util  Check-in [0f6a5bda23]

Overview
Comment:add syn
Downloads: Tarball | ZIP archive | SQL archive
Timelines: family | ancestors | descendants | both | trunk
Files: files | file ages | folders
SHA3-256: 0f6a5bda236d515918b5adcb8247c4e26f9adc3747d392bdf483a6452d9bfeae
User & Date: lexi on 2022-04-26 02:02:04
Other Links: manifest | tags
Context
2022-04-28
21:01
commit to preserve old code im about to axe, parvan is broken currently check-in: f996abb5e5 user: lexi tags: trunk
2022-04-26
02:02
add syn check-in: 0f6a5bda23 user: lexi tags: trunk
2022-04-25
21:01
add first parvan revision check-in: bf5f4fd9ca user: lexi tags: trunk
Changes

Modified parvan.lua from [760cd798bc] to [2e5da05ad6].

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local qpack = function(f) return {
	encode = packer(f);
	decode = unpacker(f);
} end

local parse, marshal
fmt.string = qpack "s4"


fmt.u8 = qpack "I1"
fmt.u16 = qpack "I2"
fmt.u24 = qpack "I3"
fmt.u32 = qpack "I4"
fmt.list = function(t,ty) ty = ty or fmt.u32
	return {
		encode = function(a)
................................................................................
			return m
		end;
	}
end

fmt.form = {
	{'form', fmt.u16};
	{'text', fmt.string};
}

fmt.note = {
	{'kind', fmt.string};
	{'paras', fmt.list(fmt.string)};
}

fmt.meaning = {
	{'lit', fmt.string};
	{'notes', fmt.list(fmt.note,fmt.u8)};
}

fmt.def = {
	{'part', fmt.u8};
	{'branch', fmt.list(fmt.string,fmt.u8)};
	{'means', fmt.list(fmt.meaning,fmt.u8)};
	{'forms', fmt.list(fmt.form,fmt.u16)};
}

fmt.word = {
	{'defs', fmt.list(fmt.def,fmt.u8)};
}

fmt.dictHeader = {
	{'lang', fmt.string};
	{'meta', fmt.string};
	{'partsOfSpeech', fmt.list(fmt.string,fmt.u16)};










}

fmt.dict = {
	{'header', fmt.dictHeader};
	{'words', fmt.map(fmt.string,fmt.word)};

}

function marshal(ty, val)
	if ty.encode then
		return ty.encode(val)
	end
	local ac = {}
................................................................................
			def.part = atomizePoS(def.part)
		end
	end
	d.header.partsOfSpeech = {}
	for v,i in pairs(posMap) do
		d.header.partsOfSpeech[i] = v
	end
	return marshal(fmt.dict, d)
end

local function
readDict(file)





	local d = parse(fmt.dict, stream(file))
	-- handle atoms
	for lit,w in pairs(d.words) do
		for j,def in ipairs(w.defs) do
			def.part = d.header.partsOfSpeech[def.part]
		end
	end
	return d
................................................................................
				else
					id10t('[lit %s %s] is not a valid filter, “%s” should be either “pfx” or “sfx”',val,op,op)
				end
			end;
		};
		form = {
			help = 'match against word\'s inflected forms';
			syntax = '(<inflect> | <form> (set | is <inflect> | pfx <prefix> | sfx <suffix>))';
			fn = function(e, k, op, v)
			end;
		};
		part = {
			help = 'word has definitions for every <part> of speech';
			syntax = '<part>…';
			fn = function(e,...)
................................................................................
					local matches = 0
					for j,r in ipairs(d.branch) do
						if map[r] then matches = matches + 1 end
					end
					if matches == tgt then return true end
				end
			end


































		};
	}
end

local function
safeopen(file,...)
	if type(file) == 'string' then
................................................................................
				header = {
					lang = lang;
					meta = "";
					partsOfSpeech = {};
					branch = {};
				};
				words = {};

