'use strict'; 'require baseclass'; function bytelen(x) { return new Blob([x]).size; } var Validator = baseclass.extend({ __name__: 'Validation', __init__: function(field, type, optional, vfunc, validatorFactory) { this.field = field; this.optional = optional; this.vfunc = vfunc; this.vstack = validatorFactory.compile(type); this.factory = validatorFactory; }, assert: function(condition, message) { if (!condition) { this.field.classList.add('cbi-input-invalid'); this.error = message; return false; } this.field.classList.remove('cbi-input-invalid'); this.error = null; return true; }, apply: function(name, value, args) { var func; if (typeof(name) === 'function') func = name; else if (typeof(this.factory.types[name]) === 'function') func = this.factory.types[name]; else return false; if (value != null) this.value = value; return func.apply(this, args); }, validate: function() { /* element is detached */ if (!findParent(this.field, 'body') && !findParent(this.field, '[data-field]')) return true; this.field.classList.remove('cbi-input-invalid'); this.value = (this.field.value != null) ? this.field.value : ''; this.error = null; var valid; if (this.value.length === 0) valid = this.assert(this.optional, _('non-empty value')); else valid = this.vstack[0].apply(this, this.vstack[1]); if (valid !== true) { var message = _('Expecting: %s').format(this.error); this.field.setAttribute('data-tooltip', message); this.field.setAttribute('data-tooltip-style', 'error'); this.field.dispatchEvent(new CustomEvent('validation-failure', { bubbles: true, detail: { message: message } })); return false; } if (typeof(this.vfunc) == 'function') valid = this.vfunc(this.value); if (valid !== true) { this.assert(false, valid); this.field.setAttribute('data-tooltip', valid); this.field.setAttribute('data-tooltip-style', 'error'); this.field.dispatchEvent(new CustomEvent('validation-failure', { bubbles: true, detail: { message: valid } })); return false; } this.field.removeAttribute('data-tooltip'); this.field.removeAttribute('data-tooltip-style'); this.field.dispatchEvent(new CustomEvent('validation-success', { bubbles: true })); return true; }, }); var ValidatorFactory = baseclass.extend({ __name__: 'ValidatorFactory', create: function(field, type, optional, vfunc) { return new Validator(field, type, optional, vfunc, this); }, compile: function(code) { var pos = 0; var esc = false; var depth = 0; var stack = [ ]; code += ','; for (var i = 0; i < code.length; i++) { if (esc) { esc = false; continue; } switch (code.charCodeAt(i)) { case 92: esc = true; break; case 40: case 44: if (depth <= 0) { if (pos < i) { var label = code.substring(pos, i); label = label.replace(/\\(.)/g, '$1'); label = label.replace(/^[ \t]+/g, ''); label = label.replace(/[ \t]+$/g, ''); if (label && !isNaN(label)) { stack.push(parseFloat(label)); } else if (label.match(/^(['"]).*\1$/)) { stack.push(label.replace(/^(['"])(.*)\1$/, '$2')); } else if (typeof this.types[label] == 'function') { stack.push(this.types[label]); stack.push(null); } else { L.raise('SyntaxError', 'Unhandled token "%s"', label); } } pos = i+1; } depth += (code.charCodeAt(i) == 40); break; case 41: if (--depth <= 0) { if (typeof stack[stack.length-2] != 'function') L.raise('SyntaxError', 'Argument list follows non-function'); stack[stack.length-1] = this.compile(code.substring(pos, i)); pos = i+1; } break; } } return stack; }, parseInteger: function(x) { return (/^-?\d+$/.test(x) ? +x : NaN); }, parseDecimal: function(x) { return (/^-?\d+(?:\.\d+)?$/.test(x) ? +x : NaN); }, parseIPv4: function(x) { if (!x.match(/^(\d{1,3})\.(\d{1,3})\.(\d{1,3})\.(\d{1,3})$/)) return null; if (RegExp.$1 > 255 || RegExp.$2 > 255 || RegExp.$3 > 255 || RegExp.$4 > 255) return null; return [ +RegExp.$1, +RegExp.$2, +RegExp.$3, +RegExp.$4 ]; }, parseIPv6: function(x) { if (x.match(/^([a-fA-F0-9:]+):(\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3})$/)) { var v6 = RegExp.$1, v4 = this.parseIPv4(RegExp.