dotfiles/.config/mvi/scripts/ruler.lua

314 lines
11 KiB
Lua

local opts = {
show_distance = true,
show_coordinates = true,
coordinates_space = "image",
show_angles = "degrees",
line_width = 2,
dots_radius = 3,
font_size = 36,
line_color = "33",
confirm_bindings = "MBTN_LEFT,ENTER",
exit_bindings = "ESC",
set_first_point_on_begin = false,
clear_on_second_point_set = false,
}
local options = require 'mp.options'
local msg = require 'mp.msg'
local assdraw = require 'mp.assdraw'
local state = 0 -- {0,1,2,3} = {inactive,setting first point,setting second point,done}
local first_point = nil -- in normalized video space coordinates
local second_point = nil -- in normalized video space coordinates
local video_dimensions_stale = false
function split(input)
local ret = {}
for str in string.gmatch(input, "([^,]+)") do
ret[#ret + 1] = str
end
return ret
end
local confirm_bindings = split(opts.confirm_bindings)
local exit_bindings = split(opts.exit_bindings)
options.read_options(opts, nil, function()
if state ~= 0 then
remove_bindings()
end
confirm_bindings = split(opts.confirm_bindings)
exit_bindings = split(opts.exit_bindings)
if state ~= 0 then
add_bindings()
mark_stale()
end
end)
function draw_ass(ass)
local ww, wh = mp.get_osd_size()
mp.set_osd_ass(ww, wh, ass)
end
function cursor_video_space_normalized(dim)
local mx, my = mp.get_mouse_pos()
local ret = {}
ret[1] = (mx - dim.ml) / (dim.w - dim.ml - dim.mr)
ret[2] = (my - dim.mt) / (dim.h - dim.mt - dim.mb)
return ret
end
function refresh()
if not video_dimensions_stale then return end
video_dimensions_stale = false
local dim = mp.get_property_native("osd-dimensions")
local out_params = mp.get_property_native("video-out-params")
if not dim or not out_params then
draw_ass("")
return
end
local vid_width = out_params.dw
local vid_height = out_params.dh
function video_space_normalized_to_video(point)
local ret = {}
ret[1] = point[1] * vid_width
ret[2] = point[2] * vid_height
return ret
end
function video_space_normalized_to_screen(point)
local ret = {}
ret[1] = point[1] * (dim.w - dim.ml - dim.mr) + dim.ml
ret[2] = point[2] * (dim.h - dim.mt - dim.mb) + dim.mt
return ret
end
local line_start = {}
local line_end = {}
if second_point then
line_start.image = video_space_normalized_to_video(first_point)
line_start.screen = video_space_normalized_to_screen(first_point)
line_end.image = video_space_normalized_to_video(second_point)
line_end.screen = video_space_normalized_to_screen(second_point)
elseif first_point then
line_start.image = video_space_normalized_to_video(first_point)
line_start.screen = video_space_normalized_to_screen(first_point)
line_end.image = video_space_normalized_to_video(cursor_video_space_normalized(dim))
line_end.screen = {}
line_end.screen[1], line_end.screen[2] = mp.get_mouse_pos()
else
local mx, my = mp.get_mouse_pos()
line_start.image = video_space_normalized_to_video(cursor_video_space_normalized(dim))
line_start.screen = {}
line_start.screen[1], line_start.screen[2] = mp.get_mouse_pos()
line_end = line_start
end
local distinct = (math.abs(line_start.screen[1] - line_end.screen[1]) >= 1
or math.abs(line_start.screen[2] - line_end.screen[2]) >= 1)
local a = assdraw:ass_new()
local draw_setup = function(bord)
a:new_event()
a:pos(0,0)
a:append("{\\bord" .. bord .. "}")
a:append("{\\shad0}")
local r = opts.line_color
a:append("{\\3c&H".. r .. r .. r .. "&}")
a:append("{\\1a&HFF}")
a:append("{\\2a&HFF}")
a:append("{\\3a&H00}")
a:append("{\\4a&HFF}")
a:draw_start()
end
local dot = function(pos, size)
draw_setup(size)
a:move_to(pos[1], pos[2]-0.5)
a:line_to(pos[1], pos[2]+0.5)
end
local line = function(from, to, size)
draw_setup(size)
a:move_to(from[1], from[2])
a:line_to(to[1], to[2])
end
if distinct then
dot(line_start.screen, opts.dots_radius)
line(line_start.screen, line_end.screen, opts.line_width)
dot(line_end.screen, opts.dots_radius)
else
dot(line_start.screen, opts.dots_radius)
end
local line_info = function()
if not opts.show_distance then return end
a:new_event()
a:append("{\\fs36}{\\bord1}")
a:pos((line_start.screen[1] + line_end.screen[1]) / 2, (line_start.screen[2] + line_end.screen[2]) / 2)
local an = 1
if line_start.image[1] < line_end.image[1] then an = an + 2 end
if line_start.image[2] < line_end.image[2] then an = an + 6 end
a:an(an)
local image = math.sqrt(math.pow(line_start.image[1] - line_end.image[1], 2) + math.pow(line_start.image[2] - line_end.image[2], 2))
local screen = math.sqrt(math.pow(line_start.screen[1] - line_end.screen[1], 2) + math.pow(line_start.screen[2] - line_end.screen[2], 2))
if opts.coordinates_space == "both" then
