vdr/menuitems.c
Klaus Schmidinger bd61fee1e9 Version 1.7.19
Original announce message:
VDR developer version 1.7.19 is now available at

       ftp://ftp.tvdr.de/vdr/Developer/vdr-1.7.19.tar.bz2

A 'diff' against the previous version is available at

       ftp://ftp.tvdr.de/vdr/Developer/vdr-1.7.18-1.7.19.diff

MD5 checksums:

1eb04ecdc2b11ab8641ebfaa2cb93f42  vdr-1.7.19.tar.bz2
db16ce7bb51e0db837ed56ef4744a67e  vdr-1.7.18-1.7.19.diff

WARNING:
========

This is a developer version. Even though I use it in my productive
environment. I strongly recommend that you only use it under controlled
conditions and for testing and debugging.

This version introduces functions to determine the "signal strength"
and "signal quality" through cDevice. If you are using a DVB card that
contains an stb0899 frontend chip (like the TT-budget S2-3200) you may
want to apply the patches from

   ftp://ftp.tvdr.de/vdr/Developer/Driver-Patches

to the LinuxDVB driver source in order to receive useful results from
that frontend.
Since apparently the various frontend drivers return different maximum
values in their FE_READ_SIGNAL_STRENGTH and FE_READ_SNR functions (some
deliver a value in the range 0x0000...0xFFFF, while others return values
as "dB/10" or "dBm/10" (the latter with an offset to make the value positive,
since the parameter is unsigned), the functions cDvbTuner::GetSignalStrength()
and cDvbTuner::GetSignalQuality() use the device's "subsystem ID" to
map these values into the range 0...100, which is the normalized return
value of these functions.
Take a look at these two functions and maybe remove the comment characters
from the lines
//#define DEBUG_SIGNALSTRENGTH
//#define DEBUG_SIGNALQUALITY
in dvbdevice.c to get some debug output if your device doesn't return any
directly useful values and may have to be added appropriately to the
'switch (subsystemId)' statement.
The channel display of the 'sttng' skin uses these values to implement
a signal strength/quality display.

From the HISTORY file:
- Fixed cString's operator=(const char *String) in case the given string is the
  same as the existing one (thanks to Dirk Leber).
- Avoiding a gcc 4.6 compiler error in the skincurses plugin (thanks to Tobias Grimm).
- TsGetPayload() now checks if there actually is a payload in the given TS packet
  (reported by Dirk Leber).
- Now sorting the source file names in the call to xgettext, to make sure the results
  are not dependent on the sequence of the files.
  Plugin authors may want to change the line containing the xgettext call in their
  Makefile accordingly by changing "$^" to "`ls $^`".
- The primary device is now only avoided for recording if it is an old SD full
  featured card. This is done through the new function cDevice::AvoidRecording().
- Subtitle PIDs are now also decrypted (thanks to Reinhard Nissl).
- Fixed a possible race condition in cDiseqc::Execute() (reported by Marco Göbenich).
  The return value of cDiseqcs::Get() is now const, so plugin authors may need to
  adjust their code if they use this function.
- The new functions cDevice::SignalStrength() and cDevice::SignalQuality() can be
  used to determine the signal strength and quality of a given device (thanks to
  Rolf Ahrenberg for some input on how to use BER and UNC values to generate a
  "quality" value).
- The 'sttng' skin now displays two colored bars at the bottom of the channel display,
  indicating the strength (upper bar) and quality (lower bar) of the received signal.
  The number to the left of these bars indicates the actual device the current
  channel is being received with.
- Fixed detecting frames in case the Picture Start Code or Access Unit Delimiter
  extends over TS packet boundaries (reported by Johan Andersson).
  In order to fix this, the semantics of cFrameDetector had to be changed a little.
  See cRecorder::Action() and cIndexFileGenerator::Action() on how to use the new
  cFrameDetector::NewPayload() function.
- The frame detector now only starts collecting PTS values after it has seen the
  first I-frame, otherwise it might get MaxPtsValues values and stop analyzing
  even though the incoming data is still garbage (reported by Derek Kelly).
- The info file of a recording is now only overwritten with a new fps value if
  that new value is not the default value (thanks to Derek Kelly for reporting a
  problem with the fps value being overwritten in case a recording was interrupted
  and resumed, and the fps value could not be determined after resuming recording).
