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The makefile now works for Linux and most Unix's. However, for Solaris and MacOS, you must first export the OSTYPE environment variable: > export OSTYPE > make Otherwise, you will get build errors. 1. New Features 1.1 3.9-0 1.1.1 SCP and libraries - added *nix READLINE support (Mark Pizzolato) - added "SHOW SHOW" and "SHOW <dev> SHOW" commands (Mark Pizzolato) - added support for BREAK key on Windows (Mark Pizzolato) 1.1.2 PDP-8 - floating point processor is now enabled 2. Bugs Fixed Please see the revision history on http://simh.trailing-edge.com or in the source module sim_rev.h. 3. Status Report This is the last release of SimH for which I will be sole editor. After this release, the source is moving to a public repository: under the general editorship of Dave Hittner and Mark Pizzolato. The status of the individual simulators is as follows: 3.1 PDP-1 Stable and working; runs available software. 3.2 PDP-4/7/9/15 Stable and working; runs available software. 3.3 PDP-8 Stable and working; runs available software. 3.4 PDP-10 [KS-10 only] Stable and working; runs available software. 3.5 PDP-11 Stable and working; runs available system software. The emulation of individual models has numerous errors of detail, which prevents many diagnostics from running correctly. 3.6 VAX-11/780 Stable and working; runs available software. 3.7 MicroVAX 3900 (VAX) Stable and working; runs available software. Thanks to the kind generosity of Camiel Vanderhoeven, this simulator has been verified with AXE, the VAX architectural exerciser. 3.8 Nova Stable and working; runs available software. 3.9 Eclipse Stable and working, but not really supported. There is no Eclipse-specific software available under a hobbyist license. 3.10 Interdata 16b Stable and working, but no software for it has been found, other than diagnostics. 3.11 Interdata 32b Stable and working; runs 32b UNIX and diagnostics. 3.12 IBM 1401 Stable and working; runs available software. 3.13 IBM 1620 Hand debug only. No software for it has been found or tested. 3.14 IBM 7094 Stable and working as a stock system; runs IBSYS. The CTSS extensions have not been debugged. 3.15 IBM S/3 Stable and working, but not really supported. Runs available software. 3.16 IBM 1130 Stable and working; runs available software. Supported and edited by Brian Knittel. 3.17 HP 2100/1000 Stable and working; runs available software. Supported and edited by Dave Bryan. 3.18 Honeywell 316/516 Stable and working; runs available software. 3.19 GRI-909/99 Hand debug only. No software for it has been found or tested. 3.20 SDS-940 Hand debug only, and a few diagnostics. 3.21 LGP-30 Unfinished; hand debug only. Does not run available software, probably due to my misunderstanding of the LGP-30 operational procedures. 3.22 Altair (original 8080 version) Stable and working, but not really supported. Runs available software. 3.23 AltairZ80 (Z80 version) Stable and working; runs available software. Supported and edited by Peter Schorn. 3.24 SWTP 6800 Stable and working; runs available software. Supported and edited by Bill Beech 3.25 Sigma 32b Incomplete; more work is needed on the peripherals for accuracy. 3.26 Alpha Incomplete; essentially just an EV-5 (21164) chip emulator. 4. Suggestions for Future Work 4.1 General Structure - Multi-threading, to allow true concurrency between SCP and the simulator - Graphics device support, particularly for the PDP-1 and PDP-11 4.2 Current Simulators - PDP-1 graphics, to run Space War - PDP-11 GT40 graphics, to run Lunar Lander - PDP-15 MUMPS-15 - Interdata native OS debug, both 16b and 32b - SDS 940 timesharing operating system debug - IBM 7094 CTSS feature debug and operating system debug - IBM 1620 debug and software - GRI-909 software - Sigma 32b completion and debug - LGP-30 debug 4.3 Possible Future Simulators - Data General MV8000 (if a hobbyist license can be obtained for AOS) - Alpha simulator - HP 3000 (16b) simulator with MPE
142 lines
5.4 KiB
C
142 lines
5.4 KiB
C
/* lgp_defs.h: LGP simulator definitions
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Copyright (c) 2004-2010, Robert M. Supnik
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Permission is hereby granted, free of charge, to any person obtaining a
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copy of this software and associated documentation files (the "Software"),
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to deal in the Software without restriction, including without limitation
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the rights to use, copy, modify, merge, publish, distribute, sublicense,
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and/or sell copies of the Software, and to permit persons to whom the
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Software is furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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ROBERT M SUPNIK BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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Except as contained in this notice, the name of Robert M Supnik shall not be
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be used in advertising or otherwise to promote the sale, use or other dealings
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in this Software without prior written authorization from Robert M Supnik.
