Problem 020

Sum of digits in 100!

Answer648
Output648
StatusPASS
Native helperno
Runtime0 ms
Peak memory1072 KB
Time complexityO(n) (estimated)
Space complexityO(n) (estimated)

Performance comparison

MetricOur solutionBest known
Time complexityO(n)O(n)
Space complexityO(n)O(n)
ApproachFlow solutionBig-integer factorial, digit sum
VerdictOptimal

Flow source

# Project Euler 020
# Sum of digits in 100!

import euler.digits { Digits, digits_one, digits_mul_u32, digits_sum }

extern {
    function free(p: ptr<void>) -> void
}

function main() -> i32 {
    let mut d: Digits = digits_one(200)
    if d.data == null {
        return 1
    }

    for n in 2..101 {
        digits_mul_u32(&d, n)
    }

    printf("%lld\n", digits_sum(d))
    free(d.data)
    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 Digits Digits;

struct Digits {
    int32_t* data;
    int32_t len;
};

Digits digits_one_i64(int64_t cap);
void digits_set_one_ptr_Digits(Digits* d);
void digits_set_u64_ptr_Digits_i64(Digits* d, int64_t value);
void digits_mul_u32_ptr_Digits_i32(Digits* d, int32_t m);
void digits_reverse_add_ptr_Digits_ptr_i32(Digits* d, int32_t* tmp);
bool digits_is_palindrome_Digits(Digits d);
int64_t digits_sum_Digits(Digits d);
int32_t main(void);


Digits digits_one_i64(int64_t cap) {
    int32_t* data = (int32_t*)(calloc(cap, 4));
    if (data != NULL) {
        data[0] = 1;
    }
    return (Digits){ .data = data, .len = 1 };
}

void digits_set_one_ptr_Digits(Digits* d) {
    d[0].data[0] = 1;
    d[0].len = 1;
}

void digits_set_u64_ptr_Digits_i64(Digits* d, int64_t value) {
    int64_t x = value;
    int32_t len = 0;
    if (x == 0) {
        d[0].data[0] = 0;
        d[0].len = 1;
        return;
    }
    while (x > 0) {
        d[0].data[len] = ((int32_t)(FLOW_CHECKED_MOD((x), (10))));
        x = FLOW_CHECKED_DIV((x), (10));
        len = (len + 1);
    }
    d[0].len = len;
}

void digits_mul_u32_ptr_Digits_i32(Digits* d, int32_t m) {
    int32_t carry = 0;
    int32_t __flow_step_1 = 1;
    for (int32_t i = 0; (0 <= d[0].len) ? i < d[0].len : i > d[0].len; i += (0 <= d[0].len) ? 1 : -1) {
        int32_t v = ((d[0].data[i] * m) + carry);
        d[0].data[i] = FLOW_CHECKED_MOD((v), (10));
        carry = FLOW_CHECKED_DIV((v), (10));
    }
    while (carry > 0) {
        d[0].data[d[0].len] = FLOW_CHECKED_MOD((carry), (10));
        carry = FLOW_CHECKED_DIV((carry), (10));
        d[0].len = (d[0].len + 1);
    }
}

void digits_reverse_add_ptr_Digits_ptr_i32(Digits* d, int32_t* tmp) {
    int32_t len = d[0].len;
    int32_t carry = 0;
    int32_t __flow_step_2 = 1;
    for (int32_t i = 0; (0 <= len) ? i < len : i > len; i += (0 <= len) ? 1 : -1) {
        int32_t v = ((d[0].data[i] + d[0].data[((len - 1) - i)]) + carry);
        tmp[i] = FLOW_CHECKED_MOD((v), (10));
        carry = FLOW_CHECKED_DIV((v), (10));
    }
    int32_t new_len = len;
    if (carry > 0) {
        tmp[new_len] = carry;
        new_len = (new_len + 1);
    }
    int32_t __flow_step_3 = 1;
    for (int32_t i = 0; (0 <= new_len) ? i < new_len : i > new_len; i += (0 <= new_len) ? 1 : -1) {
        d[0].data[i] = tmp[i];
    }
    d[0].len = new_len;
}

bool digits_is_palindrome_Digits(Digits d) {
    int32_t half = FLOW_CHECKED_DIV((d.len), (2));
    int32_t __flow_step_4 = 1;
    for (int32_t i = 0; (0 <= half) ? i < half : i > half; i += (0 <= half) ? 1 : -1) {
        if (d.data[i] != d.data[((d.len - 1) - i)]) {
            return 0;
        }
    }
    return 1;
}

