parser.mly 9.2 KB

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  1. %{
  2. (* CSS grammar based on:
  3. * - http://www.w3.org/TR/CSS2/grammar.html
  4. * - http://www.w3.org/TR/css3-mediaqueries/
  5. * - http://www.w3.org/TR/css3-fonts/
  6. * - http://www.w3.org/TR/css3-namespace/
  7. * - http://www.w3.org/TR/css3-animations/
  8. * - http://www.w3.org/TR/css3-conditional/
  9. *)
  10. open Lexing
  11. open Types
  12. open Util
  13. type term = Term of expr | Operator of string
  14. let concat_terms terms =
  15. let rec transform_ops = function
  16. | [] -> []
  17. | Term left :: Operator op :: Term right :: tl ->
  18. transform_ops (Term (Nary (op, [left; right])) :: tl)
  19. | Term hd :: tl -> hd :: transform_ops tl
  20. | Operator op :: _ -> raise (Syntax_error ("unexpected operator \"" ^ op ^ "\""))
  21. in
  22. let rec flatten_nary = function
  23. | [] -> []
  24. | Nary (op1, Nary (op2, left) :: right) :: tl when op1 = op2 ->
  25. flatten_nary (Nary (op1, flatten_nary left @ flatten_nary right) :: tl)
  26. | hd :: tl -> hd :: flatten_nary tl
  27. in
  28. match terms |> transform_ops |> flatten_nary with
  29. | [hd] -> hd
  30. | l -> Concat l
  31. (* TODO: move this to a normalization stage, because the syntax should be
  32. * preserved during parsing (e.g. for -echo command) *)
  33. let unary_number = function
  34. | Unary ("-", Number (n, u)) -> Number (-.n, u)
  35. | Unary ("+", (Number _ as n)) -> n
  36. | value -> value
  37. let rec append_addons base = function
  38. | [] ->
  39. base
  40. | `Id id :: tl ->
  41. append_addons (Id (base, id)) tl
  42. | `Class cls :: tl ->
  43. append_addons (Class (base, cls)) tl
  44. | `Attribute (attr, value) :: tl ->
  45. append_addons (Attribute (base, attr, value)) tl
  46. | `Pseudo_class (f, args) :: tl ->
  47. append_addons (Pseudo_class (base, f, args)) tl
  48. | `Pseudo_element elem :: tl ->
  49. append_addons (Pseudo_element (base, elem)) tl
  50. %}
  51. (* Tokens *)
  52. %token S CDO CDC IMPORT_SYM PAGE_SYM MEDIA_SYM CHARSET_SYM FONT_FACE_SYM
  53. %token NAMESPACE_SYM SUPPORTS_SYM IMPORTANT_SYM
  54. %token <float> PERCENTAGE NUMBER
  55. %token <float * string> UNIT_VALUE
  56. %token <string> KEYFRAMES_SYM COMBINATOR RELATION STRING IDENT HASH URI FUNCTION
  57. %token LPAREN RPAREN LBRACE RBRACE LBRACK RBRACK SEMICOL COLON DOUBLE_COLON
  58. %token COMMA DOT PLUS MINUS SLASH STAR ONLY AND (*OR*) NOT FROM TO EOF
  59. %token WS_AND WS_OR
  60. (* Start symbol *)
  61. %type <Types.stylesheet> stylesheet
  62. %start stylesheet
  63. %%
  64. (* list with arbitrary whitespace between elements and separators *)
  65. %inline ig2(a, b): a b {}
  66. %inline ig3(a, b, c): a b c {}
  67. %inline wslist(sep, x): S* l=separated_list(sep, terminated(x, S*)) { l }
  68. %inline wspreceded(prefix, x): p=preceded(ig2(prefix, S*), x) { p }
  69. %inline all_and: AND | WS_AND {}
  70. cd: CDO S* | CDC S* {}
  71. stylesheet:
  72. | charset = charset? S* cd*
  73. imports = terminated(import, cd*)*
  74. namespaces = terminated(namespace, cd*)*
  75. statements = terminated(nested_statement, cd*)*
  76. EOF
  77. { let charset = match charset with None -> [] | Some c -> [c] in
  78. charset @ imports @ namespaces @ statements }
  79. nested_statement:
  80. | s=ruleset | s=media | s=page | s=font_face_rule | s=keyframes_rule
  81. | s=supports_rule
  82. { s }
  83. group_rule_body:
  84. | LBRACE S* statements=nested_statement* RBRACE S*