- The initial channel is now stored by the channel ID in the setup.conf file, in
  order to avoid problems in case channels are reordered or deleted (reported by
  Lars Bläser).
- Added support for "content identifier descriptor" and "default authority descriptor"
  to 'libsi' (thanks to Dave Pickles).
2011-06-19 18:35:46 +02:00

1130 lines
31 KiB
C

/*
* menuitems.c: General purpose menu items
*
* See the main source file 'vdr.c' for copyright information and
* how to reach the author.
*
* $Id: menuitems.c 2.9 2011/06/13 14:48:41 kls Exp $
*/
#include "menuitems.h"
#include <ctype.h>
#include <math.h>
#include <wctype.h>
#include "i18n.h"
#include "plugin.h"
#include "remote.h"
#include "skins.h"
#include "status.h"
#define AUTO_ADVANCE_TIMEOUT 1500 // ms before auto advance when entering characters via numeric keys
const char *FileNameChars = trNOOP("FileNameChars$ abcdefghijklmnopqrstuvwxyz0123456789-.,#~\\^$[]|()*+?{}/:%@&");
// --- cMenuEditItem ---------------------------------------------------------
cMenuEditItem::cMenuEditItem(const char *Name)
{
name = strdup(Name ? Name : "???");
}
cMenuEditItem::~cMenuEditItem()
{
free(name);
}
void cMenuEditItem::SetValue(const char *Value)
{
cString buffer = cString::sprintf("%s:\t%s", name, Value);
SetText(buffer);
cStatus::MsgOsdCurrentItem(buffer);
}
// --- cMenuEditIntItem ------------------------------------------------------
cMenuEditIntItem::cMenuEditIntItem(const char *Name, int *Value, int Min, int Max, const char *MinString, const char *MaxString)
:cMenuEditItem(Name)
{
value = Value;
min = Min;
max = Max;
minString = MinString;
maxString = MaxString;
if (*value < min)
*value = min;
else if (*value > max)
*value = max;
Set();
}
void cMenuEditIntItem::Set(void)
{
if (minString && *value == min)
SetValue(minString);
else if (maxString && *value == max)
SetValue(maxString);
else {
char buf[16];
snprintf(buf, sizeof(buf), "%d", *value);
SetValue(buf);
}
}
eOSState cMenuEditIntItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
int newValue = *value;
bool IsRepeat = Key & k_Repeat;
Key = NORMALKEY(Key);
switch (Key) {
case kNone: break;
case k0 ... k9:
if (fresh) {
newValue = 0;
fresh = false;
}
newValue = newValue * 10 + (Key - k0);
break;
case kLeft: // TODO might want to increase the delta if repeated quickly?
newValue = *value - 1;
fresh = true;
if (!IsRepeat && newValue < min && max != INT_MAX)
newValue = max;
break;
case kRight:
newValue = *value + 1;
fresh = true;
if (!IsRepeat && newValue > max && min != INT_MIN)
newValue = min;
break;
default:
if (*value < min) { *value = min; Set(); }
if (*value > max) { *value = max; Set(); }
return state;
}
if (newValue != *value && (!fresh || min <= newValue) && newValue <= max) {
*value = newValue;
Set();
}
state = osContinue;
}
return state;
}
// --- cMenuEditBoolItem -----------------------------------------------------
cMenuEditBoolItem::cMenuEditBoolItem(const char *Name, int *Value, const char *FalseString, const char *TrueString)
:cMenuEditIntItem(Name, Value, 0, 1)
{
falseString = FalseString ? FalseString : tr("no");
trueString = TrueString ? TrueString : tr("yes");
Set();
}
void cMenuEditBoolItem::Set(void)
{
char buf[16];
snprintf(buf, sizeof(buf), "%s", *value ? trueString : falseString);
SetValue(buf);
}
// --- cMenuEditBitItem ------------------------------------------------------
