decode.go 10 KB

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  1. package yaml
  2. import (
  3. "reflect"
  4. "strconv"
  5. )
  6. const (
  7. documentNode = 1 << iota
  8. mappingNode
  9. sequenceNode
  10. scalarNode
  11. aliasNode
  12. )
  13. type node struct {
  14. kind int
  15. line, column int
  16. tag string
  17. value string
  18. implicit bool
  19. children []*node
  20. anchors map[string]*node
  21. }
  22. // ----------------------------------------------------------------------------
  23. // Parser, produces a node tree out of a libyaml event stream.
  24. type parser struct {
  25. parser yaml_parser_t
  26. event yaml_event_t
  27. doc *node
  28. }
  29. func newParser(b []byte) *parser {
  30. p := parser{}
  31. if !yaml_parser_initialize(&p.parser) {
  32. panic("Failed to initialize YAML emitter")
  33. }
  34. if len(b) == 0 {
  35. b = []byte{'\n'}
  36. }
  37. yaml_parser_set_input_string(&p.parser, b)
  38. p.skip()
  39. if p.event.typ != yaml_STREAM_START_EVENT {
  40. panic("Expected stream start event, got " + strconv.Itoa(int(p.event.typ)))
  41. }
  42. p.skip()
  43. return &p
  44. }
  45. func (p *parser) destroy() {
  46. if p.event.typ != yaml_NO_EVENT {
  47. yaml_event_delete(&p.event)
  48. }
  49. yaml_parser_delete(&p.parser)
  50. }
  51. func (p *parser) skip() {
  52. if p.event.typ != yaml_NO_EVENT {
  53. if p.event.typ == yaml_STREAM_END_EVENT {
  54. panic("Attempted to go past the end of stream. Corrupted value?")
  55. }
  56. yaml_event_delete(&p.event)
  57. }
  58. if !yaml_parser_parse(&p.parser, &p.event) {
  59. p.fail()
  60. }
  61. }
  62. func (p *parser) fail() {
  63. var where string
  64. var line int
  65. if p.parser.problem_mark.line != 0 {
  66. line = p.parser.problem_mark.line
  67. } else if p.parser.context_mark.line != 0 {
  68. line = p.parser.context_mark.line
  69. }
  70. if line != 0 {
  71. where = "line " + strconv.Itoa(line) + ": "
  72. }
  73. var msg string
  74. if len(p.parser.problem) > 0 {
  75. msg = p.parser.problem
  76. } else {
  77. msg = "Unknown problem parsing YAML content"
  78. }
  79. panic(where + msg)
  80. }
  81. func (p *parser) anchor(n *node, anchor []byte) {
  82. if anchor != nil {
  83. p.doc.anchors[string(anchor)] = n
  84. }
  85. }
  86. func (p *parser) parse() *node {
  87. switch p.event.typ {
  88. case yaml_SCALAR_EVENT:
  89. return p.scalar()
  90. case yaml_ALIAS_EVENT:
  91. return p.alias()
  92. case yaml_MAPPING_START_EVENT:
  93. return p.mapping()
  94. case yaml_SEQUENCE_START_EVENT:
  95. return p.sequence()
  96. case yaml_DOCUMENT_START_EVENT:
  97. return p.document()
  98. case yaml_STREAM_END_EVENT:
  99. // Happens when attempting to decode an empty buffer.
  100. return nil
  101. default:
  102. panic("Attempted to parse unknown event: " +
  103. strconv.Itoa(int(p.event.typ)))
  104. }
  105. panic("Unreachable")
  106. }
  107. func (p *parser) node(kind int) *node {
  108. return &node{
  109. kind: kind,
  110. line: p.event.start_mark.line,
  111. column: p.event.start_mark.column,
  112. }
  113. }
  114. func (p *parser) document() *node {
  115. n := p.node(documentNode)
  116. n.anchors = make(map[string]*node)
  117. p.doc = n
  118. p.skip()
  119. n.children = append(n.children, p.parse())
  120. if p.event.typ != yaml_DOCUMENT_END_EVENT {
  121. panic("Expected end of document event but got " +
  122. strconv.Itoa(int(p.event.typ)))
  123. }
  124. p.skip()
  125. return n
  126. }
  127. func (p *parser) alias() *node {
  128. n := p.node(aliasNode)
  129. n.value = string(p.event.anchor)
  130. p.skip()
  131. return n
  132. }
  133. func (p *parser) scalar() *node {
  134. n := p.node(scalarNode)
  135. n.value = string(p.event.value)
  136. n.tag = string(p.event.tag)
  137. n.implicit = p.event.implicit
  138. p.anchor(n, p.event.anchor)
  139. p.skip()
  140. return n
  141. }
  142. func (p *parser) sequence() *node {
  143. n := p.node(sequenceNode)
  144. p.anchor(n, p.event.anchor)
  145. p.skip()
  146. for p.event.typ != yaml_SEQUENCE_END_EVENT {
  147. n.children = append(n.children, p.parse())
  148. }
  149. p.skip()
  150. return n
  151. }
  152. func (p *parser) mapping() *node {
  153. n := p.node(mappingNode)
  154. p.anchor(n, p.event.anchor)
  155. p.skip()
  156. for p.event.typ != yaml_MAPPING_END_EVENT {
  157. n.children = append(n.children, p.parse(), p.parse())
  158. }
  159. p.skip()
  160. return n
  161. }
  162. // ----------------------------------------------------------------------------
  163. // Decoder, unmarshals a node into a provided value.