			}
			local o = writeDict(new);
			fd:write(o)
			fd:close()
		end;
	};
	coin = {
................................................................................
		help = "add a meaning to a definition";
		syntax = "<word> <def#> <meaning>";
		write = true;
		exec = function(ctx,word,dn,m)
			local _,d = safeNavWord(ctx,word,dn)
			table.insert(d.means, {lit=m,notes={}})
		end;






























































	};
	mod = {
		help = "move, merge, split, or delete words or definitions";
		syntax = {
			"<path> (drop | [move|merge|clobber] <path> | out [<part> [<root>…]])";
			"path ::= <word>[(@<def#>[/<meaning#>[:<note#>]]|.)]";
		};
................................................................................
		syntax = "[<command>]";
	};
	predicates = {
		help = "show available filter predicates";
		nofile = true;
		syntax = "[<predicate>]";
	};



	dump = {
		exec = function(ctx) print(dump(ctx.dict)) end
	};
	ls = {
		help = "list all words that meet any given <filter>";
		syntax = {"[<filter>…]";
			"filter ::= (<word>|<pred> <arg>…)";
................................................................................
			for j, def in ipairs(w.word.defs) do
				d=d .. '\n' .. meanings(def,true,j)
			end
		end
		io.stdout:write(d..'\n')
	end
end





















































function cmds.mod.exec(ctx, orig, oper, dest, ...)
	if (not orig) or not oper then
		id10t '`mod` requires at least an origin and an operation'
	end
	local op, dp = parsePath(orig)
	local w,d,m,n = safeNavWord(ctx, op.w,op.dn,op.mn,op.nn)







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local qpack = function(f) return {
	encode = packer(f);
	decode = unpacker(f);
} end

local parse, marshal
fmt.string = qpack "s4"
fmt.label = qpack "s2"
fmt.tag = qpack "s1"
fmt.u8 = qpack "I1"
fmt.u16 = qpack "I2"
fmt.u24 = qpack "I3"
fmt.u32 = qpack "I4"
fmt.list = function(t,ty) ty = ty or fmt.u32
	return {
		encode = function(a)
................................................................................
			return m
		end;
	}
end

fmt.form = {
	{'form', fmt.u16};
	{'text', fmt.label};
}

fmt.note = {
	{'kind', fmt.tag};
	{'paras', fmt.list(fmt.string)};
}

fmt.meaning = {
	{'lit', fmt.string};
	{'notes', fmt.list(fmt.note,fmt.u8)};
}

fmt.def = {
	{'part', fmt.u8};
	{'branch', fmt.list(fmt.label,fmt.u8)};
	{'means', fmt.list(fmt.meaning,fmt.u8)};
	{'forms', fmt.list(fmt.form,fmt.u16)};
}

fmt.word = {
	{'defs', fmt.list(fmt.def,fmt.u8)};
}

fmt.dictHeader = {
	{'lang', fmt.tag};
	{'meta', fmt.string};
	{'partsOfSpeech', fmt.list(fmt.tag,fmt.u16)};
}

fmt.synonymSet = {
	{'uid', fmt.u32};
		-- IDs are persistent random values so they can be used
		-- as reliable identifiers even when merging exports in
		-- a parvan-unaware VCS
	{'members', fmt.list({
		{'word', fmt.label}, {'def', fmt.u8};
	},fmt.u16)};
}

fmt.dict = {
	{'header', fmt.dictHeader};
	{'words', fmt.map(fmt.string,fmt.word)};
	{'synonyms', fmt.list(fmt.synonymSet)};
}

function marshal(ty, val)
	if ty.encode then
		return ty.encode(val)
	end
	local ac = {}
................................................................................
			def.part = atomizePoS(def.part)
		end
	end
	d.header.partsOfSpeech = {}
	for v,i in pairs(posMap) do
		d.header.partsOfSpeech[i] = v
	end
	return 'PV0\2'..marshal(fmt.dict, d)
end