$2); if (!v4) return null; x = v6 + ':' + (v4[0] * 256 + v4[1]).toString(16) + ':' + (v4[2] * 256 + v4[3]).toString(16); } if (!x.match(/^[a-fA-F0-9:]+$/)) return null; var prefix_suffix = x.split(/::/); if (prefix_suffix.length > 2) return null; var prefix = (prefix_suffix[0] || '0').split(/:/); var suffix = prefix_suffix.length > 1 ? (prefix_suffix[1] || '0').split(/:/) : []; if (suffix.length ? (prefix.length + suffix.length > 7) : ((prefix_suffix.length < 2 && prefix.length < 8) || prefix.length > 8)) return null; var i, word; var words = []; for (i = 0, word = parseInt(prefix[0], 16); i < prefix.length; word = parseInt(prefix[++i], 16)) if (prefix[i].length <= 4 && !isNaN(word) && word <= 0xFFFF) words.push(word); else return null; for (i = 0; i < (8 - prefix.length - suffix.length); i++) words.push(0); for (i = 0, word = parseInt(suffix[0], 16); i < suffix.length; word = parseInt(suffix[++i], 16)) if (suffix[i].length <= 4 && !isNaN(word) && word <= 0xFFFF) words.push(word); else return null; return words; }, types: { integer: function() { return this.assert(!isNaN(this.factory.parseInteger(this.value)), _('valid integer value')); }, uinteger: function() { return this.assert(this.factory.parseInteger(this.value) >= 0, _('positive integer value')); }, float: function() { return this.assert(!isNaN(this.factory.parseDecimal(this.value)), _('valid decimal value')); }, ufloat: function() { return this.assert(this.factory.parseDecimal(this.value) >= 0, _('positive decimal value')); }, ipaddr: function(nomask) { return this.assert(this.apply('ip4addr', null, [nomask]) || this.apply('ip6addr', null, [nomask]), nomask ? _('valid IP address') : _('valid IP address or prefix')); }, ip4addr: function(nomask) { var re = nomask ? /^(\d+\.\d+\.\d+\.\d+)$/ : /^(\d+\.\d+\.\d+\.\d+)(?:\/(\d+\.\d+\.\d+\.\d+)|\/(\d{1,2}))?$/, m = this.value.match(re); return this.assert(m && this.factory.parseIPv4(m[1]) && (m[2] ? this.factory.parseIPv4(m[2]) : (m[3] ? this.apply('ip4prefix', m[3]) : true)), nomask ? _('valid IPv4 address') : _('valid IPv4 address or network')); }, ip6addr: function(nomask) { var re = nomask ? /^([0-9a-fA-F:.]+)$/ : /^([0-9a-fA-F:.]+)(?:\/(\d{1,3}))?$/, m = this.value.match(re); return this.assert(m && this.factory.parseIPv6(m[1]) && (m[2] ? this.apply('ip6prefix', m[2]) : true), nomask ? _('valid IPv6 address') : _('valid IPv6 address or prefix')); }, ip4prefix: function() { return this.assert(!isNaN(this.value) && this.value >= 0 && this.value <= 32, _('valid IPv4 prefix value (0-32)')); }, ip6prefix: function() { return this.assert(!isNaN(this.value) && this.value >= 0 && this.value <= 128, _('valid IPv6 prefix value (0-128)')); }, cidr: function(negative) { return this.assert(this.apply('cidr4', null, [negative]) || this.apply('cidr6', null, [negative]), _('valid IPv4 or IPv6 CIDR')); }, cidr4: function(negative) { var m = this.value.match(/^(\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3})\/(-)?(\d{1,2})$/); return this.assert(m && this.factory.parseIPv4(m[1]) && (negative || !m[2]) && this.apply('ip4prefix', m[3]), _('valid IPv4 CIDR')); }, cidr6: function(negative) { var m = this.value.match(/^([0-9a-fA-F:.]+)\/(-)?(\d{1,3})$/); return this.assert(m && this.factory.parseIPv6(m[1]) && (negative || !m[2]) && this.apply('ip6prefix', m[3]), _('valid IPv6 CIDR')); }, ipnet4: function() { var m = this.value.match(/^(\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3})\/(\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3})$/); return this.assert(m && this.factory.parseIPv4(m[1]) && this.factory.parseIPv4(m[2]), _('IPv4 network in address/netmask notation')); }, ipnet6: function() { var m = this.value.match(/^([0-9a-fA-F:.]+)\/([0-9a-fA-F:.]+)$/); return this.assert(m && this.factory.parseIPv6(m[1]) && this.factory.parseIPv6(m[2]), _('IPv6 network in address/netmask notation')); }, ip6hostid: function() { if (this.value == "eui64" || this.value == "random") return true; var v6 = this.factory.parseIPv6(this.value); return this.assert(!