Browse code

Update snes9x code from 1.53 to 1.6.0.

Notable differences from upstream:
* Did not use the same #include setup for the new byuu apu and instead chose to do things more traditionally, as the latter is also much easier to deal with in Visual Studio than just including .cpp files into other .cpp files...
* MSU1 support not included (I see no need for this in a plugin meant to be used for original SNES music).
* The dynamic rate control on the APU not included (I also see no need for it in this plugin).
* The extra resamplers I added in were removed as the original hermite resampler was folded into a single non-inhertiable resampler.
* Bits of cleanup.

Naram Qashat authored on 2021/04/19 21:20:36
Showing 1 changed files
1 1
deleted file mode 100644
... ...
@@ -1,100 +0,0 @@
1
-/* Simple fixed-point linear resampler by BearOso*/
2
-
3
-#pragma once
4
-
5
-#include "resampler.h"
6
-#include "XSFCommon.h"
7
-
8
-class LinearResampler : public Resampler
9
-{
10
-	static const int f_prec = 15;
11
-	static const uint32_t f__one = 1 << f_prec;
12
-
13
-protected:
14
-	uint32_t f__r_step;
15
-	uint32_t f__inv_r_step;
16
-	uint32_t f__r_frac;
17
-	int r_left, r_right;
18
-
19
-	static short lerp(uint32_t t, int a, short b) { return (((b - a) * t) >> f_prec) + a; }
20
-
21
-public:
22
-	LinearResampler(int num_samples) : Resampler(num_samples)
23
-	{
24
-		this->f__r_frac = 0;
25
-	}
26
-
27
-	void time_ratio(double ratio)
28
-	{
29
-		if (fEqual(ratio, 0.0))
30
-			ratio = 1.0;
31
-		this->f__r_step = static_cast<uint32_t>(ratio * f__one);
32
-		this->f__inv_r_step = static_cast<uint32_t>(f__one / ratio);
33
-		this->clear();
34
-	}
35
-
36
-	void clear()
37
-	{
38
-		ring_buffer::clear();
39
-		this->f__r_frac = 0;
40
-		this->r_left = 0;
41
-		this->r_right = 0;
42
-	}
43
-
44
-	void read(short *data, int num_samples)
45
-	{
46
-		int i_position = this->start >> 1;
47
-		short *internal_buffer = reinterpret_cast<short *>(&this->buffer[0]);
48
-		int o_position = 0;
49
-		int consumed = 0;
50
-		int max_samples = this->buffer_size >> 1;
51
-
52
-		while (o_position < num_samples && consumed < this->buffer_size)
53
-		{
54
-			if (this->f__r_step == f__one)
55
-			{
56
-				data[o_position] = internal_buffer[i_position];
57
-				data[o_position + 1] = internal_buffer[i_position + 1];
58
-
59
-				o_position += 2;
60
-				i_position += 2;
61
-				if (i_position >= max_samples)
62
-					i_position -= max_samples;
63
-				consumed += 2;
64
-
65
-				continue;
66
-			}
67
-
68
-			while (this->f__r_frac <= f__one && o_position < num_samples)
69
-			{
70
-				data[o_position] = lerp(this->f__r_frac, this->r_left, internal_buffer[i_position]);
71
-				data[o_position + 1] = lerp(this->f__r_frac, this->r_right, internal_buffer[i_position + 1]);
72
-
73
-				o_position += 2;
74
-
75
-				this->f__r_frac += this->f__r_step;
76
-			}
77
-
78
-			if (this->f__r_frac > f__one)
79
-			{
80
-				this->f__r_frac -= f__one;
81
-				this->r_left = internal_buffer[i_position];
82
-				this->r_right = internal_buffer[i_position + 1];
83
-				i_position += 2;
84
-				if (i_position >= max_samples)
85
-					i_position -= max_samples;
86
-				consumed += 2;
87
-			}
88
-		}
89
-
90
-		this->size -= consumed << 1;
91
-		this->start += consumed << 1;
92
-		if (this->start >= this->buffer_size)
93
-			this->start -= this->buffer_size;
94
-	}
95
-
96
-	int avail()
97
-	{
98
-		return (((this->size >> 2) * this->f__inv_r_step) - ((this->f__r_frac * this->f__inv_r_step) >> f_prec)) >> (f_prec - 1);
99
-	}
100
-};
Browse code

* Fixes for gcc and clang (while they can compile the code, the DLLs made aren't functional, but oh well).

* [2SF] Used more up-to-date asmjit, despite the ugly looking code.