int64_t digits_sum_Digits(Digits d) {
    int64_t total = 0;
    int32_t __flow_step_5 = 1;
    for (int32_t i = 0; (0 <= d.len) ? i < d.len : i > d.len; i += (0 <= d.len) ? 1 : -1) {
        total = (total + ((int64_t)(d.data[i])));
    }
    return total;
}


int32_t main(void) {
    Digits d = digits_one_i64(200);
    if (d.data == NULL) {
        return 1;
    }
    int32_t __flow_step_6 = 1;
    for (int32_t n = 2; (2 <= 101) ? n < 101 : n > 101; n += (2 <= 101) ? 1 : -1) {
        digits_mul_u32_ptr_Digits_i32((&(d)), n);
    }
    printf("%lld\n", digits_sum_Digits(d));
    free(d.data);
    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>
  // Struct: Digits
  // Fields:
  //   data: !llvm.ptr
  //   len: i32
  func.func private @calloc(i64, i64) -> !llvm.ptr
  func.func @digits_one(%arg0: i64) -> !llvm.struct<(!llvm.ptr, i32)> {
    %1 = arith.constant 4 : i32
    %2 = arith.extsi %1 : i32 to i64
    %0 = func.call @calloc(%arg0, %2) : (i64, i64) -> !llvm.ptr
    %3 = llvm.mlir.zero : !llvm.ptr
    %4 = llvm.icmp "ne" %0, %3 : !llvm.ptr
    cf.cond_br %4, ^bb0, ^bb1
    ^bb0:
      %5 = arith.constant 1 : i32
      %6 = arith.constant 0 : i32
      %7 = arith.extsi %6 : i32 to i64
      %8 = llvm.getelementptr %0[%7] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %5, %8 : i32, !llvm.ptr
      cf.br ^bb2
    ^bb1:
      cf.br ^bb2
    ^bb2:
    %9 = llvm.mlir.undef : !llvm.struct<(!llvm.ptr, i32)>
    %10 = llvm.insertvalue %0, %9[0] : !llvm.struct<(!llvm.ptr, i32)>
    %11 = arith.constant 1 : i32
    %12 = llvm.insertvalue %11, %10[1] : !llvm.struct<(!llvm.ptr, i32)>
    %13 = llvm.mlir.undef : !llvm.struct<(!llvm.ptr, i32)>
    %14 = llvm.extractvalue %12[0] : !llvm.struct<(!llvm.ptr, i32)>
    %15 = llvm.insertvalue %14, %13[0] : !llvm.struct<(!llvm.ptr, i32)>
    %16 = llvm.extractvalue %12[1] : !llvm.struct<(!llvm.ptr, i32)>
    %17 = llvm.insertvalue %16, %15[1] : !llvm.struct<(!llvm.ptr, i32)>
    %18 = llvm.mlir.constant(1 : i64) : i64
    %19 = llvm.alloca %18 x !llvm.struct<(!llvm.ptr, i32)> : (i64) -> !llvm.ptr
    llvm.store %17, %19 : !llvm.struct<(!llvm.ptr, i32)>, !llvm.ptr
    %20 = llvm.load %19 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    func.return %20 : !llvm.struct<(!llvm.ptr, i32)>
  }
  func.func @digits_set_one(%arg0: !llvm.ptr) -> () {
    %21 = arith.constant 1 : i32
    %23 = arith.constant 0 : i32
    %24 = arith.extsi %23 : i32 to i64
    %25 = llvm.getelementptr %arg0[%24] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %22 = llvm.load %25 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %26 = arith.constant 0 : i32
    %27 = arith.extsi %26 : i32 to i64
    %28 = llvm.getelementptr %arg0[%27] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %29 = llvm.getelementptr %28[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %30 = llvm.load %29 : !llvm.ptr -> !llvm.ptr
    %31 = arith.constant 0 : i32
    %32 = arith.extsi %31 : i32 to i64
    %33 = llvm.getelementptr %30[%32] : (!llvm.ptr, i64) -> !llvm.ptr, i32
    llvm.store %21, %33 : i32, !llvm.ptr
    %34 = arith.constant 1 : i32
    %35 = arith.constant 0 : i32
    %36 = arith.extsi %35 : i32 to i64
    %37 = llvm.getelementptr %arg0[%36] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %38 = llvm.getelementptr %37[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    llvm.store %34, %38 : i32, !llvm.ptr
    func.return
  }
  func.func @digits_set_u64(%arg0: !llvm.ptr, %arg1: i64) -> () {
    %39 = llvm.mlir.constant(1 : i64) : i64
    %40 = llvm.alloca %39 x i64 : (i64) -> !llvm.ptr
    llvm.store %arg1, %40 : i64, !llvm.ptr
    %41 = arith.constant 0 : i32
    %42 = llvm.mlir.constant(1 : i64) : i64
    %43 = llvm.alloca %42 x i32 : (i64) -> !llvm.ptr
    llvm.store %41, %43 : i32, !llvm.ptr
    %44 = llvm.load %40 : !llvm.ptr -> i64
    %45 = arith.constant 0 : i32
    %47 = arith.extsi %45 : i32 to i64
    %46 = arith.cmpi eq, %44, %47 : i64
    cf.cond_br %46, ^bb3, ^bb4
