2018-08-15 14:01:01 -04:00
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/*
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* This file is part of the Micro Python project, http://micropython.org/
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*
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* The MIT License (MIT)
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*
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* Copyright (c) 2018 Scott Shawcroft for Adafruit Industries
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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#include "shared-bindings/displayio/Bitmap.h"
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#include <string.h>
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#include "py/runtime.h"
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2023-03-18 10:28:41 -04:00
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#include "py/gc.h"
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2018-08-15 14:01:01 -04:00
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2023-01-01 17:40:06 -05:00
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enum { ALIGN_BITS = 8 * sizeof(uint32_t) };
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2022-08-04 16:11:58 -04:00
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static int stride(uint32_t width, uint32_t bits_per_value) {
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2018-09-06 17:49:49 -04:00
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uint32_t row_width = width * bits_per_value;
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2021-08-04 19:27:54 -04:00
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// align to uint32_t
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return (row_width + ALIGN_BITS - 1) / ALIGN_BITS;
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}
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void common_hal_displayio_bitmap_construct(displayio_bitmap_t *self, uint32_t width,
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uint32_t height, uint32_t bits_per_value) {
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common_hal_displayio_bitmap_construct_from_buffer(self, width, height, bits_per_value, NULL, false);
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}
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void common_hal_displayio_bitmap_construct_from_buffer(displayio_bitmap_t *self, uint32_t width,
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uint32_t height, uint32_t bits_per_value, uint32_t *data, bool read_only) {
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2018-08-15 14:01:01 -04:00
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self->width = width;
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self->height = height;
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2022-08-04 16:11:58 -04:00
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self->stride = stride(width, bits_per_value);
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2023-03-18 11:01:41 -04:00
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self->data_alloc = false;
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if (!data) {
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data = m_malloc(self->stride * height * sizeof(uint32_t), false);
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2023-03-18 10:21:40 -04:00
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self->data_alloc = true;
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}
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self->data = data;
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self->read_only = read_only;
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2018-09-06 17:49:49 -04:00
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self->bits_per_value = bits_per_value;
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2018-08-15 14:01:01 -04:00
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2019-04-04 15:50:35 -04:00
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if (bits_per_value > 8 && bits_per_value != 16 && bits_per_value != 32) {
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mp_raise_NotImplementedError(translate("Invalid bits per value"));
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2018-09-06 17:49:49 -04:00
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}
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// Division and modulus can be slow because it has to handle any integer. We know bits_per_value
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// is a power of two. We divide and mod by bits_per_value to compute the offset into the byte
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// array. So, we can the offset computation to simplify to a shift for division and mask for mod.
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self->x_shift = 0; // Used to divide the index by the number of pixels per word. Its used in a
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// shift which effectively divides by 2 ** x_shift.
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uint32_t power_of_two = 1;
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while (power_of_two < ALIGN_BITS / bits_per_value) {
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2018-08-15 14:01:01 -04:00
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self->x_shift++;
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power_of_two <<= 1;
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}
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2023-01-01 17:39:52 -05:00
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self->x_mask = (1u << self->x_shift) - 1u; // Used as a modulus on the x value
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self->bitmask = (1u << bits_per_value) - 1u;
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2019-07-18 19:47:28 -04:00
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self->dirty_area.x1 = 0;
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self->dirty_area.x2 = width;
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self->dirty_area.y1 = 0;
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self->dirty_area.y2 = height;
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2018-08-15 14:01:01 -04:00
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}
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2023-03-14 19:02:53 -04:00
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void common_hal_displayio_bitmap_deinit(displayio_bitmap_t *self) {
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if (self->data_alloc) {
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gc_free(self->data);
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}
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2023-03-14 19:02:53 -04:00
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self->data = NULL;
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}
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bool common_hal_displayio_bitmap_deinited(displayio_bitmap_t *self) {
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return self->data == NULL;
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}
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2019-02-06 15:13:17 -05:00
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uint16_t common_hal_displayio_bitmap_get_height(displayio_bitmap_t *self) {
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return self->height;
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}
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uint16_t common_hal_displayio_bitmap_get_width(displayio_bitmap_t *self) {
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return self->width;