  85. { statements }
  86. charset:
  87. | CHARSET_SYM name=STRING S* SEMICOL
  88. { Charset name }
  89. import:
  90. | IMPORT_SYM S* tgt=string_or_uri media=media_query_list SEMICOL S*
  91. { Import (tgt, media) }
  92. %inline string_or_uri:
  93. | str=STRING { Strlit str }
  94. | uri=URI { Uri uri }
  95. namespace:
  96. | NAMESPACE_SYM S* prefix=terminated(namespace_prefix, S*)? ns=string_or_uri S* SEMICOL S*
  97. { Namespace (prefix, ns) }
  98. %inline namespace_prefix:
  99. | prefix=IDENT
  100. { prefix }
  101. media:
  102. | MEDIA_SYM queries=media_query_list rulesets=group_rule_body
  103. { Media (queries, rulesets) }
  104. media_query_list:
  105. | S*
  106. { [] }
  107. | S* hd=media_query tl=wspreceded(COMMA, media_query)*
  108. { hd :: tl }
  109. media_query:
  110. | prefix=only_or_not? typ=media_type S* feat=wspreceded(all_and, media_expr)*
  111. { (prefix, Some typ, feat) }
  112. | hd=media_expr tl=wspreceded(all_and, media_expr)*
  113. { (None, None, (hd :: tl)) }
  114. %inline only_or_not:
  115. | ONLY S* { "only" }
  116. | NOT S* { "not" }
  117. %inline media_type:
  118. | id=IDENT { id }
  119. media_expr:
  120. | LPAREN S* feature=media_feature S* value=wspreceded(COLON, expr)? RPAREN S*
  121. { (feature, value) }
  122. %inline media_feature:
  123. | id=IDENT { id }
  124. page:
  125. | PAGE_SYM S* pseudo=pseudo_page? decls=decls_block
  126. { Page (pseudo, decls) }
  127. pseudo_page:
  128. | COLON pseudo=IDENT S*
  129. { pseudo }
  130. font_face_rule:
  131. | FONT_FACE_SYM S* LBRACE S* hd=descriptor_declaration?
  132. tl=wspreceded(SEMICOL, descriptor_declaration?)* RBRACE S*
  133. { Font_face (filter_none (hd :: tl)) }
  134. descriptor_declaration:
  135. | name=property COLON S* value=expr
  136. { (name, value) }
  137. keyframes_rule:
  138. | pre=KEYFRAMES_SYM S* id=IDENT S* LBRACE S* rules=keyframe_ruleset* RBRACE S*
  139. { Keyframes (pre, id, rules) }
  140. keyframe_ruleset:
  141. | selector=keyframe_selector S* decls=decls_block
  142. { (selector, decls) }
  143. keyframe_selector:
  144. | FROM { Ident "from" }
  145. | TO { Ident "to" }
  146. | n=PERCENTAGE { Number (n, Some "%") }
  147. supports_rule:
  148. | SUPPORTS_SYM S* cond=supports_condition S* body=group_rule_body
  149. { Supports (cond, body) }
  150. supports_condition:
  151. | c=supports_negation
  152. | c=supports_conjunction
  153. | c=supports_disjunction
  154. | c=supports_condition_in_parens
  155. { c }
  156. supports_condition_in_parens:
  157. | LPAREN S* c=supports_condition S* RPAREN
  158. | c=supports_declaration_condition
  159. (*XXX: | c=general_enclosed*)
  160. { c }
  161. supports_negation:
  162. | NOT S+ c=supports_condition_in_parens
  163. { Not c }
  164. supports_conjunction:
  165. | hd=supports_condition_in_parens tl=preceded(WS_AND, supports_condition_in_parens)+
  166. { And (hd :: tl) }
  167. supports_disjunction:
  168. | hd=supports_condition_in_parens tl=preceded(WS_OR, supports_condition_in_parens)+
  169. { Or (hd :: tl) }
  170. supports_declaration_condition:
  171. | LPAREN S* decl=supports_declaration RPAREN
  172. { Decl decl }
  173. supports_declaration:
  174. | name=property S* COLON S* value=expr
  175. { (name, value) }
  176. (*XXX:
  177. general_enclosed:
  178. | ( FUNCTION | LPAREN ) ( any | unused )* RPAREN
  179. { Enclosed expr }
  180. any:
  181. [ IDENT | NUMBER | PERCENTAGE | DIMENSION | STRING
