97eecdc875
Bug: 124118169 Test: run off-mode charging Change-Id: Ib71f84f1c93d1566f4e3101920d98b1d39184390
237 lines
7.4 KiB
C++
237 lines
7.4 KiB
C++
/*
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* Copyright (C) 2017 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <android-base/stringprintf.h>
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#include <batteryservice/BatteryService.h>
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#include <cutils/klog.h>
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#include "charger.sysprop.h"
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#include "healthd_draw.h"
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#define LOGE(x...) KLOG_ERROR("charger", x);
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#define LOGW(x...) KLOG_WARNING("charger", x);
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#define LOGV(x...) KLOG_DEBUG("charger", x);
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static bool get_split_screen() {
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return android::sysprop::ChargerProperties::draw_split_screen().value_or(false);
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}
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static int get_split_offset() {
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int64_t value = android::sysprop::ChargerProperties::draw_split_offset().value_or(0);
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if (value < static_cast<int64_t>(std::numeric_limits<int>::min())) {
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LOGW("draw_split_offset = %" PRId64 " overflow for an int; resetting to %d.\n", value,
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std::numeric_limits<int>::min());
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value = std::numeric_limits<int>::min();
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}
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if (value > static_cast<int64_t>(std::numeric_limits<int>::max())) {
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LOGW("draw_split_offset = %" PRId64 " overflow for an int; resetting to %d.\n", value,
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std::numeric_limits<int>::max());
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value = std::numeric_limits<int>::max();
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}
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return static_cast<int>(value);
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}
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HealthdDraw::HealthdDraw(animation* anim)
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: kSplitScreen(get_split_screen()), kSplitOffset(get_split_offset()) {
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int ret = gr_init();
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if (ret < 0) {
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LOGE("gr_init failed\n");
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graphics_available = false;
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return;
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}
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graphics_available = true;
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sys_font = gr_sys_font();
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if (sys_font == nullptr) {
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LOGW("No system font, screen fallback text not available\n");
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} else {
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gr_font_size(sys_font, &char_width_, &char_height_);
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}
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screen_width_ = gr_fb_width() / (kSplitScreen ? 2 : 1);
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screen_height_ = gr_fb_height();
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int res;
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if (!anim->text_clock.font_file.empty() &&
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(res = gr_init_font(anim->text_clock.font_file.c_str(), &anim->text_clock.font)) < 0) {
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LOGE("Could not load time font (%d)\n", res);
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}
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if (!anim->text_percent.font_file.empty() &&
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(res = gr_init_font(anim->text_percent.font_file.c_str(), &anim->text_percent.font)) < 0) {
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LOGE("Could not load percent font (%d)\n", res);
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}
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}
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HealthdDraw::~HealthdDraw() {}
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void HealthdDraw::redraw_screen(const animation* batt_anim, GRSurface* surf_unknown) {
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if (!graphics_available) return;
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clear_screen();
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/* try to display *something* */
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if (batt_anim->cur_status == BATTERY_STATUS_UNKNOWN || batt_anim->cur_level < 0 ||
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batt_anim->num_frames == 0)
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draw_unknown(surf_unknown);
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else
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draw_battery(batt_anim);
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gr_flip();
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}
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void HealthdDraw::blank_screen(bool blank) {
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if (!graphics_available) return;
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gr_fb_blank(blank);
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}
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void HealthdDraw::clear_screen(void) {
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if (!graphics_available) return;
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gr_color(0, 0, 0, 255);
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gr_clear();
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}
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int HealthdDraw::draw_surface_centered(GRSurface* surface) {
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if (!graphics_available) return 0;
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int w = gr_get_width(surface);
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int h = gr_get_height(surface);
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int x = (screen_width_ - w) / 2 + kSplitOffset;
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int y = (screen_height_ - h) / 2;
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LOGV("drawing surface %dx%d+%d+%d\n", w, h, x, y);
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gr_blit(surface, 0, 0, w, h, x, y);
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if (kSplitScreen) {
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x += screen_width_ - 2 * kSplitOffset;
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LOGV("drawing surface %dx%d+%d+%d\n", w, h, x, y);
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gr_blit(surface, 0, 0, w, h, x, y);
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}
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return y + h;
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}
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int HealthdDraw::draw_text(const GRFont* font, int x, int y, const char* str) {
