2024-01-09 19:12:22 +00:00
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#ifndef __HQN_H__
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#define __HQN_H__
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2024-01-20 10:15:24 +00:00
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#include <Nes_Emu.hpp>
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2024-01-09 19:12:22 +00:00
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#include <cstdint>
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2024-01-11 18:44:54 +00:00
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#include <stdio.h>
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2024-01-09 19:12:22 +00:00
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#define BLIT_SIZE 65536
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namespace hqn
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{
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typedef const char *error_t;
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class HQNState;
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class HQNListener
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{
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public:
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HQNListener() = default;
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virtual ~HQNListener() = default;
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virtual void onLoadROM(HQNState *state, const char *filename) = 0;
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virtual void onAdvanceFrame(HQNState *state) = 0;
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virtual void onLoadState(HQNState *state) = 0;
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};
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/*
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State which is maintained by the emulator driver.
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This should normally be obtained using hqn_get_state() if you are in a lua
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function.
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*/
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class HQNState
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{
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public:
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/* A reference to the emulator instance. */
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Nes_Emu *m_emu;
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static const int32_t *NES_VIDEO_PALETTE;
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/**
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* Constructor.
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*/
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HQNState();
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~HQNState();
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2024-01-15 19:56:58 +00:00
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void setEmulatorPointer(void* const emuPtr) { m_emu = (Nes_Emu*)emuPtr; }
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2024-01-09 19:12:22 +00:00
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/*
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The joypad data for the two joypads available to an NES.
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This is directly available because I'm lazy.
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*/
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uint32_t joypad[2];
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/* Get the emulator this state uses. */
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inline Nes_Emu *emu() const
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{ return m_emu; }
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/*
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Advance the emulator by one frame. If sleep is true and there is a frame
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limit set advanceFrame() will sleep in order to limit the framerate.
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Returns NULL or error string.
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*/
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error_t advanceFrame(bool sleep=true);
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/*
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Save the game state. This can be restored at any time.
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*/
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error_t saveState(void *dest, size_t size, size_t *size_out);
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/*
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Get the size (bytes) of a savestate.
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Use this to allocate enough space for the saveState method.
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*/
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error_t saveStateSize(size_t *size) const;
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/*
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Load the emulator state from data.
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This should be data produced by saveState().
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*/
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error_t loadState(const char *data, size_t size);
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error_t setSampleRate(int rate);
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/**
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* Set a limit to the framerate.
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* 0 means no limit.
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*/
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void setFramerate(int fps);
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/**
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* Get the current framerate limit.
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*/
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int getFramerate() const;
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/**
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* Get the calculated frames per second.
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*/
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double getFPS() const;
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inline HQNListener *getListener() const
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{ return m_listener; }
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inline void setListener(HQNListener *l)
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{ m_listener = l; }
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/**
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* Get the state of the keyboard. Use this to update the keyboard state.
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*/
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inline uint8_t *getKeyboard()
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{ return m_keyboard; }
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private:
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/* ROM file stored in memory because reasons */
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uint8_t *m_romData;
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size_t m_romSize;
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/* Minimum milliseconds between each frame. */
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uint32_t m_msPerFrame;
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/* time value of previous frame. */
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uint32_t m_prevFrame;
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/* The listener */
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HQNListener *m_listener;
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/* Keyboard state */
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uint8_t m_keyboard[256];
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/* Number of frames we've processed */
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uint32_t m_frames;
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/* How long it took to process the previous frame */
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uint32_t m_frameTime;
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uint32_t m_initialFrame;
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};
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/*
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Print the usage message.
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@param filename used to specify the name of the exe file, may be NULL.
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*/
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void printUsage(const char *filename);
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} // end namespace hqn
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2024-01-11 18:44:54 +00:00
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// Copied from bizinterface.cpp in BizHawk/quicknes
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2024-01-15 19:56:58 +00:00
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inline void saveBlit(const void *ePtr, int32_t *dest, const int32_t *colors, int cropleft, int croptop, int cropright, int cropbottom)
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2024-01-11 18:44:54 +00:00
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{
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// what is the point of the 256 color bitmap and the dynamic color allocation to it?
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// why not just render directly to a 512 color bitmap with static palette positions?
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// Nes_Emu *e = m_emu; // e was a parameter but since this is now part of a class, it's just in here
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// const int srcpitch = e->frame().pitch;
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// const unsigned char *src = e->frame().pixels;
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// const unsigned char *const srcend = src + (e->image_height - cropbottom) * srcpitch;
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//
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// const short *lut = e->frame().palette;
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//
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// const int rowlen = 256 - cropleft - cropright;
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//
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// src += cropleft;
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// src += croptop * srcpitch;
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//
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// for (; src < srcend; src += srcpitch)
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// {
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// for (int i = 0; i < rowlen; i++)
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// {
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// *dest++ = colors[lut[src[i]]];
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// }
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// }
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2024-01-15 19:56:58 +00:00
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const Nes_Emu *e = (Nes_Emu*) ePtr;
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const unsigned char *in_pixels = e->frame().pixels;
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if (in_pixels == NULL) return;
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int32_t *out_pixels = dest;
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2024-01-15 19:56:58 +00:00
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2024-01-11 18:44:54 +00:00
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for (unsigned h = 0; h < Nes_Emu::image_height; h++, in_pixels += e->frame().pitch, out_pixels += Nes_Emu::image_width)
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for (unsigned w = 0; w < Nes_Emu::image_width; w++)
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{
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unsigned col = e->frame().palette[in_pixels[w]];
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const Nes_Emu::rgb_t& rgb = e->nes_colors[col];
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unsigned r = rgb.red;
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unsigned g = rgb.green;
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unsigned b = rgb.blue;
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out_pixels[w] = (r << 16) | (g << 8) | (b << 0);
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}
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}
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2024-01-09 19:12:22 +00:00
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#endif /* __HQN_H__ */
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