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mirror of https://github.com/trezor/trezor-firmware.git synced 2024-12-17 03:48:09 +00:00

put ui.utils back in ui/__init__.py

This commit is contained in:
Jan Pochyla 2016-05-17 18:55:11 +02:00 committed by Pavol Rusnak
parent f3c9715ff3
commit c0313cc868
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GPG Key ID: 91F3B339B9A02A3D
6 changed files with 90 additions and 92 deletions

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@ -1,5 +1,4 @@
from trezor import ui
from trezor.ui import utils as ui_utils
from trezor.ui.swipe import Swipe
from trezor import loop
@ -17,10 +16,10 @@ def layout_homescreen():
def func(foreground):
f.seek(0)
ui.display.icon(0, 0, f.read(), foreground, ui_utils.BLACK)
ui.display.icon(0, 0, f.read(), foreground, ui.BLACK)
orientation = swipe_to_change_orientation()
animation = ui_utils.animate_pulse(func, ui_utils.WHITE, ui_utils.GREY, speed=400000)
animation = ui.animate_pulse(func, ui.WHITE, ui.GREY, speed=400000)
timeout = loop.Sleep(5000 * 1000)
yield loop.Wait([

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@ -1,6 +1,5 @@
from trezor import loop
from trezor import ui
from trezor.ui.swipe import Swipe
from trezor.ui.pin import PinDialog, PIN_CONFIRMED, PIN_CANCELLED
from trezor.utils import unimport_func

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@ -1,3 +1,64 @@
import math
import utime
from TrezorUi import Display
from trezor import loop
display = Display()
def rgbcolor(r: int, g: int, b: int) -> int:
return ((r & 0xF8) << 8) | ((g & 0xFC) << 3) | ((b & 0xF8) >> 3)
RED = rgbcolor(0xF4, 0x43, 0x36)
PINK = rgbcolor(0xE9, 0x1E, 0x63)
PURPLE = rgbcolor(0x9C, 0x27, 0xB0)
DEEP_PURPLE = rgbcolor(0x67, 0x3A, 0xB7)
INDIGO = rgbcolor(0x3F, 0x51, 0xB5)
BLUE = rgbcolor(0x21, 0x96, 0xF3)
LIGHT_BLUE = rgbcolor(0x03, 0xA9, 0xF4)
CYAN = rgbcolor(0x00, 0xBC, 0xD4)
TEAL = rgbcolor(0x00, 0x96, 0x88)
GREEN = rgbcolor(0x4C, 0xAF, 0x50)
LIGHT_GREEN = rgbcolor(0x8B, 0xC3, 0x4A)
LIME = rgbcolor(0xCD, 0xDC, 0x39)
YELLOW = rgbcolor(0xFF, 0xEB, 0x3B)
AMBER = rgbcolor(0xFF, 0xC1, 0x07)
ORANGE = rgbcolor(0xFF, 0x98, 0x00)
DEEP_ORANGE = rgbcolor(0xFF, 0x57, 0x22)
BROWN = rgbcolor(0x79, 0x55, 0x48)
GREY = rgbcolor(0x9E, 0x9E, 0x9E)
BLUE_GRAY = rgbcolor(0x60, 0x7D, 0x8B)
BLACK = rgbcolor(0x00, 0x00, 0x00)
WHITE = rgbcolor(0xFF, 0xFF, 0xFF)
MONO = const(0)
NORMAL = const(1)
BOLD = const(2)
def in_area(pos, area):
x, y = pos
ax, ay, aw, ah = area
return ax <= x <= ax + aw and ay <= y <= ay + ah
def lerpi(a: int, b: int, t: float) -> int:
return int(a + t * (b - a))
def blend(ca: int, cb: int, t: float) -> int:
return rgbcolor(lerpi((ca >> 8) & 0xF8, (cb >> 8) & 0xF8, t),
lerpi((ca >> 3) & 0xFC, (cb >> 3) & 0xFC, t),
lerpi((ca << 3) & 0xF8, (cb << 3) & 0xF8, t))
def animate_pulse(func, ca, cb, speed=200000, delay=30000):
while True:
# normalize sin from interval -1:1 to 0:1
y = 0.5 + 0.5 * math.sin(utime.ticks_us() / speed)
c = blend(ca, cb, y)
func(c)
yield loop.Sleep(delay)