Naram Qashat authored on 2014/09/17 19:51:45
Showing 1 changed files
... ...
@@ -3,12 +3,13 @@
3 3
 #pragma once
4 4
 
5 5
 #include "resampler.h"
6
-
7
-const int f_prec = 15;
8
-const uint32_t f__one = 1 << f_prec;
6
+#include "XSFCommon.h"
9 7
 
10 8
 class LinearResampler : public Resampler
11 9
 {
10
+	static const int f_prec = 15;
11
+	static const uint32_t f__one = 1 << f_prec;
12
+
12 13
 protected:
13 14
 	uint32_t f__r_step;
14 15
 	uint32_t f__inv_r_step;
... ...
@@ -25,7 +26,7 @@ public:
25 26
 
26 27
 	void time_ratio(double ratio)
27 28
 	{
28
-		if (!ratio)
29
+		if (fEqual(ratio, 0.0))
29 30
 			ratio = 1.0;
30 31
 		this->f__r_step = static_cast<uint32_t>(ratio * f__one);
31 32
 		this->f__inv_r_step = static_cast<uint32_t>(f__one / ratio);
... ...
@@ -43,7 +44,7 @@ public:
43 44
 	void read(short *data, int num_samples)
44 45
 	{
45 46
 		int i_position = this->start >> 1;
46
-		short *internal_buffer = reinterpret_cast<short *>(this->buffer);
47
+		short *internal_buffer = reinterpret_cast<short *>(&this->buffer[0]);
47 48
 		int o_position = 0;
48 49
 		int consumed = 0;
49 50
 		int max_samples = this->buffer_size >> 1;
Browse code

A few more cases of using #pragma once instead of include guards.

Naram Qashat authored on 2014/09/08 14:51:19
Showing 1 changed files
... ...
@@ -1,7 +1,6 @@
1 1
 /* Simple fixed-point linear resampler by BearOso*/
2 2
 
3
-#ifndef __LINEAR_RESAMPLER_H
4
-#define __LINEAR_RESAMPLER_H
3
+#pragma once
5 4
 
6 5
 #include "resampler.h"
7 6
 
... ...
@@ -98,5 +97,3 @@ public:
98 97
 		return (((this->size >> 2) * this->f__inv_r_step) - ((this->f__r_frac * this->f__inv_r_step) >> f_prec)) >> (f_prec - 1);
99 98
 	}
100 99
 };
101
-
102
-#endif /* __LINEAR_RESAMPLER_H */
Browse code

[SNSF] Massive code cleanup, as well as removing as much unused code/variables as possible.

Naram Qashat authored on 2013/05/23 06:02:16
Showing 1 changed files
... ...
@@ -4,112 +4,99 @@
4 4
 #define __LINEAR_RESAMPLER_H
5 5
 
6 6
 #include "resampler.h"
7
-#include "../snes9x.h"
8 7
 
9
-static const int    f_prec = 15;
10
-static const uint32_t f__one = (1 << f_prec);
11
-
12
-#define lerp(t, a, b) (((((b) - (a)) * (t)) >> f_prec) + (a))
8
+const int f_prec = 15;
9
+const uint32_t f__one = 1 << f_prec;
13 10
 
