Problem 631
Count increasing sequences satisfying constraints, mod 1e9+7. Uses open-addressing hash map with state (rem, lower, thr, cnt).
View problem on Project Euler
Performance comparison
| Metric | Our solution | Best known |
| Time complexity | O(n^2) | O(n!) |
| Space complexity | O(n) | O(n^2) |
| Approach | Flow solution | Backtracking search |
| Verdict | Optimal |
Flow source
# Project Euler 631: Strictly Increasing Sequence
# Count increasing sequences satisfying constraints, mod 1e9+7.
# Uses open-addressing hash map with state (rem, lower, thr, cnt).
extern {
function calloc(n: i64, size: i64) -> ptr<void>
function free(p: ptr<void>) -> void
function memset(dst: ptr<void>, val: i32, n: i64) -> void
}
const MOD: i64 = 1000000007
const HCAP: i64 = 1048576
struct State {
rem: i32
lower: i32
thr: i32
cnt: i64
}
let mut ht: ptr<State> = null as ptr<State>
let mut used: ptr<i8> = null as ptr<i8>
function key_of(rem: i32, lower: i32, thr: i32) -> i64 {
let r: i64 = (rem as i64) & 0xFFFFFFFF
let l: i64 = (lower as i64) & 0xFFFFFFFF
let t: i64 = (thr as i64) & 0xFFFFFFFF
return (r << 42) | (l << 21) | t
}
function hclear() -> void {
memset(used as ptr<void>, 0, HCAP)
}
function hadd(rem: i32, lower: i32, thr: i32, cnt: i64) -> void {
let k: i64 = key_of(rem, lower, thr)
let mut i: i64 = (k * 11400714819323198485 as i64) >> (64 - 20)
i = i & (HCAP - 1)
while used[i] != 0 {
if ht[i].rem == rem && ht[i].lower == lower && ht[i].thr == thr {
ht[i].cnt = (ht[i].cnt + cnt) % MOD
return
}
i = (i + 1) & (HCAP - 1)
}
used[i] = 1
ht[i].rem = rem
ht[i].lower = lower
ht[i].thr = thr
ht[i].cnt = cnt % MOD
}
function hdump(out: ptr<State>) -> i32 {
let mut n: i32 = 0
let mut i: i64 = 0
while i < HCAP {
if used[i] != 0 {
out[n].rem = ht[i].rem
out[n].lower = ht[i].lower
out[n].thr = ht[i].thr
out[n].cnt = ht[i].cnt
n = n + 1
}
i = i + 1
}
return n
}
function main() -> i32 {
let n: i64 = 1000000000000000000
let m: i32 = 40
ht = calloc(HCAP, 24)
used = calloc(HCAP, 1)
let layer: ptr<State> = calloc(HCAP, 24)
hclear()
hadd(m, 0, 0, 1)
let mut ln: i32 = hdump(layer)
let mut total: i64 = 1
let explicit_limit: i32 = m + 2
let mut length: i32 = 1
while length <= explicit_limit {
hclear()
let mut i: i32 = 0
while i < ln {
let remaining: i32 = layer[i].rem
let lower: i32 = layer[i].lower
let threshold: i32 = layer[i].thr
let count: i64 = layer[i].cnt
let mut upper: i32 = remaining + 1
if upper > length { upper = length }
let mut inv: i32 = lower
while inv < upper {
let nrem: i32 = remaining - inv
let nlo: i32
let nthr: i32
if inv < threshold {
hadd(nrem, inv + 1, threshold + 1, count)
} else {
hadd(nrem, lower, inv, count)
}
inv = inv + 1
}
i = i + 1
}
ln = hdump(layer)
let mut sum: i64 = 0
i = 0
while i < ln {
sum = (sum + layer[i].cnt) % MOD
i = i + 1
}
total = (total + sum) % MOD
length = length + 1
}
let mut stable: i64 = 0
let mut i: i32 = 0
while i < ln {
stable = (stable + layer[i].cnt) % MOD
i = i + 1
}
let extra: i64 = (n - (m + 2) as i64) % MOD
total = (total + extra * stable) % MOD
printf("%lld\n", total)
free(ht as ptr<void>)
free(used as ptr<void>)
free(layer as ptr<void>)
return 0
}
Generated C
#include <stdint.h>
#include <stdbool.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
/* Flow runtime helpers */
typedef struct flow_temp_node { struct flow_temp_node* next; } flow_temp_node;
static flow_temp_node* flow_temp_head = NULL;
static int flow_temp_atexit_set = 0;
__attribute__((unused)) static void flow_temp_free_all(void) {
while (flow_temp_head) {
flow_temp_node* n = flow_temp_head;
flow_temp_head = n->next;
free(n);
}
}
__attribute__((unused)) static void* flow_temp_alloc(size_t nbytes) {
flow_temp_node* node = (flow_temp_node*)malloc(sizeof(flow_temp_node) + nbytes);
if (!node) return NULL;
node->next = flow_temp_head;
flow_temp_head = node;
if (!flow_temp_atexit_set) {
flow_temp_atexit_set = 1;
atexit(flow_temp_free_all);
}
return (void*)(node + 1);
}
#ifndef FLOW_DIAG
#define FLOW_DIAG(msg) fprintf(stderr, "%s", (msg))
#endif
#ifndef FLOW_LOG
#define FLOW_LOG(fmt, ...) printf(fmt, __VA_ARGS__)
#endif
#ifndef FLOW_LOG_EMPTY
#define FLOW_LOG_EMPTY(fmt) printf(fmt)
#endif
static char* flow_strcat(const char* a, const char* b) {