  164. type decoder struct {
  165. doc *node
  166. aliases map[string]bool
  167. }
  168. func newDecoder() *decoder {
  169. d := &decoder{}
  170. d.aliases = make(map[string]bool)
  171. return d
  172. }
  173. // d.setter deals with setters and pointer dereferencing and initialization.
  174. //
  175. // It's a slightly convoluted case to handle properly:
  176. //
  177. // - nil pointers should be initialized, unless being set to nil
  178. // - we don't know at this point yet what's the value to SetYAML() with.
  179. // - we can't separate pointer deref/init and setter checking, because
  180. // a setter may be found while going down a pointer chain.
  181. //
  182. // Thus, here is how it takes care of it:
  183. //
  184. // - out is provided as a pointer, so that it can be replaced.
  185. // - when looking at a non-setter ptr, *out=ptr.Elem(), unless tag=!!null
  186. // - when a setter is found, *out=interface{}, and a set() function is
  187. // returned to call SetYAML() with the value of *out once it's defined.
  188. //
  189. func (d *decoder) setter(tag string, out *reflect.Value, good *bool) (set func()) {
  190. again := true
  191. for again {
  192. again = false
  193. setter, _ := (*out).Interface().(Setter)
  194. if tag != "!!null" || setter != nil {
  195. if pv := (*out); pv.Kind() == reflect.Ptr {
  196. if pv.IsNil() {
  197. *out = reflect.New(pv.Type().Elem()).Elem()
  198. pv.Set((*out).Addr())
  199. } else {
  200. *out = pv.Elem()
  201. }
  202. setter, _ = pv.Interface().(Setter)
  203. again = true
  204. }
  205. }
  206. if setter != nil {
  207. var arg interface{}
  208. *out = reflect.ValueOf(&arg).Elem()
  209. return func() {
  210. *good = setter.SetYAML(tag, arg)
  211. }
  212. }
  213. }
  214. return nil
  215. }
  216. func (d *decoder) unmarshal(n *node, out reflect.Value) (good bool) {
  217. switch n.kind {
  218. case documentNode:
  219. good = d.document(n, out)
  220. case scalarNode:
  221. good = d.scalar(n, out)
  222. case aliasNode:
  223. good = d.alias(n, out)
  224. case mappingNode:
  225. good = d.mapping(n, out)
  226. case sequenceNode:
  227. good = d.sequence(n, out)
  228. default:
  229. panic("Internal error: unknown node kind: " + strconv.Itoa(n.kind))
  230. }
  231. return
  232. }
  233. func (d *decoder) document(n *node, out reflect.Value) (good bool) {
  234. if len(n.children) == 1 {
  235. d.doc = n
  236. d.unmarshal(n.children[0], out)
  237. return true
  238. }
  239. return false
  240. }
  241. func (d *decoder) alias(n *node, out reflect.Value) (good bool) {
  242. an, ok := d.doc.anchors[n.value]
  243. if !ok {
  244. panic("Unknown anchor '" + n.value + "' referenced")
  245. }
  246. if d.aliases[n.value] {
  247. panic("Anchor '" + n.value + "' value contains itself")
  248. }
  249. d.aliases[n.value] = true
  250. good = d.unmarshal(an, out)
  251. delete(d.aliases, n.value)
  252. return good
  253. }
  254. func (d *decoder) scalar(n *node, out reflect.Value) (good bool) {
  255. var tag string
  256. var resolved interface{}
  257. if n.tag == "" && !n.implicit {
  258. resolved = n.value
  259. } else {
  260. tag, resolved = resolve(n.tag, n.value)
  261. if set := d.setter(tag, &out, &good); set != nil {
  262. defer set()
  263. }
  264. }
  265. switch out.Kind() {
  266. case reflect.String:
  267. if resolved != nil {
  268. out.SetString(n.value)
  269. good = true
  270. }
  271. case reflect.Interface:
  272. if resolved == nil {
  273. out.Set(reflect.Zero(out.Type()))
  274. } else {
  275. out.Set(reflect.ValueOf(resolved))
  276. }
  277. good = true
  278. case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
  279. switch resolved := resolved.(type) {
  280. case int:
  281. if !out.OverflowInt(int64(resolved)) {
  282. out.SetInt(int64(resolved))
  283. good = true
  284. }
  285. case int64:
  286. if !out.OverflowInt(resolved) {
  287. out.SetInt(resolved)
  288. good = true
  289. }
  290. case float64:
  291. if resolved < 1<<63-1 && !out.OverflowInt(int64(resolved)) {
