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qukit

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import * as wasm from './qukit_bg.wasm';

const lTextDecoder = typeof TextDecoder === 'undefined' ? (0, module.require)('util').TextDecoder : TextDecoder;

let cachedTextDecoder = new lTextDecoder('utf-8', { ignoreBOM: true, fatal: true });

cachedTextDecoder.decode();

let cachedUint8Memory0;
function getUint8Memory0() {
    if (cachedUint8Memory0.byteLength === 0) {
        cachedUint8Memory0 = new Uint8Array(wasm.memory.buffer);
    }
    return cachedUint8Memory0;
}

function getStringFromWasm0(ptr, len) {
    return cachedTextDecoder.decode(getUint8Memory0().subarray(ptr, ptr + len));
}

const heap = new Array(32).fill(undefined);

heap.push(undefined, null, true, false);

let heap_next = heap.length;

function addHeapObject(obj) {
    if (heap_next === heap.length) heap.push(heap.length + 1);
    const idx = heap_next;
    heap_next = heap[idx];

    heap[idx] = obj;
    return idx;
}

function getObject(idx) { return heap[idx]; }

function dropObject(idx) {
    if (idx < 36) return;
    heap[idx] = heap_next;
    heap_next = idx;
}

function takeObject(idx) {
    const ret = getObject(idx);
    dropObject(idx);
    return ret;
}

function debugString(val) {
    // primitive types
    const type = typeof val;
    if (type == 'number' || type == 'boolean' || val == null) {
        return  `${val}`;
    }
    if (type == 'string') {
        return `"${val}"`;
    }
    if (type == 'symbol') {
        const description = val.description;
        if (description == null) {
            return 'Symbol';
        } else {
            return `Symbol(${description})`;
        }
    }
    if (type == 'function') {
        const name = val.name;
        if (typeof name == 'string' && name.length > 0) {
            return `Function(${name})`;
        } else {
            return 'Function';
        }
    }
    // objects
    if (Array.isArray(val)) {
        const length = val.length;
        let debug = '[';
        if (length > 0) {
            debug += debugString(val[0]);
        }
        for(let i = 1; i < length; i++) {
            debug += ', ' + debugString(val[i]);
        }
        debug += ']';
        return debug;
    }
    // Test for built-in
    const builtInMatches = /\[object ([^\]]+)\]/.exec(toString.call(val));
    let className;
    if (builtInMatches.length > 1) {
        className = builtInMatches[1];
    } else {
        // Failed to match the standard '[object ClassName]'
        return toString.call(val);
    }
    if (className == 'Object') {
        // we're a user defined class or Object
        // JSON.stringify avoids problems with cycles, and is generally much
        // easier than looping through ownProperties of `val`.
        try {
            return 'Object(' + JSON.stringify(val) + ')';
        } catch (_) {
            return 'Object';
        }
    }
    // errors
    if (val instanceof Error) {
        return `${val.name}: ${val.message}\n${val.stack}`;
    }
    // TODO we could test for more things here, like `Set`s and `Map`s.
    return className;
}

let WASM_VECTOR_LEN = 0;

const lTextEncoder = typeof TextEncoder === 'undefined' ? (0, module.require)('util').TextEncoder : TextEncoder;

let cachedTextEncoder = new lTextEncoder('utf-8');

const encodeString = (typeof cachedTextEncoder.encodeInto === 'function'
    ? function (arg, view) {
    return cachedTextEncoder.encodeInto(arg, view);
}
    : function (arg, view) {
    const buf = cachedTextEncoder.encode(arg);
    view.set(buf);
    return {
        read: arg.length,
        written: buf.length
    };
});

function passStringToWasm0(arg, malloc, realloc) {

    if (realloc === undefined) {
        const buf = cachedTextEncoder.encode(arg);
        const ptr = malloc(buf.length);
        getUint8Memory0().subarray(ptr, ptr + buf.length).set(buf);
        WASM_VECTOR_LEN = buf.length;
        return ptr;
    }