cMenuEditBitItem::cMenuEditBitItem(const char *Name, uint *Value, uint Mask, const char *FalseString, const char *TrueString)
:cMenuEditBoolItem(Name, &bit, FalseString, TrueString)
{
value = Value;
bit = (*value & Mask) != 0;
mask = Mask;
Set();
}
void cMenuEditBitItem::Set(void)
{
*value = bit ? *value | mask : *value & ~mask;
cMenuEditBoolItem::Set();
}
// --- cMenuEditNumItem ------------------------------------------------------
cMenuEditNumItem::cMenuEditNumItem(const char *Name, char *Value, int Length, bool Blind)
:cMenuEditItem(Name)
{
value = Value;
length = Length;
blind = Blind;
Set();
}
void cMenuEditNumItem::Set(void)
{
if (blind) {
char buf[length + 1];
int i;
for (i = 0; i < length && value[i]; i++)
buf[i] = '*';
buf[i] = 0;
SetValue(buf);
}
else
SetValue(value);
}
eOSState cMenuEditNumItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
Key = NORMALKEY(Key);
switch (Key) {
case kLeft: {
int l = strlen(value);
if (l > 0)
value[l - 1] = 0;
}
break;
case k0 ... k9: {
int l = strlen(value);
if (l < length) {
value[l] = Key - k0 + '0';
value[l + 1] = 0;
}
}
break;
default: return state;
}
Set();
state = osContinue;
}
return state;
}
// --- cMenuEditPrcItem ------------------------------------------------------
cMenuEditPrcItem::cMenuEditPrcItem(const char *Name, double *Value, double Min, double Max, int Decimals)
:cMenuEditItem(Name)
{
value = Value;
min = Min;
max = Max;
decimals = Decimals;
factor = 100;
while (Decimals-- > 0)
factor *= 10;
if (*value < min)
*value = min;
else if (*value > max)
*value = max;
Set();
}
void cMenuEditPrcItem::Set(void)
{
char buf[16];
snprintf(buf, sizeof(buf), "%.*f", decimals, *value * 100);
SetValue(buf);
}
eOSState cMenuEditPrcItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
double newValue = round(*value * factor); // avoids precision problems
Key = NORMALKEY(Key);
switch (Key) {
case kNone: break;
case k0 ... k9:
if (fresh) {
newValue = 0;
fresh = false;
}
newValue = newValue * 10 + (Key - k0);
break;
case kLeft: // TODO might want to increase the delta if repeated quickly?
newValue--;
fresh = true;
break;
case kRight:
newValue++;
fresh = true;
break;
default:
if (*value < min) { *value = min; Set(); }
if (*value > max) { *value = max; Set(); }
return state;
}
newValue /= factor;
if (!DoubleEqual(newValue, *value) && (!fresh || min <= newValue) && newValue <= max) {
*value = newValue;
Set();
}
state = osContinue;
}
return state;
}
// --- cMenuEditChrItem ------------------------------------------------------
cMenuEditChrItem::cMenuEditChrItem(const char *Name, char *Value, const char *Allowed)
:cMenuEditItem(Name)
{
value = Value;
allowed = strdup(Allowed ? Allowed : "");
current = strchr(allowed, *Value);
if (!current)
current = allowed;
Set();
}
cMenuEditChrItem::~cMenuEditChrItem()
{
free(allowed);
}
void cMenuEditChrItem::Set(void)
{
char buf[2];
buf[0] = *value;
buf[1] = '\0';
SetValue(buf);
}
eOSState cMenuEditChrItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
if (NORMALKEY(Key) == kLeft) {
if (current > allowed)
current--;
}
else if (NORMALKEY(Key) == kRight) {
if (*(current + 1))
current++;
}
else
return state;
*value = *current;
Set();
state = osContinue;
}
return state;
}
// --- cMenuEditStrItem ------------------------------------------------------
cMenuEditStrItem::cMenuEditStrItem(const char *Name, char *Value, int Length, const char *Allowed)
:cMenuEditItem(Name)
{
value = Value;
length = Length;
