Computer Hardware User Manual
Table Of Contents
- Contents
- List of Figures
- List of Tables
- About This Manual
- Programming Issues
- Introduction
- Programming Interfaces
- Functional Description
- Memory Maps
- Interrupt Handling
- Cache Coherency (MVME167P)
- Cache Coherency (MVME177P)
- Using Bus Timers
- Indivisible Cycles
- Supervisor Stack Pointer (MC68060)
- Sources of Local Bus Errors
- Error Conditions
- MPU Parity Error
- MPU Offboard Error
- MPU TEA - Cause Unidentified
- MPU Local Bus Time-out
- DMAC VMEbus Error
- DMAC Parity Error
- DMAC Offboard Error
- DMAC LTO Error
- DMAC TEA - Cause Unidentified
- SCC Retry Error
- SCC Parity Error
- SCC Offboard Error
- SCC LTO Error
- LAN Parity Error
- LAN Offboard Error
- LAN LTO Error
- SCSI Parity Error
- SCSI Offboard Error
- SCSI LTO Error
- VMEchip2
- Introduction
- Functional Blocks
- LCSR Programming Model
- Programming the VMEbus Slave Map Decoders
- VMEbus Slave Ending Address Register 1
- VMEbus Slave Starting Address Register 1
- VMEbus Slave Ending Address Register 2
- VMEbus Slave Starting Address Register 2
- VMEbus Slave Address Translation Address Offset Register 1
- VMEbus Slave Address Translation Select Register 1
- VMEbus Slave Address Translation Address Offset Register 2
- VMEbus Slave Address Translation Select Register 2
- VMEbus Slave Write Post and Snoop Control Register 2
- VMEbus Slave Address Modifier Select Register 2
- VMEbus Slave Write Post and Snoop Control Register 1
- VMEbus Slave Address Modifier Select Register 1
- Programming the Local-Bus-to-VMEbus Map Decoders
- Local Bus Slave (VMEbus Master) Ending Address Register 1
- Local Bus Slave (VMEbus Master) Starting Address Register 1
- Local Bus Slave (VMEbus Master) Ending Address Register 2
- Local Bus Slave (VMEbus Master) Starting Address Register 2
- Local Bus Slave (VMEbus Master) Ending Address Register 3
- Local Bus Slave (VMEbus Master) Starting Address Register 3
- Local Bus Slave (VMEbus Master) Ending Address Register 4
- Local Bus Slave (VMEbus Master) Starting Address Register 4
- Local Bus Slave (VMEbus Master) Address Translation Address Register 4
- Local Bus Slave (VMEbus Master) Address Translation Select Register 4
- Local Bus Slave (VMEbus Master) Attribute Register 4
- Local Bus Slave (VMEbus Master) Attribute Register 3
- Local Bus Slave (VMEbus Master) Attribute Register 2
- Local Bus Slave (VMEbus Master) Attribute Register 1
- VMEbus Slave GCSR Group Address Register
- VMEbus Slave GCSR Board Address Register
- Local-Bus-to-VMEbus Enable Control Register
- Local-Bus-to-VMEbus I/O Control Register
- ROM Control Register
- Programming the VMEchip2 DMA Controller
- DMAC Registers
- EPROM Decoder, SRAM and DMA Control Register
- Local-Bus-to-VMEbus Requester Control Register
- DMAC Control Register 1 (bits 07)
- DMAC Control Register 2 (bits 815)
- DMAC Control Register 2 (bits 07)
- DMAC Local Bus Address Counter
- DMAC VMEbus Address Counter
- DMAC Byte Counter
- Table Address Counter
- VMEbus Interrupter Control Register
- VMEbus Interrupter Vector Register
- MPU Status and DMA Interrupt Count Register
- DMAC Status Register
- Programming the Tick and Watchdog Timers
- VMEbus Arbiter Time-Out Control Register
- DMAC Ton/Toff Timers and VMEbus Global Time-out Control Register
- VME Access, Local Bus, and Watchdog Time-out Control Register
- Prescaler Control Register
- Tick Timer 1 Compare Register
- Tick Timer 1 Counter
- Tick Timer 2 Compare Register
- Tick Timer 2 Counter
- Board Control Register
- Watchdog Timer Control Register
- Tick Timer 2 Control Register
- Tick Timer 1 Control Register
- Prescaler Counter
- Programming the Local Bus Interrupter
- Local Bus Interrupter Status Register (bits 2431)
- Local Bus Interrupter Status Register (bits 1623)
- Local Bus Interrupter Status Register (bits 815)
- Local Bus Interrupter Status Register (bits 07)
- Local Bus Interrupter Enable Register (bits 2431)
- Local Bus Interrupter Enable Register (bits 1623)
- Local Bus Interrupter Enable Register (bits 815)
- Local Bus Interrupter Enable Register (bits 07)
- Software Interrupt Set Register (bits 815)
- Interrupt Clear Register (bits 2431)
- Interrupt Clear Register (bits 1623)
- Interrupt Clear Register (bits 815)
- Interrupt Level Register 1 (bits 2431)
- Interrupt Level Register 1 (bits 1623)
- Interrupt Level Register 1 (bits 815)
- Interrupt Level Register 1 (bits 07)
- Interrupt Level Register 2 (bits 2431)
- Interrupt Level Register 2 (bits 1623)
- Interrupt Level Register 2 (bits 815)
- Interrupt Level Register 2 (bits 07)
- Interrupt Level Register 3 (bits 2431)
- Interrupt Level Register 3 (bits 1623)
- Interrupt Level Register 3 (bits 815)
- Interrupt Level Register 3 (bits 07)
- Interrupt Level Register 4 (bits 2431)
- Interrupt Level Register 4 (bits 1623)
- Interrupt Level Register 4 (bits 815)
- Interrupt Level Register 4 (bits 07)
- Vector Base Register
- I/O Control Register 1
- I/O Control Register 2
- I/O Control Register 3
- Miscellaneous Control Register
- Programming the VMEbus Slave Map Decoders
- GCSR Programming Model
- PCCchip2
- Introduction
- Functional Description