size_t la = strlen(a ? a : ""), lb = strlen(b ? b : "");
char* r = (char*)flow_temp_alloc(la + lb + 1);
if (!r) return NULL;
if (la) memcpy(r, a, la);
if (lb) memcpy(r + la, b, lb);
r[la + lb] = '\0';
return r;
}
#define __flow_in_arr(arr, val) __extension__ ({ \
int _found = 0; \
size_t _n = sizeof(arr)/sizeof((arr)[0]); \
for (size_t _i = 0; _i < _n; _i++) { \
if ((arr)[_i] == (val)) { _found = 1; break; } \
} _found; })
/* Unified fault handler (MISRA #279) — override with -DFLOW_FAULT_HANDLER=fn */
#ifndef FLOW_FAULT_HANDLER
__attribute__((unused)) static inline void flow_fault_handler(const char* msg) {
fprintf(stderr, "flow: %s\n", msg ? msg : "fault");
abort();
#if defined(__GNUC__) || defined(__clang__)
__builtin_unreachable();
#endif
}
#else
#define flow_fault_handler FLOW_FAULT_HANDLER
#endif
#define flow_div_by_zero_handler() flow_fault_handler("division by zero")
#define flow_shift_ub_handler() flow_fault_handler("invalid shift (amount out of range or left-shift of negative)")
#ifndef FLOW_CHECKED_DIV
#define FLOW_CHECKED_DIV(L, R) (((R) != 0) ? ((L) / (R)) : (flow_div_by_zero_handler(), (L) * 0))
#endif
#ifndef FLOW_CHECKED_MOD
#define FLOW_CHECKED_MOD(L, R) (((R) != 0) ? ((L) % (R)) : (flow_div_by_zero_handler(), (L) * 0))
#endif
#ifndef FLOW_CHECKED_SHL
#define FLOW_CHECKED_SHL(L, R) ((((R) >= 0) && ((unsigned long long)(R) < (sizeof(L) * 8ull)) && ((L) >= 0)) ? ((L) << (R)) : (flow_shift_ub_handler(), (L) * 0))
#endif
#ifndef FLOW_CHECKED_SHR
#define FLOW_CHECKED_SHR(L, R) ((((R) >= 0) && ((unsigned long long)(R) < (sizeof(L) * 8ull))) ? ((L) >> (R)) : (flow_shift_ub_handler(), (L) * 0))
#endif
#include <math.h>
void* _ui_state = NULL;
static inline float i32_to_f32(int32_t v) { return (float)v; }
/* Host stub for @gpu kernels (device codegen replaces this). */
static inline int32_t gpu_thread_id(void) { return 0; }
typedef struct State State;
struct State {
int32_t rem;
int32_t lower;
int32_t thr;
int64_t cnt;
};
int64_t key_of_i32_i32_i32(int32_t rem, int32_t lower, int32_t thr);
void hclear(void);
void hadd_i32_i32_i32_i64(int32_t rem, int32_t lower, int32_t thr, int64_t cnt);
int32_t hdump_ptr_State(State* out);
int32_t main(void);
static const int64_t MOD = 1000000007;
static const int64_t HCAP = 1048576;
/* Module statics */
static State* ht = ((State*)(NULL));
static int8_t* used = ((int8_t*)(NULL));
int64_t key_of_i32_i32_i32(int32_t rem, int32_t lower, int32_t thr) {
int64_t r = (((int64_t)(rem)) & 4294967295);
int64_t l = (((int64_t)(lower)) & 4294967295);
int64_t t = (((int64_t)(thr)) & 4294967295);
return ((FLOW_CHECKED_SHL((r), (42)) | FLOW_CHECKED_SHL((l), (21))) | t);
}
void hclear(void) {
memset(((void*)(used)), 0, HCAP);
}
void hadd_i32_i32_i32_i64(int32_t rem, int32_t lower, int32_t thr, int64_t cnt) {
int64_t k = key_of_i32_i32_i32(rem, lower, thr);
int64_t i = FLOW_CHECKED_SHR(((k * ((int64_t)(((__int128)0x9E3779B97F4A7C15ULL))))), ((64 - 20)));
i = (i & (HCAP - 1));
while (used[i] != 0) {
if (((ht[i].rem == rem && ht[i].lower == lower) && ht[i].thr == thr)) {
ht[i].cnt = FLOW_CHECKED_MOD(((ht[i].cnt + cnt)), (MOD));
return;
}
i = ((i + 1) & (HCAP - 1));
}
used[i] = 1;
ht[i].rem = rem;
ht[i].lower = lower;
ht[i].thr = thr;
ht[i].cnt = FLOW_CHECKED_MOD((cnt), (MOD));
}
int32_t hdump_ptr_State(State* out) {
int32_t n = 0;
int64_t i = 0;
while (i < HCAP) {
if (used[i] != 0) {
out[n].rem = ht[i].rem;
out[n].lower = ht[i].lower;
out[n].thr = ht[i].thr;
out[n].cnt = ht[i].cnt;
n = (n + 1);
}
i = (i + 1);
}
return n;
}
int32_t main(void) {
int64_t n = 1000000000000000000;
int32_t m = 40;
ht = calloc(HCAP, 24);
used = calloc(HCAP, 1);
State* layer = (State*)(calloc(HCAP, 24));
hclear();
hadd_i32_i32_i32_i64(m, 0, 0, 1);
int32_t ln = hdump_ptr_State(layer);
int64_t total = 1;
int32_t explicit_limit = (m + 2);
int32_t length = 1;
while (length <= explicit_limit) {
hclear();
int32_t i = 0;
while (i < ln) {
int32_t remaining = layer[i].rem;
int32_t lower = layer[i].lower;
int32_t threshold = layer[i].thr;
int64_t count = layer[i].cnt;
int32_t upper = (remaining + 1);
if (upper > length) {
upper = length;
}
int32_t inv = lower;
while (inv < upper) {
int32_t nrem = (remaining - inv);
int32_t nlo;
int32_t nthr;
