONE
python
[]
def f_gold ( n ) : dp = [ [ 0 for j in range ( 27 ) ] for i in range ( n + 1 ) ] for i in range ( 0 , 26 ) : dp [ 1 ] [ i ] = 1 for i in range ( 2 , n + 1 ) : for j in range ( 0 , 26 ) : if ( j == 0 ) : dp [ i ] [ j ] = dp [ i - 1 ] [ j + 1 ] ; else : dp [ i ] [ j ] = ( dp [ i - 1 ] [ j - 1 ] + dp [ i - 1 ] [ j + 1 ] ) sum = 0 for i in range ( 0 , 26 ) : sum = sum + dp [ n ] [ i ] return sum
code_translation
[ [ "7", "1468" ], [ "47", "1134264891541288" ], [ "72", "31916931064603434989256" ], [ "66", "519857447751054478104" ], [ "71", "16069407891645913779000" ], [ "56", "544505079089235836" ], [ "61", "16822463903082664816" ], [ "68"...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int arr1 [ ], int arr2 [ ], int m, int n ) { int i = 0; int j = 0; for ( i = 0; i < n; i ++ ) { for ( j = 0; j < m; j ++ ) { if ( arr2 [ i ] == arr1 [ j ] ) break; } if ( j == m ) return 0; } return 1; }
[]
null
[]
DIVISIBILITY_BY_7
python
[]
def f_gold ( num ) : if num < 0 : return f_gold ( - num ) if ( num == 0 or num == 7 ) : return True if ( num < 10 ) : return False return f_gold ( num / 10 - 2 * ( num - num / 10 * 10 ) )
code_translation
[ [ "0", "True" ], [ "-21", "False" ], [ "7", "True" ], [ "63", "False" ], [ "84", "False" ], [ "73", "False" ], [ "81", "False" ], [ "-10", "False" ], [ "47", "False" ], [ "23", "False" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n, int sum ) { unordered_map < int, int > prevSum; int res = 0; int currsum = 0; for ( int i = 0; i < n; i ++ ) { currsum += arr [ i ]; if ( currsum == sum ) res ++; if ( prevSum . find ( currsum - sum ) != prevSum . end ( ) ) res += ( prevSum [ currsum - sum ] ); prevSum [ currsum ] ++; } return res; }
[]
null
[]
MODULUS_TWO_FLOAT_DOUBLE_NUMBERS
python
[]
def f_gold ( a , b ) : if ( a < 0 ) : a = - a if ( b < 0 ) : b = - b mod = a while ( mod >= b ) : mod = mod - b if ( a < 0 ) : return - mod return mod
code_translation
[ [ "3243.229719038493, 5659.926861939672", "3243.229719038493" ], [ "-4362.665881044217, -9196.507113304497", "4362.665881044217" ], [ "7255.066257575837, 2623.200060506935", "2008.6661365619666" ], [ "-6929.554320261099, -3009.0234530313287", "911.5074141984414" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int high = 0; for ( int i = 0; i < n; i ++ ) high = max ( high, arr [ i ] ); int divisors [ high + 1 ] = { 0 }; for ( int i = 0; i < n; i ++ ) { for ( int j = 1; j <= sqrt ( arr [ i ] ); j ++ ) { if ( arr [ i ] % j == 0 ) { divisors [ j ] ++; if ( j != arr [ i ] / j ) divisors [ arr [ i ] / j ] ++; } } } for ( int i = high; i >= 1; i -- ) if ( divisors [ i ] > 1 ) return i; }
[]
null
[]
FIND_THREE_ELEMENT_FROM_DIFFERENT_THREE_ARRAYS_SUCH_THAT_THAT_A_B_C_K
python
[]
def f_gold ( a1 , a2 , a3 , n1 , n2 , n3 , sum ) : for i in range ( 0 , n1 ) : for j in range ( 0 , n2 ) : for k in range ( 0 , n3 ) : if ( a1 [ i ] + a2 [ j ] + a3 [ k ] == sum ) : return True return False
code_translation
[ [ "[4, 9, 10, 19, 24, 25, 26, 30, 36, 43, 44, 49, 52, 62, 66, 69, 72, 77, 80, 80, 82, 84, 90, 93, 94, 98], [4, 8, 17, 20, 22, 25, 27, 30, 31, 33, 35, 35, 38, 41, 49, 51, 60, 61, 66, 67, 69, 82, 84, 85, 86, 88], [12, 14, 17, 20, 22, 27, 29, 31, 32, 38, 41, 43, 56, 59, 59, 64, 66, 67, 68, 69, 71, 76, 83, 83, 85, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { sort ( arr, arr + n, greater < int > ( ) ); int dimension [ 2 ] = { 0, 0 }; for ( int i = 0, j = 0; i < n - 1 && j < 2; i ++ ) if ( arr [ i ] == arr [ i + 1 ] ) dimension [ j ++ ] = arr [ i ++ ]; return ( dimension [ 0 ] * dimension [ 1 ] ); }
[ "import math" ]
null
[]
FIND_UNIT_DIGIT_X_RAISED_POWER_Y_1
python
[]
import math def f_gold ( x , y ) : x = x % 10 if y != 0 : y = y % 4 + 4 return ( ( ( int ) ( math.pow ( x , y ) ) ) % 10 )
code_translation
[ [ "37, 17", "7" ], [ "70, 52", "0" ], [ "26, 23", "6" ], [ "9, 96", "1" ], [ "82, 71", "8" ], [ "95, 36", "5" ], [ "43, 40", "1" ], [ "7, 27", "3" ], [ "19, 56", "1" ], [ "49, 28", "1" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int neg = 0, pos = 0; int sum = 0; for ( int i = 0; i < n; i ++ ) { sum += arr [ i ]; if ( arr [ i ] < 0 ) neg ++; else pos ++; } return ( sum / abs ( neg - pos ) ); }
[]
null
[]
MAXIMUM_NUMBER_2X2_SQUARES_CAN_FIT_INSIDE_RIGHT_ISOSCELES_TRIANGLE
python
[]
def f_gold ( base ) : base = ( base - 2 ) base = base / 2 return base * ( base + 1 ) / 2
code_translation
[ [ "95", "1104.375" ], [ "49", "287.875" ], [ "10", "10.0" ], [ "73", "647.875" ], [ "74", "666.0" ], [ "40", "190.0" ], [ "10", "10.0" ], [ "94", "1081.0" ], [ "64", "496.0" ], [ "16", "28.0" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int count = 0; for ( int curr = 1; ; curr ++ ) { int sum = 0; for ( int x = curr; x > 0; x = x / 10 ) sum = sum + x % 10; if ( sum == 10 ) count ++; if ( count == n ) return curr; } return - 1; }
[]
null
[]
PRIMALITY_TEST_SET_5USING_LUCAS_LEHMER_SERIES
python
[]
def f_gold ( p ) : checkNumber = 2 ** p - 1 nextval = 4 % checkNumber for i in range ( 1 , p - 1 ) : nextval = ( nextval * nextval - 2 ) % checkNumber if ( nextval == 0 ) : return True else : return False
code_translation