    let len = arg.length;
    let ptr = malloc(len);

    const mem = getUint8Memory0();

    let offset = 0;

    for (; offset < len; offset++) {
        const code = arg.charCodeAt(offset);
        if (code > 0x7F) break;
        mem[ptr + offset] = code;
    }

    if (offset !== len) {
        if (offset !== 0) {
            arg = arg.slice(offset);
        }
        ptr = realloc(ptr, len, len = offset + arg.length * 3);
        const view = getUint8Memory0().subarray(ptr + offset, ptr + len);
        const ret = encodeString(arg, view);

        offset += ret.written;
    }

    WASM_VECTOR_LEN = offset;
    return ptr;
}

let cachedInt32Memory0;
function getInt32Memory0() {
    if (cachedInt32Memory0.byteLength === 0) {
        cachedInt32Memory0 = new Int32Array(wasm.memory.buffer);
    }
    return cachedInt32Memory0;
}

let cachedUint32Memory0;
function getUint32Memory0() {
    if (cachedUint32Memory0.byteLength === 0) {
        cachedUint32Memory0 = new Uint32Array(wasm.memory.buffer);
    }
    return cachedUint32Memory0;
}

function getArrayJsValueFromWasm0(ptr, len) {
    const mem = getUint32Memory0();
    const slice = mem.subarray(ptr / 4, ptr / 4 + len);
    const result = [];
    for (let i = 0; i < slice.length; i++) {
        result.push(takeObject(slice[i]));
    }
    return result;
}

