Files
android_bootable_recovery/gui/console.cpp
Ethan Yonker 591b920536 Reduce themes to 5 and rely on scaling
This will significantly reduce theme maintainence and should be a
lot more sustainable over time. Eliminate most themes leaving only
5 remaining in 3 categores:
 * watch_mdpi: 320x320
 * portrait_mdpi: 480x800
 * portrait_hdpi: 1080x1920
 * landscape_mdpi: 800x480
 * landscape_hdpi: 1920x1200

Add handling to map the old DEVICE RESOLUTION to the new TW_THEME
build flag. New devices should specify a theme using the new
TW_THEME build flag using one of the 5 values from the list above.
Long term we will eliminate the use of the DEVICE_RESOLUTION flag
in favor of the new flag.

Change the way sliders render so that they completely follow the
placement="5". This will probably break some custom themes but is
necessary so that we can retain the aspect ratio on slider images
and still have them rendered at the center of the screen.

Add code to the console slideout button so that it can be centered.
Centering the slideout button allows us to keep the button at the
center of the screen when retaining aspect ratios on the image.

Add more retain aspect ratios for home, back, slideout, folder,
file, and lock screen images.

Change the way we build the top bar in TWRP. It is now mostly
drawn using fill objects and the TWRP logo is a separate image so
that we can retain its aspect ratio during scaling. Thanks to Mark
Norelus for providing the TWRP logo.

