#include <stdint.h>
#include <sys/auxv.h>
#include <unistd.h>
struct DuckInfo {
uint64_t abi_version;
const char *stdin_ptr; uint64_t stdin_size;
char *stdout_ptr; uint64_t stdout_limit; uint64_t stdout_size;
char *stderr_ptr; uint64_t stderr_limit; uint64_t stderr_size;
const char *IB_ptr; uint64_t IB_limit;
char *OB_ptr; uint64_t OB_limit;
uint64_t tsc_frequency;
} __attribute__((packed));
#define FULL (~0ull)
#define NB 470016
#define N1 7344
#define N2 115
#define N3 2
static uint64_t blk[NB];
static uint64_t fm1[N1], nm1[N1];
static uint64_t fm2[N2], nm2[N2];
static uint64_t fm3[N3], nm3[N3];
static uint64_t fm4, nm4;
static uint64_t *const FM[5] = {0, fm1, fm2, fm3, &fm4};
static uint64_t *const NM[5] = {0, nm1, nm2, nm3, &nm4};
static const char *P;
static uint64_t O;
static inline int ctz(uint64_t x){ return __builtin_ctzll(x); }
/* ---- point add / sub (fully unrolled) ---- */
static inline int point_add(int pos, uint64_t v){
int l3 = pos >> 18;
int l2 = pos >> 12;
int l1 = pos >> 6;
{
uint64_t b = 1ull << l3;
if (fm4 & b){ fm3[l3] = ~0ull; nm3[l3] = ~0ull; }
else if (!(nm4 & b)){ fm3[l3] = 0; nm3[l3] = 0; }
}
{
uint64_t b = 1ull << (l2 & 63);
if (fm3[l3] & b){ fm2[l2] = ~0ull; nm2[l2] = ~0ull; }
else if (!(nm3[l3] & b)){ fm2[l2] = 0; nm2[l2] = 0; }
}
{
uint64_t b = 1ull << (l1 & 63);
if (fm2[l2] & b){ fm1[l1] = ~0ull; nm1[l1] = ~0ull; }
else if (!(nm2[l2] & b)){ fm1[l1] = 0; nm1[l1] = 0; }
}
{
uint64_t b = 1ull << (pos & 63);
if (fm1[l1] & b) blk[pos] = FULL;
else if (!(nm1[l1] & b)) blk[pos] = 0;
}
uint64_t old = blk[pos];
uint64_t nv = old + v;
blk[pos] = nv;
int ovf = nv < old;
{
uint64_t b = 1ull << (pos & 63);
if (nv == FULL) fm1[l1] |= b; else fm1[l1] &= ~b;
if (nv != 0) nm1[l1] |= b; else nm1[l1] &= ~b;
}
{
uint64_t b = 1ull << (l1 & 63);
if (fm1[l1] == ~0ull) fm2[l2] |= b; else fm2[l2] &= ~b;
if (nm1[l1] != 0) nm2[l2] |= b; else nm2[l2] &= ~b;
}
{
uint64_t b = 1ull << (l2 & 63);
if (fm2[l2] == ~0ull) fm3[l3] |= b; else fm3[l3] &= ~b;
if (nm2[l2] != 0) nm3[l3] |= b; else nm3[l3] &= ~b;
}
{
uint64_t b = 1ull << l3;
if (fm3[l3] == ~0ull) fm4 |= b; else fm4 &= ~b;
if (nm3[l3] != 0) nm4 |= b; else nm4 &= ~b;
}
return ovf;
}
static inline int point_sub(int pos, uint64_t v){
int l3 = pos >> 18;
int l2 = pos >> 12;
int l1 = pos >> 6;
{
uint64_t b = 1ull << l3;
if (fm4 & b){ fm3[l3] = ~0ull; nm3[l3] = ~0ull; }
else if (!(nm4 & b)){ fm3[l3] = 0; nm3[l3] = 0; }
}
{
uint64_t b = 1ull << (l2 & 63);
if (fm3[l3] & b){ fm2[l2] = ~0ull; nm2[l2] = ~0ull; }
else if (!(nm3[l3] & b)){ fm2[l2] = 0; nm2[l2] = 0; }
}
{
uint64_t b = 1ull << (l1 & 63);
if (fm2[l2] & b){ fm1[l1] = ~0ull; nm1[l1] = ~0ull; }
else if (!(nm2[l2] & b)){ fm1[l1] = 0; nm1[l1] = 0; }
}
{
uint64_t b = 1ull << (pos & 63);
if (fm1[l1] & b) blk[pos] = FULL;
else if (!(nm1[l1] & b)) blk[pos] = 0;
}
uint64_t old = blk[pos];
uint64_t nv = old - v;
blk[pos] = nv;
int ovf = nv > old;
{
uint64_t b = 1ull << (pos & 63);
if (nv == FULL) fm1[l1] |= b; else fm1[l1] &= ~b;