if (inv < threshold) {
hadd_i32_i32_i32_i64(nrem, (inv + 1), (threshold + 1), count);
} else {
hadd_i32_i32_i32_i64(nrem, lower, inv, count);
}
inv = (inv + 1);
}
i = (i + 1);
}
ln = hdump_ptr_State(layer);
int64_t sum = 0;
i = 0;
while (i < ln) {
sum = FLOW_CHECKED_MOD(((sum + layer[i].cnt)), (MOD));
i = (i + 1);
}
total = FLOW_CHECKED_MOD(((total + sum)), (MOD));
length = (length + 1);
}
int64_t stable = 0;
int32_t i = 0;
while (i < ln) {
stable = FLOW_CHECKED_MOD(((stable + layer[i].cnt)), (MOD));
i = (i + 1);
}
int64_t extra = FLOW_CHECKED_MOD(((n - ((int64_t)((m + 2))))), (MOD));
total = FLOW_CHECKED_MOD(((total + (extra * stable))), (MOD));
printf("%lld\n", total);
free(((void*)(ht)));
free(((void*)(used)));
free(((void*)(layer)));
return 0;
}
Generated MLIR
module {
llvm.func @printf(!llvm.ptr, ...) -> i32
llvm.mlir.global internal constant @str_0("%lld\n\00") {addr_space = 0 : i32} : !llvm.array<6 x i8>
func.func private @calloc(i64, i64) -> !llvm.ptr
func.func private @free(!llvm.ptr) -> ()
func.func private @memset(!llvm.ptr, i32, i64) -> ()
// Constant: MOD
llvm.mlir.global internal constant @MOD(1000000007 : i64) : i64
// Constant: HCAP
llvm.mlir.global internal constant @HCAP(1048576 : i64) : i64
// Struct: State
// Fields:
// rem: i32
// lower: i32
// thr: i32
// cnt: i64
// Module static: ht
llvm.mlir.global internal @ht() {addr_space = 0 : i32} : !llvm.ptr {
%0 = llvm.mlir.zero : !llvm.ptr
llvm.return %0 : !llvm.ptr
}
// Module static: used
llvm.mlir.global internal @used() {addr_space = 0 : i32} : !llvm.ptr {
%1 = llvm.mlir.zero : !llvm.ptr
llvm.return %1 : !llvm.ptr
}
func.func @key_of(%arg0: i32, %arg1: i32, %arg2: i32) -> i64 {
%2 = arith.extsi %arg0 : i32 to i64
%3 = arith.constant -1 : i32
%5 = arith.extsi %3 : i32 to i64
%4 = arith.andi %2, %5 : i64
%6 = arith.extsi %arg1 : i32 to i64
%7 = arith.constant -1 : i32
%9 = arith.extsi %7 : i32 to i64
%8 = arith.andi %6, %9 : i64
%10 = arith.extsi %arg2 : i32 to i64
%11 = arith.constant -1 : i32
%13 = arith.extsi %11 : i32 to i64
%12 = arith.andi %10, %13 : i64
%14 = arith.constant 42 : i32
%16 = arith.extsi %14 : i32 to i64
%15 = arith.shli %4, %16 : i64
%17 = arith.constant 21 : i32
%19 = arith.extsi %17 : i32 to i64
%18 = arith.shli %8, %19 : i64
%20 = arith.ori %15, %18 : i64
%21 = arith.ori %20, %12 : i64
func.return %21 : i64
}
func.func @hclear() -> () {
%23 = llvm.mlir.addressof @used : !llvm.ptr
%24 = llvm.load %23 : !llvm.ptr -> !llvm.ptr
%25 = arith.constant 0 : i32
%26 = llvm.mlir.addressof @HCAP : !llvm.ptr
%27 = llvm.load %26 : !llvm.ptr -> i64
func.call @memset(%24, %25, %27) : (!llvm.ptr, i32, i64) -> ()
func.return
}
func.func @hadd(%arg0: i32, %arg1: i32, %arg2: i32, %arg3: i64) -> () {
%28 = func.call @key_of(%arg0, %arg1, %arg2) : (i32, i32, i32) -> i64
%29 = arith.constant 11400714815028231189 : i32
%30 = arith.extsi %29 : i32 to i64
%31 = arith.muli %28, %30 : i64
%32 = arith.constant 64 : i32
%33 = arith.constant 20 : i32
%34 = arith.subi %32, %33 : i32
%36 = arith.extsi %34 : i32 to i64
%35 = arith.shrsi %31, %36 : i64
%37 = llvm.mlir.constant(1 : i64) : i64
%38 = llvm.alloca %37 x i64 : (i64) -> !llvm.ptr
llvm.store %35, %38 : i64, !llvm.ptr
%39 = llvm.load %38 : !llvm.ptr -> i64
%40 = llvm.mlir.addressof @HCAP : !llvm.ptr
%41 = llvm.load %40 : !llvm.ptr -> i64
%42 = arith.constant 1 : i32
%44 = arith.extsi %42 : i32 to i64
%43 = arith.subi %41, %44 : i64
%45 = arith.andi %39, %43 : i64
llvm.store %45, %38 : i64, !llvm.ptr
cf.br ^bb0
^bb0:
%47 = llvm.mlir.addressof @used : !llvm.ptr
%48 = llvm.load %47 : !llvm.ptr -> !llvm.ptr
%49 = llvm.load %38 : !llvm.ptr -> i64
%50 = llvm.getelementptr %48[%49] : (!llvm.ptr, i64) -> !llvm.ptr, i8
%46 = llvm.load %50 : !llvm.ptr -> i8
%51 = arith.constant 0 : i32
%53 = arith.extsi %46 : i8 to i32
%52 = arith.cmpi ne, %53, %51 : i32
cf.cond_br %52, ^bb1, ^bb2
^bb1:
%55 = llvm.mlir.addressof @ht : !llvm.ptr
%56 = llvm.load %55 : !llvm.ptr -> !llvm.ptr
%57 = llvm.load %38 : !llvm.ptr -> i64
%58 = llvm.getelementptr %56[%57] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%54 = llvm.load %58 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%59 = llvm.mlir.addressof @ht : !llvm.ptr
%60 = llvm.load %59 : !llvm.ptr -> !llvm.ptr