[ [ "11", "False" ], [ "27", "False" ], [ "31", "True" ], [ "47", "False" ], [ "3", "True" ], [ "14", "False" ], [ "41", "False" ], [ "72", "False" ], [ "39", "False" ], [ "22", "False" ] ]
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
SEQUENCES_GIVEN_LENGTH_EVERY_ELEMENT_EQUAL_TWICE_PREVIOUS_1
python
[]
def f_gold ( m , n ) : T = [ [ 0 for i in range ( n + 1 ) ] for i in range ( m + 1 ) ] for i in range ( m + 1 ) : for j in range ( n + 1 ) : if i == 0 or j == 0 : T [ i ] [ j ] = 0 elif i < j : T [ i ] [ j ] = 0 elif j == 1 : T [ i ] [ j ] = i else : T [ i ] [ j ] = T [ i - 1 ] [ j ] + T [ i // 2 ] [ j - 1 ] return T [ m ] [ n ]
code_translation
[ [ "10, 4", "4" ], [ "5, 2", "6" ], [ "2, 8", "0" ], [ "83, 7", "330" ], [ "91, 0", "0" ], [ "18, 53", "0" ], [ "83, 41", "0" ], [ "98, 53", "0" ], [ "43, 37", "0" ], [ "31, 20", "0" ] ]
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
MEDIAN_OF_TWO_SORTED_ARRAYS
python
[]
def f_gold ( ar1 , ar2 , n ) : i = 0 j = 0 m1 = - 1 m2 = - 1 count = 0 while count < n + 1 : count += 1 if i == n : m1 = m2 m2 = ar2 [ 0 ] break elif j == n : m1 = m2 m2 = ar1 [ 0 ] break if ar1 [ i ] < ar2 [ j ] : m1 = m2 m2 = ar1 [ i ] i += 1 else : m1 = m2 m2 = ar2 [ j ] j += 1 return ( m1 + m2 ) / 2
code_translation
[ [ "[2, 6, 18, 21, 23, 27, 44, 44, 69, 72, 78, 88, 90, 98], [6, 12, 16, 18, 26, 34, 48, 48, 49, 56, 61, 79, 81, 89], 12", "39.0" ], [ "[90, 54, 24, -10, -84, -74, 58, 96, -28, -92, -18, 90, 70, -60, 72, 78, 10, 42, -2, -18, -38, -16, 18, -86, 40, -46, -38, 66, 20, -16, 48], [-72, -62, 14, -58, 70, 54...
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
STEINS_ALGORITHM_FOR_FINDING_GCD_1
python
[]
def f_gold ( a , b ) : if ( a == b ) : return a if ( a == 0 ) : return b if ( b == 0 ) : return a if ( ( ~ a & 1 ) == 1 ) : if ( ( b & 1 ) == 1 ) : return f_gold ( a >> 1 , b ) else : return ( f_gold ( a >> 1 , b >> 1 ) << 1 ) if ( ( ~ b & 1 ) == 1 ) : return f_gold ( a , b >> 1 ) if ( a > b ) : return f_gold ( ( a - b ) >> 1 , b ) return f_gold ( ( b - a ) >> 1 , a )
code_translation
[ [ "52, 29", "1" ], [ "36, 94", "2" ], [ "12, 6", "6" ], [ "69, 7", "1" ], [ "45, 11", "1" ], [ "7, 51", "1" ], [ "45, 55", "5" ], [ "62, 86", "2" ], [ "96, 63", "3" ], [ "89, 12", "1" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int answer [ n + 1 ] = { 0 }; answer [ 0 ] = 1; for ( int i = 1; i <= n; i ++ ) answer [ i ] = answer [ i - 1 ] * 3 + 2; return answer [ n ]; }
[]
null
[]
GIVEN_A_SORTED_AND_ROTATED_ARRAY_FIND_IF_THERE_IS_A_PAIR_WITH_A_GIVEN_SUM
python
[]
def f_gold ( arr , n , x ) : for i in range ( 0 , n - 1 ) : if ( arr [ i ] > arr [ i + 1 ] ) : break ; l = ( i + 1 ) % n r = i while ( l != r ) : if ( arr [ l ] + arr [ r ] == x ) : return True ; if ( arr [ l ] + arr [ r ] < x ) : l = ( l + 1 ) % n ; else : r = ( n + r - 1 ) % n ; return False ;
code_translation
[ [ "[3, 8, 10, 15, 18, 19, 20, 20, 21, 22, 26, 30, 32, 34, 43, 45, 50, 50, 51, 52, 53, 56, 57, 58, 62, 63, 65, 82, 86, 91, 91, 92, 92, 93, 97], 17, 30", "False" ], [ "[30, -34, 86, -30, -26, 2, 90, 8, 26, -8, -8, 0, -86, 68, 22, 72, -76, 48, -24, 90, -22, -58, -54, 90, -12, -12, 88, 72, -58, 68, 84, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int price [ ], int n, int k ) { int profit [ k + 1 ] [ n + 1 ]; for ( int i = 0; i <= k; i ++ ) profit [ i ] [ 0 ] = 0; for ( int j = 0; j <= n; j ++ ) profit [ 0 ] [ j ] = 0; for ( int i = 1; i <= k; i ++ ) { int prevDiff = INT_MIN; for ( int j = 1; j < n; j ++ ) { prevDiff = max ( prevDiff, profit [ i - 1 ] [ j - 1 ] - price [ j - 1 ] ); profit [ i ] [ j ] = max ( profit [ i ] [ j - 1 ], price [ j ] + prevDiff ); } } return profit [ k ] [ n - 1 ]; }
[ "import math" ]
null
[]
CIRCLE_LATTICE_POINTS
python
[]
import math def f_gold ( r ) : if ( r <= 0 ) : return 0 result = 4 for x in range ( 1 , r ) : ySquare = r * r - x * x y = int ( math.sqrt ( ySquare ) ) if ( y * y == ySquare ) : result += 4 return result
code_translation
[ [ "34", "12" ], [ "56", "4" ], [ "90", "12" ], [ "47", "4" ], [ "36", "4" ], [ "63", "4" ], [ "21", "4" ], [ "76", "4" ], [ "18", "4" ], [ "75", "20" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { unordered_map < int, int > vis; for ( int i = 0; i < n; ++ i ) vis [ arr [ i ] ] = 1; int k = vis . size ( ); vis . clear ( ); int ans = 0, right = 0, window = 0; for ( int left = 0; left < n; ++ left ) { while ( right < n && window < k ) { ++ vis [ arr [ right ] ]; if ( vis [ arr [ right ] ] == 1 ) ++ window; ++ right; } if ( window == k ) ans += ( n - right + 1 ); -- vis [ arr [ left ] ]; if ( vis [ arr [ left ] ] == 0 ) -- window; } return ans; }
[]
null
[]
LARGEST_SUBARRAY_WITH_EQUAL_NUMBER_OF_0S_AND_1S_1
python
[]
def f_gold ( arr , n ) : hash_map = { } ; curr_sum = 0 ; max_len = 0 ; ending_index = - 1 ; for i in range ( 0 , n ) : if ( arr [ i ] == 0 ) : arr [ i ] = - 1 ; else : arr [ i ] = 1 ; for i in range ( 0 , n ) : curr_sum = curr_sum + arr [ i ] ; if ( curr_sum == 0 ) : max_len = i + 1 ; ending_index = i ; if ( curr_sum + n ) in hash_map : max_len = max ( max_len , i - hash_map [ curr_sum + n ] ) else : hash_map [ curr_sum ] = i ; for i in range ( 0 , n ) : if ( arr [ i ] == - 1 ) : arr [ i ] = 0 ; else : arr [ i ] = 1 ; print ( ending_index - max_len + 1 , end = " " ) ; print ( "to" , end = " " ) ; print ( ending_index ) ; return max_len ;
