f65c4e66b8
- ne2k: replaced debugger command 'info ne2k' completely by a new version based on 'info device' with additional arguments and removed all of the now obsolete stuff (ne2k device stub, macro for print_info()) - pci: added option 'dump=full' for the debugger command 'info device' to show the whole PCI config space - TODO: some other devices could have support for additional options in debug_dump()
160 lines
5.7 KiB
C++
160 lines
5.7 KiB
C++
/////////////////////////////////////////////////////////////////////////
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// $Id$
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/////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2002-2012 The Bochs Project
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2 of the License, or (at your option) any later version.
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//
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// This library 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 GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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//
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#ifndef BX_IODEV_FLOPPY_H
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#define BX_IODEV_FLOPPY_H
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#define FROM_FLOPPY 10
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#define TO_FLOPPY 11
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#if BX_USE_FD_SMF
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# define BX_FD_SMF static
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# define BX_FD_THIS theFloppyController->
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#else
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# define BX_FD_SMF
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# define BX_FD_THIS this->
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#endif
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typedef struct {
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int fd; /* file descriptor of floppy image file */
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unsigned sectors_per_track; /* number of sectors/track */
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unsigned sectors; /* number of formatted sectors on diskette */
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unsigned tracks; /* number of tracks */
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unsigned heads; /* number of heads */
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unsigned type;
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unsigned write_protected;
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unsigned status_changed;
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bx_bool vvfat_floppy;
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device_image_t *vvfat;
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} floppy_t;
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class bx_floppy_ctrl_c : public bx_floppy_stub_c {
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public:
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bx_floppy_ctrl_c();
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virtual ~bx_floppy_ctrl_c();
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virtual void init(void);
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virtual void reset(unsigned type);
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virtual unsigned set_media_status(unsigned drive, bx_bool status);
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virtual void register_state(void);
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#if BX_DEBUGGER
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virtual void debug_dump(int argc, char **argv);
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#endif
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private:
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struct {
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Bit8u data_rate;
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Bit8u command[10]; /* largest command size ??? */
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Bit8u command_index;
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Bit8u command_size;
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bx_bool command_complete;
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Bit8u pending_command;
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bx_bool multi_track;
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bx_bool pending_irq;
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Bit8u reset_sensei;
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Bit8u format_count;
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Bit8u format_fillbyte;
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Bit8u result[10];
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Bit8u result_index;
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Bit8u result_size;
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Bit8u DOR; // Digital Ouput Register
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Bit8u TDR; // Tape Drive Register
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Bit8u cylinder[4]; // really only using 2 drives
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Bit8u head[4]; // really only using 2 drives
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Bit8u sector[4]; // really only using 2 drives
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Bit8u eot[4]; // really only using 2 drives
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bx_bool TC; // Terminal Count status from DMA controller
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/* MAIN STATUS REGISTER
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* b7: MRQ: main request 1=data register ready 0=data register not ready
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* b6: DIO: data input/output:
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* 1=controller->CPU (ready for data read)
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* 0=CPU->controller (ready for data write)
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* b5: NDMA: non-DMA mode: 1=controller not in DMA modes
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* 0=controller in DMA mode
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* b4: BUSY: instruction(device busy) 1=active 0=not active
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* b3-0: ACTD, ACTC, ACTB, ACTA:
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* drive D,C,B,A in positioning mode 1=active 0=not active
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*/
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Bit8u main_status_reg;
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Bit8u status_reg0;
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Bit8u status_reg1;
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Bit8u status_reg2;
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Bit8u status_reg3;
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// drive field allows up to 4 drives, even though probably only 2 will
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// ever be used.
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floppy_t media[4];
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unsigned num_supported_floppies;
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Bit8u floppy_buffer[512+2]; // 2 extra for good measure
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unsigned floppy_buffer_index;
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int floppy_timer_index;
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bx_bool media_present[4];
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Bit8u device_type[4];
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Bit8u DIR[4]; // Digital Input Register:
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// b7: 0=diskette is present and has not been changed
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// 1=diskette missing or changed
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bx_bool lock; // FDC lock status
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Bit8u SRT; // step rate time
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Bit8u HUT; // head unload time
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Bit8u HLT; // head load time
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Bit8u config; // configure byte #1
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Bit8u pretrk; // precompensation track
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Bit8u perp_mode; // perpendicular mode
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int statusbar_id[2]; // IDs of the status LEDs
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} s; // state information
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static Bit32u read_handler(void *this_ptr, Bit32u address, unsigned io_len);
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static void write_handler(void *this_ptr, Bit32u address, Bit32u value, unsigned io_len);
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#if !BX_USE_FD_SMF
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Bit32u read(Bit32u address, unsigned io_len);
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void write(Bit32u address, Bit32u value, unsigned io_len);
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#endif
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BX_FD_SMF void dma_write(Bit8u *data_byte);
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BX_FD_SMF void dma_read(Bit8u *data_byte);
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BX_FD_SMF void floppy_command(void);
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BX_FD_SMF void floppy_xfer(Bit8u drive, Bit32u offset, Bit8u *buffer, Bit32u bytes, Bit8u direction);
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BX_FD_SMF void raise_interrupt(void);
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BX_FD_SMF void lower_interrupt(void);
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BX_FD_SMF void enter_idle_phase(void);
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BX_FD_SMF void enter_result_phase(void);
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BX_FD_SMF Bit32u calculate_step_delay(Bit8u drive, Bit8u new_cylinder);
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BX_FD_SMF void reset_changeline(void);
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BX_FD_SMF bx_bool get_tc(void);
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static void timer_handler(void *);
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BX_FD_SMF void timer(void);
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BX_FD_SMF void increment_sector(void);
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BX_FD_SMF bx_bool evaluate_media(Bit8u devtype, Bit8u type, char *path, floppy_t *media);
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BX_FD_SMF void close_media(floppy_t *media);
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// runtime options
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static Bit64s floppy_param_handler(bx_param_c *param, int set, Bit64s val);
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static const char* floppy_param_string_handler(bx_param_string_c *param, int set, const char *oldval, const char *val, int maxlen);
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static void runtime_config_handler(void *);
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void runtime_config(void);
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};
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#endif
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