    ^bb3:
      %48 = arith.constant 0 : i32
      %50 = arith.constant 0 : i32
      %51 = arith.extsi %50 : i32 to i64
      %52 = llvm.getelementptr %arg0[%51] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %49 = llvm.load %52 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %53 = arith.constant 0 : i32
      %54 = arith.extsi %53 : i32 to i64
      %55 = llvm.getelementptr %arg0[%54] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %56 = llvm.getelementptr %55[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %57 = llvm.load %56 : !llvm.ptr -> !llvm.ptr
      %58 = arith.constant 0 : i32
      %59 = arith.extsi %58 : i32 to i64
      %60 = llvm.getelementptr %57[%59] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %48, %60 : i32, !llvm.ptr
      %61 = arith.constant 1 : i32
      %62 = arith.constant 0 : i32
      %63 = arith.extsi %62 : i32 to i64
      %64 = llvm.getelementptr %arg0[%63] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %65 = llvm.getelementptr %64[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      llvm.store %61, %65 : i32, !llvm.ptr
      func.return
    ^bb4:
      cf.br ^bb5
    ^bb5:
    cf.br ^bb6
    ^bb6:
    %66 = llvm.load %40 : !llvm.ptr -> i64
    %67 = arith.constant 0 : i32
    %69 = arith.extsi %67 : i32 to i64
    %68 = arith.cmpi sgt, %66, %69 : i64
    cf.cond_br %68, ^bb7, ^bb8
    ^bb7:
      %70 = llvm.load %40 : !llvm.ptr -> i64
      %71 = arith.constant 10 : i32
      %73 = arith.extsi %71 : i32 to i64
      %72 = arith.remsi %70, %73 : i64
      %74 = arith.trunci %72 : i64 to i32
      %76 = arith.constant 0 : i32
      %77 = arith.extsi %76 : i32 to i64
      %78 = llvm.getelementptr %arg0[%77] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %75 = llvm.load %78 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %79 = arith.constant 0 : i32
      %80 = arith.extsi %79 : i32 to i64
      %81 = llvm.getelementptr %arg0[%80] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %82 = llvm.getelementptr %81[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %83 = llvm.load %82 : !llvm.ptr -> !llvm.ptr
      %84 = llvm.load %43 : !llvm.ptr -> i32
      %85 = arith.extsi %84 : i32 to i64
      %86 = llvm.getelementptr %83[%85] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %74, %86 : i32, !llvm.ptr
      %87 = llvm.load %40 : !llvm.ptr -> i64
      %88 = arith.constant 10 : i32
      %90 = arith.extsi %88 : i32 to i64
      %89 = arith.divsi %87, %90 : i64
      llvm.store %89, %40 : i64, !llvm.ptr
      %91 = llvm.load %43 : !llvm.ptr -> i32
      %92 = arith.constant 1 : i32
      %93 = arith.addi %91, %92 : i32
      llvm.store %93, %43 : i32, !llvm.ptr
      cf.br ^bb6
    ^bb8:
    %94 = llvm.load %43 : !llvm.ptr -> i32
    %95 = arith.constant 0 : i32
    %96 = arith.extsi %95 : i32 to i64
    %97 = llvm.getelementptr %arg0[%96] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %98 = llvm.getelementptr %97[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    llvm.store %94, %98 : i32, !llvm.ptr
    func.return
  }
  func.func @digits_mul_u32(%arg0: !llvm.ptr, %arg1: i32) -> () {
    %99 = arith.constant 0 : i32
    %100 = llvm.mlir.constant(1 : i64) : i64
    %101 = llvm.alloca %100 x i32 : (i64) -> !llvm.ptr
    llvm.store %99, %101 : i32, !llvm.ptr
    %102 = arith.constant 0 : i32
    %104 = arith.constant 0 : i32
    %105 = arith.extsi %104 : i32 to i64
    %106 = llvm.getelementptr %arg0[%105] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %103 = llvm.load %106 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %107 = arith.constant 0 : i32
    %108 = arith.extsi %107 : i32 to i64
    %109 = llvm.getelementptr %arg0[%108] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %110 = llvm.getelementptr %109[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %111 = llvm.load %110 : !llvm.ptr -> i32
    %112 = arith.index_cast %102 : i32 to index
    %113 = arith.index_cast %111 : i32 to index
