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const ffi = require('ffi');
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const struct = require('ref-struct');
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const ref = require('ref');
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const Salt = struct({
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'type': 'char',
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'size': 'int',
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'body': 'pointer',
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});
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const PSalt = ref.refType(Salt);
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const Context = struct({
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'algo': 'char',
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'salt': Salt,
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});
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const PContext = ref.refType(Context);
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const PLong = ref.refType(ref.types.long);
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const lib = ffi.Library('libkhash', {
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'khash_new_context': ['int', ['char', 'char', 'string', 'long', PContext]],
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'khash_free_context': ['int', [PContext]],
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'khash_clone_context': ['int', [PContext, PContext]],
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'khash_length': ['int', [PContext, 'string', 'long', PLong]],
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'khash_do': ['int', [PContext, 'string', 'long', 'string', 'long']],
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});
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const ctx_create = (algo, salt, salt_ref, salt_sz) => {
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let ctx_ptr = ref.alloc(Context);
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lib.khash_new_context(algo, salt, salt_ref, salt_sz, ctx_ptr);
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return ctx_ptr;
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};
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const ctx_free = (ptr) => {
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lib.khash_free_context(ptr);
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return ptr.deref();
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};
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const ctx_clone = (src) => {
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let dst = ref.alloc(Context);
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lib.khash_clone_context(src,dst);
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return dst;
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};
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const khash_length = (ctx, jsstring) => {
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let string = ref.allocCString(jsstring);
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let len = ref.alloc('long');
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lib.khash_length(ctx, string, string.length, len);
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return len.deref();
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};
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const khash_do = (ctx, jsstring, len) => {
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let string = ref.allocCString(jsstring);
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let buffer = Buffer.alloc(len+1);
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lib.khash_do(ctx,string,string.length,buffer,len);
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return ref.readCString(buffer,0);
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};
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const get_salt_type = (salt) => {
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if (salt && salt.tag) {
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switch(salt.tag)
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{
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case '__NONE':
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return Kana.SALT_NONE;
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case '__RANDOM':
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return Kana.SALT_RANDOM;
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case '__SPECIFIC':
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return Kana.SALT_SPECIFIC;
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default:
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return Kana.SALT_DEFAULT;
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}
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}
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else return Kana.SALT_DEFAULT;
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};
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/// Create a new kana-hash context.
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/// This context must be disposed of correctly either by calling `finish()` or `once()`.
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/// `algo` is expected to be one of the `Kana.ALGO_*` constants, or `undefined`.
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/// `salt` is expected to be either an object of `Salt` or `undefined`.
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function Kana(algo, salt)
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{
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if(algo && algo.ctx) {
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this.ctx = algo.ctx;
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} else {
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const stype = get_salt_type(salt);
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const fbuffer = salt ? salt.buffer || null : null;
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this.ctx = ctx_create(algo || 0, stype, fbuffer, fbuffer ? fbuffer.length : 0);
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}
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}
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const K = Kana.prototype;
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/// Free the associated context.
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/// The object is no longer valid after this call.
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K.finish = function() {
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ctx_free(this.ctx);
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this.ctx = null;
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};
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/// Compute the kana-hash for `string` and then free the associated context.
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K.once = function(string) {
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let len = khash_length(this.ctx, string);
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return khash_do(this.ctx, string, len);
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};
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/// Compute the kana-hash for `string`.
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K.hash = function(string) {
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const ctx = ctx_clone(this.ctx);
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let len = khash_length(ctx, string);
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return khash_do(ctx, string, len);
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};
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/// Clone this kana-hash context.
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K.clone = function() {
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const ctx = ctx_clone(this.ctx);
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return new Kana({ctx: ctx});
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};
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/// The default algorithm used. (sha256 truncated.)
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Kana.ALGO_DEFAULT = 0;
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/// CRC32 algorithm.
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Kana.ALGO_CRC32 = 1;
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/// CRC64 algorithm.
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Kana.ALGO_CRC64 = 2;
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/// SHA256 algorithm.
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Kana.ALGO_SHA256 = 3;
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/// SHA256 truncated to 64-bits.
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Kana.ALGO_SHA256_TRUNCATED = 4;
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// You don't need to reference these directly, use the `Salt` module instead.
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Kana.SALT_NONE = 0;
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Kana.SALT_DEFAULT = 1;
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Kana.SALT_SPECIFIC = 2;
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Kana.SALT_RANDOM = 3;
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module.exports = Kana;
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