local function
readDict(file)
	local s = stream(file)
	local magic = s:next 'c4'
	if magic ~= 'PV0\2' then
		id10t 'not a parvan file'
	end
	local d = parse(fmt.dict, s)
	-- handle atoms
	for lit,w in pairs(d.words) do
		for j,def in ipairs(w.defs) do
			def.part = d.header.partsOfSpeech[def.part]
		end
	end
	return d
................................................................................
				else
					id10t('[lit %s %s] is not a valid filter, “%s” should be either “pfx” or “sfx”',val,op,op)
				end
			end;
		};
		form = {
			help = 'match against word\'s inflected forms';
			syntax = '(<inflect> | <form> (set | is <inflect> | (pfx|sfx|match) <affix>))';
			fn = function(e, k, op, v)
			end;
		};
		part = {
			help = 'word has definitions for every <part> of speech';
			syntax = '<part>…';
			fn = function(e,...)
................................................................................
					local matches = 0
					for j,r in ipairs(d.branch) do
						if map[r] then matches = matches + 1 end
					end
					if matches == tgt then return true end
				end
			end
		};
		note = {
			help = 'word has a matching note';
			syntax = '([kind <kind> [<term>]] | term <term> | (min|max|count) <n>)';
			fn = function(e, op, k, t)
				if op == 'kind' or op == 'term' then
					if op == 'term' and t then
						id10t('too many arguments for [note term <term>]')
					end
					for _,d in ipairs(e.word.defs) do
					for _,m in ipairs(d.means) do
					for _,n in ipairs(m.notes) do
						if op=='term' or n.kind == k then
							if op=='kind' and t == nil then return true end
							if string.find(table.concat(n.paras,'\n'), t or k, 1, true) ~= nil then return true end
						end
					end end end
				elseif op == 'min' or op == 'max' or op == 'count' then
					if t then
						id10t('too many arguments for [note %s <n>]',op)
					end
					local n = math.floor(tonumber(k))
					local total = 0
					for i,d in ipairs(e.word.defs) do
					for j,m in ipairs(d.means) do
						total = total + #m.notes
						if op == 'min' and total >= n then return true end
						if op == 'max' and total > n then return false end
					end end
					if op == 'count' then return total == n end
					if op == 'max'   then return total <= n end
					return false
				end
			end;
		};
	}
end

local function
safeopen(file,...)
	if type(file) == 'string' then
................................................................................
				header = {
					lang = lang;
					meta = "";
					partsOfSpeech = {};
					branch = {};
				};
				words = {};
				synonyms = {};
			}
			local o = writeDict(new);
			fd:write(o)
			fd:close()
		end;
	};
	coin = {
................................................................................
		help = "add a meaning to a definition";
		syntax = "<word> <def#> <meaning>";
		write = true;
		exec = function(ctx,word,dn,m)
			local _,d = safeNavWord(ctx,word,dn)
			table.insert(d.means, {lit=m,notes={}})
		end;
	};
	syn = {
		help = "manage synonym groups";
		syntax = {
			"(show|purge) <path>";
			"(link|drop) <word> <group#> <path>…";
			"new <path> <path>…";
			"clear <word> [<group#>]";
		};
		write = true;
		exec = function(ctx, op, tgtw, ...)
			local groups = {}
			local wp = parsePath(tgtw)
			local w,d = safeNavWord(ctx, wp.w, wp.dn)
			if not (op=='new' or op=='link' or op=='drop' or op=='clear' or op=='show' or op=='purge') then
				id10t('invalid operation “%s” for `syn`', op)
			end
			if op == 'new' then
				local links = {{word = wp.w, def = wp.dn or 1}}
				for i,l in ipairs{...} do
					local parsed = parsePath(l)
					links[i+1] = {word = parsed.w, def = parsed.dn or 1}
				end
				table.insert(ctx.dict.synonyms, {
					uid=math.random(0,0xffffFFFF);
					members=links;
				})
			else -- assemble a list of groups
				for i,ss in ipairs(ctx.dict.synonyms) do
					for j,s in ipairs(ss.members) do
						if s.word == wp.w and (wp.dn == nil or s.def == wp.dn) then
							table.insert(groups, {set = ss, mem = s})
							break
						end
					end
				end

