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292 lines
8.9 KiB
292 lines
8.9 KiB
/* |
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htop - Header.c |
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(C) 2004-2011 Hisham H. Muhammad |
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Released under the GNU GPLv2+, see the COPYING file |
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in the source distribution for its full text. |
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*/ |
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#include "Header.h" |
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#include <assert.h> |
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#include <math.h> |
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#include <stdbool.h> |
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#include <stdint.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include "CRT.h" |
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#include "CPUMeter.h" |
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#include "DynamicMeter.h" |
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#include "Macros.h" |
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#include "Object.h" |
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#include "Platform.h" |
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#include "ProvideCurses.h" |
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#include "XUtils.h" |
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Header* Header_new(ProcessList* pl, Settings* settings, HeaderLayout hLayout) { |
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Header* this = xCalloc(1, sizeof(Header)); |
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this->columns = xMallocArray(HeaderLayout_getColumns(hLayout), sizeof(Vector*)); |
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this->settings = settings; |
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this->pl = pl; |
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this->headerLayout = hLayout; |
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Header_forEachColumn(this, i) { |
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this->columns[i] = Vector_new(Class(Meter), true, DEFAULT_SIZE); |
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} |
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return this; |
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} |
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void Header_delete(Header* this) { |
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Header_forEachColumn(this, i) { |
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Vector_delete(this->columns[i]); |
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} |
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free(this->columns); |
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free(this); |
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} |
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void Header_setLayout(Header* this, HeaderLayout hLayout) { |
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size_t oldColumns = HeaderLayout_getColumns(this->headerLayout); |
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size_t newColumns = HeaderLayout_getColumns(hLayout); |
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this->headerLayout = hLayout; |
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if (newColumns == oldColumns) |
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return; |
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if (newColumns > oldColumns) { |
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this->columns = xReallocArray(this->columns, newColumns, sizeof(Vector*)); |
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for (size_t i = oldColumns; i < newColumns; i++) |
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this->columns[i] = Vector_new(Class(Meter), true, DEFAULT_SIZE); |
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} else { |
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// move meters from to-be-deleted columns into last one |
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for (size_t i = newColumns; i < oldColumns; i++) { |
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for (int j = this->columns[i]->items - 1; j >= 0; j--) { |
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Vector_add(this->columns[newColumns - 1], Vector_take(this->columns[i], j)); |
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} |
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Vector_delete(this->columns[i]); |
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} |
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this->columns = xReallocArray(this->columns, newColumns, sizeof(Vector*)); |
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} |
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Header_calculateHeight(this); |
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} |
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static void Header_addMeterByName(Header* this, const char* name, MeterModeId mode, unsigned int column) { |
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assert(column < HeaderLayout_getColumns(this->headerLayout)); |
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Vector* meters = this->columns[column]; |
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const char* paren = strchr(name, '('); |
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unsigned int param = 0; |
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size_t nameLen; |
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if (paren) { |
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int ok = sscanf(paren, "(%10u)", ¶m); // CPUMeter |
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if (!ok) { |
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char dynamic[32] = {0}; |
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if (sscanf(paren, "(%30s)", dynamic)) { // DynamicMeter |
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char* end; |
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if ((end = strrchr(dynamic, ')')) == NULL) |
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return; // htoprc parse failure |
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*end = '\0'; |
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if (!DynamicMeter_search(this->pl->dynamicMeters, dynamic, ¶m)) |
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return; // name lookup failure |
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} else { |
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param = 0; |
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} |
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} |
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nameLen = paren - name; |
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} else { |
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nameLen = strlen(name); |
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} |
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for (const MeterClass* const* type = Platform_meterTypes; *type; type++) { |
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if (0 == strncmp(name, (*type)->name, nameLen) && (*type)->name[nameLen] == '\0') { |
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Meter* meter = Meter_new(this->pl, param, *type); |
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if (mode != 0) { |
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Meter_setMode(meter, mode); |
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} |
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Vector_add(meters, meter); |
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break; |
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} |
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} |
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} |
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void Header_populateFromSettings(Header* this) { |
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Header_setLayout(this, this->settings->hLayout); |
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Header_forEachColumn(this, col) { |
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const MeterColumnSetting* colSettings = &this->settings->hColumns[col]; |
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Vector_prune(this->columns[col]); |
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for (size_t i = 0; i < colSettings->len; i++) { |
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Header_addMeterByName(this, colSettings->names[i], colSettings->modes[i], col); |
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} |
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} |
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Header_calculateHeight(this); |
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} |
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void Header_writeBackToSettings(const Header* this) { |
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Settings_setHeaderLayout(this->settings, this->headerLayout); |
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Header_forEachColumn(this, col) { |
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MeterColumnSetting* colSettings = &this->settings->hColumns[col]; |
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if (colSettings->names) { |
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for (size_t j = 0; j < colSettings->len; j++) |
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free(colSettings->names[j]); |
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free(colSettings->names); |
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} |
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free(colSettings->modes); |
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const Vector* vec = this->columns[col]; |
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int len = Vector_size(vec); |
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colSettings->names = len ? xCalloc(len + 1, sizeof(char*)) : NULL; |
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colSettings->modes = len ? xCalloc(len, sizeof(int)) : NULL; |
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colSettings->len = len; |
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for (int i = 0; i < len; i++) { |