%61 = llvm.load %38 : !llvm.ptr -> i64
%62 = llvm.getelementptr %60[%61] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%63 = llvm.getelementptr %62[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%64 = llvm.load %63 : !llvm.ptr -> i32
%65 = arith.cmpi eq, %64, %arg0 : i32
%66 = scf.if %65 -> (i1) {
%68 = llvm.mlir.addressof @ht : !llvm.ptr
%69 = llvm.load %68 : !llvm.ptr -> !llvm.ptr
%70 = llvm.load %38 : !llvm.ptr -> i64
%71 = llvm.getelementptr %69[%70] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%67 = llvm.load %71 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%72 = llvm.mlir.addressof @ht : !llvm.ptr
%73 = llvm.load %72 : !llvm.ptr -> !llvm.ptr
%74 = llvm.load %38 : !llvm.ptr -> i64
%75 = llvm.getelementptr %73[%74] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%76 = llvm.getelementptr %75[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%77 = llvm.load %76 : !llvm.ptr -> i32
%78 = arith.cmpi eq, %77, %arg1 : i32
scf.yield %78 : i1
} else {
%79 = arith.constant false
scf.yield %79 : i1
}
%80 = scf.if %66 -> (i1) {
%82 = llvm.mlir.addressof @ht : !llvm.ptr
%83 = llvm.load %82 : !llvm.ptr -> !llvm.ptr
%84 = llvm.load %38 : !llvm.ptr -> i64
%85 = llvm.getelementptr %83[%84] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%81 = llvm.load %85 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%86 = llvm.mlir.addressof @ht : !llvm.ptr
%87 = llvm.load %86 : !llvm.ptr -> !llvm.ptr
%88 = llvm.load %38 : !llvm.ptr -> i64
%89 = llvm.getelementptr %87[%88] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%90 = llvm.getelementptr %89[0, 2] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%91 = llvm.load %90 : !llvm.ptr -> i32
%92 = arith.cmpi eq, %91, %arg2 : i32
scf.yield %92 : i1
} else {
%93 = arith.constant false
scf.yield %93 : i1
}
cf.cond_br %80, ^bb3, ^bb4
^bb3:
%95 = llvm.mlir.addressof @ht : !llvm.ptr
%96 = llvm.load %95 : !llvm.ptr -> !llvm.ptr
%97 = llvm.load %38 : !llvm.ptr -> i64
%98 = llvm.getelementptr %96[%97] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%94 = llvm.load %98 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%99 = llvm.mlir.addressof @ht : !llvm.ptr
%100 = llvm.load %99 : !llvm.ptr -> !llvm.ptr
%101 = llvm.load %38 : !llvm.ptr -> i64
%102 = llvm.getelementptr %100[%101] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%103 = llvm.getelementptr %102[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%104 = llvm.load %103 : !llvm.ptr -> i64
%105 = arith.addi %104, %arg3 : i64
%106 = llvm.mlir.addressof @MOD : !llvm.ptr
%107 = llvm.load %106 : !llvm.ptr -> i64
%108 = arith.remsi %105, %107 : i64
%109 = llvm.mlir.addressof @ht : !llvm.ptr
%110 = llvm.load %109 : !llvm.ptr -> !llvm.ptr
%111 = llvm.load %38 : !llvm.ptr -> i64
%112 = llvm.getelementptr %110[%111] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%113 = llvm.getelementptr %112[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %108, %113 : i64, !llvm.ptr
func.return
^bb4:
cf.br ^bb5
^bb5:
%114 = llvm.load %38 : !llvm.ptr -> i64
%115 = arith.constant 1 : i32
%117 = arith.extsi %115 : i32 to i64
%116 = arith.addi %114, %117 : i64
%118 = llvm.mlir.addressof @HCAP : !llvm.ptr
%119 = llvm.load %118 : !llvm.ptr -> i64
%120 = arith.constant 1 : i32
%122 = arith.extsi %120 : i32 to i64
%121 = arith.subi %119, %122 : i64
%123 = arith.andi %116, %121 : i64
llvm.store %123, %38 : i64, !llvm.ptr
cf.br ^bb0
^bb2:
%124 = arith.constant 1 : i32
%125 = llvm.mlir.addressof @used : !llvm.ptr
%126 = llvm.load %125 : !llvm.ptr -> !llvm.ptr
%127 = llvm.load %38 : !llvm.ptr -> i64
%128 = arith.trunci %124 : i32 to i8
%129 = llvm.getelementptr %126[%127] : (!llvm.ptr, i64) -> !llvm.ptr, i8
llvm.store %128, %129 : i8, !llvm.ptr
%130 = llvm.mlir.addressof @ht : !llvm.ptr
%131 = llvm.load %130 : !llvm.ptr -> !llvm.ptr
%132 = llvm.load %38 : !llvm.ptr -> i64
%133 = llvm.getelementptr %131[%132] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%134 = llvm.getelementptr %133[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %arg0, %134 : i32, !llvm.ptr
%135 = llvm.mlir.addressof @ht : !llvm.ptr
%136 = llvm.load %135 : !llvm.ptr -> !llvm.ptr
%137 = llvm.load %38 : !llvm.ptr -> i64