allowed = Allowed ? Allowed : tr(FileNameChars);
pos = -1;
offset = 0;
insert = uppercase = false;
newchar = true;
lengthUtf8 = 0;
valueUtf8 = NULL;
allowedUtf8 = NULL;
charMapUtf8 = NULL;
currentCharUtf8 = NULL;
lastKey = kNone;
Set();
}
cMenuEditStrItem::~cMenuEditStrItem()
{
delete[] valueUtf8;
delete[] allowedUtf8;
delete[] charMapUtf8;
}
void cMenuEditStrItem::EnterEditMode(void)
{
if (!valueUtf8) {
valueUtf8 = new uint[length];
lengthUtf8 = Utf8ToArray(value, valueUtf8, length);
int l = strlen(allowed) + 1;
allowedUtf8 = new uint[l];
Utf8ToArray(allowed, allowedUtf8, l);
const char *charMap = tr("CharMap$ 0\t-.,1#~\\^$[]|()*+?{}/:%@&\tabc2\tdef3\tghi4\tjkl5\tmno6\tpqrs7\ttuv8\twxyz9");
l = strlen(charMap) + 1;
charMapUtf8 = new uint[l];
Utf8ToArray(charMap, charMapUtf8, l);
currentCharUtf8 = charMapUtf8;
AdvancePos();
}
}
void cMenuEditStrItem::LeaveEditMode(bool SaveValue)
{
if (valueUtf8) {
if (SaveValue) {
Utf8FromArray(valueUtf8, value, length);
stripspace(value);
}
lengthUtf8 = 0;
delete[] valueUtf8;
valueUtf8 = NULL;
delete[] allowedUtf8;
allowedUtf8 = NULL;
delete[] charMapUtf8;
charMapUtf8 = NULL;
pos = -1;
offset = 0;
newchar = true;
}
}
void cMenuEditStrItem::SetHelpKeys(void)
{
if (InEditMode())
cSkinDisplay::Current()->SetButtons(tr("Button$ABC/abc"), insert ? tr("Button$Overwrite") : tr("Button$Insert"), tr("Button$Delete"));
else
cSkinDisplay::Current()->SetButtons(NULL);
}
uint *cMenuEditStrItem::IsAllowed(uint c)
{
if (allowedUtf8) {
for (uint *a = allowedUtf8; *a; a++) {
if (c == *a)
return a;
}
}
return NULL;
}
void cMenuEditStrItem::AdvancePos(void)
{
if (pos < length - 2 && pos < lengthUtf8) {
if (++pos >= lengthUtf8) {
if (pos >= 2 && valueUtf8[pos - 1] == ' ' && valueUtf8[pos - 2] == ' ')
pos--; // allow only two blanks at the end
else {
valueUtf8[pos] = ' ';
valueUtf8[pos + 1] = 0;
lengthUtf8++;
}
}
}
newchar = true;
if (!insert && Utf8is(alpha, valueUtf8[pos]))
uppercase = Utf8is(upper, valueUtf8[pos]);
}
void cMenuEditStrItem::Set(void)
{
if (InEditMode()) {
// This is an ugly hack to make editing strings work with the 'skincurses' plugin.
const cFont *font = dynamic_cast<cSkinDisplayMenu *>(cSkinDisplay::Current())->GetTextAreaFont(false);
if (!font || font->Width("W") != 1) // all characters have with == 1 in the font used by 'skincurses'
font = cFont::GetFont(fontOsd);
int width = cSkinDisplay::Current()->EditableWidth();
width -= font->Width("[]");
width -= font->Width("<>"); // reserving this anyway make the whole thing simpler
if (pos < offset)
offset = pos;
int WidthFromOffset = 0;
int EndPos = lengthUtf8;
for (int i = offset; i < lengthUtf8; i++) {
WidthFromOffset += font->Width(valueUtf8[i]);
if (WidthFromOffset > width) {
if (pos >= i) {
do {
WidthFromOffset -= font->Width(valueUtf8[offset]);
offset++;
} while (WidthFromOffset > width && offset < pos);
EndPos = pos + 1;
}
else {
EndPos = i;
break;
}
}
}
char buf[1000];
char *p = buf;
if (offset)
*p++ = '<';
p += Utf8FromArray(valueUtf8 + offset, p, sizeof(buf) - (p - buf), pos - offset);
*p++ = '[';
if (insert && newchar)
*p++ = ']';
p += Utf8FromArray(&valueUtf8[pos], p, sizeof(buf) - (p - buf), 1);
if (!(insert && newchar))
*p++ = ']';
p += Utf8FromArray(&valueUtf8[pos + 1], p, sizeof(buf) - (p - buf), EndPos - pos - 1);
if (EndPos != lengthUtf8)
*p++ = '>';
*p = 0;
SetValue(buf);
}
else
SetValue(value);
}
uint cMenuEditStrItem::Inc(uint c, bool Up)