code_translation
[ [ "[1, 1, 1, 1, 1, 1, 1, 1, 1, 42, 60, 66, 69, 70, 70, 73, 74, 80, 99], 9", "0" ], [ "[1, -66], 1", "0" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 19", "0" ], [ "[1, 1, 1, 1, 1, 1, 1, 1, 26, 44, 32], 8", "0" ], [ "[1, 1, 1, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { return accumulate ( arr, arr + n, 0 ) - ( ( n - 1 ) * n / 2 ); }
[]
null
[]
MAXIMUM_AVERAGE_SUM_PARTITION_ARRAY
python
[]
def f_gold ( A , K ) : n = len ( A ) ; pre_sum = [ 0 ] * ( n + 1 ) ; pre_sum [ 0 ] = 0 ; for i in range ( n ) : pre_sum [ i + 1 ] = pre_sum [ i ] + A [ i ] ; dp = [ 0 ] * n ; sum = 0 ; for i in range ( n ) : dp [ i ] = ( pre_sum [ n ] - pre_sum [ i ] ) / ( n - i ) ; for k in range ( K - 1 ) : for i in range ( n ) : for j in range ( i + 1 , n ) : dp [ i ] = max ( dp [ i ] , ( pre_sum [ j ] - pre_sum [ i ] ) / ( j - i ) + dp [ j ] ) ; return int ( dp [ 0 ] ) ;
code_translation
[ [ "[4, 11, 14, 27, 32, 37, 39, 49, 52, 53, 57, 62, 67, 67, 68, 69, 76, 77, 78, 81, 85, 85, 87, 91, 91, 91, 99, 99, 99], 24", "1742" ], [ "[80, 12, 32, 44, 24, 82, -40, 42, 26, 36, 58, 52, -34, 44, 12, -18, -72, 52, 2, -8, 22, -18, 98, -60, 62, 92, -46, 20, 20, -46, 52, 94, 0, -28, -22, 80, 26, -92, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int m, int n ) { if ( m < n ) return 0; if ( n == 0 ) return 1; return f_gold ( m - 1, n ) + f_gold ( m / 2, n - 1 ); }
[]
null
[]
FRIENDS_PAIRING_PROBLEM_2
python
[]
def f_gold ( n ) : a , b , c = 1 , 2 , 0 ; if ( n <= 2 ) : return n ; for i in range ( 3 , n + 1 ) : c = b + ( i - 1 ) * a ; a = b ; b = c ; return c ;
code_translation
[ [ "24", "17492190577600" ], [ "1", "1" ], [ "91", "18723846887829931303684501424840972787050559847800270957087312926249844736" ], [ "90", "1867720278882863552220974741341446038725782674583207163689731410452545536" ], [ "89", "1872902956549674194607058520388836...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { unordered_set < int > s; int first = 0, second = 0; for ( int i = 0; i < n; i ++ ) { if ( s . find ( arr [ i ] ) == s . end ( ) ) { s . insert ( arr [ i ] ); continue; } if ( arr [ i ] > first ) { second = first; first = arr [ i ]; } else if ( arr [ i ] > second ) second = arr [ i ]; } return ( first * second ); }
[]
null
[]
MINIMUM_OPERATIONS_MAKE_GCD_ARRAY_MULTIPLE_K
python
[]
def f_gold ( a , n , k ) : result = 0 for i in range ( n ) : if ( a [ i ] != 1 and a [ i ] > k ) : result = ( result + min ( a [ i ] % k , k - a [ i ] % k ) ) else : result = result + k - a [ i ] return result
code_translation
[ [ "[3, 7, 27, 32, 36, 37, 44, 48, 50, 64, 86], 5, 10", "19" ], [ "[-22, 6, -20, 60, -74, 98, 52, -22], 5, 4", "130" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 23, 29", "661" ], [ "[7...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int N, int insert, int remove, int copy ) { if ( N == 0 ) return 0; if ( N == 1 ) return insert; int dp [ N + 1 ]; memset ( dp, 0, sizeof ( dp ) ); for ( int i = 1; i <= N; i ++ ) { if ( i % 2 == 0 ) dp [ i ] = min ( dp [ i - 1 ] + insert, dp [ i / 2 ] + copy ); else dp [ i ] = min ( dp [ i - 1 ] + insert, dp [ ( i + 1 ) / 2 ] + copy + remove ); } return dp [ N ]; }
[]
null
[]
COUNT_PALINDROME_SUB_STRINGS_STRING
python
[]
def f_gold ( str , n ) : dp = [ [ 0 for x in range ( n ) ] for y in range ( n ) ] P = [ [ False for x in range ( n ) ] for y in range ( n ) ] for i in range ( n ) : P [ i ] [ i ] = True for i in range ( n - 1 ) : if ( str [ i ] == str [ i + 1 ] ) : P [ i ] [ i + 1 ] = True dp [ i ] [ i + 1 ] = 1 for gap in range ( 2 , n ) : for i in range ( n - gap ) : j = gap + i ; if ( str [ i ] == str [ j ] and P [ i + 1 ] [ j - 1 ] ) : P [ i ] [ j ] = True if ( P [ i ] [ j ] == True ) : dp [ i ] [ j ] = ( dp [ i ] [ j - 1 ] + dp [ i + 1 ] [ j ] + 1 - dp [ i + 1 ] [ j - 1 ] ) else : dp [ i ] [ j ] = ( dp [ i ] [ j - 1 ] + dp [ i + 1 ] [ j ] - dp [ i + 1 ] [ j - 1 ] ) return dp [ 0 ] [ n - 1 ]
code_translation
[ [ "['E', 'E', 'J', 'P', 'T', 'U', 'X', 'Y', 'Z', 'e', 'f', 'h', 'l', 'm', 'n', 'o', 'z'], 11", "1" ], [ "['8', '7', '3', '4', '9', '5', '3', '1', '4', '0', '6', '8', '2', '5', '8', '3', '5', '2', '8', '6', '6', '3', '5', '7', '5', '5', '3', '7'], 27", "3" ], [ "['0', '0', '0', '0', '0', ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int arr [ ], int N ) { if ( N < 3 ) return false; sort ( arr, arr + N ); for ( int i = 0; i < N - 2; i ++ ) if ( arr [ i ] + arr [ i + 1 ] > arr [ i + 2 ] ) return true; }
[]
null
[]
MIDDLE_OF_THREE_USING_MINIMUM_COMPARISONS
python
[]
def f_gold ( a , b , c ) : if ( ( a < b and b < c ) or ( c < b and b < a ) ) : return b ; if ( ( b < a and a < c ) or ( c < a and a < b ) ) : return a ; else : return c
code_translation
[ [ "56, 5, 82", "56" ], [ "56, 60, 17", "56" ], [ "36, 56, 51", "51" ], [ "71, 54, 6", "54" ], [ "3, 70, 81", "70" ], [ "84, 57, 47", "57" ], [ "30, 80, 85", "80" ], [ "82, 54, 32", "54" ], [ "90, 70, 55", "70" ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; string f_gold ( string s ) { int n = s . length ( ); s [ 0 ] = tolower ( s [ 0 ] ); for ( int i = 1; i < n; i ++ ) { if ( s [ i ] == ' ' && i < n ) { s [ i + 1 ] = tolower ( s [ i + 1 ] ); i ++; } else s [ i ] = toupper ( s [ i ] ); } return s; }
