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/*** includes / typedefs / constans ***/

#include <algorithm>
#include <cstdint>
#include <map>
#include <cmath>
#include <queue>
#include <set>
#include <cstdio>
#include <cstdlib>
#include <string>
#include <vector>
#include <initializer_list>

using std::initializer_list;
using std::make_pair;
using std::map;
using std::multiset;
using std::pair;
using std::priority_queue;
using std::reverse;
using std::set;
using std::sort;
using std::string;
using std::swap;
using std::vector;

typedef int8_t     int8;
typedef int16_t    int16;
typedef int32_t    int32;
typedef int64_t    int64;
typedef __int128_t int128;

const int32 oo = 1e9;
const int64 ooo = 1e18;

/*** Input / Output Section ***/

#define scan(args...) [&]{ return scanf(args); }();

inline void read(int32& val)
{
    scan("%d", &val);
}

inline void read(int64& val)
{
    scan("%ld", &val);
}

inline void read(double& val)
{
    scan("%lf", &val);
}

inline void read(string& val, int length = 1e6)
{
    char tmp[length+1];

    scan("%s", tmp);

    val = tmp;
}

template <class S, class T>
inline void read(S& a, T& b)
{
    read(a);
    read(b);
}

template <class S>
inline void read(vector<S> &v, int n)
{
    v.resize(n);
    for (int i = 0; i < n; i++)
        read(v[i]);
}

template <class S, class T, class U>
inline void read(S& a, T& b, U& c)
{
    read(a);
    read(b);
    read(c);
}

template <class S, class T, class U, class V>
inline void read(S& a, T& b, U& c, V& d)
{
    read(a);
    read(b);
    read(c);
    read(d);
}

template <class S, class T, class U, class V, class W>
inline void read(S& a, T& b, U& c, V& d, W& e)
{
    read(a);
    read(b);
    read(c);
    read(d);
    read(e);
}

inline void write(int32 val)
{
    printf("%d ", val);
}

inline void write(int64 val)
{
    printf("%ld ", val);
}

inline void write(double val)
{
    printf("%lf ", val);
}

inline void write(const string& val)
{
    printf("%s ", val.c_str());
}

template<class S>
inline void write(const vector<S>& val)
{
    for (S el : val)
        write(el);
}

template<class S>
inline void writeln(const S& a)
{
    write(a);
    printf("\n");
}

template<class S, class T>
inline void writeln(const S& a, const T& b)
{
    write(a);
    write(b);
    printf("\n");
}

template<class S, class T, class U>
inline void writeln(const S& a, const T& b, const U& c)
{
    write(a);
    write(b);
    write(c);
    printf("\n");
}

template<class S, class T, class U, class V>
inline void writeln(const S& a, const T& b, const U& c, const V& d)
{
    write(a);
    write(b);
    write(c);
    write(d);
    printf("\n");
}

template<class S, class T, class U, class V, class W>
inline void writeln(const S& a, const T& b, const U& c, const V& d, const W& e)
{
    write(a);
    write(b);
    write(c);
    write(d);
    write(e);
    printf("\n");
}

/*** basic utilities ***/

inline int64 castformorebits(int32 a)
{
    return (int64)a;
}

inline int128 castformorebits(int64 a)
{
    return (int128)a;
}

template <class INT>
inline INT abs(INT a)
{
    if (a >= 0) return a;
    return -a;
}

template <typename T>
T minimum(std::initializer_list<T>&& l)
{
    T answer = *(l.begin());

    for (auto a : l)
        if (a < answer)
            answer = a;

    return answer;
}

template <typename T>
T minimum(const vector<T>& l)
{
    T answer = *(l.begin());

    for (auto a : l)
        if (a < answer)
            answer = a;

    return answer;
}

template <typename T>
T maximum(std::initializer_list<T>&& l)
{
    T answer = *(l.begin());

    for (auto a : l)
        if (a > answer)
            answer = a;

    return answer;
}

template <typename T>
T maximum(const vector<T>& l)
{
    T answer = *(l.begin());

    for (auto a : l)
        if (a > answer)
            answer = a;

    return answer;
}

/*** code ***/

int n, k;
vector<int> a;

void algorithm_2()
{
    vector<int> min(n);
    vector<int> max(n);

    min[0] = a[0];
    for (int i = 1; i < n; i++)
        min[i] = minimum({min[i-1], a[i]});

    max[n-1] = a[n-1];
    for (int i = n-2; i >= 0; i--)
        max[i] = maximum({max[i+1], a[i]});

    for (int i = 1; i < n; i++)
        if (min[i-1] >= max[i])
        {
            writeln("TAK");
            writeln(i);

            return;
        }
    writeln("NIE");
}

void algorithm_3()
{
    int min = 0;

    for (int i = 1; i < n; i++)
        if (a[min] >= a[i])
            min = i;

    if (min != 0)
    {
        writeln("TAK");
        writeln(min, min+1);

        return;
    }

    int max = n-1;

    for (int i = n-2; i >= 0; i--)
        if (a[max] <= a[i])
            max = i;

    if (max != n-1)
    {
        writeln("TAK");
        writeln(max, max+1);

        return;
    }

    writeln("NIE");
}

void algorithm_4()
{
    int pos = 0;

    while (pos + 1 < n and a[pos] < a[pos+1]) pos++;

    if (pos + 1 != n)
    {
        set<int> S;

        writeln("TAK");

        S.insert(pos);
        S.insert(pos + 1);
        if (pos + 2 != n)
            S.insert(pos + 2);

        int pocz = 1;
        while ((int)S.size() < k - 1)
            S.insert(pocz++);

        for (int el: S)
            write(el);
        printf("\n");

        return;
    }

    writeln("NIE");
}

int main()
{
    read(n, k);
    read(a, n);

    if (k == 2) algorithm_2();
    if (k == 3) algorithm_3();
    if (k >= 4) algorithm_4();

    return 0;
}