    %115 = arith.constant 1 : index
    %116 = arith.constant -1 : index
    %117 = arith.cmpi sle, %112, %113 : index
    %114 = arith.select %117, %115, %116 : index
    cf.br ^bb9(%112 : index)
    ^bb9(%118: index):
    %119 = arith.cmpi slt, %118, %113 : index
    %120 = arith.cmpi sgt, %118, %113 : index
    %121 = arith.select %117, %119, %120 : i1
    cf.cond_br %121, ^bb10(%118 : index), ^bb11(%118 : index)
    ^bb10(%122: index):
      %125 = arith.constant 0 : i32
      %126 = arith.extsi %125 : i32 to i64
      %127 = llvm.getelementptr %arg0[%126] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %124 = llvm.load %127 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %128 = arith.constant 0 : i32
      %129 = arith.extsi %128 : i32 to i64
      %130 = llvm.getelementptr %arg0[%129] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %131 = llvm.getelementptr %130[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %132 = llvm.load %131 : !llvm.ptr -> !llvm.ptr
      %133 = arith.index_cast %122 : index to i64
      %134 = llvm.getelementptr %132[%133] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %123 = llvm.load %134 : !llvm.ptr -> i32
      %135 = arith.muli %123, %arg1 : i32
      %136 = llvm.load %101 : !llvm.ptr -> i32
      %137 = arith.addi %135, %136 : i32
      %138 = arith.constant 10 : i32
      %139 = arith.remsi %137, %138 : i32
      %141 = arith.constant 0 : i32
      %142 = arith.extsi %141 : i32 to i64
      %143 = llvm.getelementptr %arg0[%142] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %140 = llvm.load %143 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %144 = arith.constant 0 : i32
      %145 = arith.extsi %144 : i32 to i64
      %146 = llvm.getelementptr %arg0[%145] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %147 = llvm.getelementptr %146[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %148 = llvm.load %147 : !llvm.ptr -> !llvm.ptr
      %149 = arith.index_cast %122 : index to i64
      %150 = llvm.getelementptr %148[%149] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %139, %150 : i32, !llvm.ptr
      %151 = arith.constant 10 : i32
      %152 = arith.divsi %137, %151 : i32
      llvm.store %152, %101 : i32, !llvm.ptr
      %153 = arith.addi %122, %114 : index
      cf.br ^bb9(%153 : index)
    ^bb11(%154: index):
    cf.br ^bb12
    ^bb12:
    %155 = llvm.load %101 : !llvm.ptr -> i32
    %156 = arith.constant 0 : i32
    %157 = arith.cmpi sgt, %155, %156 : i32
    cf.cond_br %157, ^bb13, ^bb14
    ^bb13:
      %158 = llvm.load %101 : !llvm.ptr -> i32
      %159 = arith.constant 10 : i32
      %160 = arith.remsi %158, %159 : i32
      %162 = arith.constant 0 : i32
      %163 = arith.extsi %162 : i32 to i64
      %164 = llvm.getelementptr %arg0[%163] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %161 = llvm.load %164 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %165 = arith.constant 0 : i32
      %166 = arith.extsi %165 : i32 to i64
      %167 = llvm.getelementptr %arg0[%166] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %168 = llvm.getelementptr %167[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %169 = llvm.load %168 : !llvm.ptr -> !llvm.ptr
      %171 = arith.constant 0 : i32
      %172 = arith.extsi %171 : i32 to i64
      %173 = llvm.getelementptr %arg0[%172] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %170 = llvm.load %173 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %174 = arith.constant 0 : i32
      %175 = arith.extsi %174 : i32 to i64
      %176 = llvm.getelementptr %arg0[%175] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %177 = llvm.getelementptr %176[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %178 = llvm.load %177 : !llvm.ptr -> i32
      %179 = arith.extsi %178 : i32 to i64
      %180 = llvm.getelementptr %169[%179] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %160, %180 : i32, !llvm.ptr
      %181 = llvm.load %101 : !llvm.ptr -> i32