				if op == 'show' then
					for i, g in ipairs(groups) do
						local w,d = safeNavWord(ctx, g.mem.word, g.mem.def)
						local function label(wd,defn)
							local fulldef = {}
							for i,v in ipairs(defn.means) do
								fulldef[i] = v.lit
							end
							fulldef = table.concat(fulldef, '; ')
							return string.format("%s(%s): %s",wd,defn.part,fulldef)
						end
						local others = {}
						for j, o in ipairs(g.set.members) do
							if not (o.word == g.mem.word and o.def == (wp.dn or 1)) then
								local ow, od = safeNavWord(ctx, o.word,o.def)
								table.insert(others, '      '..label(o.word,od))
							end
						end
						io.stdout:write(string.format("% 4u) %s\n%s", i, label(g.mem.word,d),table.concat(others,'\n')))
					end
				elseif op == 'link' or op == 'drop' then
					local tgtn, paths = (...), { select(2, ...) }
				end
			end
		end;
	};
	mod = {
		help = "move, merge, split, or delete words or definitions";
		syntax = {
			"<path> (drop | [move|merge|clobber] <path> | out [<part> [<root>…]])";
			"path ::= <word>[(@<def#>[/<meaning#>[:<note#>]]|.)]";
		};
................................................................................
		syntax = "[<command>]";
	};
	predicates = {
		help = "show available filter predicates";
		nofile = true;
		syntax = "[<predicate>]";
	};
	export = {
		help = "create a text file dump compatible with source control";
	};
	dump = {
		exec = function(ctx) print(dump(ctx.dict)) end
	};
	ls = {
		help = "list all words that meet any given <filter>";
		syntax = {"[<filter>…]";
			"filter ::= (<word>|<pred> <arg>…)";
................................................................................
			for j, def in ipairs(w.word.defs) do
				d=d .. '\n' .. meanings(def,true,j)
			end
		end
		io.stdout:write(d..'\n')
	end
end

function cmds.export.exec(ctx)
	local function san(str)
		local d = 0
		local r = {}
		for i,cp in utf8.codes(str) do
			-- insert backslashes for characters that would
			-- disrupt strwords() parsing
			if cp == 0x5b then
				d = d + 1
			elseif cp == 0x5d then
				if d >= 1 then
					d = d - 1
				else
					table.insert(r, 0x5c)
				end
			end
			table.insert(r, cp)
		end
		return '[' .. utf8.char(table.unpack(r)) .. ']'
	end
	local function o(...) io.stdout:write(string.format(...)..'\n') end
	local d = ctx.dict
	o('pv0 %s %s', san(d.header.lang), san(d.header.meta))
	for lit, w in pairs(d.words) do
		o('w %s',san(lit))
		for i,def in ipairs(w.defs) do
			o('d %s',san(def.part))
			for _,s in ipairs(d.synonyms) do
				for _,sm in ipairs(s.members) do
					if sm.word == w and sm.def == i then
						o('ds %u',s.uid)
						break
					end
				end
			end
			for j,r in ipairs(def.branch) do
				o('dr %s',san(r))
			end
			for j,m in ipairs(def.means) do
				o('m %s', san(m.lit))
				for k,n in ipairs(m.notes) do
					o('n %s', san(n.kind))
					for a,p in ipairs(n.paras) do
						o('np %s', san(p))
					end
				end
			end
		end
	end
	for _,s in ipairs(d.synonyms) do o('s %u', s.uid) end
end

function cmds.mod.exec(ctx, orig, oper, dest, ...)
	if (not orig) or not oper then
		id10t '`mod` requires at least an origin and an operation'
	end
	local op, dp = parsePath(orig)
	local w,d,m,n = safeNavWord(ctx, op.w,op.dn,op.mn,op.nn)