- Translate each rule into one explicit state update.
- Maintain the invariant after every processed item.
- Return the accumulated state once all relevant input has been handled.
Code notes
- 67 lines of Go from the credited upstream file 1974F.go.
- The implementation visibly relies on sequence storage.
- No explicit loop blocks detected.
Complexity
Count the number and nesting of passes over the input, then include the maintained containers in the memory estimate.
Check the problem constraints before deciding whether this complexity will pass.
Use this to learn the idea, then write your own version.
1package main2 3import (4 . "fmt"5 "io"6 "slices"7)8 910func cf1974F(in io.Reader, out io.Writer) {11 var T, R, C, n, m, k int12 var op string13 for Fscan(in, &T); T > 0; T-- {14 Fscan(in, &R, &C, &n, &m)15 type pair struct{ r, c int }16 ud := make([]pair, n)17 for i := range ud {18 Fscan(in, &ud[i].r, &ud[i].c)19 }20 slices.SortFunc(ud, func(a, b pair) int { return a.r - b.r })21 lr := slices.Clone(ud)22 slices.SortFunc(lr, func(a, b pair) int { return a.c - b.c })23 24 ans := [2]int{}25 u, d, l, r := 1, R, 1, C26 for i := range m {27 Fscan(in, &op, &k)28 if op == "U" {29 u += k30 for len(ud) > 0 && ud[0].r < u {31 if v := ud[0].c; l <= v && v <= r {32 ans[i%2]++33 }34 ud = ud[1:]35 }36 } else if op == "D" {37 d -= k38 for len(ud) > 0 && ud[len(ud)-1].r > d {39 if v := ud[len(ud)-1].c; l <= v && v <= r {40 ans[i%2]++41 }42 ud = ud[:len(ud)-1]43 }44 } else if op == "L" {45 l += k46 for len(lr) > 0 && lr[0].c < l {47 if v := lr[0].r; u <= v && v <= d {48 ans[i%2]++49 }50 lr = lr[1:]51 }52 } else {53 r -= k54 for len(lr) > 0 && lr[len(lr)-1].c > r {55 if v := lr[len(lr)-1].r; u <= v && v <= d {56 ans[i%2]++57 }58 lr = lr[:len(lr)-1]59 }60 }61 }62 Fprintln(out, ans[0], ans[1])63 }64}65 6667