(!v6 || v6[0] || v6[1] || v6[2] || v6[3]), _('valid IPv6 host id')); }, ipmask: function(negative) { return this.assert(this.apply('ipmask4', null, [negative]) || this.apply('ipmask6', null, [negative]), _('valid network in address/netmask notation')); }, ipmask4: function(negative) { return this.assert(this.apply('cidr4', null, [negative]) || this.apply('ipnet4') || this.apply('ip4addr'), _('valid IPv4 network')); }, ipmask6: function(negative) { return this.assert(this.apply('cidr6', null, [negative]) || this.apply('ipnet6') || this.apply('ip6addr'), _('valid IPv6 network')); }, port: function() { var p = this.factory.parseInteger(this.value); return this.assert(p >= 0 && p <= 65535, _('valid port value')); }, portrange: function() { if (this.value.match(/^(\d+)-(\d+)$/)) { var p1 = +RegExp.$1; var p2 = +RegExp.$2; return this.assert(p1 <= p2 && p2 <= 65535, _('valid port or port range (port1-port2)')); } return this.assert(this.apply('port'), _('valid port or port range (port1-port2)')); }, macaddr: function(multicast) { var m = this.value.match(/^([a-fA-F0-9]{2}):([a-fA-F0-9]{2}:){4}[a-fA-F0-9]{2}$/); return this.assert(m != null && !(+m[1] & 1) == !multicast, multicast ? _('valid multicast MAC address') : _('valid MAC address')); }, host: function(ipv4only) { return this.assert(this.apply('hostname') || this.apply(ipv4only == 1 ? 'ip4addr' : 'ipaddr', null, ['nomask']), _('valid hostname or IP address')); }, hostname: function(strict) { if (this.value.length <= 253) return this.assert( (this.value.match(/^[a-zA-Z0-9_]+$/) != null || (this.value.match(/^[a-zA-Z0-9_][a-zA-Z0-9_\-.]*[a-zA-Z0-9]$/) && this.value.match(/[^0-9.]/))) && (!strict || !this.value.match(/^_/)), _('valid hostname')); return this.assert(false, _('valid hostname')); }, network: function() { return this.assert(this.apply('uciname') || this.apply('hostname') || this.apply('ip4addr') || this.apply('ip6addr'), _('valid UCI identifier, hostname or IP address range')); }, hostport: function(ipv4only) { var hp = this.value.split(/:/); return this.assert(hp.length == 2 && this.apply('host', hp[0], [ipv4only]) && this.apply('port', hp[1]), _('valid host:port')); }, ip4addrport: function() { var hp = this.value.split(/:/); return this.assert(hp.length == 2 && this.apply('ip4addr', hp[0], [true]) && this.apply('port', hp[1]), _('valid IPv4 address:port')); }, ipaddrport: function(bracket) { var m4 = this.value.match(/^([^\[\]:]+):(\d+)$/), m6 = this.value.match((bracket == 1) ? /^\[(.+)\]:(\d+)$/ : /^([^\[\]]+):(\d+)$/); if (m4) return this.assert(this.apply('ip4addr', m4[1], [true]) && this.apply('port', m4[2]), _('valid address:port')); return this.assert(m6 && this.apply('ip6addr', m6[1], [true]) && this.apply('port', m6[2]), _('valid address:port')); }, wpakey: function() { var v = this.value; if (v.length == 64) return this.assert(v.match(/^[a-fA-F0-9]{64}$/), _('valid hexadecimal WPA key')); return this.assert((v.length >= 8) && (v.length <= 63), _('key between 8 and 63 characters')); }, wepkey: function() { var v = this.value; if (v.substr(0, 2) === 's:') v = v.substr(2); if ((v.length == 10) || (v.length == 26)) return this.assert(v.match(/^[a-fA-F0-9]{10,26}$/), _('valid hexadecimal WEP key')); return this.assert((v.length === 5) || (v.length === 13), _('key with either 5 or 13 characters')); }, uciname: function() { return this.assert(this.value.match(/^[a-zA-Z0-9_]+$/), _('valid UCI identifier')); }, netdevname: function() { var v = this.value; if (v == '.' || v == '..') return this.assert(false, _('valid network device name, not "." or ".."')); return this.assert(v.match(/^[^:\/%\s]{1,15}$/), _('valid network device name between 1 and 15 characters not containing ":", "/", "%" or spaces')); }, range: function(min, max) { var val = this.factory.parseDecimal(this.value); return this.assert(val >= +min && val <= +max, _('value between %f and %f').format(min, max)); }, min: function(min) { return this.assert(this.factory.parseDecimal(this.value) >= +min, _('value greater or equal to %f').format(min)); }, max: function(max) { return