function _assertClass(instance, klass) {
    if (!(instance instanceof klass)) {
        throw new Error(`expected instance of ${klass.name}`);
    }
    return instance.ptr;
}
/**
* @param {QBit} qbit
*/
export function hadamard(qbit) {
    _assertClass(qbit, QBit);
    wasm.hadamard(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_hadamard(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_hadamard(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_hadamard(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_hadamard(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function hadamard_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.hadamard_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_hadamard_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_hadamard_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_hadamard_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_hadamard_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function hadamard_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.hadamard_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function hadamard_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.hadamard_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_x(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_x(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_x(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_x(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_x(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_x(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_x_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_x_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_x_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_x_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_x_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_x_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_x_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_x_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_x_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_x_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_y(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_y(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_y(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_y(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_y(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_y(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_y_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_y_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_y_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_y_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_y_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_y_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_y_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_y_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_y_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_y_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_z(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_z(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_z(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_z(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_z(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_z(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_z_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_z_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_z_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_z_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_z_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_z_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_z_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_z_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_z_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_z_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_dagger(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_dagger(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_dagger(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_dagger(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_dagger(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_dagger(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_dagger_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_dagger_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_dagger_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_dagger_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_dagger_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_dagger_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_dagger_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_dagger_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_dagger_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_dagger_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_root(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_root(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_root(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_root(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_root(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_root(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_root_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_root_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_root_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_root_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_root_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_root_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_root_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_root_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_root_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_root_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_root_dagger(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_root_dagger(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_root_dagger(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_root_dagger(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_root_dagger(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_root_dagger(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function phase_root_dagger_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.phase_root_dagger_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_phase_root_dagger_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_phase_root_dagger_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_phase_root_dagger_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_phase_root_dagger_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_root_dagger_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_root_dagger_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function phase_root_dagger_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.phase_root_dagger_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_x_root(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_x_root(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_x_root(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_x_root(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_x_root(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_x_root(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function pauli_x_root_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.pauli_x_root_same_step(qbit.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_pauli_x_root_same_step(c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_pauli_x_root_same_step(c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_pauli_x_root_same_step(c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_pauli_x_root_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_x_root_same_step_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_x_root_same_step_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function pauli_x_root_classically_controlled(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.pauli_x_root_classically_controlled(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function swap(qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.swap(qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_swap(c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_swap(c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_swap(c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_swap(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function swap_same_step(qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.swap_same_step(qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_swap_same_step(c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_swap_same_step(c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_swap_same_step(c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_swap_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function swap_same_step_classically_controlled(qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.swap_same_step_classically_controlled(qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function swap_classically_controlled(qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.swap_classically_controlled(qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function swap_root(qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.swap_root(qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_swap_root(c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_swap_root(c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_swap_root(c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_swap_root(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function swap_root_same_step(qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.swap_root_same_step(qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_swap_root_same_step(c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_swap_root_same_step(c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_swap_root_same_step(c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_swap_root_same_step(c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function swap_root_same_step_classically_controlled(qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.swap_root_same_step_classically_controlled(qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function swap_root_classically_controlled(qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.swap_root_classically_controlled(qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_hadamard(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_hadamard(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_hadamard(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_hadamard(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_hadamard(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_hadamard(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_hadamard_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_hadamard_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_hadamard_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_hadamard_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_hadamard_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_hadamard_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_hadamard_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_hadamard_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_hadamard_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_hadamard_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_x(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_x(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_x(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_x(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_x(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_x(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_x_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_x_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_x_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_x_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_x_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_x_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_x_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_x_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_x_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_x_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_y(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_y(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_y(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_y(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_y(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_y(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_y_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_y_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_y_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_y_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_y_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_y_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_y_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_y_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_y_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_y_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_z(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_z(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_z(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_z(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_z(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_z(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_pauli_z_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_pauli_z_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_pauli_z_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_pauli_z_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_pauli_z_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_pauli_z_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_z_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_z_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_pauli_z_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_pauli_z_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_x(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_x(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_x(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_x(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_x(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_x(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_x_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_x_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_x_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_x_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_x_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_x_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_x_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_x_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_x_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_x_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_y(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_y(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_y(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_y(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_y(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_y(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_y_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_y_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_y_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_y_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_y_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_y_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_y_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_y_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_y_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_y_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_z(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_z(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_z(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_z(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_z(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_z(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
*/
export function rotation_z_same_step(theta, qbit) {
    _assertClass(qbit, QBit);
    wasm.rotation_z_same_step(theta, qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit
*/
export function controlled_rotation_z_same_step(theta, c_qbit, t_qbit) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_rotation_z_same_step(theta, c_qbit.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit
*/
export function controlled_controlled_rotation_z_same_step(theta, c_qbit_0, c_qbit_1, t_qbit) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit, QBit);
    wasm.controlled_controlled_rotation_z_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_z_same_step_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_z_same_step_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit
* @param {Bit} bit
*/
export function rotation_z_classically_controlled(theta, qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_z_classically_controlled(theta, qbit.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function rotation_swap(theta, qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.rotation_swap(theta, qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_rotation_swap(theta, c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_rotation_swap(theta, c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_rotation_swap(theta, c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_rotation_swap(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit_0
* @param {QBit} qbit_1
*/
export function rotation_swap_same_step(theta, qbit_0, qbit_1) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    wasm.rotation_swap_same_step(theta, qbit_0.ptr, qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_rotation_swap_same_step(theta, c_qbit, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_rotation_swap_same_step(theta, c_qbit.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} c_qbit_0
* @param {QBit} c_qbit_1
* @param {QBit} t_qbit_0
* @param {QBit} t_qbit_1
*/
export function controlled_controlled_rotation_swap_same_step(theta, c_qbit_0, c_qbit_1, t_qbit_0, t_qbit_1) {
    _assertClass(c_qbit_0, QBit);
    _assertClass(c_qbit_1, QBit);
    _assertClass(t_qbit_0, QBit);
    _assertClass(t_qbit_1, QBit);
    wasm.controlled_controlled_rotation_swap_same_step(theta, c_qbit_0.ptr, c_qbit_1.ptr, t_qbit_0.ptr, t_qbit_1.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function rotation_swap_same_step_classically_controlled(theta, qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_swap_same_step_classically_controlled(theta, qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {number} theta
* @param {QBit} qbit_0
* @param {QBit} qbit_1
* @param {Bit} bit
*/
export function rotation_swap_classically_controlled(theta, qbit_0, qbit_1, bit) {
    _assertClass(qbit_0, QBit);
    _assertClass(qbit_1, QBit);
    _assertClass(bit, Bit);
    wasm.rotation_swap_classically_controlled(theta, qbit_0.ptr, qbit_1.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_x(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_x(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_y(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_y(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_z(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_z(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_x_same_step(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_x_same_step(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_y_same_step(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_y_same_step(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
* @param {Bit} bit
*/
export function measurement_z_same_step(qbit, bit) {
    _assertClass(qbit, QBit);
    _assertClass(bit, Bit);
    wasm.measurement_z_same_step(qbit.ptr, bit.ptr);
}