{
uint *p = IsAllowed(c);
if (!p)
p = allowedUtf8;
if (Up) {
if (!*++p)
p = allowedUtf8;
}
else if (--p < allowedUtf8) {
p = allowedUtf8;
while (*p && *(p + 1))
p++;
}
return *p;
}
void cMenuEditStrItem::Type(uint c)
{
if (insert && lengthUtf8 < length - 1)
Insert();
valueUtf8[pos] = c;
if (pos < length - 2)
pos++;
if (pos >= lengthUtf8) {
valueUtf8[pos] = ' ';
valueUtf8[pos + 1] = 0;
lengthUtf8 = pos + 1;
}
}
void cMenuEditStrItem::Insert(void)
{
memmove(valueUtf8 + pos + 1, valueUtf8 + pos, (lengthUtf8 - pos + 1) * sizeof(*valueUtf8));
lengthUtf8++;
valueUtf8[pos] = ' ';
}
void cMenuEditStrItem::Delete(void)
{
memmove(valueUtf8 + pos, valueUtf8 + pos + 1, (lengthUtf8 - pos) * sizeof(*valueUtf8));
lengthUtf8--;
}
eOSState cMenuEditStrItem::ProcessKey(eKeys Key)
{
bool SameKey = NORMALKEY(Key) == lastKey;
if (Key != kNone)
lastKey = NORMALKEY(Key);
else if (!newchar && k0 <= lastKey && lastKey <= k9 && autoAdvanceTimeout.TimedOut()) {
AdvancePos();
newchar = true;
currentCharUtf8 = NULL;
Set();
return osContinue;
}
switch (int(Key)) {
case kRed: // Switch between upper- and lowercase characters
if (InEditMode()) {
if (!insert || !newchar) {
uppercase = !uppercase;
valueUtf8[pos] = uppercase ? Utf8to(upper, valueUtf8[pos]) : Utf8to(lower, valueUtf8[pos]);
}
}
else
return osUnknown;
break;
case kGreen: // Toggle insert/overwrite modes
if (InEditMode()) {
insert = !insert;
newchar = true;
SetHelpKeys();
}
else
return osUnknown;
break;
case kYellow|k_Repeat:
case kYellow: // Remove the character at the current position; in insert mode it is the character to the right of the cursor
if (InEditMode()) {
if (lengthUtf8 > 1) {
if (!insert || pos < lengthUtf8 - 1)
Delete();
else if (insert && pos == lengthUtf8 - 1)
valueUtf8[pos] = ' '; // in insert mode, deleting the last character replaces it with a blank to keep the cursor position
// reduce position, if we removed the last character
if (pos == lengthUtf8)
pos--;
}
else if (lengthUtf8 == 1)
valueUtf8[0] = ' '; // This is the last character in the string, replace it with a blank
if (Utf8is(alpha, valueUtf8[pos]))
uppercase = Utf8is(upper, valueUtf8[pos]);
newchar = true;
}
else
return osUnknown;
break;
case kBlue|k_Repeat:
case kBlue: // consume the key only if in edit-mode
if (!InEditMode())
return osUnknown;
break;
case kLeft|k_Repeat:
case kLeft: if (pos > 0) {
if (!insert || newchar)
pos--;
newchar = true;
if (!insert && Utf8is(alpha, valueUtf8[pos]))
uppercase = Utf8is(upper, valueUtf8[pos]);
}
break;
case kRight|k_Repeat:
case kRight: if (InEditMode())
AdvancePos();
else {
EnterEditMode();
SetHelpKeys();
}
break;
case kUp|k_Repeat:
case kUp:
case kDown|k_Repeat:
case kDown: if (InEditMode()) {
if (insert && newchar) {
// create a new character in insert mode
if (lengthUtf8 < length - 1)
Insert();
}
if (uppercase)
valueUtf8[pos] = Utf8to(upper, Inc(Utf8to(lower, valueUtf8[pos]), NORMALKEY(Key) == kUp));
else
valueUtf8[pos] = Inc( valueUtf8[pos], NORMALKEY(Key) == kUp);
newchar = false;
}
else
return cMenuEditItem::ProcessKey(Key);
break;
case k0|k_Repeat ... k9|k_Repeat:
case k0 ... k9: {
if (InEditMode()) {
if (Setup.NumberKeysForChars) {
if (!SameKey) {
if (!newchar)
AdvancePos();
currentCharUtf8 = NULL;
}
if (!currentCharUtf8 || !*currentCharUtf8 || *currentCharUtf8 == '\t') {
// find the beginning of the character map entry for Key
int n = NORMALKEY(Key) - k0;
currentCharUtf8 = charMapUtf8;
