mirror of
https://github.com/dingusdev/dingusppc.git
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361 lines
11 KiB
C++
361 lines
11 KiB
C++
/*
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DingusPPC - The Experimental PowerPC Macintosh emulator
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Copyright (C) 2018-22 divingkatae and maximum
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(theweirdo) spatium
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(Contact divingkatae#1017 or powermax#2286 on Discord for more info)
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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/** @file NCR53C94/Am53CF94 SCSI controller emulation. */
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#include <core/timermanager.h>
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#include <devices/common/hwcomponent.h>
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#include <devices/common/hwinterrupt.h>
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#include <devices/common/scsi/sc53c94.h>
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#include <loguru.hpp>
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#include <machines/machinebase.h>
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#include <cinttypes>
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Sc53C94::Sc53C94(uint8_t chip_id, uint8_t my_id)
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{
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this->chip_id = chip_id;
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this->my_bus_id = my_id;
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supports_types(HWCompType::SCSI_HOST | HWCompType::SCSI_DEV);
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reset_device();
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}
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int Sc53C94::device_postinit()
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{
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this->bus_obj = dynamic_cast<ScsiBus*>(gMachineObj->get_comp_by_name("SCSI0"));
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this->bus_obj->register_device(7, static_cast<ScsiDevice*>(this));
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this->int_ctrl = dynamic_cast<InterruptCtrl*>(
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gMachineObj->get_comp_by_type(HWCompType::INT_CTRL));
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this->irq_id = this->int_ctrl->register_dev_int(IntSrc::SCSI1);
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return 0;
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}
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void Sc53C94::reset_device()
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{
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// part-unique ID to be read using a magic sequence
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this->set_xfer_count = this->chip_id << 16;
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this->clk_factor = 2;
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this->sel_timeout = 0;
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this->is_initiator = true;
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// clear command FIFO
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this->cmd_fifo_pos = 0;
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// clear data FIFO
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this->data_fifo_pos = 0;
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this->data_fifo[0] = 0;
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this->seq_step = 0;
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this->status = 0;
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}
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uint8_t Sc53C94::read(uint8_t reg_offset)
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{
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uint8_t int_status;
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switch (reg_offset) {
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case Read::Reg53C94::Command:
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return this->cmd_fifo[0];
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case Read::Reg53C94::Status:
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return this->status;
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case Read::Reg53C94::Int_Status:
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int_status = this->int_status;
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this->seq_step = 0;
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this->int_status = 0;
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this->update_irq();
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return int_status;
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case Read::Reg53C94::Seq_Step:
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return this->seq_step;
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case Read::Reg53C94::FIFO_Flags:
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return (this->seq_step << 5) | (this->data_fifo_pos & 0x1F);
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case Read::Reg53C94::Config_3:
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return this->config3;
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case Read::Reg53C94::Xfer_Cnt_Hi:
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if (this->config2 & CFG2_ENF) {
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return (this->xfer_count >> 16) & 0xFFU;
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}
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break;
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default:
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LOG_F(INFO, "SC53C94: reading from register %d", reg_offset);
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}
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return 0;
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}
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void Sc53C94::write(uint8_t reg_offset, uint8_t value)
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{
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switch (reg_offset) {
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case Write::Reg53C94::Command:
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update_command_reg(value);
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break;
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case Write::Reg53C94::FIFO:
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fifo_push(value);
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break;
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case Write::Reg53C94::Dest_Bus_ID:
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this->target_id = value & 7;
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break;
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case Write::Reg53C94::Sel_Timeout:
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this->sel_timeout = value;
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break;
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case Write::Reg53C94::Sync_Offset:
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this->sync_offset = value;
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break;
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case Write::Reg53C94::Clock_Factor:
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this->clk_factor = value;
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break;
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case Write::Reg53C94::Config_1:
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if ((value & 7) != this->my_bus_id) {
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ABORT_F("SC53C94: HBA bus ID mismatch!");
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}
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this->config1 = value;
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break;
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case Write::Reg53C94::Config_2:
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this->config2 = value;
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break;
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case Write::Reg53C94::Config_3:
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this->config3 = value;
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break;
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default:
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LOG_F(INFO, "SC53C94: writing 0x%X to %d register", value, reg_offset);
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}
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}
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void Sc53C94::update_command_reg(uint8_t cmd)
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{
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if (this->on_reset && (cmd & 0x7F) != CMD_NOP) {
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LOG_F(WARNING, "SC53C94: command register blocked after RESET!");
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return;
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}
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// NOTE: Reset Device (chip), Reset Bus and DMA Stop commands execute
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// immediately while all others are placed into the command FIFO
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switch (cmd & 0x7F) {
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case CMD_RESET_DEVICE:
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case CMD_RESET_BUS:
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case CMD_DMA_STOP:
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this->cmd_fifo_pos = 0; // put them at the bottom of the command FIFO
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}
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if (this->cmd_fifo_pos < 2) {
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// put new command into the command FIFO
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this->cmd_fifo[this->cmd_fifo_pos++] = cmd;
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if (this->cmd_fifo_pos == 1) {
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exec_command();
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}
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} else {
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LOG_F(ERROR, "SC53C94: the top of the command FIFO overwritten!");
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this->status |= 0x40; // signal IOE/Gross Error
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}
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}
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void Sc53C94::exec_command()
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{
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uint8_t cmd = this->cmd_fifo[0] & 0x7F;
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bool is_dma_cmd = !!(this->cmd_fifo[0] & 0x80);
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if (is_dma_cmd) {
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if (this->config2 & CFG2_ENF) { // extended mode: 24-bit
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this->xfer_count = this->set_xfer_count & 0xFFFFFFUL;
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} else { // standard mode: 16-bit
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this->xfer_count = this->set_xfer_count & 0xFFFFUL;
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}
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}
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// simple commands will be executed immediately
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// complex commands will be broken into multiple steps
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// and handled by the sequencer
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switch (cmd) {
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case CMD_NOP:
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this->on_reset = false; // unblock the command register
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exec_next_command();
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break;
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case CMD_CLEAR_FIFO:
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this->data_fifo_pos = 0; // set the bottom of the FIFO to zero
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this->data_fifo[0] = 0;
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exec_next_command();
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break;
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case CMD_RESET_DEVICE:
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reset_device();
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this->on_reset = true; // block the command register
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return;
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case CMD_RESET_BUS:
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LOG_F(INFO, "SC53C94: resetting SCSI bus...");
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// assert RST line
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this->bus_obj->assert_ctrl_line(this->my_bus_id, SCSI_CTRL_RST);
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// release RST line after 25 us
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my_timer_id = TimerManager::get_instance()->add_oneshot_timer(
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USECS_TO_NSECS(25),
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[this]() {
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this->bus_obj->release_ctrl_line(this->my_bus_id, SCSI_CTRL_RST);
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});
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if (!(config1 & 0x40)) {
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LOG_F(INFO, "SC53C94: reset interrupt issued");
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this->int_status |= INTSTAT_SRST;
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}
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exec_next_command();
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break;
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case CMD_SELECT_NO_ATN:
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static SeqDesc sel_no_atn_desc[] {
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{SeqState::SEL_BEGIN, 0, INTSTAT_DIS },
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{SeqState::CMD_BEGIN, 3, INTSTAT_SR | INTSTAT_SO},
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{SeqState::CMD_COMPLETE, 4, INTSTAT_SR | INTSTAT_SO},
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};
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this->seq_step = 0;
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this->cmd_steps = sel_no_atn_desc;
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this->cur_state = SeqState::BUS_FREE;
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sequencer();
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LOG_F(INFO, "SC53C94: SELECT W/O ATN command started");
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break;
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case CMD_ENA_SEL_RESEL:
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LOG_F(INFO, "SC53C94: ENABLE SELECTION/RESELECTION command executed");
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exec_next_command();
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break;
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default:
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LOG_F(ERROR, "SC53C94: invalid/unimplemented command 0x%X", cmd);
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this->cmd_fifo_pos--; // remove invalid command from FIFO
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this->int_status |= INTSTAT_ICMD;
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}
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}
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void Sc53C94::exec_next_command()
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{
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if (this->cmd_fifo_pos) { // skip empty command FIFO
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this->cmd_fifo_pos--; // remove completed command
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if (this->cmd_fifo_pos) { // is there another command in the FIFO?
