165 lines
4.4 KiB
C++
165 lines
4.4 KiB
C++
// Produces a list of materials available on the map.
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// Options:
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// -a : show unrevealed tiles
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// -p : don't show plants
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// -s : don't show slade
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// -t : don't show demon temple
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//#include <cstdlib>
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#include <iostream>
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#include <iomanip>
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#include <map>
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#include <algorithm>
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#include <vector>
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using namespace std;
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#include "Core.h"
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#include "Console.h"
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#include "Export.h"
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#include "PluginManager.h"
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#include "modules/MapCache.h"
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#include "MiscUtils.h"
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#include "DataDefs.h"
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#include "df/world.h"
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#include "df/world_data.h"
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#include "df/world_region_details.h"
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#include "df/world_geo_biome.h"
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#include "df/world_geo_layer.h"
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#include "df/region_map_entry.h"
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#include "df/inclusion_type.h"
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#include "df/viewscreen_choose_start_sitest.h"
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using namespace DFHack;
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using namespace df::enums;
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using df::global::world;
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using df::coord2d;
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command_result rprobe (color_ostream &out, vector <string> & parameters);
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DFHACK_PLUGIN("rprobe");
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DFhackCExport command_result plugin_init ( color_ostream &out, std::vector <PluginCommand> &commands)
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{
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commands.push_back(PluginCommand(
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"rprobe", "Display region information from embark screen",
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rprobe, false,
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"Display assorted region information from embark screen\n"
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));
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return CR_OK;
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}
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DFhackCExport command_result plugin_shutdown ( color_ostream &out )
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{
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return CR_OK;
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}
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command_result rprobe (color_ostream &out, vector <string> & parameters)
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{
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CoreSuspender suspend;
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bool set = false;
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int to_set, set_field, set_val;
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// Embark screen active: estimate using world geology data
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VIRTUAL_CAST_VAR(screen, df::viewscreen_choose_start_sitest, Core::getTopViewscreen());
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if (!screen)
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return CR_WRONG_USAGE;
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if (!world || !world->world_data)
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{
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out.printerr("World data is not available.\n");
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return CR_FAILURE;
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}
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if (parameters.size() == 2)
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{
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if (parameters[0] == "rai")
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set_field = 0;
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else if (parameters[0] == "veg")
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set_field = 1;
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else if (parameters[0] == "tem")
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set_field = 2;
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else if (parameters[0] == "evi")
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set_field = 3;
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else if (parameters[0] == "dra")
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set_field = 4;
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else if (parameters[0] == "sav")
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set_field = 5;
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else if (parameters[0] == "sal")
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set_field = 6;
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else
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return CR_WRONG_USAGE;
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if (screen->biome_highlighted)
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to_set = screen->biome_idx;
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else
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to_set = 0;
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set = true;
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set_val = atoi(parameters[1].c_str());
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}
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df::world_data *data = world->world_data;
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coord2d cur_region = screen->location.region_pos;
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// Compute biomes
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for (int i = 0; i < screen->location.biome_rgn.size(); i++)
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{
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coord2d rg = screen->location.biome_rgn[i];
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auto rd = &data->region_map[rg.x][rg.y];
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if (set && i == to_set) {
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if (set_field == 0)
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rd->rainfall = set_val;
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else if (set_field == 1)
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rd->vegetation = set_val;
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else if (set_field == 2)
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rd->temperature = set_val;
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else if (set_field == 3)
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rd->evilness = set_val;
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else if (set_field == 4)
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rd->drainage = set_val;
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else if (set_field == 5)
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rd->savagery = set_val;
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else if (set_field == 6)
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rd->salinity = set_val;
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}
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out << i << ": x = " << rg.x << ", y = " << rg.y;
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out <<
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" region_id: " << rd->region_id <<
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" geo_index: " << rd->geo_index <<
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" landmass_id: " << rd->landmass_id <<
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" flags: " << hex << rd->flags.as_int() << dec << endl;
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out <<
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"rai: " << rd->rainfall << " " <<
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"veg: " << rd->vegetation << " " <<
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"tem: " << rd->temperature << " " <<
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"evi: " << rd->evilness << " " <<
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"dra: " << rd->drainage << " " <<
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"sav: " << rd->savagery << " " <<
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"sal: " << rd->salinity;
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int32_t *p = (int32_t *)rd;
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int c = sizeof(*rd) / sizeof(int32_t);
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for (int j = 0; j < c; j++) {
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if (j % 8 == 0)
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out << endl << setfill('0') << setw(8) << hex << (intptr_t)(rd+j) << ": ";
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out << " " << setfill('0') << setw(8) << hex << p[j];
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}
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out << setfill(' ') << setw(0) << dec << endl;
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}
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return CR_OK;
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}
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