14 11
 class LinearResampler : public Resampler
15 12
 {
16
-    protected:
17
-        uint32_t f__r_step;
18
-        uint32_t f__inv_r_step;
19
-        uint32_t f__r_frac;
20
-        int    r_left, r_right;
21
-
22
-    public:
23
-        LinearResampler (int num_samples) : Resampler (num_samples)
24
-        {
25
-            f__r_frac = 0;
26
-        }
27
-
28
-        ~LinearResampler ()
29
-        {
30
-        }
31
-
32
-        void
33
-        time_ratio (double ratio)
34
-        {
35
-            if (ratio == 0.0)
36
-                ratio = 1.0;
37
-            f__r_step = (uint32_t) (ratio * f__one);
38
-            f__inv_r_step = (uint32_t) (f__one / ratio);
39
-            clear ();
40
-        }
41
-
42
-        void
43
-        clear()
44
-        {
45
-            ring_buffer::clear ();
46
-            f__r_frac = 0;
47
-            r_left = 0;
48
-            r_right = 0;
49
-        }
50
-
51
-        void
52
-        read (short *data, int num_samples)
53
-        {
54
-            int i_position = start >> 1;
55
-            short *internal_buffer = (short *) buffer;
56
-            int o_position = 0;
57
-            int consumed = 0;
58
-            int max_samples = (buffer_size >> 1);
59
-
60
-            while (o_position < num_samples && consumed < buffer_size)
61
-            {
62
-                if (f__r_step == f__one)
63
-                {
64
-                    data[o_position] = internal_buffer[i_position];
65
-                    data[o_position + 1] = internal_buffer[i_position + 1];
66
-
67
-                    o_position += 2;
68
-                    i_position += 2;
69
-                    if (i_position >= max_samples)
70
-                        i_position -= max_samples;
71
-                    consumed += 2;
72
-
73
-                    continue;
74
-                }
75
-
76
-                while (f__r_frac <= f__one  && o_position < num_samples)
77
-                {
78
-                    data[o_position]     = lerp (f__r_frac,
79
-                                                 r_left,
80
-                                                 internal_buffer[i_position]);
81
-                    data[o_position + 1] = lerp (f__r_frac,
82
-                                                 r_right,
83
-                                                 internal_buffer[i_position + 1]);
84
-
85
-                    o_position += 2;
86
-
87
-                    f__r_frac += f__r_step;
88
-                }
89
-
90
-                if (f__r_frac > f__one)
91
-                {
92
-                    f__r_frac -= f__one;
93
-                    r_left = internal_buffer[i_position];
94
-                    r_right = internal_buffer[i_position + 1];
95
-                    i_position += 2;
96
-                    if (i_position >= max_samples)
97
-                        i_position -= max_samples;
98
-                    consumed += 2;
99
-                }
100
-            }
101
-
102
-            size -= consumed << 1;
103
-            start += consumed << 1;
104
-            if (start >= buffer_size)
105
-                start -= buffer_size;
106
-        }
107
-
108
-        inline int
109
-        avail()
110
-        {
111
-            return (((size >> 2) * f__inv_r_step) - ((f__r_frac * f__inv_r_step) >> f_prec)) >> (f_prec - 1);
112
-        }
13
+protected:
14
+	uint32_t f__r_step;
15
+	uint32_t f__inv_r_step;
16
+	uint32_t f__r_frac;
17
+	int r_left, r_right;
18
+
19
+	static short lerp(uint32_t t, int a, short b) { return (((b - a) * t) >> f_prec) + a; }
20
+
21
+public:
22
+	LinearResampler(int num_samples) : Resampler(num_samples)
23
+	{
24
+		this->f__r_frac = 0;
25
+	}
26
+
27
+	void time_ratio(double ratio)
28
+	{
29
+		if (!ratio)
30
+			ratio = 1.0;
31
+		this->f__r_step = static_cast<uint32_t>(ratio * f__one);
32
+		this->f__inv_r_step = static_cast<uint32_t>(f__one / ratio);
33
+		this->clear();
34
+	}
35
+
36
+	void clear()
37
+	{
38
+		ring_buffer::clear();
39
+		this->f__r_frac = 0;
40
+		this->r_left = 0;
41
+		this->r_right = 0;
42
+	}
43
+
44
+	void read(short *data, int num_samples)
45
+	{
46
+		int i_position = this->start >> 1;
47
+		short *internal_buffer = reinterpret_cast<short *>(this->buffer);
48
+		int o_position = 0;
49
+		int consumed = 0;
50
+		int max_samples = this->buffer_size >> 1;
51
+
52
+		while (o_position < num_samples && consumed < this->buffer_size)
53
+		{
54
+			if (this->f__r_step == f__one)
55
+			{
56
+				data[o_position] = internal_buffer[i_position];
57
+				data[o_position + 1] = internal_buffer[i_position + 1];
58
+
59
+				o_position += 2;
60
+				i_position += 2;
61
+				if (i_position >= max_samples)
62
+					i_position -= max_samples;
63
+				consumed += 2;
64
+
65
+				continue;
66
+			}
67
+
68
+			while (this->f__r_frac <= f__one && o_position < num_samples)
69
+			{
70
+				data[o_position] = lerp(this->f__r_frac, this->r_left, internal_buffer[i_position]);
71
+				data[o_position + 1] = lerp(this->f__r_frac, this->r_right, internal_buffer[i_position + 1]);
72
+
73
+				o_position += 2;
74
+
75
+				this->f__r_frac += this->f__r_step;
76
+			}
77
+
78
+			if (this->f__r_frac > f__one)
79
+			{
80
+				this->f__r_frac -= f__one;
81
+				this->r_left = internal_buffer[i_position];
82
+				this->r_right = internal_buffer[i_position + 1];
83
+				i_position += 2;
84
+				if (i_position >= max_samples)
85
+					i_position -= max_samples;
86
+				consumed += 2;
87
+			}
88
+		}
89
+
90
+		this->size -= consumed << 1;
91
+		this->start += consumed << 1;
92
+		if (this->start >= this->buffer_size)
93
+			this->start -= this->buffer_size;
94
+	}
95
+
96
+	int avail()
97
+	{
98
+		return (((this->size >> 2) * this->f__inv_r_step) - ((this->f__r_frac * this->f__inv_r_step) >> f_prec)) >> (f_prec - 1);
99
+	}
113 100
 };
114 101
 
115 102
 #endif /* __LINEAR_RESAMPLER_H */
Browse code

Cleanup of some warnings, updating modification dates, using nullptr instead of NULL in some cases.

