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https://github.com/djhackersdev/bemanitools.git
synced 2024-11-24 14:50:10 +01:00
sdvx: Allow setting digital amp level from sdvxio
For SDVX 1-4: passes amp values through as-is For SDVX5: ignores the amp volume control (as the game uses windows volume controls, which will work without any hooks)
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@ -37,7 +37,12 @@ static bool aciodrv_kfca_watchdog_start(uint8_t node_id)
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*/
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}
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static bool aciodrv_kfca_amp(uint8_t node_id)
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bool aciodrv_kfca_amp(
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uint8_t node_id,
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uint8_t primary,
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uint8_t headphone,
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uint8_t unused,
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uint8_t subwoofer)
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{
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struct ac_io_message msg;
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@ -45,12 +50,10 @@ static bool aciodrv_kfca_amp(uint8_t node_id)
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msg.cmd.code = ac_io_u16(AC_IO_CMD_KFCA_AMP_CONTROL);
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msg.cmd.nbytes = 4;
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// yes this sets the amp to 100% volume
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// TODO: expose this to sdvxio instead at some point
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msg.cmd.raw[0] = 0;
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msg.cmd.raw[1] = 0;
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msg.cmd.raw[2] = 0;
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msg.cmd.raw[3] = 0;
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msg.cmd.raw[0] = primary;
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msg.cmd.raw[1] = headphone;
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msg.cmd.raw[2] = unused;
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msg.cmd.raw[3] = subwoofer;
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if (!aciodrv_send_and_recv(
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&msg, offsetof(struct ac_io_message, cmd.raw) + 1)) {
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@ -69,7 +72,7 @@ bool aciodrv_kfca_init(uint8_t node_id)
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return false;
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}
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if (!aciodrv_kfca_amp(node_id)) {
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if (!aciodrv_kfca_amp(node_id, 0, 0, 0, 0)) {
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return false;
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}
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@ -30,4 +30,22 @@ bool aciodrv_kfca_poll(
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const struct ac_io_kfca_poll_out *pout,
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struct ac_io_kfca_poll_in *pin);
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/**
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* Set the KFCA digital amp level
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*
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* @param node_id Id of the node to query (0 based).
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* @param primary primary volume (96-0)
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* @param headphone headphone volume (96-0)
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* @param unused unknown volume (96-0) (unused)
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* @param subwoofer subwoofer volume (96-0)
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* @return True on success, false on error.
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* @note Note 96 (or 100?) is lowest volume level, 0 is highest
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*/
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bool aciodrv_kfca_amp(
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uint8_t node_id,
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uint8_t primary,
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uint8_t headphone,
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uint8_t unused,
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uint8_t subwoofer);
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#endif
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@ -98,4 +98,8 @@ uint16_t sdvx_io_get_input_gpio(uint8_t gpio_bank);
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uint16_t sdvx_io_get_spinner_pos(uint8_t spinner_no);
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/* Sets the volume of the digital amps if possible */
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bool sdvx_io_set_amp_volume(uint8_t primary, uint8_t headphone, uint8_t subwoofer);
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#endif
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@ -15,7 +15,7 @@
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static void kfca_send_version(const struct ac_io_message *req);
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static void kfca_report_status(const struct ac_io_message *req, uint8_t status);
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static void kfca_report_0128(const struct ac_io_message *req);
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static void kfca_amp_control(const struct ac_io_message *req);
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static void kfca_poll(const struct ac_io_message *req);
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static void kfca_poll_thunk(void *ctx_ptr, struct ac_io_message *resp);
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@ -60,7 +60,7 @@ void kfca_dispatch_request(const struct ac_io_message *req)
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case AC_IO_CMD_KFCA_AMP_CONTROL:
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log_misc("AC_IO_CMD_KFCA_AMP_CONTROL(%d)", req->addr);
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kfca_report_0128(req);
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kfca_amp_control(req);
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break;
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@ -110,7 +110,7 @@ static void kfca_report_status(const struct ac_io_message *req, uint8_t status)
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ac_io_emu_response_push(kfca_ac_io_emu, &resp, 0);
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}
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static void kfca_report_0128(const struct ac_io_message *req)
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static void kfca_amp_control(const struct ac_io_message *req)
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{
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struct ac_io_message resp;
