mirror of
https://github.com/libretro/RetroArch.git
synced 2024-12-03 22:03:04 +00:00
451 lines
12 KiB
C
451 lines
12 KiB
C
/* RetroArch - A frontend for libretro.
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* Copyright (C) 2010-2014 - Hans-Kristian Arntzen
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* Copyright (C) 2011-2017 - Daniel De Matteis
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*
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* RetroArch is free software: you can redistribute it and/or modify it under the terms
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* of the GNU General Public License as published by the Free Software Found-
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* ation, either version 3 of the License, or (at your option) any later version.
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*
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* RetroArch is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with RetroArch.
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* If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdint.h>
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#include <stdlib.h>
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#ifdef HAVE_CONFIG_H
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#include "../../config.h"
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#endif
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#if defined(SN_TARGET_PSP2)
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#include <sceerror.h>
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#include <kernel.h>
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#include <ctrl.h>
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#elif defined(VITA)
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#include <psp2/ctrl.h>
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#include <psp2/kernel/processmgr.h>
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#include <psp2/hid.h>
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#include <psp2/motion.h>
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#define VITA_NUM_SCANCODES 115 /* size of rarch_key_map_vita */
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#define VITA_MAX_SCANCODE 0xE7
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#define VITA_NUM_MODIFIERS 11 /* number of modifiers reported */
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#define MOUSE_MAX_X 960
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#define MOUSE_MAX_Y 544
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#elif defined(PSP)
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#include <pspctrl.h>
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#endif
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#include <boolean.h>
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#include <libretro.h>
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#include <retro_miscellaneous.h>
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#ifdef HAVE_KERNEL_PRX
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#include "../../bootstrap/psp1/kernel_functions.h"
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#endif
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#include <defines/psp_defines.h>
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#include "../input_driver.h"
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/* TODO/FIXME -
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* fix game focus toggle */
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#if defined(SN_TARGET_PSP2) || defined(VITA)
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#include "../input_keymaps.h"
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uint8_t modifier_lut[VITA_NUM_MODIFIERS][2] =
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{
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{ 0xE0, 0x01 }, /* LCTRL */
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{ 0xE4, 0x10 }, /* RCTRL */
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{ 0xE1, 0x02 }, /* LSHIFT */
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{ 0xE5, 0x20 }, /* RSHIFT */
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{ 0xE2, 0x04 }, /* LALT */
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{ 0xE6, 0x40 }, /* RALT */
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{ 0xE3, 0x08 }, /* LGUI */
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{ 0xE7, 0x80 }, /* RGUI */
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{ 0x53, 0x01 }, /* NUMLOCK */
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{ 0x39, 0x02 }, /* CAPSLOCK */
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{ 0x47, 0x04 } /* SCROLLOCK */
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};
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typedef struct psp_input
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{
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int keyboard_hid_handle;
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int mouse_hid_handle;
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int32_t mouse_x;
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int32_t mouse_y;
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int32_t mouse_x_delta;
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int32_t mouse_y_delta;
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uint8_t prev_keys[6];
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bool keyboard_state[VITA_MAX_SCANCODE + 1];
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bool mouse_button_left;
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bool mouse_button_right;
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bool mouse_button_middle;
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bool sensors_enabled;
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} psp_input_t;
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static void vita_input_poll(void *data)
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{
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psp_input_t *psp = (psp_input_t*)data;
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unsigned int i = 0;
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int key_sym = 0;
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unsigned key_code = 0;
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uint8_t mod_code = 0;
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uint16_t mod = 0;
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uint8_t modifiers[2] = { 0, 0 };
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bool key_held = false;
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int mouse_velocity_x = 0;
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int mouse_velocity_y = 0;
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SceHidKeyboardReport k_reports[SCE_HID_MAX_REPORT];
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SceHidMouseReport m_reports[SCE_HID_MAX_REPORT];
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if (psp->keyboard_hid_handle > 0)
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{
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int numReports = sceHidKeyboardRead(
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psp->keyboard_hid_handle,
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(SceHidKeyboardReport**)&k_reports, SCE_HID_MAX_REPORT);
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if (numReports < 0)
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psp->keyboard_hid_handle = 0;
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else if (numReports)
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{
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modifiers[0] = k_reports[numReports - 1].modifiers[0];
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modifiers[1] = k_reports[numReports - 1].modifiers[1];
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mod = 0;
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if (modifiers[0] & 0x11)
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mod |= RETROKMOD_CTRL;
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if (modifiers[0] & 0x22)
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mod |= RETROKMOD_SHIFT;
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if (modifiers[0] & 0x44)
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mod |= RETROKMOD_ALT;
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if (modifiers[0] & 0x88)
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mod |= RETROKMOD_META;
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if (modifiers[1] & 0x01)
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mod |= RETROKMOD_NUMLOCK;
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if (modifiers[1] & 0x02)
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mod |= RETROKMOD_CAPSLOCK;
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if (modifiers[1] & 0x04)
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mod |= RETROKMOD_SCROLLOCK;
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for (i = 0; i < VITA_NUM_MODIFIERS; i++)
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{
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key_sym = (int)modifier_lut[i][0];
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mod_code = modifier_lut[i][1];
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key_code = input_keymaps_translate_keysym_to_rk(key_sym);
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if (i < 8)
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key_held = (modifiers[0] & mod_code);
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else
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key_held = (modifiers[1] & mod_code);
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if (key_held && !(psp->keyboard_state[key_sym]))
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{