      %182 = arith.constant 10 : i32
      %183 = arith.divsi %181, %182 : i32
      llvm.store %183, %101 : i32, !llvm.ptr
      %185 = arith.constant 0 : i32
      %186 = arith.extsi %185 : i32 to i64
      %187 = llvm.getelementptr %arg0[%186] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %184 = llvm.load %187 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %188 = arith.constant 0 : i32
      %189 = arith.extsi %188 : i32 to i64
      %190 = llvm.getelementptr %arg0[%189] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %191 = llvm.getelementptr %190[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %192 = llvm.load %191 : !llvm.ptr -> i32
      %193 = arith.constant 1 : i32
      %194 = arith.addi %192, %193 : i32
      %195 = arith.constant 0 : i32
      %196 = arith.extsi %195 : i32 to i64
      %197 = llvm.getelementptr %arg0[%196] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %198 = llvm.getelementptr %197[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      llvm.store %194, %198 : i32, !llvm.ptr
      cf.br ^bb12
    ^bb14:
    func.return
  }
  func.func @digits_reverse_add(%arg0: !llvm.ptr, %arg1: !llvm.ptr) -> () {
    %200 = arith.constant 0 : i32
    %201 = arith.extsi %200 : i32 to i64
    %202 = llvm.getelementptr %arg0[%201] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %199 = llvm.load %202 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %203 = arith.constant 0 : i32
    %204 = arith.extsi %203 : i32 to i64
    %205 = llvm.getelementptr %arg0[%204] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %206 = llvm.getelementptr %205[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %207 = llvm.load %206 : !llvm.ptr -> i32
    %208 = arith.constant 0 : i32
    %209 = llvm.mlir.constant(1 : i64) : i64
    %210 = llvm.alloca %209 x i32 : (i64) -> !llvm.ptr
    llvm.store %208, %210 : i32, !llvm.ptr
    %211 = arith.constant 0 : i32
    %212 = arith.index_cast %211 : i32 to index
    %213 = arith.index_cast %207 : i32 to index
    %215 = arith.constant 1 : index
    %216 = arith.constant -1 : index
    %217 = arith.cmpi sle, %212, %213 : index
    %214 = arith.select %217, %215, %216 : index
    cf.br ^bb15(%212 : index)
    ^bb15(%218: index):
    %219 = arith.cmpi slt, %218, %213 : index
    %220 = arith.cmpi sgt, %218, %213 : index
    %221 = arith.select %217, %219, %220 : i1
    cf.cond_br %221, ^bb16(%218 : index), ^bb17(%218 : index)
    ^bb16(%222: index):
      %225 = arith.constant 0 : i32
      %226 = arith.extsi %225 : i32 to i64
      %227 = llvm.getelementptr %arg0[%226] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %224 = llvm.load %227 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %228 = arith.constant 0 : i32
      %229 = arith.extsi %228 : i32 to i64
      %230 = llvm.getelementptr %arg0[%229] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %231 = llvm.getelementptr %230[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %232 = llvm.load %231 : !llvm.ptr -> !llvm.ptr
      %233 = arith.index_cast %222 : index to i64
      %234 = llvm.getelementptr %232[%233] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %223 = llvm.load %234 : !llvm.ptr -> i32
      %237 = arith.constant 0 : i32
      %238 = arith.extsi %237 : i32 to i64
      %239 = llvm.getelementptr %arg0[%238] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %236 = llvm.load %239 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %240 = arith.constant 0 : i32
      %241 = arith.extsi %240 : i32 to i64
      %242 = llvm.getelementptr %arg0[%241] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %243 = llvm.getelementptr %242[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %244 = llvm.load %243 : !llvm.ptr -> !llvm.ptr
      %245 = arith.constant 1 : i32
      %246 = arith.subi %207, %245 : i32
      %248 = arith.index_cast %222 : index to i32
      %247 = arith.subi %246, %248 : i32
      %249 = arith.extsi %247 : i32 to i64