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this->cmd_fifo[0] = this->cmd_fifo[1]; // top -> bottom
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exec_command(); // execute it
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}
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}
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}
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void Sc53C94::fifo_push(const uint8_t data)
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{
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if (this->data_fifo_pos < 16) {
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this->data_fifo[this->data_fifo_pos++] = data;
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} else {
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LOG_F(ERROR, "SC53C94: data FIFO overflow!");
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this->status |= 0x40; // signal IOE/Gross Error
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}
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}
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void Sc53C94::seq_defer_state(uint64_t delay_ns)
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{
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seq_timer_id = TimerManager::get_instance()->add_oneshot_timer(
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delay_ns,
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[this]() {
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// re-enter the sequencer with the state specified in next_state
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this->cur_state = this->next_state;
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this->sequencer();
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});
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}
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void Sc53C94::sequencer()
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{
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switch (this->cur_state) {
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case SeqState::IDLE:
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break;
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case SeqState::BUS_FREE:
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if (this->bus_obj->current_phase() == ScsiPhase::BUS_FREE) {
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this->next_state = SeqState::ARB_BEGIN;
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this->seq_defer_state(BUS_FREE_DELAY + BUS_SETTLE_DELAY);
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} else { // continue waiting
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this->next_state = SeqState::BUS_FREE;
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this->seq_defer_state(BUS_FREE_DELAY);
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}
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break;
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case SeqState::ARB_BEGIN:
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if (!this->bus_obj->begin_arbitration(this->my_bus_id)) {
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LOG_F(ERROR, "SC53C94: arbitration error, bus not free!");
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this->bus_obj->release_ctrl_lines(this->my_bus_id);
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this->next_state = SeqState::BUS_FREE;
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this->seq_defer_state(BUS_CLEAR_DELAY);
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break;
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}
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this->next_state = SeqState::ARB_END;
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this->seq_defer_state(ARB_DELAY);
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break;
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case SeqState::ARB_END:
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if (this->bus_obj->end_arbitration(this->my_bus_id)) { // arbitration won
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this->next_state = this->cmd_steps->next_step;
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this->seq_defer_state(BUS_CLEAR_DELAY + BUS_SETTLE_DELAY);
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} else { // arbitration lost
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LOG_F(INFO, "SC53C94: arbitration lost!");
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this->bus_obj->release_ctrl_lines(this->my_bus_id);
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this->next_state = SeqState::BUS_FREE;
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this->seq_defer_state(BUS_CLEAR_DELAY);
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}
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break;
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case SeqState::SEL_BEGIN:
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this->is_initiator = true;
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this->bus_obj->begin_selection(this->my_bus_id, this->target_id,
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this->cur_cmd != CMD_SELECT_NO_ATN);
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this->next_state = SeqState::SEL_END;
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this->seq_defer_state(SEL_TIME_OUT);
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break;
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case SeqState::SEL_END:
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if (this->bus_obj->end_selection(this->my_bus_id, this->target_id)) {
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LOG_F(INFO, "SC53C94: selection completed");
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this->cmd_steps++;
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} else { // selection timeout
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this->seq_step = this->cmd_steps->step_num;
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this->int_status |= this->cmd_steps->status;
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this->bus_obj->disconnect(this->my_bus_id);
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this->cur_state = SeqState::IDLE;
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this->update_irq();
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exec_next_command();
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}
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break;
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default:
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ABORT_F("SC53C94: unimplemented sequencer state %d", this->cur_state);
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}
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}
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void Sc53C94::update_irq()
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{
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uint8_t new_irq = !!(this->int_status != 0);
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if (new_irq != this->irq) {
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this->irq = new_irq;
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this->status = (this->status & 0x7F) | (new_irq << 7);
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this->int_ctrl->ack_int(this->irq_id, new_irq);
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}
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}
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void Sc53C94::notify(ScsiMsg msg_type, int param)
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{
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switch (msg_type) {
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case ScsiMsg::CONFIRM_SEL:
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if (this->target_id == param) {
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// cancel selection timeout timer
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TimerManager::get_instance()->cancel_timer(this->seq_timer_id);
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this->cur_state = SeqState::SEL_END;
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sequencer();
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} else {
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LOG_F(WARNING, "SC53C94: ignore invalid selection confirmation message");
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}
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break;
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default:
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LOG_F(WARNING, "SC53C94: ignore notification message, type: %d", msg_type);
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}
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}
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