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psp->keyboard_state[key_sym] = true;
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input_keyboard_event(true, key_code, 0, mod,
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RETRO_DEVICE_KEYBOARD);
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}
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else if (!key_held && (psp->keyboard_state[key_sym]))
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{
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psp->keyboard_state[key_sym] = false;
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input_keyboard_event(false, key_code, 0, mod,
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RETRO_DEVICE_KEYBOARD);
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}
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}
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for (i = 0; i < 6; i++)
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{
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key_sym = k_reports[numReports - 1].keycodes[i];
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if (key_sym != psp->prev_keys[i])
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{
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if (psp->prev_keys[i])
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{
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psp->keyboard_state[psp->prev_keys[i]] = false;
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key_code =
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input_keymaps_translate_keysym_to_rk(
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psp->prev_keys[i]);
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input_keyboard_event(false, key_code, 0, mod,
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RETRO_DEVICE_KEYBOARD);
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}
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if (key_sym)
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{
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psp->keyboard_state[key_sym] = true;
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key_code =
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input_keymaps_translate_keysym_to_rk(
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key_sym);
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input_keyboard_event(true, key_code, 0, mod,
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RETRO_DEVICE_KEYBOARD);
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}
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psp->prev_keys[i] = key_sym;
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}
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}
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}
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}
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if (psp->mouse_hid_handle > 0)
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{
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int numReports = sceHidMouseRead(psp->mouse_hid_handle,
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(SceHidMouseReport**)&m_reports, SCE_HID_MAX_REPORT);
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if (numReports > 0)
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{
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for (i = 0; i <= numReports - 1; i++)
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{
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uint8_t buttons = m_reports[i].buttons;
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if (buttons & 0x1)
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psp->mouse_button_left = true;
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else
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psp->mouse_button_left = false;
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if (buttons & 0x2)
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psp->mouse_button_right = true;
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else
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psp->mouse_button_right = false;
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if (buttons & 0x4)
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psp->mouse_button_middle = true;
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else
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psp->mouse_button_middle = false;
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mouse_velocity_x += m_reports[i].rel_x;
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mouse_velocity_y += m_reports[i].rel_y;
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}
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}
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}
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psp->mouse_x_delta = mouse_velocity_x;
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psp->mouse_y_delta = mouse_velocity_y;
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psp->mouse_x += mouse_velocity_x;
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psp->mouse_y += mouse_velocity_y;
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if (psp->mouse_x < 0)
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psp->mouse_x = 0;
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else if (psp->mouse_x > MOUSE_MAX_X)
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psp->mouse_x = MOUSE_MAX_X;
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if (psp->mouse_y < 0)
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psp->mouse_y = 0;
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else if (psp->mouse_y > MOUSE_MAX_Y)
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psp->mouse_y = MOUSE_MAX_Y;
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}
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static int16_t vita_input_state(
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void *data,
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const input_device_driver_t *joypad,
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const input_device_driver_t *sec_joypad,
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rarch_joypad_info_t *joypad_info,
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const struct retro_keybind **binds,
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bool keyboard_mapping_blocked,
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unsigned port,
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unsigned device,
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unsigned idx,
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unsigned id)
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{
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psp_input_t *psp = (psp_input_t*)data;
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switch (device)
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{
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case RETRO_DEVICE_JOYPAD:
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case RETRO_DEVICE_ANALOG:
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break;
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#ifdef VITA
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case RETRO_DEVICE_KEYBOARD:
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return ((id < RETROK_LAST) &&
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psp->keyboard_state[rarch_keysym_lut[(enum retro_key)id]]);
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case RETRO_DEVICE_MOUSE:
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case RARCH_DEVICE_MOUSE_SCREEN:
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{
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bool screen = device == RARCH_DEVICE_MOUSE_SCREEN;
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int val = 0;
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switch (id)
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{
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case RETRO_DEVICE_ID_MOUSE_LEFT:
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return psp->mouse_button_left;
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case RETRO_DEVICE_ID_MOUSE_RIGHT:
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return psp->mouse_button_right;
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case RETRO_DEVICE_ID_MOUSE_MIDDLE:
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return psp->mouse_button_middle;
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case RETRO_DEVICE_ID_MOUSE_X:
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if (screen)
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return psp->mouse_x;
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val = psp->mouse_x_delta;
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psp->mouse_x_delta = 0;
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/* flush delta after it has been read */
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break;
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case RETRO_DEVICE_ID_MOUSE_Y:
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if (screen)
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return psp->mouse_y;
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val = psp->mouse_y_delta;
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psp->mouse_y_delta = 0;
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/* flush delta after it has been read */
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break;
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}
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return val;
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}
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break;
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#endif
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}
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return 0;