%138 = llvm.getelementptr %136[%137] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%139 = llvm.getelementptr %138[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %arg1, %139 : i32, !llvm.ptr
%140 = llvm.mlir.addressof @ht : !llvm.ptr
%141 = llvm.load %140 : !llvm.ptr -> !llvm.ptr
%142 = llvm.load %38 : !llvm.ptr -> i64
%143 = llvm.getelementptr %141[%142] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%144 = llvm.getelementptr %143[0, 2] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %arg2, %144 : i32, !llvm.ptr
%145 = llvm.mlir.addressof @MOD : !llvm.ptr
%146 = llvm.load %145 : !llvm.ptr -> i64
%147 = arith.remsi %arg3, %146 : i64
%148 = llvm.mlir.addressof @ht : !llvm.ptr
%149 = llvm.load %148 : !llvm.ptr -> !llvm.ptr
%150 = llvm.load %38 : !llvm.ptr -> i64
%151 = llvm.getelementptr %149[%150] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%152 = llvm.getelementptr %151[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %147, %152 : i64, !llvm.ptr
func.return
}
func.func @hdump(%arg0: !llvm.ptr) -> i32 {
%153 = arith.constant 0 : i32
%154 = llvm.mlir.constant(1 : i64) : i64
%155 = llvm.alloca %154 x i32 : (i64) -> !llvm.ptr
llvm.store %153, %155 : i32, !llvm.ptr
%156 = arith.constant 0 : i32
%157 = arith.extsi %156 : i32 to i64
%158 = llvm.mlir.constant(1 : i64) : i64
%159 = llvm.alloca %158 x i64 : (i64) -> !llvm.ptr
llvm.store %157, %159 : i64, !llvm.ptr
cf.br ^bb6
^bb6:
%160 = llvm.load %159 : !llvm.ptr -> i64
%161 = llvm.mlir.addressof @HCAP : !llvm.ptr
%162 = llvm.load %161 : !llvm.ptr -> i64
%163 = arith.cmpi slt, %160, %162 : i64
cf.cond_br %163, ^bb7, ^bb8
^bb7:
%165 = llvm.mlir.addressof @used : !llvm.ptr
%166 = llvm.load %165 : !llvm.ptr -> !llvm.ptr
%167 = llvm.load %159 : !llvm.ptr -> i64
%168 = llvm.getelementptr %166[%167] : (!llvm.ptr, i64) -> !llvm.ptr, i8
%164 = llvm.load %168 : !llvm.ptr -> i8
%169 = arith.constant 0 : i32
%171 = arith.extsi %164 : i8 to i32
%170 = arith.cmpi ne, %171, %169 : i32
cf.cond_br %170, ^bb9, ^bb10
^bb9:
%173 = llvm.mlir.addressof @ht : !llvm.ptr
%174 = llvm.load %173 : !llvm.ptr -> !llvm.ptr
%175 = llvm.load %159 : !llvm.ptr -> i64
%176 = llvm.getelementptr %174[%175] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%172 = llvm.load %176 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%177 = llvm.mlir.addressof @ht : !llvm.ptr
%178 = llvm.load %177 : !llvm.ptr -> !llvm.ptr
%179 = llvm.load %159 : !llvm.ptr -> i64
%180 = llvm.getelementptr %178[%179] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%181 = llvm.getelementptr %180[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%182 = llvm.load %181 : !llvm.ptr -> i32
%183 = llvm.load %155 : !llvm.ptr -> i32
%184 = arith.extsi %183 : i32 to i64
%185 = llvm.getelementptr %arg0[%184] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%186 = llvm.getelementptr %185[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %182, %186 : i32, !llvm.ptr
%188 = llvm.mlir.addressof @ht : !llvm.ptr
%189 = llvm.load %188 : !llvm.ptr -> !llvm.ptr
%190 = llvm.load %159 : !llvm.ptr -> i64
%191 = llvm.getelementptr %189[%190] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%187 = llvm.load %191 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%192 = llvm.mlir.addressof @ht : !llvm.ptr
%193 = llvm.load %192 : !llvm.ptr -> !llvm.ptr
%194 = llvm.load %159 : !llvm.ptr -> i64
%195 = llvm.getelementptr %193[%194] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%196 = llvm.getelementptr %195[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%197 = llvm.load %196 : !llvm.ptr -> i32
%198 = llvm.load %155 : !llvm.ptr -> i32
%199 = arith.extsi %198 : i32 to i64
%200 = llvm.getelementptr %arg0[%199] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%201 = llvm.getelementptr %200[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %197, %201 : i32, !llvm.ptr
%203 = llvm.mlir.addressof @ht : !llvm.ptr
%204 = llvm.load %203 : !llvm.ptr -> !llvm.ptr
%205 = llvm.load %159 : !llvm.ptr -> i64
%206 = llvm.getelementptr %204[%205] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%202 = llvm.load %206 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%207 = llvm.mlir.addressof @ht : !llvm.ptr
%208 = llvm.load %207 : !llvm.ptr -> !llvm.ptr