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22-May-10 RMS Added check for 64b definitions
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*/
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#ifndef _LGP_DEFS_H_
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#define _LGP_DEFS_H_ 0
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#include "sim_defs.h" /* simulator defns */
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#if defined(USE_INT64) || defined(USE_ADDR64)
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#error "LGP-30 does not support 64b values!"
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#endif
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/* Simulator stop codes */
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#define STOP_STOP 1 /* STOP */
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#define STOP_IBKPT 2 /* breakpoint */
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#define STOP_OVF 3 /* overflow */
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#define STOP_NXDEV 4 /* non-existent device */
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#define STOP_STALL 5 /* IO stall */
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/* Memory */
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#define MEMSIZE 4096 /* memory size */
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#define AMASK 0xFFF /* addr mask */
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#define NTK_30 64
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#define NSC_30 64
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#define SCMASK_30 0x03F /* sector mask */
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#define NTK_21 32
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#define NSC_21 128
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#define SCMASK_21 0x07F
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#define RPM 4000 /* rev/minutes */
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#define WPS ((NSC_30 * RPM) / 60) /* words/second */
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/* Architectural constants */
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#define SIGN 0x80000000 /* sign */
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#define DMASK 0xFFFFFFFF /* data mask */
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#define MMASK 0xFFFFFFFE /* memory mask */
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/* Instruction format */
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#define I_M_OP 0xF /* opcode */
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#define I_V_OP 16
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#define I_OP (I_M_OP << I_V_OP)
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#define I_GETOP(x) (((x) >> I_V_OP) & I_M_OP)
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#define I_M_EA AMASK /* address */
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#define I_V_EA 2
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#define I_EA (I_M_EA << I_V_EA)
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#define I_GETEA(x) (((x) >> I_V_EA) & I_M_EA)
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#define I_M_TK 0x3F /* LGP-30 char */
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#define I_V_TK 8 /* LGP-21 device */
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#define I_GETTK(x) (((x) >> I_V_TK) & I_M_TK)
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/* Unit flags */
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#define UNIT_V_LGP21 (UNIT_V_UF + 0)
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#define UNIT_V_MANI (UNIT_V_UF + 1)
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#define UNIT_V_INPT (UNIT_V_UF + 2)
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#define UNIT_V_OUTPT (UNIT_V_UF + 3)
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#define UNIT_V_IN4B (UNIT_V_UF + 4)
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#define UNIT_V_TTSS_D (UNIT_V_UF + 5)
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#define UNIT_V_LGPH_D (UNIT_V_UF + 6)
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#define UNIT_V_FLEX_D (UNIT_V_UF + 7) /* Flex default */
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#define UNIT_V_FLEX (UNIT_V_UF + 8) /* Flex format */
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#define UNIT_V_NOCS (UNIT_V_UF + 9) /* ignore cond stop */
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#define UNIT_LGP21 (1u << UNIT_V_LGP21)
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#define UNIT_MANI (1u << UNIT_V_MANI)
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#define UNIT_INPT (1u << UNIT_V_INPT)
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#define UNIT_OUTPT (1u << UNIT_V_OUTPT)
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#define UNIT_IN4B (1u << UNIT_V_IN4B)
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#define UNIT_TTSS_D (1u << UNIT_V_TTSS_D)
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#define UNIT_LGPH_D (1u << UNIT_V_LGPH_D)
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#define UNIT_FLEX_D (1u << UNIT_V_FLEX_D)
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#define UNIT_FLEX (1u << UNIT_V_FLEX)
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#define UNIT_NOCS (1u << UNIT_V_NOCS)
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#define Q_LGP21 (cpu_unit.flags & UNIT_LGP21)
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#define Q_MANI (cpu_unit.flags & UNIT_MANI)
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#define Q_INPT (cpu_unit.flags & UNIT_INPT)
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#define Q_OUTPT (cpu_unit.flags & UNIT_OUTPT)
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#define Q_IN4B (cpu_unit.flags & UNIT_IN4B)
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/* IO return */
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#define IORETURN(f,v) ((f)? (v): SCPE_OK) /* stop on error */
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/* Significant characters */
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#define FLEX_LC 0x04
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#define FLEX_UC 0x08
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#define FLEX_CR 0x10
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#define FLEX_BS 0x14
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#define FLEX_CSTOP 0x20
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#define FLEX_DEL 0x3F
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/* LGP-21 device assignments */
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#define DEV_PT 0
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#define DEV_TT 2
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#define DEV_MASK 0x1F
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#define DEV_SHIFT 62
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/* Instructions */
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enum opcodes {
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OP_Z, OP_B, OP_Y, OP_R,
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OP_I, OP_D, OP_N, OP_M,
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OP_P, OP_E, OP_U, OP_T,
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OP_H, OP_C, OP_A, OP_S
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};
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/* Prototypes */
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uint32 Read (uint32 ea);
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void Write (uint32 ea, uint32 dat);
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#endif
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