/**
* @param {QBit} qbit
*/
export function reset(qbit) {
    _assertClass(qbit, QBit);
    wasm.reset(qbit.ptr);
}

/**
* @param {QBit} qbit
*/
export function reset_same_step(qbit) {
    _assertClass(qbit, QBit);
    wasm.reset_same_step(qbit.ptr);
}

function notDefined(what) { return () => { throw new Error(`${what} is not defined`); }; }
/**
*/
export class Algorithm {

    static __wrap(ptr) {
        const obj = Object.create(Algorithm.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_algorithm_free(ptr);
    }
    /**
    * @returns {AlgorithmResult}
    */
    run() {
        const ptr = this.__destroy_into_raw();
        const ret = wasm.algorithm_run(ptr);
        return AlgorithmResult.__wrap(ret);
    }
    /**
    * @returns {AlgorithmResult | undefined}
    */
    step() {
        const ret = wasm.algorithm_step(this.ptr);
        return ret === 0 ? undefined : AlgorithmResult.__wrap(ret);
    }
    /**
    * @param {number} steps
    * @returns {Algorithm}
    */
    intoStepper(steps) {
        const ptr = this.__destroy_into_raw();
        const ret = wasm.algorithm_intoStepper(ptr, steps);
        return Algorithm.__wrap(ret);
    }
}
/**
*/
export class AlgorithmResult {

    static __wrap(ptr) {
        const obj = Object.create(AlgorithmResult.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_algorithmresult_free(ptr);
    }
    /**
    * @returns {QuantumRegister}
    */
    quantumRegister() {
        const ret = wasm.algorithmresult_quantumRegister(this.ptr);
        return QuantumRegister.__wrap(ret);
    }
    /**
    * @returns {ClassicalRegister}
    */
    classicalRegister() {
        const ret = wasm.algorithmresult_classicalRegister(this.ptr);
        return ClassicalRegister.__wrap(ret);
    }
    /**
    */
    log() {
        wasm.algorithmresult_log(this.ptr);
    }
}
/**
*/
export class Bit {

    static __wrap(ptr) {
        const obj = Object.create(Bit.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_bit_free(ptr);
    }
}
/**
*/
export class ClassicalRegister {

    static __wrap(ptr) {
        const obj = Object.create(ClassicalRegister.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_classicalregister_free(ptr);
    }
    /**
    * @returns {(boolean)[]}
    */
    state() {
        try {
            const retptr = wasm.__wbindgen_add_to_stack_pointer(-16);
            wasm.classicalregister_state(retptr, this.ptr);
            var r0 = getInt32Memory0()[retptr / 4 + 0];
            var r1 = getInt32Memory0()[retptr / 4 + 1];
            var v0 = getArrayJsValueFromWasm0(r0, r1).slice();
            wasm.__wbindgen_free(r0, r1 * 4);
            return v0;
        } finally {
            wasm.__wbindgen_add_to_stack_pointer(16);
        }
    }
}
/**
*/
export class GateBuilder {