  292. out.SetInt(int64(resolved))
  293. good = true
  294. }
  295. }
  296. case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr:
  297. switch resolved := resolved.(type) {
  298. case int:
  299. if resolved >= 0 {
  300. out.SetUint(uint64(resolved))
  301. good = true
  302. }
  303. case int64:
  304. if resolved >= 0 {
  305. out.SetUint(uint64(resolved))
  306. good = true
  307. }
  308. case float64:
  309. if resolved < 1<<64-1 && !out.OverflowUint(uint64(resolved)) {
  310. out.SetUint(uint64(resolved))
  311. good = true
  312. }
  313. }
  314. case reflect.Bool:
  315. switch resolved := resolved.(type) {
  316. case bool:
  317. out.SetBool(resolved)
  318. good = true
  319. }
  320. case reflect.Float32, reflect.Float64:
  321. switch resolved := resolved.(type) {
  322. case int:
  323. out.SetFloat(float64(resolved))
  324. good = true
  325. case int64:
  326. out.SetFloat(float64(resolved))
  327. good = true
  328. case float64:
  329. out.SetFloat(resolved)
  330. good = true
  331. }
  332. case reflect.Ptr:
  333. switch resolved.(type) {
  334. case nil:
  335. out.Set(reflect.Zero(out.Type()))
  336. good = true
  337. default:
  338. if out.Type().Elem() == reflect.TypeOf(resolved) {
  339. elem := reflect.New(out.Type().Elem())
  340. elem.Elem().Set(reflect.ValueOf(resolved))
  341. out.Set(elem)
  342. good = true
  343. }
  344. }
  345. }
  346. return good
  347. }
  348. func settableValueOf(i interface{}) reflect.Value {
  349. v := reflect.ValueOf(i)
  350. sv := reflect.New(v.Type()).Elem()
  351. sv.Set(v)
  352. return sv
  353. }
  354. func (d *decoder) sequence(n *node, out reflect.Value) (good bool) {
  355. if set := d.setter("!!seq", &out, &good); set != nil {
  356. defer set()
  357. }
  358. var iface reflect.Value
  359. if out.Kind() == reflect.Interface {
  360. // No type hints. Will have to use a generic sequence.
  361. iface = out
  362. out = settableValueOf(make([]interface{}, 0))
  363. }
  364. if out.Kind() != reflect.Slice {
  365. return false
  366. }
  367. et := out.Type().Elem()
  368. l := len(n.children)
  369. for i := 0; i < l; i++ {
  370. e := reflect.New(et).Elem()
  371. if ok := d.unmarshal(n.children[i], e); ok {
  372. out.Set(reflect.Append(out, e))
  373. }
  374. }
  375. if iface.IsValid() {
  376. iface.Set(out)
  377. }
  378. return true
  379. }
  380. func (d *decoder) mapping(n *node, out reflect.Value) (good bool) {
  381. if set := d.setter("!!map", &out, &good); set != nil {
  382. defer set()
  383. }
  384. if out.Kind() == reflect.Struct {
  385. return d.mappingStruct(n, out)
  386. }
  387. if out.Kind() == reflect.Interface {
  388. // No type hints. Will have to use a generic map.
  389. iface := out
  390. out = settableValueOf(make(map[interface{}]interface{}))
  391. iface.Set(out)
  392. }
  393. if out.Kind() != reflect.Map {
  394. return false
  395. }
  396. outt := out.Type()
  397. kt := outt.Key()
  398. et := outt.Elem()
  399. if out.IsNil() {
  400. out.Set(reflect.MakeMap(outt))
  401. }
  402. l := len(n.children)
  403. for i := 0; i < l; i += 2 {
  404. k := reflect.New(kt).Elem()
  405. if d.unmarshal(n.children[i], k) {
  406. e := reflect.New(et).Elem()
  407. if d.unmarshal(n.children[i+1], e) {
  408. out.SetMapIndex(k, e)
  409. }
  410. }
  411. }
  412. return true
  413. }
  414. func (d *decoder) mappingStruct(n *node, out reflect.Value) (good bool) {
  415. sinfo, err := getStructInfo(out.Type())
  416. if err != nil {
  417. panic(err)
  418. }
  419. name := settableValueOf("")
  420. l := len(n.children)
  421. for i := 0; i < l; i += 2 {
  422. if !d.unmarshal(n.children[i], name) {
  423. continue
  424. }
  425. if info, ok := sinfo.FieldsMap[name.String()]; ok {
  426. var field reflect.Value
  427. if info.Inline == nil {
  428. field = out.Field(info.Num)
  429. } else {
  430. field = out.FieldByIndex(info.Inline)
  431. }
  432. d.unmarshal(n.children[i+1], field)
  433. }
  434. }
  435. return true
  436. }