      %250 = llvm.getelementptr %244[%249] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %235 = llvm.load %250 : !llvm.ptr -> i32
      %251 = arith.addi %223, %235 : i32
      %252 = llvm.load %210 : !llvm.ptr -> i32
      %253 = arith.addi %251, %252 : i32
      %254 = arith.constant 10 : i32
      %255 = arith.remsi %253, %254 : i32
      %256 = arith.index_cast %222 : index to i64
      %257 = llvm.getelementptr %arg1[%256] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %255, %257 : i32, !llvm.ptr
      %258 = arith.constant 10 : i32
      %259 = arith.divsi %253, %258 : i32
      llvm.store %259, %210 : i32, !llvm.ptr
      %260 = arith.addi %222, %214 : index
      cf.br ^bb15(%260 : index)
    ^bb17(%261: index):
    %262 = llvm.mlir.constant(1 : i64) : i64
    %263 = llvm.alloca %262 x i32 : (i64) -> !llvm.ptr
    llvm.store %207, %263 : i32, !llvm.ptr
    %264 = llvm.load %210 : !llvm.ptr -> i32
    %265 = arith.constant 0 : i32
    %266 = arith.cmpi sgt, %264, %265 : i32
    cf.cond_br %266, ^bb18, ^bb19
    ^bb18:
      %267 = llvm.load %210 : !llvm.ptr -> i32
      %268 = llvm.load %263 : !llvm.ptr -> i32
      %269 = arith.extsi %268 : i32 to i64
      %270 = llvm.getelementptr %arg1[%269] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %267, %270 : i32, !llvm.ptr
      %271 = llvm.load %263 : !llvm.ptr -> i32
      %272 = arith.constant 1 : i32
      %273 = arith.addi %271, %272 : i32
      llvm.store %273, %263 : i32, !llvm.ptr
      cf.br ^bb20
    ^bb19:
      cf.br ^bb20
    ^bb20:
    %274 = arith.constant 0 : i32
    %275 = llvm.load %263 : !llvm.ptr -> i32
    %276 = arith.index_cast %274 : i32 to index
    %277 = arith.index_cast %275 : i32 to index
    %279 = arith.constant 1 : index
    %280 = arith.constant -1 : index
    %281 = arith.cmpi sle, %276, %277 : index
    %278 = arith.select %281, %279, %280 : index
    cf.br ^bb21(%276 : index)
    ^bb21(%282: index):
    %283 = arith.cmpi slt, %282, %277 : index
    %284 = arith.cmpi sgt, %282, %277 : index
    %285 = arith.select %281, %283, %284 : i1
    cf.cond_br %285, ^bb22(%282 : index), ^bb23(%282 : index)
    ^bb22(%286: index):
      %288 = arith.index_cast %286 : index to i64
      %289 = llvm.getelementptr %arg1[%288] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %287 = llvm.load %289 : !llvm.ptr -> i32
      %291 = arith.constant 0 : i32
      %292 = arith.extsi %291 : i32 to i64
      %293 = llvm.getelementptr %arg0[%292] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %290 = llvm.load %293 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %294 = arith.constant 0 : i32
      %295 = arith.extsi %294 : i32 to i64
      %296 = llvm.getelementptr %arg0[%295] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %297 = llvm.getelementptr %296[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %298 = llvm.load %297 : !llvm.ptr -> !llvm.ptr
      %299 = arith.index_cast %286 : index to i64
      %300 = llvm.getelementptr %298[%299] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      llvm.store %287, %300 : i32, !llvm.ptr
      %301 = arith.addi %286, %278 : index
      cf.br ^bb21(%301 : index)
    ^bb23(%302: index):
    %303 = llvm.load %263 : !llvm.ptr -> i32
    %304 = arith.constant 0 : i32
    %305 = arith.extsi %304 : i32 to i64
    %306 = llvm.getelementptr %arg0[%305] : (!llvm.ptr, i64) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %307 = llvm.getelementptr %306[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    llvm.store %303, %307 : i32, !llvm.ptr
    func.return
  }
  func.func @digits_is_palindrome(%arg0: !llvm.struct<(!llvm.ptr, i32)>) -> i1 {
    %308 = llvm.mlir.undef : !llvm.struct<(!llvm.ptr, i32)>
    %309 = llvm.extractvalue %arg0[0] : !llvm.struct<(!llvm.ptr, i32)>
    %310 = llvm.insertvalue %309, %308[0] : !llvm.struct<(!llvm.ptr, i32)>
    %311 = llvm.extractvalue %arg0[1] : !llvm.struct<(!llvm.ptr, i32)>
    %312 = llvm.insertvalue %311, %310[1] : !llvm.struct<(!llvm.ptr, i32)>