Naram Qashat authored on 2013/03/30 16:17:42
Showing 1 changed files
... ...
@@ -4,7 +4,7 @@
4 4
 #define __LINEAR_RESAMPLER_H
5 5
 
6 6
 #include "resampler.h"
7
-#include "snes9x.h"
7
+#include "../snes9x.h"
8 8
 
9 9
 static const int    f_prec = 15;
10 10
 static const uint32_t f__one = (1 << f_prec);
Browse code

Import actual code.

Naram Qashat authored on 2013/03/26 02:41:19
Showing 1 changed files
1 1
new file mode 100644
... ...
@@ -0,0 +1,115 @@
1
+/* Simple fixed-point linear resampler by BearOso*/
2
+
3
+#ifndef __LINEAR_RESAMPLER_H
4
+#define __LINEAR_RESAMPLER_H
5
+
6
+#include "resampler.h"
7
+#include "snes9x.h"
8
+
9
+static const int    f_prec = 15;
10
+static const uint32_t f__one = (1 << f_prec);
11
+
12
+#define lerp(t, a, b) (((((b) - (a)) * (t)) >> f_prec) + (a))
13
+
14
+class LinearResampler : public Resampler
15
+{
16
+    protected:
17
+        uint32_t f__r_step;
18
+        uint32_t f__inv_r_step;
19
+        uint32_t f__r_frac;
20
+        int    r_left, r_right;
21
+
22
+    public:
23
+        LinearResampler (int num_samples) : Resampler (num_samples)
24
+        {
25
+            f__r_frac = 0;
26
+        }
27
+
28
+        ~LinearResampler ()
29
+        {
30
+        }
31
+
32
+        void
33
+        time_ratio (double ratio)
34
+        {
35
+            if (ratio == 0.0)
36
+                ratio = 1.0;
37
+            f__r_step = (uint32_t) (ratio * f__one);
38
+            f__inv_r_step = (uint32_t) (f__one / ratio);
39
+            clear ();
40
+        }
41
+
42
+        void
43
+        clear()
44
+        {
45
+            ring_buffer::clear ();
46
+            f__r_frac = 0;
47
+            r_left = 0;
48
+            r_right = 0;
49
+        }
50
+
51
+        void
52
+        read (short *data, int num_samples)
53
+        {
54
+            int i_position = start >> 1;
55
+            short *internal_buffer = (short *) buffer;
56
+            int o_position = 0;
57
+            int consumed = 0;
58
+            int max_samples = (buffer_size >> 1);
59
+
60
+            while (o_position < num_samples && consumed < buffer_size)
61
+            {
62
+                if (f__r_step == f__one)
63
+                {
64
+                    data[o_position] = internal_buffer[i_position];
65
+                    data[o_position + 1] = internal_buffer[i_position + 1];
66
+
67
+                    o_position += 2;
68
+                    i_position += 2;
69
+                    if (i_position >= max_samples)
70
+                        i_position -= max_samples;
71
+                    consumed += 2;
72
+
73
+                    continue;
74
+                }
75
+
76
+                while (f__r_frac <= f__one  && o_position < num_samples)
77
+                {
78
+                    data[o_position]     = lerp (f__r_frac,
79
+                                                 r_left,
80
+                                                 internal_buffer[i_position]);
81
+                    data[o_position + 1] = lerp (f__r_frac,
82
+                                                 r_right,
83
+                                                 internal_buffer[i_position + 1]);
84
+
85
+                    o_position += 2;
86
+
87
+                    f__r_frac += f__r_step;
88
+                }
89
+
90
+                if (f__r_frac > f__one)
91
+                {
92
+                    f__r_frac -= f__one;
93
+                    r_left = internal_buffer[i_position];
94
+                    r_right = internal_buffer[i_position + 1];
95
+                    i_position += 2;
96
+                    if (i_position >= max_samples)
97
+                        i_position -= max_samples;
98
+                    consumed += 2;
99
+                }
100
+            }
101
+
102
+            size -= consumed << 1;
103
+            start += consumed << 1;
104
+            if (start >= buffer_size)
105
+                start -= buffer_size;
106
+        }
107
+
108
+        inline int
109
+        avail()
110
+        {
111
+            return (((size >> 2) * f__inv_r_step) - ((f__r_frac * f__inv_r_step) >> f_prec)) >> (f_prec - 1);
112
+        }
113
+};
114
+
115
+#endif /* __LINEAR_RESAMPLER_H */