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@ -1,46 +1,45 @@
from . import utils
from . import display
from .utils import in_area
from . import display, in_area
from trezor import ui
from trezor import loop
DEFAULT_BUTTON = {
'bg-color': utils.BLACK,
'fg-color': utils.WHITE,
'text-style': utils.NORMAL,
'border-color': utils.blend(utils.BLACK, utils.WHITE, 0.1),
'bg-color': ui.BLACK,
'fg-color': ui.WHITE,
'text-style': ui.NORMAL,
'border-color': ui.blend(ui.BLACK, ui.WHITE, 0.1),
}
DEFAULT_BUTTON_ACTIVE = {
'bg-color': utils.GREY,
'fg-color': utils.BLACK,
'text-style': utils.BOLD,
'border-color': utils.GREY,
'bg-color': ui.GREY,
'fg-color': ui.BLACK,
'text-style': ui.BOLD,
'border-color': ui.GREY,
}
CANCEL_BUTTON = {
'bg-color': utils.blend(utils.BLACK, utils.RED, 0.3),
'fg-color': utils.RED,
'text-style': utils.NORMAL,
'border-color': utils.blend(utils.BLACK, utils.RED, 0.6),
'bg-color': ui.blend(ui.BLACK, ui.RED, 0.3),
'fg-color': ui.RED,
'text-style': ui.NORMAL,
'border-color': ui.blend(ui.BLACK, ui.RED, 0.6),
}
CANCEL_BUTTON_ACTIVE = {
'bg-color': utils.RED,
'fg-color': utils.WHITE,
'text-style': utils.BOLD,
'border-color': utils.RED,
'bg-color': ui.RED,
'fg-color': ui.WHITE,
'text-style': ui.BOLD,
'border-color': ui.RED,
}
CONFIRM_BUTTON = {
'bg-color': utils.blend(utils.BLACK, utils.GREEN, 0.3),
'fg-color': utils.GREEN,
'text-style': utils.NORMAL,
'border-color': utils.blend(utils.BLACK, utils.GREEN, 0.6),
'bg-color': ui.blend(ui.BLACK, ui.GREEN, 0.3),
'fg-color': ui.GREEN,
'text-style': ui.NORMAL,
'border-color': ui.blend(ui.BLACK, ui.GREEN, 0.6),
}
CONFIRM_BUTTON_ACTIVE = {
'bg-color': utils.GREEN,
'fg-color': utils.WHITE,
'text-style': utils.BOLD,
'border-color': utils.GREEN,
'bg-color': ui.GREEN,
'fg-color': ui.WHITE,
'text-style': ui.BOLD,
'border-color': ui.GREEN,
}
BTN_CLICKED = const(1)

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@ -1,6 +1,6 @@
import utime
from .utils import in_area
from . import in_area
from trezor import loop

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@ -1,60 +0,0 @@
import math
import utime
from trezor import loop
def rgbcolor(r: int, g: int, b: int) -> int:
return ((r & 0xF8) << 8) | ((g & 0xFC) << 3) | ((b & 0xF8) >> 3)
RED = rgbcolor(0xF4, 0x43, 0x36)
PINK = rgbcolor(0xE9, 0x1E, 0x63)
PURPLE = rgbcolor(0x9C, 0x27, 0xB0)
DEEP_PURPLE = rgbcolor(0x67, 0x3A, 0xB7)
INDIGO = rgbcolor(0x3F, 0x51, 0xB5)
BLUE = rgbcolor(0x21, 0x96, 0xF3)
LIGHT_BLUE = rgbcolor(0x03, 0xA9, 0xF4)
CYAN = rgbcolor(0x00, 0xBC, 0xD4)
TEAL = rgbcolor(0x00, 0x96, 0x88)
GREEN = rgbcolor(0x4C, 0xAF, 0x50)
LIGHT_GREEN = rgbcolor(0x8B, 0xC3, 0x4A)
LIME = rgbcolor(0xCD, 0xDC, 0x39)
YELLOW = rgbcolor(0xFF, 0xEB, 0x3B)
AMBER = rgbcolor(0xFF, 0xC1, 0x07)
ORANGE = rgbcolor(0xFF, 0x98, 0x00)
DEEP_ORANGE = rgbcolor(0xFF, 0x57, 0x22)
BROWN = rgbcolor(0x79, 0x55, 0x48)
GREY = rgbcolor(0x9E, 0x9E, 0x9E)
BLUE_GRAY = rgbcolor(0x60, 0x7D, 0x8B)
BLACK = rgbcolor(0x00, 0x00, 0x00)
WHITE = rgbcolor(0xFF, 0xFF, 0xFF)
MONO = const(0)
NORMAL = const(1)
BOLD = const(2)
def in_area(pos, area):
x, y = pos
ax, ay, aw, ah = area
return ax <= x <= ax + aw and ay <= y <= ay + ah
def lerpi(a: int, b: int, t: float) -> int:
return int(a + t * (b - a))
def blend(ca: int, cb: int, t: float) -> int:
return rgbcolor(lerpi((ca >> 8) & 0xF8, (cb >> 8) & 0xF8, t),
lerpi((ca >> 3) & 0xFC, (cb >> 3) & 0xFC, t),
lerpi((ca << 3) & 0xF8, (cb << 3) & 0xF8, t))
def animate_pulse(func, ca, cb, speed=200000, delay=30000):
while True:
# normalize sin from interval -1:1 to 0:1
y = 0.5 + 0.5 * math.sin(utime.ticks_us() / speed)
c = blend(ca, cb, y)
func(c)
yield loop.Sleep(delay)