  182. | DELIM | URI | HASH | UNICODE-RANGE | INCLUDES
  183. | DASHMATCH | ':' | FUNCTION S* [any|unused]* ')'
  184. | '(' S* [any|unused]* ')' | '[' S* [any|unused]* ']'
  185. ]
  186. S*;
  187. unused : block | ATKEYWORD S* | ';' S* | CDO S* | CDC S*;
  188. *)
  189. %inline decls_block:
  190. | LBRACE S* hd=declaration? tl=wspreceded(SEMICOL, declaration?)* RBRACE S*
  191. { filter_none (hd :: tl) }
  192. ruleset:
  193. | selectors_hd = selector
  194. selectors_tl = wspreceded(COMMA, selector)*
  195. decls = decls_block
  196. { Ruleset (selectors_hd :: selectors_tl, decls) }
  197. selector:
  198. | simple=simple_selector S*
  199. { simple }
  200. | left=simple_selector S+ right=selector
  201. { Combinator (left, " ", right) }
  202. | left=simple_selector S* com=combinator right=selector
  203. { Combinator (left, com, right) }
  204. %inline combinator:
  205. | PLUS S* { "+" }
  206. | c=COMBINATOR S* { c }
  207. simple_selector:
  208. | elem=element_name addons=element_addon*
  209. { append_addons elem addons }
  210. | addons=element_addon+
  211. { append_addons No_element addons }
  212. %inline element_addon:
  213. | id=HASH { `Id id }
  214. | addon=cls
  215. | addon=attrib
  216. | addon=pseudo { addon }
  217. element_name:
  218. | tag=IDENT { Element (String.lowercase tag) }
  219. | STAR { All_elements }
  220. cls:
  221. | DOT name=IDENT
  222. { `Class name }
  223. attrib:
  224. | LBRACK S* left=IDENT S* RBRACK
  225. { `Attribute (String.lowercase left, None) }
  226. | LBRACK S* left=IDENT S* op=RELATION right=rel_value RBRACK
  227. { `Attribute (String.lowercase left, Some (op, right)) }
  228. %inline rel_value:
  229. | S* id=IDENT S* { Ident id }
  230. | S* s=STRING S* { Strlit s }
  231. pseudo:
  232. | COLON id=IDENT
  233. { `Pseudo_class (String.lowercase id, None) }
  234. | COLON f=FUNCTION args=wslist(COMMA, simple_selector) RPAREN
  235. { `Pseudo_class (String.lowercase f, Some args) }
  236. | DOUBLE_COLON id=IDENT
  237. { `Pseudo_element (String.lowercase id) }
  238. declaration:
  239. | name=property S* COLON S* value=expr important=boption(ig2(IMPORTANT_SYM, S*))
  240. { (String.lowercase name, value, important) }
  241. %inline property:
  242. | name=IDENT { name }
  243. | STAR name=IDENT { "*" ^ name } (* IE7 property name hack *)
  244. expr:
  245. | l=exprl { concat_terms l }
  246. %inline exprl:
  247. | hd=term tl=opterm* { Term hd :: List.concat tl }
  248. %inline opterm:
  249. | t=term { [Term t] }
  250. | op=operator t=term { [Operator op; Term t] }
  251. %inline operator:
  252. | SLASH S* { "/" }
  253. | COMMA S* { "," }
  254. term:
  255. | op=unary_operator v=numval S* { unary_number (Unary (op, v)) }
  256. | v=numval S* { v }
  257. | str=STRING S* { Strlit str }
  258. | id=IDENT S* { Ident (String.lowercase id) }
  259. | uri=URI S* { Uri uri }
  260. | fn=FUNCTION arg=expr RPAREN S* { Function (String.lowercase fn, arg) }
  261. | hex=HASH S*
  262. { let h = "[0-9a-fA-F][0-9a-fA-F][0-9a-fA-F]" in
  263. if Str.string_match (Str.regexp ("^" ^ h ^ "\\(" ^ h ^ "\\)?$")) hex 0
  264. then Hexcolor (String.lowercase hex)
  265. else raise (Syntax_error ("invalid color #" ^ hex)) }
  266. unary_operator:
  267. | MINUS { "-" }
  268. | PLUS { "+" }
  269. %inline numval:
  270. | n=NUMBER { Number (n, None) }
  271. | v=UNIT_VALUE { let n, u = v in Number (n, Some (String.lowercase u)) }
  272. | n=PERCENTAGE { Number (n, Some "%") }