[]
null
[]
SWAP_TWO_NIBBLES_BYTE
python
[]
def f_gold ( x ) : return ( ( x & 0x0F ) << 4 | ( x & 0xF0 ) >> 4 )
code_translation
[ [ "57", "147" ], [ "99", "54" ], [ "66", "36" ], [ "97", "22" ], [ "95", "245" ], [ "42", "162" ], [ "95", "245" ], [ "89", "149" ], [ "3", "48" ], [ "84", "69" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string n ) { string num = n; int dec_value = 0; int base = 1; int len = num . length ( ); for ( int i = len - 1; i >= 0; i -- ) { if ( num [ i ] == '1' ) dec_value += base; base = base * 2; } return dec_value; }
[]
null
[]
SUM_MATRIX_ELEMENT_ELEMENT_INTEGER_DIVISION_ROW_COLUMN_1
python
[]
def f_gold ( n ) : ans = 0 ; temp = 0 ; for i in range ( 1 , n + 1 ) : if temp < n : temp = i - 1 num = 1 while temp < n : if temp + i <= n : ans += i * num else : ans += ( n - temp ) * num temp += i num += 1 return ans
code_translation
[ [ "35", "630" ], [ "93", "4371" ], [ "7", "28" ], [ "81", "3321" ], [ "80", "3240" ], [ "47", "1128" ], [ "7", "28" ], [ "41", "861" ], [ "59", "1770" ], [ "34", "595" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int a [ ], int n ) { return ( n - 1 ) * ( * min_element ( a, a + n ) ); }
[]
null
[]
SUM_FIBONACCI_NUMBERS
python
[]
def f_gold ( n ) : if ( n <= 0 ) : return 0 fibo = [ 0 ] * ( n + 1 ) fibo [ 1 ] = 1 sm = fibo [ 0 ] + fibo [ 1 ] for i in range ( 2 , n + 1 ) : fibo [ i ] = fibo [ i - 1 ] + fibo [ i - 2 ] sm = sm + fibo [ i ] return sm
code_translation
[ [ "9", "88" ], [ "50", "32951280098" ], [ "7", "33" ], [ "21", "28656" ], [ "21", "28656" ], [ "91", "12200160415121876737" ], [ "11", "232" ], [ "25", "196417" ], [ "62", "10610209857722" ], [ "4", "...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; long long f_gold ( long long a, long long b, long long mod ) { long long res = 0; a %= mod; while ( b ) { if ( b & 1 ) res = ( res + a ) % mod; a = ( 2 * a ) % mod; b >>= 1; } return res; }
[]
null
[]
LONGEST_COMMON_INCREASING_SUBSEQUENCE_LCS_LIS
python
[]
def f_gold ( arr1 , n , arr2 , m ) : table = [ 0 ] * m for j in range ( m ) : table [ j ] = 0 for i in range ( n ) : current = 0 for j in range ( m ) : if ( arr1 [ i ] == arr2 [ j ] ) : if ( current + 1 > table [ j ] ) : table [ j ] = current + 1 if ( arr1 [ i ] > arr2 [ j ] ) : if ( table [ j ] > current ) : current = table [ j ] result = 0 for i in range ( m ) : if ( table [ i ] > result ) : result = table [ i ] return result
code_translation
[ [ "[1, 7, 9, 35, 43, 51, 51, 66, 88], 5, [10, 21, 38, 50, 65, 67, 87, 93, 99], 8", "0" ], [ "[-52, 52, -92, -46, -94, 30, -36, 18, -98, 22, -36, 96, -88, -50, 50], 7, [-58, 40, 56, -62, -92, -94, 40, 18, -2, -76, -78, -14, 44, 84, 4], 10", "1" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int C, int l ) { if ( l >= C ) return C; double eq_root = ( std :: sqrt ( 1 + 8 * ( C - l ) ) - 1 ) / 2; return std :: ceil ( eq_root ) + l; }
[]
null
[]
FIND_ROTATION_COUNT_ROTATED_SORTED_ARRAY_1
python
[]
def f_gold ( arr , low , high ) : if ( high < low ) : return 0 if ( high == low ) : return low mid = low + ( high - low ) / 2 ; mid = int ( mid ) if ( mid < high and arr [ mid + 1 ] < arr [ mid ] ) : return ( mid + 1 ) if ( mid > low and arr [ mid ] < arr [ mid - 1 ] ) : return mid if ( arr [ high ] > arr [ mid ] ) : return f_gold ( arr , low , mid - 1 ) ; return f_gold ( arr , mid + 1 , high )
code_translation
[ [ "[4, 16, 38, 39, 48, 74, 79], 6, 6", "6" ], [ "[-46, 72, 72, -66, 96, 92, 40, 8, 94, -84, 6, -90, 38, -6, 48, -20, -86, -76, 88, -50, -44, -14, 54, -6, -2, 72, 8, -64, -46, 44, -88, 50, 86, 38, 42, -56], 32, 21", "0" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int process, int need ) { int minResources = 0; minResources = process * ( need - 1 ) + 1; return minResources; }
[]
null
[]
LENGTH_OF_THE_LONGEST_ARITHMATIC_PROGRESSION_IN_A_SORTED_ARRAY
python
[]
def f_gold ( set , n ) : if ( n <= 2 ) : return n L = [ [ 0 for x in range ( n ) ] for y in range ( n ) ] llap = 2 for i in range ( n ) : L [ i ] [ n - 1 ] = 2 for j in range ( n - 2 , 0 , - 1 ) : i = j - 1 k = j + 1 while ( i >= 0 and k <= n - 1 ) : if ( set [ i ] + set [ k ] < 2 * set [ j ] ) : k += 1 elif ( set [ i ] + set [ k ] > 2 * set [ j ] ) : L [ i ] [ j ] = 2 i -= 1 else : L [ i ] [ j ] = L [ j ] [ k ] + 1 llap = max ( llap , L [ i ] [ j ] ) i -= 1 k += 1 while ( i >= 0 ) : L [ i ] [ j ] = 2 i -= 1 return llap
code_translation
[ [ "[3, 4, 4, 7, 8, 19, 21, 22, 25, 27, 28, 29, 38, 40, 41, 42, 43, 46, 50, 50, 53, 53, 54, 55, 60, 64, 64, 69, 70, 75, 77, 81, 81, 82, 86, 87, 87, 88, 91, 94, 97], 27", "4" ], [ "[40, -6, 50, -18, 42, 78, 38, -90, -44, -42, -86, 78, -68, 2, -32, -20, -44, 54, 80, 54, 70, 26, 82, -14, -74, -20, 74, 8...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { unordered_map < int, int > um; int sum = 0, maxLen = 0; for ( int i = 0; i < n; i ++ ) { sum += arr [ i ] == 0 ? - 1 : 1; if ( sum == 1 ) maxLen = i + 1; else if ( um . find ( sum ) == um . end ( ) ) um [ sum ] = i; if ( um . find ( sum - 1 ) != um . end ( ) ) { if ( maxLen < ( i - um [ sum - 1 ] ) ) maxLen = i - um [ sum - 1 ]; } } return maxLen; }