if (nv != 0) nm1[l1] |= b; else nm1[l1] &= ~b;
}
{
uint64_t b = 1ull << (l1 & 63);
if (fm1[l1] == ~0ull) fm2[l2] |= b; else fm2[l2] &= ~b;
if (nm1[l1] != 0) nm2[l2] |= b; else nm2[l2] &= ~b;
}
{
uint64_t b = 1ull << (l2 & 63);
if (fm2[l2] == ~0ull) fm3[l3] |= b; else fm3[l3] &= ~b;
if (nm2[l2] != 0) nm3[l3] |= b; else nm3[l3] &= ~b;
}
{
uint64_t b = 1ull << l3;
if (fm3[l3] == ~0ull) fm4 |= b; else fm4 &= ~b;
if (nm3[l3] != 0) nm4 |= b; else nm4 &= ~b;
}
return ovf;
}
/* ---- find (bottom-up, unrolled) ---- */
static int find_nf_r(int level, int node, int base, int pos){
if (level == 0) return base;
uint64_t fullmask = FM[level][node];
int childsz = 1 << (6 * (level - 1));
int c0 = (pos - base) / childsz;
if (c0 < 0) c0 = 0;
if (c0 >= 64) return -1;
uint64_t m = (~fullmask) >> c0;
while (m){
int c = c0 + ctz(m);
int child = node * 64 + c;
int cbase = base + c * childsz;
if (!(NM[level][node] & (1ull << c))) return (cbase > pos) ? cbase : pos;
int res = find_nf_r(level - 1, child, cbase, pos);
if (res != -1) return res;
m &= m - 1;
}
return -1;
}
static int find_nz_r(int level, int node, int base, int pos){
if (level == 0) return base;
uint64_t nzmask = NM[level][node];
int childsz = 1 << (6 * (level - 1));
int c0 = (pos - base) / childsz;
if (c0 < 0) c0 = 0;
if (c0 >= 64) return -1;
uint64_t m = nzmask >> c0;
while (m){
int c = c0 + ctz(m);
int child = node * 64 + c;
int cbase = base + c * childsz;
if (FM[level][node] & (1ull << c)) return (cbase > pos) ? cbase : pos;
int res = find_nz_r(level - 1, child, cbase, pos);
if (res != -1) return res;
m &= m - 1;
}
return -1;
}
static inline int find_nf(int pos){ return find_nf_r(4, 0, 0, pos); }
static inline int find_nz(int pos){ return find_nz_r(4, 0, 0, pos); }
/* ---- set_range (flat) ---- */
static inline void update_up_from_l2(int l2){
int l3 = l2 >> 6;
uint64_t b3 = 1ull << (l2 & 63);
if (fm2[l2] == ~0ull) fm3[l3] |= b3; else fm3[l3] &= ~b3;
if (nm2[l2] != 0) nm3[l3] |= b3; else nm3[l3] &= ~b3;
uint64_t b4 = 1ull << l3;
if (fm3[l3] == ~0ull) fm4 |= b4; else fm4 &= ~b4;
if (nm3[l3] != 0) nm4 |= b4; else nm4 &= ~b4;
}
static inline void update_up_from_l1(int l1){
int l2 = l1 >> 6;
uint64_t b2 = 1ull << (l1 & 63);
if (fm1[l1] == ~0ull) fm2[l2] |= b2; else fm2[l2] &= ~b2;
if (nm1[l1] != 0) nm2[l2] |= b2; else nm2[l2] &= ~b2;
update_up_from_l2(l2);
}
static inline void set_r1(int l1, int cl, int cr, int v){
uint64_t mask = (~0ull >> (64 - (cr - cl + 1))) << cl;
if (v == 2){ fm1[l1] |= mask; nm1[l1] |= mask; }
else { fm1[l1] &= ~mask; nm1[l1] &= ~mask; }
update_up_from_l1(l1);
}
static inline void set_r2(int l2, int l, int r, int v){
int l1l = l >> 6, l1r = r >> 6;
if (l1l == l1r){ set_r1(l1l, l & 63, r & 63, v); return; }
int fl = (l == (l1l << 6)) ? l1l : l1l + 1;
int fr = (r == ((l1r + 1) << 6) - 1) ? l1r : l1r - 1;
if (fl <= fr){
uint64_t mask = (~0ull >> (64 - (fr - fl + 1))) << fl;
if (v == 2){ fm2[l2] |= mask; nm2[l2] |= mask; }
else { fm2[l2] &= ~mask; nm2[l2] &= ~mask; }