    static __wrap(ptr) {
        const obj = Object.create(GateBuilder.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_gatebuilder_free(ptr);
    }
    /**
    */
    constructor() {
        const ret = wasm.gatebuilder_new();
        return GateBuilder.__wrap(ret);
    }
    /**
    * @returns {Algorithm}
    */
    intoAlgorithm() {
        const ptr = this.__destroy_into_raw();
        const ret = wasm.gatebuilder_intoAlgorithm(ptr);
        return Algorithm.__wrap(ret);
    }
    /**
    * @returns {QBit}
    */
    qbit() {
        const ret = wasm.gatebuilder_qbit(this.ptr);
        return QBit.__wrap(ret);
    }
    /**
    * @param {number} size
    * @returns {(QBit)[]}
    */
    qbits(size) {
        try {
            const retptr = wasm.__wbindgen_add_to_stack_pointer(-16);
            wasm.gatebuilder_qbits(retptr, this.ptr, size);
            var r0 = getInt32Memory0()[retptr / 4 + 0];
            var r1 = getInt32Memory0()[retptr / 4 + 1];
            var v0 = getArrayJsValueFromWasm0(r0, r1).slice();
            wasm.__wbindgen_free(r0, r1 * 4);
            return v0;
        } finally {
            wasm.__wbindgen_add_to_stack_pointer(16);
        }
    }
    /**
    * @returns {Bit}
    */
    bit() {
        const ret = wasm.gatebuilder_bit(this.ptr);
        return Bit.__wrap(ret);
    }
    /**
    * @param {number} size
    * @returns {(Bit)[]}
    */
    bits(size) {
        try {
            const retptr = wasm.__wbindgen_add_to_stack_pointer(-16);
            wasm.gatebuilder_bits(retptr, this.ptr, size);
            var r0 = getInt32Memory0()[retptr / 4 + 0];
            var r1 = getInt32Memory0()[retptr / 4 + 1];
            var v0 = getArrayJsValueFromWasm0(r0, r1).slice();
            wasm.__wbindgen_free(r0, r1 * 4);
            return v0;
        } finally {
            wasm.__wbindgen_add_to_stack_pointer(16);
        }
    }
}
/**
*/
export class QBit {

    static __wrap(ptr) {
        const obj = Object.create(QBit.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_qbit_free(ptr);
    }
}
/**
*/
export class QuantumRegister {

    static __wrap(ptr) {
        const obj = Object.create(QuantumRegister.prototype);
        obj.ptr = ptr;

        return obj;
    }

    __destroy_into_raw() {
        const ptr = this.ptr;
        this.ptr = 0;

        return ptr;
    }

    free() {
        const ptr = this.__destroy_into_raw();
        wasm.__wbg_quantumregister_free(ptr);
    }
    /**
    * Returns the array of all states
    * @returns {Complex[]}
    */
    states() {
        const ret = wasm.quantumregister_states(this.ptr);
        return takeObject(ret);
    }
    /**
    * Returns the states of this index
    * @param {number} idx
    * @returns {Complex | undefined}
    */
    state(idx) {
        const ret = wasm.quantumregister_state(this.ptr, idx);
        return takeObject(ret);
    }
    /**
    * Returns the probability of all states
    * @returns {Float64Array}
    */
    amplitudes() {
        const ret = wasm.quantumregister_amplitudes(this.ptr);
        return takeObject(ret);
    }
    /**
    * Returns the probabilities of each qbit
    * @returns {Float64Array}
    */
    probabilities() {
        const ret = wasm.quantumregister_probabilities(this.ptr);
        return takeObject(ret);
    }
    /**
    * Returns the probability of a qbit
    * @param {number} bit
    * @returns {number}
    */
    probability(bit) {
        const ret = wasm.quantumregister_probability(this.ptr, bit);
        return ret;
    }
}