[]
null
[]
FIND_UNIT_DIGIT_X_RAISED_POWER_Y
python
[]
def f_gold ( x , y ) : res = 1 for i in range ( y ) : res = ( res * x ) % 10 return res
code_translation
[ [ "33, 55", "7" ], [ "95, 7", "5" ], [ "21, 63", "1" ], [ "3, 62", "9" ], [ "40, 53", "0" ], [ "64, 24", "6" ], [ "17, 23", "3" ], [ "58, 74", "4" ], [ "44, 13", "4" ], [ "27, 54", "9" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; unsigned int f_gold ( unsigned int n ) { unsigned count = 0; if ( n && ! ( n & ( n - 1 ) ) ) return n; while ( n != 0 ) { n >>= 1; count += 1; } return 1 << count; }
[]
null
[]
NUMBER_RECTANGLES_NM_GRID
python
[]
def f_gold ( n , m ) : return ( m * n * ( n + 1 ) * ( m + 1 ) ) // 4
code_translation
[ [ "86, 70", "9296385" ], [ "33, 65", "1203345" ], [ "3, 5", "90" ], [ "91, 12", "326508" ], [ "33, 27", "212058" ], [ "13, 75", "259350" ], [ "75, 36", "1898100" ], [ "58, 64", "3558880" ], [ "50, 51", "1690650" ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string str ) { int res = str [ 0 ] - '0'; for ( int i = 1; i < str . length ( ); i ++ ) { if ( str [ i ] == '0' || str [ i ] == '1' || res < 2 ) res += ( str [ i ] - '0' ); else res *= ( str [ i ] - '0' ); } return res; }
[]
null
[]
COIN_GAME_WINNER_EVERY_PLAYER_THREE_CHOICES
python
[]
def f_gold ( x , y , n ) : dp = [ 0 for i in range ( n + 1 ) ] dp [ 0 ] = False dp [ 1 ] = True for i in range ( 2 , n + 1 ) : if ( i - 1 >= 0 and not dp [ i - 1 ] ) : dp [ i ] = True elif ( i - x >= 0 and not dp [ i - x ] ) : dp [ i ] = True elif ( i - y >= 0 and not dp [ i - y ] ) : dp [ i ] = True else : dp [ i ] = False return dp [ n ]
code_translation
[ [ "6, 27, 51", "False" ], [ "32, 88, 69", "True" ], [ "99, 18, 48", "False" ], [ "22, 1, 74", "True" ], [ "26, 78, 95", "False" ], [ "67, 51, 27", "True" ], [ "69, 57, 91", "True" ], [ "39, 8, 9", "False" ], [ "7, 82...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( string & isbn ) { int n = isbn . length ( ); if ( n != 10 ) return false; int sum = 0; for ( int i = 0; i < 9; i ++ ) { int digit = isbn [ i ] - '0'; if ( 0 > digit || 9 < digit ) return false; sum += ( digit * ( 10 - i ) ); } char last = isbn [ 9 ]; if ( last != 'X' && ( last < '0' || last > '9' ) ) return false; sum += ( ( last == 'X' ) ? 10 : ( last - '0' ) ); return ( sum % 11 == 0 ); }
[ "import collections" ]
null
[]
NUMBER_VISIBLE_BOXES_PUTTING_ONE_INSIDE_ANOTHER
python
[]
import collections def f_gold ( arr , n ) : q = collections.deque ( [ ] ) arr.sort ( ) q.append ( arr [ 0 ] ) for i in range ( 1 , n ) : now = q [ 0 ] if ( arr [ i ] >= 2 * now ) : q.popleft ( ) q.append ( arr [ i ] ) return len ( q )
code_translation
[ [ "[2, 3, 17, 17, 18, 28, 28, 29, 34, 43, 44, 52, 54, 80, 84, 84, 91, 92, 97], 12", "7" ], [ "[-94, -90, -90, -78, -34, -26, -10, 4, 24, 28, 64, 70, 72, 74, 80, 82], 10", "2" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int result = 0; set < int > Hash; for ( int i = 0; i < n; i ++ ) Hash . insert ( arr [ i ] ); for ( int i = 0; i < n; i ++ ) { for ( int j = i + 1; j < n; j ++ ) { int product = arr [ i ] * arr [ j ]; if ( Hash . find ( product ) != Hash . end ( ) ) result ++; } } return result; }
[]
null
[]
SUM_K_TH_GROUP_ODD_POSITIVE_NUMBERS_1
python
[]
def f_gold ( k ) : return k * k * k
code_translation
[ [ "57", "185193" ], [ "96", "884736" ], [ "14", "2744" ], [ "64", "262144" ], [ "24", "13824" ], [ "74", "405224" ], [ "85", "614125" ], [ "27", "19683" ], [ "78", "474552" ], [ "1", "1" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int invcount = 0; for ( int i = 1; i < n - 1; i ++ ) { int small = 0; for ( int j = i + 1; j < n; j ++ ) if ( arr [ i ] > arr [ j ] ) small ++; int great = 0; for ( int j = i - 1; j >= 0; j -- ) if ( arr [ i ] < arr [ j ] ) great ++; invcount += great * small; } return invcount; }
[]
null
[]
TILING_WITH_DOMINOES
python
[]
def f_gold ( n ) : A = [ 0 ] * ( n + 1 ) B = [ 0 ] * ( n + 1 ) A [ 0 ] = 1 A [ 1 ] = 0 B [ 0 ] = 0 B [ 1 ] = 1 for i in range ( 2 , n + 1 ) : A [ i ] = A [ i - 2 ] + 2 * B [ i - 1 ] B [ i ] = A [ i - 1 ] + B [ i - 2 ] return A [ n ]
code_translation
[ [ "29", "0" ], [ "13", "0" ], [ "25", "0" ], [ "65", "0" ], [ "27", "0" ], [ "42", "808717138331" ], [ "19", "0" ], [ "50", "156886956080403" ], [ "59", "0" ], [ "13", "0" ] ]
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
BASIC_AND_EXTENDED_EUCLIDEAN_ALGORITHMS
python
[]
def f_gold ( a , b ) : if a == 0 : return b return f_gold ( b % a , a )
code_translation
[ [ "46, 89", "1" ], [ "26, 82", "2" ], [ "40, 12", "4" ], [ "58, 4", "2" ], [ "25, 44", "1" ], [ "2, 87", "1" ], [ "8, 65", "1" ], [ "21, 87", "3" ], [ "82, 10", "2" ], [ "17, 61", "1" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { int lioes [ n ]; int maxLen = 0; for ( int i = 0; i < n; i ++ ) lioes [ i ] = 1; for ( int i = 1; i < n; i ++ ) for ( int j = 0; j < i; j ++ ) if ( arr [ i ] > arr [ j ] && ( arr [ i ] + arr [ j ] ) % 2 != 0 && lioes [ i ] < lioes [ j ] + 1 ) lioes [ i ] = lioes [ j ] + 1; for ( int i = 0; i < n; i ++ ) if ( maxLen < lioes [ i ] ) maxLen = lioes [ i ]; return maxLen; }
[]