while (n > 0 && *currentCharUtf8) {
if (*currentCharUtf8++ == '\t')
n--;
}
// find first allowed character
while (*currentCharUtf8 && *currentCharUtf8 != '\t' && !IsAllowed(*currentCharUtf8))
currentCharUtf8++;
}
if (*currentCharUtf8 && *currentCharUtf8 != '\t') {
if (insert && newchar) {
// create a new character in insert mode
if (lengthUtf8 < length - 1)
Insert();
}
valueUtf8[pos] = *currentCharUtf8;
if (uppercase)
valueUtf8[pos] = Utf8to(upper, valueUtf8[pos]);
// find next allowed character
do {
currentCharUtf8++;
} while (*currentCharUtf8 && *currentCharUtf8 != '\t' && !IsAllowed(*currentCharUtf8));
newchar = false;
autoAdvanceTimeout.Set(AUTO_ADVANCE_TIMEOUT);
}
}
else
Type('0' + NORMALKEY(Key) - k0);
}
else
return cMenuEditItem::ProcessKey(Key);
}
break;
case kBack:
case kOk: if (InEditMode()) {
LeaveEditMode(Key == kOk);
SetHelpKeys();
break;
}
// run into default
default: if (InEditMode() && BASICKEY(Key) == kKbd) {
int c = KEYKBD(Key);
if (c <= 0xFF) { // FIXME what about other UTF-8 characters?
if (IsAllowed(Utf8to(lower, c)))
Type(c);
else {
switch (c) {
case 0x7F: // backspace
if (pos > 0) {
pos--;
return ProcessKey(kYellow);
}
break;
default: ;
}
}
}
else {
switch (c) {
case kfHome: pos = 0; break;
case kfEnd: pos = lengthUtf8 - 1; break;
case kfIns: return ProcessKey(kGreen);
case kfDel: return ProcessKey(kYellow);
default: ;
}
}
}
else
return cMenuEditItem::ProcessKey(Key);
}
Set();
return osContinue;
}
// --- cMenuEditStraItem -----------------------------------------------------
cMenuEditStraItem::cMenuEditStraItem(const char *Name, int *Value, int NumStrings, const char * const *Strings)
:cMenuEditIntItem(Name, Value, 0, NumStrings - 1)
{
strings = Strings;
Set();
}
void cMenuEditStraItem::Set(void)
{
SetValue(strings[*value]);
}
// --- cMenuEditChanItem -----------------------------------------------------
cMenuEditChanItem::cMenuEditChanItem(const char *Name, int *Value, const char *NoneString)
:cMenuEditIntItem(Name, Value, NoneString ? 0 : 1, Channels.MaxNumber())
{
channelID = NULL;
noneString = NoneString;
dummyValue = 0;
Set();
}
cMenuEditChanItem::cMenuEditChanItem(const char *Name, cString *ChannelID, const char *NoneString)
:cMenuEditIntItem(Name, &dummyValue, NoneString ? 0 : 1, Channels.MaxNumber())
{
channelID = ChannelID;
noneString = NoneString;
cChannel *channel = Channels.GetByChannelID(tChannelID::FromString(*ChannelID));
dummyValue = channel ? channel->Number() : 0;
Set();
}
void cMenuEditChanItem::Set(void)
{
if (*value > 0) {
char buf[255];
cChannel *channel = Channels.GetByNumber(*value);
snprintf(buf, sizeof(buf), "%d %s", *value, channel ? channel->Name() : "");
SetValue(buf);
}
else if (noneString)
SetValue(noneString);
}
eOSState cMenuEditChanItem::ProcessKey(eKeys Key)
{
int delta = 1;
switch (int(Key)) {
case kLeft|k_Repeat:
case kLeft: delta = -1;
case kRight|k_Repeat:
case kRight:
{
cChannel *channel = Channels.GetByNumber(*value + delta, delta);
if (channel)
*value = channel->Number();
else if (delta < 0 && noneString)
*value = 0;
if (channelID)
*channelID = channel ? channel->GetChannelID().ToString() : "";
Set();
}
break;
default: return cMenuEditIntItem::ProcessKey(Key);
}
return osContinue;
}
// --- cMenuEditTranItem -----------------------------------------------------
cMenuEditTranItem::cMenuEditTranItem(const char *Name, int *Value, int *Source)
:cMenuEditChanItem(Name, &number, "-")
