157 lines
3.7 KiB
C
157 lines
3.7 KiB
C
#define LOG_MODULE "bio2drv-bi2a_sdvx"
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#include "bio2drv/bi2a-sdvx.h"
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#include <stdio.h>
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#include <string.h>
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#include "aciodrv/device.h"
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#include "util/log.h"
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static const uint8_t _BIO2DR_BI2A_SDVX_INIT_DATA = 0x3B;
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// this is probably InitIO
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static bool
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bio2drv_bi2a_sdvx_init_io(struct aciodrv_device_ctx *device, uint8_t node_id)
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{
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struct ac_io_message msg;
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log_assert(device);
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msg.addr = node_id + 1;
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msg.cmd.code = ac_io_u16(BIO2_BI2A_CMD_INIT);
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msg.cmd.nbytes = 1;
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msg.cmd.param = _BIO2DR_BI2A_SDVX_INIT_DATA;
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if (!aciodrv_send_and_recv(
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device, &msg, offsetof(struct ac_io_message, cmd.raw) + 1)) {
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log_warning("Init node failed");
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return 0;
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}
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log_warning("Init of node %d, status: %d", node_id, msg.cmd.status);
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return 1;
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}
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static bool bio2drv_bi2a_sdvx_watchdog_start(
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struct aciodrv_device_ctx *device, uint8_t node_id)
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{
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log_assert(device);
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// exit early and don't actually call watchdog
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// the watchdog call actually returns different sized packets depending on
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// the state this results in an issue during packet processing (see: #68)
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return true;
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/*
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struct ac_io_message msg;
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msg.addr = node_id + 1;
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msg.cmd.code = ac_io_u16(AC_IO_CMD_KFCA_WATCHDOG);
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msg.cmd.nbytes = 2;
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msg.cmd.nbytes = 2;
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// uint16_t: 6000
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msg.cmd.raw[0] = 23;
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msg.cmd.raw[1] = 112;
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if (!aciodrv_send_and_recv(
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device, &msg, offsetof(struct ac_io_message, cmd.raw) + 2
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)) {
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log_warning("Starting watchdog failed"); return false;
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}
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log_warning("Started watchdog of node %d, status: %d",
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node_id, msg.cmd.status);
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return true;
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*/
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}
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bool bio2drv_bi2a_sdvx_amp(
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struct aciodrv_device_ctx *device,
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uint8_t node_id,
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uint8_t unused_1,
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uint8_t unused_2,
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uint8_t left,
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uint8_t right)
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{
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struct ac_io_message msg;
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log_assert(device);
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msg.addr = node_id + 1;
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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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// the BIO2 DOES NOT MATCH THE KFCA for what these mean
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// 0 and 1 are ignored, 2 and 3 seem to map to left/right for ALL 3 AMPS
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// in the future, maybe use windows APIs and write the volume levels there
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msg.cmd.raw[0] = unused_1;
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msg.cmd.raw[1] = unused_2;
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msg.cmd.raw[2] = left;
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msg.cmd.raw[3] = right;
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if (!aciodrv_send_and_recv(
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device, &msg, offsetof(struct ac_io_message, cmd.raw) + 1)) {
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log_warning("Setting AMP failed");
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return false;
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}
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log_warning("Started AMP node %d", node_id);
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return true;
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}
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bool bio2drv_bi2a_sdvx_init(struct aciodrv_device_ctx *device, uint8_t node_id)
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{
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log_assert(device);
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if (!bio2drv_bi2a_sdvx_init_io(device, node_id)) {
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return false;
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}
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if (!bio2drv_bi2a_sdvx_watchdog_start(device, node_id)) {
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return false;
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}
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if (!bio2drv_bi2a_sdvx_amp(device, node_id, 0, 0, 0, 0)) {
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return false;
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}
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return true;
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}
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bool bio2drv_bi2a_sdvx_poll(
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struct aciodrv_device_ctx *device,
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uint8_t node_id,
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const struct bi2a_sdvx_state_out *pout,
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struct bi2a_sdvx_state_in *pin)
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{
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struct ac_io_message msg;
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// log_assert(device);
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msg.addr = node_id + 1;
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msg.cmd.code = ac_io_u16(AC_IO_CMD_KFCA_POLL);
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msg.cmd.nbytes = sizeof(*pout);
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/* buffer size of data we expect */
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*(struct bi2a_sdvx_state_out *) msg.cmd.raw = *pout;
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if (!aciodrv_send_and_recv(
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device,
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&msg,
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offsetof(struct ac_io_message, cmd.raw) + sizeof(*pin))) {
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log_warning("Polling of node %d failed", node_id + 1);
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return false;
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}
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if (pin != NULL) {
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memcpy(pin, &msg.cmd.raw, sizeof(*pin));
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}
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return true;
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}
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