null
[]
FIND_MAXIMUM_AVERAGE_SUBARRAY_OF_K_LENGTH_1
python
[]
def f_gold ( arr , n , k ) : if ( k > n ) : return - 1 sum = arr [ 0 ] for i in range ( 1 , k ) : sum += arr [ i ] max_sum = sum max_end = k - 1 for i in range ( k , n ) : sum = sum + arr [ i ] - arr [ i - k ] if ( sum > max_sum ) : max_sum = sum max_end = i return max_end - k + 1
code_translation
[ [ "[2, 5, 11, 37, 41, 49, 49, 63, 98], 8, 7", "1" ], [ "[84, -72, 12, 0, 86, -32, -18, 48, 60, 42, 8, -6, -10, -6, -52, -84, -98, 76, -10, -14, -94, -48, 94, -10, -20, 40, -52, 0, 94, -68, 44, -34, -26, -6, -94, 34, -80, -62, -40, 56, 52, -20, 74, -46, -88, -26, 22], 34, 43", "-1" ], [ "...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int weight [ ], int n, int c ) { int res = 0, bin_rem = c; for ( int i = 0; i < n; i ++ ) { if ( weight [ i ] > bin_rem ) { res ++; bin_rem = c - weight [ i ]; } else bin_rem -= weight [ i ]; } return res; }
[]
null
[]
LENGTH_LONGEST_STRICT_BITONIC_SUBSEQUENCE
python
[]
def f_gold ( arr , n ) : inc , dcr = dict ( ) , dict ( ) len_inc , len_dcr = [ 0 ] * n , [ 0 ] * n longLen = 0 for i in range ( n ) : len = 0 if inc.get ( arr [ i ] - 1 ) in inc.values ( ) : len = inc.get ( arr [ i ] - 1 ) inc [ arr [ i ] ] = len_inc [ i ] = len + 1 for i in range ( n - 1 , - 1 , - 1 ) : len = 0 if dcr.get ( arr [ i ] - 1 ) in dcr.values ( ) : len = dcr.get ( arr [ i ] - 1 ) dcr [ arr [ i ] ] = len_dcr [ i ] = len + 1 for i in range ( n ) : if longLen < ( len_inc [ i ] + len_dcr [ i ] - 1 ) : longLen = len_inc [ i ] + len_dcr [ i ] - 1 return longLen
code_translation
[ [ "[78], 0", "0" ], [ "[-6, -18, -48, 58, -54, 76, 80, -56, 86, 58, -86, -86, -88, 32, 12, 58, 58, -16, 86, -24, 84, 86, 36, 18, 30, -32, -4, -36, -72, -4, 42, 94], 18", "1" ], [ "[0, 1], 1", "1" ], [ "[92, 26, 72, 8, 66, 28, 34, 61, 28], 5", "1" ], [ "[-86, -82, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int num = n; int dec_value = 0; int base = 1; int temp = num; while ( temp ) { int last_digit = temp % 10; temp = temp / 10; dec_value += last_digit * base; base = base * 2; } return dec_value; }
[]
null
[]
FIND_A_TRIPLET_THAT_SUM_TO_A_GIVEN_VALUE
python
[]
def f_gold ( A , arr_size , sum ) : for i in range ( 0 , arr_size - 2 ) : for j in range ( i + 1 , arr_size - 1 ) : for k in range ( j + 1 , arr_size ) : if A [ i ] + A [ j ] + A [ k ] == sum : print ( "Triplet is" , A [ i ] , ", " , A [ j ] , ", " , A [ k ] ) return True return False
code_translation
[ [ "[15, 18, 38, 47, 75, 88], 5, 4", "False" ], [ "[28, -2, 62, 38, 86, -86, 56, 58, 96, 6, -28, 8, 68, -16, -80, -4, 98, -92, 4, -4, 58, -62, 46, 64], 22, 18", "True" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { int result = 0; for ( int i = 1; i <= 9; i ++ ) { stack < int > s; if ( i <= n ) { s . push ( i ); result ++; } while ( ! s . empty ( ) ) { int tp = s . top ( ); s . pop ( ); for ( int j = tp % 10; j <= 9; j ++ ) { int x = tp * 10 + j; if ( x <= n ) { s . push ( x ); result ++; } } } } return result; }
[]
null
[]
PRIME_NUMBERS
python
[]
def f_gold ( n ) : if ( n <= 1 ) : return False for i in range ( 2 , n ) : if ( n % i == 0 ) : return False return True
code_translation
[ [ "2", "True" ], [ "74", "False" ], [ "46", "False" ], [ "38", "False" ], [ "51", "False" ], [ "48", "False" ], [ "6", "False" ], [ "14", "False" ], [ "31", "True" ], [ "10", "False" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int input, int unlock_code ) { int rotation = 0; int input_digit, code_digit; while ( input || unlock_code ) { input_digit = input % 10; code_digit = unlock_code % 10; rotation += min ( abs ( input_digit - code_digit ), 10 - abs ( input_digit - code_digit ) ); input /= 10; unlock_code /= 10; } return rotation; }
[]
null
[]
SUM_SERIES_12_32_52_2N_12_1
python
[]
def f_gold ( n ) : return int ( ( n * ( 2 * n - 1 ) * ( 2 * n + 1 ) ) / 3 )
code_translation
[ [ "84", "790244" ], [ "74", "540274" ], [ "91", "1004731" ], [ "34", "52394" ], [ "36", "62196" ], [ "28", "29260" ], [ "70", "457310" ], [ "7", "455" ], [ "24", "18424" ], [ "47", "138415" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int a [ ], int n ) { int i, total = 1; for ( i = 2; i <= ( n + 1 ); i ++ ) { total += i; total -= a [ i - 2 ]; } return total; }
[]
null
[]
FIND_MAXIMUM_PRODUCT_OF_A_TRIPLET_IN_ARRAY_1
python
[]
def f_gold ( arr , n ) : if n < 3 : return - 1 arr.sort ( ) return max ( arr [ 0 ] * arr [ 1 ] * arr [ n - 1 ] , arr [ n - 1 ] * arr [ n - 2 ] * arr [ n - 3 ] )
code_translation
[ [ "[5, 8, 14, 15, 18, 21, 21, 21, 27, 29, 30, 33, 34, 34, 35, 37, 40, 41, 44, 44, 46, 49, 54, 58, 60, 61, 61, 63, 66, 69, 69, 70, 81, 82, 82, 90, 90, 90, 91, 92, 92, 96, 97, 99], 39", "737100" ], [ "[-98, -98, -90, -88, -76, -66, -60, -58, -56, -52, -50, -32, -32, -22, -2, 12, 18, 28, 32, 48, 50, 56...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n, int X ) { if ( X < arr [ 0 ] ) return 0; else if ( X > arr [ n - 1 ] ) return n; int lowerPnt = 0; int i = 1; while ( i < n && arr [ i ] < X ) { lowerPnt = i; i = i * 2; } while ( lowerPnt < n && arr [ lowerPnt ] < X ) lowerPnt ++; return lowerPnt; }
[ "import math" ]
null
[]
HEIGHT_COMPLETE_BINARY_TREE_HEAP_N_NODES
python