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if (!graphics_available) return 0;
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int str_len_px = gr_measure(font, str);
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if (x < 0) x = (screen_width_ - str_len_px) / 2;
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if (y < 0) y = (screen_height_ - char_height_) / 2;
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gr_text(font, x + kSplitOffset, y, str, false /* bold */);
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if (kSplitScreen) gr_text(font, x - kSplitOffset + screen_width_, y, str, false /* bold */);
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return y + char_height_;
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}
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void HealthdDraw::determine_xy(const animation::text_field& field,
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const int length, int* x, int* y) {
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*x = field.pos_x;
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int str_len_px = length * field.font->char_width;
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if (field.pos_x == CENTER_VAL) {
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*x = (screen_width_ - str_len_px) / 2;
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} else if (field.pos_x >= 0) {
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*x = field.pos_x;
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} else { // position from max edge
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*x = screen_width_ + field.pos_x - str_len_px - kSplitOffset;
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}
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*y = field.pos_y;
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if (field.pos_y == CENTER_VAL) {
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*y = (screen_height_ - field.font->char_height) / 2;
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} else if (field.pos_y >= 0) {
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*y = field.pos_y;
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} else { // position from max edge
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*y = screen_height_ + field.pos_y - field.font->char_height;
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}
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}
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void HealthdDraw::draw_clock(const animation* anim) {
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static constexpr char CLOCK_FORMAT[] = "%H:%M";
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static constexpr int CLOCK_LENGTH = 6;
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const animation::text_field& field = anim->text_clock;
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if (!graphics_available || field.font == nullptr || field.font->char_width == 0 ||
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field.font->char_height == 0)
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return;
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time_t rawtime;
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time(&rawtime);
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tm* time_info = localtime(&rawtime);
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char clock_str[CLOCK_LENGTH];
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size_t length = strftime(clock_str, CLOCK_LENGTH, CLOCK_FORMAT, time_info);
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if (length != CLOCK_LENGTH - 1) {
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LOGE("Could not format time\n");
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return;
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}
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int x, y;
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determine_xy(field, length, &x, &y);
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LOGV("drawing clock %s %d %d\n", clock_str, x, y);
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gr_color(field.color_r, field.color_g, field.color_b, field.color_a);
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draw_text(field.font, x, y, clock_str);
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}
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void HealthdDraw::draw_percent(const animation* anim) {
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if (!graphics_available) return;
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int cur_level = anim->cur_level;
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if (anim->cur_status == BATTERY_STATUS_FULL) {
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cur_level = 100;
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}
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if (cur_level < 0) return;
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const animation::text_field& field = anim->text_percent;
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if (field.font == nullptr || field.font->char_width == 0 || field.font->char_height == 0) {
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return;
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}
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std::string str = base::StringPrintf("%d%%", cur_level);
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int x, y;
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determine_xy(field, str.size(), &x, &y);
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LOGV("drawing percent %s %d %d\n", str.c_str(), x, y);
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gr_color(field.color_r, field.color_g, field.color_b, field.color_a);
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draw_text(field.font, x, y, str.c_str());
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}
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void HealthdDraw::draw_battery(const animation* anim) {
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if (!graphics_available) return;
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const animation::frame& frame = anim->frames[anim->cur_frame];
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if (anim->num_frames != 0) {
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draw_surface_centered(frame.surface);
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LOGV("drawing frame #%d min_cap=%d time=%d\n", anim->cur_frame, frame.min_level,
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frame.disp_time);
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}
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draw_clock(anim);
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draw_percent(anim);
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}
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void HealthdDraw::draw_unknown(GRSurface* surf_unknown) {
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int y;
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if (surf_unknown) {
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draw_surface_centered(surf_unknown);
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} else if (sys_font) {
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gr_color(0xa4, 0xc6, 0x39, 255);
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y = draw_text(sys_font, -1, -1, "Charging!");
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draw_text(sys_font, -1, y + 25, "?\?/100");
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} else {
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LOGW("Charging, level unknown\n");
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}
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}
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