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}
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#else
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typedef struct psp_input
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{
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void *empty;
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} psp_input_t;
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#endif
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static void psp_input_free_input(void *data)
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{
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free(data);
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}
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static uint64_t psp_input_get_capabilities(void *data)
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{
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uint64_t caps = (1 << RETRO_DEVICE_JOYPAD) | (1 << RETRO_DEVICE_ANALOG);
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#ifdef VITA
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caps |= (1 << RETRO_DEVICE_KEYBOARD) | (1 << RETRO_DEVICE_MOUSE);
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#endif
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return caps;
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}
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#ifdef VITA
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static bool psp_input_set_sensor_state(void *data, unsigned port,
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enum retro_sensor_action action, unsigned event_rate)
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{
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psp_input_t *psp = (psp_input_t*)data;
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if (!psp)
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return false;
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switch (action)
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{
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case RETRO_SENSOR_ILLUMINANCE_DISABLE:
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return true;
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case RETRO_SENSOR_ACCELEROMETER_DISABLE:
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case RETRO_SENSOR_GYROSCOPE_DISABLE:
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if(psp->sensors_enabled)
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{
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psp->sensors_enabled = false;
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sceMotionMagnetometerOff();
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sceMotionStopSampling();
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}
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return true;
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case RETRO_SENSOR_ACCELEROMETER_ENABLE:
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case RETRO_SENSOR_GYROSCOPE_ENABLE:
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if(!psp->sensors_enabled)
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{
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psp->sensors_enabled = true;
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sceMotionStartSampling();
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sceMotionMagnetometerOn();
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}
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return true;
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case RETRO_SENSOR_DUMMY:
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case RETRO_SENSOR_ILLUMINANCE_ENABLE:
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break;
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}
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return false;
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}
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static float psp_input_get_sensor_input(void *data,
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unsigned port, unsigned id)
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{
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SceMotionSensorState sixaxis;
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psp_input_t *psp = (psp_input_t*)data;
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if(!psp || !psp->sensors_enabled)
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return false;
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if(id >= RETRO_SENSOR_ACCELEROMETER_X && id <= RETRO_SENSOR_GYROSCOPE_Z)
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{
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sceMotionGetSensorState(&sixaxis, port);
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switch(id)
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{
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case RETRO_SENSOR_ACCELEROMETER_X:
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return sixaxis.accelerometer.x;
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case RETRO_SENSOR_ACCELEROMETER_Y:
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return sixaxis.accelerometer.y;
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case RETRO_SENSOR_ACCELEROMETER_Z:
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return sixaxis.accelerometer.z;
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case RETRO_SENSOR_GYROSCOPE_X:
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return sixaxis.gyro.x;
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case RETRO_SENSOR_GYROSCOPE_Y:
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return sixaxis.gyro.y;
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case RETRO_SENSOR_GYROSCOPE_Z:
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return sixaxis.gyro.z;
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}
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}
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return 0.0f;
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}
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static void *vita_input_initialize(const char *joypad_driver)
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{
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unsigned i;
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psp_input_t *psp = (psp_input_t*)calloc(1, sizeof(*psp));
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if (!psp)
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return NULL;
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sceHidKeyboardEnumerate(&(psp->keyboard_hid_handle), 1);
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sceHidMouseEnumerate(&(psp->mouse_hid_handle), 1);
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input_keymaps_init_keyboard_lut(rarch_key_map_vita);
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for (i = 0; i <= VITA_MAX_SCANCODE; i++)
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psp->keyboard_state[i] = false;
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for (i = 0; i < 6; i++)
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psp->prev_keys[i] = 0;
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psp->mouse_x = 0;
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psp->mouse_y = 0;
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return psp;
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}
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#else
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static void* psp_input_initialize(const char *joypad_driver)
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{
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psp_input_t *psp = (psp_input_t*)calloc(1, sizeof(*psp));
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if (!psp)
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return NULL;
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return psp;
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}
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#endif
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input_driver_t input_psp = {
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#ifdef VITA
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vita_input_initialize,
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vita_input_poll,
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vita_input_state,
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#else
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psp_input_initialize,
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NULL, /* poll */
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NULL, /* input_state */
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#endif
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psp_input_free_input,
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#ifdef VITA
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psp_input_set_sensor_state,
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psp_input_get_sensor_input,
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#else
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NULL,
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NULL,
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#endif
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psp_input_get_capabilities,
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#ifdef VITA
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"vita",
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#else
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"psp",
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#endif
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NULL, /* grab_mouse */
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NULL
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};
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