[]
import math def f_gold(N): return math.ceil(math.log2(N + 1)) - 1
code_translation
[ [ "65", "6" ], [ "94", "6" ], [ "52", "5" ], [ "31", "4" ], [ "9", "3" ], [ "1", "0" ], [ "41", "5" ], [ "98", "6" ], [ "45", "5" ], [ "24", "4" ] ]
transcoder-geeksforgeeks
cpp
f_gold
null
[]
null
[]
HOW_CAN_WE_SUM_THE_DIGITS_OF_A_GIVEN_NUMBER_IN_SINGLE_STATEMENT_2
python
[]
def f_gold ( no ) : return 0 if no == 0 else int ( no % 10 ) + f_gold ( int ( no / 10 ) )
code_translation
[ [ "73", "10" ], [ "91", "10" ], [ "27", "9" ], [ "79", "16" ], [ "31", "4" ], [ "84", "12" ], [ "68", "14" ], [ "9", "9" ], [ "85", "13" ], [ "35", "8" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n ) { unordered_map < int, int > um; int curr_sum = 0; for ( int i = 0; i < n; i ++ ) { curr_sum += ( arr [ i ] == 0 ) ? - 1 : arr [ i ]; um [ curr_sum ] ++; } int count = 0; for ( auto itr = um . begin ( ); itr != um . end ( ); itr ++ ) { if ( itr -> second > 1 ) count += ( ( itr -> second * ( itr -> second - 1 ) ) / 2 ); } if ( um . find ( 0 ) != um . end ( ) ) count += um [ 0 ]; return count; }
[]
null
[]
POSSIBLE_TO_MAKE_A_DIVISIBLE_BY_3_NUMBER_USING_ALL_DIGITS_IN_AN_ARRAY
python
[]
def f_gold ( arr , n ) : remainder = 0 for i in range ( 0 , n ) : remainder = ( remainder + arr [ i ] ) % 3 return ( remainder == 0 )
code_translation
[ [ "[2, 4, 9, 11, 12, 15, 16, 19, 21, 21, 23, 23, 24, 30, 31, 31, 32, 34, 37, 41, 41, 43, 45, 46, 47, 54, 58, 60, 62, 66, 66, 74, 74, 75, 75, 77, 77, 85, 89, 90, 92, 92, 93, 95, 98], 30", "False" ], [ "[0, 66, 92, 24, -8, 88, -92, 86, 80, 82, 42, -20, -56, -2, -84, 32], 14", "False" ], [ ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n ) { if ( n <= 1 ) return n; int a = 0, b = 1, c = 1; int res = 1; while ( c < n ) { c = a + b; res ++; a = b; b = c; } return res; }
[]
null
[]
FIND_NUMBER_TIMES_STRING_OCCURS_GIVEN_STRING_1
python
[]
def f_gold ( a , b ) : m = len ( a ) n = len ( b ) lookup = [ [ 0 ] * ( n + 1 ) for i in range ( m + 1 ) ] for i in range ( n + 1 ) : lookup [ 0 ] [ i ] = 0 for i in range ( m + 1 ) : lookup [ i ] [ 0 ] = 1 for i in range ( 1 , m + 1 ) : for j in range ( 1 , n + 1 ) : if a [ i - 1 ] == b [ j - 1 ] : lookup [ i ] [ j ] = lookup [ i - 1 ] [ j - 1 ] + lookup [ i - 1 ] [ j ] else : lookup [ i ] [ j ] = lookup [ i - 1 ] [ j ] return lookup [ m ] [ n ]
code_translation
[ [ "'fZOKCdZ Lav', 'fKA'", "0" ], [ "'2', '187012'", "0" ], [ "'1000001110', '0'", "6" ], [ "'IAOyBzgIWHo', 'oA'", "0" ], [ "'211806', '10'", "2" ], [ "'1', '001011100'", "0" ], [ "'CVaQTG', 'CT'", "1" ], [ "'6265187228', '628'",...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; void f_gold ( int a [ ], int size ) { int positive = 0, negative = 1; while ( true ) { while ( positive < size && a [ positive ] >= 0 ) positive += 2; while ( negative < size && a [ negative ] <= 0 ) negative += 2; if ( positive < size && negative < size ) swap ( a [ positive ], a [ negative ] ); else break; } }
[]
null
[]
K_TH_DISTINCT_OR_NON_REPEATING_ELEMENT_IN_AN_ARRAY_1
python
[]
def f_gold ( arr , size , KthIndex ) : dict = { } vect = [ ] for i in range ( size ) : if ( arr [ i ] in dict ) : dict [ arr [ i ] ] = dict [ arr [ i ] ] + 1 else : dict [ arr [ i ] ] = 1 for i in range ( size ) : if ( dict [ arr [ i ] ] > 1 ) : continue else : KthIndex = KthIndex - 1 if ( KthIndex == 0 ) : return arr [ i ] return - 1
code_translation
[ [ "[17, 25, 27, 27, 73, 91], 5, 3", "73" ], [ "[-86, -74, -88, 28, -32, 20, -34, 32], 5, 6", "-1" ], [ "[0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1], 33, 32", "-1" ], [ "[5, 11, 36, 27, 6, 24, 58, 44, 14, 68],...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( string s ) { int n = s . length ( ); int auxArr [ n ] = { 0 }; if ( s [ 0 ] == '1' ) auxArr [ 0 ] = 1; for ( int i = 1; i < n; i ++ ) { if ( s [ i ] == '1' ) auxArr [ i ] = auxArr [ i - 1 ] + 1; else auxArr [ i ] = auxArr [ i - 1 ]; } int count = 0; for ( int i = n - 1; i >= 0; i -- ) if ( s [ i ] == '1' ) count += auxArr [ i ]; return count; }
[]
null
[]
CHECK_REVERSING_SUB_ARRAY_MAKE_ARRAY_SORTED
python
[]
def f_gold ( arr , n ) : temp = [ 0 ] * n for i in range ( n ) : temp [ i ] = arr [ i ] temp.sort ( ) for front in range ( n ) : if temp [ front ] != arr [ front ] : break for back in range ( n - 1 , - 1 , - 1 ) : if temp [ back ] != arr [ back ] : break if front >= back : return True while front != back : front += 1 if arr [ front - 1 ] < arr [ front ] : return False return True
code_translation
[ [ "[5, 9, 9, 16, 17, 22, 32, 40, 45, 53, 57, 58, 66, 69, 76, 80, 91, 93, 94], 10", "True" ], [ "[52, -76, -18, 86, 56], 3", "False" ], [ "[0, 0, 1], 1", "True" ], [ "[66, 44, 98, 44], 2", "True" ], [ "[-96, -62, -56, -46, -44, -38, -38, -26, -22, -22, -16, -12, -6...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int limit ) { if ( limit < 2 ) return 0; long long int ef1 = 0, ef2 = 2; long long int sum = ef1 + ef2; while ( ef2 <= limit ) { long long int ef3 = 4 * ef2 + ef1; if ( ef3 > limit ) break; ef1 = ef2; ef2 = ef3; sum += ef2; } return sum; }
[]
null
[]
REMAINDER_7_LARGE_NUMBERS
python
[]
