| Total Complexity | 62 | 
| Total Lines | 262 | 
| Duplicated Lines | 0 % | 
| Changes | 2 | ||
| Bugs | 1 | Features | 0 | 
Complex classes like EdmElementComparer often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.
Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.
While breaking up the class, it is a good idea to analyze how other classes use EdmElementComparer, and based on these observations, apply Extract Interface, too.
| 1 | <?php | ||
| 30 | abstract class EdmElementComparer | ||
| 31 | { | ||
| 32 | /** | ||
| 33 | * Returns true if the compared type is semantically equivalent to this type. | ||
| 34 | * | ||
| 35 | * @param IEdmElement|null $thisType type being compared | ||
| 36 | * @param IEdmElement|null $otherType type being compared to | ||
| 37 | * @return bool equivalence of the two types | ||
| 38 | */ | ||
| 39 | public static function isEquivalentTo(?IEdmElement $thisType, ?IEdmElement $otherType): bool | ||
| 40 |     { | ||
| 41 |         if (null === $thisType || null === $otherType) { | ||
| 42 | return false; | ||
| 43 | } | ||
| 44 | |||
| 45 | $equivalent = true; | ||
| 46 | $interfaces = class_implements($thisType); | ||
| 47 |         $interfaces = array_filter($interfaces, function ($value) { | ||
| 48 | return false !== strpos($value, 'AlgoWeb\\ODataMetadata'); | ||
| 49 | }); | ||
| 50 | |||
| 51 |         foreach ($interfaces as $rawInterface) { | ||
| 52 |             $bitz       = explode('\\', $rawInterface); | ||
| 53 | $interface = end($bitz); | ||
| 54 | $methodName = 'is' . $interface . 'EquivalentTo'; | ||
| 55 |             if (!method_exists(self::class, $methodName)) { | ||
| 56 | continue; | ||
| 57 | } | ||
| 58 |             if (!in_array($rawInterface, class_implements($otherType))) { | ||
| 59 | return false; | ||
| 60 | } | ||
| 61 |             $equivalent &= self::{$methodName}($thisType, $otherType); | ||
| 62 | } | ||
| 63 | return boolval($equivalent); | ||
| 64 | } | ||
| 65 | |||
| 66 | /** | ||
| 67 | * Returns true if the compared type is semantically equivalent to this type. | ||
| 68 | * Schema types (ISchemaType) are compared by their object refs. | ||
| 69 | * | ||
| 70 | * @param IType $thisType type being compared | ||
| 71 | * @param IType $otherType type being compared to | ||
| 72 | * @return bool equivalence of the two types | ||
| 73 | */ | ||
| 74 | protected static function isITypeEquivalentTo(IType $thisType, IType $otherType): bool | ||
| 99 | } | ||
| 100 | |||
| 101 | protected static function isITypeReferenceEquivalentTo(ITypeReference $thisType, ITypeReference $otherType): bool | ||
| 117 | } | ||
| 118 | |||
| 119 | /** | ||
| 120 | * Returns true if function signatures are semantically equivalent. | ||
| 121 | * Signature includes function name (INamedElement) and its parameter types. | ||
| 122 | * | ||
| 123 | * @param IFunctionBase|null $thisFunction reference to the calling object | ||
| 124 | * @param IFunctionBase|null $otherFunction function being compared to | ||
| 125 | * @return bool equivalence of signatures of the two functions | ||
| 126 | */ | ||
| 127 | public static function isFunctionSignatureEquivalentTo(?IFunctionBase $thisFunction, ?IFunctionBase $otherFunction): bool | ||
| 128 |     { | ||
| 129 |         if (null === $thisFunction || null === $otherFunction) { | ||
| 130 | return false; | ||
| 131 | } | ||
| 132 | |||
| 133 |         if ($thisFunction === $otherFunction) { | ||
| 134 | return true; | ||
| 135 | } | ||
| 136 | |||
| 137 |         if ($thisFunction->getName() != $otherFunction->getName()) { | ||
| 138 | return false; | ||
| 139 | } | ||
| 140 | |||
