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hash/crc32
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@ -139,8 +139,8 @@ fn (p mut Parser) parse() {
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// fully qualify the module name, eg base64 to encoding.base64
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fq_mod := p.table.qualify_module(p.mod, p.file_path)
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p.table.register_package(fq_mod)
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// replace "." with "__" in module name for C variable names
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p.mod = fq_mod.replace('.', '__')
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// replace "." with "_dot_" in module name for C variable names
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p.mod = fq_mod.replace('.', '_dot_')
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if p.run == .imports {
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for p.tok == .key_import && p.peek() != .key_const {
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p.import_statement()
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@ -1308,8 +1308,8 @@ fn (p mut Parser) name_expr() string {
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mut pkg := name
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// must be aliased module
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if name != p.mod && p.import_table.known_alias(name) {
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// we replaced "." with "__" in p.mod for C variable names, do same here.
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pkg = p.import_table.resolve_alias(name).replace('.', '__')
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// we replaced "." with "_dot_" in p.mod for C variable names, do same here.
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pkg = p.import_table.resolve_alias(name).replace('.', '_dot_')
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}
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p.next()
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p.check(.dot)
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@ -1435,7 +1435,7 @@ fn (p mut Parser) name_expr() string {
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// If orig_name is a pkg, then printing undefined: `pkg` tells us nothing
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// if p.table.known_pkg(orig_name) {
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if p.table.known_pkg(orig_name) || p.import_table.known_alias(orig_name) {
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name = name.replace('__', '.')
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name = name.replace('__', '.').replace('_dot_', '.')
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p.error('undefined: `$name`')
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}
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else {
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59
vlib/hash/crc32/crc32.v
Normal file
59
vlib/hash/crc32/crc32.v
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@ -0,0 +1,59 @@
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// Copyright (c) 2019 Alexander Medvednikov. All rights reserved.
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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// This is a very basic crc32 implementation
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// at the moment with no architecture optimizations
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module crc32
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// polynomials
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const (
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IEEE = 0xedb88320
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Castagnoli = 0x82f63b78
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Koopman = 0xeb31d82e
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)
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struct Crc32 {
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mut:
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table []u32
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}
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fn(c mut Crc32) generate_table(poly int) {
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for i := 0; i < 256; i++ {
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mut crc := u32(i)
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for j := 0; j < 8; j++ {
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if crc&u32(1) == u32(1) {
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crc = u32((crc >> u32(1)) ^ poly)
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} else {
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crc >>= u32(1)
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}
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}
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c.table << crc
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}
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}
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fn(c &Crc32) sum_32(s string) u32 {
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mut crc := ~u32(0)
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for i := 0; i < s.len; i++ {
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crc = c.table[byte(crc)^s[i]] ^ u32(crc >> u32(8))
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}
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return ~crc
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}
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pub fn(c &Crc32) checksum(s string) u32 {
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return c.sum_32(s)
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}
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// pass the polinomial to use
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pub fn new(poly int) *Crc32 {
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mut c := &Crc32{}
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c.generate_table(poly)
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return c
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}
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// calculate crc32 using IEEE
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pub fn sum(s string) u32 {
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mut c := new(IEEE)
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return c.sum_32(s)
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}
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10
vlib/hash/crc32/crc32_test.v
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10
vlib/hash/crc32/crc32_test.v
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@ -0,0 +1,10 @@
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import hash.crc32
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fn test_hash_crc32() {
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assert crc32.sum('testing crc32') == u32(1212124400)
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assert crc32.sum('testing crc32').hex() == '0x483f8cf0'
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c := crc32.new(crc32.IEEE)
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assert c.checksum('testing crc32 again') == u32(1420327025)
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assert c.checksum('testing crc32 again').hex() == '0x54a87871'
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}
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