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const Meter* meter = (Meter*) Vector_get(vec, i); |
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char* name; |
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if (meter->param && As_Meter(meter) == &DynamicMeter_class) { |
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const char* dynamic = DynamicMeter_lookup(this->pl->dynamicMeters, meter->param); |
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xAsprintf(&name, "%s(%s)", As_Meter(meter)->name, dynamic); |
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} else if (meter->param && As_Meter(meter) == &CPUMeter_class) { |
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xAsprintf(&name, "%s(%u)", As_Meter(meter)->name, meter->param); |
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} else { |
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xAsprintf(&name, "%s", As_Meter(meter)->name); |
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} |
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colSettings->names[i] = name; |
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colSettings->modes[i] = meter->mode; |
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} |
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} |
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} |
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Meter* Header_addMeterByClass(Header* this, const MeterClass* type, unsigned int param, unsigned int column) { |
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assert(column < HeaderLayout_getColumns(this->headerLayout)); |
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Vector* meters = this->columns[column]; |
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Meter* meter = Meter_new(this->pl, param, type); |
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Vector_add(meters, meter); |
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return meter; |
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} |
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void Header_reinit(Header* this) { |
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Header_forEachColumn(this, col) { |
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for (int i = 0; i < Vector_size(this->columns[col]); i++) { |
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Meter* meter = (Meter*) Vector_get(this->columns[col], i); |
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if (Meter_initFn(meter)) { |
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Meter_init(meter); |
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} |
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} |
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} |
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} |
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void Header_draw(const Header* this) { |
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const int height = this->height; |
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const int pad = this->pad; |
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attrset(CRT_colors[RESET_COLOR]); |
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for (int y = 0; y < height; y++) { |
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mvhline(y, 0, ' ', COLS); |
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} |
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const int width = COLS - pad; |
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int x = pad; |
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float roundingLoss = 0.0F; |
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Header_forEachColumn(this, col) { |
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Vector* meters = this->columns[col]; |
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float colWidth = (float)width * HeaderLayout_layouts[this->headerLayout].widths[col] / 100.0F; |
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roundingLoss += colWidth - floorf(colWidth); |
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if (roundingLoss >= 1.0F) { |
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colWidth += 1.0F; |
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roundingLoss -= 1.0F; |
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} |
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for (int y = (pad / 2), i = 0; i < Vector_size(meters); i++) { |
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Meter* meter = (Meter*) Vector_get(meters, i); |
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float actualWidth = colWidth; |
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/* Let meters in text mode expand to the right on empty neighbors; |
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except for multi column meters. */ |
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if (meter->mode == TEXT_METERMODE && !Meter_isMultiColumn(meter)) { |
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for (int j = 1; j < meter->columnWidthCount; j++) { |
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actualWidth += (float)width * HeaderLayout_layouts[this->headerLayout].widths[col + j] / 100.0F; |
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} |
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} |
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assert(meter->draw); |
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meter->draw(meter, x, y, floorf(actualWidth)); |
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y += meter->h; |
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} |
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x += floorf(colWidth); |
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} |
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} |
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void Header_updateData(Header* this) { |
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Header_forEachColumn(this, col) { |
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Vector* meters = this->columns[col]; |
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int items = Vector_size(meters); |
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for (int i = 0; i < items; i++) { |
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Meter* meter = (Meter*) Vector_get(meters, i); |
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Meter_updateValues(meter); |
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} |
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} |
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} |
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/* |
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* Calculate how many columns the current meter is allowed to span, |
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* by counting how many columns to the right are empty or contain a BlankMeter. |
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* Returns the number of columns to span, i.e. if the direct neighbor is occupied 1. |
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*/ |
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static int calcColumnWidthCount(const Header* this, const Meter* curMeter, const int pad, const unsigned int curColumn, const int curHeight) { |
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for (size_t i = curColumn + 1; i < HeaderLayout_getColumns(this->headerLayout); i++) { |
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const Vector* meters = this->columns[i]; |
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int height = pad; |
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for (int j = 0; j < Vector_size(meters); j++) { |
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const Meter* meter = (const Meter*) Vector_get(meters, j); |
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if (height >= curHeight + curMeter->h) |
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break; |
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height += meter->h; |
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if (height <= curHeight) |
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continue; |
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if (!Object_isA((const Object*) meter, (const ObjectClass*) &BlankMeter_class)) |
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return i - curColumn; |
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} |
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} |
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return HeaderLayout_getColumns(this->headerLayout) - curColumn; |
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} |
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int Header_calculateHeight(Header* this) { |
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const int pad = this->settings->headerMargin ? 2 : 0; |
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int maxHeight = pad; |
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Header_forEachColumn(this, col) { |
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const Vector* meters = this->columns[col]; |
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int height = pad; |
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for (int i = 0; i < Vector_size(meters); i++) { |
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Meter* meter = (Meter*) Vector_get(meters, i); |
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meter->columnWidthCount = calcColumnWidthCount(this, meter, pad, col, height); |
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height += meter->h; |
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} |
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maxHeight = MAXIMUM(maxHeight, height); |
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} |
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if (this->settings->screenTabs) { |
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maxHeight++; |
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} |
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this->height = maxHeight; |
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this->pad = pad; |
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return maxHeight; |
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}
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