update_up_from_l2(l2);
}
if (fl > l1l) set_r1(l1l, l & 63, 63, v);
if (fr < l1r) set_r1(l1r, 0, r & 63, v);
}
static inline void set_r3(int l3, int l, int r, int v){
int l2l = l >> 12, l2r = r >> 12;
if (l2l == l2r){ set_r2(l2l, l, r, v); return; }
int fl = (l == (l2l << 12)) ? l2l : l2l + 1;
int fr = (r == ((l2r + 1) << 12) - 1) ? l2r : l2r - 1;
if (fl <= fr){
uint64_t mask = (~0ull >> (64 - (fr - fl + 1))) << fl;
if (v == 2){ fm3[l3] |= mask; nm3[l3] |= mask; }
else { fm3[l3] &= ~mask; nm3[l3] &= ~mask; }
uint64_t b4 = 1ull << l3;
if (fm3[l3] == ~0ull) fm4 |= b4; else fm4 &= ~b4;
if (nm3[l3] != 0) nm4 |= b4; else nm4 &= ~b4;
}
if (fl > l2l) set_r2(l2l, l, (l2l + 1) * (1 << 12) - 1, v);
if (fr < l2r) set_r2(l2r, l2r * (1 << 12), r, v);
}
static inline void set_range(int l, int r, int v){
if (l > r) return;
int l3l = l >> 18, l3r = r >> 18;
if (l3l == l3r){ set_r3(l3l, l, r, v); return; }
int fl = (l == (l3l << 18)) ? l3l : l3l + 1;
int fr = (r == ((l3r + 1) << 18) - 1) ? l3r : l3r - 1;
if (fl <= fr){
uint64_t mask = (~0ull >> (64 - (fr - fl + 1))) << fl;
if (v == 2){ fm4 |= mask; nm4 |= mask; }
else { fm4 &= ~mask; nm4 &= ~mask; }
}
if (fl > l3l) set_r3(l3l, l, (l3l + 1) * (1 << 18) - 1, v);
if (fr < l3r) set_r3(l3r, l3r * (1 << 18), r, v);
}
/* ---- query ---- */
static inline uint64_t get_block(int pos){
int l3 = pos >> 18;
int l2 = pos >> 12;
int l1 = pos >> 6;
uint64_t b4 = 1ull << l3;
if (fm4 & b4) return FULL;
if (!(nm4 & b4)) return 0;
uint64_t b3 = 1ull << (l2 & 63);
if (fm3[l3] & b3) return FULL;
if (!(nm3[l3] & b3)) return 0;
uint64_t b2 = 1ull << (l1 & 63);
if (fm2[l2] & b2) return FULL;
if (!(nm2[l2] & b2)) return 0;
uint64_t b1 = 1ull << (pos & 63);
if (fm1[l1] & b1) return FULL;
if (!(nm1[l1] & b1)) return 0;
return blk[pos];
}
/* ---- carry / borrow ---- */
static inline void carry_add(int p){
int j = find_nf(p);
if (j < 0) return;
if (j - 1 >= p) set_range(p, j - 1, 0);
point_add(j, 1);
}
static inline void borrow_sub(int p){
int j = find_nz(p);
if (j < 0) return;
if (j - 1 >= p) set_range(p, j - 1, 2);
point_sub(j, 1);
}
static inline void add_val(int q, int r, uint64_t av){
unsigned __int128 v = (unsigned __int128)av << r;
uint64_t lo = (uint64_t)v;
uint64_t hi = (uint64_t)(v >> 64);
if (point_add(q, lo)) carry_add(q + 1);
if (hi && point_add(q + 1, hi)) carry_add(q + 2);
}
static inline void sub_val(int q, int r, uint64_t av){
unsigned __int128 v = (unsigned __int128)av << r;
uint64_t lo = (uint64_t)v;
uint64_t hi = (uint64_t)(v >> 64);
if (point_sub(q, lo)) borrow_sub(q + 1);
if (hi && point_sub(q + 1, hi)) borrow_sub(q + 2);
}
/* ---- parse ---- */
static inline int rd(){
while (*P <= ' ') P++;
int v = 0;
while (*P > ' ') v = v*10 + (*P - '0'), P++;
return v;
}
static inline int rds(){
while (*P <= ' ') P++;
int neg = 0;
if (*P == '-'){ neg = 1; P++; }
int v = 0;
while (*P > ' ') v = v*10 + (*P - '0'), P++;
return neg ? -v : v;
}
__attribute__((noreturn)) static void done(uint64_t olen, struct DuckInfo *di, char *out, int use_di){
if (use_di) di->stdout_size = olen;
