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https://github.com/RPCS3/rpcs3.git
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input: list actual nodes instead of button ids
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parent
1a98682ea0
commit
fc76d2df38
@ -658,9 +658,9 @@ static void ds3_input_to_pad(const u32 port_no, be_t<u16>& digital_buttons, be_t
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continue;
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}
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode))
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode); btn.has_value() && btn.value())
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{
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switch (btn.value())
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switch (btn.value()->btn_id())
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{
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case gem_btn::start:
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digital_buttons |= CELL_GEM_CTRL_START;
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@ -92,9 +92,9 @@ void usb_device_buzz::interrupt_transfer(u32 buf_size, u8* buf, u32 /*endpoint*/
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continue;
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}
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode))
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode); btn.has_value() && btn.value())
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{
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switch (btn.value())
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switch (btn.value()->btn_id())
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{
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case buzz_btn::red:
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buf[2 + (0 + 5 * index) / 8] |= 1 << ((0 + 5 * index) % 8); // Red
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@ -125,9 +125,9 @@ void usb_device_ghltar::interrupt_transfer(u32 buf_size, u8* buf, u32 /*endpoint
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continue;
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}
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode))
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode); btn.has_value() && btn.value())
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{
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switch (btn.value())
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switch (btn.value()->btn_id())
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{
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case ghltar_btn::w1:
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buf[0] += 0x01; // W1
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@ -134,9 +134,9 @@ void usb_device_turntable::interrupt_transfer(u32 buf_size, u8* buf, u32 /*endpo
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if (!button.m_pressed)
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continue;
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode))
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode); btn.has_value() && btn.value())
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{
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switch (btn.value())
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switch (btn.value()->btn_id())
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{
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case turntable_btn::blue:
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buf[0] |= 0x01; // Square Button
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@ -32,13 +32,13 @@ struct emulated_pad_config : cfg::node
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{
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using cfg::node::node;
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std::map<u32, std::map<u32, T>> buttons;
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std::map<u32, std::map<u32, const cfg_pad_btn<T>*>> button_map;
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std::optional<T> find_button(u32 offset, u32 keycode) const
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std::optional<const cfg_pad_btn<T>*> find_button(u32 offset, u32 keycode) const
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{
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if (const auto it = buttons.find(offset); it != buttons.cend())
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if (const auto it = button_map.find(offset); it != button_map.cend())
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{
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if (const auto it2 = it->second.find(keycode); it2 != it->second.cend())
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if (const auto it2 = it->second.find(keycode); it2 != it->second.cend() && it2->second)
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{
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return it2->second;
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}
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@ -47,19 +47,19 @@ struct emulated_pad_config : cfg::node
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return std::nullopt;
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}
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void set_button(const cfg_pad_btn<T>& pbtn, T bbtn)
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void init_button(cfg_pad_btn<T>* pbtn)
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{
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const u32 offset = pad_button_offset(pbtn);
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const u32 keycode = pad_button_keycode(pbtn);
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buttons[(offset >> 8) & 0xFF][keycode & 0xFF] = bbtn;
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if (!pbtn) return;
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const u32 offset = pad_button_offset(pbtn->get());
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const u32 keycode = pad_button_keycode(pbtn->get());
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button_map[(offset >> 8) & 0xFF][keycode & 0xFF] = std::as_const(pbtn);
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}
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void set_buttons()
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void init_buttons()
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{
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for (const auto& n : get_nodes())
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{
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const auto& node = static_cast<cfg_pad_btn<T>*>(n);
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set_button(*node, node->btn_id());
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init_button(static_cast<cfg_pad_btn<T>*>(n));
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}
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}
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};
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@ -108,7 +108,7 @@ struct emulated_pads_config : cfg::node
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for (T* player : players)
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{
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player->set_buttons();
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player->init_buttons();
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}
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return result;
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@ -173,9 +173,9 @@ void usb_device_usio::translate_input()
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for (const Button& button : pad->m_buttons)
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{
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode))
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if (const auto btn = cfg->find_button(button.m_offset, button.m_outKeyCode); btn.has_value() && btn.value())
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{
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switch (btn.value())
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switch (btn.value()->btn_id())
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{
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case usio_btn::test:
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if (player != 0) break;
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