1use sva_ast::{FINITE_DIFFERENCE, MODAL};
4
5#[derive(Clone, Copy, Debug, PartialEq, Eq)]
7pub struct Meaning {
8 pub text: &'static str,
9 pub unit: &'static str,
10 pub part: Option<&'static str>,
11}
12
13const fn m(text: &'static str, unit: &'static str, part: &'static str) -> Meaning {
14 Meaning {
15 text,
16 unit,
17 part: Some(part),
18 }
19}
20
21const fn plain(text: &'static str, unit: &'static str) -> Meaning {
22 Meaning {
23 text,
24 unit,
25 part: None,
26 }
27}
28
29pub fn meaning(builtin: &str, key: &str) -> Option<Meaning> {
31 if crate::vocabulary::shape(builtin).is_some() {
32 return filter(key);
33 }
34 if FINITE_DIFFERENCE.contains(&builtin) {
35 return solver(builtin, key);
36 }
37 if MODAL.contains(&builtin) {
38 return modal(builtin, key);
39 }
40 Some(match (builtin, key) {
41 ("saw" | "square" | "triangle", "hz") => plain("the fundamental's frequency", "Hz"),
42 ("saw" | "square" | "triangle", "phase") => plain(
43 "the fundamental's phase offset; the nth harmonic turns n times as far, so the \
44 whole wave is read phase/(2*pi*hz) later",
45 "rad",
46 ),
47 ("saw" | "square" | "triangle", "tol") => plain(
48 "admitted and unused: the series is truncated where the profile's floor ends",
49 "none",
50 ),
51 ("sat", "drive") => plain("gain applied before the clip to [-1, 1]", "none"),
52 ("crop", "start") => plain("where the window opens, the second positional", "s"),
53 ("crop", "end") => plain("where the window closes, the third positional", "s"),
54 ("crop", "rise") => plain("raised-cosine fade-in from the window's start", "s"),
55 ("crop", "fall") => plain("raised-cosine fade-out into the window's end", "s"),
56 ("rand", "seed") => plain("which hash the key is drawn through", "none"),
57 ("delta", "k") => plain("derivative order of the impulse", "none"),
58 ("stft", "window") => plain(
59 "frame length, a whole number of steps of the rate in use",
60 "s",
61 ),
62 ("stft", "hop") => plain(
63 "frame advance, a whole number of steps of the rate in use",
64 "s",
65 ),
66 ("noise", "period") => plain("repeat time; the lines fall every 1/period Hz", "s"),
67 ("noise", "color") => plain("spectral tilt of the lines", "dB/octave"),
68 _ => return None,
69 })
70}
71
72fn filter(key: &str) -> Option<Meaning> {
73 Some(match key {
74 "cutoff" => plain("corner or centre frequency", "Hz"),
75 "q" => plain("resonance: centre frequency over bandwidth", "none"),
76 "gain" => plain("boost or cut of a shelf or peak", "dB"),
77 _ => return None,
78 })
79}
80
81fn solver(builtin: &str, key: &str) -> Option<Meaning> {
84 let part = match builtin {
85 "chaigne_askenfelt" | "willemsen_bilbao_serafin" => "string",
86 "darabundit_scavone" => "bore",
87 "rhaouti_chaigne_joly" => "membrane",
88 "chaigne_doutaut" => "bar",
89 "botteldooren" => "room",
90 _ => return None,
91 };
92 if let Some(n) = numbered(key, "string") {
93 return match n.1 {
94 "_cents" => Some(m(
95 "string's offset from its unison placing",
96 "cents",
97 "string",
98 )),
99 "_hammer_k_ratio" => Some(m(
100 "felt stiffness this string meets, as a multiple of hammer_k",
101 "none",
102 "hammer",
103 )),
104 _ => None,
105 };
106 }
107 if let Some(n) = numbered(key, "hole") {
108 return match n.1 {
109 "_pos" => Some(m("tone hole position along the bore", "none", "tonehole")),
110 "_open" => Some(m("1 leaves the hole open, 0 closes it", "none", "tonehole")),
111 "_radius" => Some(m("tone hole radius", "m", "tonehole")),
112 "_height" => Some(m("tone hole chimney height", "m", "tonehole")),
113 _ => None,
114 };
115 }
116 Some(match (builtin, key) {
117 ("darabundit_scavone", "length") => m("bore length", "m", part),