else (void)!write(1, out, olen);
asm volatile("mov $60, %%eax; xor %%edi, %%edi; syscall" ::: "rax","rdi","memory");
__builtin_unreachable();
}
int main(){
struct DuckInfo *di = (struct DuckInfo*)getauxval(0x6b637564);
static char lbuf[1<<24];
static char obuf[1<<22];
char *out;
int use_di = 0;
if (di && di->abi_version >= 1 && di->stdin_ptr && di->stdout_ptr){
P = di->stdin_ptr;
out = di->stdout_ptr;
use_di = 1;
} else {
long n2 = 0, t;
while (n2 < (long)sizeof(lbuf) && (t = read(0, lbuf + n2, sizeof(lbuf) - n2)) > 0) n2 += t;
lbuf[n2] = 0;
P = lbuf;
out = obuf;
}
int n = rd();
rd(); rd(); rd();
for (int i = 0; i < n; i++){
int op = rd();
if (op == 1){
int a = rds();
int b = rd();
int q = b >> 6;
int r = b & 63;
if (a > 0) add_val(q, r, (uint64_t)a);
else if (a < 0) sub_val(q, r, (uint64_t)(-(int64_t)a));
} else {
int k = rd();
uint64_t bv = get_block(k >> 6);
int bit = (int)((bv >> (k & 63)) & 1);
out[O++] = (char)('0' + bit);
out[O++] = '\n';
}
}
done(O, di, out, use_di);
}
| Compilation | N/A | N/A | Compile OK | Score: N/A | 显示更多 |
| Testcase #1 | 7.17 us | 24 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #2 | 11.23 us | 24 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #3 | 63.02 us | 24 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #4 | 81.83 us | 24 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #5 | 487.11 us | 24 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #6 | 307.8 us | 28 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #7 | 752.01 us | 60 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #8 | 768.95 us | 28 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #9 | 2.78 ms | 152 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #10 | 4.993 ms | 96 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #11 | 4.693 ms | 68 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #12 | 3.317 ms | 304 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #13 | 6.538 ms | 328 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #14 | 18.727 ms | 896 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #15 | 15.128 ms | 1 MB + 308 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #16 | 37.434 ms | 1 MB + 748 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #17 | 42.867 ms | 384 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #18 | 61.149 ms | 2 MB + 600 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #19 | 71.274 ms | 3 MB + 12 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #20 | 21.872 ms | 3 MB + 752 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #21 | 49.74 ms | 3 MB + 888 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #22 | 81.297 ms | 692 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #23 | 104.236 ms | 1 MB + 212 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #24 | 86.926 ms | 736 KB | Accepted | Score: 4 | 显示更多 |
| Testcase #25 | 101.621 ms | 4 MB + 288 KB | Accepted | Score: 4 | 显示更多 |