def f_gold ( num ) : series = [ 1 , 3 , 2 , - 1 , - 3 , - 2 ] ; series_index = 0 ; result = 0 ; for i in range ( ( len ( num ) - 1 ) , - 1 , - 1 ) : digit = ord ( num [ i ] ) - 48 ; result += digit * series [ series_index ] ; series_index = ( series_index + 1 ) % 6 ; result %= 7 ; if ( result < 0 ) : result = ( result + 7 ) % 7 ; return result ;
code_translation
[ [ "'K'", "6" ], [ "'850076'", "3" ], [ "'00111'", "6" ], [ "'X'", "5" ], [ "'1'", "1" ], [ "'10010001100'", "1" ], [ "' pgPeLz'", "0" ], [ "'53212456821275'", "3" ], [ "'101'", "3" ], [ "'V'", "3" ]...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int arr [ ], int n ) { int max = * max_element ( arr, arr + n ); int min = * min_element ( arr, arr + n ); int m = max - min + 1; if ( m > n ) return false; bool visited [ m ]; memset ( visited, false, sizeof ( visited ) ); for ( int i = 0; i < n; i ++ ) visited [ arr [ i ] - min ] = true; for ( int i = 0; i < m; i ++ ) if ( visited [ i ] == false ) return false; return true; }
[]
null
[]
FRIENDS_PAIRING_PROBLEM
python
[]
def f_gold ( n ) : dp = [ 0 for i in range ( n + 1 ) ] for i in range ( n + 1 ) : if ( i <= 2 ) : dp [ i ] = i else : dp [ i ] = dp [ i - 1 ] + ( i - 1 ) * dp [ i - 2 ] return dp [ n ]
code_translation
[ [ "99", "2293787513721395580144886572049456639156084025485931929781630885397779219218432000" ], [ "62", "1890816383932031941325296356597295736721047552" ], [ "87", "1913739316913202783355790595270439314300178051408817240769643782602752" ], [ "87", "19137393169132027833557...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr [ ], int n, int x ) { for ( int i = 0; i < n; i ++ ) { if ( arr [ i ] == x ) return i; } return - 1; }
[]
null
[]
FIND_WHETHER_A_GIVEN_NUMBER_IS_A_POWER_OF_4_OR_NOT_1
python
[]
def f_gold ( n ) : count = 0 if ( n and ( not ( n & ( n - 1 ) ) ) ) : while ( n > 1 ) : n >>= 1 count += 1 if ( count % 2 == 0 ) : return True else : return False
code_translation
[ [ "1", "True" ], [ "4", "True" ], [ "64", "True" ], [ "-64", "None" ], [ "128", "False" ], [ "1024", "True" ], [ "45", "None" ], [ "33", "None" ], [ "66", "None" ], [ "74", "None" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int arr1 [ ], int arr2 [ ], int m, int n, int x ) { int count = 0; int l = 0, r = n - 1; while ( l < m && r >= 0 ) { if ( ( arr1 [ l ] + arr2 [ r ] ) == x ) { l ++; r --; count ++; } else if ( ( arr1 [ l ] + arr2 [ r ] ) < x ) l ++; else r --; } return count; }
[]
null
[]
COUNT_POSSIBLE_WAYS_TO_CONSTRUCT_BUILDINGS
python
[]
def f_gold ( N ) : if ( N == 1 ) : return 4 countB = 1 countS = 1 for i in range ( 2 , N + 1 ) : prev_countB = countB prev_countS = countS countS = prev_countB + prev_countS countB = prev_countS result = countS + countB return ( result * result )
code_translation
[ [ "17", "17480761" ], [ "66", "5288701670462944237293955881" ], [ "53", "19483654655064681378025" ], [ "97", "47927278105176659888288635888015429788676" ], [ "34", "222915410843904" ], [ "54", "51008870112024444436089" ], [ "9", "7921" ...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; bool f_gold ( int x1, int y1, int x2, int y2 ) { return ( x1 * ( y2 - y1 ) == y1 * ( x2 - x1 ) ); }
[]
null
[]
SUM_PAIRWISE_PRODUCTS_1
python
[]
def f_gold ( n ) : multiTerms = n * ( n + 1 ) // 2 sm = multiTerms for i in range ( 2 , n + 1 ) : multiTerms = multiTerms - ( i - 1 ) sm = sm + multiTerms * i return sm
code_translation
[ [ "41", "382571" ], [ "50", "834275" ], [ "67", "2645897" ], [ "18", "15675" ], [ "60", "1711355" ], [ "6", "266" ], [ "27", "74907" ], [ "46", "601036" ], [ "50", "834275" ], [ "20", "23485" ] ]
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; int f_gold ( int n, int k ) { if ( k <= 0 ) return n; return ( n & ~ ( 1 << ( k - 1 ) ) ); }
[]
null
[]
REMOVE_MINIMUM_NUMBER_ELEMENTS_NO_COMMON_ELEMENT_EXIST_ARRAY
python
[]
def f_gold ( a , b , n , m ) : countA = dict ( ) countB = dict ( ) for i in range ( n ) : countA [ a [ i ] ] = countA.get ( a [ i ] , 0 ) + 1 for i in range ( n ) : countB [ b [ i ] ] = countB.get ( b [ i ] , 0 ) + 1 res = 0 for x in countA : if x in countB.keys ( ) : res += min ( countA [ x ] , countB [ x ] ) return res
code_translation
[ [ "[4, 7, 10, 12, 12, 24, 29, 38, 45, 51, 53, 54, 59, 68, 72, 73, 85, 86, 88, 92, 92, 95], [7, 9, 17, 23, 25, 26, 29, 32, 35, 56, 56, 58, 59, 59, 62, 63, 72, 82, 85, 86, 95, 97], 15, 13", "3" ], [ "[-6, 48, -70, 14, -86, 56, 80, -64, 64, -88, -14, 78, 14, -18, 52, 2, 22, 88], [-62, -58, 60, -30, 42,...
transcoder-geeksforgeeks
cpp
f_gold
using namespace std; string f_gold ( int n, int k ) { string res = ""; for ( int i = 0; i < k; i ++ ) res = res + ( char ) ( 'a' + i ); int count = 0; for ( int i = 0; i < n - k; i ++ ) { res = res + ( char ) ( 'a' + count ); count ++; if ( count == k ) count = 0; } return res; }
[ "import math" ]
null
[]
N_TH_NUMBER_WHOSE_SUM_OF_DIGITS_IS_TEN_2
python
[]
import math def f_gold ( n ) : nthElement = 19 + ( n - 1 ) * 9 outliersCount = int ( math.log10 ( nthElement ) ) - 1 nthElement += 9 * outliersCount return nthElement
code_translation
[ [ "68", "631" ], [ "70", "649" ], [ "69", "640" ], [ "93", "856" ], [ "99", "910" ], [ "44", "415" ], [ "91", "838" ], [ "8", "82" ], [ "83", "766" ], [ "51", "478" ] ]