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@ -120,6 +120,12 @@ static void kfca_report_0128(const struct ac_io_message *req)
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resp.cmd.nbytes = req->cmd.nbytes;
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memcpy(resp.cmd.raw, req->cmd.raw, req->cmd.nbytes);
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// bytes 0-4: main, headphone, unused, subwoofer
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if (!sdvx_io_set_amp_volume(req->cmd.raw[0], req->cmd.raw[1], req->cmd.raw[3])) {
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log_warning("Unable to set amp volume?");
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}
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ac_io_emu_response_push(kfca_ac_io_emu, &resp, 0);
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}
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@ -104,8 +104,12 @@ kfca_amp_control(struct ac_io_emu *emu, const struct ac_io_message *req)
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resp.cmd.nbytes = req->cmd.nbytes;
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memcpy(resp.cmd.raw, req->cmd.raw, req->cmd.nbytes);
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// log_misc("sz %d: %d, %d, %d, %d", req->cmd.nbytes, req->cmd.raw[0],
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// req->cmd.raw[1], req->cmd.raw[2], req->cmd.raw[3]);
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// so SDVX5 sets the amps to 0 aka ALL MAX and uses Windows instead
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// let's leave it to the individual sdvxio to set on init instead
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// this way if any sdvxio's want to use Windows APIs for SDVX1-4 comapt.
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// they can do so without doubly affecting the volume
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// sdvx_io_set_amp_volume(0, 0, 0, 0);
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ac_io_emu_response_push(emu, &resp, 0);
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}
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@ -11,3 +11,4 @@ EXPORTS
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sdvx_io_set_loggers
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sdvx_io_set_pwm_light
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sdvx_io_write_output
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sdvx_io_set_amp_volume
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@ -31,6 +31,7 @@ static uint16_t sdvx_io_analog[2];
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static bool running;
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static bool processing_io;
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static int16_t kfca_node_id;
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struct ac_io_kfca_poll_out pout_staging;
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struct ac_io_kfca_poll_out pout_ready;
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@ -86,7 +87,7 @@ bool sdvx_io_init(
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uint8_t node_count = aciodrv_device_get_node_count();
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log_info("Enumerated %d nodes", node_count);
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int16_t kfca_node_id = -1;
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kfca_node_id = -1;
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for (uint8_t i = 0; i < node_count; i++) {
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char product[4];
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@ -109,7 +110,11 @@ bool sdvx_io_init(
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if (kfca_node_id != -1) {
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log_warning("Using KFCA on node: %d", kfca_node_id);
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aciodrv_kfca_init(kfca_node_id);
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if (!aciodrv_kfca_init(kfca_node_id)) {
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log_warning("Unable to start KFCA on node: %d", kfca_node_id);
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return false;
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}
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running = true;
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log_warning("sdvxio-kfca now running");
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@ -155,7 +160,7 @@ bool sdvx_io_read_input(void)
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}
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processing_io = true;
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if (!aciodrv_kfca_poll(0, &pout_ready, &pin)) {
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if (!aciodrv_kfca_poll(kfca_node_id, &pout_ready, &pin)) {
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return false;
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}
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@ -199,3 +204,19 @@ uint16_t sdvx_io_get_spinner_pos(uint8_t spinner_no)
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}
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return sdvx_io_analog[spinner_no];
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}
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bool sdvx_io_set_amp_volume(
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uint8_t primary,
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uint8_t headphone,
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uint8_t subwoofer)
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{
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if (!running) {
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return false;
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}
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if (!aciodrv_kfca_amp(kfca_node_id, primary, 96, headphone, subwoofer)) {
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return false;
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}
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return true;
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}
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@ -88,3 +88,8 @@ uint16_t sdvx_io_get_spinner_pos(uint8_t spinner_no)
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{
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return mapper_read_analog(spinner_no) * 4;
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}
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bool sdvx_io_set_amp_volume(uint8_t primary, uint8_t headphone, uint8_t subwoofer)
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{
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return true;
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}
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@ -11,3 +11,4 @@ EXPORTS
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sdvx_io_set_loggers
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sdvx_io_set_pwm_light
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sdvx_io_write_output
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sdvx_io_set_amp_volume
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