118 (_, "f0") => m("fundamental frequency", "Hz", part),
119 ("darabundit_scavone", "damp_dc") => m("scale on the viscous wall loss", "none", part),
120 ("darabundit_scavone", "damp_freq") => m("scale on the thermal wall loss", "none", part),
121 (_, "damp_dc") => m("frequency-independent loss", "1/s", part),
122 (_, "damp_freq") => m("frequency-dependent loss", "m^2/s", part),
123 (_, "b") => m("string stiffness (inharmonicity)", "none", "string"),
124 (_, "strike_pos") => m(
125 "where the hammer strikes, along the length",
126 "none",
127 "hammer",
128 ),
129 (_, "strike_x") => m("where the hammer strikes, across x", "none", "hammer"),
130 (_, "strike_y") => m("where the hammer strikes, across y", "none", "hammer"),
131 (_, "vel") => m("hammer velocity at contact", "m/s", "hammer"),
132 (_, "hammer_mass") => m("hammer mass", "kg", "hammer"),
133 (_, "hammer_k") => m("felt stiffness K in F = K compression^p", "N/m^p", "hammer"),
134 (_, "hammer_p") => m("felt stiffness exponent p", "none", "hammer"),
135 (_, "unison_count") => m("strings struck together, 1 to 3", "none", "string"),
136 (_, "detune") => m(
137 "frequency ratio across the unison's outer strings",
138 "none",
139 "string",
140 ),
141 (_, "bridge_coupling") => m(
142 "bridge resistance, in string wave impedances",
143 "none",
144 "bridge",
145 ),
146 (_, "bridge_mass") => m("bridge mass; 0 is massless", "kg", "bridge"),
147 (_, "damper_pos") => m("where the felt presses, along the length", "none", "damper"),
148 (_, "damper_r") => m(
149 "felt dashpot pressing every string; 0 is lifted; may move every sample",
150 "N*s/m",
151 "damper",
152 ),
153 (_, "damper_k") => m(
154 "felt spring pressing every string; may only jump",
155 "N/m",
156 "damper",
157 ),
158 (_, "bow_pos") => m("where the bow touches, along the length", "none", "bow"),
159 (_, "bow_vel") => m("bow velocity; may move every sample", "m/s", "bow"),
160 (_, "bow_force") => m(
161 "force pressing the bow on the string; may move every sample",
162 "N",
163 "bow",
164 ),
165 (_, "mu_s") => m("static friction coefficient", "none", "friction"),
166 (_, "mu_c") => m("sliding (Coulomb) friction coefficient", "none", "friction"),
167 (_, "stribeck_vel") => m(
168 "slip speed over which static friction falls to sliding",
169 "m/s",
170 "friction",
171 ),
172 (_, "bristle_stiffness") => m("bristle stiffness s0", "N/m", "friction"),
173 (_, "bristle_damping") => m("bristle damping s1", "N*s/m", "friction"),
174 (_, "viscous_friction") => m("viscous friction s2", "N*s/m", "friction"),
175 (_, "radius_in") => m("bore radius at the excited end", "m", "bore"),
176 (_, "radius_out") => m("bore radius at the far end, a cone between", "m", "bore"),
177 (_, "excite_pos") => m("where the pulse enters, along the length", "none", "source"),
178 (_, "pulse_amp") => m("pressure pulse peak", "Pa", "source"),
179 (_, "pulse_width") => m("pressure pulse duration", "s", "source"),
180 (_, "aspect_ratio") => m("side ratio lx/ly at a fixed area", "none", "membrane"),
181 (_, "aspect_y") => m("room depth, in room lengths", "none", "room"),
182 (_, "aspect_z") => m("room height, in room lengths", "none", "room"),
183 (_, "listener_x") => m("listener position along the length", "none", "listener"),
184 (_, "listener_y") => m("listener position along the depth", "none", "listener"),
185 (_, "listener_z") => m("listener position along the height", "none", "listener"),
186 _ => return None,
187 })
188}
189
190fn numbered<'k>(key: &'k str, stem: &str) -> Option<(u32, &'k str)> {
192 let rest = key.strip_prefix(stem)?;
193 let digits = rest.find(|c: char| !c.is_ascii_digit())?;