this.assert(this.factory.parseDecimal(this.value) <= +max, _('value smaller or equal to %f').format(max)); }, length: function(len) { return this.assert(bytelen(this.value) == +len, _('value with %d characters').format(len)); }, rangelength: function(min, max) { var len = bytelen(this.value); return this.assert((len >= +min) && (len <= +max), _('value between %d and %d characters').format(min, max)); }, minlength: function(min) { return this.assert(bytelen(this.value) >= +min, _('value with at least %d characters').format(min)); }, maxlength: function(max) { return this.assert(bytelen(this.value) <= +max, _('value with at most %d characters').format(max)); }, or: function() { var errors = []; for (var i = 0; i < arguments.length; i += 2) { if (typeof arguments[i] != 'function') { if (arguments[i] == this.value) return this.assert(true); errors.push('"%s"'.format(arguments[i])); i--; } else if (arguments[i].apply(this, arguments[i+1])) { return this.assert(true); } else { errors.push(this.error); } } var t = _('One of the following: %s'); return this.assert(false, t.format('\n - ' + errors.join('\n - '))); }, and: function() { for (var i = 0; i < arguments.length; i += 2) { if (typeof arguments[i] != 'function') { if (arguments[i] != this.value) return this.assert(false, '"%s"'.format(arguments[i])); i--; } else if (!arguments[i].apply(this, arguments[i+1])) { return this.assert(false, this.error); } } return this.assert(true); }, neg: function() { this.value = this.value.replace(/^[ \t]*![ \t]*/, ''); if (arguments[0].apply(this, arguments[1])) return this.assert(true); return this.assert(false, _('Potential negation of: %s').format(this.error)); }, list: function(subvalidator, subargs) { this.field.setAttribute('data-is-list', 'true'); var tokens = this.value.match(/[^ \t]+/g); for (var i = 0; i < tokens.length; i++) if (!this.apply(subvalidator, tokens[i], subargs)) return this.assert(false, this.error); return this.assert(true); }, phonedigit: function() { return this.assert(this.value.match(/^[0-9\*#!\.]+$/), _('valid phone digit (0-9, "*", "#", "!" or ".")')); }, timehhmmss: function() { return this.assert(this.value.match(/^[0-6][0-9]:[0-6][0-9]:[0-6][0-9]$/), _('valid time (HH:MM:SS)')); }, dateyyyymmdd: function() { if (this.value.match(/^(\d\d\d\d)-(\d\d)-(\d\d)/)) { var year = +RegExp.$1, month = +RegExp.$2, day = +RegExp.$3, days_in_month = [ 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 ]; var is_leap_year = function(year) { return ((!(year % 4) && (year % 100)) || !(year % 400)); } var get_days_in_month = function(month, year) { return (month === 2 && is_leap_year(year)) ? 29 : days_in_month[month - 1]; } /* Firewall rules in the past don't make sense */ return this.assert(year >= 2015 && month && month <= 12 && day && day <= get_days_in_month(month, year), _('valid date (YYYY-MM-DD)')); } return this.assert(false, _('valid date (YYYY-MM-DD)')); }, unique: function(subvalidator, subargs) { var ctx = this, option = findParent(ctx.field, '[data-widget][data-name]'), section = findParent(option, '.cbi-section'), query = '[data-widget="%s"][data-name="%s"]'.format(option.getAttribute('data-widget'), option.getAttribute('data-name')), unique = true; section.querySelectorAll(query).forEach(function(sibling) { if (sibling === option) return; var input = sibling.querySelector('[data-type]'), values = input ? (input.getAttribute('data-is-list') ? input.value.match(/[^ \t]+/g) : [ input.value ]) : null; if (values !== null && values.indexOf(ctx.value) !== -1) unique = false; }); if (!unique) return this.assert(false, _('unique value')); if (typeof(subvalidator) === 'function') return this.apply(subvalidator, null, subargs); return this.assert(true); }, hexstring: function() { return this.assert(this.value.match(/^([a-f0-9][a-f0-9]|[A-F0-9][A-F0-9])+$/), _('hexadecimal encoded value')); }, string: function() { return true; }, directory: function() { return true; }, file: function() { return true; }, device: function() { return true; } } }); return ValidatorFactory;