export function __wbg_bit_new(arg0) {
    const ret = Bit.__wrap(arg0);
    return addHeapObject(ret);
};

export function __wbg_qbit_new(arg0) {
    const ret = QBit.__wrap(arg0);
    return addHeapObject(ret);
};

export function __wbindgen_json_parse(arg0, arg1) {
    const ret = JSON.parse(getStringFromWasm0(arg0, arg1));
    return addHeapObject(ret);
};

export function __wbindgen_object_drop_ref(arg0) {
    takeObject(arg0);
};

export function __wbg_log_ff4acf48127b42df(arg0, arg1) {
    console.log(getStringFromWasm0(arg0, arg1));
};

export function __wbindgen_object_clone_ref(arg0) {
    const ret = getObject(arg0);
    return addHeapObject(ret);
};

export function __wbindgen_number_new(arg0) {
    const ret = arg0;
    return addHeapObject(ret);
};

export function __wbindgen_string_new(arg0, arg1) {
    const ret = getStringFromWasm0(arg0, arg1);
    return addHeapObject(ret);
};

export function __wbg_set_e93b31d47b90bff6(arg0, arg1, arg2) {
    getObject(arg0)[takeObject(arg1)] = takeObject(arg2);
};

export function __wbg_new_2ab697f1555e0dbc() {
    const ret = new Array();
    return addHeapObject(ret);
};

export function __wbg_new_306ce8d57919e6ae() {
    const ret = new Object();
    return addHeapObject(ret);
};

export function __wbg_set_c1d04f8b45a036e7(arg0, arg1, arg2) {
    getObject(arg0)[arg1 >>> 0] = takeObject(arg2);
};

export const __wbg_random_9f33d5bdc74069f8 = typeof Math.random == 'function' ? Math.random : notDefined('Math.random');

export function __wbg_buffer_de1150f91b23aa89(arg0) {
    const ret = getObject(arg0).buffer;
    return addHeapObject(ret);
};

export function __wbg_newwithbyteoffsetandlength_619dc513616fd769(arg0, arg1, arg2) {
    const ret = new Float64Array(getObject(arg0), arg1 >>> 0, arg2 >>> 0);
    return addHeapObject(ret);
};

export function __wbg_new_5da801be67eeac45(arg0) {
    const ret = new Float64Array(getObject(arg0));
    return addHeapObject(ret);
};

export function __wbg_new_693216e109162396() {
    const ret = new Error();
    return addHeapObject(ret);
};

export function __wbg_stack_0ddaca5d1abfb52f(arg0, arg1) {
    const ret = getObject(arg1).stack;
    const ptr0 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
    const len0 = WASM_VECTOR_LEN;
    getInt32Memory0()[arg0 / 4 + 1] = len0;
    getInt32Memory0()[arg0 / 4 + 0] = ptr0;
};

export function __wbg_error_09919627ac0992f5(arg0, arg1) {
    try {
        console.error(getStringFromWasm0(arg0, arg1));
    } finally {
        wasm.__wbindgen_free(arg0, arg1);
    }
};

export function __wbindgen_debug_string(arg0, arg1) {
    const ret = debugString(getObject(arg1));
    const ptr0 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
    const len0 = WASM_VECTOR_LEN;
    getInt32Memory0()[arg0 / 4 + 1] = len0;
    getInt32Memory0()[arg0 / 4 + 0] = ptr0;
};

export function __wbindgen_throw(arg0, arg1) {
    throw new Error(getStringFromWasm0(arg0, arg1));
};

export function __wbindgen_memory() {
    const ret = wasm.memory;
    return addHeapObject(ret);
};

cachedInt32Memory0 = new Int32Array(wasm.memory.buffer);
cachedUint32Memory0 = new Uint32Array(wasm.memory.buffer);
cachedUint8Memory0 = new Uint8Array(wasm.memory.buffer);