| 141 |         if (!self::isEquivalentTo($thisFunction->getReturnType(), $otherFunction->getReturnType())) { | ||
| 142 | return false; | ||
| 143 | } | ||
| 144 | |||
| 145 | $thisTypeKeys = array_keys($thisFunction->getParameters()); | ||
| 146 | $otherTypeKeys = array_keys($otherFunction->getParameters()); | ||
| 147 | $keyCount = count($thisTypeKeys); | ||
| 148 |         for ($i = 0; $i < $keyCount; ++$i) { | ||
| 149 | if (!self::isEquivalentTo( | ||
| 150 | $thisFunction->getParameters()[$thisTypeKeys[$i]], | ||
| 151 | $otherFunction->getParameters()[$otherTypeKeys[$i]] | ||
| 152 | ) | ||
| 153 |             ) { | ||
| 154 | return false; | ||
| 155 | } | ||
| 156 | } | ||
| 157 | |||
| 158 | return true; | ||
| 159 | } | ||
| 160 | |||
| 161 | /** | ||
| 162 | * Returns true if the compared function parameter is semantically equivalent to this function parameter. | ||
| 163 | * | ||
| 164 | * @param IFunctionParameter $thisParameter reference to the calling object | ||
| 165 | * @param IFunctionParameter $otherParameter function parameter being compared to | ||
| 166 | * @return bool equivalence of the two function parameters | ||
| 167 | */ | ||
| 168 | protected static function IsIFunctionParameterEquivalentTo(IFunctionParameter $thisParameter, IFunctionParameter $otherParameter): bool | ||
| 169 |     { | ||
| 170 |         if ($thisParameter === $otherParameter) { | ||
| 171 | return true; | ||
| 172 | } | ||
| 173 | |||
| 174 | return $thisParameter->getName() == $otherParameter->getName() && | ||
| 175 | $thisParameter->getMode()->equals($otherParameter->getMode()) && | ||
| 176 | self::isEquivalentTo($thisParameter->getType(), $otherParameter->getType()); | ||
| 177 | } | ||
| 178 | |||
| 179 | protected static function isIPrimitiveTypeEquivalentTo(IPrimitiveType $thisType, IPrimitiveType $otherType): bool | ||
| 180 |     { | ||
| 181 | // OdataMetadata creates one-off instances of primitive type definitions that match by name and kind, but have | ||
| 182 | // different object refs. So we can't use object ref comparison here like for other ISchemaType objects. | ||
| 183 | return $thisType->getPrimitiveKind() === $otherType->getPrimitiveKind() && | ||
| 184 | $thisType->FullName() === $otherType->FullName(); | ||
| 185 | } | ||
| 186 | |||
| 187 | protected static function isISchemaTypeEquivalentTo(ISchemaType $thisType, ISchemaType $otherType): bool | ||
| 188 |     { | ||
| 189 | return $thisType === $otherType; | ||
| 190 | } | ||
| 191 | |||
| 192 | protected static function isICollectionTypeEquivalentTo(ICollectionType $thisType, ICollectionType $otherType): bool | ||
| 193 |     { | ||
| 194 | return self::isEquivalentTo($thisType->getElementType(), $otherType->getElementType()); | ||
| 195 | } | ||
| 196 | |||
| 197 | protected static function isIEntityReferenceTypeEquivalentTo(IEntityReferenceType $thisType, IEntityReferenceType $otherType): bool | ||
| 198 |     { | ||
| 199 | return self::isEquivalentTo($thisType->getEntityType(), $otherType->getEntityType()); | ||
| 200 | } | ||
| 201 | |||
| 202 | protected static function isIRowTypeEquivalentTo(IRowType $thisType, IRowType $otherType): bool | ||
| 203 |     { | ||
| 204 |         if (count($thisType->getDeclaredProperties()) != count($otherType->getDeclaredProperties())) { | ||
| 205 | return false; | ||
| 206 | } | ||
| 207 | |||
| 208 | $thisTypeKeys = array_keys($thisType->getDeclaredProperties()); | ||
| 209 | $otherTypeKeys = array_keys($otherType->getDeclaredProperties()); | ||
| 210 | $keyCount = count($thisTypeKeys); | ||
| 211 |         for ($i = 0; $i < $keyCount; ++$i) { | ||
| 212 | if (!self::isEquivalentTo( | ||