    %313 = llvm.mlir.constant(1 : i64) : i64
    %314 = llvm.alloca %313 x !llvm.struct<(!llvm.ptr, i32)> : (i64) -> !llvm.ptr
    llvm.store %312, %314 : !llvm.struct<(!llvm.ptr, i32)>, !llvm.ptr
    %315 = llvm.load %314 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %316 = llvm.getelementptr %314[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %317 = llvm.load %316 : !llvm.ptr -> i32
    %318 = arith.constant 2 : i32
    %319 = arith.divsi %317, %318 : i32
    %320 = arith.constant 0 : i32
    %321 = arith.index_cast %320 : i32 to index
    %322 = arith.index_cast %319 : i32 to index
    %324 = arith.constant 1 : index
    %325 = arith.constant -1 : index
    %326 = arith.cmpi sle, %321, %322 : index
    %323 = arith.select %326, %324, %325 : index
    cf.br ^bb24(%321 : index)
    ^bb24(%327: index):
    %328 = arith.cmpi slt, %327, %322 : index
    %329 = arith.cmpi sgt, %327, %322 : index
    %330 = arith.select %326, %328, %329 : i1
    cf.cond_br %330, ^bb25(%327 : index), ^bb26(%327 : index)
    ^bb25(%331: index):
      %333 = llvm.load %314 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %334 = llvm.getelementptr %314[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %335 = llvm.load %334 : !llvm.ptr -> !llvm.ptr
      %336 = arith.index_cast %331 : index to i64
      %337 = llvm.getelementptr %335[%336] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %332 = llvm.load %337 : !llvm.ptr -> i32
      %339 = llvm.load %314 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %340 = llvm.getelementptr %314[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %341 = llvm.load %340 : !llvm.ptr -> !llvm.ptr
      %342 = llvm.load %314 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %343 = llvm.getelementptr %314[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %344 = llvm.load %343 : !llvm.ptr -> i32
      %345 = arith.constant 1 : i32
      %346 = arith.subi %344, %345 : i32
      %348 = arith.index_cast %331 : index to i32
      %347 = arith.subi %346, %348 : i32
      %349 = arith.extsi %347 : i32 to i64
      %350 = llvm.getelementptr %341[%349] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %338 = llvm.load %350 : !llvm.ptr -> i32
      %351 = arith.cmpi ne, %332, %338 : i32
      cf.cond_br %351, ^bb27, ^bb28
      ^bb27:
        %352 = arith.constant 0 : i1
        func.return %352 : i1
      ^bb28:
        cf.br ^bb29
      ^bb29:
      %353 = arith.addi %331, %323 : index
      cf.br ^bb24(%353 : index)
    ^bb26(%354: index):
    %355 = arith.constant 1 : i1
    func.return %355 : i1
  }
  func.func @digits_sum(%arg0: !llvm.struct<(!llvm.ptr, i32)>) -> i64 {
    %356 = llvm.mlir.undef : !llvm.struct<(!llvm.ptr, i32)>
    %357 = llvm.extractvalue %arg0[0] : !llvm.struct<(!llvm.ptr, i32)>
    %358 = llvm.insertvalue %357, %356[0] : !llvm.struct<(!llvm.ptr, i32)>
    %359 = llvm.extractvalue %arg0[1] : !llvm.struct<(!llvm.ptr, i32)>
    %360 = llvm.insertvalue %359, %358[1] : !llvm.struct<(!llvm.ptr, i32)>
    %361 = llvm.mlir.constant(1 : i64) : i64
    %362 = llvm.alloca %361 x !llvm.struct<(!llvm.ptr, i32)> : (i64) -> !llvm.ptr
    llvm.store %360, %362 : !llvm.struct<(!llvm.ptr, i32)>, !llvm.ptr
    %363 = arith.constant 0 : i32
    %364 = arith.extsi %363 : i32 to i64
    %365 = llvm.mlir.constant(1 : i64) : i64
    %366 = llvm.alloca %365 x i64 : (i64) -> !llvm.ptr
    llvm.store %364, %366 : i64, !llvm.ptr
    %367 = arith.constant 0 : i32
    %368 = llvm.load %362 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %369 = llvm.getelementptr %362[0, 1] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %370 = llvm.load %369 : !llvm.ptr -> i32
    %371 = arith.index_cast %367 : i32 to index
    %372 = arith.index_cast %370 : i32 to index
    %374 = arith.constant 1 : index
    %375 = arith.constant -1 : index
    %376 = arith.cmpi sle, %371, %372 : index
    %373 = arith.select %376, %374, %375 : index
    cf.br ^bb30(%371 : index)