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}
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uint32_t common_hal_displayio_bitmap_get_bits_per_value(displayio_bitmap_t *self) {
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return self->bits_per_value;
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}
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2018-08-15 14:01:01 -04:00
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uint32_t common_hal_displayio_bitmap_get_pixel(displayio_bitmap_t *self, int16_t x, int16_t y) {
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2018-08-31 17:21:48 -04:00
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if (x >= self->width || x < 0 || y >= self->height || y < 0) {
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return 0;
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}
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2018-08-15 14:01:01 -04:00
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int32_t row_start = y * self->stride;
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uint32_t bytes_per_value = self->bits_per_value / 8;
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if (bytes_per_value < 1) {
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uint32_t word = self->data[row_start + (x >> self->x_shift)];
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2018-08-15 14:01:01 -04:00
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2021-08-04 19:27:54 -04:00
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return (word >> (sizeof(uint32_t) * 8 - ((x & self->x_mask) + 1) * self->bits_per_value)) & self->bitmask;
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} else {
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uint32_t *row = self->data + row_start;
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2019-04-04 15:50:35 -04:00
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if (bytes_per_value == 1) {
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return ((uint8_t *)row)[x];
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} else if (bytes_per_value == 2) {
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return ((uint16_t *)row)[x];
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2019-04-04 15:50:35 -04:00
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} else if (bytes_per_value == 4) {
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return ((uint32_t *)row)[x];
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}
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}
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return 0;
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2018-08-15 14:01:01 -04:00
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}
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2019-02-06 15:13:17 -05:00
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2021-03-18 10:09:29 -04:00
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void displayio_bitmap_set_dirty_area(displayio_bitmap_t *self, const displayio_area_t *dirty_area) {
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2021-03-18 10:20:21 -04:00
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if (self->read_only) {
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2022-12-19 10:44:06 -05:00
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mp_raise_RuntimeError(translate("Read-only"));
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2021-03-07 12:22:30 -05:00
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}
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2021-03-18 10:09:29 -04:00
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displayio_area_t area = *dirty_area;
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displayio_area_canon(&area);
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displayio_area_union(&area, &self->dirty_area, &area);
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2021-11-12 11:30:40 -05:00
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displayio_area_t bitmap_area = {0, 0, self->width, self->height, NULL};
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2021-03-18 10:09:29 -04:00
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displayio_area_compute_overlap(&area, &bitmap_area, &self->dirty_area);
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2021-03-07 12:22:30 -05:00
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}
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void displayio_bitmap_write_pixel(displayio_bitmap_t *self, int16_t x, int16_t y, uint32_t value) {
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2023-03-22 13:14:34 -04:00
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if (self->read_only) {
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mp_raise_RuntimeError(translate("Read-only"));
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}
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2021-03-07 12:22:30 -05:00
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// Writes the color index value into a pixel position
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// Must update the dirty area separately
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2023-01-19 15:37:25 -05:00
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// Don't write if out of area
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if (0 > x || x >= self->width || 0 > y || y >= self->height) {
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return;
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}
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2021-03-07 12:22:30 -05:00
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// Update one pixel of data
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int32_t row_start = y * self->stride;
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uint32_t bytes_per_value = self->bits_per_value / 8;
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if (bytes_per_value < 1) {
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2021-08-04 19:27:54 -04:00
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uint32_t bit_position = (sizeof(uint32_t) * 8 - ((x & self->x_mask) + 1) * self->bits_per_value);
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2021-03-07 12:22:30 -05:00
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uint32_t index = row_start + (x >> self->x_shift);
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uint32_t word = self->data[index];
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word &= ~(self->bitmask << bit_position);
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word |= (value & self->bitmask) << bit_position;
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self->data[index] = word;
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} else {
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2021-08-04 19:27:54 -04:00
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uint32_t *row = self->data + row_start;
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2021-03-07 12:22:30 -05:00
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if (bytes_per_value == 1) {
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2021-03-15 09:57:36 -04:00
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((uint8_t *)row)[x] = value;
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2021-03-07 12:22:30 -05:00
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} else if (bytes_per_value == 2) {
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2021-03-15 09:57:36 -04:00
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((uint16_t *)row)[x] = value;
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2021-03-07 12:22:30 -05:00
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} else if (bytes_per_value == 4) {