a:append(string.format("image: %.1f\\Nscreen: %.1f", image, screen))
elseif opts.coordinates_space == "image" then
a:append(string.format("%.1f", image))
elseif opts.coordinates_space == "window" then
a:append(string.format("%.1f", screen))
end
end
local dot_info = function(pos, opposite)
if not opts.show_coordinates then return end
a:new_event()
a:append("{\\fs" .. opts.font_size .."}{\\bord1}")
a:pos(pos.screen[1], pos.screen[2])
local an
if distinct then
an = 1
if line_start.image[1] > line_end.image[1] then an = an + 2 end
if line_start.image[2] < line_end.image[2] then an = an + 6 end
else
an = 7
end
if opposite then
an = 9 + 1 - an
end
a:an(an)
if opts.coordinates_space == "both" then
a:append(string.format("image: %.1f, %.1f\\Nscreen: %i, %i",
pos.image[1], pos.image[2], pos.screen[1], pos.screen[2]))
elseif opts.coordinates_space == "image" then
a:append(string.format("%.1f, %.1f", pos.image[1], pos.image[2]))
elseif opts.coordinates_space == "window" then
a:append(string.format("%i, %i", pos.screen[1], pos.screen[2]))
end
end
dot_info(line_start, true)
if distinct then
line_info()
dot_info(line_end, false)
end
if distinct and opts.show_angles ~= "no" then
local dist = 50
local pos_from_angle = function(mult, angle)
return {
line_start.screen[1] + mult * dist * math.cos(angle),
line_start.screen[2] + mult * dist * math.sin(angle),
}
end
local extended = { line_start.screen[1], line_start.screen[2] }
if line_end.screen[1] > line_start.screen[1] then
extended[1] = extended[1] + dist
else
extended[1] = extended[1] - dist
end
line(line_start.screen, extended, math.max(0, opts.line_width-0.5))
local angle = math.atan(math.abs(line_start.image[2] - line_end.image[2]) / math.abs(line_start.image[1] - line_end.image[1]))
local fix_angle
local an
if line_end.image[2] < line_start.image[2] and line_end.image[1] > line_start.image[1] then
-- upper-right
an = 4
fix_angle = function(angle) return - angle end
elseif line_end.image[2] < line_start.image[2] then
-- upper-left
an = 6
fix_angle = function(angle) return math.pi + angle end
elseif line_end.image[1] < line_start.image[1] then
-- bottom-left
an = 6
fix_angle = function(angle) return math.pi - angle end
else
-- bottom-right
an = 4
fix_angle = function(angle) return angle end
end
-- should implement this https://math.stackexchange.com/questions/873224/calculate-control-points-of-cubic-bezier-curve-approximating-a-part-of-a-circle
local cp1 = pos_from_angle(1, fix_angle(angle*1/4))
local cp2 = pos_from_angle(1, fix_angle(angle*3/4))
local p2 = pos_from_angle(1, fix_angle(angle))
a:bezier_curve(cp1[1], cp1[2], cp2[1], cp2[2], p2[1], p2[2])
a:new_event()
a:append("{\\fs" .. opts.font_size .."}{\\bord1}")
local text_pos = pos_from_angle(1.1, fix_angle(angle*2/3)) -- you'd think /2 would make more sense, but *2/3 looks better
a:pos(text_pos[1], text_pos[2])
a:an(an)
if opts.show_angles == "both" then
a:append(string.format("%.2f\\N%.1f°", angle, angle / math.pi * 180))
elseif opts.show_angles == "degrees" then
a:append(string.format("%.1f°", angle / math.pi * 180))
elseif opts.show_angles == "radians" then
a:append(string.format("%.2f", angle))
end
end
draw_ass(a.text)
end
function mark_stale()
video_dimensions_stale = true
end
function add_bindings()
mp.add_forced_key_binding("mouse_move", "ruler-mouse-move", mark_stale)
for _, key in ipairs(confirm_bindings) do
mp.add_forced_key_binding(key, "ruler-next-" .. key, next_step)
end
for _, key in ipairs(exit_bindings) do
mp.add_forced_key_binding(key, "ruler-stop-" .. key, stop)
end
end
function remove_bindings()
for _, key in ipairs(confirm_bindings) do
mp.remove_key_binding("ruler-next-" .. key)
end
for _, key in ipairs(exit_bindings) do
mp.remove_key_binding("ruler-stop-" .. key)
end
mp.remove_key_binding("ruler-mouse-move")
end
function next_step()
if state == 0 then
state = 1
mp.register_idle(refresh)
mp.observe_property("osd-dimensions", nil, mark_stale)
mark_stale()
add_bindings()
if opts.set_first_point_on_begin then
next_step()
end
elseif state == 1 then
local dim = mp.get_property_native("osd-dimensions")
if not dim then return end
state = 2
first_point = cursor_video_space_normalized(dim)
elseif state == 2 then
local dim = mp.get_property_native("osd-dimensions")
if not dim then return end
state = 3
second_point = cursor_video_space_normalized(dim)
if opts.clear_on_second_point_set then
next_step()
end
else
stop()
end
end
function stop()
if state == 0 then return end
mp.unregister_idle(refresh)
mp.unobserve_property(mark_stale)
remove_bindings()
state = 0
first_point = nil
second_point = nil
draw_ass("")
end
mp.add_key_binding(nil, "ruler", next_step)