    ^bb30(%377: index):
    %378 = arith.cmpi slt, %377, %372 : index
    %379 = arith.cmpi sgt, %377, %372 : index
    %380 = arith.select %376, %378, %379 : i1
    cf.cond_br %380, ^bb31(%377 : index), ^bb32(%377 : index)
    ^bb31(%381: index):
      %382 = llvm.load %366 : !llvm.ptr -> i64
      %384 = llvm.load %362 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
      %385 = llvm.getelementptr %362[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
      %386 = llvm.load %385 : !llvm.ptr -> !llvm.ptr
      %387 = arith.index_cast %381 : index to i64
      %388 = llvm.getelementptr %386[%387] : (!llvm.ptr, i64) -> !llvm.ptr, i32
      %383 = llvm.load %388 : !llvm.ptr -> i32
      %389 = arith.extsi %383 : i32 to i64
      %390 = arith.addi %382, %389 : i64
      llvm.store %390, %366 : i64, !llvm.ptr
      %391 = arith.addi %381, %373 : index
      cf.br ^bb30(%391 : index)
    ^bb32(%392: index):
    %393 = llvm.load %366 : !llvm.ptr -> i64
    func.return %393 : i64
  }
  func.func private @free(!llvm.ptr) -> ()
  func.func @main() -> i32 {
    %395 = arith.constant 200 : i32
    %396 = arith.extsi %395 : i32 to i64
    %394 = func.call @digits_one(%396) : (i64) -> !llvm.struct<(!llvm.ptr, i32)>
    %397 = llvm.mlir.undef : !llvm.struct<(!llvm.ptr, i32)>
    %398 = llvm.extractvalue %394[0] : !llvm.struct<(!llvm.ptr, i32)>
    %399 = llvm.insertvalue %398, %397[0] : !llvm.struct<(!llvm.ptr, i32)>
    %400 = llvm.extractvalue %394[1] : !llvm.struct<(!llvm.ptr, i32)>
    %401 = llvm.insertvalue %400, %399[1] : !llvm.struct<(!llvm.ptr, i32)>
    %402 = llvm.mlir.constant(1 : i64) : i64
    %403 = llvm.alloca %402 x !llvm.struct<(!llvm.ptr, i32)> : (i64) -> !llvm.ptr
    llvm.store %401, %403 : !llvm.struct<(!llvm.ptr, i32)>, !llvm.ptr
    %404 = llvm.load %403 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %405 = llvm.mlir.constant(1 : i64) : i64
    %406 = llvm.alloca %405 x !llvm.struct<(!llvm.ptr, i32)> : (i64) -> !llvm.ptr
    llvm.store %404, %406 : !llvm.struct<(!llvm.ptr, i32)>, !llvm.ptr
    %407 = llvm.load %406 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %408 = llvm.getelementptr %406[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %409 = llvm.load %408 : !llvm.ptr -> !llvm.ptr
    %410 = llvm.mlir.zero : !llvm.ptr
    %411 = llvm.icmp "eq" %409, %410 : !llvm.ptr
    cf.cond_br %411, ^bb33, ^bb34
    ^bb33:
      %412 = arith.constant 1 : i32
      func.return %412 : i32
    ^bb34:
      cf.br ^bb35
    ^bb35:
    %413 = arith.constant 2 : i32
    %414 = arith.constant 101 : i32
    %415 = arith.index_cast %413 : i32 to index
    %416 = arith.index_cast %414 : i32 to index
    %418 = arith.constant 1 : index
    %419 = arith.constant -1 : index
    %420 = arith.cmpi sle, %415, %416 : index
    %417 = arith.select %420, %418, %419 : index
    cf.br ^bb36(%415 : index)
    ^bb36(%421: index):
    %422 = arith.cmpi slt, %421, %416 : index
    %423 = arith.cmpi sgt, %421, %416 : index
    %424 = arith.select %420, %422, %423 : i1
    cf.cond_br %424, ^bb37(%421 : index), ^bb38(%421 : index)
    ^bb37(%425: index):
      %427 = arith.index_cast %425 : index to i32
      func.call @digits_mul_u32(%406, %427) : (!llvm.ptr, i32) -> ()
      %428 = arith.addi %425, %417 : index
      cf.br ^bb36(%428 : index)
    ^bb38(%429: index):
    %430 = llvm.mlir.addressof @str_0 : !llvm.ptr
    %432 = llvm.load %406 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %431 = func.call @digits_sum(%432) : (!llvm.struct<(!llvm.ptr, i32)>) -> i64
    %433 = llvm.call @printf(%430, %431) vararg(!llvm.func<i32 (ptr, ...)>) : (!llvm.ptr, i64) -> i32
    %435 = llvm.load %406 : !llvm.ptr -> !llvm.struct<(!llvm.ptr, i32)>
    %436 = llvm.getelementptr %406[0, 0] : (!llvm.ptr) -> !llvm.ptr, !llvm.struct<(!llvm.ptr, i32)>
    %437 = llvm.load %436 : !llvm.ptr -> !llvm.ptr
    func.call @free(%437) : (!llvm.ptr) -> ()
    %438 = arith.constant 0 : i32
    func.return %438 : i32
  }
}