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https://github.com/kanjitalk755/macemu.git
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zero_fd is not longer used since vm_alloc.cpp should handle that correctly.
However, vm_init() and vm_exit() are called in main_unix.cpp to ensure proper initialization of the internal zero_fd descriptor, if needed. i.e. no anonymous mapping for mmap()-based memory allocation.
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@ -34,8 +34,8 @@
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#endif
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// Variables for Video on SEGV support
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static uint8 *the_host_buffer; // Host frame buffer in VOSF mode
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static uint32 the_buffer_size; // Size of allocated the_buffer
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static uint8 *the_host_buffer; // Host frame buffer in VOSF mode
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static uint32 the_buffer_size; // Size of allocated the_buffer
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struct ScreenPageInfo {
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int top, bottom; // Mapping between this virtual page and Mac scanlines
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@ -131,8 +131,6 @@ static inline int find_next_page_clear(int page)
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#endif
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}
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static int zero_fd = -1;
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#ifdef HAVE_PTHREADS
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static pthread_mutex_t vosf_lock = PTHREAD_MUTEX_INITIALIZER; // Mutex to protect frame buffer (dirtyPages in fact)
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#define LOCK_VOSF pthread_mutex_lock(&vosf_lock);
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@ -153,6 +151,14 @@ static int log_base_2(uint32 x)
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return l;
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}
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// Extend size to page boundary
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static uint32 page_extend(uint32 size)
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{
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const uint32 page_size = getpagesize();
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const uint32 page_mask = page_size - 1;
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return (size + page_mask) & ~page_mask;
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}
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/*
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* Initialize mainBuffer structure
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@ -165,7 +171,7 @@ static bool video_init_buffer(void)
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const uint32 page_mask = page_size - 1;
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mainBuffer.memBase = (uintptr) the_buffer;
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// Align the frame buffer on page boundary
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// Round up frame buffer base to page boundary
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mainBuffer.memStart = (uintptr)((((unsigned long) the_buffer) + page_mask) & ~page_mask);
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mainBuffer.memLength = the_buffer_size;
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mainBuffer.memEnd = mainBuffer.memStart + mainBuffer.memLength;
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@ -195,7 +201,7 @@ static bool video_init_buffer(void)
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PFLAG_CLEAR_ALL;
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// Safety net to insure the loops in the update routines will terminate
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// See a discussion in <video_vosf.h> for further details
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// See "How can we deal with array overrun conditions ?" hereunder for further details
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PFLAG_CLEAR(mainBuffer.pageCount);
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PFLAG_SET(mainBuffer.pageCount+1);
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@ -226,25 +232,16 @@ static bool video_init_buffer(void)
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/*
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* Page-aligned memory allocation
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* Screen fault handler
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*/
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// Extend size to page boundary
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static uint32 page_extend(uint32 size)
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{
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const uint32 page_size = getpagesize();
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const uint32 page_mask = page_size - 1;
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return (size + page_mask) & ~page_mask;
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}
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// Screen fault handler
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static bool screen_fault_handler(sigsegv_address_t fault_address, sigsegv_address_t fault_instruction)
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{
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D(bug("screen_fault_handler: ADDR=0x%08X from IP=0x%08X\n", fault_address, fault_instruction));
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const uintptr addr = (uintptr)fault_address;
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/* Someone attempted to write to the frame buffer. Make it writeable
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* now so that the data could actually be written. It will be made
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* now so that the data could actually be written to. It will be made
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* read-only back in one of the screen update_*() functions.
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*/
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if ((addr >= mainBuffer.memStart) && (addr < mainBuffer.memEnd)) {
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@ -276,6 +273,7 @@ static bool screen_fault_handler(sigsegv_address_t fault_address, sigsegv_addres
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return false;
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}
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/*
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* Update display for Windowed mode and VOSF
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*/
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@ -364,14 +362,13 @@ static inline void update_display_window_vosf(void)
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else
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XPutImage(x_display, the_win, the_gc, img, 0, y1, 0, y1, VideoMonitor.mode.x, height);
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}
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mainBuffer.dirty = false;
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}
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/*
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* Update display for DGA mode and VOSF
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* (only in Direct Addressing mode)
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* (only in Real or Direct Addressing mode)
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*/
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#if REAL_ADDRESSING || DIRECT_ADDRESSING
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@ -803,15 +803,6 @@ bool VideoInit(bool classic)
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classic_mode = classic;
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#ifdef ENABLE_VOSF
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// Open /dev/zero
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zero_fd = open("/dev/zero", O_RDWR);
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if (zero_fd < 0) {
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char str[256];
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sprintf(str, GetString(STR_NO_DEV_ZERO_ERR), strerror(errno));
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ErrorAlert(str);
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return false;
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}
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// Zero the mainBuffer structure
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mainBuffer.dirtyPages = 0;
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mainBuffer.pageInfo = 0;
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@ -1083,12 +1074,6 @@ static void video_close(void)
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void VideoExit(void)
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{
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video_close();
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#ifdef ENABLE_VOSF
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// Close /dev/zero
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if (zero_fd > 0)
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close(zero_fd);
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#endif
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}
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