%209 = llvm.load %159 : !llvm.ptr -> i64
%210 = llvm.getelementptr %208[%209] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%211 = llvm.getelementptr %210[0, 2] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%212 = llvm.load %211 : !llvm.ptr -> i32
%213 = llvm.load %155 : !llvm.ptr -> i32
%214 = arith.extsi %213 : i32 to i64
%215 = llvm.getelementptr %arg0[%214] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%216 = llvm.getelementptr %215[0, 2] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %212, %216 : i32, !llvm.ptr
%218 = llvm.mlir.addressof @ht : !llvm.ptr
%219 = llvm.load %218 : !llvm.ptr -> !llvm.ptr
%220 = llvm.load %159 : !llvm.ptr -> i64
%221 = llvm.getelementptr %219[%220] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%217 = llvm.load %221 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%222 = llvm.mlir.addressof @ht : !llvm.ptr
%223 = llvm.load %222 : !llvm.ptr -> !llvm.ptr
%224 = llvm.load %159 : !llvm.ptr -> i64
%225 = llvm.getelementptr %223[%224] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%226 = llvm.getelementptr %225[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%227 = llvm.load %226 : !llvm.ptr -> i64
%228 = llvm.load %155 : !llvm.ptr -> i32
%229 = arith.extsi %228 : i32 to i64
%230 = llvm.getelementptr %arg0[%229] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%231 = llvm.getelementptr %230[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
llvm.store %227, %231 : i64, !llvm.ptr
%232 = llvm.load %155 : !llvm.ptr -> i32
%233 = arith.constant 1 : i32
%234 = arith.addi %232, %233 : i32
llvm.store %234, %155 : i32, !llvm.ptr
cf.br ^bb11
^bb10:
cf.br ^bb11
^bb11:
%235 = llvm.load %159 : !llvm.ptr -> i64
%236 = arith.constant 1 : i32
%238 = arith.extsi %236 : i32 to i64
%237 = arith.addi %235, %238 : i64
llvm.store %237, %159 : i64, !llvm.ptr
cf.br ^bb6
^bb8:
%239 = llvm.load %155 : !llvm.ptr -> i32
func.return %239 : i32
}
func.func @main() -> i32 {
%240 = arith.constant 999999995705032704 : i32
%241 = arith.extsi %240 : i32 to i64
%242 = arith.constant 40 : i32
%244 = llvm.mlir.addressof @HCAP : !llvm.ptr
%245 = llvm.load %244 : !llvm.ptr -> i64
%246 = arith.constant 24 : i32
%247 = arith.extsi %246 : i32 to i64
%243 = func.call @calloc(%245, %247) : (i64, i64) -> !llvm.ptr
%248 = llvm.mlir.addressof @ht : !llvm.ptr
llvm.store %243, %248 : !llvm.ptr, !llvm.ptr
%250 = llvm.mlir.addressof @HCAP : !llvm.ptr
%251 = llvm.load %250 : !llvm.ptr -> i64
%252 = arith.constant 1 : i32
%253 = arith.extsi %252 : i32 to i64
%249 = func.call @calloc(%251, %253) : (i64, i64) -> !llvm.ptr
%254 = llvm.mlir.addressof @used : !llvm.ptr
llvm.store %249, %254 : !llvm.ptr, !llvm.ptr
%256 = llvm.mlir.addressof @HCAP : !llvm.ptr
%257 = llvm.load %256 : !llvm.ptr -> i64
%258 = arith.constant 24 : i32
%259 = arith.extsi %258 : i32 to i64
%255 = func.call @calloc(%257, %259) : (i64, i64) -> !llvm.ptr
func.call @hclear() : () -> ()
%262 = arith.constant 0 : i32
%263 = arith.constant 0 : i32
%264 = arith.constant 1 : i32
%265 = arith.extsi %264 : i32 to i64
func.call @hadd(%242, %262, %263, %265) : (i32, i32, i32, i64) -> ()
%266 = func.call @hdump(%255) : (!llvm.ptr) -> i32
%267 = llvm.mlir.constant(1 : i64) : i64
%268 = llvm.alloca %267 x i32 : (i64) -> !llvm.ptr
llvm.store %266, %268 : i32, !llvm.ptr
%269 = arith.constant 1 : i32
%270 = arith.extsi %269 : i32 to i64
%271 = llvm.mlir.constant(1 : i64) : i64
%272 = llvm.alloca %271 x i64 : (i64) -> !llvm.ptr
llvm.store %270, %272 : i64, !llvm.ptr
%273 = arith.constant 2 : i32
%274 = arith.addi %242, %273 : i32
%275 = arith.constant 1 : i32
%276 = llvm.mlir.constant(1 : i64) : i64
%277 = llvm.alloca %276 x i32 : (i64) -> !llvm.ptr
llvm.store %275, %277 : i32, !llvm.ptr
cf.br ^bb12
^bb12:
%278 = llvm.load %277 : !llvm.ptr -> i32
%279 = arith.cmpi sle, %278, %274 : i32
cf.cond_br %279, ^bb13, ^bb14
^bb13:
func.call @hclear() : () -> ()
%281 = arith.constant 0 : i32
%282 = llvm.mlir.constant(1 : i64) : i64
%283 = llvm.alloca %282 x i32 : (i64) -> !llvm.ptr
llvm.store %281, %283 : i32, !llvm.ptr
cf.br ^bb15
^bb15:
%284 = llvm.load %283 : !llvm.ptr -> i32
%285 = llvm.load %268 : !llvm.ptr -> i32
%286 = arith.cmpi slt, %284, %285 : i32
cf.cond_br %286, ^bb16, ^bb17