194 Some((rest[..digits].parse().ok()?, &rest[digits..]))
195}
196
197fn modal(builtin: &str, key: &str) -> Option<Meaning> {
199 Some(match (builtin, key) {
200 ("hammer_pulse", "vel") => m("strike velocity", "m/s", "hammer"),
201 ("helmholtz", "volume") => m("cavity volume", "m^3", "cavity"),
202 ("string", "f0") => m("fundamental frequency", "Hz", "string"),
203 ("membrane" | "room", "lx") => m("side along x", "m", builtin_part(builtin)),
204 ("membrane" | "room", "ly") => m("side along y", "m", builtin_part(builtin)),
205 ("room", "lz") => m("side along z", "m", "room"),
206 ("bar" | "bore", "length") => m("length", "m", builtin_part(builtin)),
207 (_, "damp_dc") => m("decay rate every mode shares", "1/s", "damping"),
208 (_, "damp_freq") => m("decay rate per squared hertz", "s", "damping"),
209 (_, "modes") => plain("how many modes the bank holds", "none"),
210 (_, "vel") => m(
211 "strike velocity; omitted, an impulse rings the bank",
212 "m/s",
213 "hammer",
214 ),
215 (_, "at") => m("when the strike lands", "s", "hammer"),
216 (_, "contact") => m("contact time at 3.2 m/s", "s", "hammer"),
217 (_, "p") => m("felt stiffness exponent", "none", "hammer"),
218 (_, "force") => m("peak force at 3.2 m/s", "N", "hammer"),
219 ("string", "inharmonicity") => m("string stiffness B", "none", "string"),
220 ("string", "strike") => m("where the strike lands, along the length", "none", "hammer"),
221 ("membrane", "tension") => m("membrane tension", "N/m", "membrane"),
222 ("membrane", "density") => m("membrane areal density", "kg/m^2", "membrane"),
223 ("membrane", "strike_x") => m("where the strike lands, across x", "none", "hammer"),
224 ("membrane", "strike_y") => m("where the strike lands, across y", "none", "hammer"),
225 ("bar", "thickness") => m("bar thickness", "m", "bar"),
226 ("bar", "young") => m("Young's modulus", "Pa", "bar"),
227 ("bar", "density") => m("bar density", "kg/m^3", "bar"),
228 ("bore", "radius") => m("bore radius", "m", "bore"),
229 ("bore" | "room" | "helmholtz", "speed") => m("speed of sound", "m/s", "air"),
230 ("bore", "closed") => m("1 closes one end, 0 leaves both open", "none", "bore"),
231 ("helmholtz", "neck_area") => m("neck cross-section", "m^2", "neck"),
232 ("helmholtz", "neck_length") => m("neck length", "m", "neck"),
233 ("helmholtz", "radius") => m("neck radius, for the 1.7 r end correction", "m", "neck"),
234 _ => return None,
235 })
236}
237
238fn builtin_part(builtin: &str) -> &'static str {
239 match builtin {
240 "membrane" => "membrane",
241 "room" => "room",
242 "bar" => "bar",
243 _ => "bore",
244 }
245}