{
number = 0;
source = Source;
transponder = Value;
cChannel *channel = Channels.First();
while (channel) {
if (!channel->GroupSep() && *source == channel->Source() && ISTRANSPONDER(channel->Transponder(), *Value)) {
number = channel->Number();
break;
}
channel = (cChannel *)channel->Next();
}
Set();
}
eOSState cMenuEditTranItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditChanItem::ProcessKey(Key);
cChannel *channel = Channels.GetByNumber(number);
if (channel) {
*source = channel->Source();
*transponder = channel->Transponder();
}
else {
*source = 0;
*transponder = 0;
}
return state;
}
// --- cMenuEditDateItem -----------------------------------------------------
static int ParseWeekDays(const char *s)
{
time_t day;
int weekdays;
return cTimer::ParseDay(s, day, weekdays) ? weekdays : 0;
}
int cMenuEditDateItem::days[] = { ParseWeekDays("M------"),
ParseWeekDays("-T-----"),
ParseWeekDays("--W----"),
ParseWeekDays("---T---"),
ParseWeekDays("----F--"),
ParseWeekDays("-----S-"),
ParseWeekDays("------S"),
ParseWeekDays("MTWTF--"),
ParseWeekDays("MTWTFS-"),
ParseWeekDays("MTWTFSS"),
ParseWeekDays("-----SS"),
0 };
cMenuEditDateItem::cMenuEditDateItem(const char *Name, time_t *Value, int *WeekDays)
:cMenuEditItem(Name)
{
value = Value;
weekdays = WeekDays;
oldvalue = 0;
dayindex = weekdays ? FindDayIndex(*weekdays) : 0;
Set();
}
int cMenuEditDateItem::FindDayIndex(int WeekDays)
{
for (unsigned int i = 0; i < sizeof(days) / sizeof(int); i++)
if (WeekDays == days[i])
return i;
return 0;
}
void cMenuEditDateItem::Set(void)
{
#define DATEBUFFERSIZE 32
char buf[DATEBUFFERSIZE];
if (weekdays && *weekdays) {
SetValue(cTimer::PrintDay(0, *weekdays, false));
return;
}
else if (*value) {
struct tm tm_r;
localtime_r(value, &tm_r);
strftime(buf, DATEBUFFERSIZE, "%Y-%m-%d ", &tm_r);
strcat(buf, WeekDayName(tm_r.tm_wday));
}
else
*buf = 0;
SetValue(buf);
}
eOSState cMenuEditDateItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
time_t now = time(NULL);
if (NORMALKEY(Key) == kLeft) { // TODO might want to increase the delta if repeated quickly?
if (!weekdays || !*weekdays) {
// Decrement single day:
time_t v = *value;
v -= SECSINDAY;
if (v < now) {
if (now <= v + SECSINDAY) { // switched from tomorrow to today
if (!weekdays)
v = 0;
}
else if (weekdays) { // switched from today to yesterday, so enter weekdays mode
v = 0;
dayindex = sizeof(days) / sizeof(int) - 2;
*weekdays = days[dayindex];
}
else // don't go before today
v = *value;
}
*value = v;
}
else {
// Decrement weekday index:
if (dayindex > 0)
*weekdays = days[--dayindex];
}
}
else if (NORMALKEY(Key) == kRight) {
if (!weekdays || !*weekdays) {
// Increment single day:
if (!*value)
*value = cTimer::SetTime(now, 0);
*value += SECSINDAY;
}
else {
// Increment weekday index:
*weekdays = days[++dayindex];
if (!*weekdays) { // was last weekday entry, so switch to today
*value = cTimer::SetTime(now, 0);
dayindex = 0;
}
}
}
else if (weekdays) {
if (Key == k0) {
// Toggle between weekdays and single day:
if (*weekdays) {
*value = cTimer::SetTime(oldvalue ? oldvalue : now, 0);
oldvalue = 0;
*weekdays = 0;
}
else {
*weekdays = days[cTimer::GetWDay(*value)];
dayindex = FindDayIndex(*weekdays);
oldvalue = *value;
*value = 0;
}
}
else if (k1 <= Key && Key <= k7) {
// Toggle individual weekdays:
if (*weekdays) {
int v = *weekdays ^ (1 << (Key - k1));
if (v != 0)
*weekdays = v; // can't let this become all 0