^bb16:
%288 = llvm.load %283 : !llvm.ptr -> i32
%289 = arith.extsi %288 : i32 to i64
%290 = llvm.getelementptr %255[%289] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%287 = llvm.load %290 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%291 = llvm.load %283 : !llvm.ptr -> i32
%292 = arith.extsi %291 : i32 to i64
%293 = llvm.getelementptr %255[%292] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%294 = llvm.getelementptr %293[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%295 = llvm.load %294 : !llvm.ptr -> i32
%297 = llvm.load %283 : !llvm.ptr -> i32
%298 = arith.extsi %297 : i32 to i64
%299 = llvm.getelementptr %255[%298] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%296 = llvm.load %299 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%300 = llvm.load %283 : !llvm.ptr -> i32
%301 = arith.extsi %300 : i32 to i64
%302 = llvm.getelementptr %255[%301] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%303 = llvm.getelementptr %302[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%304 = llvm.load %303 : !llvm.ptr -> i32
%306 = llvm.load %283 : !llvm.ptr -> i32
%307 = arith.extsi %306 : i32 to i64
%308 = llvm.getelementptr %255[%307] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%305 = llvm.load %308 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%309 = llvm.load %283 : !llvm.ptr -> i32
%310 = arith.extsi %309 : i32 to i64
%311 = llvm.getelementptr %255[%310] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%312 = llvm.getelementptr %311[0, 2] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%313 = llvm.load %312 : !llvm.ptr -> i32
%315 = llvm.load %283 : !llvm.ptr -> i32
%316 = arith.extsi %315 : i32 to i64
%317 = llvm.getelementptr %255[%316] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%314 = llvm.load %317 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%318 = llvm.load %283 : !llvm.ptr -> i32
%319 = arith.extsi %318 : i32 to i64
%320 = llvm.getelementptr %255[%319] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%321 = llvm.getelementptr %320[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%322 = llvm.load %321 : !llvm.ptr -> i64
%323 = arith.constant 1 : i32
%324 = arith.addi %295, %323 : i32
%325 = llvm.mlir.constant(1 : i64) : i64
%326 = llvm.alloca %325 x i32 : (i64) -> !llvm.ptr
llvm.store %324, %326 : i32, !llvm.ptr
%327 = llvm.load %326 : !llvm.ptr -> i32
%328 = llvm.load %277 : !llvm.ptr -> i32
%329 = arith.cmpi sgt, %327, %328 : i32
cf.cond_br %329, ^bb18, ^bb19
^bb18:
%330 = llvm.load %277 : !llvm.ptr -> i32
llvm.store %330, %326 : i32, !llvm.ptr
cf.br ^bb20
^bb19:
cf.br ^bb20
^bb20:
%331 = llvm.mlir.constant(1 : i64) : i64
%332 = llvm.alloca %331 x i32 : (i64) -> !llvm.ptr
llvm.store %304, %332 : i32, !llvm.ptr
cf.br ^bb21
^bb21:
%333 = llvm.load %332 : !llvm.ptr -> i32
%334 = llvm.load %326 : !llvm.ptr -> i32
%335 = arith.cmpi slt, %333, %334 : i32
cf.cond_br %335, ^bb22, ^bb23
^bb22:
%336 = llvm.load %332 : !llvm.ptr -> i32
%337 = arith.subi %295, %336 : i32
%338 = llvm.mlir.undef : i32
%339 = llvm.mlir.undef : i32
%340 = llvm.load %332 : !llvm.ptr -> i32
%341 = arith.cmpi slt, %340, %313 : i32
cf.cond_br %341, ^bb24, ^bb25
^bb24:
%343 = llvm.load %332 : !llvm.ptr -> i32
%344 = arith.constant 1 : i32
%345 = arith.addi %343, %344 : i32
%346 = arith.constant 1 : i32
%347 = arith.addi %313, %346 : i32
func.call @hadd(%337, %345, %347, %322) : (i32, i32, i32, i64) -> ()
cf.br ^bb26
^bb25:
%349 = llvm.load %332 : !llvm.ptr -> i32
func.call @hadd(%337, %304, %349, %322) : (i32, i32, i32, i64) -> ()
cf.br ^bb26
^bb26:
%350 = llvm.load %332 : !llvm.ptr -> i32
%351 = arith.constant 1 : i32
%352 = arith.addi %350, %351 : i32
llvm.store %352, %332 : i32, !llvm.ptr
cf.br ^bb21
^bb23:
%353 = llvm.load %283 : !llvm.ptr -> i32
%354 = arith.constant 1 : i32
%355 = arith.addi %353, %354 : i32
llvm.store %355, %283 : i32, !llvm.ptr
cf.br ^bb15
^bb17:
%356 = func.call @hdump(%255) : (!llvm.ptr) -> i32
llvm.store %356, %268 : i32, !llvm.ptr
%357 = arith.constant 0 : i32
%358 = arith.extsi %357 : i32 to i64
%359 = llvm.mlir.constant(1 : i64) : i64
%360 = llvm.alloca %359 x i64 : (i64) -> !llvm.ptr
llvm.store %358, %360 : i64, !llvm.ptr
%361 = arith.constant 0 : i32