- Overall Memory Map
- Programming Model
- Chip ID Register
- Chip Revision Register
- General Control Register
- Vector Base Register
- Programming the Tick Timers
- Tick Timer 1 Compare Register
- Tick Timer 1 Counter
- Tick Timer 2 Compare Register
- Tick Timer 2 Counter
- Prescaler Count Register
- Prescaler Clock Adjust Register
- Tick Timer 2 Control Register
- Tick Timer 1 Control Register
- General Purpose Input Interrupt Control Register
- General Purpose Input/Output Pin Control Register
- Tick Timer 2 Interrupt Control Register
- Tick Timer 1 Interrupt Control Register
- SCC Error Status and Interrupt Control Registers
- LANC Error Status and Interrupt Control Registers
- Programming the SCSI Error Status and Interrupt Registers
- Programming the Printer Port
- Printer ACK Interrupt Control Register
- Printer FAULT Interrupt Control Register
- Printer SEL Interrupt Control Register
- Printer PE Interrupt Control Register
- Printer BUSY Interrupt Control Register
- Printer Input Status Register
- Printer Port Control Register
- Chip Speed Register
- Printer Data Register
- Interrupt Priority Level Register
- Interrupt Mask Level Register
- MCECC Functions
- Introduction
- Features
- Functional Description
- General Description
- Performance
- Cache Coherency
- ECC
- Cycle Types
- Error Reporting
- Single Bit Error (Cycle Type = Burst Read or Non-Burst Read)
- Double Bit Error (Cycle Type = Burst Read or Non-Burst Read)
- Triple (or Greater) Bit Error (Cycle Type = Burst Read or Non-Burst Read)
- Cycle Type = Burst Write
- Single Bit Error (Cycle Type = Non-Burst Write)
- Double Bit Error (Cycle Type = Non-Burst Write)
- Triple (or Greater) Bit Error (Cycle Type = Non-Burst Write)
- Single Bit Error (Cycle Type = Scrub)
- Double Bit Error (Cycle Type = Scrub)
- Triple (or Greater) Bit Error (Cycle Type = Scrub)
- Error Logging
- Scrub
- Refresh
- Arbitration
- Chip Defaults
- Programming Model
- Chip ID Register
- Chip Revision Register
- Memory Configuration Register
- Base Address Register
- DRAM Control Register
- BCLK Frequency Register
- Data Control Register
- Scrub Control Register
- Scrub Period Register Bits 15-8
- Scrub Period Register Bits 7-0
- Chip Prescaler Counter
- Scrub Time On/Time Off Register
- Scrub Prescaler Counter (Bits 21-16)
- Scrub Prescaler Counter (Bits 15-8)
- Scrub Prescaler Counter (Bits 7-0)
- Scrub Timer Counter (Bits 15-8)
- Scrub Timer Counter (Bits 7-0)
- Scrub Address Counter (Bits 26-24)
- Scrub Address Counter (Bits 23-16)
- Scrub Address Counter (Bits 15-8)
- Scrub Address Counter (Bits 7-4)
- Error Logger Register
- Error Address (Bits 31-24)
- Error Address (Bits 23-16)
- Error Address (Bits 15-8)
- Error Address (Bits 7-4)
- Error Syndrome Register
- Defaults Register 1
- Defaults Register 2
- SDRAM Configuration Register
- Initialization
- Syndrome Decoding
- Summary of Changes
- Printer and Serial Port Connections
- Related Documentation
- Index

Functional Blocks
http://www.motorola.com/computer/literature 2-15
2
Tick Timers
The VMEchip2 includes two general-purpose tick timers. These timers can
be used to generate interrupts at various rates or the counters can be read
at various times for interval timing. The timers have a resolution of 1 µs.
When free running, they roll over every 71.6 minutes.
Each tick timer has a 32-bit counter, a 32-bit compare register, a 4-bit
overflow register, an enable bit, an overflow clear bit, and a
clear-on-compare enable bit. The counter is readable and writable at any
time. When enabled in free-run mode, it increments every 1µs. When the
counter is enabled in clear-on-compare mode, it increments every 1µs until
the counter value matches the value in the compare register. When a match
occurs, the counter is cleared. When a match occurs, in either mode, an
interrupt is sent to the local bus interrupter and the overflow counter is
incremented. An interrupt to the local bus is only generated if the tick timer
interrupt is enabled by the local bus interrupter. The overflow counter can
be cleared by writing a 1 to the overflow clear bit.
Tick timer 1 or 2 can be programmed to generate a pulse on the VMEbus
IRQ1 interrupt line at the tick timer period. This provides a broadcast
interrupt function which allows several VME boards to receive an interrupt
at the same time. In certain applications, this interrupt can be used to
synchronize multiple processors. This interrupt is not acknowledged on the
VMEbus. This mode is intended for specific applications and is not
defined in the VMEbus specification.
Watchdog Timer
The watchdog timer has a 4-bit counter, four clock select bits, an enable
bit, a local reset enable bit, a SYSRESET enable bit, a board fail enable bit,
counter reset bit, WDTO status bit, and WDTO status reset bit.
When enabled, the counter increments at a rate determined by the clock
select bits. If the counter is not reset by software, the counter reaches its
terminal count. When this occurs, the WDTO status bit is set; and if the
local or SYSRESET function is enabled, the selected reset is generated; if
the board fail function is enabled, the board fail signal is generated.