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2021-03-15 09:57:36 -04:00
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((uint32_t *)row)[x] = value;
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2021-03-07 12:22:30 -05:00
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}
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2020-08-10 12:04:56 -04:00
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}
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2020-08-21 15:28:24 -04:00
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}
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2020-08-10 12:04:56 -04:00
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2019-02-06 15:13:17 -05:00
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void common_hal_displayio_bitmap_set_pixel(displayio_bitmap_t *self, int16_t x, int16_t y, uint32_t value) {
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2023-03-22 13:14:34 -04:00
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if (self->read_only) {
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mp_raise_RuntimeError(translate("Read-only"));
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}
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2021-03-07 12:22:30 -05:00
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// update the dirty region
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2021-11-12 11:30:40 -05:00
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displayio_area_t a = {x, y, x + 1, y + 1, NULL};
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2021-03-18 10:09:29 -04:00
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displayio_bitmap_set_dirty_area(self, &a);
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2021-03-07 12:22:30 -05:00
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// write the pixel
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displayio_bitmap_write_pixel(self, x, y, value);
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2019-02-06 15:13:17 -05:00
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}
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2019-07-18 19:47:28 -04:00
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2021-03-15 09:57:36 -04:00
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displayio_area_t *displayio_bitmap_get_refresh_areas(displayio_bitmap_t *self, displayio_area_t *tail) {
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2023-03-22 13:14:34 -04:00
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if (self->dirty_area.x1 == self->dirty_area.x2 || self->read_only) {
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2019-07-18 19:47:28 -04:00
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return tail;
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}
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self->dirty_area.next = tail;
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return &self->dirty_area;
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}
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void displayio_bitmap_finish_refresh(displayio_bitmap_t *self) {
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2023-03-22 13:14:34 -04:00
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if (self->read_only) {
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return;
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}
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2019-07-18 19:47:28 -04:00
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self->dirty_area.x1 = 0;
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self->dirty_area.x2 = 0;
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}
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2020-04-09 11:37:07 -04:00
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void common_hal_displayio_bitmap_fill(displayio_bitmap_t *self, uint32_t value) {
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2023-03-22 13:14:34 -04:00
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if (self->read_only) {
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mp_raise_RuntimeError(translate("Read-only"));
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}
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2021-11-12 11:30:40 -05:00
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displayio_area_t a = {0, 0, self->width, self->height, NULL};
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2021-03-18 10:20:21 -04:00
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displayio_bitmap_set_dirty_area(self, &a);
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2020-04-09 11:37:07 -04:00
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2020-04-13 19:48:27 -04:00
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// build the packed word
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uint32_t word = 0;
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2021-03-15 09:57:36 -04:00
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for (uint8_t i = 0; i < 32 / self->bits_per_value; i++) {
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word |= (value & self->bitmask) << (32 - ((i + 1) * self->bits_per_value));
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2020-04-13 19:48:27 -04:00
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}
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// copy it in
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2021-03-15 09:57:36 -04:00
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for (uint32_t i = 0; i < self->stride * self->height; i++) {
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2020-04-13 19:48:27 -04:00
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self->data[i] = word;
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2020-04-09 11:37:07 -04:00
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}
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}
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2021-03-17 17:11:04 -04:00
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int common_hal_displayio_bitmap_get_buffer(displayio_bitmap_t *self, mp_buffer_info_t *bufinfo, mp_uint_t flags) {
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2021-04-03 11:41:20 -04:00
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if ((flags & MP_BUFFER_WRITE) && self->read_only) {
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2021-03-17 17:11:04 -04:00
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return 1;
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}
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2021-08-04 19:27:54 -04:00
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bufinfo->len = self->stride * self->height * sizeof(uint32_t);
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2021-03-17 17:11:04 -04:00
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bufinfo->buf = self->data;
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switch (self->bits_per_value) {
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case 32:
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bufinfo->typecode = 'I';
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break;
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case 16:
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bufinfo->typecode = 'H';
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break;
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default:
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bufinfo->typecode = 'B';
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break;
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}
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return 0;
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}
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