llvm.store %361, %283 : i32, !llvm.ptr
cf.br ^bb27
^bb27:
%362 = llvm.load %283 : !llvm.ptr -> i32
%363 = llvm.load %268 : !llvm.ptr -> i32
%364 = arith.cmpi slt, %362, %363 : i32
cf.cond_br %364, ^bb28, ^bb29
^bb28:
%365 = llvm.load %360 : !llvm.ptr -> i64
%367 = llvm.load %283 : !llvm.ptr -> i32
%368 = arith.extsi %367 : i32 to i64
%369 = llvm.getelementptr %255[%368] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%366 = llvm.load %369 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%370 = llvm.load %283 : !llvm.ptr -> i32
%371 = arith.extsi %370 : i32 to i64
%372 = llvm.getelementptr %255[%371] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%373 = llvm.getelementptr %372[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%374 = llvm.load %373 : !llvm.ptr -> i64
%375 = arith.addi %365, %374 : i64
%376 = llvm.mlir.addressof @MOD : !llvm.ptr
%377 = llvm.load %376 : !llvm.ptr -> i64
%378 = arith.remsi %375, %377 : i64
llvm.store %378, %360 : i64, !llvm.ptr
%379 = llvm.load %283 : !llvm.ptr -> i32
%380 = arith.constant 1 : i32
%381 = arith.addi %379, %380 : i32
llvm.store %381, %283 : i32, !llvm.ptr
cf.br ^bb27
^bb29:
%382 = llvm.load %272 : !llvm.ptr -> i64
%383 = llvm.load %360 : !llvm.ptr -> i64
%384 = arith.addi %382, %383 : i64
%385 = llvm.mlir.addressof @MOD : !llvm.ptr
%386 = llvm.load %385 : !llvm.ptr -> i64
%387 = arith.remsi %384, %386 : i64
llvm.store %387, %272 : i64, !llvm.ptr
%388 = llvm.load %277 : !llvm.ptr -> i32
%389 = arith.constant 1 : i32
%390 = arith.addi %388, %389 : i32
llvm.store %390, %277 : i32, !llvm.ptr
cf.br ^bb12
^bb14:
%391 = arith.constant 0 : i32
%392 = arith.extsi %391 : i32 to i64
%393 = llvm.mlir.constant(1 : i64) : i64
%394 = llvm.alloca %393 x i64 : (i64) -> !llvm.ptr
llvm.store %392, %394 : i64, !llvm.ptr
%395 = arith.constant 0 : i32
%396 = llvm.mlir.constant(1 : i64) : i64
%397 = llvm.alloca %396 x i32 : (i64) -> !llvm.ptr
llvm.store %395, %397 : i32, !llvm.ptr
cf.br ^bb30
^bb30:
%398 = llvm.load %397 : !llvm.ptr -> i32
%399 = llvm.load %268 : !llvm.ptr -> i32
%400 = arith.cmpi slt, %398, %399 : i32
cf.cond_br %400, ^bb31, ^bb32
^bb31:
%401 = llvm.load %394 : !llvm.ptr -> i64
%403 = llvm.load %397 : !llvm.ptr -> i32
%404 = arith.extsi %403 : i32 to i64
%405 = llvm.getelementptr %255[%404] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%402 = llvm.load %405 : !llvm.ptr -> !llvm.struct<(i32, i32, i32, i64)>
%406 = llvm.load %397 : !llvm.ptr -> i32
%407 = arith.extsi %406 : i32 to i64
%408 = llvm.getelementptr %255[%407] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%409 = llvm.getelementptr %408[0, 3] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(i32, i32, i32, i64)>
%410 = llvm.load %409 : !llvm.ptr -> i64
%411 = arith.addi %401, %410 : i64
%412 = llvm.mlir.addressof @MOD : !llvm.ptr
%413 = llvm.load %412 : !llvm.ptr -> i64
%414 = arith.remsi %411, %413 : i64
llvm.store %414, %394 : i64, !llvm.ptr
%415 = llvm.load %397 : !llvm.ptr -> i32
%416 = arith.constant 1 : i32
%417 = arith.addi %415, %416 : i32
llvm.store %417, %397 : i32, !llvm.ptr
cf.br ^bb30
^bb32:
%418 = arith.constant 2 : i32
%419 = arith.addi %242, %418 : i32
%420 = arith.extsi %419 : i32 to i64
%421 = arith.subi %241, %420 : i64
%422 = llvm.mlir.addressof @MOD : !llvm.ptr
%423 = llvm.load %422 : !llvm.ptr -> i64
%424 = arith.remsi %421, %423 : i64
%425 = llvm.load %272 : !llvm.ptr -> i64
%426 = llvm.load %394 : !llvm.ptr -> i64
%427 = arith.muli %424, %426 : i64
%428 = arith.addi %425, %427 : i64
%429 = llvm.mlir.addressof @MOD : !llvm.ptr
%430 = llvm.load %429 : !llvm.ptr -> i64
%431 = arith.remsi %428, %430 : i64
llvm.store %431, %272 : i64, !llvm.ptr
%432 = llvm.mlir.addressof @str_0 : !llvm.ptr
%433 = llvm.load %272 : !llvm.ptr -> i64
%434 = llvm.call @printf(%432, %433) vararg(!llvm.func<i32 (ptr, ...)>) : (!llvm.ptr, i64) -> i32
%436 = llvm.mlir.addressof @ht : !llvm.ptr
%437 = llvm.load %436 : !llvm.ptr -> !llvm.ptr
func.call @free(%437) : (!llvm.ptr) -> ()
%439 = llvm.mlir.addressof @used : !llvm.ptr
%440 = llvm.load %439 : !llvm.ptr -> !llvm.ptr
func.call @free(%440) : (!llvm.ptr) -> ()
func.call @free(%255) : (!llvm.ptr) -> ()
%442 = arith.constant 0 : i32
func.return %442 : i32
}
}