Change-Id: I801a7b3163cad9ef353461f4c327690a9ccbb3aa
2015-03-12 18:41:34 -05:00

329 lines
7.7 KiB
C++

// console.cpp - GUIConsole object
#include <stdarg.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <fcntl.h>
#include <sys/reboot.h>
#include <sys/stat.h>
#include <sys/time.h>
#include <sys/mman.h>
#include <sys/types.h>
#include <sys/ioctl.h>
#include <time.h>
#include <unistd.h>
#include <stdlib.h>
#include <string>
extern "C" {
#include "../twcommon.h"
#include "../minuitwrp/minui.h"
}
#include "rapidxml.hpp"
#include "objects.hpp"
static std::vector<std::string> gConsole;
static std::vector<std::string> gConsoleColor;
static FILE* ors_file;
extern "C" void __gui_print(const char *color, char *buf)
{
char *start, *next;
if (buf[0] == '\n' && strlen(buf) < 2) {
// This prevents the double lines bug seen in the console during zip installs
return;
}
for (start = next = buf; *next != '\0';)
{
if (*next == '\n')
{
*next = '\0';
gConsole.push_back(start);
gConsoleColor.push_back(color);
start = ++next;
}
else
++next;
}
// The text after last \n (or whole string if there is no \n)
if(*start) {
gConsole.push_back(start);
gConsoleColor.push_back(color);
}
if (ors_file) {
fprintf(ors_file, "%s\n", buf);
fflush(ors_file);
}
}
extern "C" void gui_print(const char *fmt, ...)
{
char buf[512]; // We're going to limit a single request to 512 bytes
va_list ap;
va_start(ap, fmt);
vsnprintf(buf, 512, fmt, ap);
va_end(ap);
fputs(buf, stdout);
__gui_print("normal", buf);
return;
}
extern "C" void gui_print_color(const char *color, const char *fmt, ...)
{
char buf[512]; // We're going to limit a single request to 512 bytes
va_list ap;
va_start(ap, fmt);
vsnprintf(buf, 512, fmt, ap);
va_end(ap);
fputs(buf, stdout);
__gui_print(color, buf);
return;
}
extern "C" void gui_set_FILE(FILE* f)
{
ors_file = f;
}
GUIConsole::GUIConsole(xml_node<>* node) : GUIScrollList(node)
{
xml_node<>* child;
mLastCount = 0;
scrollToEnd = true;
mSlideoutX = mSlideoutY = mSlideoutW = mSlideoutH = 0;
mSlideout = 0;
mSlideoutState = visible;
allowSelection = false; // console doesn't support list item selections
if (!node)
{
mRenderX = 0; mRenderY = 0; mRenderW = gr_fb_width(); mRenderH = gr_fb_height();
}
else
{
child = FindNode(node, "color");
if (child)
{
mFontColor = LoadAttrColor(child, "foreground", mFontColor);
mBackgroundColor = LoadAttrColor(child, "background", mBackgroundColor);
//mScrollColor = LoadAttrColor(child, "scroll", mScrollColor);
}
child = FindNode(node, "slideout");
if (child)
{
mSlideout = 1;
mSlideoutState = hidden;
LoadPlacement(child, &mSlideoutX, &mSlideoutY, &mSlideoutW, &mSlideoutH, &mPlacement);
mSlideoutImage = LoadAttrImage(child, "resource");
if (mSlideoutImage && mSlideoutImage->GetResource())
{
mSlideoutW = mSlideoutImage->GetWidth();
mSlideoutH = mSlideoutImage->GetHeight();
if (mPlacement == CENTER || mPlacement == CENTER_X_ONLY) {
mSlideoutX = mSlideoutX - (mSlideoutW / 2);
if (mPlacement == CENTER) {
mSlideoutY = mSlideoutY - (mSlideoutH / 2);
}
}
}
}
}
}
int GUIConsole::RenderSlideout(void)
{
if (!mSlideoutImage || !mSlideoutImage->GetResource())
return -1;
gr_blit(mSlideoutImage->GetResource(), 0, 0, mSlideoutW, mSlideoutH, mSlideoutX, mSlideoutY);
return 0;
}
bool GUIConsole::AddLines()
{
if (mLastCount == gConsole.size())
return false; // nothing to add
size_t prevCount = mLastCount;
mLastCount = gConsole.size();
// Due to word wrap, figure out what / how the newly added text needs to be added to the render vector that is word wrapped
// Note, that multiple consoles on different GUI pages may be different widths or use different fonts, so the word wrapping
// may different in different console windows
for (size_t i = prevCount; i < mLastCount; i++) {
string curr_line = gConsole[i];
string curr_color = gConsoleColor[i];
for(;;) {
size_t line_char_width = gr_maxExW(curr_line.c_str(), mFont->GetResource(), mRenderW);
if (line_char_width < curr_line.size()) {
rConsole.push_back(curr_line.substr(0, line_char_width));
rConsoleColor.push_back(curr_color);
curr_line = curr_line.substr(line_char_width);
} else {
rConsole.push_back(curr_line);
rConsoleColor.push_back(curr_color);
break;
}
}
}
return true;
}
int GUIConsole::RenderConsole(void)
{
AddLines();
GUIScrollList::Render();
// if last line is fully visible, keep tracking the last line when new lines are added
int bottom_offset = GetDisplayRemainder() - actualItemHeight;
bool isAtBottom = firstDisplayedItem == GetItemCount() - GetDisplayItemCount() - (bottom_offset != 0) && y_offset == bottom_offset;
if (isAtBottom)
scrollToEnd = true;
#if 0
// debug - show if we are tracking the last line
if (scrollToEnd) {
gr_color(0,255,0,255);
gr_fill(mRenderX+mRenderW-5, mRenderY+mRenderH-5, 5, 5);
} else {
gr_color(255,0,0,255);
gr_fill(mRenderX+mRenderW-5, mRenderY+mRenderH-5, 5, 5);
}
#endif
return (mSlideout ? RenderSlideout() : 0);
}
int GUIConsole::Render(void)
{
if(!isConditionTrue())
return 0;
if (mSlideout && mSlideoutState == hidden)
return RenderSlideout();
return RenderConsole();
}
int GUIConsole::Update(void)
{
if (mSlideout && mSlideoutState != visible)
{
if (mSlideoutState == hidden)
return 0;
if (mSlideoutState == request_hide)
mSlideoutState = hidden;
if (mSlideoutState == request_show)
mSlideoutState = visible;
// Any time we activate the console, we reset the position
SetVisibleListLocation(rConsole.size() - 1);
mUpdate = 1;
scrollToEnd = true;
}
if (AddLines()) {
// someone added new text
// at least the scrollbar must be updated, even if the new lines are currently not visible
mUpdate = 1;
}
if (scrollToEnd) {
// keep the last line in view
SetVisibleListLocation(rConsole.size() - 1);
}
GUIScrollList::Update();
if (mUpdate) {
mUpdate = 0;
if (Render() == 0)
return 2;
}
return 0;
}
// IsInRegion - Checks if the request is handled by this object
// Return 1 if this object handles the request, 0 if not
int GUIConsole::IsInRegion(int x, int y)
{
if (mSlideout) {
// Check if they tapped the slideout button
if (x >= mSlideoutX && x < mSlideoutX + mSlideoutW && y >= mSlideoutY && y < mSlideoutY + mSlideoutH)
return 1;
// If we're only rendering the slideout, bail now
if (mSlideoutState == hidden)
return 0;
}
return GUIScrollList::IsInRegion(x, y);
}
// NotifyTouch - Notify of a touch event
// Return 0 on success, >0 to ignore remainder of touch, and <0 on error
int GUIConsole::NotifyTouch(TOUCH_STATE state, int x, int y)
{
if(!isConditionTrue())
return -1;
if (mSlideout && x >= mSlideoutX && x < mSlideoutX + mSlideoutW && y >= mSlideoutY && y < mSlideoutY + mSlideoutH) {
if (state == TOUCH_START) {
if (mSlideoutState == hidden)
mSlideoutState = request_show;
else if (mSlideoutState == visible)
mSlideoutState = request_hide;
}
return 1;
}
scrollToEnd = false;
return GUIScrollList::NotifyTouch(state, x, y);
}
size_t GUIConsole::GetItemCount()
{
return rConsole.size();
}
void GUIConsole::RenderItem(size_t itemindex, int yPos, bool selected)
{
// Set the color for the font
if (rConsoleColor[itemindex] == "normal") {
gr_color(mFontColor.red, mFontColor.green, mFontColor.blue, mFontColor.alpha);
} else {
COLOR FontColor;
std::string color = rConsoleColor[itemindex];
ConvertStrToColor(color, &FontColor);
FontColor.alpha = 255;
gr_color(FontColor.red, FontColor.green, FontColor.blue, FontColor.alpha);
}
// render text
const char* text = rConsole[itemindex].c_str();
gr_textEx(mRenderX, yPos, text, mFont->GetResource());
}
void GUIConsole::NotifySelect(size_t item_selected)
{
// do nothing - console ignores selections
}