}
}
else
return state;
}
else
return state;
Set();
state = osContinue;
}
return state;
}
// --- cMenuEditTimeItem -----------------------------------------------------
cMenuEditTimeItem::cMenuEditTimeItem(const char *Name, int *Value)
:cMenuEditItem(Name)
{
value = Value;
hh = *value / 100;
mm = *value % 100;
pos = 0;
Set();
}
void cMenuEditTimeItem::Set(void)
{
char buf[10];
switch (pos) {
case 1: snprintf(buf, sizeof(buf), "%01d-:--", hh / 10); break;
case 2: snprintf(buf, sizeof(buf), "%02d:--", hh); break;
case 3: snprintf(buf, sizeof(buf), "%02d:%01d-", hh, mm / 10); break;
default: snprintf(buf, sizeof(buf), "%02d:%02d", hh, mm);
}
SetValue(buf);
}
eOSState cMenuEditTimeItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
if (k0 <= Key && Key <= k9) {
if (fresh || pos > 3) {
pos = 0;
fresh = false;
}
int n = Key - k0;
switch (pos) {
case 0: if (n <= 2) {
hh = n * 10;
mm = 0;
pos++;
}
break;
case 1: if (hh + n <= 23) {
hh += n;
pos++;
}
break;
case 2: if (n <= 5) {
mm += n * 10;
pos++;
}
break;
case 3: if (mm + n <= 59) {
mm += n;
pos++;
}
break;
default: ;
}
}
else if (NORMALKEY(Key) == kLeft) { // TODO might want to increase the delta if repeated quickly?
if (--mm < 0) {
mm = 59;
if (--hh < 0)
hh = 23;
}
fresh = true;
}
else if (NORMALKEY(Key) == kRight) {
if (++mm > 59) {
mm = 0;
if (++hh > 23)
hh = 0;
}
fresh = true;
}
else
return state;
*value = hh * 100 + mm;
Set();
state = osContinue;
}
return state;
}
// --- cMenuEditMapItem ------------------------------------------------------
cMenuEditMapItem::cMenuEditMapItem(const char *Name, int *Value, const tDvbParameterMap *Map, const char *ZeroString)
:cMenuEditItem(Name)
{
value = Value;
map = Map;
zeroString = ZeroString;
Set();
}
void cMenuEditMapItem::Set(void)
{
const char *s = NULL;
int n = MapToUser(*value, map, &s);
if (n == 0 && zeroString)
SetValue(zeroString);
else if (n >= 0) {
if (s)
SetValue(s);
else {
char buf[16];
snprintf(buf, sizeof(buf), "%d", n);
SetValue(buf);
}
}
else
SetValue("???");
}
eOSState cMenuEditMapItem::ProcessKey(eKeys Key)
{
eOSState state = cMenuEditItem::ProcessKey(Key);
if (state == osUnknown) {
int newValue = *value;
int n = DriverIndex(*value, map);
if (NORMALKEY(Key) == kLeft) { // TODO might want to increase the delta if repeated quickly?
if (n-- > 0)
newValue = map[n].driverValue;
}
else if (NORMALKEY(Key) == kRight) {
if (map[++n].userValue >= 0)
newValue = map[n].driverValue;
}
else
return state;
if (newValue != *value) {
*value = newValue;
Set();
}
state = osContinue;
}
return state;
}
// --- cMenuSetupPage --------------------------------------------------------
cMenuSetupPage::cMenuSetupPage(void)
:cOsdMenu("", 33)
{
plugin = NULL;
}
void cMenuSetupPage::SetSection(const char *Section)
{
SetTitle(cString::sprintf("%s - %s", tr("Setup"), Section));
}
eOSState cMenuSetupPage::ProcessKey(eKeys Key)
{
eOSState state = cOsdMenu::ProcessKey(Key);
if (state == osUnknown) {
switch (Key) {
case kOk: Store();
state = osBack;
break;
default: break;
}
}
return state;
}
void cMenuSetupPage::SetPlugin(cPlugin *Plugin)
{
plugin = Plugin;
SetSection(cString::sprintf("%s '%s'", tr("Plugin"), plugin->Name()));
}
void cMenuSetupPage::SetupStore(const char *Name, const char *Value)
{
if (plugin)
plugin->SetupStore(Name, Value);
}
void cMenuSetupPage::SetupStore(const char *Name, int Value)
{
if (plugin)
plugin->SetupStore(Name, Value);
}