| 213 | $thisType->getDeclaredProperties()[$thisTypeKeys[$i]], | ||
| 214 | $thisType->getDeclaredProperties()[$otherTypeKeys[$i]] | ||
| 215 | ) | ||
| 216 |             ) { | ||
| 217 | return false; | ||
| 218 | } | ||
| 219 | } | ||
| 220 | return true; | ||
| 221 | } | ||
| 222 | |||
| 223 | protected static function isIStructuralPropertyEquivalentTo(IStructuralProperty $thisProp, IStructuralProperty $otherProp): bool | ||
| 224 |     { | ||
| 225 |         if ($thisProp === $otherProp) { | ||
| 226 | return true; | ||
| 227 | } | ||
| 228 | |||
| 229 | return $thisProp->getName() == $otherProp->getName() && | ||
| 230 | self::isEquivalentTo($thisProp->getType(), $otherProp->getType()); | ||
| 231 | } | ||
| 232 | |||
| 233 | |||
| 234 | protected static function isIPrimitiveTypeReferenceEquivalentTo(IPrimitiveTypeReference $thisType, IPrimitiveTypeReference $otherType): bool | ||
| 235 |     { | ||
| 236 | $thisTypePrimitiveKind = $thisType->PrimitiveKind(); | ||
| 237 |         if (!$thisTypePrimitiveKind->equals($otherType->PrimitiveKind())) { | ||
| 238 | return false; | ||
| 239 | } | ||
| 240 | |||
| 241 | if ($thisTypePrimitiveKind->isAnyOf( | ||
| 242 | PrimitiveTypeKind::Binary(), | ||
| 243 | PrimitiveTypeKind::Decimal(), | ||
| 244 | PrimitiveTypeKind::String(), | ||
| 245 | PrimitiveTypeKind::Time(), | ||
| 246 | PrimitiveTypeKind::DateTime(), | ||
| 247 | PrimitiveTypeKind::DateTimeOffset() | ||
| 248 | ) || | ||
| 249 |             $thisTypePrimitiveKind->IsSpatial()) { | ||
| 250 | return $thisType->getNullable() === $otherType->getNullable() && | ||
| 251 | self::isEquivalentTo($thisType->getDefinition(), $otherType->getDefinition()); | ||
| 252 | } | ||
| 253 | return true; | ||
| 254 | } | ||
| 255 | |||
| 256 | protected static function isIBinaryTypeReferenceEquivalentTo(IBinaryTypeReference $thisType, IBinaryTypeReference $otherType): bool | ||
| 257 |     { | ||
| 258 | return $thisType->getNullable() === $otherType->getNullable() && | ||
| 259 | $thisType->isFixedLength() === $otherType->isFixedLength() && | ||
| 260 | $thisType->isUnbounded() === $otherType->isUnbounded() && | ||
| 261 | $thisType->getMaxLength() === $otherType->getMaxLength(); | ||
| 262 | } | ||
| 263 | |||
| 264 | protected static function isIDecimalTypeReferenceEquivalentTo(IDecimalTypeReference $thisType, IDecimalTypeReference $otherType): bool | ||
| 265 |     { | ||
| 266 | return $thisType->getNullable() === $otherType->getNullable() && | ||
| 267 | $thisType->getPrecision() === $otherType->getPrecision() && | ||
| 268 | $thisType->getScale() === $otherType->getScale(); | ||
| 269 | } | ||
| 270 | |||
| 271 | protected static function isITemporalTypeReferenceEquivalentTo(ITemporalTypeReference $thisType, ITemporalTypeReference $otherType): bool | ||
| 276 | } | ||
| 277 | |||
| 278 | protected static function isIStringTypeReferenceEquivalentTo(IStringTypeReference $thisType, IStringTypeReference $otherType): bool | ||
| 279 |     { | ||
| 280 | return $thisType->getNullable() === $otherType->getNullable() && | ||
| 281 | $thisType->isFixedLength() === $otherType->isFixedLength() && | ||
| 282 | $thisType->isUnbounded() === $otherType->isUnbounded() && | ||
| 283 | $thisType->getMaxLength() === $otherType->getMaxLength() && | ||
| 284 | $thisType->isUnicode() === $otherType->isUnicode() && | ||
| 285 | $thisType->getCollation() === $otherType->getCollation(); | ||
| 286 | } | ||
| 287 | |||
| 288 | protected static function isISpatialTypeReferenceEquivalentTo(ISpatialTypeReference $thisType, ISpatialTypeReference $otherType): bool | ||
| 292 | } | ||
| 293 | } | ||
| 294 |